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Steady-State Model and Power-Flow Analysis of Single-Phase Electronically Coupled Distributed Energy Resources

机译:单相电子耦合分布式能源的稳态模型和潮流分析

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This paper develops and presents the steady-state, fundamental-frequency model of the single-phase distributed energy resource (DER) unit which utilizes a single-phase voltage-sourced converter (VSC) as the interface medium. The model represents: 1) different operating and control modes and 2) the operational constraints and limits of the VSC and the host grid. The model is included in a sequential power-flow analysis method using: 1) a backward-forward sweep algorithm for single-phase laterals and 2) a sequence-components frame solver for three-phase networks. The interface-VSC operating limits are accommodated in the power-flow algorithm as an interleaved step to increase computational efficiency of the power-flow analysis tool. Case studies are conducted to evaluate and verify 1) the accuracy of the proposed model and 2) the computational efficiency of the power-flow algorithm.
机译:本文开发并提出了以单相电压源转换器(VSC)为界面介质的单相分布式能源(DER)单元的稳态基频模型。该模型表示:1)不同的运行和控制模式,以及2)VSC和主机网格的运行约束和限制。该模型包含在顺序功率流分析方法中,该方法使用:1)单相侧井的后向扫频算法,2)三相网络的序列分量框架求解器。接口VSC操作限制作为交错的步骤包含在潮流算法中,以提高潮流分析工具的计算效率。进行案例研究以评估和验证1)所提出模型的准确性,以及2)潮流算法的计算效率。

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