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Static Var Compensator for damping power fluctuation with locally measured parameters: Hybrid control technique using power, rate of change of power and phase angle

机译:静态无功补偿器,用于通过局部测量的参数来衰减功率波动:使用功率,功率变化率和相角的混合控制技术

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This paper discusses a hybrid control for the Static Var Compensator (SVC) to damp power fluctuations. In the proposed control, instantaneous power is calculated from the local measurement of three phase voltages and currents. A three phase voltage vector phase lock loop is used to get the phase angle information of the terminal voltages. The SVC reactive power injection is controlled in such a way that increases the terminal voltage during absolute acceleration of the system and terminal voltage decreased during absolute deceleration of the system. The power system's absolute acceleration or deceleration is identified by checking the direction of power change together with its sign of rate of change of power. During major disturbances phase angle limit is used to extend the control up to critical instability operating point. This control is studied in PSCAD/EMTDC and the result confirmed the effective damping of power fluctuations including major disturbances.
机译:本文讨论了一种用于静态无功补偿器(SVC)的混合控制,以抑制功率波动。在建议的控制中,瞬时功率是根据三相电压和电流的局部测量值计算得出的。三相电压矢量锁相环用于获得端子电压的相角信息。 SVC无功功率注入的控制方式是:在系统绝对加速期间增加端子电压,在系统绝对减速期间减小端子电压。通过检查功率变化的方向及其功率变化率的符号,可以确定功率系统的绝对加速或减速。在重大干扰期间,使用相角极限将控制范围扩展到临界不稳定性工作点。在PSCAD / EMTDC中对该控制进行了研究,结果证实了对功率波动(包括主要干扰)的有效抑制。

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