Fault Location and Parameter Identification Method of Faulty Components in Analog Circuit
A technology for simulating circuit faults and faulty components, applied in the field of analog circuit fault diagnosis, can solve problems such as the inability to exhaustively enumerate the continuous parameter faults and parameter combinations of analog components, the blindness of the simulation method, the long simulation time, and the inability to use parameters for fault diagnosis.
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[0118] In order to better illustrate the technical effects of the present invention, a second-order Thomas analog filter circuit is used as an example to illustrate the present invention. image 3 is a structural diagram of the second-order Thomas analog filter circuit in this embodiment. Such as image 3 As shown, the second-order Thomas analog filter circuit in this embodiment takes V out As a measuring point, the fuzzy group situation under this measuring point is: {R 1}, {R 2}, {R 3 , C 1}, {R 4 , R 5 , R 6 , C 2}. The fuzzy group is determined by the circuit structure and has nothing to do with the excitation signal, but only with the selection of measuring points. Under normal conditions, the DC power supply is 5V, and under the excitation of 1V, 1kHZ sinusoidal signal, the method of the present invention is used to obtain the characteristic vector representing the fault element. Table 1 is the eigenvectors representing faulty components in this embodiment.
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