Low-sampling-rate ultra-wideband channel estimation using a bounded-data-uncertainty approach

Tarig Ballal, T. Al-Naffouri
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Abstract

This paper proposes a low-sampling-rate scheme for ultra-wideband channel estimation. In the proposed scheme, P pulses are transmitted to produce P observations. These observations are exploited to produce channel impulse response estimates at a desired sampling rate, while the ADC operates at a rate that is P times less. To avoid loss of fidelity, the interpulse interval, given in units of sampling periods of the desired rate, is restricted to be co-prime with P. This condition is affected when clock drift is present and the transmitted pulse locations change. To handle this situation and to achieve good performance without using prior information, we derive an improved estimator based on the bounded data uncertainty (BDU) model. This estimator is shown to be related to the Bayesian linear minimum mean squared error (LMMSE) estimator. The performance of the proposed sub-sampling scheme was tested in conjunction with the new estimator. It is shown that high reduction in sampling rate can be achieved. The proposed estimator outperforms the least squares estimator in most cases; while in the high SNR regime, it also outperforms the LMMSE estimator.
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基于有界数据不确定性方法的低采样率超宽带信道估计
提出了一种用于超宽带信道估计的低采样率方案。在该方案中,传输P个脉冲产生P个观测值。利用这些观察结果,以期望的采样率产生信道脉冲响应估计,而ADC以低于P倍的速率工作。为了避免保真度的损失,以期望速率的采样周期为单位给出的脉冲间隔被限制为与p共素数。当时钟漂移存在并且传输的脉冲位置发生变化时,这种情况就会受到影响。为了处理这种情况并在不使用先验信息的情况下获得良好的性能,我们推导了一种基于有界数据不确定性(BDU)模型的改进估计器。该估计量与贝叶斯线性最小均方误差(LMMSE)估计量相关。结合新估计器对所提出的子抽样方案进行了性能测试。实验结果表明,该方法可以大幅度降低采样率。该估计量在大多数情况下优于最小二乘估计量;而在高信噪比条件下,它也优于LMMSE估计器。
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