Stochastic Optimal Scheduling of Microgrids Considering Demand Response and Commercial Parking Lot by AUGMECON Method

Q3 Energy
M. Sedighizadeh, S. M. Z. Alavi, A. Mohammadpour
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引用次数: 10

Abstract

Regarding the advances in technology and anxieties around high and growing prices of fossil fuels, government incentives increase to produce cleaner and sustainable energy through distributed generations. This makes trends in the using microgrids which consist of electric demands and different distributed generations and energy storage systems. The optimum operation of microgrids with considering demand-side management increases efficiency and reliability and maximize the advantages of using distributed generations. In this paper, the optimal operation scheduling and unit commitment of generation units installed in a microgrid are investigated. The microgrid consists of technologies based on natural gas that are microturbine and phosphoric acid fuel cell and technologies based on renewable energy, including wind turbine and photovoltaic unit along with battery energy storage system and plug-in electric vehicle commercial parking lot. The goal of the paper is to solve a multi-objective problem of maximizing revenues of microgrid operator and minimizing emissions. This paper uses an augmented epsilon constraint method for solving the multi-objective problem in a stochastic framework and also implements a fuzzy-based decision-maker for choosing the suitable optimal solution amid Pareto front solutions. This new model implements the three type of the price-based and incentive-based demand response program. It also considers the generation reserve in order to enhance the flexibility of operations. The presented model is tested on a microgrid and the results demonstrate the efficacy of the proposed model economically and environmentally compared to other methods.
AUGMECON方法在考虑需求响应和商业停车场的微电网随机优化调度中的应用
关于技术的进步和对化石燃料价格高企和不断上涨的担忧,政府加大了通过分布式发电生产更清洁和可持续能源的激励力度。这就形成了使用微电网的趋势,微电网由电力需求和不同的分布式发电和储能系统组成。考虑需求侧管理的微电网优化运行提高了效率和可靠性,并最大限度地发挥了使用分布式发电的优势。本文研究了微电网中发电机组的最优运行调度和机组组合。微电网包括基于天然气的微型涡轮机和磷酸燃料电池技术,以及基于可再生能源的技术,包括风力涡轮机和光伏机组,以及电池储能系统和插电式电动汽车商业停车场。本文的目标是解决微电网运营商收入最大化和排放最小化的多目标问题。本文使用增广ε约束方法来解决随机框架中的多目标问题,并实现了一个基于模糊的决策器来在Pareto前沿解中选择合适的最优解。这个新模型实现了基于价格和基于激励的三种需求响应方案。它还考虑了发电储备,以提高运营的灵活性。该模型在微电网上进行了测试,结果表明,与其他方法相比,该模型在经济和环境方面都是有效的。
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
Iranian Journal of Electrical and Electronic Engineering
Iranian Journal of Electrical and Electronic Engineering Engineering-Electrical and Electronic Engineering
CiteScore
1.70
自引率
0.00%
发文量
13
审稿时长
12 weeks
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