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Study on Failure of PSS Caused by Instability of Close Mode Shapes

机译:密切模式形状不稳定引起的PSS失效研究

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Low frequency oscillation has been a serious threat to the security and stability of power system operation today. PSS is an effective damping controller to inhibit low frequency oscillation and has been widely used in power system. Location installation of PSS is mostly determined by the participation factors which can be calculated by right eigenvectors (lower frequency oscillation mode shapes) and left eigenvectors. However, in an n-machine system, there are n-1 low frequency oscillation modes whose frequencies are distributed in a small range of 0.2-3.0Hz, which leads close mode may occur. Study has shown that close mode shapes are sensitive to system structural parameters, that is, a small change of structural parameters may lead a big change of close mode shapes. This paper first theoretically analyze the failure of PSS led by the instability of close mode shapes, then New England 10-machine system is employed to validate the conclusion.
机译:低频振荡对当今电力系统操作的安全性和稳定性的严重威胁。 PSS是一种有效的阻尼控制器,用于抑制低频振荡,并已广泛用于电力系统。 PSS的位置安装主要由参与因素决定,参与因子可以通过正确的特征向量(较低频率振荡模式形状)和左特征向量来计算。然而,在N机器系统中,存在N-1个低频振荡模式,其频率在0.2-3.0Hz的小范围内分布,这可能发生接近模式。研究表明,闭合模式形状对系统结构参数敏感,即结构参数的小变化可能导致密切模式形状的大变化。本文首先通过关闭模式形状的不稳定性来分析LED的PSS失效,然后采用新英格兰10机器系统来验证结论。

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