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Design of a model based feedforward controller for additive manufacturing by laser metal deposition

机译:基于模型的前馈控制器的设计,用于通过激光金属沉积进行增材制造

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Laser metal deposition, also known as laser cladding or direct metal deposition, is an emerging additive manufacturing technology for the creation of solid 3D-parts. We propose a feedforward controller for the melt pool width that is derived from a first principle model based on the heat conduction equation. Essentially, it adjusts the laser power to the path taken by the machine, thus using another input that is usually kept constant during a production process. The controller is constructed for compatibility with existing computerized numerical control (CNC) for laser metal deposition. This is accomplished by designing the feedforward controller for compatibility with G-code, the standard programming language for CNC machines. Since G-code is not based on time steps or a sampling frequency but, roughly speaking, on velocity and position signals, special care must be taken to ensure compatibility of the proposed model-based discrete-time feedforward controller and the existing CNC machine control. The presented controller is evaluated with a benchmark scenario, where it shows good performance without the need for any additional sensors.
机译:激光金属沉积(也称为激光熔覆或直接金属沉积)是一种用于制造实体3D零件的新兴增材制造技术。我们提出了一个熔池宽度的前馈控制器,该控制器是基于热传导方程从第一原理模型得出的。本质上,它将激光功率调整到机器采用的路径,从而使用通常在生产过程中保持恒定的另一个输入。构造该控制器是为了与现有的用于激光金属沉积的计算机数控(CNC)兼容。这是通过设计与G代码(用于CNC机床的标准编程语言)兼容的前馈控制器来实现的。由于G代码不是基于时间步长或采样频率,而是大致而言是基于速度和位置信号,因此必须格外小心,以确保建议的基于模型的离散时间前馈控制器与现有的CNC机床控制系统兼容。 。所提供的控制器在基准测试方案下进行了评估,该方案在无需任何其他传感器的情况下仍显示出良好的性能。

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