Showing posts with label UR:BAN. Show all posts
Showing posts with label UR:BAN. Show all posts

Monday, 12 October 2015

!NEW! Opel Demonstrates Technology for Safer Inner-city Driving

  • Insignia demonstration vehicle avoids collisions by braking and steering automatically
  • Smart intersection benefits city dwellers and climate, as well as motorists
  • UR:BAN research project for intelligent assistance and traffic management systems

Careful, pedestrian: The sensor technology of the Opel Insignia recognizes the obstacle quicker than the human eye and automatically initiates the evasive action.
Most driver assistance systems today focus on traffic situations outside urban areas. However, inner-city driving represents an even bigger challenge for modern drivers. There is so much happening at once and there are so many cars, trucks, buses, cyclists and pedestrians to keep an eye on. Higher safety in this complicated mobile environment is the goal of several assistance systems under development at Opel, which can warn the driver or briefly take control of the vehicle.

Evasive action: Opel Insignia recognizes the suddenly emerging obstacle and avoids a collision with automatic steering and braking.

Steering intervention: Opel Insignia reacts quicker to the dangerous situation than the driver and initiates the evasive action.
The Rüsselsheim-based car-maker is working on innovative driver-assistance systems as part of its role in the UR:BAN research project (user-oriented assistance systems and network management). The aim of the project, which is partly funded by the German government, is to provide drivers with forward-looking support, tailored and customized to driving in urban traffic. Thirty-one partners from the automotive industry, electronics and software companies, together with research institutes and local authorities, are developing intelligent assistance and cooperative traffic management systems.

Making inner-city driving safer

Especially in urban traffic, situations frequently occur where ordinary drivers may not react in time – cars emerging unexpectedly from parking lots, children unseen behind parked cars suddenly dashing into the road. Opel has built an Insignia demonstration vehicle that not only warns the driver of such dangers, but can also avoid collisions with vehicles and pedestrians by taking automatic evasive action through steering combined with braking.

The car is equipped with advanced camera and radar, and modified braking and steering systems, which can intervene in the control of the vehicle.


Another Opel demonstration vehicle shows the potential for further development of driver assistance systems through studying driver behavior. Using vehicle data, a front camera and a head-tracking camera, a specially developed algorithm analyzes driver behavior patterns to predict at an early stage, for example, whether the driver will perform a lane change maneuver or not. Such enhancements will optimize the performance of driver assistance systems such as side blind-zone alert by avoiding unnecessary warnings and driver irritation, helping to increase the acceptance of active safety features in the future.

Cars and infrastructure generate traffic recommendations sent via Wi-Fi

Intelligent Insignia: Opel flagship communicates with the traffic lights at the next intersection via Wi-Fi and informs the driver via the display. He can then adapt his speed accordingly.
In addition to avoiding collisions, Opel is also working on improving inner-city traffic conditions for the benefit of motorists, city dwellers and the climate. Opel has built a demonstration vehicle based on the Insignia Sports Tourer that shows how information sent via Wi-Fi from the traffic management infrastructure and other vehicles can generate recommendations for driving at intersections. The recommendations can help the driver approach the intersection smoothly, safely and without wasting fuel, and preferably without stopping. They are displayed via an advanced Man-Machine-Interface (MMI) using the Driver Info Center in the instrument panel, with secondary information shown in the central console.

Best recommendation: Future Opel vehicles will recognize the traffic situations and show the driver which lane they should take and how fast they should drive to reach the next set of traffic lights when they are green.
In order to improve inner-city driving Opel can call on years of experience in Car-to-X communications and research into automated driving. But despite rapid progress in assistance systems and cars that can drive automatically, the company remains committed to keeping the driving experience enjoyable. At Opel, driving is fun when it is neither boring nor over-demanding, and those are precisely the conditions the company’s driver assistance systems are aiming at.  

Wednesday, 14 May 2014

!NEW! Opel and UR:BAN: Making urban driving safer and more efficient

  • Cognitive assistance systems increase safety
  • Networking of vehicles and infrastructure in urban traffic
  • Urban-appropriate human-machine interaction

Smart intersection: Car-to-X information about the phasing of traffic lights and the traffic situation, sent to the car via Wi-Fi from the traffic management infrastructure and other vehicles, can help to generate recommendations for driving at intersections. Communicated to the driver via an intuitive human-machine-interface, this information can enable the driver to approach and cross the intersection comfortably, safely and energy-efficiently, preferably without stopping.
Driving a car in towns or cities means a coexistence of various road users and means of transport. It also means coping with a complex traffic situation and a high density of activities.

