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Decentralized charging algorithm for electrified vehicles connected to smart grid

机译:电动汽车接入智能电网的分散充电算法

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Intelligent management of power generation and dispatching is important when renewable energy sources and electrified vehicles (EV/PHEV) are introduced to the grid. Intermittency of renewable power and vehicle charging loads disturbs power supply and demand and could cause instability. Fortunately, EV/PHEV can be connected as controllable load or even used as energy storage, which makes it possible to reduce their negative impact and can even be explored to improve grid resilience. By coordinating power generation and charging, it is possible to reduce power generation cost and carbon emission. To improve practicality, a decentralized charging algorithm is formulated by emulating the charging pattern identified through linear programming (LP) optimization solutions. The resulting decentralized control algorithm is a function of forecasted total power demand on the grid, estimated number of vehicles, estimated EV/PHEV plug off time, and state of charge of the vehicle battery. Simulation results are presented to demonstrate the performance of the proposed decentralized algorithm.
机译:将可再生能源和电动汽车(EV / PHEV)引入电网时,发电和调度的智能管理非常重要。可再生能源和车辆充电负载的间歇性干扰了电力​​的供需,并可能导致不稳定。幸运的是,EV / PHEV可以作为可控制的负载连接,甚至可以用作能量存储,这可以减少它们的负面影响,甚至可以探索提高电网的弹性。通过协调发电和充电,可以降低发电成本和碳排放。为了提高实用性,通过模拟通过线性规划(LP)优化解决方案识别的充电模式来制定分散式充电算法。最终的分散控制算法是预测的电网总功率需求,估计的车辆数量,估计的EV / PHEV断开时间以及车辆电池的充电状态的函数。仿真结果表明了所提出的分散算法的性能。

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