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Influence of WAMS data corruption on small disturbance stability and WADC parameter tuning based on DTA

机译:WAMS数据损坏对基于DTA的小扰动稳定性和WADC参数调谐的影响

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WAMS (Wide-area Measurement System) is one of the most potentially effective techniques to damp inter-area low frequency oscillations in power systems. This paper studies the data corruption phenomenon which is ubiquitous in WAMS and establishes the unified model of time-delay and data-loss. Then DTA (Damping Torque Analysis) index considering time-delay and data-loss is deduced based on the previous model and applied to WADC(Wide-area Damping Controller) parameter tuning combining with the phase compensation method. Firstly simulations are carried out in 2A4M(2Area 4Machine) Kundur system and HDPG(Huadong Power Grid) with different time-lays and data-loss ratios to show their impacts on small disturbance stability. Then DTA index is applied to PSS (Power System Stabilizer) parameter tuning and results show that it can effectively inhibit inter-area oscillations. With time-delay and data-loss ratio increasing, the superiority is getting more prominent.
机译:WAMS(广域测量系统)是电力系统中抑制区域间低频振荡的最有效技术之一。本文研究了WAM中普遍存在的数据损坏现象,并建立了统一的时滞和数据损失模型。然后基于先前模型推导出考虑时间延迟和数据损耗的DTA(阻尼扭矩分析)指数,并应用于与相位补偿方法组合的WADC(广域阻尼控制器)参数调谐。首先,模拟在2A4M(2AREA 4Machine)昆医系统和HDPG(Huadong Power Grid)中进行,具有不同的时间表和数据损耗比率,以显示它们对小扰动稳定性的影响。然后DTA索引应用于PSS(电源系统稳定器)参数调谐,结果表明它可以有效地抑制面积间振荡。随着时间延迟和数据损失率的增加,优越性越来越突出。

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