Expert teams at Opel developing innovative assistance systems to increase efficiency and safety in urban transport are participating in the UR:BAN research project (user oriented assistance systems and network management). The goal of the partly German government funded project is to provide drivers of passenger cars and commercial vehicles with forward-looking support, tailored and customized to driving in urban traffic. Thirty-one partners from the automotive industry, electronics and software companies, together with research institutes and local authorities, are developing intelligent assistance and cooperative traffic management systems.

The results and findings obtained so far were delivered today in the UR:BAN mid-term presentation at the Deutsche Zentrum für Luft - und Raumfahrt e.V. (DLR – German Center for Air and Space Travel) in Braunschweig, Germany.

The on-going, until 2016, UR:BAN research project, is divided into three pillars: "Cognitive Assistance", "Networked Traffic System", and "Human Factors in Traffic". "Opel is a partner in all three project pillars", explains Michael F. Ableson, Member of the Management Board and GM Europe Vice President, Engineering. "The focus is always on the human being. Teams of engineers, physicists and traffic psychologists are exploring assistance in difficult situations, the intelligent networking of vehicles and infrastructure, driver behavior, and the appropriate human-machine interaction for urban driving."

Cognitive Assistance - Collision avoidance by evading and braking

Especially in urban traffic, difficult situations can occur where the driver may not react in time. This is where the sub-project "collision avoidance by steering and braking" comes in. The Opel team is developing an advanced driver assistance system that takes advantage of the extra road space created by steering intervention to implement an additional situation-specific evasion. This system should help avoid collisions with vehicles and pedestrians in inner-city traffic.

At the mid-term presentation, Opel will show a demonstration vehicle equipped with advanced camera and radar, complemented by modified braking and steering systems, which allow an intervention in the control over the vehicle. Consideration of the driver’s reaction represents an important criterion for the optimization of the intervention strategy. In addition, Opel will integrate the latest findings of human-machine interaction and driver intention detection in the demonstration vehicle.

Networked Traffic System - Smart intersection

Information sent to the vehicle via Wi-Fi from the traffic management infrastructure and other vehicles can help to generate recommendations for driving at intersections, which an intuitive Human-Machine-Interaction  (HMI) can communicate to the driver. This could enable the driver to approach the intersection comfortably, safely and energy efficiently and preferably cross without stopping. This optimization and the further development of car-to-X technology specifically for driving in an urban environment is presented within the framework of UR:BAN.

HMI display in Opel Insignia - Optimized speed for approach he intersection comfortably, safely and energy efficiently and preferably cross without stopping.
In this part of the project, Opel is building on many years of experience in the field of car-to-X communication, as shown in projects such as the successfully completed SIM-TD field test. A networked traffic system and cooperative driving will enable the future step from the mere exchange of information to the joint action of all relevant actors.

Human Factors in Traffic – The appropriate HMI for urban driving

Within UR:BAN, an Opel team is working on improving technical systems. However, the information gained by the new technical systems can only improve driving and safety when drivers also know how to deal with the newly won information and how to react correctly. The focus of the sub-project “Human-Machine Interaction” (HMI) therefore is the way humans experience the behavior of driver assistance systems. In the foreground is interdisciplinary teamwork, with psychologists, engineers and physicists collaborating on the development and implementation of new technology elements to communicate with the driver.

Important questions addressed here include what information content do drivers need in order to follow a driving strategy; or what forms of representation motivate drivers to use a system; and how to avoid driver distraction. The experts test the influence of the assistance systems in various simulators and in real traffic, under controlled conditions.



The evaluation of the objective and subjective data provides the basis for the evaluation of system design and layout. Assistance systems that optimally support the user in his driving behavior are then integrated, in close cooperation with the other sub-projects.

Human Factors in Traffic - Behavior prediction and intention recognition

Understanding driver behavior can help to optimize the warning strategy of the man-machine interface of assistance systems. Opel’s target in the sub-project "behavior prediction and intention recognition" is therefore to develop an algorithm to detect driver intention using standard vehicle sensors. This allows a prediction of driver behavior in difficult driving situations.

The algorithm should identify, at an early stage, future avoidance maneuvers or emergency braking situations. Extensive testing and test data records show that, before maneuvers begin, specific behavior patterns and characteristics in the transverse and longitudinal guidance of the vehicle show up with all drivers. More than 50 volunteers completed a specific drive route under controlled conditions, where they encountered unexpected situations and the resultant maneuvers.

Based on the tests, the Opel team expects to predict whether the driver can mitigate an emergency situation through steering or braking. This information can help to adapt appropriate warning and intervention strategies beneficial for the sub-project "collision avoidance by evading and braking". If the system detects that the driver alone can mitigate a difficult situation, it can delay or suppress a driver warning.