多径环境下中继器增强毫米波系统

Junyang Shen, Dengkui Zhu, Boyu Li, Ping Liang
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引用次数: 4

摘要

毫米波(mmWave)被认为是未来第五代无线系统的一项有前途的技术,因为目前60GHz载波频率周围的多ghz频谱未得到充分利用,特别是最近低成本亚太赫兹半导体电路的进展。由于毫米波在传输过程中衰减很大,中继器是毫米波系统实现无缝覆盖的关键技术。本文考虑了AFR增强型毫米波系统的以下实际设计问题。首先,推导了在正交频分复用系统中多个AFR跳间的多余延迟分布,该分布有助于设计周期前缀长度以避免码间干扰。此外,我们证明了AFR降低了信道相干带宽,然后提出了一种基于有限脉冲响应滤波器的信道均衡器的新颖AFR设计来解决这个问题。仿真结果表明,该方法能够显著提高信道相干带宽,有效降低误码率。
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Repeater-enhanced millimeter-wave systems in multi-path environments
The millimeter Wave (mmWave) is considered as a promising technology of the future fifth-generation wireless systems due to the currently underutilized multi-GHz spectrum surrounding the 60GHz carrier frequency, particularly with the recent advances in low cost sub-terahertz semiconductor circuitry. Since the mmWave suffers high attenuation during transmission, the repeater is a key technique to enable mmWave systems with seamless coverage. This paper considers the following practical design issues of Amplified-and-Forward Repeater (AFR) enhanced mmWave systems. First, the distribution of excess delay through multiple AFR hops is derived, which helps the design of cyclic-prefix length to avoid inter-symbol interference in orthogonal frequency division multiplexing systems. In addition, we show that the AFR decreases the channel coherence bandwidth and then propose a novel AFR design with a finite impulse response filter based channel equalizer to address this problem. Simulation results show that the proposed method is able to significantly increase channel coherence bandwidth and effectively reduce bit error rate.
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