混合动力汽车电子节气门双环滑模控制策略研究
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TN701

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河南省教育厅自然科学基础研究项目(2008A630064)资助


Research on dual loop sliding mode control strategy of electronic throttle in hybrid electric vehicle
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    摘要:

    针对混合动力汽车用电子节气门系统非线性特性以及控制系统中的扰动,在电子节气门的数学模型基础上,设计了基于非线性终端滑模面的内外环滑模控制策略。与此同时,为了实现混合动力车在复杂的行驶工况下对电子节气门控制系统不可测量变量和不确定扰动进行准确估计,设计了非线性扩张状态观测器,分别对3种不同工况下电子节气门角度跟随进行了实验验证。实验证明,采用的内外环滑模控制策略提高了电子节气门系统收敛速度,无超调现象,满足了混合动力汽车电子节气门高精度角度跟随的目标需求。

    Abstract:

    Focus on the basis of the mathematical model for the electronic throttle, a sliding mode control strategy based on the nonlinear terminal sliding surface is designed on the basis of the nonlinear characteristics of the electronic throttle system which used in hybrid electric vehicle and the disturbance in the control system. At the same time, in order to realize the electronic throttle of the hybrid power vehicle under the complicated driving condition. The non measurable variable and uncertain disturbance of the gate control system are accurately estimated. The nonlinear expansion state observer is designed. The experimental verification of the angle following of the electronic throttle under three different operating conditions is tested. The experiment proves that dual loop sliding mode control strategy is used to improve the convergence speed of the valve system and the phenomenon of no-overshoot. It meets the target that hybrid electronic vehicle′s electronic throttle has high precision angle following performance.

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赵亮,蔡彦兵.混合动力汽车电子节气门双环滑模控制策略研究[J].电子测量技术,2019,42(5):18-22

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  • 在线发布日期: 2021-07-29
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