首页> 外文期刊>SAE International Journal of Commercial Vehicles >Displacement Joystick/Thumb Wheel Switch Control Profile for Precision and Jerk Free Speed Control Application in Open Loop System
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Displacement Joystick/Thumb Wheel Switch Control Profile for Precision and Jerk Free Speed Control Application in Open Loop System

机译:开环系统中用于精确和无冲击速度控制的位移操纵杆/拇指轮开关控制配置文件

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摘要

Displacement joystick controls are considered as most suitable for manual controls wherever proportional outputs are required for dynamic applications such as when variable speed sensitivity or position are required. These joysticks are being used widely in both open loop as well as in close loop controls. The operator applies force to either the joystick itself or to its proportional linear displacement thumb wheel switches. This movement is then detected by either resistive or Hall Effect sensors, placed right inside joystick, and converted into an electrical signal. These joysticks, along with proportional linear displacement thumb wheel switches, find a wide range of applications in off-road vehicles such construction and forestry vehicles, harvester machines, and etc. for applications like attachment speed controls, boom position control, rotation speed control, and etc. The higher the displacement of the joystick, or its linear displacement thumb wheel switches, the better will be the control over the control parameter. When it comes to open loop attachment control systems, where joystick displacement is directly linked with speed, most times the displacement provided by joystick or linear displacement thumb wheel switches is just not enough to fine tune the control parameter. In such cases, a small variation in displacement results in a large change in output parameter. The operator needs to move the joystick very slowly and cautiously to ensure fine adjustments in the control parameters. It takes a good amount of time to learn to achieve these fine adjustments using a joystick. In a shaky environment it becomes even more difficult to precisely control the parameters using a joystick. In these conditions, a small variation in joystick displacement, or linear displacement thumb wheel displacement, leads to either over or under adjustment of the control parameter. When working in tight places, where there is not much space available to move the vehicle or attachment, it is necessary to control the joystick displacement or linear displacement thumb wheel displacement precisely to ensure objects around vehicle or attachment are not damaged. Due to an operator's mistake, or due to jerks and vibrations to joystick or linear displacement thumb wheel switches, a large amount of change can occur in the control parameter, erroneously leading to accidents or damage to the environment around the machine. For accident and worry free operation, with better efficiency, an operator controlling such attachments or vehicles requires a means to adjust the sensitivity of the joystick or linear displacement thumb wheel switches. There are many ways to achieve this. For example, a switch can be provided to set & lock the upper limit of the control parameter to a level lower than its usual maximum. Reducing the upper limit reduces the effective range. In this way, normal displacement of the joystick or linear displacement thumb wheel switch will be converted to a relatively lower range of the control parameter. This gives the effect of reduced sensitivity.
机译:对于动态应用(例如,需要变速灵敏度或位置)需要比例输出的场合,位移操纵杆控件被认为最适合手动控制。这些操纵杆已广泛用于开环和闭环控制中。操作员向操纵杆本身或其比例线性位移指轮开关施加力。然后,通过电阻传感器或霍尔效应传感器检测该运动,将其放置在操纵杆内部,然后转换为电信号。这些操纵杆以及比例线性位移指轮开关在越野车辆(如建筑和林业车辆,收割机等)中具有广泛的应用,例如附件速度控制,动臂位置控制,转速控制,操纵杆的位移或其线性位移指轮开关的位移越大,对控制参数的控制就越好。在开环附件控制系统中,操纵杆的位移与速度直接相关,大多数情况下,操纵杆或线性位移指轮开关提供的位移不足以微调控制参数。在这种情况下,位移的小变化会导致输出参数的大变化。操作员需要非常缓慢且谨慎地移动操纵杆,以确保对控制参数进行精细调整。学习使用操纵杆进行这些精细调整需要花费大量时间。在摇晃的环境中,使用操纵杆精确控制参数变得更加困难。在这些情况下,操纵杆位移或线性位移指轮位移的微小变化会导致控制参数的调整过度或调整不足。在狭窄的地方工作时,没有足够的空间来移动车辆或附件,因此必须精确控制操纵杆位移或线性位移指轮位移,以确保不损坏车辆或附件周围的物体。由于操作者的错误,或者由于操纵杆或线性位移指轮开关的抖动和振动,控制参数可能发生大量变化,从而错误地导致事故或对机器周围环境的破坏。为了使事故和无忧操作具有更好的效率,控制此类附件或车辆的操作员需要一种调节操纵杆或线性位移指轮开关灵敏度的装置。有很多方法可以实现这一目标。例如,可以提供开关以将控制参数的上限设置和锁定到低于其通常最大值的水平。降低上限会减小有效范围。这样,操纵杆或线性位移指轮开关的正常位移将转换为控制参数的相对较低范围。这导致灵敏度降低的效果。

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