Showing posts with label German. Show all posts
Showing posts with label German. Show all posts

World premiere in Geneva: LUMMA Design turns the BMW X6M into a thoroughbred sports car


CLR X 650 M - that is the name of the BMW X6M after it underwent a rejuvenation by LUMMA Design. Instead of the serial 555 hp (408 kW), the V8-engine now renders powerful 650 hp (478 kW). Also, LUMMA Design increases the maximum torque from 680 to breathtaking 830 Newton metres. Thereby, the top speed rises to 312 kph. This enormous performance enhancement of the BMW is owed to the catalyst replacement pipes, the sports exhaust system and the adjusted engine electronics which LUMMA Design especially optimised for this automobile in elaborate tests. The matching sound for this newly gained power is rendered by the end muffler "Sportsound" with its four stainless steel end pipes measuring 100 millimetres in diameter.


Aerodynamics kit and undercarriage enhance the performance

Matching the increased performance, the CLR X 650 M presents itself confidently with a broad aerodynamics kit. Already the new front skirt with the LED daytime running lights leaves no doubt for the bold appearance of the refined BMW. The wheel house extensions and the side skirt confirm the dynamic look which is further enhanced by 40 millimetre lowered undercarriage. The rear skirt, the boot lid top and the rear spoiler lip render a harmonious transformation. The great attention to detail used by the designers from Winterlingen in Germany, shows in a wide range of refinement, such as lateral indicator covers or the varnished sports-look carbon bonnet. Also the headlight blinds and the shaded rear light set contribute to the dynamic appearance.


For ideal road grip, there are four 315 millimetres wide ultra high-performance tyres by Michelin which are fitted to 11x23 inch Blackline Monoblock rims. The dynamic look of the voluminous black rims stems from the multipart look and the outer well made of stainless steel. This impression is further enhanced by varnished brake callipers which poke out between the spokes.


LUMMA Design also developed the interior as dynamic and performance-oriented as the new exterior. Leather and ultra-suede can be found for example at the ergonomically formed sports steering wheel. Rails made of orange-coloured carbon and pedals and foot rests made of aluminium moreover indicate the vitality of this automobile. The same applies for the illuminated door sills with the lettering "CLR X 650 M" and the extended speedometer range up to 360 kph displaying the LUMMA-Logo.


LUMMA Design confirms its love for detail also in the interior. Both the floor mats and also the boot mat are made of velour, have a leather edging and are adorned with the LUMMA coat of arms logo. The type plate with the consecutive serial number enhances the exclusive character of the CLR X 650 M.


BMW's plan to build a sporty SUV has been perfectly completed by LUMMA Design. The automobile is already serially equipped with a powerful engine, but it only starts turning into a thoroughbred sports car as a CLR X 650 M. More information is available at www.lumma-design.com
More Photos

Audi A1: Pure driving experience [Video]



With its agile handling and direct steering, the new Audi A1 is just a lot of fun. Dr. Horst Glaser, Head of Chassis Development at AUDI AG, tested the A1 together with DTM pilot Markus Winkelhock. The verdict was as follows:



Audi A1, Audi Head of Chassis Development, Dr. Horst Glaser, with Audi DTM driver Markus Winkelhock


The new Audi A1 offers a very sophisticated chassis, balanced weight distribution and a low center of gravity. "That is a guarantee for maximum driving enjoyment," says Horst Glaser, Head of Chassis Development at AUDI AG. Because it connects the driver to the road, the steering is one of the most important components of a sporty car. The A1 therefore comes standard with electrohydraulic power steering that has a very direct 14.8:1 steering ratio and is also more efficient than a purely hydraulic

system.



Audi A1, Audi Head of Chassis Development, Dr. Horst Glaser, with Audi DTM driver Markus Winkelhock


Another factor for the agile and safe handling of the A1 is the perfect tuning of the front axle bearings, the stabilizer bars, the springs and the dampers. The rear axle features a torsion-beam suspension with the springs and dampers separated. "The car is very well sprung. It swallows up bumps of almost any size without any amplification of the motions," says DTM pilot Markus Winkelhock when describing his impressions.



Audi A1 first official photos


One new Audi technology is on board every version of the A1 - the ESP stabilization system with an innovative electronic axle differential lock. The brakes are applied slightly to the inside wheel in a curve, allowing more torque to be transferred to the wheel on the outside of the curve. The vehicle is very agile and the handling remains neutral even longer.



Audi A1 first official photos


"After driving the Audi A1 for the first time, my opinion is clear: It's the benchmark in the small compact class," says Winkelhock.

More Photos

Video: BMW Technik Think Tank Celebrates 25 Years of Concepts


BMW Technik is the BMW Group’s research subsidiary that put simply works on the future. They step back from the day to day task of designing and building the next BMW and MINI models and focus on research and engineering at a level that’s simply not possible normally. And since the introduction of Technik 25 years ago the group has created show stopping engineering mules, concepts and even a few production components and full on cars. So with that said BMW is celebrating today with an enormous amount of photos and press releases meant to give you the full run-down on what Technik has done over the past 25 years. With it we also present you an incredible gallery of photos some of which are seen here for the first time.

via:bimmerfile


Press Release

Source of innovation. 25 Years of BMW (Forschung und) Technik GmbH.


