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An optimal scheduling model of an energy storage system with a photovoltaic system in residential buildings considering the economic and environmental aspects

机译:考虑经济环境方面的住宅建筑中光伏系统的能量存储系统的最佳调度模型

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摘要

In terms of sustainable development, the Energy Storage System (ESS) with a photovoltaic (PV) is an efficient technology for residential distributed generation to raise its economic and environmental benefits, which are differentiated by charge and discharge scheduling of ESS. Accordingly, it is essential to optimize the scheduling of ESS with PV to maximize economic and environmental benefits for residential buildings. Therefore, this study developed an optimal scheduling model of ESS with PV in residential buildings considering the economic and environmental aspects. The optimal scheduling model was developed in the following two steps: (i) definition of the variables; and (ii) development of the optimal scheduling model of ESS with PV. Despite the rule-based scheduling could only raise lifecycle environmental benefit by sacrificing economic benefit, the optimal scheduling could raise both lifecycle economic and environmental benefits increasing the net income and self-sufficiency rate by up to US$2.8 per month and 2.7%, compared to the case of applying the PV system without ESS. This study has significant contributions in facilitating the wide use of ESS with PV by not only improving its economic and environmental benefits for the ESS owner but also reducing the cost for constructing additional power plants for the government. (C) 2019 Elsevier B.V. All rights reserved.
机译:在可持续发展方面,具有光伏(PV)的能量存储系统(ESS)是住宅分布式发电的有效技术,以提高其经济和环境效益,这些效益是通过ESS的充电和放电调度来区分。因此,必须优化具有PV的ESS的调度,以最大限度地为住宅建筑物最大限度地提高经济和环境效益。因此,考虑到经济和环境方面,本研究开发了居住建筑中的富光伏的最佳调度模型。最佳调度模型是在以下两个步骤中开发的:(i)变量的定义; (ii)具有光伏的ESS最佳调度模型的开发。尽管基于规则的调度只能通过牺牲经济利益来提高生命周期环境效益,但最佳调度可以提高生命周期经济和环境效益,增加净收入和自给自足率为每月2.8美元和2.7%应用PV系统的情况没有ESS。本研究具有重要贡献,促进通过对PV的广泛使用,不仅可以提高其对ESS所有者的经济和环境效益,还可以降低为政府建造额外电厂的成本。 (c)2019 Elsevier B.v.保留所有权利。

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