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APPLICATION OF THREE-PORT MOTORS IN HYDROSTATIC TRANSMISSION ARCHITECTURES FOR 4WD VEHICLES

机译:三港电机在4WD车辆静液压传动架构中的应用

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Hydrostatic transmission architectures for the locomotion of 4WD vehicles must provide proper traction capability - i.e. adequate pull force and gradeability - and synchronization, i.e. a set of rotational speed of wheels, adapted to the maneuver being performed. Focusing on a typical machine layout with four motor-wheels, the most common layout is the parallel connection of the four hydraulic motors, which is extremely vulnerable to asymmetrical losses of adherence, unless dedicated control subsystems be added to the transmission. The perfectly opposite solution is the series connection of four motor-wheels, which ensure the synchronization of wheel velocities, but at the cost of a considerably higher working pressure in the circuit, less efficient operation of the first motors in the chain and non-optimal characteristics for cornering maneuvers. A patented mixed series/parallel architecture - based on compound three-port motors and including only hydraulic components - is capable of inherently compensating adherence unbalance, while mitigating the typical drawbacks of a pure series connection. The present work provides a preliminary investigation, through numerical simulation, of this lattermost architecture, which is appealing in all applications where a strong use of electronics is not advisable.
机译:4WD车辆运动的静液压传动架构必须提供适当的牵引力 - 即充足的拉力和渐变性 - 以及同步,即轮子的一组转速,适用于正在进行的操纵。专注于具有四个电动车轮的典型机布局,最常见的布局是四个液压马达的并联连接,除非专用控制子系统添加到传输中,否则这是极其容易受到不对称损失的侵害。完美相反的解决方案是四个电动车轮的串联连接,可确保车轮速度的同步,但在电路中具有相当高的工作压力的成本,连锁中第一电动机的高效运行和非最佳工作转弯机动的特点。专利的混合系列/并联架构 - 基于复合三端口电动机,包括仅液压元件 - 能够固有地补偿粘​​附不平衡,同时减轻纯串联连接的典型缺点。目前的工作通过这种后部架构的数值模拟提供了初步调查,这在最强大的应用中吸引了强大使用电子产品的应用中。

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