Method and device for detecting diode open-circuit fault of multiphase brushless exciter

An open-circuit fault and detection method technology, applied in the field of electric power system, can solve problems such as affecting the normal operation of the main generator, and achieve the effects of simple online detection method, improved operation reliability and high accuracy.

Pending Publication Date: 2022-04-15
CHINA GENERAL NUCLEAR POWER OPERATION +9
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Problems solved by technology

In the initial stage of the open circuit fault, the exciter can still provide normal current to the main generator, but if the fault is allowed to continue to deteriorate, it will seriously affect the normal operation of the main generator and cause serious consequences
[0004] For the fault of the rotating rectifier, the brushless excitation system currently operating on site generally adopts the standard DNC (Diode Non-conduction Detection System) system for monitoring when the rotating rectifier leaves the factory. longer units)

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  • Method and device for detecting diode open-circuit fault of multiphase brushless exciter
  • Method and device for detecting diode open-circuit fault of multiphase brushless exciter
  • Method and device for detecting diode open-circuit fault of multiphase brushless exciter

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[0047] The following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only some, not all, embodiments of the present invention. Based on the embodiments of the present invention, all other embodiments obtained by persons of ordinary skill in the art without making creative efforts belong to the protection scope of the present invention.

[0048] Since the brushless field rectifier (consisting of diodes) rotates with the exciter rotor, open circuit faults of the rectifier cannot be directly monitored. Aiming at this technical problem, this application constructs a diode open-circuit fault detection method. By collecting the stator excitation current, the time-domain characteristics of the current are obtained according to a certain method, and the fault is judged according to the time-domain char...

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Abstract

The invention relates to a diode open-circuit fault detection method and device for a multiphase brushless exciter. The diode open-circuit fault detection method comprises the following steps: a sampling step: carrying out real-time sampling on excitation current of a stator excitation winding; a processing step: filtering the sampled exciting current to obtain a processed current signal; and an analysis step: performing time domain feature extraction on the current signal, and judging whether a diode open-circuit fault occurs or not according to the extracted time domain feature. According to the technical scheme, the online detection method is simple, effective and high in accuracy, power generation safety of the unit is guaranteed, and operation reliability of the unit is improved.

Description

technical field [0001] The invention relates to the field of power systems, in particular to a method and device for detecting a diode open-circuit fault of a multi-phase brushless exciter. Background technique [0002] The excitation system is an important part of a large generator. An excitation system with excellent performance and high reliability is the basis for ensuring the safety of the generator and the stable operation of the power system. Compared with static excitation, the brushless excitation system eliminates the carbon brushes and slip rings of the generator, which significantly improves the reliability of the excitation system and is the preferred excitation method for large-capacity nuclear power units. The multi-phase brushless excitation system can not only reduce the requirement of high-power excitation system on the capacity of a single diode, but also improve the quality of rectified voltage and improve the fault tolerance of the system. [0003] In t...

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01R31/54G01R31/26G01R19/00
Inventor 段贤稳魏利峰房志强张伟黄勇黄巍任仰凯邱波王晓明许航源郭立雄李文武屈天龙郝亮亮桂林王祥珩
Owner CHINA GENERAL NUCLEAR POWER OPERATION
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