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Mean-field approach for frequency synchronization in complex networks of two oscillator types

机译:两个振荡器类型复杂网络中频率同步的平均现场方法

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摘要

Oscillator networks with an asymmetric bipolar distribution of natural frequencies are useful representations of power grids. We propose a mean-field model that captures the onset, form, and linear stability of frequency synchronization in such oscillator networks. The model takes into account a broad class of heterogeneous connection structures and identifies a functional form as well as basic properties that synchronized regimes possess classwide. The framework also captures synchronized regimeswith large phase differences that commonly appear just above the critical threshold. Additionally, the accuracy of mean-field assumptions can be gauged internally through two model quantities.With our framework, the impact of local grid structure on frequency synchronization can be systematically explored.
机译:具有不对称双极分布的自然频率的振荡器网络是电网的有用表示。 我们提出了一种平均场模型,其在这种振荡器网络中捕获频率同步的开始,形式和线性稳定性。 该模型考虑了广泛的异构连接结构,并识别功能形式以及同步制度在全族的基本属性。 该框架还捕获与普遍出现在临界阈值之上的大相差的同步eMimes。 另外,可以通过两个型号数量在内部衡量平均场假设的准确性。在我们的框架中,可以系统地探索局部网格结构对频率同步的影响。

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