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Min-Max Fair Power Flow Tracing for Transmission System Usage Cost Allocation: A Large System Perspective

机译:输电系统使用成本分配的最小-最大公平潮流跟踪:一个大型系统的角度

摘要

Power flow tracing has been suggested as an approach for evaluating 1) transmission system usage (TSU) cost and 2) loss (MW) cost for generator and load entities in the system. Recently, optimal power flow tracing methods have been proposed to "explicitly" model fairness constraints in the tracing framework. This paper, further, strengthens the tracing-compliant min-max fair cost allocation approach. The min-max model proposed in this paper is robust. It addresses concerns like scalability, numerical stability and termination in a finite number of steps while searching the optimal solution. We also propose a methodology to model DISCOMs and GENCOs as coalition within min-max framework. Case studies on an all India network of 1699 nodes and comparison with average participation and marginal participation methods bring out the better conflict resolution feature of the proposed approach. A method to model HVDC lines within the marginal participation scheme is also proposed. Quantitative and qualitative comparison of various TSU cost allocation methods on such a large system is another noteworthy contribution of the paper.
机译:已经提出了潮流跟踪作为评估1)传输系统使用(TSU)成本和2)系统中发电机和负载实体的损耗(MW)成本的方法。最近,已经提出了最佳潮流跟踪方法,以“明确”对跟踪框架中的公平性约束进行建模。本文进一步加强了符合跟踪标准的最小-最大公平成本分配方法。本文提出的最小-最大模型是鲁棒的。它在寻找最佳解决方案的同时,以有限的步骤解决了诸如可伸缩性,数值稳定性和终止性等问题。我们还提出了一种在最小-最大框架内将DISCOM和GENCO建模为联盟的方法。通过对全印度1699个节点的网络进行案例研究,并与平均参与度和边际参与度方法进行比较,得出了该方法更好的冲突解决功能。还提出了一种在边际参与方案内对高压直流输电线路建模的方法。在如此大的系统上,各种TSU成本分配方法的定量和定性比较是本文的另一个值得注意的贡献。

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