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Establishing a cost-effective sensing system and signal processing method to diagnose preload levels of ball screws

机译:建立具有成本效益的传感系统和信号处理方法来诊断滚珠丝杠的预紧水平

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摘要

This paper presents an embedded sensing system for precisely measuring acceleration and temperature of interest points on a ball screw structure and diagnosis of different ball-screw preloads based on processing acquired signals with further classification using the support vector machine (SVM) method. The sensing system consists of a sensing unit and a hardware signal-processing unit. The core sensors utilize a MEMS-type accelerometer and glass-type SMD PT-100, integrated into a 1 cm × 1 cm circuit board and packaged with a metal housing sensing unit with a dimension less than 1.5 cm~3. The sensing unit is embedded into the screw nut of a designed preload-adjustable ball screw, installed on a computer-controlled single-axis stage for testing. Acquired signals with good noise immunity in an industrial environment are achieved through the developed hardware signal-processing unit. Measured acceleration and temperature data for different ball-screw preload levels based on time and frequency domain analysis are performed. The results demonstrate achieving diagnosis of a ball-screw preload within 20 s, with a preload level classification reaching nearly 100%. The developed sensing system and analysis method can apply to monitor ball-screw health and would be very useful in industrial applications.
机译:本文提出了一种嵌入式传感系统,用于基于支持向量机(SVM)方法对采集到的信号进行进一步分类处理,从而精确测量滚珠丝杠结构上的加速度和温度以及对滚珠丝杠预紧力进行诊断。传感系统由传感单元和硬件信号处理单元组成。核心传感器采用MEMS型加速度计和玻璃型SMD PT-100,集成在1 cm×1 cm的电路板上,并与尺寸小于1.5 cm〜3的金属外壳传感单元包装在一起。传感单元嵌入到设计的预紧力可调的滚珠丝杠的螺母中,该螺母安装在计算机控制的单轴位移台上进行测试。通过开发的硬件信号处理单元可实现在工业环境中具有良好抗扰性的采集信号。根据时域和频域分析,针对不同的滚珠丝杠预紧力水平执行了测得的加速度和温度数据。结果表明,在20 s内即可完成对滚珠丝杠预紧力的诊断,预紧力等级的分类将近100%。开发的传感系统和分析方法可用于监视滚珠丝杠的健康状况,在工业应用中将非常有用。

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