Associated dynamic performance of the clamping force control valve used in continuously variable transmission (CVT) is optimized. Firstly, the structure and working principle of the valve are analyzed, and then a dy...Associated dynamic performance of the clamping force control valve used in continuously variable transmission (CVT) is optimized. Firstly, the structure and working principle of the valve are analyzed, and then a dynamic model is set up by means of mechanism analysis. For the purpose of checking the validity of the modeling method, a prototype workpiece of the valve is manufactured for comparison test, and its simulation result follows the experimental result quite well. An associated performance index is founded considering the response time, overshoot and saving energy, and five structural parameters are selected to adjust for deriving the optimal associated performance index. The optimization problem is solved by the genetic algorithm (GA) with necessary constraints. Finally, the properties of the optimized valve are compared with those of the prototype workpiece, and the results prove that the dynamic performance indexes of the optimized valve are much better than those of the prototype workpiece.展开更多
This study proposes and experimentally validates an optimal integrated system to control the automotive continuously variable transmission(CVT)by Model Predictive Control(MPC)to achieve its expected transmission effic...This study proposes and experimentally validates an optimal integrated system to control the automotive continuously variable transmission(CVT)by Model Predictive Control(MPC)to achieve its expected transmission efficiency range.The control system framework consists of top and bottom layers.In the top layer,a driving intention recognition system is designed on the basis of fuzzy control strategy to determine the relationship between the driver intention and CVT target ratio at the corresponding time.In the bottom layer,a new slip state dynamic equation is obtained considering slip characteristics and its related constraints,and a clamping force bench is established.Innovatively,a joint controller based on model predictive control(MPC)is designed taking internal combustion engine torque and slip between the metal belt and pulley as optimization dual targets.A cycle is attained by solving the optimization target to achieve optimum engine torque and the input slip in real-time.Moreover,the new controller provides good robustness.Finally,performance is tested by actual CVT vehicles.Results show that compared with traditional control,the proposed control improves vehicle transmission efficiency by approximately 9.12%-9.35%with high accuracy.展开更多
In order to solve the problem of weak power performance of vehicle equipped with continuously variable transmission(CVT) system working under transient operating conditions, a new CVT equipped with planetary gear mech...In order to solve the problem of weak power performance of vehicle equipped with continuously variable transmission(CVT) system working under transient operating conditions, a new CVT equipped with planetary gear mechanism and flywheel was researched, a design method of transmission parameter optimization was proposed, and the comprehensive matching control strategy was established for the new transmission system. Fuzzy controllers for throttle opening and CVT speed ratio were designed, and power performance and fuel economy of both vehicles respectively equipped with conventional CVT system and new transmission system wrere compared and analyzed by simulation. The results show that power performance and fuel economy of the vehicle equipped with new transmission system are better than that equipped with conventional CVT, thus the rationality of the parameter design method and control algorithm are verified.展开更多
储能电感位于原边的全桥DC/DC变流器(full bridgeconverter with primary side energy storage inductor,FB-PESI),采用传统的固定频率、移向控制(phase-shift,PS)方式时主要工作于断续导通模式(discontinuous conductionmode,DCM...储能电感位于原边的全桥DC/DC变流器(full bridgeconverter with primary side energy storage inductor,FB-PESI),采用传统的固定频率、移向控制(phase-shift,PS)方式时主要工作于断续导通模式(discontinuous conductionmode,DCM),不适合应用于宽范围电压输入的场合。为克服PSFB-PESI变流器的这一缺点,提出一种新型的采用变频(variable frequency,VF)控制策略的FB-PESI DC/DC变流器(VFFB-PESI)。该VFFB-PESI变流器不仅保留了PSFB-PESI变流器宽范围软开关、高效率、高功率密度的优点,还可始终工作于临界导通模式(critical continuous operation mode,CrCM),从而在宽输入电压范围内均可获得较高的变换效率。同时给出了针对该VFFB-PESI变流器的损耗分析方法和优化设计流程。通过制作的300 W、200~400 V输入、12 V输出样机实验,验证了理论分析的正确性。展开更多
提出了一种基于改进粒子群优化算法的无级变速器速比控制阀动态性能优化方法。首先通过机理分析的方法建立了速比控制阀的动态模型;然后根据无级变速器速比控制阀的使用要求,在考虑响应时间、超调量及节能等指标的基础上,确立了一个综...提出了一种基于改进粒子群优化算法的无级变速器速比控制阀动态性能优化方法。首先通过机理分析的方法建立了速比控制阀的动态模型;然后根据无级变速器速比控制阀的使用要求,在考虑响应时间、超调量及节能等指标的基础上,确立了一个综合的优化目标函数;最后根据确立的目标函数,结合仿真模型,通过改进的粒子群优化算法对速比控制阀的结构参数进行了优化。试验结果表明经过优化的速比控制阀各项动态性能指标均优于原型阀,其中压力上升时间缩短了100 m s,超调量下降了0.05 MPa,更适用于无级变速器。展开更多
基金Key Science-Technology Foundation of Hunan Province, China (No. 05GK2007).
