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首页> 外文期刊>Eurasip Journal on Wireless Communications and Networking >Transmit Delay Structure Design for Blind Channel Estimation over Multipath Channels
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Transmit Delay Structure Design for Blind Channel Estimation over Multipath Channels

机译:多径信道上盲信道估计的传输时延结构设计

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Wireless communications often exploit guard intervals between data blocks to reduce interblock interference in frequency-selective fading channels. Here we propose a dual-branch transmission scheme that utilizes guard intervals for blind channel estimation and equalization. Unlike existing transmit diversity schemes, in which different antennas transmit delayed, zero-padded, or time-reversed versions of the same signal, in the proposed transmission scheme, each antenna transmits an independent data stream. It is shown that for systems with two transmit antennas and one receive antenna, as in the case of one transmit antenna and two receive antennas, blind channel estimation and equalization can be carried out based only on the second-order statistics of symbol-rate sampled channel output. The proposed approach involves no preequalization and has no limitations on channel-zero locations. Moreover, extension of the proposed scheme to systems with multiple receive antennas and/or more than two transmit antennas is discussed. It is also shown that in combination with the threaded layered space-time (TST) architecture and turbo coding, significant improvement can be achieved in the overall system performance.
机译:无线通信通常利用数据块之间的保护间隔来减少频率选择衰落信道中的块间干扰。在这里,我们提出了一种双分支传输方案,该方案利用保护间隔进行盲信道估计和均衡。与现有的发送分集方案不同,在现有的发送分集方案中,不同的天线发送相同信号的延迟,零填充或时间反转版本,在建议的传输方案中,每个天线都发送独立的数据流。结果表明,对于具有两个发射天线和一个接收天线的系统,就像在一个发射天线和两个接收天线的情况下一样,盲信道估计和均衡只能基于采样的符号率的二阶统计量来进行。通道输出。所提出的方法不涉及预均衡,并且对信道零位置没有限制。此外,讨论了将所提出的方案扩展到具有多个接收天线和/或多于两个发射天线的系统。还显示出,与线程分层时空(TST)架构和Turbo编码相结合,可以在整体系统性能上实现重大改进。

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