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Analysis and performance of bidirectional decoding of convolutional codes over fading channels

机译:衰落信道上卷积码双向解码的分析与性能

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摘要

The performance of suboptimal convolutional decoding over fading channels is explored. The suboptimal decoding algorithm used is the bidirectional algorithm. By estimating a "decoder weight spectrum" for the decoder, an "equivalent free distance" may be observed. Furthermore, by using this "decoder weight spectrum", useful estimations of the error probabilities are obtained and compared to computer-simulation results in the case of very slow and very fast fading. The resultant curves are shown to be very tightly related. Computer-simulation results are also shown for various signal-to-noise ratios, normalized Doppler spreads, and frame length on three typical fading channels: the Rayleigh fading channel with exponential and Bessel autocorrelation functions and the Rician fading channel with exponential autocorrelation function. We show that considerable gains (up to 4 dB) can be obtained with respect to a similar-complexity Viterbi decoder at a frame error probability P/sub e/=10/sup -3/ and a slightly smaller gain (up to 1.8 dB) at a bit error probability P/sub b/=10/sup -5/.
机译:探索了衰落信道上次优卷积解码的性能。所使用的次优解码算法是双向算法。通过为解码器估计“解码器权重频谱”,可以观察到“等效自由距离”。此外,通过使用此“解码器权重频谱”,可以获得错误概率的有用估计值,并将其与非常慢和非常快的衰落情况下的计算机模拟结果进行比较。所得曲线显示出非常紧密的相关性。还显示了三种典型衰落信道上具有各种信噪比,归一化多普勒扩展和帧长的计算机仿真结果:具有指数和贝塞尔自相关函数的瑞利衰落信道以及具有指数自相关函数的Rician衰落信道。我们表明,相对复杂度类似的维特比解码器,在帧错误概率P / sub e / = 10 / sup -3 /时可获得相当大的增益(最高4 dB),而增益稍小(最高1.8 dB) )的误码概率为P / sub b / = 10 / sup -5 /。

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