B60G2401/176

Method for controlling an actuator

A method for controlling at least one actuator of a chassis of a motor vehicle, which travels over a subsurface is disclosed, wherein a height profile of the subsurface is detected, wherein it is analyzed for a section of the subsurface whether the height profile along said section has a value which deviates from a threshold value by a specified tolerance value, and wherein a regulating variable for activating the actuator is adjusted in consideration of the identified unevenness when the motor vehicle travels over the identified unevenness.

Roadway-crossing-anomaly detection system and method

A method for improving the safety and comfort of a vehicle driving over a railroad track, cattle guard, or the like. The method may include receiving, by a computer system, one or more inputs corresponding to one or more forward looking sensors. The computer system may also receive data characterizing a motion of the vehicle. The computer system may estimate, based on the one or more inputs and the data, a motion of a vehicle with respect to a railroad track, cattle guard, or the like extending across a road ahead of the vehicle. Accordingly, the computer system may change a suspension setting, steering setting, or the like of the vehicle to more safely or comfortably drive over the railroad track, cattle guard, or the like.

SWITCHABLE RIDE FREQUENCY FOR BIDIRECTIONAL VEHICLES
20240400099 · 2024-12-05 ·

A bidirectional vehicle may be capable of traveling in either of two directions and may change its direction of travel at any point for various reasons. In response to a change in the direction of travel, systems of a bidirectional vehicle may adjust one or more suspension components using various techniques to configure the vehicle with a higher ride frequency at the trailing axle than at the leading axle to enhance the ride quality and handling capabilities of the vehicle.

CONTROL SYSTEM AND METHOD FOR VEHICLE SUSPENSION
20250222735 · 2025-07-10 ·

A control system for a vehicle, comprising one or more controllers, configured to receive a collision warning signal, and modify one or more parameters of the vehicle suspension system in response to the received collision warning signal. In this way, the suspension may be automatically configured in a manner which assists the driver in carrying out a vehicle manoeuvre to avoid a potential collision.