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Distributionally Robust Chance-Constrained Energy Management for Islanded Microgrids

机译:孤岛微电网的分布式鲁棒机会约束能源管理

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摘要

With the development of smart grid, energy management becomes critical for reliable and efficient operation of power systems. In this paper, we develop a chance-constrained energy management model for an islanded microgrid, which includes distributed generators, energy storage system (ESS), and renewable generation, such as wind power. The objective function of this model consists of generation cost, emission cost, and ESS degradation cost. To capture the uncertainty of renewable generation, a novel ambiguity set is introduced without knowing its probability distribution or exact moment information. Based on the ambiguity set, the chance constraint can be processed with distributionally robust optimization method and the energy management problem is reformulated as a tractable second-order conic programming problem. The proposed approach is tested with a case study and simulation results indicate that it is effective and reliable. Moreover, the comparison with the method based on known moment information and some other methods is also conducted to show the performance of the proposed method.
机译:随着智能电网的发展,能源管理对于电力系统的可靠和高效运行至关重要。在本文中,我们为孤岛微电网开发了机会受限的能源管理模型,该模型包括分布式发电机,储能系统(ESS)和可再生能源发电,例如风能。该模型的目标函数包括发电成本,排放成本和ESS降级成本。为了捕获可再生能源发电的不确定性,在不知道其概率分布或精确矩信息的情况下,引入了一种新的歧义集。基于歧义集,可以使用分布鲁棒优化方法处理机会约束,并将能量管理问题重新表述为可处理的二阶圆锥规划问题。案例研究对提出的方法进行了测试,仿真结果表明该方法有效,可靠。此外,还与基于已知力矩信息的方法和其他一些方法进行了比较,以证明该方法的性能。

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