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Damping inter-area Oscillation in Power System by Using Global Control Signals based on PSS devices

机译:通过使用基于PSS设备的全局控制信号阻尼电力系统间振荡的区域间振荡

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In this paper presents a online technique to determine the most effective signals for damping inter-area oscillation in power systems. For implementing the proposed method in real time envirinement, various inter-area scenarios are analyzed from which the best global control signals are proposed as input to controllers. It is shown that the local control signals (LCS) which are commonly used to PSSs for damping local oscillations are not able to damp the inter-area oscillations. It is proposed that for an unstable inter-area scenario the global control signal (GCS) provided based on the concept of center of inertia (COI) of oscillating areas is able to damp inter-area oscillation. The proposed GCS can be categorized into two states as 1-global area signals and 2- global inter-area signals. Also, it is shown that depending on the pattern of the oscillating areas the proper combination of both types of global signals could be able for damping inter-area oscillations. The simulation studies on IEEE 39-bus test system show the effectiveness of the proposed signals for damping inter-area oscillations.
机译:本文提出了一种在线技术,以确定电力系统中阻尼区域间振荡的最有效信号。为了在实时环境中实现所提出的方法,分析了各种区域间情景,从中提出了最佳的全局控制信号作为控制器的输入。结果表明,通常用于阻尼本地振荡的PSS的局部控制信号(LCS)无法阻尼区域间振荡。建议,对于基于振荡区域的惯性中心(COI)概念提供的全局控制信号(GCS)能够抑制面积间振荡的不稳定区间场景。所提出的GCS可以分为两个状态为1-全局区域信号和2个全局区域信号。此外,示出了根据振荡区域的图案,两种类型的全局信号的​​适当组合可能能够阻尼区域间振荡。 IEEE 39总线测试系统的仿真研究表明了建议信号阻尼区间振荡的有效性。

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