通过优化运行时间来降低加权平均发电成本:巴基斯坦的研究

Hafiz Owais Ahmed Khan, Aleena Ahmad, N. Arshad, Ahmad Nadeem
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引用次数: 0

摘要

随着全球电力需求的快速增长,高峰时段的电力负荷管理至关重要。基于化石燃料的易排放发电机通常用于满足高峰时段的需求,这导致发电成本增加。需求侧管理(DSM)是一种众所周知的柔性负荷管理技术。然而,它需要提高与可再生资源的兼容性,这些资源便宜但本质上是间歇性的。除了经济效益外,通过加强可再生能源的结合进行电力管理也将减少排放总量。在本文中,我们使用凸优化来模拟能源消耗,在巴基斯坦的电力部门,根据功绩顺序。仿真框架将用于在给定约束下使用平衡优化来找到可以从一小时转移的最佳负载量。研究结果表明,采用现实的DSM参数,电力部门可以获得巨大的经济效益和环境效益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Lowering Weighted Average Cost of Generation by Optimizing Operating Time: A Study from Pakistan
With rapidly increasing electricity demand globally, it is crucial to manage the electricity load during peak hours. Fossil fuel-based emission prone generators are often used to fulfill demand during peak hours, which results in an increase in the cost of generation. Demand side management (DSM) is a well-known technique to manage the flexible load. However, it requires increased compatibility with renewable resources, which are cheap but inherently intermittent. Along with financial benefits, electricity management through enhanced incorporation of renewables will also reduce the sum of emissions. In this paper, we use convex optimization to simulate energy consumption, according to the merit order, in Pakistan’s power sector. The simulation framework will be used to find optimal amount of load that can be shifted from an hour, using equilibrium optimization under given constraints. The results depict that the power sector can gain massive financial and environmental benefits using realistic DSM parameters.
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