Innovative force entails future capability. The BMW Group owes its status as the world's most successful manufacturer of premium automobiles to an outstanding development concept in all areas relevant to driving pleasure, sustainability and safety. The principles of this pre-eminence have been forged over the last quarter of a century in BMW (Forschung und) Technik GmbH. The researchers operating within the framework of this think tank develop technologies and concepts for individual mobility in tomorrow's world. The subsidiary was created 25 years ago as BMW Technik GmbH. With this company the BMW Group has a centre of competence that is unique throughout the world. It safeguards and expands technology leadership for BMW by providing a constant stream of innovations.

This groundwork is carried out autonomously, but it is by no means uncoupled from the development of series vehicles. The experts working in BMW Forschung und Technik GmbH enjoy a high degree of creative freedom that allows them to take innovative approaches and look for unconventional solutions. They make use of diverse sources of inspiration which can range
from bionics to space engineering, and they develop perspectives on the future that extend far beyond the life cycle of a vehicle model. "Our project-related research is not linked to the current product range, although we naturally have the objective of consistently optimising the characteristic features of vehicles coming from the BMW Group and transferring our projects and ideas to series development," explains Professor Raymond Freymann, Managing Director of BMW Forschung und Technik GmbH.

The concept of cooperative research also ensures that the departments responsible for subsequent series development can be integrated within the relevant project at an early stage. This approach guarantees that operations for realisation are already being monitored during the research phase. The initiators of an innovation also support their project after it has been transferred to the pre-production and series development phase. They then move with their project to the series development department at BMW AG. This provides safeguards for ensuring that information is not lost at interfaces, and it promotes a dynamic exchange of ideas on a personal level between research and series development. This strategy facilitates a strategic and efficient use of the innovative force pooled within BMW Forschung und Technik GmbH.

Competence centre in Munich and international network.

The subsidiary company was founded as BMW Technik GmbH in 1985. The main focus of activities in the early years was defined as the development and construction of concept vehicles. The minutes of the Executive Board meeting in January 1985 clearly set out the mission of the fledgling company: "The recently founded company BMW Technik GmbH has the mission to develop innovative, future-oriented and original overall vehicle concepts and sub-concepts away from the constraints of a specific series workflow schedule. However, the objective should always be to develop solutions that have the potential for series development." The initial aim was to work on projects under the working title "Auto 2000" and "Local Vehicle".

When the company was rebranded in 2003 as BMW Forschung und Technik GmbH to reflect both research and technology, the focus was shifted to developing technology that encompassed all types of BMW vehicle. The workforce currently has a headcount of around 200 at the Munich site, and BMW Forschung und Technik GmbH has extensive expertise in the areas of vehicle engineering, hydrogen technologies, alternative drive and energy management concepts, active safety and driver assistance systems, as well as information and communication technologies in the vehicle. The research and technology centre also maintains centres in the USA: the Technology Office Palo Alto in Silicon Valley, California, and the Liaison Office Clemson, South Carolina. They enjoy a close relationship with universities such as Stanford University and the Massachusetts Institute of Technology, as well as research institutes and high-tech companies in other sectors. The aim is to harness innovative trends and technologies for deployment in the automobile sector.

There is also an extensive exchange of ideas with universities and research institutes at German and European level. Participation in the Eurécom European communication network - based at the Sophia Antipolis high-tech centre in southern France - ensures that the research subsidiary of the BMW Group has access to leading-edge information and telecommunication technologies. In addition, BMW Forschung und Technik GmbH has a base at the German Research Centre for Artificial Intelligence and drives forward the automation of intelligent behaviour and hence the "Automobile of the Future".

The Munich Center of Automotive Research (CAR@TUM) established as a joint venture with Munich Technical University gives the subsidiary of the BMW Group permanent access to high-flying young academics with great potential for the future and it also ensures access to important results derived from ground-breaking scientific research.

BMW Forschung und Technik GmbH also works on state-financed research projects at national and international level together with other automobile manufacturers and suppliers in order to create industry-wide standards, ultimately for the benefit of all customers. One of the latest examples of this work are the field trials for vehicle-to-vehicle communication in the project entitled "Safe mobility - Test bed Germany", abbreviated to simTD.

Anniversary: Premiere for fascinating concept vehicles and pioneering technologies.

The history of BMW Forschung und Technik GmbH has been defined by a long track record of concept vehicles and technological innovations which generated pioneering impetus for the development of series vehicles, components and systems. The influence of research projects exerts varying effects on series development, depending on the subject focus and complexity. The scope ranges from direct implementation in the form of a concrete project to long-term development of technology competence. BMW Group Research and Technology is presenting a selection of projects to celebrate this landmark anniversary. The specialists working at the centre have developed these projects and some of them will be experienced for the first time outside the confines of the well-guarded laboratories and workshops.

One of the first projects to be launched by the fledgling subsidiary company was the prototype for a BMW Z1 Coupé developed in 1988. This vehicle was created within the framework of a concept development based on the very first project of the new subsidiary - the BMW Z1 roadster produced in a limited series. The development engineers were interested in methods and technologies to facilitate a maximally efficient extension of a vehicle concept to additional derivatives. The knowledge gained from this project was used for the BMW Z3 series model, which was produced as a roadster and coupé, and for the first generation of the BMW Z4, which was also manufactured in open-top and closed versions.

