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Synchronization and transient stability in power networks and nonuniform Kuramoto oscillators

机译:电力网络和非均匀Kuramoto振荡器的同步和暂态稳定性

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Motivated by recent interest for multiagent systems and smart grid architectures, we discuss the synchronization problem for the network-reduced model of a power system with nontrivial transfer conductances. Our key insight is to exploit the relationship between the power network model and a first-order model of coupled oscillators. Assuming overdamped generators (possibly due to local excitation controllers), a singular perturbation analysis shows the equivalence between the classic swing equations and a nonuniform Kuramoto model. Here, nonuniform Kuramoto oscillators are characterized by multiple time constants, nonhomogeneous coupling, and nonuniform phase shifts. Extending methods from transient stability, synchronization theory, and consensus protocols, we establish sufficient conditions for synchronization of nonuniform Kuramoto oscillators. These conditions reduce to necessary and sufficient tests for the standard Kuramoto model. Combining our singular perturbation and Kuramoto analyses, we derive concise and purely algebraic conditions that relate synchronization in a power network to the underlying network parameters.
机译:受最近对多智能体系统和智能电网架构的关注的启发,我们讨论了具有非平凡传输电导的电力系统的网络简化模型的同步问题。我们的主要见识在于开发电网模型和耦合振荡器的一阶模型之间的关系。假设发电机过度阻尼(可能是由于本地励磁控制器造成的),奇异摄动分析显示了经典摆幅方程和非均匀Kuramoto模型之间的等价性。在此,不均匀的仓本振荡器的特征在于多个时间常数,不均匀的耦合和不均匀的相移。从暂态稳定性,同步理论和共识协议扩展了方法,我们为非均匀Kuramoto振荡器的同步建立了充分的条件。这些条件减少了对标准仓本模型的必要和充分的测试。结合我们的奇异摄动和Kuramoto分析,我们得出了简洁而纯粹的代数条件,这些条件将电力网络中的同步与基础网络参数相关联。

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