面向机械设备异常检测的可靠声学数据无线采集系统的研制

Chinari Takano, S. Fujino, Daiki Nobayashi, K. Tsukamoto, M. Mizumachi, T. Ikenaga
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引用次数: 0

摘要

随着最近可以通过无线通信发送和接收数据的物联网(IoT)设备的激增,我们能够远程监控和操作这些设备。使用无线通信的物联网系统的一个示例是使用声学数据进行机械设备异常检测的系统。为了利用声学数据检测异常,连续记录是必不可少的,从而增加了数据量。虽然Wi-Fi网络提供了大容量的数据传输,但由于与使用相同频率的其他设备的数据碰撞导致的数据包丢失以及两个通信设备之间的距离增加等原因,性能下降无法避免。在本研究中,我们开发了一种无线通信系统,用于可靠的声学数据采集,用于机械设备的异常检测。首先,作为初步实验,我们研究了室内和室外环境下Wi-Fi传输大容量数据的通信特性。结果表明,该系统的通信性能不足以传输所有记录数据。因此,我们开发了一种简单的启发式传输定时控制方法和一种可以减少传输数据量的方法,以实现稳定的声学数据采集系统。最后,通过现场机械设备的演示实验,验证了声学数据采集系统的可行性。
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Development of a Wireless Communication System for Reliable Acoustic Data Collection Toward Anomaly Detection in Mechanical Equipment
With the recent proliferation of Internet of Things (IoT) devices that can send and receive data via wireless communication, we are able to monitor and operate these devices remotely. An example of an IoT system using wireless communication is a system for anomaly detection in mechanical equipment using acoustic data. In order to detect anomalies using acoustic data, continuous recording is essential, thereby increasing the data size. Although Wi-Fi networks provide high-capacity data transfer, performance degradation cannot be avoided due to reasons such as packet losses caused by collisions with data from other devices using the same frequency and the increase in distance between two communicating devices. In the present study, we developed a wireless communication system for reliable acoustic data collection for anomaly detection in mechanical equipment. First, as preliminary experiments, we investigated the communication characteristics for the transmission of large-size data by Wi-Fi in indoor and outdoor environments. The results indicated the communication performance was insufficient for transferring all recorded data handled by this system. Therefore, we developed a simple heuristic transmission timing control method and a method that can reduce the amount of transmission data in order to realize a stable acoustic data collection system. Finally, through demonstration experiments using mechanical equipment in the field, we verified the feasibility of the acoustic data collection system.
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