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Optimization Strategy of Hydrogovernors for Eliminating Ultralow-Frequency Oscillations in Hydrodominant Power Systems

机译:消除水力发电系统超低频振荡的水电调节器优化策略

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摘要

Southwest China power grid (SCPG) and central China power grid are planned to be unsynchronized by using back-to-back voltage source converter based high voltage direct current transmission between Chongqing and Hubei power grids. After asynchronous interconnection, the proportion of hydro in installed capacity is about 70%. In other words, the SCPG is a typical hydrodominant power system. Due to the negative damping effect of governors of hydrogenerators, there is a serious risk of ultralow-frequency oscillation (ULFO) in the range of 0.05 Hz. In this paper, optimization strategies of governor for hydropower unit are presented to eliminate ULFOs. First, the control mode is selected based on comparing damping characteristic of different control modes of governor. Then, a relevant coefficient index is proposed to select sensitive generators of ULFO. Afterward, PID parameters of governor are optimized based on a new performance criteria considering the damping characteristic of governor. Finally, optimization strategies are presented and applied to SCPG. Simulation results show effectiveness and practicability of the proposed measures, which have been adopted and will be implemented before the asynchronous interconnection.
机译:计划通过使用基于背靠背电压源转换器的重庆和湖北电网之间的高压直流输电,使西南电网(SCPG)和华中电网不同步。异步互连后,水电在装机容量中的比例约为70%。换句话说,SCPG是典型的水力发电系统。由于水轮发电机调节器的负阻尼作用,因此存在0.05 Hz范围内的超低频振荡(ULFO)的严重风险。本文提出了水轮机调速器的优化策略,以消除ULFO。首先,基于比较调速器的不同控制模式的阻尼特性来选择控制模式。然后,提出了相关的系数索引来选择ULFO的敏感发生器。此后,基于新的性能标准优化了调速器的PID参数,并考虑了调速器的阻尼特性。最后,提出了优化策略并将其应用于SCPG。仿真结果表明了所提出措施的有效性和实用性,这些措施已经被采用并将在异步互连之前实现。

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