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首页> 外文期刊>Wireless personal communications: An Internaional Journal >Receiver Design for Single-Carrier Block Transmission Over Doubly Selective Channels
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Receiver Design for Single-Carrier Block Transmission Over Doubly Selective Channels

机译:双载波选择性传输单载波块的接收机设计

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摘要

Single-carrier block transmission is an alternative scheme to orthogonal frequency-division multiplexing (OFDM) for wireless broadband communications. In this paper, a receiver is designed for single-carrier block transmission with cyclic prefix for mobile broad-band communications. As the wireless transmission is over doubly selective channels, a basis expansion model is used to capture both the time- and frequency-selectivity of the channel and is parameterized for the receiver design. The receiver estimates the channel model coefficients in the time domain and uses these coefficients for equalization in the frequency domain. The channel estimation is assisted by time-domain pilot insertion. The structure of the frequency-domain channel matrix is exploited and a linear minimum mean-square error equalizer is used for the equalization. When the basis expansion model well matches the physical channel, simulation results show superior receiving performance of the proposed system compared with the OFDM system with a similar complexity.
机译:单载波块传输是用于无线宽带通信的正交频分复用(OFDM)的替代方案。本文针对移动宽带通信设计了一种带有循环前缀的单载波块传输接收机。由于无线传输是通过双选信道进行的,因此基础扩展模型用于捕获信道的时间选择性和频率选择性,并为接收器设计进行参数化。接收器估计时域中的信道模型系数,并将这些系数用于频域中的均衡。时域导频插入有助于信道估计。利用频域信道矩阵的结构,并使用线性最小均方误差均衡器进行均衡。当基本扩展模型很好地匹配物理信道时,仿真结果表明,与具有相似复杂度的OFDM系统相比,该系统具有更好的接收性能。

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