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Takagi-Sugeno Multimodeling-Based Large Signal Stability Analysis of DC Microgrid Clusters

机译:基于Takagi-sugeno多模型的DC微电网基的大信号稳定性分析

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DC microgrid (DCMG) clusters represent interconnections of multiple DCMGs to enable flexible power flow, and hence advantages of high resilience, economic dispatch, loss minimization, and optimal load response with microgrid-based distributed generations can fully be taken. However, small-scale DCMGs are known to be weak in nature due to low inertia and high grid impedance. Meanwhile, dynamic analyses of DCMG clusters have been plagued by their high order dynamic nonlinear system models since numerous state variables are involved. This article proposes large signal stability analysis of DCMG clusters based on Takagi-Sugeno multimodeling approach. With the proposed method, the large signal Lyapunov stability of the DCMG cluster is reduced to the computation of a series of linear matrix inequalities, which will significantly simplify the analysis. The influences of circuit parameters, power flows, and topological change on large signal stability of the DCMG cluster are revealed, and asymptotic stability regions of the network are estimated as well. In addition to simulation verification, a laboratory prototype of a ring topology DCMG cluster with three 48 V DCMGs interconnected is also built to validate the analysis by experimental results.
机译:DC MicroGrid(DCMG)集群代表多个DCMG的互连,以实现灵活的电力流量,因此可以充分地采取高弹性,经济调度,损耗最小化和最佳载荷响应的优点。然而,由于惯性低和高网格阻抗,已知小规模的DCMGs在性质中具有薄弱性。同时,由于涉及许多状态变量,因此DCMG集群的动态分析已被其高阶动态非线性系统模型困扰。本文提出了基于Takagi-Sugeno多模型方法的DCMG集群的大信号稳定性分析。利用所提出的方法,DCMG集群的大信号Lyapunov稳定性降低到一系列线性矩阵不等式的计算,这将显着简化分析。揭示了电路参数,功率流和拓扑变化对DCMG集群的大信号稳定性的影响,并且还估计了网络的渐近稳定性区域。除了仿真验证之外,还建立了具有三个48 V DCMGS的环形拓扑DCMG集群的实验室原型,以便通过实验结果验证分析。

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