利用任意序列进行实时无线信道评估

A. Al-Dabbagh, M. Darnell
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引用次数: 0

摘要

宽带通信系统需要精确的信道测量,这是众所周知的。系统识别问题是任何无线信道测量和估计的基础。经典的系统识别方法采用伪随机(PR)序列作为测试信号。然后将系统对该PR序列的响应与测试信号的副本相关联,以获得系统脉冲响应的估计。该技术所基于的基本假设是PR测试信号具有理想的脉冲自相关函数(ACF)。在实践中,大多数感兴趣的序列不具有这种理想的ACF。使用带有非脉冲ACF的测试信号的后果是引入估计误差。当将经典的系统辨识方法应用于信道估计时,问题就更加突出了。本文分析了测试信号ACF不理想情况下的系统辨识问题。结果表明,采用补偿滤波器可以减小系统脉冲响应估计误差,补偿滤波器的响应与测试信号ACF中的缺陷有关。然后证明了这种方法对宽带信道估计的适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The use of arbitrary sequences for real-time wireless channel evaluation
The need for accurate channel measurements for broadband communication systems is well known. The problem of system identification constitutes the basis for any wireless channel measurement and estimation. The classical approach to system identification employs a pseudo-random (PR) sequence as a test signal. The system response to this PR sequence is then correlated with a replica of the test signal in order to obtain an estimate of the system impulse response. The fundamental assumption upon which this technique is based is that the PR test signal has an ideally impulsive autocorrelation function (ACF). In practice, the majority of sequences of interest do not possess this idealised ACF. The consequences of employing test signals with nonimpulsive ACF results in the introduction of estimation errors. The problem is further accentuated when the classical approach to system identification is applied to channel estimation. In this paper, the problem of system identification is analysed for the case when the ACF of the test signal is non-ideal. It is shown that the system impulse response estimation error can be reduced by using a compensation filter whose response has been related to the imperfection in the test signal ACF. The applicability of this approach to broadband channel estimation is then demonstrated.
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