Accurate flow-in measurement by triplex pump and continuous verification
US-2019055937-A1 · Feb 21, 2019 · US
US12018747B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12018747-B2 |
| Application number | US-202017768012-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 16, 2020 |
| Priority date | Oct 15, 2019 |
| Publication date | Jun 25, 2024 |
| Grant date | Jun 25, 2024 |
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A method for controlling a hydraulic unit with a rotational-speed-controlled pump, which, at an outlet side, provides at least two fluid flows in a manner switched by means of switching valves, for actuating at least one slave cylinder and for providing a volume flow which is controlled based on a rotational speed of the pump. To set the volume flow, an efficiency of the pump is calculated based on a comparison of a known slave cylinder volume of the at least one slave cylinder and a quantity of fluid of the pump for the filling of the at least one slave cylinder.
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The invention claimed is: 1. A method for controlling a hydraulic unit, comprising: switching, via a switching valve, between at least two fluid flows at an outlet side of a rotational-speed-controlled pump, wherein one of the fluid flows actuates at least one slave cylinder and the other of the fluid flows provides a volume flow, which is controlled based on a rotational speed of the pump, and calculating an efficiency of the pump based on a comparison of a known slave cylinder volume of the at least one slave cylinder and a quantity of fluid of the pump for the filling the at least one slave cylinder. 2. The method according to claim 1 , further comprising determining the quantity of fluid by integrating the one fluid flow over a filling time of the slave cylinder volume. 3. The method according to claim 2 , further comprising, during filling of the at least one slave cylinder, switching all other fluid flows of the pump off. 4. The method according to claim 2 , further comprising operating the pump at a constant rotational speed during the filling time. 5. The method according to claim 2 , further comprising integrating the one fluid flow along an actuation path for the at least one slave cylinder over the filling time between two positions of a slave cylinder piston. 6. The method according to claim 5 , further comprising calculating the slave cylinder volume from a piston base area and a path interval traveled between the two positions. 7. The method according to claim 1 , further comprising setting the volume flow according to the rotational speed and the efficiency of the pump. 8. The method according to claim 1 , further comprising determining the efficiency by means of a parking lock actuating slave cylinder. 9. A hydraulic unit comprising a pump, at least one slave cylinder, a switching valve and a control device, wherein the control device is programmed to: switch, via a switching valve, between at least to fluid flows at an outlet side of the pump, determine a quantity of fluid of the pump for filling the at least one slave cylinder based on a fluid flow for actuating the slave cylinder; and calculate an efficiency of the pump based on comparing a known slave cylinder volume of the at least one slave cylinder and the quantity of fluid. 10. A drivetrain, comprising a drive unit, a transmission, a separating clutch arranged between the drive unit and the transmission, a parking lock, and a hydraulic unit including a pump, at least two slave cylinders, a switching valve, and a control device, wherein one slave cylinder is engaged with the separating clutch and another slave cylinder is engaged with the parking lock, wherein the control device is programmed to: selectively actuate the separating clutch or the parking lock via the switching valve; determine a quantity of fluid of the pump for filling the slave cylinder engaged with the actuated one of the parking lock or separating clutch based on a fluid flow for actuating the respective slave cylinder; and calculate an efficiency of the pump based on comparing of a known slave cylinder volume of the respective slave cylinder and the quantity of fluid. 11. The hydraulic unit according to claim 9 , wherein the control device is further programmed to determine the quantity of fluid by integrating the fluid flow over a filling time of the slave cylinder volume. 12. The hydraulic unit according to claim 11 , wherein the control device is further programmed to integrate the fluid flow along an actuation path for the at least one slave cylinder over a filling time between two positions of a slave cylinder piston. 13. The hydraulic unit according to claim 11 , wherein the control device is further programmed to, during filling of the at least one slave cylinder, stop all other fluid flows of the pump. 14. The hydraulic unit according to claim 11 , wherein the control device is further programmed to operate the pump at a constant rotational speed during the filling time. 15. The hydraulic unit according to claim 9 , wherein the control device is further programmed to actuate the switching valve to provide the fluid flow for filling the at least one slave cylinder or a volume flow to a component, wherein the volume flow is based on a rotational speed of the pump. 16. The hydraulic unit according to claim 15 , wherein the control device is further programmed to set the volume flow according to the rotational speed and the efficiency of the pump.
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