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An uncertainty reduction strategy to schedule and operate microgrids with renewable energy sources

机译:利用可再生能源调度和运行微电网的减少不确定性策略

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As the renewable energy in microgrids exhibits inherent intermittence and volatility, their forecasts are subject to a high level of uncertainty even for a few hours. To deal with the uncertainty in microgrids, new energy management strategies are necessary to be developed. This paper presents a strategy to optimally schedule and operate a microgrid while mitigating the impact of the uncertainty. Uncertainty in load, and renewable energy such as wind and photovoltaic systems is considered in this paper. The load minus the power output of renewable energy is viewed as equivalent load, whose distribution is described as a forecast range at a given confidence level. The forecast range is divided into several sub-ranges, and each sub-range is assigned a schedule by performing an optimization. In this way, corresponding scheme is implemented when the real value falls into the sub-range at real-time operation. The proposed strategy is tested on a radical microgrid. Numerical simulation indicates that the strategy is effective to produce an accurate generation schedule while maintaining an economic performance of the system. In addition, it is able to reduce the uncertainty, which lowers the reserve requirement for compensating the deviations and reduces the risk of overcharging and overdischarging of energy storage systems.
机译:由于微电网中的可再生能源表现出固有的间歇性和波动性,因此即使在几个小时内,其预测也受到高度不确定性的影响。为了应对微电网的不确定性,有必要开发新的能源管理策略。本文提出了一种在减少不确定性影响的同时优化调度和操作微电网的策略。本文考虑了负载以及风力和光伏系统等可再生能源的不确定性。负载减去可再生能源的功率输出被视为等效负载,其分布描述为给定置信度下的预测范围。将预测范围划分为几个子范围,并通过执行优化为每个子范围分配时间表。这样,在实时运算中当实际值落入子范围时,可以实现相应的方案。所提议的策略已在基本微电网上进行了测试。数值模拟表明,该策略有效地产生了准确的发电计划,同时又保持了系统的经济性能。另外,它能够减少不确定性,从而降低了用于补偿偏差的储备要求,并降低了储能系统过度充电和过度放电的风险。

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