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Virtual impedance based stability improvement for DC microgrids with constant power loads

机译:基于虚拟阻抗的DC微电网具有恒定功率负载的稳定性改进

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In this paper, in order to improve the stability of DC microgrids with constant power loads (CPLs), a virtual impedance based method is proposed. The CPLs have inherent instability issues induced by negative incremental impedances. To enhance the system stability, two types of virtual impedance based stabilizers comprised of series-connected inductance and resistance are employed. Type I stabilizer locates at the output capacitor branch, and Type II stabilizer locates at the output inductance branch. Meanwhile, considering that the parallel interfacing converters are commonly in parallel in a microgrid, droop control is taken into account. To validate the stability of the above stabilizers in a DC microgrid with parallel interfacing converters and CPLs, the impedance matching approach is employed. It is demonstrated that, the instable poles can be moved to the stable region in the frequency domain by the proposed stabilizers. Simulations with three interfacing converters are conducted by using MATLAB/Simulink, which verify the effectiveness of the proposed methods. It is shown that both of the proposed virtual impedance based stabilizers can effectively enhance the system stability with CPLs.
机译:本文提出了提高DC微电网的稳定性,提出了一种虚拟阻抗的方法。 CPLS具有负增量阻抗引起的固有的不稳定性问题。为了提高系统稳定性,采用两种类型的虚拟阻抗基于串联电感和电阻的虚拟阻抗。 I型稳定器位于输出电容器分支处,II型稳定器位于输出电感分支。同时,考虑到并行接口转换器通常在微电网中并行,考虑下垂控制。为了验证与并联接口转换器和CPLS的DC微电网中上述稳定器的稳定性,采用阻抗匹配方法。据证明,可以通过所提出的稳定器移动到稳定区域中的稳定区域。使用MATLAB / SIMULINK进行三个接口转换器的模拟,验证了所提出的方法的有效性。结果表明,两个所提出的虚拟阻抗的稳定器可以有效地提高CPLS的系统稳定性。

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