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机动车传动系统零部件载荷的设计计算探讨
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作者 龚建华 修忠文 《物联网技术》 2013年第8期51-52,55,共3页
机动车传动系统是发动机与行驶系统的连接纽带。在机动车传动系统设计过程中,零部件载荷计算是很重要的部分。文中对机动车传动系的扭转振动、最大转矩、静强度的计算等问题进行了探讨和研究。
关键词 机动车传动系统 离合器 扭转振动 最大转矩 静强度
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A double-clutch hybrid drivetrain architecture, control, and simulation
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作者 王锐 He Hongwen Sun Fengchun 《High Technology Letters》 EI CAS 2010年第1期52-57,共6页
Electmmechanical coupling system is one of the key technologies of hybrid electric vehicles. Among the existing electromechanical coupling systems, ISG system is recognized as the most practical one with the highest i... Electmmechanical coupling system is one of the key technologies of hybrid electric vehicles. Among the existing electromechanical coupling systems, ISG system is recognized as the most practical one with the highest integration. However, the efficiency of ISG system is relatively low in pure-motor-drive mode. In this paper, a hybrid drivetrain with double clutches was proposed, in which a mode-clutch was installed between engine and motor as the mode switch, thus the efficiency in pure-motor-drive mode was improved. This paper discussed the architecture, modeling and control strategy of double-clutch drivetrain. The results of co-simulation by Cruise and Simulink showed that the fuel economy of the vehicle with this drivetrain was effectively improved compared to similar conventional vehicles. 展开更多
关键词 double-clutch electmmechanical coupling system hybrid electric vehicle co-simulation
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Drivability improvements for a single-motor parallel hybrid electric vehicle using robust controls 被引量:4
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作者 Hu ZHANG Cun-lei WANG Yong ZHANG Jun-yi LIANG Cheng-liang YIN 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2014年第4期291-301,共11页
For a single-motor parallel hybrid electric vehicle, during mode transitions (especially the transition from electric drive mode to engine/parallel drive mode, which requires the clutch engagement), the drivability ... For a single-motor parallel hybrid electric vehicle, during mode transitions (especially the transition from electric drive mode to engine/parallel drive mode, which requires the clutch engagement), the drivability of the vehicle will be signifi- cantly affected by a clutch torque induced disturbance, driveline oscillations and jerks which can occur without adequate controls. To improve vehicle drivability during mode transitions for a single-motor parallel hybrid electric vehicle, two controllers are proposed. The first controller is the engine-side controller for engine cranking/starting and speed synchronization. The second controller is the motor-side controller for achieving a smooth mode transition with reduced driveline oscillations and jerks under the clutch torque induced disturbance and system uncertainties. The controllers are all composed of a feed-forward control and a robust feedback control. The robust controllers are designed by using the mu synthesis method. In the design process, control- oriented system models that take account of various parameter uncertainties and un-modeled dynamics are used. The results of the simulation demonstrate the effectiveness of the proposed control algorithms. 展开更多
关键词 Hybrid electric vehicle DRIVABILITY Mode transition Robust control Mu synthesis
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