B60T8/4059

SELECTIVE HIGH FLOW PRESSURE SUPPLY FOR VEHICLE STABILITY CONTROL SYSTEMS WITHOUT HIGH PRESSURE ACCUMULATORS
20180009422 · 2018-01-11 ·

An electronic vehicle stability control system includes a hydraulic braking circuit having a plurality of electronically controlled valves, a plurality of pumps, a motor that operates the plurality of pumps, and a suction throttle valve that throttles flow of hydraulic fluid to at least one of the plurality of pumps. The electronic vehicle stability control system also includes a controller coupled to the hydraulic braking circuit that controls the plurality of electronically controlled valves.

BRAKE SYSTEMS INTEGRATED INTO VEHICLE CORNER MODULES AND METHODS OF USE THEREOF

A Vehicle Corner Module (VCM) based brake system, which includes a brake actuator, adapted to regulate the rotation rate of the wheel assembled to the VCM, a fluid-based brake power source, fluidly connected to the brake actuator and adapted to provide pressurized brake fluid for operating the brake actuator, and a brake-control-circuit, functionally associated with the brake actuator and with the brake power source, and adapted to provide functional inputs to the brake actuator based on a target rotation rate profile desired for a wheel mounted on the VCM. All mechanical components of the VCM-based brake system are disposed within the VCM. The VCM-based brake system and the vehicle platform are not in fluid communication with each other.

Hydraulic braking system and method

A braking system including a brake actuator, a control valve, a control assembly, and at least one pressure sensor. The control valve is disposed to direct hydraulic fluid to the brake actuator at a rate corresponding to a magnitude of a control signal. The control assembly includes a mixed-mode control system. The at least one pressure sensor is configured to measure a pressure of the hydraulic fluid to the brake actuator. The control assembly is configured to determine a position of the brake actuator. The mixed-mode control system is configured to determine a position command and a pressure command. The mixed-mode control system is configured to adjust the magnitude of the control signal based on at least one of the position command and the pressure command so as to reposition the brake actuator from a first position to a second position.

Method for operating a brake system of a motor vehicle, brake system, motor vehicle
11524668 · 2022-12-13 · ·

A method is provided for operating a motor vehicle brake system that includes an actuatable brake master cylinder, a hydraulic brake booster, and at least one brake circuit that has at least one hydraulically actuatable wheel brake and at least one hydraulic-pressure generator driven by electric motor. The method includes monitoring a state of actuation of the brake master cylinder is monitored, and, upon detecting a maximum state of actuation, activating the hydraulic-pressure generator to increase the hydraulic pressure adjusted by the brake master cylinder in the brake circuit.

METHOD FOR CONTROLLING AN ELECTRONICALLY SLIP-CONTROLLABLE EXTERNALLY POWERED BRAKE SYSTEM, IN PARTICULAR FOR A MOTOR VEHICLE, AND ELECTRONICALLY SLIP-CONTROLLABLE EXTERNALLY POWERED BRAKE SYSTEM, IN PARTICULAR FOR A MOTOR VEHICLE
20220371564 · 2022-11-24 ·

A method for controlling a brake system. The brake system includes an actuating device, a master brake cylinder, a brake circuit, a wheel brake, and a brake pressure generator. The brake pressure generator and the master brake cylinder are capable of being contacted, parallel to one another, to the brake circuit. A pressure generator control valve controls a first pressure medium connection between the brake pressure generator and the brake circuit. A brake circuit control valve controls a second pressure medium connection between the brake circuit and the master brake cylinder. The brake system is operated in an operating state during which the pressure generator control valve assumes an open position without a brake pressure prevailing in the brake circuit and without a buildup of brake pressure being carried out. During this operating state, the brake circuit control valve is controlled to assume an open position.

BRAKE SYSTEMS INTEGRATED INTO VEHICLE CORNER MODULES AND METHODS OF USE THEREOF

A Vehicle Corner Module (VCM) based brake system, which includes a brake actuator, adapted to regulate the rotation rate of the wheel assembled to the VCM, a fluid-based brake power source, fluidly connected to the brake actuator and adapted to provide pressurized brake fluid for operating the brake actuator, and a brake-control-circuit, functionally associated with the brake actuator and with the brake power source, and adapted to provide functional inputs to the brake actuator based on a target rotation rate profile desired for a wheel mounted on the VCM. All mechanical components of the VCM-based brake system are disposed within the VCM. The VCM-based brake system and the vehicle platform are not in fluid communication with each other.

Electronically Slip-Controlled Vehicle Brake System
20170291589 · 2017-10-12 ·

A hydraulic vehicle brake system includes at least one brake circuit, at least one wheel brake, and a pressure-generating unit. The pressure-generating unit is configured to supply the wheel brake with pressure medium under brake pressure, or to adapt the brake pressure to slip conditions of a wheel assigned to the wheel brake. A feed volume of the pressure medium of the pressure-generating unit is controllable according to a pressure medium volume demand. The pressure-generating unit includes at least two pumps that feed into a common pressure line, and an electronically actuated mechanism configured to control a pressure medium connection from the pressure line and a suction side of at least one of the pumps as a function of the demand.

VEHICLE BRAKE HYDRAULIC PRESSURE CONTROL APPARATUS
20170274882 · 2017-09-28 ·

One embodiment provides a vehicle brake hydraulic pressure control apparatus. The apparatus includes an inlet valve; an outlet valve; a pump; a motor and a control unit. The control unit executes an antilock brake control and a control to return a brake fluid accumulated in a reservoir due to a pressure decreasing control in the antilock brake control to a hydraulic pressure source by driving the motor. The control unit includes: a target delivery amount calculator configured to calculate a target delivery amount which corresponds to an amount of brake fluid discharged from the reservoir per a predetermined time; a temperature information fetcher configured to acquire a temperature of the brake fluid; and a drive signal determinator configured to determine a drive signal of the motor based on the target delivery amount and the temperature of the brake fluid.

METHOD FOR DETERMINING A POSITION AND/OR CHANGE IN POSITION OF A HYDRAULIC PUMP OF A MOTOR VEHICLE BRAKE SYSTEM AND MOTOR VEHICLE BRAKE SYSTEM

A method for determining a position of a hydraulic pump includes determining the position and/or change of position of the hydraulic pump based on a current and/or voltage measurement signal as well as a frequency of the measurement signal. The method also includes utilizing the determined position and/or changing of position of the hydrualic pump for actuating the electrical machine.

VEHICLE BRAKE SYSTEM AND AGRICULTURAL TRACTOR
20220024431 · 2022-01-27 ·

A vehicle brake system includes a first main cylinder with a first main cylinder connection and a first actuating device with a first actuating connection. The first main cylinder connection is in flow-connection to the first actuating connection, and the first actuating device is operable with the first main cylinder. A first brake circuit is provided between a pump and a first wheel cylinder, where the pump in the first brake circuit is operable to generate pressure and move a fluid within the first brake circuit. A first valve device is provided in the first brake circuit where the first valve device is movable between a first configuration in which a flow connection is produced between the pump and the first wheel cylinder, and a second configuration in which a flow connection between the pump and the first wheel cylinder is prevented.