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The method and implementation of automatic, fuzzy surface temperature control for laser processing

机译:激光加工自动,模糊表面温度控制的方法和实施

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The article presents a developed, proprietary system of automatic temperature control of the workpiece surface for a laser processing. In the control system, a regulator based on fuzzy logic algorithms has been developed. The system is based on a RT real time system with a frequency of 1 kHz. In order to implement the system, the reconfigurable NI CompactRio microprocessor system together with the appropriate input modules was used. The control application was created based on the LabView software. The feedback signal for the control system was realized with usage of a fiber optic pyrometer observing the area of the laser beam. In order to implement the system in the existing, dedicated control system of the Trumpf TruCell 1005 laser device, a number of integration works were carried out. During the preliminary tests, the settings of the developed regulator were selected empirically and the correctness of its operation was checked for various working conditions. The article also presents the time series of the temperature control value and the control error combined with the course of the modulated laser device power during the laser machining process.
机译:本文介绍了用于激光加工的工件表面的开发的专有系统的自动温度控制。在控制系统中,已经开发了一种基于模糊逻辑算法的调节器。该系统基于具有1 kHz频率的RT实时系统。为了实现系统,使用可重新配置的NI CompactRIO微处理器系统以及适当的输入模块。控制应用程序是根据LabVIEW软件创建的。用使用光纤高温计观察激光束的面积的光纤高温计实现控制系统的反馈信号。为了实现现有的专用控制系统在TrumpF Trucell 1005激光装置的现有,专用控制系统中,执行了许多集成工作。在初步测试期间,凭经验选择开发的调节器的设置,检查其操作的正确性进行各种工作条件。本文还介绍了温度控制值的时间序列和控制误差与激光加工过程中调制激光器件功率的过程相结合。

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