Intelligent Correction and Monitoring of Ship Propulsion Rotary Device Vibration

IF 1.3 Q3 ENGINEERING, MULTIDISCIPLINARY
Chaoquan Ou, K. Ting, Nien-Tsung Lee, Wu-Chiao Shih
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引用次数: 0

Abstract

Field inspection is a traditional way to detect the problem of shaft imbalance or abnormal vibration in a ship propulsion system; however, the ship cannot execute any tasks or activities during calibration. This study develops a human-machine monitoring interface (HMMI) to estimate vibration abnormalities and implement an intelligent active balance correction to the propulsion system online. In this study, Arduino IDE, InduSoft, and LabVIEW are used to create a function monitored by HMMI. By comparing the abnormal vibration amplification of the moment of inertia, HMMI calculates the correct mass to reduce the vibration. The experimental results show that, after HMMI carries out continuous active balance correction online, the correction rate achieves 105.37%. This indicates that HMMI can calculate the amount of imbalance and phase angles and drive a counterweight to the correct balance position while the device is still operating.
船舶推进旋转装置振动的智能校正与监测
现场检测是检测船舶推进系统轴不平衡或异常振动问题的传统方法;然而,船舶在校准期间不能执行任何任务或活动。本研究开发了一个人机监测界面(HMMI)来估计振动异常,并在线对推进系统进行智能主动平衡校正。在本研究中,使用Arduino IDE、InduSoft和LabVIEW创建了一个由HMMI监控的函数。通过比较惯性矩的异常振动放大,HMMI计算出减少振动的正确质量。实验结果表明,HMMI在线进行连续主动平衡校正后,校正率达到105.37%。这表明HMMI可以在设备仍在运行时计算出不平衡量和相位角,并将配重驱动到正确的平衡位置。
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来源期刊
CiteScore
2.80
自引率
0.00%
发文量
18
审稿时长
12 weeks
期刊介绍: The IJETI journal focus on the field of engineering and technology Innovation. And it publishes original papers including but not limited to the following fields: Automation Engineering Civil Engineering Control Engineering Electric Engineering Electronic Engineering Green Technology Information Engineering Mechanical Engineering Material Engineering Mechatronics and Robotics Engineering Nanotechnology Optic Engineering Sport Science and Technology Innovation Management Other Engineering and Technology Related Topics.
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