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Limit-induced stable limit cycles in power systems

机译:电力系统限制诱导的稳定极限循环

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Heavily loaded power systems are susceptible to Hopf bifurcations, and consequent oscillatory instability. The onset of instability can be predicted by small disturbance (eigen-value) analysis, but the ensuring behaviour may depend strongly on nonlinearities within the system. In particular, physical limits place bounds on the divergent behaviour of states. This paper explores the situation where generator field-voltage limits capture behaviour, giving rise to a stable (though non-smooth) limit cycle. It is shown that shooting methods can be adapted to solve for such non-smooth limit-induced limit cycles. By continuing branches of limit-induced and smooth limit cycles, the paper established the co-existence of equilibria, smooth and non-smooth limit cycles. Furthermore, it is shown that when branches of limit-induced and smooth limit cycles merge, the limit cycles are annihilated at a grazing bifurcation.
机译:大量装载的电力系统易受Hopf分叉的影响,并且随之而来的振荡不稳定。 可以通过小扰动(特征值)分析来预测不稳定性,但确保行为可能在系统内的非线性上强烈依赖。 特别是,物理限制在各种不同行为上的范围。 本文探讨了发电机场 - 电压限制捕获行为的情况,从而产生稳定(虽然非平滑)极限循环。 结果表明,可以调整拍摄方法以解决这种非平滑限制诱导的极限循环。 通过持续限制和平滑的限制循环分支,本文建立了平衡,平滑和非平滑的限制循环的共存。 此外,示出了当限制诱导和平滑的限位循环合并的分支时,极限循环在放牧分叉处湮灭。

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