利用基于事件传感原理的智能传感方法实现电力设备振动可视化

IF 1.9 Q4 ENERGY & FUELS
Mingzhe Zhao , Xiaojun Shen , Lei Su , Zihang Dong
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引用次数: 0

摘要

振动测量可用于评估电力设备的运行状态,并广泛应用于设备质量检测和故障识别。事件传感技术可以感知物体振动引起的表面光强变化,并提供振动行为的可视化描述。本文在分析事件传感器将振动行为转化为事件流数据的原理基础上,提出了一种将事件流数据重构为振动位移与时间相关关系的算法,以提取振动信号的幅频特性。构建了振动测量测试平台,并对振动电机和其他动力设备进行了可行性和有效性测试。结果表明,事件传感技术能有效感知动力的表面振动行为,并提供较宽的动态范围。此外,利用该技术构建的电力设备振动测量和可视化算法具有较高的测量精度和效率。这项研究成果为电力设备的振动定位和幅频分析提供了一种新的非接触式可视化方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Power equipment vibration visualization using intelligent sensing method based on event-sensing principle

Vibration measurements can be used to evaluate the operation status of power equipment and are widely applied in equipment quality inspection and fault identification. Event-sensing technology can sense the change in surface light intensity caused by object vibration and provide a visual description of vibration behavior. Based on the analysis of the principle underlying the transformation of vibration behavior into event flow data by an event sensor, this paper proposes an algorithm to reconstruct event flow data into a relationship correlating vibration displacement and time to extract the amplitude-frequency characteristics of the vibration signal. A vibration measurement test platform is constructed, and feasibility and effectiveness tests are performed for the vibration motor and other power equipment. The results show that event-sensing technology can effectively perceive the surface vibration behavior of power and provide a wide dynamic range. Furthermore, the vibration measurement and visualization algorithm for power equipment constructed using this technology offers high measurement accuracy and efficiency. The results of this study provide a new noncontact and visual method for locating vibrations and performing amplitude-frequency analysis on power equipment.

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来源期刊
Global Energy Interconnection
Global Energy Interconnection Engineering-Automotive Engineering
CiteScore
5.70
自引率
0.00%
发文量
985
审稿时长
15 weeks
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