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Economic scheduling model of microgrid considering the lifetime of batteries

机译:考虑电池寿命的微电网经济调度模型

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Because of the uncertainty of renewable energy generation and load, batteries as energy storage devices play an important role in ensuring the safety and reliability of microgrid. To take full advantage of the batteries, the battery lifetime characteristics are analysed, and a weighted Wh throughput method is proposed to estimate the battery lifetime. To improve the economy of microgrid, an economic scheduling model of microgrid in grid-connected mode is established with the consideration of battery lifetime. For fast and efficiently solving the model, a technique is developed to convert the optimisation problem into a mixed integer linear programming problem and a mixed integer linear programming algorithm is applied to solve it. The proposed method has been validated on a microgrid, which consists of a wind turbine, a photovoltaic system, a micro turbine, a fuel cell, a diesel engine and a battery energy storage system (BESS). The simulation results show that the BESS is managed rationally and the total operation cost of microgrid over scheduling period is decreased by applying the proposed scheduling method.
机译:由于可再生能源发电和负荷的不确定性,电池作为储能设备在确保微电网的安全性和可靠性方面起着重要作用。为了充分利用电池,分析了电池寿命特性,并提出了加权Wh吞吐率方法来估计电池寿命。为了提高微电网的经济性,建立了考虑电池寿命的并网微电网经济调度模型。为了快速有效地求解模型,开发了一种将优化问题转换为混合整数线性规划问题的技术,并应用了混合整数线性规划算法对其进行求解。所提出的方法已经在微电网上得到验证,该微电网包括风力涡轮机,光伏系统,微型涡轮机,燃料电池,柴油发动机和电池能量存储系统(BESS)。仿真结果表明,采用所提出的调度方法,可以合理地管理BESS,并减少调度期间微网的总运行成本。

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