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An energy integrated, multi-microgrid, MILP (mixed-integer linear programming) approach for residential distributed energy system planning - A South Australian case-study

机译:用于住宅分布式能源系统规划的能源集成,多微电网MILP(混合整数线性规划)方法-南澳大利亚案例研究

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摘要

The integration of distributed generation units and microgrids in the current grid infrastructure requires an efficient and cost effective local energy system design. A mixed-integer linear programming model is presented to identify such optimal design. The electricity as well as the space heating and cooling demands of a small residential neighbourhood are satisfied through the consideration and combined use of distributed generation technologies, thermal units and energy storage with an optional interconnection with the central grid. Moreover, energy integration is allowed in the form of both optimised pipeline networks and microgrid operation. The objective is to minimise the total annualised cost of the system to meet its yearly energy demand. The model integrates the operational characteristics and constraints of the different technologies for several scenarios in a South Australian setting and is implemented in GAMS. The impact of energy integration is analysed, leading to the identification of key components for residential energy systems. Additionally, a multi-microgrid concept is introduced to allow for local clustering of households within neighbourhoods. The robustness of the model is shown through sensitivity analysis, up-scaling and an effort to address the variability of solar irradiation. (C) 2015 Elsevier Ltd. All rights reserved.
机译:当前电网基础设施中的分布式发电单元和微电网的集成需要高效且具有成本效益的本地能源系统设计。提出了一种混合整数线性规划模型来识别这种最佳设计。通过考虑并结合使用分布式发电技术,热力单元和能量存储以及与中央电网的可选互连,可以满足小型居民区的电力以及空间供暖和制冷需求。此外,还可以通过优化的管道网络和微电网运行的形式进行能源整合。目的是使系统的年度总成本最小化,以满足其年度能源需求。该模型在南澳大利亚州的环境中集成了针对多种场景的不同技术的操作特性和约束条件,并在GAMS中实施。分析了能源整合的影响,从而确定了住宅能源系统的关键组件。此外,引入了多微电网概念,以允许在邻域内对家庭进行本地集群。该模型的鲁棒性通过敏感性分析,放大和解决太阳辐射变化的努力来显示。 (C)2015 Elsevier Ltd.保留所有权利。

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