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ROCS: Exploiting FM Radio Data System for Clock Calibration in Sensor Networks

机译:ROCS:开发FM无线电数据系统用于传感器网络中的时钟校准

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Clock synchronization is critical for many WSNs due to the need of inter-node coordination and collaborative information processing. Existing protocols based on message passing achieve satisfactory clock synchronization accuracy, however, incur prohibitively high overhead especially in large-scale networks. In this paper, we propose a new clock synchronization approach called ROCS which exploits the radio data system (RDS) from FM radio stations. First, we design a new hardware FM receiver that can extract a periodic pulse from FM broadcasts, referred to as RDS clock. We then conduct a large-scale measurement study of RDS clock in our lab for a period of six days and on a vehicle driving through a metropolitan area of over . Our results show that RDS clock is highly stable and hence is a viable means to calibrate the clocks of large-scale city-wide sensor networks. To reduce the high power consumption of FM receiver, ROCS adaptively calibrates the native clock via the RDS clock. We implement ROCS in TinyOS on our hardware FM receiver and a TelosB-compatible WSN platform. Our extensive experiments using a 12-node testbed and our driving measurement traces show that ROCS achieves accurate and precise clock synchronization with low power consumption.
机译:由于需要节点间协调和协作信息处理,因此时钟同步对于许多WSN至关重要。现有的基于消息传递的协议实现了令人满意的时钟同步精度,但是,特别是在大规模网络中,会产生过高的开销。在本文中,我们提出了一种称为ROCS的新时钟同步方法,该方法利用了FM广播电台的无线电数据系统(RDS)。首先,我们设计了一种新的硬件FM接收器,它可以从FM广播中提取一个周期性脉冲,称为RDS时钟。然后,我们在实验室中进行了为期六天的大型RDS时钟测量研究,并在车辆行驶超过的大城市区域中进行了研究。我们的结果表明,RDS时钟高度稳定,因此是校准大型城市范围传感器网络时钟的可行方法。为了减少FM接收器的高功耗,ROCS通过RDS时钟自适应地校准本机时钟。我们在硬件FM接收器和与TelosB兼容的WSN平台上的TinyOS中实现ROCS。我们使用12节点测试床进行的广泛实验以及我们的驱动测量轨迹表明,ROCS以低功耗实现了准确而精确的时钟同步。

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