B60R11/00

EQUIPMENT COMPONENT FOR A VEHICLE
20230211737 · 2023-07-06 ·

An equipment part with a base and at least one pivot device, which is pivotable about a pivot axis relative to the base, with a drive device with which the pivot device is pivotable between a first position and a second position. The pivot device includes a base part and an extension part, wherein the extension part is guided movably relative to the base part in a translatory manner between a primary position and a secondary position. Associated with the base is a first support surface that engages with a second support surface, which is associated with the extension part, and rolls on this during the pivoting movement between the first position and the second position, wherein the extension part moves between the primary and the secondary position.

EQUIPMENT COMPONENT FOR A VEHICLE
20230211737 · 2023-07-06 ·

An equipment part with a base and at least one pivot device, which is pivotable about a pivot axis relative to the base, with a drive device with which the pivot device is pivotable between a first position and a second position. The pivot device includes a base part and an extension part, wherein the extension part is guided movably relative to the base part in a translatory manner between a primary position and a secondary position. Associated with the base is a first support surface that engages with a second support surface, which is associated with the extension part, and rolls on this during the pivoting movement between the first position and the second position, wherein the extension part moves between the primary and the secondary position.

Automotive directional dark area pathway illumination
11548433 · 2023-01-10 · ·

A system for illuminating an area around a motor vehicle, having: a pair of radar systems and a pair of lighting systems mounted on the motor vehicle; a vehicle level sensor configured to detect changes in pitch or roll of the motor vehicle; and an illumination control system in the motor vehicle. The illumination control system includes a key fob communication system and determines the location of a person by detecting the person approaching the motor vehicle by detecting the presence of the key fob while also detecting the location of the person with a radar system mounted on the vehicle. Next, when the location of the person has been determined, the illumination system lights up the area the person is standing while following movement of the person with the radar system to continuously re-directing the illumination towards the location on the ground where the person is standing as the person moves.

Automotive directional dark area pathway illumination
11548433 · 2023-01-10 · ·

A system for illuminating an area around a motor vehicle, having: a pair of radar systems and a pair of lighting systems mounted on the motor vehicle; a vehicle level sensor configured to detect changes in pitch or roll of the motor vehicle; and an illumination control system in the motor vehicle. The illumination control system includes a key fob communication system and determines the location of a person by detecting the person approaching the motor vehicle by detecting the presence of the key fob while also detecting the location of the person with a radar system mounted on the vehicle. Next, when the location of the person has been determined, the illumination system lights up the area the person is standing while following movement of the person with the radar system to continuously re-directing the illumination towards the location on the ground where the person is standing as the person moves.

Sensor cleaning system

A sensor lens cleaning system for a cylindrical sensor having a sensor lens surface includes an extended member having a first end coupled to the cylindrical sensor and a second end opposite the first end, a nozzle coupled to the second end of the extended member, an actuator coupled to the extended member and configured to control the extended member, and a controller in electronic communication with the actuator and configured to communicate an actuator control signal to the actuator. The nozzle generates an air stream directed at the sensor lens surface.

Sensor cleaning system

A sensor lens cleaning system for a cylindrical sensor having a sensor lens surface includes an extended member having a first end coupled to the cylindrical sensor and a second end opposite the first end, a nozzle coupled to the second end of the extended member, an actuator coupled to the extended member and configured to control the extended member, and a controller in electronic communication with the actuator and configured to communicate an actuator control signal to the actuator. The nozzle generates an air stream directed at the sensor lens surface.

SYSTEMS AND METHODS FOR SCANNING A REGION OF INTEREST USING A LIGHT DETECTION AND RANGING SCANNER

A light detection and ranging (LiDAR) system for scanning and reconfiguring regions-of-interest (ROIs) is provided. The system comprises a LiDAR scanner configured to scan a current set of ROIs within a field-of-view (FOV), and a LiDAR perception sub-system coupled to the LiDAR scanner. The LIDAR perception sub-system includes instructions for: obtaining sensor data provided at least by the LiDAR scanner; deriving one or more current perceptions based on the sensor data; obtaining one or more predefined perception policies; determining one or more policy-based ROI candidates; determining whether an ROI reconfiguration request is provided, based on a vehicle perception decision; determining one or more request-based ROI candidates based on the ROI reconfiguration request; and determining a next set of ROIs for the LiDAR scanner to scan based on the current set of ROIs, and one or both of the one or more policy-based ROI candidates and the one or more request-based ROI candidates.

SYSTEMS AND METHODS FOR SCANNING A REGION OF INTEREST USING A LIGHT DETECTION AND RANGING SCANNER

A light detection and ranging (LiDAR) system for scanning and reconfiguring regions-of-interest (ROIs) is provided. The system comprises a LiDAR scanner configured to scan a current set of ROIs within a field-of-view (FOV), and a LiDAR perception sub-system coupled to the LiDAR scanner. The LIDAR perception sub-system includes instructions for: obtaining sensor data provided at least by the LiDAR scanner; deriving one or more current perceptions based on the sensor data; obtaining one or more predefined perception policies; determining one or more policy-based ROI candidates; determining whether an ROI reconfiguration request is provided, based on a vehicle perception decision; determining one or more request-based ROI candidates based on the ROI reconfiguration request; and determining a next set of ROIs for the LiDAR scanner to scan based on the current set of ROIs, and one or both of the one or more policy-based ROI candidates and the one or more request-based ROI candidates.

Modular sensor assembly for vehicles

In one embodiment, a modular sensor assembly configured for mounting on a vehicle includes a first set of sensors and a second set of sensors. The modular sensor assembly includes a coordinate frame baseplate including a continuous surface, and sensor mounting elements coupled to the continuous surface for mounting the first set of sensors at a first height. The coordinate frame baseplate includes a sensor platform configured for mounting the second set of sensors at a second height. The first set of sensors and the second set of sensors are coupled to the coordinate frame baseplate so as to impart a common coordinate frame for the first set of sensors mounted at the first height and the second set of sensors mounted at the second height. The modular sensor assembly includes a bridging support structure coupled to the coordinate frame baseplate and capable of being mounted on a vehicle.

Accessory mounting frame for a vehicle seat base

An accessory mounting frame is attachable to various vehicle seat bases and allows for connection of a vehicle accessory when the vehicle seat is removed. The accessory mounting frame includes a first seat attachment projection, a second seat attachment projection, and an accessory fastener coupled to the first seat attachment projection and the second seat attachment projection. The first seat attachment projection has a first bearing surface that is configured to bear against a first portion of the vehicle seat base. The second seat attachment projection has a second bearing surface that is configured to bear against a second portion of the vehicle seat base. The first seat attachment projection and the second seat attachment projection are adjustable with respect to the accessory fastener.