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IEEE 802.15.4 ZigBee-Based Time-of-Arrival Estimation for Wireless Sensor Networks

机译:基于IEEE 802.15.4 ZigBee的无线传感器网络到达时间估计

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摘要

Precise time-of-arrival (TOA) estimation is one of the most important techniques in RF-based positioning systems that use wireless sensor networks (WSNs). Because the accuracy of TOA estimation is proportional to the RF signal bandwidth, using broad bandwidth is the most fundamental approach for achieving higher accuracy. Hence, ultra-wide-band (UWB) systems with a bandwidth of 500 MHz are commonly used. However, wireless systems with broad bandwidth suffer from the disadvantages of high complexity and high power consumption. Therefore, it is difficult to employ such systems in various WSN applications. In this paper, we present a precise time-of-arrival (TOA) estimation algorithm using an IEEE 802.15.4 ZigBee system with a narrow bandwidth of 2 MHz. In order to overcome the lack of bandwidth, the proposed algorithm estimates the fractional TOA within the sampling interval. Simulation results show that the proposed TOA estimation algorithm provides an accuracy of 0.5 m at a signal-to-noise ratio (SNR) of 8 dB and achieves an SNR gain of 5 dB as compared with the existing algorithm. In addition, experimental results indicate that the proposed algorithm provides accurate TOA estimation in a real indoor environment.
机译:精确到达时间(TOA)估计是使用无线传感器网络(WSN)的基于RF的定位系统中最重要的技术之一。因为TOA估计的准确性与RF信号带宽成正比,所以使用宽带宽是实现更高准确性的最基本方法。因此,通常使用带宽为500 MHz的超宽带(UWB)系统。然而,具有宽带宽的无线系统遭受高复杂度和高功耗的缺点。因此,难以在各种WSN应用中采用这样的系统。在本文中,我们提出了一种使用IEEE 802.15.4 ZigBee系统的精确到达时间(TOA)估计算法,该系统的窄带宽为2 MHz。为了克服带宽的不足,该算法估计了采样间隔内的TOA分数。仿真结果表明,与现有算法相比,所提出的TOA估计算法在信噪比(SNR)为8 dB时可提供0.5 m的精度,并可获得5 dB的SNR增益。此外,实验结果表明,该算法在真实的室内环境中提供了准确的TOA估计。

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