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A New Approach for Benefit Evaluation of Multiterminal VSC–HVDC Using A Proposed Mixed AC/DC Optimal Power Flow

机译:利用建议的AC / DC混合最佳潮流进行多端VSC-HVDC效益评估的新方法

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摘要

In this paper, an extended optimal power-flow (OPF) model incorporating a detailed model of a voltage-source converter-based–multiterminal high-voltage direct current system (VSC–MTDC) is proposed, hereafter referred to as the mixed ac/dc OPF (M-OPF) model. A cost-benefit analysis approach using the M-OPF model as the calculation engine is proposed to determine the preferred VSC-MTDC alternative to be installed in an existing ac transmission system. In this approach, the operational benefits of VSC–MTDC systems are evaluated against their investment costs to derive the benefit-to-cost ratios (BCR) which reflect the cost-effectiveness of the alternatives. A case study has been carried out using a modified Nordic 32-bus system. The results of the study show that VSC–MTDC systems might lead to a reduction in total operation cost, and the reduction of the total system transmission loss depends to a large extent on the VSC–MTDC configuration. The results from sensitivity analyses show that if the VSC loss could be reduced to a third of the original level, the total benefit from the system would be increased by about 70%. A suggestion for the placement and configuration of a VSC–MTDC system is made based on calculated BCRs.
机译:本文提出了扩展的最优功​​率流(OPF)模型,该模型结合了基于电压源转换器的多端子高压直流系统(VSC–MTDC)的详细模型,以下称为混合ac /直流OPF(M-OPF)型号。提出了一种使用M-OPF模型作为计算引擎的成本效益分析方法,以确定要安装在现有ac传输系统中的首选VSC-MTDC替代方案。通过这种方法,将VSC–MTDC系统的运营收益与其投资成本进行比较,以得出反映成本效益的收益成本比(BCR)。使用改进的北欧32总线系统进行了案例研究。研究结果表明,VSC–MTDC系统可能会导致总运营成本的降低,而总系统传输损耗的降低在很大程度上取决于VSC–MTDC的配置。灵敏度分析的结果表明,如果VSC损失可以减少到原始水平的三分之一,则该系统的总收益将增加约70%。根据已计算的BCR对VSC-MTDC系统的放置和配置提出建议。

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