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RF-Beep: A light ranging scheme for smart devices

机译:RF-Beep:适用于智能设备的测光方案

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In this paper, we design, implement and evaluate RF-Beep — a high-accuracy, one-way sensing, energy efficient and light-weight ranging scheme for smart devices. RF-Beep is based on the well known Time-Difference-of-Arrival (TDoA) scheme that utilizes the different propagation speeds of both the acoustic and the radio-frequency (RF) signals. Unlike the previous works, RF-Beep utilizes both the audio interface (i.e., microphone, speaker and sound driver) and the RF interface (i.e., WiFi) at the kernel-level of commercial-off-the-shelf smart devices. Implementing the scheme at lower levels enables us to understand and address the challenges related to the timing uncertainties in transmitting and receiving the acoustic signal. Moreover, RF-Beep does not require any special hardware or infrastructure support. In this paper, we describe the complete implementation of RF-Beep at the kernel space of Linux OS. We evaluate RF-Beep under different indoor and outdoor real scenarios. Results show that the error in the estimated range is less than 50cm for more than 93% of the time.
机译:在本文中,我们设计,实施和评估RF-Beep,这是一种用于智能设备的高精度,单向感应,节能且轻便的测距方案。 RF-Beep基于众所周知的到达时间差(TDoA)方案,该方案利用了声音和射频(RF)信号的不同传播速度。与以前的作品不同,RF-Beep在现成的商用智能设备的内核级别上同时使用了音频接口(即麦克风,扬声器和声音驱动器)和RF接口(即WiFi)。在较低级别上实施该方案使我们能够理解和应对与发送和接收声信号中的时序不确定性有关的挑战。此外,RF-Beep不需要任何特殊的硬件或基础结构支持。在本文中,我们描述了在Linux OS内核空间中RF-Beep的完整实现。我们在不同的室内和室外真实场景下评估RF-Beep。结果表明,在超过93%的时间中,估计范围内的误差小于50cm。

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