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Method and apparatus for diagnosing leakage in a fluid power system
   
Document Number
US Patent 7031850
Issued Date
April 18, 2006
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Inventors
Kambli; Sachin (Lake Grove, NY)
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Abstract
A method and apparatus of diagnosing leakage in a fluid power system including a fluid supply line operatively connected to a plurality of valves which are connected to a plurality of actuators. Flow signals generated by a flow sensor disposed in the supply line are processed to obtain fluid consumption over time values and signals used to change the state of the plurality of valves are processes to determine a plurality of episodes. Each of the plurality of episodes corresponds to a pressurization of a particular branch of a particular actuator. The flow signals and the signals used to change the state of the valves are combined to calculate a change in air consumption value for each valve change of state. The change in air consumption values for each episode are compared to a predetermined reference value to determine any deviation corresponding to a particular one of the plurality of episode. The one of the plurality of episodes and corresponding pressurized branch with the greatest deviation is identified. A signal is generated indicating both that a leak is present in the system and the branch responsible for the leak.
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Number of Claims:
21
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Owner
Festo AG & Co. KG (Esslingen,DE)
Published
April 18, 2006
Application Number
10/826,141
Filed
April 16, 2004
US Classification
702/51   700/281 700/282 702/33 702/55 73/40
Int'l Classification
G01F   17/00   (20060101)   G01F   23/00   (20060101)   G01L   7/00   (20060101)   G01N   11/00   (20060101)   G06F   19/00   (20060101)  
Examiner
Assistant Examiner
Attorney/Law Firm
USPTO Field of Search
702/51  
Related Patents
7405917 - Method and apparatus for monitoring and determining the functional status of an electromagnetic valve - Owned by Festo AG & Co. (Esslingen,DE)

The present invention provides a method and apparatus for determining the functional status of an electromagnetic valve having a solenoid and plunger including determining the electro-mechanical switching time of a valve based on characteristics of an electrical characteristic responsive to the solenoid; comparing the valve electro-mechanical switching time to a predetermined value; and generating a valve status signal dependant on the results of the comparison.

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Description
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