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Unified Residue Method for Design of Compact Wide-area Damping Controller Based on Power System Stabilizer

机译:基于电力系统稳定器的紧凑型广域阻尼控制器的统一残差法

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A wide-area damping controller (WADC) is effective in damping inter-area low-frequency oscillation (LFO), if the time delay in a wide-area control loop can be properly handled. In order to simplify the WADC design and enlarge the delay adaptation range, the classic power system stabilizer (PSS) is adopted, and a new unified residue (UR) method is proposed for compact WADC design. The strategy of control loop selection is also improved by modifying the relative residue index based on a few dominant oscillation modes. The designed PSS-based compact WADC is as simple as classic PSS with no more than two lead-lag phase compensation units. Case studies are carried out on an IEEE 16-machine 68-bus power system. Simulation results demonstrate that the control loop selection before the WADC design is necessary and that the proposed selection strategy can easily pick out the suitable candidate control loops. In addition, it is feasible for the UR method to design WADCs with different time delays in the selected control loops. All the designed WADCs are effective in damping inter-area LFO and robust to time delay variations under operation conditions. Comparisons among five design methods for PSS-based WADC show that the proposed UR method is superior in delay adaptation, the conciseness of WADC structure and computation speed of parameters.
机译:如果可以正确处理广域控制环路中的时间延迟,则广域阻尼控制器(WADC)可有效地阻尼区域间低频振荡(LFO)。为了简化WADC设计并扩大延迟适应范围,采用经典的电力系统稳定器(PSS),并为紧凑型WADC设计提出了一种新的统一余数(UR)方法。通过基于一些主导振荡模式修改相对残差指数,还改进了控制回路选择策略。设计的基于PSS的紧凑型WADC与经典PSS一样简单,仅具有两个超前-滞后相位补偿单元。案例研究是在IEEE 16机68总线电源系统上进行的。仿真结果表明,在WADC设计之前必须进行控制回路选择,并且所提出的选择策略可以轻松地挑选出合适的候选控制回路。此外,UR方法在选定的控制环路中设计具有不同时间延迟的WADC是可行的。所有设计的WADC在阻尼区域间LFO方面均有效,并且对操作条件下的时延变化具有鲁棒性。对基于PSS的WADC的五种设计方法的比较表明,所提出的UR方法在延迟自适应,WADC结构的简洁性和参数的计算速度方面具有优越性。

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