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A stochastic programming strategy in microgrid cyber physical energy system for energy optimal operation

机译:微网网络物理能源系统中用于能源优化运行的随机规划策略

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This paper focuses on the energy optimal operation problem of microgrids (MGs) under stochastic environment. The deterministic method of MGs operation is often uneconomical because it fails to consider the high randomness of unconventional energy resources. Therefore, it is necessary to develop a novel operation approach combining the uncertainty in the physical world with modeling strategy in the cyber system. This paper proposes an energy scheduling optimization strategy based on stochastic programming model by considering the uncertainty in MGs. The goal is to minimize the expected operation cost of MGs. The uncertainties are modeled based on autoregressive moving average (ARMA) model to expose the effects of physical world on cyber world. Through the comparison of the simulation results with deterministic method, it is shown that the effectiveness and robustness of proposed stochastic energy scheduling optimization strategy for MGs are valid.
机译:本文重点研究了随机环境下微电网的能量最优运行问题。 MG运行的确定性方法通常不经济,因为它没有考虑非常规能源的高度随机性。因此,有必要开发一种新颖的操作方法,将物理世界中的不确定性与网络系统中的建模策略相结合。提出了基于随机规划模型的能量调度优化策略,并考虑了MG的不确定性。目标是最大程度地降低MG的预期运营成本。基于自回归移动平均(ARMA)模型对不确定性进行建模,以揭示物理世界对网络世界的影响。通过将仿真结果与确定性方法进行比较,表明所提出的MG随机能量调度优化策略的有效性和鲁棒性是有效的。

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