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Robust distributed energy management for microgrids with renewables

机译:具有可再生能源的微电网的强大分布式能源管理

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Due to the low communication overhead and robustness to failures, distributed energy management is of paramount importance in smart grids, especially in microgrids, which feature distributed generation (DG). Distributed economic dispatch for a microgrid with renewable penetration and demand-side management operating in the grid-connected mode is considered in this paper. To address the challenge of intrinsically stochastic availability of renewable energy sources (RES), a novel power scheduling approach involving the actual renewable energy as well as the energy traded with the main grid is introduced, effecting the supply-demand balance. Its optimality amounts to minimizing the microgrid net cost, which includes conventional DG cost as well as worst-case transaction cost stemming from the uncertainty in RES. Leveraging the dual decomposition, the optimization problem formulated is solved in a distributed fashion. Numerical results are reported to corroborate the effectiveness of the novel approach.
机译:由于通信开销和鲁棒性对故障的稳健性,分布式能量管理在智能电网中至关重要,特别是在微电网中,其中包括分布式发电(DG)。本文考虑了在网格连接模式下运行的可再生渗透和需求侧管理的微电网的分布式经济调度。为解决可再生能源(RES)的本质上随机可用性的挑战,引入了涉及实际可再生能源的新型电力调度方法以及主要网格交易的能源,影响供需平衡。其最优性能够最小化微电网净成本,包括传统的DG成本以及从RES中的不确定性的最坏情况交易成本。利用双重分解,配制的优化问题以分布式方式解决。报道了数值结果证实了新方法的有效性。

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