Patent classifications
B60T2201/03
Systems and methods of sensor data fusion
Systems and methods of sensor data fusion including sensor data capture, curation, linking, fusion, inference, and validation. The systems and methods described herein reduce computational demand and processing time by curating data and calculating conditional entropy. The system is operable to fuse data from a plurality of sensor types. A computer processor optionally stores fused sensor data that the system validates above a mathematical threshold.
Systems and methods of sensor data fusion
Systems and methods of sensor data fusion including sensor data capture, curation, linking, fusion, inference, and validation. The systems and methods described herein reduce computational demand and processing time by curating data and calculating conditional entropy. The system is operable to fuse data from a plurality of sensor types. A computer processor optionally stores fused sensor data that the system validates above a mathematical threshold.
SYSTEMS AND METHODS OF SENSOR DATA FUSION
Systems and methods of sensor data fusion including sensor data capture, curation, linking, fusion, inference, and validation. The systems and methods described herein reduce computational demand and processing time by curating data and calculating conditional entropy. The system is operable to fuse data from a plurality of sensor types. A computer processor optionally stores fused sensor data that the system validates above a mathematical threshold.
VEHICLE AND BRAKING CONTROLLER
A vehicle includes a braking device and a control device. The braking device includes a brake disk and a brake pad, and is configured to brake the vehicle by bringing the brake disk and the brake pad into contact. The brake disk is attached to a wheel of the vehicle, and the brake pad is configured to come into contact with the brake disk. The control device is configured to acquire a temperature of the braking device and configured to, when the temperature of the braking device is lower than a threshold temperature, bring the braking device into operation on the occasion of acceleration of the vehicle.
Systems and methods of sensor data fusion
Systems and methods of sensor data fusion including sensor data capture, curation, linking, fusion, inference, and validation. The systems and methods described herein reduce computational demand and processing time by curating data and calculating conditional entropy. The system is operable to fuse data from a plurality of sensor types. A computer processor optionally stores fused sensor data that the system validates above a mathematical threshold.
Systems and methods of sensor data fusion
Systems and methods of sensor data fusion including sensor data capture, curation, linking, fusion, inference, and validation. The systems and methods described herein reduce computational demand and processing time by curating data and calculating conditional entropy. The system is operable to fuse data from a plurality of sensor types. A computer processor optionally stores fused sensor data that the system validates above a mathematical threshold.
Systems and methods of sensor data fusion
Systems and methods of sensor data fusion including sensor data capture, curation, linking, fusion, inference, and validation. The systems and methods described herein reduce computational demand and processing time by curating data and calculating conditional entropy. The system is operable to fuse data from a plurality of sensor types. A computer processor optionally stores fused sensor data that the system validates above a mathematical threshold.
System and Method for Control of Service Braking in a Trailer of a Combination Vehicle
A system for controlling service braking in a trailer of a combination vehicle includes an electropneumatic valve module having a supply port in fluid communication with a fluid source and a delivery port configured to deliver a control pressure to the trailer for actuating a service brake on the trailer. A brake controller receives a handshake signal from an advanced drive assistance system (ADAS) controller on the vehicle and determines, responsive to the handshake signal, whether the brake controller will operate in a basic or enhanced mode. Upon receipt of a brake request signal from the ADAS controller, the brake controller transmits a first or a second control signal to the valve assembly, depending on whether the brake controller is operating in the basic or enhanced mode, causing the valve assembly to deliver the control pressure with a first characteristic or a second characteristic, different from the first characteristic.
Systems and methods of sensor data fusion
Systems and methods of sensor data fusion including sensor data capture, curation, linking, fusion, inference, and validation. The systems and methods described herein reduce computational demand and processing time by curating data and calculating conditional entropy. The system is operable to fuse data from a plurality of sensor types. A computer processor optionally stores fused sensor data that the system validates above a mathematical threshold.
Systems and methods of sensor data fusion
Systems and methods of sensor data fusion including sensor data capture, curation, linking, fusion, inference, and validation. The systems and methods described herein reduce computational demand and processing time by curating data and calculating conditional entropy. The system is operable to fuse data from a plurality of sensor types. A computer processor optionally stores fused sensor data that the system validates above a mathematical threshold.