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A Noninvasive Method for Detecting Restriking: Application to the Switching of HV Shunt Reactors

机译:一种无创检测再冲击的方法:在高压并联电抗器切换中的应用

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Modern circuit breakers (CBS) may be susceptible to catastrophic failure possibly because they are designed to be more highly stressed than earlier CB designs with multiple interrupters per pole. Improved performance is obtained with dielectrically well-designed interrupters by taking advantage of advanced controlled switching to achieve a reignition-free window during opening to minimize the risk of nozzle puncture. On occasion, CB owners may wish to check whether equipment is performing satisfactorily and whether controllers are producing reliable and repeatable stress control. The monitoring of voltage waveforms during switching using established methods will provide information about the magnitude and frequency of small reignitions and restrikes. However, waveform measurements at a moderately high signal frequency require plant outages to connect specialized equipment. A nonintrusive measurement technique has been developed to measure the high- and low-frequency voltage waveforms occurring during reactor switching operations without the need for an outage. Results of tests performed in the laboratory and in a 275-kV substation demonstrating the capability of this new method to detect reignitions are presented.
机译:现代断路器(CBS)可能会遭受灾难性故障的影响,这可能是因为与早期的每极带有多个灭弧室的CB设计相比,它们被设计得承受更高的压力。通过精心设计的绝缘灭弧室,可以利用先进的受控开关来获得更高的性能,从而在打开期间实现无点火窗口,从而最大程度地减少喷嘴刺穿的风险。有时,断路器业主可能希望检查设备性能是否令人满意以及控制器是否产生可靠且可重复的压力控制。使用既定方法对开关期间的电压波形进行监视将提供有关小点火和再点火的幅度和频率的信息。但是,在中等高信号频率下进行波形测量需要设备中断才能连接专用设备。已经开发出一种非侵入式测量技术来测量在电抗器切换操作期间发生的高频和低频电压波形,而无需停机。展示了在实验室和275 kV变电站中进行的测试结果,这些结果证明了这种新方法能够检测出重燃现象。

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