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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Innovative design and gearshift control for direct-drive electromagnetic gearshift system equipped with servo synchronizer
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Innovative design and gearshift control for direct-drive electromagnetic gearshift system equipped with servo synchronizer

机译:具有伺服同步器配备的直接驱动电磁换档系统的创新设计和换档控制

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摘要

Automated mechanical transmission has many advantages such as simple structure, high mechanical efficiency, and low cost. But the poor gearshift performance restricts the massive application of the automated mechanical transmission, and it can be improved through innovation of structure and control. To reduce the requirement of shift force and improve the shift performance, a new direct-drive electromagnetic gearshift system which consists of servo synchronizer and 2-degree-of-freedom electromagnetic actuator is adopted. The specific structure and working principle of the gearshift system including servo synchronizer are described, and the equation of force-amplifying ratio is deduced. Due to the complexity of the gearshift system and uncertainties of the gearshift process, active disturbance rejection control method is designed. The active disturbance rejection controller can eliminate the nonlinearity of the 2-degree-of-freedom actuator. The extended state observer can estimate and compensate the uncertainties, parameter variations, and external disturbances. Simulations are carried out, and the result comparison with proportional–integral–derivative controller indicates the superiority of the active disturbance rejection control method. Test bench and control system are developed to verify the performance of the newly designed system and control method. The experimental results show that, when the gearshift system is equipped with servo synchronizer, the driving force and the maximum volatility of driving force can be reduced by 35% and 5%, respectively, and the impact generated by active disturbance rejection control method is reduced by 36% compared with proportional–integral–derivative method. The new gearshift system achieves a better gearshift performance. Combined with the newly designed control strategy, the direct-drive electromagnetic gearshift system provides a new solution for automated mechanical transmission applications.
机译:自动化机械传输具有诸如简单的结构,高机械效率和低成本等优点。但较差的换档性能限制了自动机械传输的大量应用,通过结构和控制的创新可以改善。为了减少换档力的要求,提高换档性能,采用了一种新的直接驱动电磁换档系统,包括伺服同步器和自由度电磁致动器组成。描述了包括伺服同步器的换档系统的具体结构和工作原理,并推导出力放大比的方程。由于换档系统的复杂性和换档过程的不确定性,设计了主动扰动抑制控制方法。主动扰动抑制控制器可以消除2度自由度执行器的非线性。扩展状态观察者可以估计和补偿不确定性,参数变化和外部干扰。进行仿真,与比例积分衍生控制器的结果比较表示主动扰动抑制控制方法的优越性。开发了测试台和控制系统以验证新设计的系统和控制方法的性能。实验结果表明,当换档系统配备伺服同步器时,驱动力的驱动力和最大挥发性分别可以减少35%和5%,减少了通过主动干扰抑制控制方法产生的冲击比例 - 积分衍生法比较36%。新的换档系统实现了更好的换档性能。结合新设计的控制策略,直接驱动电磁换档系统为自动机械传动应用提供了一种新的解决方案。

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