首页> 外文期刊>Nonlinear Dynamics >Wave-based control of non-linear flexible mechanical systems
【24h】

Wave-based control of non-linear flexible mechanical systems

机译:非线性柔性机械系统的基于波的控制

获取原文
获取原文并翻译 | 示例

摘要

The need to achieve rapid and accurate position control of a system end-point by an actuator working through a flexible system arises frequently, in cases from space structures to disk drive heads, from medical mechanisms to long-arm manipulators, from cranes to special robots. The system’s actuator must then attempt to reconcile two, potentially conflicting, demands: position control and active vibration damping. Somehow each must be achieved while respecting the other’s requirements. Wave-based control is a powerful solution with many advantages over previous techniques. The central idea is to consider the actuator motion as launching mechanical waves into the flexible system while simultaneously absorbing returning waves. This simple, intuitive idea leads to robust, generic, highly efficient, adaptable controllers, allowing rapid and almost vibrationless re-positioning of the remote load (tip mass). This gives a generic, high-performance solution to this important problem that does not depend on an accurate system model or near-ideal actuator behaviour. At first sight wave-based control assumes superposition and therefore linearity. This paper shows that wave-based control is also robust (or can easily be made robust) to non-linear behaviour associated with non-linear elasticity and with large-deflection effects.
机译:在从空间结构到磁盘驱动器头,从医疗机构到长臂机械手,从起重机到特殊机器人的情况下,经常需要通过通过柔性系统工作的执行器来实现对系统端点的快速,准确的位置控制。 。然后,系统执行器必须尝试调和两个可能相互冲突的需求:位置控制和主动减振。在尊重对方要求的同时,必须以某种方式实现各自。基于波的控制是一种功能强大的解决方案,与以前的技术相比具有许多优势。中心思想是将执行器的运动视为将机械波发射到柔性系统中,同时吸收返回的波。这种简单,直观的想法导致了功能强大,通用,高效,适应性强的控制器,从而可以对远程负载(尖端质量)进行快速且几乎无振动的重新定位。这为该重要问题提供了通用的高性能解决方案,该解决方案不依赖于准确的系统模型或接近理想的执行器性能。乍一看,基于波的控制假设为叠加,因此为线性。本文表明,基于波的控制对于与非线性弹性和大挠度效应相关的非线性行为也很鲁棒(或可以很容易地使其变得鲁棒)。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号