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Implementation and Evaluation of Combined Positioning and Communication

机译:定位与沟通相结合的实施与评估

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A new generation of communication transceivers are able to support Time of Flight (TOF) distance measurements. Transceiver manufacturers envision that communication and positioning features are used separately and one at a time. However, we have demonstrated that such separation is unnecessary and that TOF measurements can be obtained during data communication. Thus, distance measurements required by positioning services can be collected both energy and bandwidth efficiently. In this paper we describe the modification of an existing low power wireless sensor network (WSN) medium access control (MAC) protocol called FrameComm to include collection of distance measurements. We describe the implementation of the modified FrameComm protocol (called FrameCommDM) on a Nanotron DK development kit comprising of an Atmel ATmegal28 MCU and a Nanotron NA5TR1 transceiver. The performance of the FrameComm and FrameCommDM implementation on the Nanotron platform is evaluated and compared. It is shown that the collection of distance measurements has no significant impact on communication performance. Furthermore, the difference in energy consumption used to perform the additional ranging tasks of FrameCommDM is examined and quantified.
机译:新一代通信收发器能够支持飞行时间(TOF)距离测量。收发器制造商设想通信和定位功能分别使用并且一次使用。但是,我们证明了这种分离是不必要的,并且可以在数据通信期间获得TOF测量值。因此,定位服务所需的距离测量可以有效地收集能量和带宽。在本文中,我们描述了对现有的称为FrameComm的低功率无线传感器网络(WSN)媒体访问控制(MAC)协议的修改,其中包括距离测量的集合。我们描述了在包括Atmel ATmegal28 MCU和Nanotron NA5TR1收发器的Nanotron DK开发套件上实现修改的FrameComm协议(称为FrameCommDM)的实现。评估并比较了Nanotron平台上FrameComm和FrameCommDM实施的性能。结果表明,距离测量值的收集对通信性能没有显着影响。此外,检查并量化了用于执行FrameCommDM的其他测距任务的能耗差异。

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