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Influence of different time horizon-based battery energy management strategies on residential microgrid profitability

机译:基于时间的地平线的电池能源管理策略对住宅微林盈利能力的影响

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The growing share of renewable sources in future residential microgrids generates variability as well as price volatility on European electricity markets. Therefore, to handle this issue and enhance the system profitability, advanced energy management strategies should be developed. To that end, this paper proposes to assess the relevance of an energy management strategy based on 48-hour horizon compared to a 24-hour horizon one in order to perform energy arbitrage. This study considers a residential microgrid based on photovoltaic generation and storage connected to the main grid. Proposed 48-hour energy management strategy provides additional management possibilities such as the ability to delay trades (charge today, discharge tomorrow) and a larger range of hours to use the storage. Particle Swarm Optimizer is used to solve the optimization part. Besides, a sensitivity analysis is investigated to assess the economic impact of forced storage of solar surplus power in order to increase self-consumption rate and storage size. Obtained results demonstrates better profitability by using proposed strategy. Profitability was improved by more than 11% compared to classical algorithms for the tested scenarios. The findings of this study illustrate that the use of 48-hour horizon-based energy management strategy can be more profitable and lead residential microgrids to decrease their operation cost and increase power balance for all grid stakeholders through feed-in price leverage.
机译:未来住宅微电网中可再生能源的日益增长的份额产生可变性以及欧洲电力市场的价格波动。因此,为了处理这个问题并提高系统盈利能力,应制定先进的能源管理策略。为此,本文建议评估能源管理战略的相关性与48小时地平线相比,与24小时地平线相比,为了执行能源套利。本研究考虑了基于光伏发电和连接到主电网的存储器的住宅微电网。提出了48小时的能源管理策略提供了额外的管理可能性,例如延迟交易的能力(今日充电,明天收取)以及使用储存的较大小时数。粒子群优化器用于解决优化部分。此外,调查了敏感性分析,以评估强制储存太阳能剩余电力的经济影响,以提高自我消费率和储存尺寸。获得的结果通过使用拟议的策略表明了更好的盈利能力。与测试方案的经典算法相比,盈利能力提高了11%以上。本研究的结果表明,使用48小时地平线的能源管理策略可以更有利可图,并且通过饲料价格杠杆降低所有电网利益相关者的运营成本,并提高所有电网利益相关者的运营成本,并提高电力平衡。

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