IP Library Granted Patent US 10,385,794
Granted Patent B2
US 10,385,794 · App. 15/272,474 · Granted Aug 20, 2019

Method and engine controller for diagnosing waste gate valve malfunction and related power generation system

Inventors: Dipankar Deb (Karnataka, IN); Sharath Sridhar Aramanekoppa (Karnataka, IN); Prashant Srinivasan (Karnataka, IN); Maruthi Narasinga Rao Devarakonda (Waukesha, WI)
Assignee: AI Alpine US Bidco Inc.
F02D41/221F02B29/0425F02B37/18F02B37/186F02B39/16F02D41/0007F02M35/1038F02M35/10157F02D11/106F02D11/107F02D2009/0227F02D2009/0228F02D2200/0402F02D2200/0404F02D2200/0406F02D2200/703
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 10,385,794
App. No.
15/272,474
Granted
Aug 20, 2019
Kind
B2
Abstract

A method for diagnosing a waste gate valve malfunction in a power generation system is presented. The method includes determining an actual pressure differential across a throttle valve. The method further includes determining an estimated pressure differential across the throttle valve based on one or more first operating parameters of the power generation system. Furthermore, the method includes determining an absolute difference between the actual pressure differential and the estimated pressure differential. Moreover, the method also includes comparing the absolute difference with a threshold value and if the absolute difference is greater than the threshold value, determining an operating condition of the throttle valve. Additionally, the method includes determining whether the waste gate valve has malfunctioned based on the determined operating condition of the throttle valve. An engine controller and a power generation system employing the method are also presented.

Claims (32)

1. A power generation system, comprising:

a combustion engine disposed between an intake manifold and an exhaust manifold;

a waste gate valve disposed downstream of the exhaust manifold and in fluid communication with the exhaust manifold;

a throttle valve disposed upstream of the intake manifold;

an engine controller operatively coupled to the throttle valve, comprising:

a memory storing one or more processor-executable routines; and

one or more processors to execute the one or more processor-executable routines which, when executed, cause acts to be performed comprising:

determining an actual pressure differential across a throttle valve;

determining an estimated pressure differential across the throttle valve based on one or more first operating parameters of the power generation system;

determining an absolute difference between the actual pressure differential and the estimated pressure differential; and

comparing the absolute difference between the actual pressure differential and the estimated pressure differential with a threshold value, and, if the absolute difference between the actual pressure differential and the estimated pressure differential is greater than the threshold value,

determining an operating condition of the throttle valve; and

determining whether the waste gate valve has malfunctioned based on the determined operating condition of the throttle valve.

2. The power generation system of claim 1 , further comprising

a pre-throttle pressure sensor disposed upstream of the throttle valve to generate a first electric signal indicative of a first pressure upstream of the throttle valve; and

a post-throttle pressure sensor disposed downstream of the throttle valve to generate a second electric signal indicative of a second pressure in a flow path between the throttle valve and the combustion engine, and wherein the acts to be performed for determining the actual pressure differential across the throttle valve comprise:

determining the first pressure based on the first electric signal;

determining the second pressure based on the second electric signal; and

determining an absolute difference between the first pressure and the second pressure.

3. The power generation system of claim 1 , further comprising a throttle valve sensor for generating an electric signal indicative of an actual open position of the throttle valve, and wherein the acts to be performed for determining the operating condition of the throttle valve comprise:

determining the actual open position of the throttle valve based on the electric signal generated by the throttle valve sensor;

determining an estimated open position of the throttle valve using a look-up table or a physics based model based on one or more second operating parameters of the combustion engine; and

determining an absolute difference between the actual open position and the estimated open position of the throttle valve and comparing the absolute difference between the actual open position and the estimated open position of the throttle valve with a determined throttle valve opening tolerance.

4. The power generation system of claim 3 , wherein if the absolute difference between the actual open position and the expected open position of the throttle valve is lower than the determined throttle valve opening tolerance, the operating condition of the throttle valve is determined to be normal.

5. The power generation system of claim 4 , wherein the acts to be performed comprises determining that the waste gate valve has malfunctioned if the operating condition of the throttle valve is normal.

6. The power generation system of claim 1 , wherein the first operating parameters comprise an ambient temperature, an ambient pressure, an intercooler temperature, an engine speed, an engine load, humidity content in a gas stream, or combinations thereof, and wherein the power generation system further comprises one or more of:

an ambient temperature sensor for determining the ambient temperature;

an intercooler temperature sensor for determining the intercooler temperature of a pressurized air;

an ambient pressure sensor for determining the ambient pressure; and

a humidity sensor disposed for determining the humidity content in a gas stream to be emitted from the power generation system.

7. The method of claim 3 , wherein the one or more second operating parameters comprise an engine load, an engine speed, or a combination thereof.

8. The method of claim 3 , further comprising confirming whether the waste gate valve has malfunctioned by varying the one or more second operating parameters and repeating steps (i) to (iv).

Assignments (3)
CORRECTIVE ASSIGNMENT TO CORRECT THE RECEIVING PARTY ENTITY PREVIOUSLY RECORDED AT REEL: 48489 FRAME: 001. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Apr 11, 2019
From: GENERAL ELECTRIC COMPANY
To: AI ALPINE US BIDCO INC
Reel/Frame 049858/0407 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 3, 2019
From: GENERAL ELECTRIC COMPANY
To: AI ALPINE US BIDCO LLC
Reel/Frame 048489/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 22, 2016
From: DEB, DIPANKAR; ARAMANEKOPPA, SHARATH SRIDHAR; SRINIVASAN, PRASHANT; DEVARAKONDA, MARUTHI NARASINGA RAO
To: GENERAL ELECTRIC COMPANY
Reel/Frame 039824/0268 →
Priority Claims (1)
IN 5111/CHE/2015 · Sep 24, 2015 · national
Continuity (1)
Related Publication 20170089286A1 · Mar 30, 2017