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Optimal day-ahead scheduling of integrated urban energy systems

机译:综合城市能源系统的最佳提前​​调度

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摘要

An optimal day-ahead scheduling method (ODSM) for the integrated urban energy system (IUES) is introduced, which considers the reconfigurable capability of an electric distribution network. The hourly topology of a distribution network, a natural gas network, the energy centers including the combined heat and power (CHP) units, different energy conversion devices and demand responsive loads (DRLs), are optimized to minimize the day-ahead operation cost of the IUES. The hourly reconfigurable capability of the electric distribution network utilizing remotely controlled switches (RCSs) is explored and discussed. The operational constraints from the unbalanced three-phase electric distribution network, the natural gas network, and the energy centers are considered. The interactions between the electric distribution network and the natural gas network take place through conversion of energy among different energy vectors in the energy centers. An energy conversion analysis model for the energy center was developed based on the energy hub model. A hybrid optimization method based on genetic algorithm (GA) and a nonlinear interior point method (IPM) is utilized to solve the ODSM model. Numerical studies demonstrate that the proposed ODSM is able to provide the IUES with an effective and economical day ahead scheduling scheme and reduce the operational cost of the IUES. Crown Copyright (C) 2016 Published by Elsevier Ltd. All rights reserved.
机译:介绍了一种针对城市综合能源系统(IUES)的最优提前调度方法(ODSM),该方法考虑了配电网的可重构能力。配电网络,天然气网络,包括热电联产(CHP)单元的能源中心,不同的能源转换设备和需求响应负载(DRL)的每小时拓扑已进行了优化,以最大程度地减少以下方面的日常运营成本: IUES。探索和讨论了利用远程控制开关(RCS)的配电网络的每小时可重新配置功能。考虑了不平衡三相配电网络,天然气网络和能源中心的运行约束。配电网络和天然气网络之间的相互作用是通过能量中心中不同能量向量之间的能量转换而发生的。基于能源枢纽模型,开发了能源中心的能源转化分析模型。利用遗传算法(GA)和非线性内点法(IPM)的混合优化方法求解ODSM模型。数值研究表明,提出的ODSM能够为IUES提供有效且经济的提前一天调度方案,并降低IUES的运营成本。 Crown版权所有(C)2016,由Elsevier Ltd.发行。保留所有权利。

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