PI和SMC思想在GMAW控制中的包容性研究

A. K. Paul
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引用次数: 3

摘要

GMAW是一个完整的电弧焊工艺。它是装备,以创造所有类型的理想质量,涉及几乎所有金属的任何厚度,在任何位置。然而,这样做会导致电弧间隙或负载特性的参数变化。保护气体、焊缝金属、工件等材料的变化会影响工艺的工作点。此外,控制器需要确保平稳启动、正常运行和停止,并优化熔化速率、液滴传递、短路后再点火和飞溅率等多个动态活动。如果一个控制器或设备可以控制整个过程的活动,对最终用户来说是理想的。本文探讨了流行的PI控制思想和SMC控制思想的实用性标准,以综合实现对GMAW整个过程需求的控制,以满足其应用前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Practical study of inclusiveness properties of PI and SMC ideas for control of GMAW
GMAW is a complete arc welding process. It is equipped to create all types of joints of desirable quality involving virtually all metals of any thickness in any position. However, in doing so there are parametric shifts in arc gap or load characteristics. Change in materials such as shielding gas, weld metal and work piece etc. influence the operating point of the process. Moreover, the controller needs to ensure smooth starting, normal operation and also its stopping where multiple dynamic activities such as melting rate, droplet transfer, re-ignition post short circuit and spatter rate are optimized. It is ideal for end users if one controller or equipment can have grip of control over activities of entire process. This article explores practicability criteria of popular PI and SMC control ideas to inclusively achieve control over complete process requirement of GMAW to cater its application prospects.
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