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Prospects for speckle-pattern based vibration sensing in electromechanical equipment

机译:机电设备中基于散斑图样振动检测的前景

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Condition monitoring of heavy electromechanical equipment such as electrical switchgear is Increasingly reliant on vibration sensing technology. Of applicable optical methods, electronic speckle-pattern interferometry (ESPI) is established as asensitive whole-field technique for monitoring surface vibration. Such systems incorporate video signal processing to offer automated real-time measurement of vibrational amplitude and phase. Speckle fluctuations, often a source of noise, may also beutilized within multimode fibres for fast one-dimensional sensing. This paper discusses the optoelectronic processing behind such speckle metrologies, and reviews technological developments suited to vibration monitoring in extreme electromechanicalenvironments. Advances in the technology, particularly in the areas of transient and multiple-frequency response, will be driven by the application and the ability to fabricate industry-compatible system prototypes.
机译:诸如开关柜之类的重型机电设备的状态监视越来越依赖于振动传感技术。在适用的光学方法中,电子散斑图干涉法(ESPI)被确立为用于监视表面振动的敏感全场技术。这样的系统结合了视频信号处理功能,以提供振动幅度和相位的自动实时测量。散斑波动通常是噪声的来源,也可以在多模光纤中利用其进行快速一维传感。本文讨论了此类散斑计量学背后的光电处理,并回顾了适合在极端机电环境中进行振动监测的技术发展。该技术的进步,特别是在瞬态和多频响应领域,将受到应用和制造行业兼容系统原型能力的推动。

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