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Ball Screw Fault Detection and Location Based on Outlier and Instantaneous Rotational Frequency Estimation

机译:基于异常值和瞬时旋转频率估计的滚珠丝螺杆故障检测和位置

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摘要

Ball screw, as a crucial component, is widely used in various rotating machines. Its health condition significantly influences the efficiency and position precision of rotating machines. Therefore, it is important to accurately detect faults and estimate fault location in a ball screw system to make sure that the ball screw system runs safely and effectively. However, there are few research studies concerning the topic. The aim of this paper is to fill the gap. In this paper, we propose a method to automatically detect and locate faults in a ball screw system. The proposed method mainly consists of two steps: fault time estimation and instantaneous rotational frequency extraction. In the first step, a statistics-based outlier detection method is proposed to involve the fault information mixing in vibration signals and estimate the fault time. In the second step, a parameterized time-frequency analysis method is utilized to extract the instantaneous rotational frequency of the ball screw system. Once the fault time and instantaneous rotational frequency are estimated, the fault location in a ball screw system is calculated through an integral operation. In order to verify the effectiveness of the proposed method, two fault location experiments under the constant and varying speed conditions are conducted in a ball screw failure simulation testbed. The results demonstrate that the proposed method is able to accurately detect the faults in a ball screw system and estimate the fault location within an error of 22%.
机译:作为关键组件的滚珠丝杠广泛用于各种旋转机器。其健康状况显着影响旋转机器的效率和定位精度。因此,重要的是准确地检测滚珠丝螺杆系统中的故障和估计故障位置,以确保滚珠丝系统安全有效地运行。但是,关于这个主题的研究尤为困难。本文的目的是填补差距。在本文中,我们提出了一种方法来自动检测和定位滚珠丝系统中的故障。该方法主要由两个步骤组成:故障时间估计和瞬时旋转频率提取。在第一步中,提出了一种基于统计的异常检测方法,以涉及在振动信号中混合的故障信息并估计故障时间。在第二步中,利用参数化的时频分析方法来提取滚珠丝杠系统的瞬时旋转频率。一旦估计故障时间和瞬时旋转频率,通过整体操作计算滚珠丝螺杆系统中的故障位置。为了验证所提出的方法的有效性,在恒定和变化的速度条件下进行两个故障定位实验,在滚珠螺杆故障模拟测试中进行。结果表明,该方法能够精确地检测滚珠丝螺杆系统中的故障并估计22%误差内的故障位置。

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