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Optimal operation of storage systems in distribution networks considering battery degradation

机译:考虑电池劣化的分销网络中存储系统的最佳运行

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Energy storage systems are lauded solutions for integrating the ever-increasing amounts of renewable energy sources in distribution networks. Electrochemical batteries, principally lithium-ion based, are among the most promising storage technologies for these applications due their high energy densities, capacities, and efficiencies. The operation of these energy storage resources must be optimized since every charge/discharge cycle wears the battery and reduces its lifespan. This paper presents a stochastic second-order cone programming model, that considers the AC power flow equations, for optimizing the operation of battery storage systems in distribution networks, taking into account their degradation characteristics explicitly. A 33-node distribution network is used to demonstrate the effectiveness of the proposed method. Results also demonstrate the importance of including the degradation characteristics in the model, in order to attain solutions that strike a balance between operating costs and the benefits of prolonging the lifespan of the batteries.
机译:储能系统是参与解决方案的解决方案,用于将不断增加的可再生能源中的可再生能源中的可再生能源。电化学电池,主要是锂离子基于锂离子,是由于其高能量密度,能力和效率的这些应用中最有前途的存储技术之一。必须优化这些能量存储资源的操作,因为每次充电/放电循环都佩戴电池并减少其寿命。本文提出了一种随机二阶锥编程模型,其考虑了AC电流方程,用于优化分发网络中的电池存储系统的操作,考虑到他们的劣化特征。 33节点分配网络用于展示所提出的方法的有效性。结果还证明了包括模型中的降级特征的重要性,以获得在运营成本之间取得平衡的解决方案以及延长电池寿命的益处。

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