Marginal loss calculation in competitive electrical energy markets

F. Li, Jiuping Pan, Henry Chao
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引用次数: 34

Abstract

The core of FERC proposed standard market design (SMD) in the US is locational marginal pricing (LMP) for electrical energy by which the energy prices are to be determined based on marginal costs in order to promote economic efficiency. One of the main challenging issues in implementing LMP methodology is the pricing of marginal losses, which requires accurate analysis of transmission losses and incorporating the effects of marginal losses into the optimal generation scheduling process. This paper presents two optimal generation scheduling algorithms where the effects of marginal losses are reflected through the use of penalty factors and delivery factors. Both algorithms are consistent with the overall SMD energy pricing approach, allowing for the calculation of three different LMP components: marginal energy cost, marginal congestion cost, and marginal loss cost. The algorithms are benchmarked with the NYISO method on a simple two-bus system, and then examined using a more realistic five-bus system. Some important issues on the implementation of marginal loss pricing in competitive energy markets are discussed.
竞争电力能源市场的边际损失计算
美国联邦能源监管委员会提出的标准市场设计(SMD)的核心是电能的区位边际定价(LMP),即根据边际成本确定能源价格,以提高经济效率。实施LMP方法的主要挑战之一是边际损耗的定价,这需要准确分析输电损耗,并将边际损耗的影响纳入最优发电调度过程。本文提出了两种最优的发电调度算法,其中边际损失的影响通过使用惩罚因子和交付因子来反映。这两种算法都与整体SMD能源定价方法一致,允许计算三种不同的LMP组件:边际能源成本、边际拥塞成本和边际损失成本。算法与NYISO方法在一个简单的双总线系统上进行了基准测试,然后使用更现实的五总线系统进行了测试。讨论了在竞争性能源市场中实施边际损失定价的几个重要问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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