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Synchronization of Liénard-type oscillators in heterogenous electrical networks

机译:异构电网中Liénard型振荡器的同步

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Motivated by potential applications for power-electronic converters in microgrids, we study the problem of global asymptotic synchronization of Liénard-type nonlinear oscillators in heterogenous LTI electrical networks with series R-L circuits modeling interconnections. By heterogeneous, we mean that the resistance-to-inductance ratios of the lines are not all the same. Building on our previous work, we derive sufficient conditions for global asymptotic synchronization by using a first-order filter on the outputs of the oscillators. Our approach leverages a coordinate transformation to a system that emphasizes signal differences and the use of passivity based arguments to establish synchronization of the network of oscillators asymptotically. The analysis subsumes and generalizes previous conditions that have been derived for Liénard oscillators in homogeneous electrical networks. Numerical simulations are provided to validate the results.
机译:受微电网中电力电子转换器潜在应用的推动,我们研究了具有串联互连的串联R-L电路的异构L​​TI电网中Liénard型非线性振荡器的全局渐近同步问题。所谓异质,是指线路的电阻比并非全部相同。在我们之前的工作的基础上,我们通过在振荡器的输出上使用一阶滤波器来为全局渐近同步导出充足的条件。我们的方法将坐标变换应用于强调信号差异的系统,并使用基于无源性的参数来渐近地建立振荡器网络的同步。该分析包含并归纳了均质电网中有关Liénard振荡器的先前条件。提供数值模拟以验证结果。

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