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A distributed ESO based cooperative current-sharing strategy for parallel charging systems under disturbances

机译:基于分布的ESO基于Sys的并行充电系统的合作当前共享策略

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In this paper, a distributed extended state observer (ESO) based cooperative control is proposed to achieve current-sharing for parallel chargers under disturbances in energy storage type light rail vehicle systems. By treating the parallel charging system as a nonlinear and non-identical multiagent system, the current-sharing objective is converted as a distributed leader-follower consensus problem. A distributed ESO is designed to observe total disturbances with the known information from the established mathematical model of subchargers. A tracking differentiator (TD) is established to provide a transitional process for the reference signal to increase the dynamical performance and robustness. Based on ESO and TD, a distributed cooperative control protocol is proposed. Simulation and experimental results are provided to verify the disturbance rejection ability, feasibility and practicability of the proposed distributed current-sharing control method.
机译:本文提出了一种基于分布的扩展状态观察者(ESO)的协作控制,以实现能量存储型轻轨车辆系统干扰下的并联充电器的电流共享。通过将并联充电系统视为非线性和非相同的多元素系统,当前共享目标被转换为分布式领导者 - 跟随者共识问题。分布式ESO旨在从已建立的子质的数学模型中观察与已知信息的总干扰。建立跟踪差分器(TD)以提供参考信号的过渡过程,以提高动态性能和鲁棒性。基于ESO和TD,提出了一种分布式协作控制协议。提供了仿真和实验结果,以验证所提出的分布式电流共享控制方法的干扰抑制能力,可行性和实用性。

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