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双离合器式自动变速器控制系统的关键技术
引用本文:吴光强,杨伟斌,秦大同.双离合器式自动变速器控制系统的关键技术[J].机械工程学报,2007,43(2):13-21.
作者姓名:吴光强  杨伟斌  秦大同
作者单位:1. 吉林大学汽车动态模拟国家重点实验室,长春,130025;同济大学汽车学院,上海,201804
2. 同济大学汽车学院,上海,201804
3. 重庆大学机械传动国家重点实验室,重庆,400044
摘    要:从离合器起步时的动力学模型、离合器接合速度的控制策略及离合器执行机构的跟踪品质三个方面,总结双离合器式自动变速器(Dual clutch transmission,DCT)起步控制技术的发展现状,提出进一步优化DCT起步性能的途径.将目前的换挡规律分别归纳为基于经验、基于约束条件、智能修正和综合智能四种类型,总结各种换挡规律的应用现状,提出进一步完善综合智能换挡体系的方法.总结改善DCT换挡品质的研究成果,提出进一步提高换挡品质的方法.总结数字仿真在DCT研发中的应用现状,分析半实物仿真在DCT控制系统研发中的应用方法.

关 键 词:双离合器式自动变速器  电子控制系统  离合器起步性能  换挡规律  换挡品质  半实物仿真  离合器式  自动  变速器  控制系统  CONTROL  SYSTEM  TRANSMISSION  CLUTCH  DUAL  系统研发  半实物仿真  分析  数字仿真  质的方法  研究  换挡品质  改善  体系  完善  应用  类型
修稿时间:2006年2月24日

KEY TECHNIQUE OF DUAL CLUTCH TRANSMISSION CONTROL SYSTEM
WU Guangqiang,YANG Weibin,QIN Datong.KEY TECHNIQUE OF DUAL CLUTCH TRANSMISSION CONTROL SYSTEM[J].Chinese Journal of Mechanical Engineering,2007,43(2):13-21.
Authors:WU Guangqiang  YANG Weibin  QIN Datong
Abstract:The existing state of dual clutch transmission (DCT) starting control technique is summarized from starting kinetic model of clutch, control strategy of clutch engaging speed and tracking performance of clutch actuator respectively, moreover, a method which can further improve the starting performance is put forward. Shift scheduling is summarized to four kinds, which are based on experience, constraint condition, intelligent compensating and comprehensive intelligence respectively, then, the relative merits of every shift scheduling are analyzed, fur- thermore, methods which can optimize the comprehensive intelligence shift scheduling is presented. Methods which have applied to increase shift quality are summarized, besides, approaches which can further improve the shift quality are put forward. At last, progress of digital simulation which has been applied in the performance of DCT research is summarized, in addition, application method that hardware in the loop(HIL) applied to study DCT control system is analyzed.
Keywords:Dual clutch transmission Electronic control system Clutch starting performance Shift scheduling Shift quality Hardware in the loop
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