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Effects of generator and static-load nonlinearities on electromechanical oscillations

机译:发电机和静态负载非线性对机电振荡的影响

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摘要

Linear analysis methods, such as eigenanalysis and Prony analysis, are becoming standard tools in studying power system electromechanical oscillations. Because the actual system is nonlinear, large-amplitude oscillatory swings will not necessarily have frequency and damping characteristics indicated by the eigensolution. Understanding the differences can be critical in comparing eigenanalysis and simulated results, and in applying Prony analysis to the nonlinear swings. This paper investigates the effects of excitation limiting, magnetic saturation, the swing equation, and static-load model properties on the linearity of a power swing. Simulation, eigenanalysis, and Prony analysis results are compared on a four-machine system operating under several conditions. It is found that significant differences occur between the eigenanalysis and simulation results when heavy excitation limiting occurs during the swing. Generator magnetic saturation tends to cause the simulated results to have more effective damping than the eigensolution. Other nonlinearities cause little or no differences. Prony analysis tends to match the simulated swing, except if excitation limiting occurs.
机译:线性分析方法,例如本征分析和Prony分析,已成为研究电力系统机电振荡的标准工具。由于实际系统是非线性的,因此大振幅振荡摆不一定具有本征解所指示的频率和阻尼特性。了解差异对于比较本征分析和模拟结果以及将Prony分析应用于非线性摆动至关重要。本文研究了励磁极限,磁饱和度,摆幅方程和静态负载模型属性对摆幅线性度的影响。仿真,本征分析和Prony分析结果在几种条件下运行的四机系统上进行了比较。发现在挥杆过程中发生严重的激励限制时,本征分析和仿真结果之间会出现显着差异。发电机磁饱和趋向于使模拟结果具有比本征解更有效的阻尼。其他非线性几乎没有差异。 Prony分析倾向于与模拟摆动相匹配,除非发生激励限制。

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