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A Fast Detection Algorithm Suitable for Mitigation of Numerous Power Quality Disturbances

机译:一种适用于缓解多种电能质量扰动的快速检测算法

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摘要

In this paper, a fast detection method for voltage disturbances is explored. The proposed method provides reliable and fast detection for either single-phase or polyphase voltage disturbances such as voltage sags, voltage swells, flicker, frequency change in the utility voltage, and harmonic distortion. The algorithm is based on the theory that allows a set of three-phase voltages be represented as dc voltages in a d-q synchronous rotating frame. In this case, the utility input voltages are sensed and then converted to dc quantities in the d-q reference frame. Thus, any disturbance at the utility input voltages will be promptly reflected as disturbances in the d-q values. Further processing of the signals minimizes the point-on-wave effect and yields a trip signal indicating if the disturbance is a voltage sag or a voltage swell. Analysis, simulation, and experimental results are presented for a three-phase system. The proposed algorithm is implemented on a digital signal processor (DSP)-based system to provide ride-through for critical loads.
机译:本文探索了一种电压扰动的快速检测方法。所提出的方法可为单相或多相电压干扰(例如电压骤降,电压骤升,闪烁,市电电压的频率变化和谐波失真)提供可靠且快速的检测。该算法基于以下理论:该理论允许将一组三相电压表示为d-q同步旋转帧中的dc电压。在这种情况下,在d-q参考系中感测到公用输入电压,然后将其转换为dc量。因此,市电输入电压上的任何干扰将立即反映为d-q值的干扰。信号的进一步处理使波上点效应最小化,并产生一个跳闸信号,指示干扰是电压骤降还是电压骤升。给出了三相系统的分析,仿真和实验结果。所提出的算法在基于数字信号处理器(DSP)的系统上实现,以为关键负载提供穿越。

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