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TOA Estimation for IR-UWB Systems With Different Transceiver Types

机译:不同收发器类型的IR-UWB系统的TOA估计

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摘要

In this paper, performances of stored-reference, transmitted-reference (TR), and energy-detection (ED)-based time-of-arrival estimation techniques are analyzed for impulse-radio ultra-wideband (IR-UWB) systems at sub-Nyquist sampling rates. First, an additive white Gaussian noise channel is considered to emphasize certain fundamental issues related to these different transceivers. In particular, energy collection characteristics and decision statistics are presented. Probability of accurate peak detection is analyzed for each transceiver, and receiver operating characteristics for the leading edge are derived. Effects of number of pulses per symbol and number of averaging symbols are investigated in detail. Then, realistic multipath channels are addressed, and various maximum-likelihood estimation approaches are investigated. A new estimator that jointly exploits the noise statistics and power delay profile of the channel is proposed, and a Bayesian estimator that (ideally) gives a lower bound is analyzed. Simulation results show that while ED and TR have better energy collection capabilities at low-rate sampling, they suffer from distributing the energy over time.
机译:本文分析了基于存储参考,传输参考(TR)和基于能量检测(ED)的到达时间估计技术的性能,该技术适用于子区域的脉冲无线电超宽带(IR-UWB)系统-奈奎斯特采样率。首先,考虑了加性高斯白噪声通道,以强调与这些不同收发器有关的某些基本问题。特别是,介绍了能量收集特性和决策统计数据。分析了每个收发器的准确峰值检测概率,并得出了前沿的接收器工作特性。详细研究了每个符号的脉冲数和平均符号数的影响。然后,解决了实际的多径信道,并研究了各种最大似然估计方法。提出了一种新的估计器,该估计器可联合利用信道的噪声统计信息和功率延迟曲线,并分析(理想情况下)给出下界的贝叶斯估计器。仿真结果表明,虽然ED和TR在低速率采样时具有更好的能量收集能力,但它们会随着时间的推移而分配能量。

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