IP Library Granted Patent US 8,499,616
Granted Patent B2
US 8,499,616 · App. 12/814,303 · Granted Aug 6, 2013

Fault detection and mitigation in hybrid drive system

Inventors: Michael Anthony Stoner (Eden Prairie, MN); Thomas D. Hawkins (Eden Prairie, MN); Douglas D. Simpson (Waconia, MN)
Assignee: ADC Telecommunications, Inc.
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 8,499,616
App. No.
12/814,303
Granted
Aug 6, 2013
Kind
B2
Abstract

Fault detection and response systems and processes can be used for pumps, e.g., pump/motors used in hybrid vehicles. The fault detection systems determine when certain operating conditions, which may affect the proper operation of the system, occur. The response systems take appropriate action based on which fault conditions are triggered. Example fault detection systems and processes include detection systems for different types of leaks, sensor malfunctions, or operation errors.

Claims (63)

1. A detection method for detecting a gas leak in a pump system having an accumulator spaced from a reservoir, the accumulator including a gas chamber separated from a liquid chamber, the method comprising:

obtaining a fluid temperature of a fluid to be transferred between the reservoir and the liquid chamber of the accumulator;

obtaining a fluid pressure of the fluid;

estimating a gas pressure based on the obtained fluid temperature and the obtained fluid pressure;

comparing the estimated gas pressure to a first threshold;

triggering a first fault if the estimated gas pressure is below the first threshold

calculating a running average of the estimated gas pressure;

comparing the running average to a second threshold; and

triggering a second fault if the running average is less than the second threshold.

2. The detection method of claim 1 , wherein the second threshold is higher than the first threshold.

3. The detection method of claim 1 , further comprising calculating what the estimated gas pressure would be at a predetermined temperature based on the obtained fluid pressure and the obtained fluid temperature.

4. The detection method of claim 1 , wherein obtaining the fluid temperature comprises obtaining the fluid temperature from a temperature sensor at the reservoir.

5. The detection method of claim 1 , wherein obtaining the fluid pressure comprises obtaining the fluid pressure from a pressure sensor at the accumulator.

6. The detection method of claim 1 , further comprising:

obtaining a pump case temperature;

obtaining a fluid reservoir temperature;

comparing the pump case temperature with the fluid reservoir temperature; and

determining a temperature difference between the pump case temperature and the fluid reservoir temperature.

7. A detection method for detecting an oil leak in a pump system having an accumulator spaced from a reservoir, the accumulator including a gas chamber separated from a liquid chamber, the method comprising:

obtaining a data signal representing a fluid temperature of a fluid at the reservoir;

obtaining a data signal representing a fluid pressure of the fluid at the accumulator;

estimating a level of the fluid in the reservoir based on the obtained fluid temperature and the obtained fluid pressure;

obtaining a data signal representing an actual level of the fluid at the reservoir;

comparing the estimated level of the fluid to the actual level of the fluid;

triggering a fault when the actual level is different than the estimated level more than a threshold amount.

8. The detection method of claim 7 , wherein the pump system is operably connected to a vehicle, and wherein the detection method further comprises:

determining whether vehicle is moving; and

adjusting the threshold amount based on whether or not the vehicle is determined to be moving.

9. The detection method of claim 8 , wherein adjusting the threshold amount comprises lowering the threshold amount when the vehicle is stationary.

10. The detection method of claim 8 , wherein the threshold amount is calculated based at least partially on tolerance of sensors providing the data signals.

11. A detection method for detecting a gas leak in a pump system having an accumulator spaced from a reservoir, the accumulator including a gas chamber separated from a liquid chamber, the method comprising:

obtaining a fluid temperature of a fluid to be transferred between the reservoir and the liquid chamber of the accumulator;

obtaining a fluid pressure of the fluid;

estimating a gas pressure based on the obtained fluid temperature and the obtained fluid pressure;

calculating a value of what the estimated gas pressure would be at a predetermined temperature based on the obtained fluid pressure and the obtained fluid temperature;

comparing the value of what the estimated gas pressure would be at the predetermined temperature to a first threshold;

triggering a first fault if the value of what the estimated gas pressure would be at the predetermined temperature is below the first threshold.

12. The detection method of claim 11 , wherein obtaining the fluid temperature comprises obtaining the fluid temperature from a temperature sensor at the reservoir.

13. The detection method of claim 11 , wherein obtaining the fluid pressure comprises obtaining the fluid pressure from a pressure sensor at the accumulator.

14. The detection method of claim 11 , further comprising:

obtaining a pump case temperature;

obtaining a fluid reservoir temperature;

comparing the pump case temperature with the fluid reservoir temperature; and

determining a temperature difference between the pump case temperature and the fluid reservoir temperature.

15. A detection method for detecting a gas leak in a pump system having an accumulator spaced from a reservoir, the accumulator including a gas chamber separated from a liquid chamber, the method comprising:

obtaining a fluid temperature of a fluid to be transferred between the reservoir and the liquid chamber of the accumulator;

obtaining a fluid pressure of the fluid from a pressure sensor at the accumulator;

estimating a gas pressure based on the obtained fluid temperature and the obtained fluid pressure;

comparing the estimated gas pressure to a first threshold;

triggering a first fault if the estimated gas pressure is below the first threshold.

16. The detection method of claim 15 , wherein obtaining the fluid temperature comprises obtaining the fluid temperature from a temperature sensor at the reservoir.

17. A detection method for detecting a gas leak in a pump system having an accumulator spaced from a reservoir, the accumulator including a gas chamber separated from a liquid chamber, the method comprising:

obtaining a pump case temperature;

obtaining a fluid reservoir temperature;

comparing the pump case temperature with the fluid reservoir temperature;

determining a temperature difference between the pump case temperature and the fluid reservoir temperature; and

performing the following operations when the temperature difference is below a certain threshold:

obtaining a fluid temperature of a fluid to be transferred between the reservoir and the liquid chamber of the accumulator;

obtaining a fluid pressure of the fluid;

estimating a gas pressure based on the obtained fluid temperature and the obtained fluid pressure;

comparing the estimated gas pressure to a first threshold; and

triggering a first fault if the estimated gas pressure is below the first threshold.

18. The detection method of claim 17 , wherein obtaining the fluid temperature comprises obtaining the fluid temperature from a temperature sensor at the reservoir.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 23, 2021
From: EATON INTELLIGENT POWER LIMITED
To: DANFOSS POWER SOLUTIONS II TECHNOLOGY A/S
Reel/Frame 058227/0187 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 11, 2019
From: EATON CORPORATION
To: EATON INTELLIGENT POWER LIMITED
Reel/Frame 048855/0626 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 15, 2018
From: EATON CORPORATION
To: EATON INTELLIGENT POWER LIMITED
Reel/Frame 046385/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 18, 2010
From: STONER, MICHAEL ANTHONY; HAWKINS, THOMAS D.; SIMPSON, DOUGLAS D.
To: EATON CORPORATION
Reel/Frame 024851/0846 →
Continuity (2)
Provisional Application 61186136 · Jun 11, 2009
Related Publication 20100313849A1 · Dec 16, 2010