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Optimal design of integrated energy system considering economics, autonomy and carbon emissions

机译:考虑经济学,自主和碳排放的集成能源系统的最佳设计

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Energy management and suitable sizing are regarded as major concerns at the time of designing integrated energy systems. Finding an efficient framework that combines sustainable design, reliable operation and lifetime cost at minimal level is essential for society, customers and investors. In this regard, a novel multi-objective optimization model for the design of integrated energy system with electric, thermal and cooling subsystem is established to simultaneously minimize the economic, technical and environmental objectives. It aims to obtain the optimal sizing of each component such as photovoltaic panels, wind turbine, battery energy storage system, combined cooling, heating and power generation system, heat storage tank, gas boiler and electric chiller considering system performance in economics, system autonomy and carbon emissions. A hybrid energy system in residential area is taken as a case study to demonstrate the application of the proposed method, the Pareto front of the multi objective problem is obtained via NSGA-II method, and four design plans on the Pareto front selected by Topsis method are analyzed and discussed. Such analysis show that the optimum solution could effectively reduce both the economic and environmental impacts of the integrated energy system as well as improve the system autonomy towards main grid. And the comparison about the results illustrated the reliability of the optimization model in this paper. This study demonstrates the high capability of the proposed design optimization in supporting economic design, improving autonomic operation and reducing the carbon emissions, meanwhile meeting multiple loads. (C) 2019 Elsevier Ltd. All rights reserved.
机译:能源管理和合适的尺寸被认为是设计综合能源系统时的主要问题。找到一个高效的框架,将可持续设计,可靠的运行和终身成本在最小的水平下对社会,客户和投资者来说至关重要。在这方面,建立了一种新的多目标优化模型,用于设计具有电气,热和冷却子系统的集成能量系统,同时最大限度地减少经济,技术和环境目标。考虑到经济学,系统自主性和系统性能和考虑系统性能,可以获得光伏板,风力涡轮机,电池储能系统,组合冷却,加热和发电系统,蓄热罐,燃气锅炉和电气冷却器的最佳尺寸。碳排放量。居住区的混合能量系统作为案例研究来证明所提出的方法的应用,通过NSGA-II方法获得多目标问题的帕累托前面,并通过TOPSIS方法选择了四个设计计划。分析和讨论。这样的分析表明,最佳解决方案可以有效地减少综合能源系统的经济和环境影响以及改善对主电网的系统自主权。与结果的比较说明了本文优化模型的可靠性。本研究展示了建议的设计优化在支持经济设计方面的高能力,改善自主操作,减少碳排放,同时满足多重载荷。 (c)2019 Elsevier Ltd.保留所有权利。

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