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Fault diagnosis of AMT gear shifting process based on semi-quantitative SDG model
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作者 刘海鸥 孟冬梅 彭建鑫 《Journal of Beijing Institute of Technology》 EI CAS 2016年第3期316-322,共7页
In order to diagnose gear shifting process in automated manual transmission(AMT),a semi-quantitative signed directed graph(SDG)model is applied.Mathematical models are built by analysis of the power train dynamic ... In order to diagnose gear shifting process in automated manual transmission(AMT),a semi-quantitative signed directed graph(SDG)model is applied.Mathematical models are built by analysis of the power train dynamic and the gear shifting control process.The SDG model is built based on related priori knowledge.By calculating the fuzzy membership degree of each compatible passway and its possible fault source,we get the possibilities of failure for each possible fault source.We begin with the nodes with the maximum possibility of failure in order to find the failed part.The diagnosis example shows that it is feasible to use the semi-quantitative SDG model for fault diagnosis of the gear shifting process in AMT. 展开更多
关键词 semi-quantitative signed directed graph(SDG) fault diagnosis gear shifting process automated manual transmission (AMT)
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Shifting Into a New Gear
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作者 LAN XINZHEN 《Beijing Review》 2010年第41期30-31,共2页
China plans to build and sell 5 million hybrid and electric cars by 2020 and is promoting their use The Ministry of Industry and Information Technology(MIIT)is drafting a 10-year plan from 2011 to 2020 for the develop... China plans to build and sell 5 million hybrid and electric cars by 2020 and is promoting their use The Ministry of Industry and Information Technology(MIIT)is drafting a 10-year plan from 2011 to 2020 for the development of energy-efficient and new energy cars. 展开更多
关键词 In shifting Into a New Gear
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Gear downshift control of inverse-automatic mechanical transmission of electric vehicle
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作者 Jinlong Hong Chao Zhang +5 位作者 Hankun Chu Bingzhao Gao Hao Wu Guangjie Wei Hua Liu Fuguo Xu 《Green Energy and Intelligent Transportation》 2022年第1期52-62,共11页
In order to improve the driving dynamics and riding comfort of pure electric vehicles,taking a two-speed I-AMT(Inverse-Automatic Mechanical Transmission)with rear friction clutch as the research object,a gear shift st... In order to improve the driving dynamics and riding comfort of pure electric vehicles,taking a two-speed I-AMT(Inverse-Automatic Mechanical Transmission)with rear friction clutch as the research object,a gear shift strategy,which consists of the open-loop control of the clutch position control and the closed-loop control of the drive motor speed control,is proposed.Considering the inherent time-delay and external disturbances within the motor speed adjustment system,a two DOF(degree-of-freedom)Smith predictor with feedforward input is designed to track the target speed of the drive motor.The feedforward input is used to eliminate the influence of clutch sliding friction on the motor speed control,while the feedback speed tracking controller is applied to realize the speed tracking performance with the existence of time-delay and the external disturbance.In order to verify the effectiveness of the gear shift control strategy and the accuracy of the two DOF Smith controller with feedforward control,simulation results comparison is firstly carried out to illustrate the effectiveness of the control scheme.Then,a light pure electric vehicle equipped with I-AMT was used for downshift experiments under large throttle,which is the most difficult working scenario to control the transmission.The experimental results show that the two DOF Smith controller can eliminate the influence of time-delay on the closed-loop control,and the proposed whole gear shift control strategy can limit the clutch slippage time within 1.5 s,resulting in a smaller shift jerk,thus guarantee the driving dynamics and riding comfort simultaneously. 展开更多
关键词 Gear shift control Pure electric vehicle Inverse-automatic mechanical transmission Two-degree-of-freedom smith controller
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