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DCOPF-Based Marginal Loss Pricing With Enhanced Power Flow Accuracy by Using Matrix Loss Distribution

机译:通过使用矩阵损耗分布,基于DCOPF的边际损耗定价具有更高的潮流精度

摘要

On current days, many of the power markets are adopting the practice of marginal loss pricing. The dc optimal power flow (DCOPF) model is still mostly used for the purpose of market clearing owing to its simplicity, robustness and higher speed of convergence. Within the DCOPF framework, transmission line losses are represented as additional external loads on the system. In the classical DCOPF model of marginal loss pricing, as implemented in the New England market, the aggregated network loss is distributed over the system nodes in a fixed ratio. To gain more design flexibility in the distribution of system losses, a matrix loss distribution (MLD) framework is developed in this paper maintaining compatibility with financial transmission rights. In MLD, each individual line is considered separately for the purpose of loss distribution. The ratio in which the power loss in a certain line is distributed can be different from that in which the power loss in another line is distributed. The additional design flexibility thus obtained assists in making a more accurate representation of the power flow. The benefit of MLD is illustrated through a case study. An energy reference independent application of MLD is also suggested.
机译:目前,许多电力市场都采用边际损失定价法。直流最优功率流(DCOPF)模型由于其简单性,鲁棒性和更高的收敛速度,仍然主要用于市场清理。在DCOPF框架内,传输线损耗表示为系统上的额外外部负载。在新英格兰市场中实施的经典DCOPF边际损失定价模型中,汇总的网络损失以固定比率分布在系统节点上。为了在系统损失分配中获得更多的设计灵活性,本文开发了一种矩阵损失分配(MLD)框架,以保持与财务传输权的兼容性。在MLD中,出于损失分配的目的,单独考虑每条线。分配特定线路中的功率损耗的比例可以不同于分配另一条线路中的功率损耗的比例。这样获得的附加设计灵活性有助于更精确地表示功率流。通过案例研究说明了MLD的好处。还建议了MLD的能量参考独立应用。

著录项

  • 作者

    SARKAR V; KHAPARDE SA;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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