Mixed logic dynamic model for the hybrid characteristics of the dual robotic welding process and system

Hao Zhou, Yinshui He, Yuxi Chen, Di Wu, Huabin Chen, Shanben Chen
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引用次数: 1

Abstract

The welding unit is an indispensable part of the welding flexible manufacturing system (WFMS). The local welding units welding system is a typical hybrid systems, not only continuous variables involved, but also discrete variables involved, and there are many uncertainties in the welding process. Mixed logical dynamical (MLD) approach is a more effective tool for hybrid system, and more suitable for intelligent robotic welding process, therefore MLD can effectively predict and control the state of robot motion and welding process. The purpose of this paper is to apply the MLD to model the dual robot motion process and welding power supply. The stability and reliability of the MLD architecture indicates that it is adapted to dual robotic welding process.
双机器人焊接过程和系统混合特性的混合逻辑动态模型
焊接单元是焊接柔性制造系统(WFMS)的重要组成部分。局部焊接单元焊接系统是一个典型的混合系统,既涉及连续变量,又涉及离散变量,在焊接过程中存在许多不确定性。混合逻辑动力学(MLD)方法是一种更有效的混合系统工具,更适用于智能机器人焊接过程,因此MLD可以有效地预测和控制机器人的运动状态和焊接过程。本文的目的是应用MLD对机器人的双运动过程和焊接电源进行建模。MLD体系结构的稳定性和可靠性表明,该体系结构适用于双机器人焊接工艺。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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