IP Library Granted Patent US 12697941
Granted Patent B2
US 12697941 · App. 18/998,742 · Granted Aug 4, 2026

Method for controlling a cleaning system for motor vehicle components, cleaning system for motor vehicle components, and motor vehicle with a cleaning system for motor vehicle components

Inventors: Christian Behr (Bonn, DE); Rene Erich Muller (Bonn, DE)
Assignee: KAUTEX TEXTRON GmbH & Co. KG
B60S1/481B60S1/52B05B7/1254B60R1/06B60S1/50B60S1/54B60S1/56B60S1/60G01M3/26G05D16/2066
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Quick Facts
Patent No.
US 12697941
App. No.
18/998,742
Granted
Aug 4, 2026
Kind
B2
Abstract

A method for controlling a cleaning system for motor vehicle components includes a fluid delivery device, a pressure sensor for determining a pressure generated by the fluid delivery device, a fluid distribution device with at least one input port fluidly connected to the fluid delivery device and with at least two output ports fluidly connected to the input port, wherein each output port is adjustable between an open position and a closed position, at least two cleaning devices, each fluidly connected via a fluid line to a respective output port, and a control device, which is data-coupled to the fluid delivery device, the pressure sensor and the fluid distribution device for transmitting and/or receiving signals, the method achieving simplified control of the cleaning system and a reduction in the susceptibility of the cleaning system to errors.

Claims (32)

1 . A method of controlling a cleaning system for motor vehicle components, the cleaning system comprising:

a fluid delivery device;

a pressure sensor for determining a pressure generated by the fluid delivery device;

a fluid distribution device with at least one input port fluidly connected to the fluid delivery device and with at least two output port fluidly connected to the input port ( 31 ), wherein each output port is adjustable between an open position and a closed position;

at least two cleaning devices, each fluidly connected via a fluid line to a respective output port; and

a control device which is data-coupled to the fluid delivery device and the fluid distribution device for transmitting and/or receiving signals,

wherein the method comprises the following process steps:

determining a cleaning request for all cleaning devices;

determining a pressure setpoint for at least one first cleaning device;

adjusting the output ports of the fluid distribution device in their open position or in their closed position according to the cleaning request;

determining of an actual fluid pressure generated by the fluid delivery device;

determining a total flow rate delivered by the fluid delivery device based on the actual fluid pressure;

determining a first flow rate through the first cleaning device based on the total flow rate;

determining a first pressure loss in a line path via which the first cleaning device is fluidly connected to the fluid delivery device, taking into account the first flow rate;

determining a pressure control value based on the pressure setpoint and the first pressure loss; and

adjusting of the fluid delivery device in such a way that a fluid pressure provided by the fluid delivery device is changed in the direction of the pressure control value.

2 . The method according to claim 1 , wherein the method step of determining a total flow rate delivered by the fluid delivery device is carried out using power level information of the fluid delivery device.

3 . The method according to claim 1 , wherein the method step of determining a total flow rate delivered by the fluid delivery device is carried out using a characteristic diagram of the fluid delivery device which indicates the total flow rate which can be achieved by the fluid delivery device as a function of the fluid pressure for different power levels of the fluid delivery device.

4 . The method according to claim 1 , wherein the fluid delivery device is set to the lowest power level at which the pressure control value can be achieved by the fluid delivery device.

5 . The method according to claim 1 , wherein the method step of determining the first flow rate through the first cleaning device is also carried out based on switching positions of the output ports of the fluid distribution device.

6 . The method according to claim 1 , wherein the method step of determining the first flow rate through the first cleaning device is also carried out based on a first conversion table indicating the ratios of the flow rates through the line paths assigned to the respective cleaning devices as a function of fluid pressures provided by the fluid delivery device.

7 . The method according to claim 1 , wherein the method step of determining the first flow rate through the first cleaning device is also carried out based on at least one second conversion table, wherein in a second conversion table the percentage flow rates are determined by the line paths assigned to the respective cleaning devices for all permutations of switching positions of all output ports of the fluid distribution device for a fluid pressure provided by the fluid delivery device.

8 . The method according to claim 1 , wherein the method step of determining the first pressure loss is also carried out taking into account the total flow rate delivered by the fluid delivery device.

9 . The method according to claim 1 , wherein in the method step of determining at least one pressure setpoint for at least one first cleaning device, at least one further pressure setpoint for at least one second cleaning device is additionally determined and a value calculated on the basis of these determined pressure setpoints is adopted as the pressure setpoint.

10 . A cleaning system for motor vehicle components, comprising:

a fluid delivery device;

a pressure sensor for determining a pressure generated by the fluid delivery device;

a fluid distribution device with at least one input port fluidly connected to the fluid delivery device and with at least two output ports fluidly connected to the input port, wherein each output port is adjustable between an open position and a closed position;

at least two cleaning devices, each fluidly connected via a fluid line to a respective output port; and

a control device which is data-coupled to the fluid delivery device and the fluid distribution device for transmitting and/or receiving signals,

wherein the control device is designed to carry out the method according to claim 1 .

11 . A motor vehicle comprising at least two motor vehicle components and with a cleaning system for cleaning the motor vehicle components according to claim 10 .