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Optimization Method of Fast Charging Buses Charging Strategy for Complex Operating Environment

机译:复杂运营环境下快速充电公交车充电策略的优化方法

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The electric bus has gradually become the main tool of public transport in the city. It has become an indispensable link in the electric bus for fast electric energy supply. The ordered charge control strategy proposed in this paper solves the problem of electric bus charging optimization. This strategy enables security and economy to be better guaranteed in the operation of the power system. The orderly control strategy adopts the method of hierarchical control, including the prediction layer, scheduling layer and control layer. In this paper, an optimization model for the rapid charging of electric buses based on the cost of charging and battery loss is first set up. Considering charging power constraint and restraint and power supply limit of departure, according to the data of forecasted layer's expected full load rate, traffic index and timesharing price, the rolling layer is optimized continuously in the dispatching layer, and finally the reliable charging plan is arranged by the dispatching layer. In order to verify the effectiveness of hierarchical charge control strategy, a fast charging station is optimized for charging. The numerical analysis shows that the proposed method has the function of clipping peaks and filling valleys and improves the rapid charging of electric buses of the economy, weakened a large number of electric vehicles focused on the impact of grid power.
机译:电动巴士已逐渐成为城市公共交通的主要工具。它已成为电动公交车中快速电能供应中必不可少的环节。本文提出的有序充电控制策略解决了电动公交车充电优化的问题。这种策略可以在电力系统的运行中更好地保​​证安全性和经济性。有序控制策略采用分层控制的方法,包括预测层,调度层和控制层。本文首先建立了基于充电成本和电池损耗的电动公交车快速充电优化模型。考虑到充电功率的约束和约束以及出发的电源限制,根据预测层的预期满负荷率,流量指标和分时价格的数据,在调度层连续优化滚动层,最后制定可靠的充电方案由调度层。为了验证分层充电控制策略的有效性,优化了快速充电站以进行充电。数值分析表明,该方法具有削峰填谷的功能,提高了经济型电动客车的快速充电能力,削弱了大批以电网为动力的电动汽车。

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