Patent classifications
B60W2552/35
Information processing device, information processing system, program, and vehicle
An information processing device includes a control unit. The control unit acquires actual traveling information about a first vehicle that travels along a first traveling route, and generates control information for reproducing a traveling state of the first vehicle on the first traveling route, based on the acquired traveling information about the first vehicle.
METHOD FOR OPERATING A MOTOR VEHICLE HAVING A START-STOP SYSTEM, AND ASSOCIATED MOTOR VEHICLE
A method for operating a motor vehicle with a start/stop system (2) for a combustion engine (4) of a motor vehicle (1) with a device (3) for detecting an area ahead of the vehicle, wherein the start/stop system (2) stops the combustion engine (4) if a speed of the motor vehicle (1) depending on at least one signal relating to the driving dynamic of the vehicle (1) falls below a limit value, wherein the combustion engine (4) is not stopped if a road unevenness that requires decelerated driving over is detected in the area ahead of the vehicle by means of the device for detecting the area ahead of the vehicle.
Vehicle speed control system and method employing torque balancing
A method for operating a speed control system of a vehicle having a plurality of wheels is provided. The method comprises receiving one or more electrical signals representative of vehicle-related information. The method further comprises determining, based on the one or more electrical signals representative of vehicle-related information, that one or more of the wheels of the vehicle have overcome an obstacle or are about to overcome an obstacle and that therefore a reduction in an applied drive torque to one or more of the wheels of the vehicle by a powertrain subsystem (applied drive torque) will be required to maintain the speed of the vehicle at a target set-speed of the speed control system. The method still further comprises automatically commanding the application of a retarding torque to one or more of the wheels of the vehicle to counteract the effect of an overrun condition in the powertrain subsystem from increasing the speed of the vehicle. A system for controlling the speed of a vehicle comprising an electronic control unit configured to perform the above-described methodology is also provided.
METHOD FOR OPERATING AN OPERATOR CONTROL DEVICE OF A MOTOR VEHICLE
A detection device detects a position at which a touch-sensitive operator control unit is touched by an object by detecting a pressure (p.sub.m) which is applied to the touch-sensitive operator control unit by the object at the position. In addition, a speed (v.sub.m) and/or an acceleration (a.sub.m) of the motor vehicle is detected and a pressure threshold value (p.sub.s) is predefined as a function of speed (v.sub.m) and/or accelerations (a.sub.m) of the motor vehicle. The method determines whether the detected pressure (p.sub.m) is higher than the predefined pressure threshold value (p.sub.s) and triggers a function (F), assigned to the detected position, of the motor vehicle exclusively if the detected pressure (p.sub.m) is higher than the predefined pressure threshold value (p.sub.s).
Method And Apparatus For Providing Road And Vehicle Condition Diagnostics
A method of providing road and vehicle diagnostics. The method includes providing a vehicle axle system having a first axle half shaft housing, a second axle half shaft housing and a differential housing. Attached one or more of said housings is one or more tri-axis accelerometers. In communication with the accelerometers is one or more data processors operably configured to receive and analyze data from the accelerometers. An occurrence of one or more road events is determined by one or more spikes in the Z-direction of said data collected from said accelerometers. A depth of the road event is determined by a magnitude of said positive and negative changes in acceleration of said spike in said Z-direction and a length of road event is determined by a span of said one or more spikes in said Z-direction. Once the road event is identified the time and geographic location of the road event is identified.
METHOD, APPARATUS, AND SYSTEM FOR DETECTING A SLIPPERY ROAD CONDITION BASED ON A FRICTION MEASUREMENT
An approach is provided for detecting a slippery road condition based on a friction measurement. The approach, for example, involves receiving a traction loss of a vehicle traveling on the road link. The traction loss is detected using a first sensor. The approach also involves receiving a coefficient of friction between the vehicle and a road surface of the road link. The coefficient of friction is measured using a second sensor. The approach further involves fusing the traction loss with the coefficient of friction to detect the slippery road condition on the road link. The approach further involves providing the detected slippery road condition as an output.
AUTONOMOUS CONFIDENCE CONTROL
Signals are from a plurality of sources representing aspects of the vehicle and an environment surrounding the vehicle. An autonomous confidence factor is developed based on component confidence levels for at least one of the signals. Control of the vehicle is transitioned between levels of autonomous control based at least in part on the autonomous confidence factor.
SYSTEM, METHOD AND COMPUTER PROGRAM TO SUPPRESS VIBRATIONS IN A VEHICLE
An electronic system for controlling vibrations and/or inertial forces occurring at a plurality of areas of interest within an operating vehicle, the electronic device comprising circuitry configured to: receive input data comprising sensor data from one or more environment sensors (12) and/or one or more internal sensors (14); convert, by means of a machine learning system (18), the input data into actuator settings; and transmit the actuator settings to one or more actuators (20) to control vibrations and/or inertial forces occurring at each of the plurality of areas of interest within the vehicle.
METHOD FOR DETECTING BUMPY REGION OF ROAD SURFACE, ELECTRONIC DEVICE, STORAGE MEDIUM, AND VEHICLE
A method for detecting a bumpy region of a road surface, an electronic device, a storage medium and a vehicle, are provided, and relate to the field of computer technology. The method includes: acquiring driving state data of a vehicle and an orientation of the vehicle; determining, according to the driving state data, whether the vehicle passes through the bumpy region of the road surface; and in a case where the vehicle passes through the bumpy region of the road surface, determining a location of the bumpy region of the road surface according to the driving state data and the orientation of the vehicle.
Methods and system for starting an engine of a hybrid vehicle
Systems and methods for starting an engine of a hybrid vehicle are disclosed. The systems and methods disclosed may apply to series or parallel hybrid driveline configurations. In one example, engine cranking torque may be adjusted in response to a variety of operating conditions so that the engine may be started faster or slower.