首页> 外文会议>ASME International Conference on Manufacturing Science and Engineering >RADIO CHANNEL CHARACTERISTICS OF ZIGBEE WIRELESS SENSORS IN MACHINE SHOP FOR PLANT FLOOR PROCESS MONITORING
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RADIO CHANNEL CHARACTERISTICS OF ZIGBEE WIRELESS SENSORS IN MACHINE SHOP FOR PLANT FLOOR PROCESS MONITORING

机译:厂房车间ZigBee无线传感器的无线电通道特性

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Wireless sensors are envisioned to be useful for plant floor process monitoring with unprecedented flexibility and low costs, where data can be relayed via a wireless network formed among the sensors. Factory environments, however, are known harsh for radio communications. For sensor radios engineered with extremely low power and simple circuitry, the sensor radio channel characteristics must be identified for optimal network design and reliability assessment. In this paper, a preliminary radio channel measurement study was performed based on the wireless sensor pairs in normal communication at the 2.4 GHz Industrial, Scientific and Medical (ISM) band to assess the sensor radio channel properties in a university machine workshop. The effect of both stationary and moving (forklift) obstacles on the radio propagation in terms of the received signal power, bit error and packet error rates was studied. The effect of stationary obstacles was further analyzed against a simple path loss model to find the path loss exponent. A spectrum analyzer was also used to capture the noise backgrounds in free space and the machine shop, which shows significantly different radio activities among the investigated scenarios. The proposed channel measurement methodology through directly utilizing the sensor platforms will help future radio channel characterization studies in manufacturing plant floor environments.
机译:无线传感器设想用于植物楼层过程监控,以前所未有的灵活性和低成本,可以通过传感器中形成的无线网络来转发数据。然而,工厂环境是已知的无线电通信的严厉。对于具有极低功耗和简单电路的传感器无线电,必须识别传感器无线电信道特性以获得最佳网络设计和可靠性评估。在本文中,基于2.4GHz工业,科学和医疗(ISM)频段正常通信中的无线传感器对进行初步无线电信道测量研究,以评估大学机械车间的传感器无线电信道特性。研究了静止和移动(叉车)障碍对接收信号功率,误码和分组错误率的无线电传播的影响。静止障碍物的效果进一步分析了简单的路径损耗模型,以找到路径损耗指数。频谱分析仪还用于捕获自由空间和机器车间的噪声背景,该噪声背景在调查的场景中显示出显着不同的无线电活动。通过直接利用传感器平台的建议的信道测量方法将有助于在制造厂房环境中的未来无线电信道特征研究。

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