延迟估计中采样误差的减小

Y. Qi, R. Kohno
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引用次数: 10

摘要

延迟估计作为一种重要的超宽带系统测距方法已被广泛接受。在低采样频率下,由数字采样引起的延迟估计误差可能相当大。在本文中,我们从分析和实践两个方面探讨了这种错误的减少。首先推导了一种基于所谓的简化极大似然公式的延迟估计方案,并进一步证明了当采样频率足够高时,其误差方差收敛到相应的理论下限是最优的。其次,根据多用户检测的近远鲁棒性,设计了一种迭代的首次到达检测方案。该方案可以有效地应对频繁的超宽带环境,在这种环境中,第一个到达的信号分量在多径分量中可能不占主导地位。该方法的主要优点是能有效地减小采样误差,且计算复杂度低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mitigation of sampling-induced errors in delay estimation
Delay estimation has been well accepted as an important approach to ranging with a UWB (ultra-wide band) system. Delay estimation errors due to digital sampling can be considerably large at a low sampling frequency. In this paper, we investigate reduction of such errors in both analytical and practical aspects. A delay estimation scheme based on the so-called simplified maximum likelihood formulation is first derived, and is further shown to be optimal in the sense that its error variance converges to the corresponding theoretical lower limit as the sampling frequency is sufficiently high. Next, an iterative scheme for first arrival detection is devised in light of the near-far robustness in multiuser detection. This scheme can effectively cope with a frequent UWB environment where the first arriving signal component may not be dominant among multipath components. Efficient reduction of sampling-induced errors and a low computation complexity are main advantages of the proposed schemes.
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