A fuel-cell hybrid vehicle based on the BMW 1 Series is another project being presented in the public domain for the first time. This project developed by BMW Forschung und Technik GmbH shows a highly innovative form of hybrid technology developed within the framework of Efficient Dynamics in conjunction with the use of hydrogen as a fuel. Alongside a four-cylinder petrol engine, the research vehicle has an electric power unit for city traffic. The electrical energy is generated by a small fuel cell in the form of an Auxiliary Power Unit (APU) and stored temporarily in high-performance capacitors. These so-called super caps cover the performance peaks for acceleration and taking off at traffic lights, and store the electricity generated during braking. Using a comparatively small fuel cell to generate electricity from hydrogen achieves a high level of efficiency for city traffic, while the internal combustion engine is only used for high-speed journeys. This combination could have the capability to provide an emission-free range of several hundred kilometres in city traffic and facilitate "recharging" within the space of a few minutes - this is in addition to the mobility reserves provided by the internal combustion engine for long-distance travel.

BMW Forschung und Technik GmbH is also celebrating its anniversary by providing a unique insight into innovative projects in the area of intelligent networking between driver, vehicle and environment. BMW ConnectedDrive already delivers a package of driver-assisted systems and mobility services that is unique throughout the world. These systems enhance comfort and safety, as well as optimising infotainment functions in the vehicle. The current research projects in this area include the narrow-passage assistant, which assists drivers if they are driving along particularly narrow lanes, for example near building works, and the emergency stop assistant which brings the vehicle safely to a stop if there is a medical emergency.

The latest success of the joint venture between BMW Forschung und Technik GmbH and Munich Technical University (CAR@TUM) is also presented. The project "IT-Motive 2020" involves the researchers developing an innovative architecture for information and communication technology integrated within the vehicle that permits functions previously distributed over a large number of different control units to be pooled in a homogeneous communication network. The aim is to provide a consistent hardware platform for displaying the continually expanding number of vehicle, comfort and safety functions.

Milestones: from the BMW Z1 to the lightweight sports coupé BMW Z29.

BMW Technik GmbH was launched in 1985 with the mission to develop innovative solutions for a large number of aspects associated with individual mobility. The specialists working in the newly established department were able to get to grips with this mission successfully in the very first project they tackled. They developed the BMW Z1 roadster. This vehicle project was intended to trial innovative materials, launch a revolutionary bodywork concept, and highlight opportunities for optimising development processes.

The result was so impressive that already three years later the first out of a total of 8 000 series vehicles left the Munich BMW Plant. With its plastic body, vertical sliding doors and fascinating handling properties, the BMW Z1 was not simply the first milestone in the history of BMW Technik GmbH - it also made its mark as an exceptional phenomenon on the road.

Revolutionary body and power-unit concepts were to shape development operations during the years to come. In 1993, the BMW Z13 was presented, a compact vehicle with a sporty design powered by a rear-mounted engine and three seats in an unconventional configuration. The driver was positioned behind the centrally located steering wheel, with seating space being provided behind the driver for two passengers. The study featured the driving pleasure typical of the brand, a high level of comfort, and outstanding safety attributes.

BMW E1: pioneer for electro-mobility.

The same year already saw BMW Technik GmbH presenting the BMW Z15. This first fully functional concept vehicle with pure electric drive was a development of the BMW Z11 electric vehicle presented at the Frankfurt Motor Show in 1991. As a prototype with the model designation BMW E1, the four-seater incorporated a design with pioneering aerodynamic and
ergonomic features that provided impressive testimony to the superlative potential of its emission-free drive technology even in normal everyday use. The BMW E1 provided a range of up to 200 kilometres and a top speed of 120 km/h. The prototype generated universal acclaim among members of the public and independent testers. The readers' choice in car magazine "Auto Zeitung" voted the BMW E1 as the winner in the category "Environment and Technology", and trade magazine "Auto Bild" described the BMW E1 as "the most advanced car of the century".

At the time, it was already evident that BMW was in a position to achieve typical BMW driving characteristics and operational capability geared to city driving with a purely electrical power unit. Series development would also be achievable if a battery technology with optimised power and cost could be developed. Today, BMW is continuing to build on this knowledge base in the context of project i: it provided the impetus for the development of a Mega City vehicle designed for emission-free mobility within large urban environments. An innovative vehicle concept and the most recent developments in the area of power unit and energy storage technology form the basis for a state-of-the-art presentation of electrical mobility.

New routes to maximum driving fun: BMW Z18 and BMW Just 4/2.

The development of the prototypes launched in 1995 also saw the specialists at BMW Technik GmbH searching for new and sophisticated approaches to driving pleasure. One of their ideas focused on designing an automobile counterpart to the Enduro motorcycle concept that was so successful during the 1990s. The yearning to explore off-road terrain and the pleasure of mobility under the open skies was combined for the first time on four wheels in the BMW Z18. An eight-cylinder engine, four-wheel drive, a variable interior concept and elevated seating characterise the innovative driving experience in the robust roadster.

The BMW Z18 had to wait five years after it was created for its public debut - the occasion was the celebration of 15 years of existence for the think tank. Another prototype that offered the prospect of driving fun while having previously been confined to motorcycles captivated the driving public at the Tokyo Motor Show in Japan as early as 1995. Freestanding wheels, a body that abandoned roof and windscreen, and a rear-mounted four-cylinder engine packing 100 hp were the hallmarks of the study where the two-seater concept was already integrated in the model designation - BMW Just 4/2.

Festival of innovations: The BMW Z22.

