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Power system equilibrium tracing and bifurcation detection based on the continuation of the recursive projection method

机译:基于递归投影法延拓的电力系统平衡跟踪与分叉检测

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摘要

This study presents the continuation scheme of the recursive projection method (RPM) for power system equilibrium tracing and bifurcation detection using time-domain simulation code (TDSC). For a given operational condition, a basic RPM algorithm has been demonstrated to be very effective to extract power system steady-state and small-signal stability information from TDSC. It is now combined with arc-length continuation technique to mitigate singularity problems when the operational parameter variations are considered. Along the equilibrium tracing path, saddle node bifurcations (SNBs) and Hopf bifurcations (HBs) can be detected conveniently from byproducts of the RPM procedure. The proposed method takes advantage of available resources and avoids full state-space linearisation and large-scale eigenspectrum computation. The significance of the proposed approach is validated by a test example on New England 39-bus system.
机译:本研究提出了使用时域仿真代码(TDSC)的电力系统平衡跟踪和分叉检测的递归投影法(RPM)的延续方案。对于给定的运行条件,已经证明了一种基本的RPM算法对于从TDSC提取电力系统稳态和小信号稳定性信息非常有效。现在,当考虑到运行参数变化时,它与弧长连续技术相结合可以缓解奇点问题。沿着平衡追踪路径,可以方便地从RPM程序的副产品中检测出鞍形节点分叉(SNB)和霍普夫分叉(HBs)。所提出的方法利用了可用资源,并避免了完整的状态空间线性化和大规模特征谱计算。通过在新英格兰39总线系统上的测试示例验证了该方法的重要性。

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