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Reallocating charging loads of electric vehicles in distribution networks

机译:在配电网中重新分配电动汽车的充电负荷

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摘要

In this paper, the charging loads of electric vehicles were controlled to avoid their impact on distribution networks. A centralized control algorithm was developed using unbalanced optimal power flow calculations with a time resolution of one minute. The charging loads were optimally reallocated using a central controller based on non-linear programming. Electric vehicles were recharged using the proposed control algorithm considering the network constraints of voltage magnitudes, voltage unbalances, and limitations of the network components (transformers and cables). Simulation results showed that network components at the medium voltage level can tolerate high uptakes of uncontrolled recharged electric vehicles. However, at the low voltage level, network components exceeded their limits with these high uptakes of uncontrolled charging loads. Using the proposed centralized control algorithm, these high uptakes of electric vehicles were accommodated in the network under study without the need of upgrading the network components.
机译:在本文中,对电动汽车的充电负载进行了控制,以避免其对配电网络的影响。使用不平衡的最优潮流计算开发了集中控制算法,其时间分辨率为一分钟。使用基于非线性编程的中央控制器可以最佳地重新分配充电负载。考虑到电压幅值的网络限制,电压不平衡以及网络组件(变压器和电缆)的限制,使用建议的控制算法对电动汽车进行充电。仿真结果表明,中压水平的网络组件可以承受不受控制的充电电动汽车的高吸收。但是,在低电压水平下,网络组件超出了它们的极限,因为大量吸收了不受控制的充电负载。使用所提出的集中控制算法,这些电动汽车的高使用量被容纳在正在研究的网络中,而无需升级网络组件。

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