Impact of Price-Responsive Load and Renewables in an Emission-Aware Power Systems

IF 3.3 Q3 ENERGY & FUELS
Boming Liu;Jin Dong;Byungkwon Park;Jianming Lian;Teja Kuruganti
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引用次数: 0

Abstract

Decarbonization of the power grid will require collective efforts from different entities. As the global energy sector shifts from fossil-based systems of energy production to renewable energy sources to reduce energy-related greenhouse gas emissions, demand-side flexibility can play an important role in decarbonizing the grid. In this paper, we explore the impact of price-responsive loads and renewable resources in an emission-aware power system. The proposed simulation framework utilizes a modified optimal power flow formulation that considers the carbon cost in addition to the fuel cost of generations. The system also incorporates the demand flexibility through market coordination based on the emission-aware locational marginal prices (E-LMPs) to contribute to the overall emissions reduction. Numerical studies on the test system were performed to compare the emission-aware power system operation and the traditional power system operation in different scenarios. Quantitative results on carbon emission reduction are provided to evaluate the impact of the price-responsive loads and renewable resources. The results demonstrate that E-LMPs and the active participation of flexible loads can help reduce carbon emissions, especially with renewable resources in the system.
价格敏感型负载和可再生能源对排放敏感型电力系统的影响
电网的去碳化需要不同实体的共同努力。随着全球能源行业从化石能源生产系统转向可再生能源,以减少与能源相关的温室气体排放,需求方的灵活性可在电网去碳化过程中发挥重要作用。本文探讨了排放感知电力系统中价格反应型负载和可再生资源的影响。所提出的仿真框架采用了改进的最优电力流公式,除了考虑发电燃料成本外,还考虑了碳成本。该系统还通过基于排放感知区位边际价格(E-LMPs)的市场协调纳入了需求灵活性,以促进整体减排。对测试系统进行了数值研究,以比较排放感知电力系统和传统电力系统在不同情景下的运行情况。提供了碳减排的定量结果,以评估价格反应型负荷和可再生资源的影响。结果表明,E-LMP 和灵活负荷的积极参与有助于减少碳排放,特别是在系统中有可再生资源的情况下。
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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来源期刊
CiteScore
7.80
自引率
5.30%
发文量
45
审稿时长
10 weeks
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