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Modeling and robust controlling of laser welding process on high strength titanium alloy using fuzzy basis function networks and robust Takagi-Sugeno fuzzy controller

机译:采用模糊基函数网络对高强度钛合金激光焊接工艺的建模与鲁棒控制,鲁棒Takagi-Sugeno模糊控制器

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摘要

The purpose of this paper is to present and implement a novel approach to data-driven modeling and robust control of a laser keyhole welding process. The objective is to maintain the penetration depth of the laser welding process at a desired value under system uncertainties. A framework was proposed to estimate the keyhole diameter and the keyhole penetration depth in real time by type-1 and type-2 fuzzy basis function networks, and an adaptive divided difference filter. A robust Takagi-Sugeno fuzzy controller was implemented to adjust the laser power of the welding process. Experimental results demonstrated that the fuzzy models provided an accurate estimation of both the welding geometry and its variations due to uncertainties, and the robust Takagi-Sugeno fuzzy controller successfully reduced the penetration depth variation and improved the quality of the welding process.
机译:本文的目的是呈现并实施一种新的数据驱动建模和激光钥匙孔焊接过程的鲁棒控制方法。 目的是在系统不确定性下以所需值保持激光焊接过程的穿透深度。 提出了一种框架,以通过类型-1和类型模糊基函数网络实时估计锁孔直径和锁孔穿透深度,以及自适应划分差滤波器。 实施了强大的Takagi-Sugeno模糊控制器,以调整焊接过程的激光功率。 实验结果表明,由于不确定性,模糊模型提供了精确估计焊接几何形状及其变化,并且鲁棒Takagi-Sugeno模糊控制器成功地降低了渗透深度变化并提高了焊接过程的质量。

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