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首页> 外文期刊>IEE Proceedings. Part I >Equaliser techniques for QAM transmissions over dispersive mobile radio channels
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Equaliser techniques for QAM transmissions over dispersive mobile radio channels

机译:通过分散移动无线信道进行QAM传输的均衡器技术

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摘要

Channel equalisation of 32 Mbit/s data transmitted via 16-level QAM at 1.9 GHz over dispersive fading channels is addressed using computer simulations. The multipath propagation channels used had three independent Rayleigh fading paths. The conventional equaliser systems were found to be unsatisfactory and an alternative system was conceived based on a RAKE-type equaliser controlling an iterative decision feedback equaliser. Although complex, simulations showed this equaliser system to yield an order of magnitude reduction in BER compared to that for a linear equaliser at SNRs in excess of 15 dB. Advantages are presented of using error correction coding in the conventional way and in an iterative manner to aid convergence of the equaliser. Gains of 2 to 3 dB were achieved by iterative decoding but at the expense of considerable increase in complexity. When second order spatial diversity was used the authors achieved improvements of about 5 to 7 dB when both systems were uncoded despite the inherent diversity that can be gained from equalising a wideband channel. By operating at SNRs greater than 25 dB, they were able to simulate transmission at 32 Mbit/s with a BER below 10/sup -3/.
机译:使用计算机仿真解决了通过色散衰落信道通过1.9 GHz的16级QAM传输的32 Mbit / s数据的信道均衡问题。所使用的多径传播信道具有三个独立的瑞利衰落路径。发现传统的均衡器系统不能令人满意,并且基于控制迭代判决反馈均衡器的RAKE型均衡器构想了另一种系统。尽管复杂,但是仿真显示,与线性均衡器相比,SNR超过15 dB时,该均衡器系统的BER降低了一个数量级。呈现了以常规方式并且以迭代方式使用纠错编码来帮助均衡器的收敛的优点。通过迭代解码获得了2至3 dB的增益,但代价是复杂度大大增加。当使用二阶空间分集时,尽管可以通过均衡宽带信道获得固有的分集,但当两个系统都未编码时,作者获得了约5至7 dB的改善。通过以大于25 dB的SNR工作,他们能够以BER低于10 / sup -3 /的速率模拟32 Mbit / s的传输。

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