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Proportional directional valve based automatic steering system for tractors

机译:基于比例方向阀的拖拉机自动转向系统

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Most automatic steering systems for large tractors are designed with hydraulic systems that run on either constant flow or constant pressure. Such designs are limited in adaptability and applicability. Moreover, their control valves can unload in the neutral position and eventually lead to serious hydraulic leakage over long operation periods. In response to the problems noted above, a multifunctional automatic hydraulic steering circuit is presented. The system design is composed of a 5-way-3-position proportional directional valve, two pilot-controlled check valves, a pressure-compensated directional valve, a pressure-compensated flow regulator valve, a load shuttle valve, and a check valve, among other components. It is adaptable to most open-center systems with constant flow supply and closed-center systems with load feedback. The design maintains the lowest pressure under load feedback and stays at the neutral position during unloading, thus meeting the requirements for steering. The steering controller is based on proportional-integral-derivative (PID) running on a 51-microcontroller-unit master control chip. An experimental platform is developed to establish the basic characteristics of the system subject to stepwise inputs and sinusoidal tracking. Test results show that the system design demonstrates excellent control accuracy, fast response, and negligible leak during long operation periods.
机译:大型拖拉机的大多数自动转向系统都设计有以恒定流量或恒定压力运行的液压系统。这样的设计在适应性和适用性方面受到限制。此外,它们的控制阀可能会在空档位置卸载,并最终导致长时间的操作中严重的液压泄漏。针对上述问题,提出了一种多功能自动液压转向回路。系统设计由一个五通三位比例方向阀,两个先导控制止回阀,一个压力补偿方向阀,一个压力补偿流量调节阀,一个负载梭阀和一个止回阀组成,在其他组件中。它适用于大多数具有恒定流量供应的开放式中心系统和具有负载反馈的封闭式中心系统。该设计在负载反馈下保持最低压力,并在卸载过程中保持在中间位置,从而满足转向要求。转向控制器基于在51微控制器单元主控制芯片上运行的比例积分微分(PID)。开发了一个实验平台来建立系统的基本特征,以逐步输入和正弦跟踪。测试结果表明,该系统设计在长时间运行期间表现出出色的控制精度,快速响应和可忽略的泄漏。

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