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Robust Feedback Control for the Subsidy Policy about Plug-In Electric Vehicle Using Sliding Mode Control

机译:基于滑模控制的插电式电动汽车补贴政策的鲁棒反馈控制

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This paper deals with robust feedback control for the subsidy policy for the purchase of plug-in electric vehicles (EVs) and the business model of charging stands. The controlled model has three characteristics: (1) A public institution builds the charge stands. (2) The break-even point is calculated by thinking about the maintenance cost and running cost. (3) The set value for the number of EV deployed is given. However, the model has uncertainties of parameters, is altered by the influence of the economy, and so on. Therefore, it is necessary to apply robust control logic that overcomes the uncertainties of the model. We propose that the practice of the subsidy policy is regulated by feedback control. As the control logic, we use sliding mode control. The simulation results show the advantages to a person planning an EV purchase and to the charge stand manager, and demonstrate that sliding mode control is a control logic that is effective in the social model. (C) 2015 Wiley Periodicals, Inc.
机译:本文针对购买插电式电动汽车(EV)的补贴政策和充电站的商业模式,提供了强大的反馈控制。受控模型具有三个特征:(1)公共机构建立收费站。 (2)收支平衡点是通过考虑维护成本和运行成本来计算的。 (3)给出了电动汽车部署数量的设定值。但是,该模型具有参数的不确定性,会受到经济的影响而改变,等等。因此,有必要应用能够克服模型不确定性的鲁棒控制逻辑。我们建议通过反馈控制来规范补贴政策的实施。作为控制逻辑,我们使用滑模控制。仿真结果显示了计划电动汽车购买者和收费站管理者的优势,并证明了滑模控制是一种在社交模型中有效的控制逻辑。 (C)2015年Wiley Periodicals,Inc.

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