Digital FIR filter design for diagnosing problems in gears and bearings using Xilinx's system generator

M. Vidal, R. Cruces, G. Zurita
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引用次数: 1

Abstract

This paper discusses a common problem in industry to detect machine failures, especially in gears and bearings through vibrational analysis. Vibrational analysis is a powerful method for analyzing any machine in the industry, but this method uses expensive signal conditioning/processing devices and significant expertise for the analysis of signals in the frequency domain. In this context, this study proposes a new system of failure detection in machine can be done with digital Finite Impulse Response (FIR) filters. The systems of data Adquisition are compose with the test machine, accelerometer (model-353B17) and PCI-4474 Data Acquisition Card. The data from test machine are evaluated in both optimal and failure conditions. To evaluate the FIR filters system, a system was designed with the Xilinx System Generator. The structure design had four filters for evaluating gears and bearings separately. In failure condition the filters 1, 2, 3 detected failures in their amplitudes, but for bearings just the filter 4 detected a failure. To validate the system it was implemented in a Field Programmable Gate Array (FPGA) Spartan 3E where the design optimizes hardware resources and has the same responses than Xilinx System Generator. The response of the filters was evaluated with the ISO 10816-3 standard.
数字FIR滤波器设计用于诊断齿轮和轴承问题,使用赛灵思的系统发生器
本文讨论了通过振动分析来检测机械故障,特别是齿轮和轴承故障的一个常见问题。振动分析是分析工业中任何机器的强大方法,但这种方法使用昂贵的信号调理/处理设备和重要的专业知识来分析频域信号。在此背景下,本研究提出了一种新的机器故障检测系统,可以用数字有限脉冲响应(FIR)滤波器来完成。数据采集系统由试验机、加速度计(型号353b17)和PCI-4474数据采集卡组成。在最佳和失效条件下对试验机的数据进行了评估。为了评估FIR滤波器系统,使用Xilinx system Generator设计了一个系统。结构设计有四个过滤器分别评估齿轮和轴承。在故障情况下,滤波器1、2、3在其振幅中检测到故障,但对于轴承,只有滤波器4检测到故障。为了验证该系统,在现场可编程门阵列(FPGA) Spartan 3E中实现了该设计,该设计优化了硬件资源,并且具有与Xilinx system Generator相同的响应。采用ISO 10816-3标准对滤波器的响应进行了评价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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