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Analysis on impacts of the shunt conductances in multi-terminal HVDC grids optimal power-flow

机译:分流电导对多端高压直流输电系统最佳潮流的影响分析

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This study deals with impacts of the shunt conductances associated with HVDC cables and VSC-HVDC stations on optimal operation of Multi-Terminal HVDC (MT-HVDC). In this study, for the first time, shunt conductances are integrated to HVDC Optimal Power-Flow (OPF) program that is executed at the Power Dispatch Center (PDC) of the MT-HVDC grid. With the objective of losses minimization, optimal reference operation points of the VSC-HVDC stations are derived. The operating points of the power converter stations are adjusted based on the calculations performed in the dispatch center. CIGRE DCS3 MT-HVDC grid, structured by CIGRE B4 working group, is taken as the test platform. Test results have revealed the optimum voltages and loss pattern change. Moreover, the findings are compared with the case of neglecting the shunt conductances.
机译:这项研究涉及与HVDC电缆和VSC-HVDC站相关的并联电导对多端子HVDC(MT-HVDC)最佳运行的影响。在本研究中,首次将分流电导集成到在MT-HVDC电网的功率分配中心(PDC)执行的HVDC最佳潮流(OPF)程序中。为了使损耗最小化,导出了VSC-HVDC站的最佳参考工作点。根据调度中心中执行的计算来调整功率转换站的工作点。以CIGRE B4工作组组成的CIGRE DCS3 MT-HVDC电网为测试平台。测试结果表明最佳电压和损耗模式变化。此外,将发现与忽略并联电导的情况进行比较。

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