The BMW Z22 was among the most sophisticated technology platforms that BMW Technik GmbH ever created. The study was presented in 1999, and it bristled with no less than 70 innovations and 61 registered inventions in areas ranging across body concept, lightweight construction, power unit, safety, mechanical systems and controls. The use of carbon-fibre reinforced plastic in an innovative processing procedure permitted compliance with the highest crash safety standards while at the same time significantly reducing weight. Power steering, an electromechanical braking system, cameras instead of wing and rear mirrors, and a cockpit design reduced to the bare essentials defined the mould-breaking, future-proof character of the BMW Z22. Adaptive headlights, Head-up Display and central control unit enabled the prototype to offer innovative functions that were soon implemented further down the line in BMW series vehicles.

Consistent lightweight construction for uncompromising driving pleasure: The BMW Z29.

Optimization of the vehicle weight by deploying the most advanced high-tech materials was the focus of development for the BMW Z29 concept study. The prototype of a two-seater sports car was completed by BMW Technik GmbH in 2001 and represents the culmination of cooperation with another subsidiary of the BMW Group - BMW M GmbH. The vehicle exerts
fascinating appeal with flowing lines and lambo-style doors. The principles underlying the outstanding potential of the BMW Z29 for dynamic driving can be found under the engine bonnet and below the surface of the paintwork. The power was generated by the in-line six-cylinder engine of the BMW M3 - at that time a technological benchmark - and the passenger cell was manufactured from carbon-fibre reinforced plastic while the rear axle, and front and rear module were designed in aluminium. The most important results of this combination: a weight-to-power ratio of 3.4 kg/hp and an acceleration ratio of 4.4 seconds for the sprint from a standing start to 100 km/h.

Research as foundation for Efficient Dynamics.

The Efficient Dynamics development strategy provides the BMW Group with the world's most efficient programme for reducing consumption and emission values in road traffic. The development of power systems with optimised efficiency, smart energy management in the vehicle, and aerodynamic measures form the key supporting aspects of this strategy, complementing lightweight construction throughout. BMW Group Research and Technology has made significant progress in all these areas since the company was established and the results have been channelled into the series development of many different new models.

Intensive fundamental research has also been carried out in the context of the development of innovative and alternative propulsion systems. The spectrum of research ranges from new concepts for the classic internal combustion engine, through hybrid technology and the deployment of hydrogen as a fuel in the vehicle, to electro-mobility. This demonstrates that research covers all the areas that today form the mainstays of the Efficient Dynamics development strategy.

Hybrid concepts: more efficiency, more driving pleasure - right from the start.

The BMW ActiveHybrid 7 and the BMW ActiveHybrid X6 are the first two models of the brand available in 2010 to use a combination of internal combustion engine and electric motor. Each model deploys a unique platform of BMW ActiveHybrid technology while also presenting a characteristic homogeneity: BMW ActiveHybrid presents tangibly enhanced dynamic
driving accompanied by significantly reduced consumption and emission values. This twin-track advance is manifested in the BMW EfficientDynamics development strategy, and from the start it shaped the ground-breaking work carried out by BMW Forschung und Technik GmbH in hybrid technology. Hybrid technology in the style of BMW advances efficiency and intensifies driving pleasure.

The hybrid concept car based on the BMW 5 Series and developed in 1994 already facilitated fully electric and hence emission-free driving with characteristic features optimised for city traffic. The car's power-unit technology configured as a parallel hybrid drive combined a four-cylinder petrol engine with an electric drive which generated a maximum output of 26 kW. The energy stored in a nickel-metal hydride battery was sufficient to power the car over a range of eleven kilometres in purely electric drive mode. Today, hybrid technology in the BMW 5 Series is more relevant to the modern world than ever before. It is well on the way to series maturity, as demonstrated at the Geneva Motor Show in 2010 when the BMW Concept 5 Series ActiveHybrid was featured and bore impressive testimony to the technology.

Within the space of just one year, the researchers had developed another hybrid concept vehicle and significantly extended the range of the vehicle solely under electric power. The BMW 3 Series with serial hybrid technology was primarily intended for city traffic and was able to travel a distance of 38 kilometres with the internal combustion engine switched off. Two electricmotors supplemented the four-cylinder petrol engine. One of them provided the propulsion while the other served as a generator within the system.

Researchers presented a hybrid vehicle based on the first generation of the BMW X5 in 2001, and this demonstrated the progress that had been made in the area of drive and energy-storage technology. The study combined an eight-cylinder petrol engine and an electric motor to generate a maximum combined torque of 1000 newton metres. The high-power capacitors known as supercaps were the most important innovation in the first vehicle to be named after the Efficient Dynamics strategy. They were deployed as energy storage devices with particularly high power density. The BMW Concept X3 EfficientDynamics consistently progressed development of supercaps integrated in the side sills. The technology was presented at the Frankfurt Motor Show in 2005. The specialists at BMW Forschung und Technik GmbH were also able to present new solutions for integrating the internal combustion engine and electric motor. BMW Concept X3 EfficientDynamics integrated the electric motor including performance electronics in a compact active transmission.

Option for the future, already operating today thanks to intensive research: hydrogen as a fuel.

Over the long term, the BMW Group is also committed to using hydrogen as an alternative fuel in vehicles. The use of hydrogen produced with assistance from renewable energy sources offers the option of emission-free mobility for the future. The capability of this power-unit technology for everyday use has already been demonstrated with the BMW Hydrogen 7. This car passed through the complete series development process before being manufactured as a limited series. The world's first hydrogen-powered luxury saloon for use under everyday conditions is powered by a bivalent twelve-cylinder internal combustion engine and has been made available to selected customers worldwide. They have meanwhile travelled a total of more than four million kilometres driving the BMW Hydrogen 7.

