首页> 外文会议>Proceedings of the International Conference on Mechanical Transmissions (ICMT'2006) >SIMULATION ANALYSIS OF V-BELT STYLE CONTINUOUSLY VARIABLE TRANSMISSION WITH ELECTRO-HYDRAULIC PROPORTIONAL CONTROL SYSTEM
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SIMULATION ANALYSIS OF V-BELT STYLE CONTINUOUSLY VARIABLE TRANSMISSION WITH ELECTRO-HYDRAULIC PROPORTIONAL CONTROL SYSTEM

机译:电液比例控制系统V带式连续变速传动的仿真分析

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The early version of the mechanically controlled continuously variable transmission (CVT) with hydraulic servo system has been improved and electro-hydraulic proportional control system has been designed. By analyzing operating principle of electro-hydraulic proportional system, respective function of the electro-hydraulic proportional directional valve and electro-hydraulic proportional pressure valve in the system and running resistance of vehicle in all kinds of working conditions, a mathematical model using the method of linearization has been established. The mathematical model included two models. The first, electro-hydraulic proportional system model was obtained based on a hypothesis that the connection between V-belt and tape reel was inflexible, drive wheels oil cylinder and driven wheel oil cylinder were considered cavity without piston pole and cavity with piston pole in a hydraulic cylinder and their effective area ratio was proximity two. The second, resistance model was established based on the relations among running resistance of vehicle, vehicle speed, rotational speed of engine, CVT ratio and hydraulic cylinder displacement. Thinking about the complexity of CVT transmission system, fuzzy controller has been designed. Simulation has been carried out based on the mathematical model and fuzzy controller. Simulating results show that the electro-hydraulic proportional system model is in accordance with the practicable working condition of CVT transmission system, which provides the foundation of the development of CVT control system.
机译:采用液压伺服系统的机械控制连续变速器(CVT)的早期版本已经改进,设计了电动液压比例控制系统。通过分析电液比例系统的操作原理,电液比例方向阀的各个函数和电动液压比例压力阀在系统中的各种工作条件下车辆的运行阻力,使用该方法的数学模型线性化已经建立。数学模型包括两个模型。首先,基于假设获得了电动液压比例系统模型,即V形带和带卷轴的连接是不灵活的,驱动轮油缸和从动轮油缸被认为是没有活塞杆和带有活塞杆的空腔的腔液压缸及其有效面积的比率接近两种。基于车辆运行阻力,车速,发动机转速,CVT比和液压缸位移的关系建立了第二种电阻模型。考虑CVT传输系统的复杂性,设计了模糊控制器。基于数学模型和模糊控制器进行了模拟。仿真结果表明,电液比例系统模型符合CVT传输系统的可行工作条件,为CVT控制系统的开发提供了基础。

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