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FPGA-Based Fused Smart-Sensor for Tool-Wear Area Quantitative Estimation in CNC Machine Inserts

机译:基于FPGA的熔融智能传感器,用于CNC机床刀片中的刀具磨损面积定量估算

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摘要

Manufacturing processes are of great relevance nowadays, when there is a constant claim for better productivity with high quality at low cost. The contribution of this work is the development of a fused smart-sensor, based on FPGA to improve the online quantitative estimation of flank-wear area in CNC machine inserts from the information provided by two primary sensors: the monitoring current output of a servoamplifier, and a 3-axis accelerometer. Results from experimentation show that the fusion of both parameters makes it possible to obtain three times better accuracy when compared with the accuracy obtained from current and vibration signals, individually used.
机译:如今,制造工艺与时俱进,不断有人要求以低成本提供高质量的高生产率。这项工作的贡献在于开发了一种基于FPGA的熔融智能传感器,该传感器可从两个主要传感器提供的信息中改进对CNC机床刀片侧面磨损区域的在线定量估计:监控伺服放大器的电流输出,和3轴加速度计。实验结果表明,与从单独使用的电流和振动信号获得的精度相比,这两个参数的融合使获得的精度提高了三倍。

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