On the way to the BMW Hydrogen 7, BMW Group Research and Technology set up a large number of research projects and concept vehicles, leading to a much better understanding of hydrogen technology and the framework conditions for use in the automobile. A precursor to the BMW Hydrogen 7 was presented in 2000 as the BMW 750hL and used as a shuttle vehicle atthe Expo World Exhibition. The following years saw the BMW 750 hL driving more than 170 000 kilometres in a practical test during the "Clean Energy World Tour". Other pioneering achievements were provided by the BMW H2R hydrogen record vehicle. In September 2004, the model powered by a twelve-cylinder engine set up nine international records for hydrogen-powered vehicles with a piston engine at the BMW test track in Miramas, France. The car achieved a top speed of more than 300 km/h.

Research is currently focusing on the challenges that still have to be mastered for the application of hydrogen. Milestones are the development of a hydrogen-four-cylinder cryogenic test engine and modular hydrogen single-cylinder research engines with combustion chamber geometries similar to petrol and diesel engines that achieved outstanding levels of performanceand efficiency for hydrogen engines. The other innovations developed by BMW Forschung und Technik GmbH in the area of hydrogen technologyinclude a variable shape tank with optimised weight made of carbon-fibre reinforced plastic for storing hydrogen in the vehicle and a reformer system for generating synthesis gas as a concept for effective emission reduction inthe cold-start and catalytic-converter heating phase.

Another field of research involves tracking fuel cell technology with consistent focus on application for generating electricity to power the vehicle's on-board supply. Use of the fuel cell as an Auxiliary Power Unit (APU) has been undergoing development since 1997 at BMW. Consistent further development over the subsequent four generations of technology has resulted in a continuous increase in efficiency and permanently optimised compatibility with everyday use. These advances are being demonstrated with the fuel-cell hybrid vehicle on the occasion of the anniversary.

Connected Drive: networking as the key to more comfort, security and driving pleasure.

The development of electronic systems facilitates smart networking between driver, vehicle and environment, and BMW Forschung und Technik GmbH has played a major role in enhancing comfort, safety and driving pleasure. Many of today's series vehicles feature driver assistance systems, mobility services, and systems for integrating external communication andentertainment modules that are based on innovations developed by BMW Forschung und Technik GmbH.

Motivated by the objective of opening up new perspectives for networking with the outside world and creating the foundations for the necessary technology, the specialists at BMW Group Forschung und Technik GmbH are working on assistance systems that extend way beyond the scope of the assistance systems integrated in current series vehicles.

Advanced assistance systems created by the research department of BMW Forschung und Technik GmbH include the TrackTrainer, which is supported by a melding of highly specific data from digital mapping, GPS and video and allows racing tracks - even the North Loop of the Nürburgring - to be negotiated autonomous in an ideal line. This system is used for training purposes during BMW Driver Training.

The emergency stop assistant developed in the context of the research project "Smart-Senior - Intelligent Services for Senior Citizens" uses the capabilities developed for the TrackTrainer to enhance traffic safety. The system is able to change to autonomous drive mode if an emergency situation caused by a health problem with the driver is identified, in order to carry out a safe emergency braking manoeuvre. Apart from reliable localisation of the vehicle within the lane, precise execution of the manoeuvre primarily involves robust identification of all the vehicles in the immediate environment.

Another research project in the area of automatic driving is the garage parker debuted in 2006. This system permits independent manoeuvring of the vehicle. All drive, braking and steering functions are controlled automatically to enable the vehicle to be steered in and out of a garage where space is restricted using remote control by the driver. If required, the system also activates the warning indicators and the headlamps, as well as swinging the wing mirrors in and out. The sensors for stopping the car automatically are naturally also activated if an obstacle is encountered.

More safety and efficiency through targeted communication.

A key area of development for our research subsidiary is interchange of information between vehicles and the traffic infrastructure, known as Car-to-X Communication (Car2X). One example is transmission of information about sequence times from traffic light systems. This means that a driver assistance system can either get information about the optimum speed so that cars can hit an individual green sequence of traffic lights and travel without stopping, or issue a warning about the possibility of going through a red light. Strategic transfer of data about the traffic situation, conditions on the carriageway and other factors allow early warnings to be broadcast from one vehicle to other drivers in the immediate environment about accidents, traffic jams or the formation of black ice. It is also possible to calculate the risk of collision based on the transmitted vehicle data so that warnings can be given in advance of potential crashes at junctions. As a manufacturer of cars and motorcycles, the BMW Group is in the unique position of being able to integrate both types of vehicle in the communication scenarios.

BMW Forschung und Technik GmbH also carries out ground-breaking work in the development of revolutionary operating concepts and control systems. One example of this is the concept of an entirely innovative cockpit design presented in a second-generation BMW 3 Series compact, with the Drive Stick as the focal point. Instead of steering wheel, accelerator and brake pedal, the concept vehicle has two control levers projecting vertically from the door panel and the centre console. These allow the driving direction, acceleration and deceleration to be controlled using drive-by-wire technology. The Drive Stick Car project provides a particularly vivid example of the abilities of the specialists working at BMW Forschung und Technik GmbH to ask questions about basic assumptions, deploy a high level of creativity in seeking out radically different solutions, and harness the potential of innovative technologies. The knowledge collected in this project played a major role in influencing the evelopment of the electromechanical power steering and active steering marketed for BMW series models. It also provides the typical BMW steering feeling under the conditions of power steering support.

From sailing yacht to car: Optimised Head-Up Display technology.