文摘Associated dynamic performance of the clamping force control valve used in continuously variable transmission (CVT) is optimized. Firstly, the structure and working principle of the valve are analyzed, and then a dynamic model is set up by means of mechanism analysis. For the purpose of checking the validity of the modeling method, a prototype workpiece of the valve is manufactured for comparison test, and its simulation result follows the experimental result quite well. An associated performance index is founded considering the response time, overshoot and saving energy, and five structural parameters are selected to adjust for deriving the optimal associated performance index. The optimization problem is solved by the genetic algorithm (GA) with necessary constraints. Finally, the properties of the optimized valve are compared with those of the prototype workpiece, and the results prove that the dynamic performance indexes of the optimized valve are much better than those of the prototype workpiece.
基金Supported by National Natural Science Foundation of China(Grant No.51905044)Postdoctoral Science Foundation of China(Grant No.2017M611316).
文摘This study proposes and experimentally validates an optimal integrated system to control the automotive continuously variable transmission(CVT)by Model Predictive Control(MPC)to achieve its expected transmission efficiency range.The control system framework consists of top and bottom layers.In the top layer,a driving intention recognition system is designed on the basis of fuzzy control strategy to determine the relationship between the driver intention and CVT target ratio at the corresponding time.In the bottom layer,a new slip state dynamic equation is obtained considering slip characteristics and its related constraints,and a clamping force bench is established.Innovatively,a joint controller based on model predictive control(MPC)is designed taking internal combustion engine torque and slip between the metal belt and pulley as optimization dual targets.A cycle is attained by solving the optimization target to achieve optimum engine torque and the input slip in real-time.Moreover,the new controller provides good robustness.Finally,performance is tested by actual CVT vehicles.Results show that compared with traditional control,the proposed control improves vehicle transmission efficiency by approximately 9.12%-9.35%with high accuracy.
基金Project(2011BA3019)supported by the Chongqing Natural Science Foundation,China
文摘In order to solve the problem of weak power performance of vehicle equipped with continuously variable transmission(CVT) system working under transient operating conditions, a new CVT equipped with planetary gear mechanism and flywheel was researched, a design method of transmission parameter optimization was proposed, and the comprehensive matching control strategy was established for the new transmission system. Fuzzy controllers for throttle opening and CVT speed ratio were designed, and power performance and fuel economy of both vehicles respectively equipped with conventional CVT system and new transmission system wrere compared and analyzed by simulation. The results show that power performance and fuel economy of the vehicle equipped with new transmission system are better than that equipped with conventional CVT, thus the rationality of the parameter design method and control algorithm are verified.
文摘提出了一种基于改进粒子群优化算法的无级变速器速比控制阀动态性能优化方法。首先通过机理分析的方法建立了速比控制阀的动态模型;然后根据无级变速器速比控制阀的使用要求,在考虑响应时间、超调量及节能等指标的基础上,确立了一个综合的优化目标函数;最后根据确立的目标函数,结合仿真模型,通过改进的粒子群优化算法对速比控制阀的结构参数进行了优化。试验结果表明经过优化的速比控制阀各项动态性能指标均优于原型阀,其中压力上升时间缩短了100 m s,超调量下降了0.05 MPa,更适用于无级变速器。