共查询到17条相似文献,搜索用时 93 毫秒
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AMT车辆变速系统及控制过程的研究 总被引:2,自引:0,他引:2
介绍了AMT的工作原理、系统组成及AMT车辆发动机的电控调节方式。针对评价换挡品质的3项指标、影响换挡品质的因素及存在的问题,分析了AMT车辆换挡过程中对发动机、离合器、变速器的综合控制及对换挡品质的影响,为进一步提高AMT换挡品质提供参考。 相似文献
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A novel hybrid optimal algorithm for DC motor of electro-mechanical Automated Manual Transmission (AMT) is presented. It combines non-linear time optimal controller and optimal Linear Quadratic Regulator (LQR) consequently used at different shifting stages. The working principle and dynamic characteristics of the AMT system are firstly presented, and the model of the DC motor is analyzed in detail. The non-linear time optimal controller is designed to explore the potential of the motor and minimize the gear shifting time. While the optimal LQR is then adopted at the final shifting stage to avoid overshoot and increase system robustness. Based on the position control algorithm of the actuators, the coordinated shifting control strategy is also proposed. Both simulation and vehicle test results demonstrate that, this control algorithm could decrease the shifting time and improve the shift quality effectively. 相似文献
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Z. Zhong G. Kong Z. Yu X. Xin X. Chen 《International Journal of Automotive Technology》2012,13(3):487-496
The automated mechanical transmission (AMT) is gaining popularity in the automotive industry, due to its combination of the
advantages of mechanical transmissions (MT) and automatic transmissions (AT) in terms of fuel consumption, low cost, improved
driving comfort and shifting quality. However, the inherent structural characteristics of the AMT lead to disadvantages, including
excessive wear of the clutch plates and jerk and traction interruption during the shift process, that severely affect its
popularity in the automatic transmission industry. The emerging technology of shifting control without the use of the clutch
is a promising way to improve the shifting transients of AMTs. This paper proposes a control algorithm that combines speed
and torque control of the AMT vehicle powertrain to achieve shifting control without using the clutch. The key technologies
of accurate engine torque and speed control and rapid position control of the shift actuators are described in detail. To
realize accurate engine speed control, a combined control algorithm based on feed-forward, bang-bang and PID control is adopted.
Additionally, an optimized closed-loop position control algorithm based on LQR is proposed for the shift actuators. The coordinated
control algorithm based on engine and shift actuator control is described in detail and validated on a test vehicle equipped
with an AMT. The results show that the coordinated control algorithm can achieve shifting control without the use of the clutch
to improve driving comfort significantly, reduce shift transients and extend the service life of the clutch. 相似文献
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随着新能源汽车的发展,采用多挡位变速器在保证车辆动力性的前提下,可以提高电机效率.为了减小换挡冲击,提升乘坐舒适性,需要对驱动电机和换挡电机进行协调控制.本文中以两挡变速器为研究对象,提出了一种基于Radau伪谱法的变速器换挡策略,选取冲击度和滑摩功作为两挡变速器换挡品质的评价函数,利用插值多项式对换挡过程中系统的状态... 相似文献