通过动态编程优化储能系统中的电力成本

D. Mishra, Bhabesh Routray, Nitesh Pattanayak, Priyansu Shekhar, Pratyus Ranjan Behera, S. Salkuti
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引用次数: 0

摘要

本文提出了一种电力存储系统成本优化的动态编程解决方案。其目标是在考虑能源约束和成本的情况下,最大限度地降低在指定时间间隔内满足电力需求的总成本。所提出的算法能有效确定储能系统的最佳放电和充电策略,从而降低总成本。该算法通过各种测试案例展示了其有效性和效率,突出了其在储能系统和电网管理实际应用中的潜力。报告还概述了不同类型的储能系统,回顾了近期有关储能优化技术的研究,并考察了近期针对特定应用(如削峰填谷和电网稳定)的储能系统优化研究。我们希望通过这些全面的分析,阐明该领域的现状,并确定需要进一步研究和改进的领域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cost optimization of electricity in energy storage system by dynamic programming
This paper presents a dynamic programming solution for the cost optimization of an electric storage system. The objective is to minimize the total cost of meeting electricity demand over a specified time interval, considering energy constraints and costs. The proposed algorithm efficiently determines the optimal energy discharge and charge strategies for the storage system, resulting in reduced overall costs. The effectiveness and efficiency of the algorithm are demonstrated through various test cases, highlighting its potential for real-world applications in energy storage systems and electric grid management. It also provides an overview of different types of electrical storage systems, review recent research on optimization techniques for energy storage, and examines recent studies on the optimization of electrical storage systems for specific applications, such as peak load shaving and grid stability. Through this comprehensive analysis, we hope to shed light on the current state of the field and identify areas for further research and improvement.
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