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A Generalized Computational Method to Determine Stability of a Multi-inverter Microgrid

机译:确定多逆变器微电网稳定性的通用计算方法

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摘要

Microgrid-containing parallel-connected inverters, where each inverter is controlled by decentralized active power/voltage frequency and reactive power/voltage magnitude droop control laws results in flexible and expandable systems. These systems have been known to have stability problems for large values of active power/voltage frequency droop control gain. However, so far the stability analysis of multi-inverter systems has always been performed in a computationally intensive manner by considering the entire microgrid. In a practical microgrid, where the number of inverters may be large or the capacity of the units may differ, it becomes essential to develop a method by which stability can be examined without much computational burden. The system of differential algebraic equations has been simplified using justifiable assumptions to result in a final expression that allows the stability of the microgrid to be examined separately with respect to the droop control laws of each inverter transformed into an equivalent network. Moreover, the procedure allows taking into consideration the $R$/$X$ ratio of the interconnecting cables. Analysis of final expressions validate the stability results reported in literature. Experimental results on hardware show the stable operation of the microgrid.
机译:包含微电网的并联逆变器,其中每个逆变器均由分散的有功功率/电压频率和无功功率/电压幅值下降控制律控制,从而实现了灵活且可扩展的系统。已知这些系统对于有功功率/电压频率下降控制增益的较大值具有稳定性问题。但是,到目前为止,多逆变器系统的稳定性分析始终是通过考虑整个微电网以计算密集型方式进行的。在实际的微电网中,逆变器的数量可能很大,或者单元的容量可能不同,因此开发一种无需太多计算负担就能检查稳定性的方法就变得至关重要。使用合理的假设简化了微分代数方程组,以得到最终表达式,该表达式允许根据转换为等效网络的每个逆变器的下垂控制定律分别检查微电网的稳定性。而且,该程序允许考虑互连电缆的$ R $ / $ X $比率。最终表达的分析验证了文献中报道的稳定性结果。硬件上的实验结果表明微电网稳定运行。

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