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Virtual Oscillator Control subsumes droop control

机译:虚拟振荡器控制包含下垂控制

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In this paper we examine the amplitude and phase dynamics of power-electronic inverters in islanded microgrids that are controlled to emulate the dynamics of a class of weakly nonlinear Liénard-type oscillators. The general strategy of controlling inverters to emulate the behavior of Liénard-type oscillators is termed Virtual Oscillator Control (VOC), and it presents a compelling time-domain alternative to ubiquitous droop control methods which linearly trade off voltage frequencies and magnitudes with active and reactive power injections. In comparison to droop control, which assumes a priori that the network operates in a quasi-stationary sinusoidal steady state, VOC is a time-domain control strategy that globally stabilizes a desired sinusoidal steady state. The main, and somewhat surprising, result of this paper is that-when reduced to the sinusoidal steady state-the VOC dynamics correspond to those of droop control. Hence, VOC is a globally stabilizing control strategy that can deal with higher-order harmonics and includes droop control in the harmonic steady state. The results are intriguing, in that they suggest that droop control laws can be recovered from averaging the complex dynamics of a class of weakly nonlinear limit-cycle oscillators.
机译:在本文中,我们研究了孤岛微电网中功率电子逆变器的幅度和相位动力学,该微电网被控制以模拟一类弱非线性Liénard型振荡器的动力学。控制逆变器以模拟Liénard型振荡器行为的一般策略被称为虚拟振荡器控制(VOC),它提供了一种引人注目的时域替代方案,可替代无处不在的下垂控制方法,该方法线性地权衡了有功和无功的电压频率和幅度动力注入。与先验假定网络以准静态正弦稳态工作的下垂控制相比,VOC是时域控制策略,可全局稳定所需的正弦稳态。这篇论文的主要结果是令人惊讶的是,当归结为正弦稳态时,VOC动力学与下垂控制相对应。因此,VOC是一种全局稳定控制策略,可以处理高次谐波,并且包括在谐波稳态下的下垂控制。结果令人着迷,因为它们表明可以通过平均一类弱非线性极限环振荡器的复杂动力学来恢复下垂控制律。

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