首页> 外文会议>Conference on Wireless and Mobile Communications Nov 12-15, 2001, Beijing, China >Diversity Technique for DAPSK Signal over the Frequency-selective Fading Channel
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Diversity Technique for DAPSK Signal over the Frequency-selective Fading Channel

机译:选频衰落信道上DAPSK信号的分集技术

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摘要

In this paper, a maximal ratio combining (MRC) and weighted maximal ratio combining (WMRC) diversity receiver are proposed. The MRC receiver makes a decision at each branch based on the minimum distance criterion. The performance of the MRC receiver is analyzed on the frequency-selective Rayleigh and Rician fading channels, in terms of the union bound for bit error probability. In addition, the WMRC receiver, which assigns weighting factors to the decision variable at each branch, based on the optimum decision boundaries, is proposed. The performance of the WMRC is investigated through the computer simulation and compared with those of MRC and equal gain combining (EGC). Prom the results, it is found that the performances of the WMRC and MRC are better than those of EGC on both the frequency-selective Rayleigh and Rician fading channels and performance improvements over the EGC are noticeable when the number of diversity branches is large as long as the root mean square (rms) delay is smaller than or equal to 10% of the symbol period.
机译:本文提出了最大比合并(MRC)和加权最大比合并(WMRC)分集接收机。 MRC接收器根据最小距离标准在每个分支上做出决定。根据误码率的并集界限,在频率选择性瑞利和里斯衰落信道上分析了MRC接收机的性能。此外,提出了一种WMRC接收机,该接收机根据最佳决策边界为每个分支的决策变量分配加权因子。通过计算机仿真研究了WMRC的性能,并与MRC和等增益合并(EGC)进行了比较。结果表明,在频率选择瑞利和里斯衰落信道上,WMRC和MRC的性能均优于EGC,并且当分集分支的数目尽可能长时,在EGC上的性能明显改善。因为均方根(rms)延迟小于或等于符号周期的10%。

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