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首页> 外文期刊>IEEE Transactions on Circuits and Systems. 1 >Bifurcations, chaos, and crises in voltage collapse of a model power system
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Bifurcations, chaos, and crises in voltage collapse of a model power system

机译:模型电源系统的电压崩溃中的分叉,混乱和危机

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Bifurcations occurring in power system models exhibiting voltage collapse have been the subject of several recent studies. Although such models have been shown to admit a variety of bifurcation phenomena, the view that voltage collapse is triggered by possibly the simplest of these, namely by the (static) saddle node bifurcation of the nominal equilibrium, has been the dominant one. The authors have recently shown that voltage collapse can occur "prior" to the saddle node bifurcation. In the present paper, a new dynamical mechanism for voltage collapse is determined: the boundary crisis of a strange attractor or synonymously a chaotic blue sky bifurcation. This determination is reached for an example power system model akin to one studied in several recent papers. More generally, blue sky bifurcations (not necessarily chaotic) are identified as important mechanisms deserving further consideration in the study of voltage collapse.
机译:在电力系统模型中出现分叉,表现出电压崩溃,这是最近几项研究的主题。尽管已经显示出这样的模型可以接受多种分叉现象,但认为电压崩塌可能是由这些中最简单的一个即名义平衡的(静态)鞍形节点分叉引发的,这一观点已成为主流。作者最近表明,电压崩溃可能发生在鞍形节点分叉之前。在本文中,确定了电压崩溃的一种新的动力学机制:一个奇怪的吸引子或同义的一个混乱的蓝天分叉的边界危机。对于类似于最近几篇论文中研究的电力系统模型的示例,可以达到这一确定。更普遍地,蓝天分叉(不一定是混沌的)被认为是重要的机制,在电压崩溃研究中值得进一步考虑。

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