SSSC的控制算法

P. Fernández, F. Freijedo, J. Doval‐Gandoy, J. Malvar
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引用次数: 3

摘要

大多数国家的电网都在老化,承受着越来越大的压力。现代工业基础设施需要越来越多的负担得起和可靠的电力。基于柔性交流输电系统(FACTS)的解决方案可用于控制电网的潮流。并联式可变电压补偿器提供电网电压支持,串联式可变电压补偿器控制有功潮流。同步静态串联补偿器(SSSC)通过改变电源线的阻抗或改变施加在线路上的电压的角度来控制有功功率流。本文提出了一种SSSC的控制算法,该算法通过与线路串联注入电压来控制潮流。计算注入电压的幅值和角度作为补偿率的函数,以控制变换器的直流母线电压。采用预测同步算法获取线路电流的相位。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Control algorithm for a SSSC
The power grid in most of the countries is aging and under increasing stress. The modern industrial infrastructure demands increasing amounts of affordable and reliable electricity. Solutions based on Flexible AC Transmission Systems (FACTS) can be used to control power flow on the grid. Shunt VARs compensators provide grid voltage support, while series VARs compensators are required to control active power flow. The Synchronous Static Series Compensator (SSSC) controls the active power flow by altering the impedance of the power lines or changing the angle of the voltage applied across the line. This paper presents a control algorithm for a SSSC which injects a voltage in series with the line in order to control the power flow. The amplitude and angle of the injected voltage is calculated as a function of the compensation rate and in order to control the DC bus voltage of the converter. A predictive synchronization algorithm is used to obtain the phase of the line current.
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