Their fundamental research and technology development continually encourages the researchers to look at issues that at first glance appear to be way beyond the scope of the automobile. However, over the long term the knowledge gathered in this way is channelled into projects that lead to an increase in comfort, safety and driving pleasure within the context of BMW ConnectedDrive. The team from the Technology Office located at Palo Alto in the US developed a miniature head-up display integrated in the sunglasses of the crew members in the Oracle BMW Racing Team. This system was designed for use in the ocean race for the America's Cup and allows information and commands to be transferred speedily and selectively by projecting it onto the lenses of the sunglasses. This project generated additional know-how that was used for the advanced development of the Head-up Display in the latest series vehicles of BMW.

Identification and integration of new technologies as a recipe for success: BMW ConnectedDrive Services with functionality that is unique worldwide.

Defining principles were also identified by the Technology Office in Palo Alto for integrating external communication and entertainment modules in the vehicle. The first interface for integrating the Apple iPod was developed there and this included the option of using the BMW iDrive System to control the audio function. The pioneering work carried out by BMW Research and Technology has secured BMW a unique position for the integration of external communication and entertainment systems in the vehicle. The systems and services integrated within BMW ConnectedDrive guarantee functionality that remains a world first not matched by any other automobile manufacturer worldwide.

Innovative services for future mobility solutions are already being developed today, including the technology required for these concepts. The BMW Group Technology Office Palo Alto joined forces with other technical departments to develop an iPhone application for the BMW Concept ActiveE vehicle. This application delivers vital information directly to the driver's mobile phone, including data concerning battery charge status and the potential range of the vehicle running on electric power alone.

The prototype of a multifunctional car key was also developed as a means of networking the mobility experience with the driver's lifestyle. The BMW Key is provided with a security chip that allows the driver to make cashless purchases while also enabling other functions such as memorising the e-booking for hotel rooms. The driver's key has integrated credit card functions which offer the possibility of e-booking for bus, train and air travel while in the car and storing the purchased e-tickets on the key. When using hire car or car-sharing systems, the personalised key offers additional potential because it is assigned to the owner of the vehicle rather than to the car itself.

Audi S5 by Senner Tuning: White Beast


German tuner Senner Tuning has released its take on Audi's S5 Coupe. The call it the White Beast - apparently the Germans learned their "lesson" after last year's "White Power" RS6...

Visually, Senner has added a new front fascia, mimicking that of the Audi RS5, as well as a rear lip spoiler, LED taillamps and a new rear apron. Large 21-inch wheels better fill out the wells, and the suspension has been lowered (40 millimeters in front, 35 in back) to give the car a more aggressive road stance. Inside, a carbon fiber interior trim package has been added, as well as a new tachometer display screen.

Not only the optics but also the engine power has been upgraded. An additional 30hp and 35Nm are available for Audi S5, creating an overall power of 384hp and 475Nm. They have achieved the increase by installing a performance air filter plug-in package and a different exhaust system. Furthermore, the speed limitation of 250km/h was raised, so now the car can reach 285km/h. The acceleration up to this speed was boosted by the Power Converter, an electronic module of acceleration of the signal from the gas pedal.

The interior has strong carbon fibre finishes to emphasise the car's performance abilities. Senner charges €18,990 (US$25,338) for the package, including technical inspection costs.


Senner Audi S5 White BeastSenner Audi S5 White BeastSenner Audi S5 White BeastSenner Audi S5 White BeastSenner Audi S5 White BeastSenner Audi S5 White BeastSenner Audi S5 White BeastSenner Audi S5 White BeastSenner Audi S5 White BeastSenner Audi S5 White BeastSenner Audi S5 White BeastSenner Audi S5 White BeastSenner Audi S5 White BeastSenner Audi S5 White BeastSenner Audi S5 White BeastSenner Audi S5 White BeastSenner Audi S5 White BeastSenner Audi S5 White Beast



Press Release

White beast - by Senner Tuning AG

The German art of tuning: a worthy example is the new S5 that had taken the form of a truly individual "sports car" in the hands of Senner Tuning AG tuners from Ingelheim. Apart from the decent design kit, Senner Tuning still has various upgrades ready to apply on the S5 series.

A front spoiler, stretched deeply below, with a large air inlet in RS5 Look with a well-suited radiator grill, designed in the form of cells, contributes to the perfect car body along the sliding air streams and optics. Additionally, we can find a rear spoiler lip at the body, as well as a rear apron unit performed in Carbon Look by Rieger tuning house. To make the appearance complete, the car is equipped with modern LED back lights, and a number-plate light has light-emitting diodes in clear white, too.

But this is still not enough. As the name "white beast" implies, not only the optics but also the engine power have been upgraded. With parametric surface optimization, performance air filter plug-in package and exhaust system, additional 30 ph and 35 Nm are now available for Audi S5, and the overall power now makes 384 ph and 475 Nm.

Furthermore, the speed limitation of 250 km/h was raised, so now the car can reach the full 285 km/h. The acceleration up to this speed was boosted by the Power Converter, an electronic module of acceleration of the signal from the gas pedal.

The corresponding sound of the newly acquired power is produced by the Senner Tuning exhaust system which emphasizes the car's sport-style appearance optically, too, with its four exhaust pipes of high-grade steel. The exhaust system includes a sport exhaust silencer and an X-pipe and is provided with an EU grant for vehicle operating.

To make the performance of the reinforced motor core optimal for the street and allow no losses, the craftsmen from Senner Tuning use lowered suspension springs with 40-mm suspension at the front axle and 35-mm suspension at the rear axle which also create a nice-looking aspect between the body and the rims.

