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Single-DC Reactor-Type Transient Limiter for Reducing Three-Phase Power Capacitor Switching Transients

机译:单相直流电抗器型瞬态限制器,用于减少三相功率电容器的开关瞬变

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摘要

This paper presents a new application of the single-dc reactor-type fault current limiter to suppress the three-phase low-voltage capacitor switching transients. The proposed limiter is composed of a three-phase coupling transformer, a three-phase bridge rectifier, a dc reactor, and a dc-bias voltage source. The dc reactor is connected in the three-phase coupling transformer''s secondary winding and can automatically provide high impedance at the instant of energization, thus restraining the energizing transients of the three-phase capacitor. In the steady state, the bias voltage causes all rectifier diodes to conduct simultaneously, and the limiter freewheels. Therefore, the voltage across the coupling transformer''s secondary side is nearly zero, and the transformer''s primary side acts as a short circuit. The limiter will not result in a voltage rise at the capacitor''s terminals or a distortion of the capacitor''s current waveform in the steady state. Due to the freewheeling effect in the limiter, no transient overvoltage appears across the switching device at the instant of de-energization. Analytical equations to describe the performance of the system have been developed. Finally, a 2.7-kVAR three-phase capacitor is used for demonstration, and simulation and experimental results are carried out to verify the feasibility of the proposed limiter.
机译:本文提出了单直流电抗器型故障限流器在抑制三相低压电容器开关瞬变中的新应用。拟议的限制器由一个三相耦合变压器,一个三相桥式整流器,一个直流电抗器和一个直流偏置电压源组成。直流电抗器连接在三相耦合变压器的次级绕组中,并可以在通电瞬间自动提供高阻抗,从而抑制了三相电容器的通电瞬变。在稳定状态下,偏置电压使所有整流二极管同时导通,并且限制器续流。因此,耦合变压器的次级侧两端的电压几乎为零,并且变压器的初级侧起到了短路的作用。在稳定状态下,限幅器不会导致电容器端子上的电压升高或电容器电流波形失真。由于限幅器中的续流效应,在断电瞬间,开关设备上不会出现瞬态过电压。已经开发出描述系统性能的分析方程式。最后,使用一个2.7 kVAR三相电容器进行演示,并通过仿真和实验结果验证了所提出的限幅器的可行性。

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