Vehicle brake system and method for operating a brake system
A brake system includes a brake command that is electronically transmittable to the brake system. It comprises a first and second electromechanical pressure generating units, that can implement the brake command and that are fluidically connected with one hydraulic brake circuit. Multiple actuator valves are assigned respectively to one brake actuator at a vehicle wheel and can either be pressurized or de-pressurized. Both pressure generating units are designed to supply sufficient brake pressure to actuate all brake actuators. During normal operation the first pressure generating unit supplies the requested brake pressure up to a normal maximal value. Additionally, potential peak brake pressures, that exceed the normal maximum value, are supplied by the second pressure generating unit. In event of failure of the second pressure generating unit the entire brake pressure is supplied by the first pressure generating unit, whereby the brake pressure is limited to the normal maximum value, and in an emergency mode when the first pressure generating unit fails the entire brake pressure in the brake circuit will be supplied via the second pressure generating unit, whereby the brake pressure is limited to the normal maximum value or an emergency maximum value.
1 . A brake system of a vehicle, comprising:
an electronic data interface for transmitting a brake command, wherein the brake command can be transmitted exclusively electronically to the brake system,
a first and a second electromechanical pressure generating unit, each having a separate power supply and a functionally separate control unit, the first and second pressure generating units being hydraulically connected to a hydraulic brake circuit,
a plurality of actuator valves, each of which is assigned to a brake actuator on a vehicle wheel and each of which is configured to selectively pressurize and depressurize the brake,
wherein each of the pressure generating units is designed to be able to apply sufficient braking pressure to actuate all brake actuators,
wherein the actuator valves are designed to be controlled by either the first control unit or the second control unit,
wherein the brake circuit includes two brake lines extending from the second pressure generating unit to the actuator valves and fluidically connected by a first connecting line, into which a fluid line from the first pressure generating unit opens,
wherein switchable valves are arranged in the first connecting line between the opening and the brake lines, each switchable valve, in a normal operation, is switched to allow fluid flow from the first pressure generating unit to the brake lines.
2 . The brake system according to claim 1 , wherein the brake system is designed such that the second pressure generating unit can support the first pressure generating unit in an assist mode to increase an overall pressure in the brake circuit.
3 . The brake system according to claim 1 , wherein the switchable valves are configured, in an emergency operation in which the first pressure generating unit has failed, to be switchable to prevent fluid flow from the first pressure generating unit to the brake lines.
4 . The brake system according to claim 1 , wherein the switchable valves arranged in the first connecting line are designed to be actuated by each of the first control unit and the second control unit.
5 . The brake system according to claim 1 , wherein the first pressure generating unit is of a plunger arrangement and the second pressure generating unit is formed by at least one pump.
6 . The brake system according to claim 1 , wherein the second pressure generating unit is fluidically directly connected to the actuator valves.
7 . The brake system according to claim 1 , wherein the second pressure generating unit is arranged to control two brake circuits via two brake lines, in each of which at least two of the actuator valves are arranged.
8 . The brake system according to claim 2 , wherein the switchable valves are configured in an emergency operation, in which the first pressure generating unit has failed, to be switchable to prevent fluid flow from the first pressure generating unit to the brake lines.
9 . The brake system according to claim 8 , wherein a second connecting line is provided as a parallel circuit to the first connecting line, wherein a fluid line from the first pressure generating unit opens into the second connecting line, wherein switchable valves are arranged in the second connecting line between an opening and the brake lines, respectively, which each, in normal operation, is switched to allow fluid flow from the first pressure generating unit to the brake lines, and in an emergency operation, in which the pressure generating unit has failed, can be switched to prevent fluid flow from the first pressure generating unit to the brake lines.
10 . The brake system according to claim 1 , wherein the switchable valves arranged in the second connecting line are designed to be actuated only by the second control.
11 . The brake system according to claim 5 , wherein the second pressure generating unit is part of an anti-blocking system of the brake system.
12 . The method for operating a brake system as claimed in claim 1 , comprising:
during normal operation the first pressure generating unit generates a desired brake pressure in the brake circuit up to a normal-peak-value, and any additional potential peak-brake pressure, which exceeds the normal-peak-value, is supplied by the second pressure generating unit,
during an emergency operation, when the second pressure generating unit fails, the entire brake pressure is generated by the first pressure generating unit, wherein the brake pressure is limited to the normal-peak-value, and
during an emergency operation, when the first pressure generating unit fails, the entire brake pressure in the brake circuit is generated by the second pressure generating unit, wherein the brake pressure is limited to the normal-peak-value or a lower emergency-peak-value, which is the maximum pressure the second pressure generating unit can safely provide.
13 . A brake system of a vehicle, comprising:
an electronic data interface for transmitting a brake command,
wherein the brake command can be transmitted exclusively electronically to the brake system, and
first and second electromechanical pressure generating units which can implement the brake command and which are hydraulically connected to a hydraulic brake circuit,
wherein the brake system has a plurality of actuator valves, each of which is assigned to a brake actuator on a vehicle wheel and each of which can selectively pressurize and depressurize the brake,
wherein each of the first and second pressure generating units is designed to be able to apply sufficient braking pressure to actuate all brake actuators,
wherein the brake circuit includes two brake lines which extend from the second pressure generating unit to the actuator valves and which are fluidically connected by a first connecting line, into which a fluid line from the first pressure generating unit opens, and
wherein switchable valves are arranged in the first connecting line between an opening and the brake lines, respectively, which each, in normal operation, is switched to allow fluid flow from the first pressure generating unit to the brake lines and, in an emergency operation, in which the first pressure generating unit has failed, can be switched to prevent fluid flow from the first pressure generating unit to the brake lines wherein a second connecting line is provided as a parallel circuit to the first connecting line, wherein a fluid line from the first pressure generating unit opens into the second connecting line, wherein switchable valves are arranged in the second connecting line between an opening and the brake lines, respectively, which each, in normal operation, is switched to allow fluid flow from the first pressure generating unit to the brake lines, and in an emergency operation, in which the pressure generating unit has failed, can be switched to prevent fluid flow from the first pressure generating unit to the brake lines.
14 . The brake system according to claim 13 , wherein the first pressure generating unit is a plunger arrangement and the second pressure generating unit is formed by at least one pump.
15 . The brake system according to claim 13 , wherein the second pressure generating unit is fluidically directly connected to the actuator valves.