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The Frequency Closed-Loop Control Strategy of Islanded Power Systems

机译:孤岛电力系统的频率闭环控制策略

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摘要

A novel power system frequency control strategy is designed in this paper, which is mainly used to improve the stability of the islanding power system. Detecting the change of circuit breaker status, it is feasible to identify the serious accidents, for instance, a generator outage or disconnection from main grids, and so on. The balanceable power before disturbance and the capacity of the removed power can be used to calculate the power deficiency. Then, appropriate load can be shed adaptively. In the subsequent regulating process, adapting to the various stages of frequency variation, the concepts of rough-adjusting step and fine-adjusting step are proposed to obtain a balance between shedding loads quickly and refining the load shed in every step. The concept of proportional-integral-differential (PID) is introduced to design a closed-loop control strategy to trace frequency variation, with which a balance between restraining the sharp drop of frequency effectively and releasing the reserved system capacity thoroughly can be obtained. Moreover, the frequency recovery curve can be optimized and the dead zone of control during the frequency rising stage can be avoided. Compared with the conventional under-frequency loading shedding (UFLS) schemes, the effectiveness of the control strategy presented has been verified by EMTDC simulation tests.
机译:本文设计了一种新颖的电力系统频率控制策略,主要用于提高孤岛电力系统的稳定性。通过检测断路器状态的变化,可以确定严重事故,例如发电机故障或与主电网断开连接等。干扰之前的平衡功率和去除的功率的容量可用于计算功率不足。然后,可以自适应地减轻适当的负载。在随后的调节过程中,为了适应频率变化的各个阶段,提出了粗调步骤和微调步骤的概念,以在快速卸荷与细化每个步骤中的卸荷之间取得平衡。引入比例积分微分(PID)的概念来设计一种跟踪频率变化的闭环控制策略,从而在有效抑制频率急剧下降和彻底释放系统保留容量之间取得平衡。而且,可以优化频率恢复曲线,并且可以避免在频率上升阶段的控制死区。与传统的低频减载(UFLS)方案相比,EMTDC仿真测试已验证了所提出的控制策略的有效性。

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