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首页> 外文期刊>IEEE Transactions on Vehicular Technology >Semiblind Channel Estimation for Pulse-Based Ultra-Wideband Wireless Communication Systems
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Semiblind Channel Estimation for Pulse-Based Ultra-Wideband Wireless Communication Systems

机译:基于脉冲的超宽带无线通信系统的半盲信道估计

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摘要

This paper proposes an H{sub}∞ based semiblind channel estimation algorithm for pulse-based ultra-wideband (UWB) wireless communication systems. In the proposed scheme, sparsely inserted periodic pilot symbols are exploited to adapt to not only the time-varying channel fading and noise processes but to their changing statistics and potential external disturbances, such as interference. While the existing optimal filtering-based channel estimation schemes, which are optimized mostly for traditional narrowband or wideband systems, require a priori knowledge of the channel and noise statistics, the proposed scheme does not. By further making full use of the channel characteristics unique in UWB systems, the proposed method is thus especially useful for robust operation in the highly frequency-selective UWB indoor channels for which the channel statistics are environment-dependent, and the noise processes do not necessarily satisfy the white Gaussian distribution in the presence of potential narrowband and multiuser interferences. Performance gain of the proposed scheme over the least square method, an existing technique that could also be applied to UWB channels with unknown statistics, and the Wiener filter-based algorithm is also provided.
机译:针对基于脉冲的超宽带(UWB)无线通信系统,提出了一种基于H {sub}∞的半盲信道估计算法。在提出的方案中,利用稀疏插入的周期导频符号不仅适应时变信道衰落和噪声过程,而且适应其变化的统计量和潜在的外部干扰(例如干扰)。尽管主要针对传统的窄带或宽带系统进行了优化的现有基于最佳滤波的信道估计方案需要先验的信道和噪声统计知识,但所提出的方案却不需要。通过进一步充分利用UWB系统中独特的信道特性,所提出的方法因此特别适用于在高频率选择的UWB室内信道中进行稳健操作,对于这些信道而言,信道统计信息取决于环境,并且噪声过程不一定在存在潜在的窄带和多用户干扰的情况下,满足白色高斯分布。相对于最小二乘方法,该方案的性能得到了提高;现有技术也可以应用于统计信息未知的UWB信道;还提供了基于Wiener滤波器的算法。

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