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Current-Transformer Saturation Prevention Using a Controlled Voltage-Source Compensator

机译:使用可控电压源补偿器防止电流互感器饱和

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摘要

Current-transformer (CT) saturation causes severe distortion in the measured current waveform which may lead to maloperation of the protective devices. This paper proposes a low-cost, power-electronic device to prevent the CT from saturation. The proposed compensator is inserted in series with the relay in the CT secondary circuit and acts as a controlled voltage source (CVS). The proposed CVS generates a time-varying voltage to cancel the voltage developed across the CT burden; therefore, the CT magnetic flux remains almost constant and undistorted during the power system transients. It will be shown that this device can precisely compensate fault current, inrush current, and other probable transient currents despite its simplicity. The proposed device can be employed to compensate the already in-service CTs connected to nondigital and digital relays. Comprehensive computer simulations are carried out to validate the effectiveness of the proposed compensator. The performance of a sample compensator of this type is validated through special high-current laboratory experiments (carried out over several hundred amperes up to 1.6 kA), and the obtained results illustrate the capability of the proposed compensator to prevent CT saturation.
机译:电流互感器(CT)饱和会导致测得的电流波形出现严重失真,这可能导致保护设备误动作。本文提出了一种低成本的电力电子设备,以防止CT饱和。拟议的补偿器与继电器串联在CT次级电路中,并用作受控电压源(CVS)。建议的CVS产生随时间变化的电压,以抵消CT负载两端产生的电压。因此,在电力系统瞬变期间,CT磁通量几乎保持恒定且不会失真。将显示该设备尽管简单,却可以精确补偿故障电流,浪涌电流和其他可能的瞬态电流。提出的设备可用于补偿连接到非数字和数字继电器的已经投入使用的CT。进行了全面的计算机仿真,以验证所提出的补偿器的有效性。这种类型的样品补偿器的性能已通过特殊的大电流实验室实验(执行了数百安培,电流高达1.6 kA)进行了验证,所得结果说明了所建议的补偿器防止CT饱和的能力。

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