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Risk-constrained scheduling of a CHP-based microgrid including hydrogen energy storage using robust optimization approach

机译:基于CHP的微电网的风险约束调度,包括使用鲁棒优化方法的氢能存储

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Recently, the integration of various energy resources, including renewable generation and combined heat and power (CHP) units in microgrids, has created the opportunity of off-grid operation with a suitable range of reliability. This paper presents an optimization model to schedule an islanded MG with various resources, including CHP, photovoltaic (PV), and boiler, as the primary energy provision sources besides electric battery storage, thermal storage and hydrogen energy system (HES). The HES has the power-to-hydrogen (P2H) and hydrogen-to-power (H2P) modes, which increases the flexibility of the scheduling. The uncertainty management is the most essential task in the CHP-based MGs scheduling problem, since the power and heat productions are interrelated and can result in economic losses without enough deliberations. Hence, this paper proposes the robust optimization approach (ROA) to cope with the uncertainties associated with the PV production and electric and heat load demands. The robust counterparts are applied to the deterministic problem to create a tractable adjustable robust framework. The problem is structured as a mixed-integer linear programming (MILP) handled by the General Algebraic Modeling System (GAMS) using CPLEX solver. The results verified the effectiveness of the proposed robust counterparts in managing the associated risk. The results illustrated a conscious scheduling strategy under robust conditions. However, the more preserved decisions are taken, the higher operational cost is realized. In this regard, the increment of robustness level from the lowest value (deterministic condition) to the highest value (conservatism condition) increased the operation cost by about 43.29%. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:最近,各种能源的整合,包括微电网中的可再生发电和综合热量和电力(CHP)单元,采用合适范围的可靠性创造了非网格运行的机会。本文提出了一种优化模型,以安排具有各种资源的岛地MG,包括CHP,光伏(PV)和锅炉,作为电池储存,热储存和氢能系统(HES)之外的主要能量供应来源。 HES具有电力 - 氢(P2H)和氢气到功率(H2P)模式,这增加了调度的灵活性。不确定性管理是基于CHP的MGS调度问题中最重要的任务,因为电力和热量效果是相互关联的并且可能导致经济损失没有足够的审议。因此,本文提出了稳健的优化方法(ROA),以应对与光伏生产和电力和热负荷需求相关的不确定性。强大的对应物应用于确定性问题,以创建易于可调节的稳健框架。问题是使用CPLEX求解器的一般代数建模系统(GAMS)处理的混合整数线性编程(MILP)。结果验证了拟议的强大对应物管理相关风险的有效性。结果在强大的条件下说明了有意识的调度策略。但是,采取了更保留的决定,实现了更高的运营成本。在这方面,从最低值(确定性条件)到最高值(保守条件)的稳健性水平的增量增加了操作成本约为43.29%。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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