Patent classifications
B60W40/112
SYSTEM AND METHOD FOR TESTING AN ABILITY OF AN AUTOMATED VEHICLE TO PASS A TRAFFIC CIRCLE WITHOUT TRAFFIC LIGHTS
Provided are a system and a method for testing an ability of an automated vehicle to pass a traffic circle without traffic lights. The system includes an automated vehicle, a traffic circle, a control center, an attitude sensor and a panorama camera. In the method, the control center receives a test request and then sends a driving command to drive the automated vehicle to enter the traffic circle to start the test. The attitude sensor obtains a tilt angle and sends it to the control center in real time. The panorama camera is configured to obtain a driving trajectory, a driving speed and a state of turn signals of the automated vehicle. The obtained information is compared to a standard by the control center to evaluate the ability of the automated vehicle to pass the traffic circle without traffic lights.
SYSTEM AND METHOD FOR TESTING AN ABILITY OF AN AUTOMATED VEHICLE TO PASS A TRAFFIC CIRCLE WITHOUT TRAFFIC LIGHTS
Provided are a system and a method for testing an ability of an automated vehicle to pass a traffic circle without traffic lights. The system includes an automated vehicle, a traffic circle, a control center, an attitude sensor and a panorama camera. In the method, the control center receives a test request and then sends a driving command to drive the automated vehicle to enter the traffic circle to start the test. The attitude sensor obtains a tilt angle and sends it to the control center in real time. The panorama camera is configured to obtain a driving trajectory, a driving speed and a state of turn signals of the automated vehicle. The obtained information is compared to a standard by the control center to evaluate the ability of the automated vehicle to pass the traffic circle without traffic lights.
Apparatus for compensating vehicle pulls by controlling vehicle height, and method thereof
A vehicle height adjustment control apparatus is provided for compensating for vehicle pulls including a recognition device that recognizes that a vehicle is driven straight, a determination device that determines whether the vehicle pulls of the vehicle occur, in response to recognizing that the vehicle is driven straight, and a controller that generates a warning message and calculates compensation height control information of the vehicle in response to determining that the vehicle pulls occur.
Apparatus for compensating vehicle pulls by controlling vehicle height, and method thereof
A vehicle height adjustment control apparatus is provided for compensating for vehicle pulls including a recognition device that recognizes that a vehicle is driven straight, a determination device that determines whether the vehicle pulls of the vehicle occur, in response to recognizing that the vehicle is driven straight, and a controller that generates a warning message and calculates compensation height control information of the vehicle in response to determining that the vehicle pulls occur.
Method for operating a two-wheeled vehicle, a device, and a two-wheeled vehicle
A method is described for operating a two-wheeled vehicle, in particular a motorcycle, on a roadway, the method including the following steps: ascertaining an instantaneous coefficient of friction between at least one wheel of the two-wheeled vehicle and the roadway; calculating a critical tilt angle of the two-wheeled vehicle as a function of at least the instantaneous coefficient of friction; detecting an instantaneous tilt angle of the two-wheeled vehicle; determining the distance between the instantaneous tilt angle and the critical tilt angle; and outputting an item of information to the driver as a function of the determined distance.
Method for operating a two-wheeled vehicle, a device, and a two-wheeled vehicle
A method is described for operating a two-wheeled vehicle, in particular a motorcycle, on a roadway, the method including the following steps: ascertaining an instantaneous coefficient of friction between at least one wheel of the two-wheeled vehicle and the roadway; calculating a critical tilt angle of the two-wheeled vehicle as a function of at least the instantaneous coefficient of friction; detecting an instantaneous tilt angle of the two-wheeled vehicle; determining the distance between the instantaneous tilt angle and the critical tilt angle; and outputting an item of information to the driver as a function of the determined distance.
ELECTRIC SUSPENSION DEVICE
Provided is an electric suspension device including an electromagnetic actuator that is provided between a body and wheel of a vehicle and generates damping force for damping vibration of the body. It includes: an information acquisition unit that acquires information on the vehicle's sprung speed, pitch rate, and roll rate; a bounce target value computation unit that computes a bounce target value for controlling the vehicle's bounce orientation based on the sprung speed; a pitch target value computation unit that computes a pitch target value for controlling the vehicle's pitch orientation based on the pitch rate; a roll target value computation unit that computes a roll target value for controlling the vehicle's roll orientation based on the roll rate; and a driving control unit that controls driving of the actuator with a control target load which is based on a sum of the bounce, pitch, and roll target values.
METHOD AND SYSTEM FOR ESTIMATING SURFACE ROUGHNESS OF GROUND FOR AN OFF-ROAD VEHICLE TO CONTROL GROUND SPEED
A method and system for estimating surface roughness of a ground for an off-road vehicle to control ground speed comprises detecting motion data of an off-road vehicle traversing a field or work site during a sampling interval. A pitch sensor is adapted to detect pitch data of the off-road vehicle for the sampling interval to obtain a pitch acceleration. A roll sensor is adapted to detect roll data of the off-road vehicle for the sampling interval to obtain a roll acceleration. An electronic data processor or surface roughness index module determines or estimates a surface roughness index based on the detected motion data, pitch data and roll data for the sampling interval. The surface roughness index can be displayed on the graphical display to a user or operator of the vehicle, or applied to control or execute a ground speed setting of the vehicle.
METHOD AND SYSTEM FOR ESTIMATING SURFACE ROUGHNESS OF GROUND FOR AN OFF-ROAD VEHICLE TO CONTROL GROUND SPEED
A method and system for estimating surface roughness of a ground for an off-road vehicle to control ground speed comprises detecting motion data of an off-road vehicle traversing a field or work site during a sampling interval. A pitch sensor is adapted to detect pitch data of the off-road vehicle for the sampling interval to obtain a pitch acceleration. A roll sensor is adapted to detect roll data of the off-road vehicle for the sampling interval to obtain a roll acceleration. An electronic data processor or surface roughness index module determines or estimates a surface roughness index based on the detected motion data, pitch data and roll data for the sampling interval. The surface roughness index can be displayed on the graphical display to a user or operator of the vehicle, or applied to control or execute a ground speed setting of the vehicle.
METHOD AND SYSTEM FOR DETECTION OF ROLL SENSOR BIAS
A roll sensor is configured to detect a first roll angle at a corresponding first point of a path plan of a vehicle, or its implement, based on the estimated current position. A roll sensor is configured to detect a second roll angle at a corresponding second point of a path plan of a vehicle, or its implement, based on the estimated current position. A data processor is configured to determine a roll angle delta or difference between the first roll angle and the second roll angle. If the roll angle delta is greater than a reference roll value, the roll angle delta is evaluated over an evaluation period. For example, if the roll angle is greater than the reference roll value for equal to or greater than a target percentage or target ratio for the evaluation period, the data processor is configured to designate the roll angle sensor for possible recalibration.