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Power flow formulation for LVDC microgrids with nonlinear load models

机译:用于非线性负载模型的LVDC微电网的电力流动

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Low voltage direct current microgrids are seen as key components of the future smart grids together with their AC counterparts. In the analysis of such microgrids the loads are modelled most of the times as constant power loads (CPL). This paper proposes a quantification of the flexibility introduced by several DC loads, generally available in low voltage DC microgrids as in-use appliances. The analysis is based on a power flow formulation that takes into account the droop control coefficients and that includes the actual non-linear characteristics of such loads. The models we use for the flexible DC loads were experimentally derived through a measurement scenario built on steady-state time intervals of 10s.
机译:低压直流微电网被视为未来智能电网的关键组成部分与其交流对应物。在对这种微电网的分析中,负载大部分时间被建模为恒定功率负载(CPL)。本文提出量化了几种直流载荷引入的灵活性,通常可用于低压DC微电网作为内用品。该分析基于对下垂控制系数的功率流制构,并且包括这种负载的实际非线性特性。我们用于灵活的DC负载的模型通过在10S的稳态时间间隔内构建的测量场景进行实验地导出。

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