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Transmit diversity and linear and decision-feedback equalizations for frequency-selective fading channels

机译:频率选择衰落信道的传输分集以及线性和判决反馈均衡

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摘要

Rapid growth and increasing demands for near-ubiquitous high-quality high-data-rate services present the most challenges for wireless system design. As an effective method to provide such services, space-time (ST) coding is gaining more and more attention. The paper extends ST coding, originally designed for known frequency-nonselective fading channels, to unknown frequency-selective channels. An ST transmit diversity wireless time-division multiple-access system, that is equipped with multiple antennas at both transmit and receive sides, is considered. In this system, a novel scheme is presented to suppress intersymbol interference and to demodulate coherently the information symbols with estimated channel state information. The proposed algorithm is powerful and computationally efficient. In addition to the discussion of system identifiability, both theoretical analysis and numerical simulation are presented to illustrate the performance of the proposed estimator and receiver in multipath fading channels.
机译:快速增长和对近乎无处不在的高质量高数据速率服务的需求提出了无线系统设计面临的最大挑战。作为提供这种服务的有效方法,空时(ST)编码越来越受到关注。本文将最初为已知的非频率选择性衰落信道设计的ST编码扩展到未知的频率选择性信道。考虑了在发射侧和接收侧均配备有多个天线的ST发射分集无线时分多址系统。在该系统中,提出了一种新颖的方案来抑制符号间干扰并用估计的信道状态信息对信息符号进行相干解调。所提出的算法功能强大且计算效率高。除了讨论系统可识别性之外,还提供了理论分析和数值模拟,以说明所提出的估计器和接收器在多径衰落信道中的性能。

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