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The principle of absolute rotor angle control and its effect on suppressing inter-area low frequency oscillations

机译:绝对转子角控制原理及其对区域间低频振荡的抑制作用

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摘要

How to suppress low frequency oscillations effectively in inter-connected power systems has been a challenging problem for many years. The problem may be solved by accurate control of absolute rotor angles. The structure of a rotor angle controller is shown in this paper. The input of the controller is the absolute rotor angle measured by local phasor measurement unit (PMU). The controller ensures that this rotor angle remains unchanged in rotating coordinate system determined by pulse per second (PPS). This way, zero steady state error control of angle and frequency can be achieved at the same time. Since the rotor angle and speed remain constant under normal conditions, it is possible to get information of all kinds of oscillations through local measurement after disturbance. Analysis in this paper also shows that the stability margin and the characteristic of the damping torque provided by the angle controller can be improved significantly after a compensation block is added. When used together with power system stabilizer (PSS), the angle controller can suppress inter-area oscillations effectively without help of any remote measurement.
机译:多年来,如何有效地抑制互连电力系统中的低频振荡一直是一个具有挑战性的问题。该问题可以通过精确控制绝对转子角度来解决。本文显示了转子角度控制器的结构。控制器的输入是由局部相量测量单元(PMU)测量的绝对转子角度。控制器确保该转子角在以每秒脉冲数(PPS)确定的旋转坐标系中保持不变。这样,可以同时实现角度和频率的零稳态误差控制。由于转子角和转速在正常条件下保持恒定,因此有可能通过扰动后的局部测量获得各种振荡的信息。本文的分析还表明,添加补偿块后,角度控制器提供的稳定裕度和阻尼扭矩的特性可以得到显着改善。与电源系统稳定器(PSS)一起使用时,角度控制器可有效抑制区域间振荡,而无需任何远程测量的帮助。

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