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Passivity Conditions for Plug-and-Play Operation of Nonlinear Static AC Loads

机译:非线性静态AC负载的即插即用操作的被动条件

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The complexity arising in AC microgrids from multiple interactingdistributed generation units(DGUs) with intermittent supply behavior requires localvoltage-source inverters(VSIs) to be controlled in a distributed or decentralized manner at primary level. In (Strehle et al., 2019a), we use passivity theory to design decentralized, plug-and-play voltage and frequency controllers for such VSIs. However, the stability analysis of the closed-loop system requires a load-connected topology, in contrast to real grids where loads are arbitrarily located. In this paper, we expand our former approach by considering the more realistic and general case of nonlinear static AC loads (ZIP and exponential) at arbitrary locations within an AC microgrid. Investigating the monotonicity of differentiable mappings, we derive sufficient inequality conditions for the strict passivity of these nonlinear static AC loads. Together with our plug-and-play VSI controller, this allows us to use passivity arguments to infer asymptotic voltage and frequency stability for AC microgrids with arbitrary topologies. An illustrative simulation validating our theoretical findings concludes our work.
机译:具有间歇供应行为的多个互动的分布单位(DGU)的AC微电网中产生的复杂性需要在初级级别以分布的或分散的方式控制局部遮源逆变器(VSI)。在(Strehle等,2019a)中,我们使用被动理论来设计分散,即插即用电压和频率控制器的这种VSI。然而,闭环系统的稳定性分析需要加载连接的拓扑,与载荷是任意定位的真实网格相比。在本文中,我们通过考虑AC微电网内任意位置的非线性静态AC负载(ZIP和指数)的更现实和一般的情况来扩展我们以前的方法。调查可分解映射的单调性,我们可以获得足够的不等式条件,以严格的这些非线性静态交流载荷。与我们的即插即用VSI控制器一起,这使我们能够使用被动参数来推断具有任意拓扑的AC微电网的渐近电压和频率稳定性。验证我们理论调查结果的说明性模拟结束了我们的工作。

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