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Optimal sizing of distributed energy resources in smart microgrids: A mixed integer linear programming formulation

机译:智能微电网中分布式能源的最佳规模:混合整数线性规划公式

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Microgrids can offer various benefits to electricity consumers, but these benefits must be compared with the corresponding investment cost for ensuring financial feasibility. This paper is focused on the problem of optimally sizing, from an economic perspective, the Distributed Energy Resources included in a DC Microgrid, determining the optimal mix of Distributed Generators and Energy Storage Systems, taking also into account the opportunities of Load Management. The proposed procedure is based on Mixed Integer Linear Programming and allows to determine the optimal sizes of Distributed Energy Resources which minimize the Microgrid Total Cost of Ownership, given location and load characteristics. The procedure is formulated as a quite general method that can be used for different microgrid architectures and different generation and storage technologies, although in this paper it is applied to a grid-connected DC microgrid with PV generation and storage system. Results of numerical applications to a case study demonstrate the effectiveness of the proposed sizing procedure.
机译:微电网可以为用电者提供各种好处,但是必须将这些好处与相应的投资成本进行比较,以确保财务可行性。本文从经济角度着眼于优化大小的问题,该问题包括直流微电网中包含的分布式能源,确定分布式发电机和储能系统的最佳组合,同时还考虑了负载管理的机会。拟议的程序基于混合整数线性规划,并允许确定分布式能源的最佳大小,从而在给定位置和负载特性的情况下最小化微电网的总体拥有成本。该程序被表述为一种相当通用的方法,可用于不同的微电网架构以及不同的发电和存储技术,尽管在本文中,该程序已应用于具有光伏发电和存储系统的并网直流微电网。案例研究的数值应用结果证明了所提出的上浆程序的有效性。

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