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Modeling Simulation of Joystick Operated Steering System

机译:操纵杆操作转向系统的建模与仿真

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Joystick operated Hydraulic steering system offers numerous advantages in terms of controllability and operator comfort over the conventional steering systems. Consequently, there is also growing need to model these complex dynamic systems for evaluation and enhancement of performance. This paper is focused on modeling, simulation and analyzing the dynamic behavior of a joystick type hydraulic steering system of articulated machinery using commercially available Dynamic system modeling software. The simulation program is developed by modeling each component of joystick Steering system using various libraries exist in the dynamic system modeling tool. The complete vehicle was modeled as lumped mass, which will act on the tires and in turn acts as a load to the steering system. The simulation can be carried out for different type of steering operations of the machine and also for different load cases at different steering angles to predict the system performance characteristics. It will enable us to virtually simulate the Joystick type steering system and evaluate the system dynamic response and performance during the development stage. Simulation results obtained will help us improving the system performance and operability, design optimization thereby reducing cost and time associated with the Product design development and field testing significantly.
机译:操纵杆操作的液压转向系统在传统转向系统上的可控性和操作员舒适方面提供了许多优势。因此,还有需要模拟这些复杂的动态系统以进行评估和提高性能。本文专注于使用市售动态系统建模软件建模,仿真和分析铰接式机械操纵杆式液压转向系统的动态行为。仿真程序是通过使用动态系统建模工具中的各种库建模操纵杆转向系统的每个组件来开发的。完整的车辆被建模为块状质量,这将在轮胎上采用并反过来用作转向系统的负荷。模拟可以针对机器的不同类型的转向操作进行,并且还用于不同的转向角的不同负载情况,以预测系统性能特性。它将使我们实际上模拟操纵杆式转向系统,并在开发阶段评估系统动态响应和性能。获得的仿真结果将有助于我们提高系统性能和可操作性,设计优化,从而降低了与产品设计开发和现场测试相关的成本和时间。

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