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Optimal energy management system based on stochastic approach for a home Microgrid with integrated responsive load demand and energy storage

机译:基于随机方法的家用微电网最优能量管理系统,具有集成的响应负载需求和能量存储

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摘要

In recent years, increasing interest in developing small-scale fully integrated energy resources in distributed power networks and their production has led to the emergence of smart Microgrids (MG), in particular for distributed renewable energy resources integrated with wind turbine, photovoltaic and energy storage assets. In this paper, a sustainable day-ahead scheduling of the grid-connected home-type Microgrids (H-MG) with the integration of non-dispatchable/dispatchable distributed energy resources and responsive load demand is co-investigated, in particular to study the simultaneously existed uncontrollable and controllable production resources despite the existence of responsive and non-responding loads. An efficient energy management system (EMS) optimization algorithm based on mixed-integer linear programming (MILP) (termed as EMS-MILP) using the GAMS implementation for producing power optimization with minimum hourly power system operational cost and sustainable electricity generation of within a H-MG. The day-ahead scheduling feature of electric power and energy systems shared with renewable resources as a MILP problem characteristic for solving the hourly economic dispatch-constraint unit commitment is also modelled to demonstrate the ability of an EMS-MILP algorithm for a H-MG under realistic technical constraints connected to the upstream grid. Numerical simulations highlight the effectiveness of the proposed algorithmic optimization capabilities for sustainable operations of smart H-MGs connected to a variety of global loads and resources to postulate best power economization. Results demonstrate the effectiveness of the proposed algorithm and show a reduction in the generated power cost by almost 21% in comparison with conventional EMS.
机译:近年来,对开发分布式电网中的小型完全集成能源及其生产的兴趣日益浓厚,导致了智能微电网(MG)的出现,特别是与风力涡轮机,光伏发电和储能集成的分布式可再生能源资产。本文联合研究了并网型家用微电网(H-MG)的可持续日前调度,该调度结合了不可分配/可分配的分布式能源和响应负载需求,特别是研究了尽管存在响应性负载和非响应性负载,但同时存在不可控和可控的生产资源。使用GAMS实现的基于混合整数线性规划(MILP)(称为EMS-MILP)的高效能源管理系统(EMS)优化算法,用于以每小时最小的电力系统运营成本和可持续的H发电量进行发电优化-MG。还建模了与可再生资源共享的电力和能源系统的日前调度功能,作为解决每小时经济调度约束单位承诺的MILP问题特征,以证明在以下情况下H-MG的EMS-MILP算法的能力与上游电网相关的现实技术限制。数值模拟突显了所提出的算法优化功能对于与各种全球负荷和资源相连的智能H-MG的可持续运行的有效性,以推定最佳的节能方式。结果证明了所提出算法的有效性,并表明与常规EMS相比,发电成本降低了近21%。

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