In addition, giant and two-parted 21-inch polished light alloy wheel rims Work Varianza T1S in diamond black, that were produced exclusively for Senner Tuning, find their application with the white beast. High-performance tyres by Hankook with an S1 Evo label, as big as 255/30 R21 and 295/25 R21, were installed on 9x21" and 10,5x21" rims. And there is no need to adjust the wheel arch edges!

The interior has also undergone some changes. A carbon fiber interior package, including the tachometer display screen, sticks out from the rest. There is also a fancy foot mat of high-quality velour - this is where sport ambitions merge with individuality.

The cost of the whole renovation kit is 18,990 Euro including technical inspection fees!

G-Power 760i STORM Tuning Program Announced

2010 G-Power 760i Storm

After the large success of the two world record cars G-POWER M5 HURRICANE RS and G-POWER M6 HURRICANE CS which with their 750 hp strong 5,0l V10 bi-compressor engine can be only obtained as a complete vehicle via the G-POWER manufactory, the so-called "G-POWER Supercars" will become an inherent part of the future G-POWER programme. The G-POWER manufactory is a strongly growing business branch of the company G-POWER in which all individually produced complete vehicles, the so-called "G-POWER Supercars" are produced as an inherent part of the G-PWER programme and are entirely made by hand.

The company philosophy of the G-POWER manufactory which solely produces its automobiles in limited edition, is 100% customer dedication as far as the features and the strictly limited edition of the G-POWER Supercars are concerned and also the entire revision of the individual basic engines with the clear objective to produce the strongest and fastest BMW model in the world.

The latest masterpiece and an impressive example for the exceptional performance of the G-POWER manufactory is the G-POWER 760i STORM which now closes a gap in the BMW programme: M-Feeling for the BMW "Luxusliner".

Due to customer preference, G-POWER, so far predominantly well known on modifying the potent BMW M models, has now focused on the BMW flagship in the luxury segment and developed an overall concept which optimally adjusts aerodynamics, rims and increased engine performance.

2010 G-Power 760i Storm

The core part of the G-POWER performance enhancement for the 6,0l V12 bi-turbo engine is a substantial modification of both "TwinPower" turbo chargers used by BMW. In co-operation with the compressor manufacturer ASA which can rely on 20 years experience in developing and producing radial compressors (basically, radial compressors are turbo charger compressor units which are put into motion by the crankshaft via a belt driven transmission), the performance of both turbo chargers was significantly improved without affecting their endurance.

As a result, the maximum boost pressure of 0.5 bar (relative) rises to 0.9 bar (relative). Flanking measures at the engine ensure that the increasing boost pressure can also be transformed into according extra power. Therefore, additional 181 hp (133 KW) are gained which enhance the overall performance to strong 725 hp at 5,500 r.p.m and render the maximum torque of 1000 Nm at already 2,000 r.p.m. In order to achieve this impressive extra performance, larger injection valves and an entirely new exhaust system for the reduction of dynamic pressure including the therefore necessary sports catalysers have been added, et al. A re-programmed engine control and significant modifications at BMW´s serial 8-speed transmission perfect the overall package harmoniously.

The enormous performance potential of the BMW V12 bi-turbo engine modified by G-POWER allows the G-POWER 760i driving performances which catapult it into the top range of its vehicle class. The acceleration from 0 to 100 km/h only takes 4.2 seconds. After 11.9 seconds, already 200 km/h are achieved. The top speed is 345 km/h.

But not only due to its enormous performance, the G-POWER 760i STORM propels to the top of its vehicle class, also the visual appearance of the aerodynamics kit which was exclusively developed for the STORM by G-POWER, underlines the exceptional quality of this G-POWER Supercar. Thereby, the aerodynamics pack in the brand-typical design is not only an end in itself, but it also improves the cold air supply to the cooling water and oil coolers at the vehicle front due to the enlarged air inlets at the front skirt and the vent holes in the bonnet. Due to these changes, the overall cooling performance has been increased by approx. 15 percent - a basis for the thermally always harmless performance enhancement.

2010 G-Power 760i Storm

The most outstanding component of the G-POWER aerodynamics kit for the BMW 760i, is the strikingly styled front skirt made of carbon fibre which entire replaces the original part. It gives the serially unobtrusive front of the current BMW 7-model the necessary aggressiveness which an automobile with 725 hp and a top speed of 345 km/h requires. Due to the elaborate shape, the aerodynamic lifting forces at the front axles were able to be reduced. Another highlight is the G-POWER STORM bonnet made of Kevlar hybrid which has a central Venturi engine compartment ventilation for the operation and two lateral ABS grids for the ventilation when the car stands still and guarantees an improved discharge of hot air from both turbo chargers out of the engine compartment and shapes the new face of the BMW 760i.

The G-POWER full carbon add-ons for the serial side skirts and the doors render a visual harmonious connection between the wheel houses by visually stretching the silhouette of the BMW 7-model. The wheel houses themselves are filled with forged three-part G-POWER SILVERSTONE RS aluminium wheels measuring 9.5x22 and 10.5x22 inches which are equipped with high-performance tyres of the development partner Michelin in the dimensions 265/30 ZR 22 at the front axle and 295/25 ZR 22 at the rear axle. Set up this way, the G-POWER 760i STORM always renders an optimal traction and a sporty handling which is additionally improved by the G-POWER sports spring set and a lowering by 30 mm.

