Xie Yangmin, Alleyne Andrew G, Greer Ashley, Deneault Dustin
Mem. ASME e-mail:
J Dyn Syst Meas Control. 2013 May;135(3):345031-345038. doi: 10.1115/1.4023209. Epub 2013 Mar 28.
This paper investigates fundamental performance limitations in the control of a combine harvester's header height control system. There are two primary subsystem characteristics that influence the achievable bandwidth by affecting the open loop transfer function. The first subsystem is the mechanical configuration of the combine and header while the second subsystem is the electrohydraulic actuation for the header. The mechanical combine + header subsystem results in an input-output representation that is underactuated and has a noncollocated sensor/actuator pair. The electrohydraulic subsystem introduces a significant time delay. In combination, they each reinforce the effect of the other thereby exacerbating the overall system limitation of the closed loop bandwidth. Experimental results are provided to validate the model and existence of the closed loop bandwidth limitations that stem from specific system design configurations.
本文研究了联合收割机割台高度控制系统控制中的基本性能限制。有两个主要子系统特性通过影响开环传递函数来影响可实现的带宽。第一个子系统是联合收割机和割台的机械配置,而第二个子系统是割台的电动液压驱动。机械联合收割机+割台子系统导致一个输入输出表示,该表示是欠驱动的,并且具有非并置的传感器/执行器对。电动液压子系统引入了显著的时间延迟。综合起来,它们各自增强了对方的影响,从而加剧了闭环带宽的整体系统限制。提供了实验结果来验证源于特定系统设计配置的闭环带宽限制的模型和存在性。