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基于AMESim与MATLAB的矢量喷管电液伺服系统建模与仿真研究 被引量:9
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作者 冯永保 刘杰 +2 位作者 李荣 李淑智 姚晓光 《机床与液压》 北大核心 2015年第4期118-121,共4页
为了研究矢量喷管电液伺服系统的性能,设计了AMESim/MATLAB联合仿真方案。根据双喷嘴挡板电液伺服阀的工作原理和结构特点,建立了电液伺服阀的物理模型,并在此基础上搭建了喷管电液伺服系统的AMESim仿真模型,设计了PID控制器和模糊PID... 为了研究矢量喷管电液伺服系统的性能,设计了AMESim/MATLAB联合仿真方案。根据双喷嘴挡板电液伺服阀的工作原理和结构特点,建立了电液伺服阀的物理模型,并在此基础上搭建了喷管电液伺服系统的AMESim仿真模型,设计了PID控制器和模糊PID控制器。结果表明:建立的系统模型能够根据信号进行正确动作,模糊PID控制器在此系统中具有响应速度快和稳态性能好等优点。 展开更多
关键词 AMESim/matlab联合仿真 双喷嘴挡板电液伺服阀 模糊PID控制器
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Multiphysics Field Co-simulation Research Based on Electric Drive System for a Specific Type of Car 被引量:1
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作者 Chuanfu Wang Yubo Lian +2 位作者 Heping Ling Hua Pan Yuxin Zhang 《Automotive Innovation》 EI CSCD 2019年第3期223-230,共8页
Electric drive systems for new energy cars are complex systems that should have multivariate,strong coupling,and non-linear characteristics and should also involve the multiphysics field.The singular simulation softwa... Electric drive systems for new energy cars are complex systems that should have multivariate,strong coupling,and non-linear characteristics and should also involve the multiphysics field.The singular simulation software used at present in the modeling of electric drive systems cannot simulate the influences of all the physics fields on the operating system.The co-simulation model used in this paper was based on a specific type of car.The motor control algorithm model was built in MATLAB/Simulink,the electromagnetic finite element model of the motor was built in ANSYS EM-Maxwell,and the motor controller hardware circuit was built in ANSYS EM-Simplorer.To make real-time connections among these software platforms,a multi-software co-simulation platform was built,and the co-simulation platform’s simulation results were input into STAR CCM+software to enable finite element modeling of the motor and running of thermal analysis.When compared with the electric drive system model built using single Simulink software,the simulation results from this co-simulation platform were more realistic and were shown to be closer to reality when the dynamic characteristics of the electric drive system’s power semiconductor switching devices and the motor’s electromagnetic characteristics were considered.Finally,by benchmarking the multiphysics field co-simulation platform simulation results using dyno bench test results,the validity of the co-simulation platform was verified and the development of the multiphysics field co-simulation of the basic electric drive system was complete. 展开更多
关键词 Multiphysics field co-simulation Electric drive system matlab ANSYS EM Thermal analysis
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Design,Testing and Control of a Magnetorheological Damper for Knee Prostheses
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作者 Hounan Song Yu Cao +6 位作者 Wei Chen Lei Ren Yongxin Ma Kunyang Wang Xu Wang Yao Zhang Luquan Ren 《Journal of Bionic Engineering》 SCIE EI CSCD 2024年第4期1788-1800,共13页
This study aims to develop a magnetorheological(MR)damper for semi-active knee prostheses to restore the walking ability of transfemoral amputees.The core dimensions of the MR damper were determined via theoretical ma... This study aims to develop a magnetorheological(MR)damper for semi-active knee prostheses to restore the walking ability of transfemoral amputees.The core dimensions of the MR damper were determined via theoretical magnetic field calculations,and the theoretical relationship between current and joint torque was derived through electromagnetic simulation.Then,a physical prototype of the semi-active prosthetic knee equipped with the MR damper was manufactured.Based on the data obtained from angle sensor,pressure sensor(loadcell),and inertial measurement unit(IMU)on the prosthesis,a matching control algorithm is developed.The joint torque of the MR damper can be adaptively adjusted according to the walking speed of the amputee,allowing the amputee to realize a natural gait.The effectiveness of the control program was verified by the ADAMS and MATLAB co-simulation.The results of the test and simulation show that the MR damper can provide sufficient torque needed for normal human activities. 展开更多
关键词 Semi-active knee prosthesis Magnetorheological damper Theoretical analysis ADAMS and matlab co-simulation
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