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Optimal energy storage management in DC power networks

机译:直流电网中最佳储能管理

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Micro grid technology has been attracting attention as a realization of local electricity production for local consumption. In a micro grid system, management of supply and demand is one of the most important issues because variability of renewable energies such as photovoltaic and wind power generations will cause a supply-demand imbalance. Management of supply and demand in direct current (DC) power networks is supposed to be more difficult in comparison with conventional methods for alternate current (AC) power networks. The reason why is that a delay in the conversion of DC to DC and AC to DC causes unintended power down in DC power networks without huge power supply such as grid power in AC power networks. In this paper, we propose an energy management method for DC power networks. A control system which realizes the proposed energy management consists of a two-layered structure. The first layer is a scheduling part which is responsible for deciding the long-period system behavior to reduce energy bills. The second layer is a supply-demand adjustment part which is responsible for maintaining instantaneous supply-demand balances for DC-driven devices. The effectiveness of the proposed method has been proven with some experiments using real equipment.
机译:微电网技术一直引起了当地消费本地电力生产的关注。在微电网系统中,供需管理是最重要的问题之一,因为可再生能量(如光伏和风力发电)的可变性将导致供应需求不平衡。直接电流(DC)电网的供需管理应该更加困难,与备用电流(AC)电网的传统方法相比更加困难。原因是为什么DC到DC和AC到DC转换的延迟导致直流电网中的非预期的电源,而无需巨大的电源,例如AC电力网络中的网格电源。在本文中,我们提出了一种用于直流电网的能量管理方法。一种实现所提出的能量管理的控制系统包括双层结构。第一层是调度部分,该部分负责确定长期系统行为以减少能量账单。第二层是供需调整部分,其负责维持直流驱动设备的瞬时供需余额。拟议方法的有效性已被证明是使用真实设备的一些实验。

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