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Stochastic-based scheduling of the microgrid operation including wind turbines, photovoltaic cells, energy storages and responsive loads

机译:微电网运行的基于随机的调度,包括风力涡轮机,光伏电池,能量存储和响应负载

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摘要

Microgrids with different technologies in distributed generations (DGs), different control facilities and power electronic interfaces require proper management and operation strategies. In these strategies, in order to reach the optimum scheduling, the stochastic nature of some decision variables should be considered. Subsequently, it will lead to a decrease in the forced load curtailment and an increase in the economic efficiency from the perspective of both the maingrid and the microgrid owner. In this study, the availability of dispatchable DGs, energy storage, renewable energy sources (RESs) and the maingrid as well as the power generation of RESs and load are studied through their uncertainty natures. For dealing with these uncertainties, stochastic variables computation module is designed which generates several scenarios by Monte Carlo simulation at each hour. The microgrid operation is optimised in uncertainty environment through a linear two-stage stochastic model. The stochastic scheduling model which is solved by mixed-integer linear programming is compared with a deterministic model through three different cases in presence of demand response on a sample microgrid. The results explicitly show benefits of the proposed stochastic model since it provides accuracy in scheduling and decreases the operation cost.
机译:具有分布式发电(DG),不同的控制设施和电力电子接口的不同技术的微电网需要适当的管理和操作策略。在这些策略中,为了达到最佳调度,应考虑某些决策变量的随机性。随后,从主电网和微电网所有者的角度来看,这将导致强制负荷削减的减少和经济效率的提高。在这项研究中,通过不确定性的性质研究了可调度DG,能源存储,可再生能源(RES)和主电网的可用性以及RES和负荷的发电。为了处理这些不确定性,设计了随机变量计算模块,该模块每小时通过蒙特卡洛模拟生成几种情景。通过线性两阶段随机模型在不确定环境中优化了微电网的运行。通过在样本微电网上存在需求响应的三种不同情况,将通过混合整数线性规划求解的随机调度模型与确定性模型进行比较。结果清楚地表明了所提出的随机模型的好处,因为它提供了调度的准确性并降低了运营成本。

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