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Multi-objective energy management of CHP (combined heat and power)-based micro-grid

机译:基于CHP(热电联产)的微电网多目标能源管理

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摘要

In this paper, an IEMS (intelligent energy management system) is proposed for optimal operation of a CHP-based micro-grid over a 24-hour time interval. The IEMS aims to find the optimal set points of DERs (distributed energy resources) and thermal and electrical storage systems, in such a way that the total operation cost and the net emission are minimized, simultaneously. For optimal operation of the micro-grid, a smart ESS (energy storage system) is introduced which consists of electrical and thermal storage systems. A comprehensive mathematical model for the ESS and also the economic and environmental objective functions are formulated. To solve the problem, we propose an efficient MBFO (modified Bacterial Foraging Optimization) algorithm. An interactive fuzzy satisfying method is also used to simulate the trade-off between conflicting objectives (cost and emission). To validate the performance of the proposed algorithm, we compare the MBFO algorithm with some other previously proposed analytical methods. Finally, the proposed IEMS is applied to a micro-grid which consists of various DERs, CHP (combined heat and power) system, ESS and thermal and electrical loads. The results show that the proposed IEMS can smartly cover the total electrical and thermal load demands with respect to economic and environmental criteria.
机译:在本文中,提出了IEMS(智能能源管理系统)以在24小时的时间间隔内优化基于CHP的微电网的运行。 IEMS旨在找到DER(分布式能源)和蓄热和蓄电系统的最佳设定点,以使总运营成本和净排放量同时最小化。为了使微电网实现最佳运行,引入了一个智能ESS(能量存储系统),该系统由电和热存储系统组成。建立了ESS的综合数学模型以及经济和环境目标函数。为了解决该问题,我们提出了一种有效的MBFO(改进的细菌觅食优化)算法。交互式模糊满足方法也用于模拟冲突目标(成本和排放)之间的权衡。为了验证所提出算法的性能,我们将MBFO算法与其他一些先前提出的分析方法进行了比较。最后,将建议的IEMS应用于微电网,该微电网包括各种DER,CHP(热电联产)系统,ESS和热电负荷。结果表明,相对于经济和环境标准,拟议的IEMS可以巧妙地满足总的电气和热负荷需求。

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