Determining market clearing price using graphical analysis - impact of loss as a case study

S. Karthikeyan, Sathish K. Kumar, Y. Janakinadh, V. V. Raviteja, I. Raglend, D. Kothari
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引用次数: 3

Abstract

Market clearing price (MCP) has been the prime operating function for a pool operator in energy trading scenario. Its main objective is to maximize the social welfare function where the society i.e. both the generating companies and the consumers are benefited and unbiased. Many researchers take stepped bid functions of both the generators and consumers as inputs for determining MCP (λ). But owing to reason of having less information and less realistic, quadratic bidding functions are preferred and a closed form solution scheme with and without loss have been developed. Gradient technique has been used for finding the mcp when losses are considered. All the above solution has been interpreted using graphical approach. The proposed approach has been tested on a 30 bus system and a 3 unit system. From the results, a conceptual understanding has been made and how various market conditions have an impact on the MCP is discussed. The results obtained are quite encouraging and useful for the present context of deregulation and restructuring of electricity market. MATLAB 7.0 has been used to carry out the simulation.
使用图形分析确定市场出清价格-损失影响作为案例研究
市场清算价格(MCP)一直是能源交易场景中池运营商的主要操作功能。其主要目标是最大化社会福利功能,即社会,即发电公司和消费者都受益和公正。许多研究人员将发电机和消费者的阶梯出价函数作为确定MCP (λ)的输入。但由于信息少,不太现实,人们倾向于采用二次竞价函数,并提出了一种有损失和无损失的封闭式求解方案。在考虑损失的情况下,利用梯度技术求出了mcp。以上解决方案均采用图形化方法进行了解释。该方法已在30总线系统和3单元系统上进行了测试。从结果中,我们得到了一个概念性的理解,并讨论了各种市场条件对MCP的影响。所得结果对当前放松管制和电力市场结构调整的背景下具有一定的借鉴意义。采用MATLAB 7.0进行仿真。
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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