2010 G-Power 760i Storm

At the rear, a full carbon rear spoiler and a full carbon diffuser which elegantly emphasise the 4 x 100 mm end pipes with integrated G-POWER logo generate more downforce at the rear axle and at the same time visually enhance the back section.

G-POWER refines the interior of the BMW 760i with exclusive accessories such as an ergonomically shaped sports steering wheel, a speedometer in G-POWER design and fine carbon rails for the side casing, central console and dashboard. Further customer wishes for exclusive interiors can always be fulfilled by the G-POWER manufactory with all possible leather- and ultra-suede colours.

The G-POWER 760i STORM is only available in a strictly limited small edition of only 10 automobiles world-wide from the G-POWER manufactory in Autenzell.
Source:MW

Vorsteiner debuts the Mercedes Benz C63 AMG Aero Package

 Mercedes C63 AMG Aero Package

Pressing onward with the latest in our Mercedes Benz lineage, Vorsteiner is proud to announce the advent of the Mercedes Benz C63 AMG Aero Package. Respectfully following the CLK Black's heritage, the C63 AMG Aero Package has been meticulously designed and tested to meet Vorsteiner standards of quality, both in style and performance.

Every component in the C63 AMG package is created using a state-of-the-art aerospace autoclave system which utilizes a resin pre-impregnated, vacuum-formed carbon fiber. This results in an up to 30% stiffer and stronger structure when compared to an equivalent wet-lay product.

 Mercedes C63 AMG Aero Package

The C63 AMG Front Spoiler borrows accents from the CLK Black Series while maintaining a genuine C63 feel, graciously contouring the front AMG factory bumper. In its design, the form follows function while considerably increasing downforce to the front of the vehicle using lightweight carbon fiber.

The C63 AMG Rear Diffuser provides an aggressive appearance to the rear of the vehicle, sporting a dual-fin diffuser system. The diffuser is further enhanced by a central vent, cooling the exhaust while accentuating the bumper in a subtle, yet bold manner.

 Mercedes C63 AMG Aero Package

The final component in the C63 AMG Package, the Carbon Fiber Rear Spoiler, arms the C63 with bold distinction as an homage to the sportiness of the CLK Black. The carbon fiber spoiler imparts its statement through the addition of downforce, flawlessly complementing the front spoiler, both in elegance and purpose.

Our C63 AMG features the Vorsteiner V-101 Monoblock Forged wheel. The V-101 design features an 8 twin spoke mesh, extending out to the edge of the wheel, enhancing the overall appearance and form. The tire of choice is nothing less than best with the Michelin Pilot Sport PS2 that aid in gripping the road for optimal acceleration and handling.

 Mercedes C63 AMG Aero Package

Front and rear wheel dimensions are available in 20x8.5 inch and 20x9.5 inch or 19x8.5 inch and 19x9.5, respectively, providing an aggressive powerful stance.

The V-101 is available in the following finishes:

  • Brushed Aluminum
  • Chrome
  • Gunmetal
  • Black
  • Silver
  • Textured Black
  • Texture Gunmetal

Custom finishes are available on request.

The V-101 includes Vorsteiner anodized aluminum carbon fiber center caps.
More Photos

Mercedes SLR Stirling Moss Edition and Hakkinen Shooting Commercial in Barcelona


Somebody at Daimler must have been a big fan of recent photos showing the Audi A1 S-line in Barcelona's Raval district.  The company has been working on a new video shoot for the Mercedes-Benz SLR Stirling Moss Edition a few kilometers away from the A1 location, and close to scenes used in a video of the Alfa Romeo Giulietta.

The SLR Stirling Moss Edition was the last version that became the SLR McLaren, and was filed in 2009. Is inspired by the 300 SLR that Stirling Moss took the victory in the Mille Miglia in 1955, along with journalist Denis Jenkinson, ie, which has no windscreen or roof or anything like it.

With a weight of 200 kilos less than the conventional SLR, and a little more power (650 horses on the original 617), accelerates from 0 to 100 in 3.5 seconds and can take the 350 km / h. S'en only 75 produced, which were offered only to customers who already have a SLR to your garage. The price? Well 750.000 .- €. Almost nothing.
via:worldcarfans


BMW will build electric cars in Leipzig

BMW ActiveE Concept

BMW plans to assemble their electric cars at a manufacturing facility in Leipzig, Germany. Amongst these vehicles is a subcompact, referred to internally as the "Megacity," which the automaker plans to release midway through 2013 with a different name.

BMW ActiveE Concept

“The BMW Group will build the car of the future in Leipzig with high-tech innovations from Bavaria,” BMW CEO Norbert Reithofer said in a statement. “The main reasons behind this decision are the qualities that Germany has to offer: we have a tried-and-tested production network here and high levels of education and outstanding competencies at our disposal.”

BMW ActiveE Concept

BMW plans to launch an entire family of electric vehicles from the Megacity subcompact, which is designed for major metropolitan areas. BMW hasn't decided on a production name for the car.

BMW ActiveE Concept

A heavy use of carbon fiber will help keep the Megacity lightweight. A joint venture with BMW and SGL Group will produce a carbon fiber fabric that will later become carbon fiber reinforced plastic. The automaker has not said what parts will be made from the material.

BMW ActiveE Concept

At the Detroit auto show in January, BMW presented its ActiveE concept, an electric-drive vehicle based on the 1-series coupe. Next year, BMW development chief Klaus Draeger plans to launch another test fleet of electric cars based on the ActiveE.
More Photos