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首页> 外文期刊>IEEE Transactions on Communications >Iterative demodulation, demapping, and decoding of coded non-square QAM
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Iterative demodulation, demapping, and decoding of coded non-square QAM

机译:编码非正方形QAM的迭代解调,解映射和解码

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摘要

It is shown that a non-square (NS) 2/sup 2n+1/-ary quadrature amplitude modulation (QAM) can be decomposed into a single parity-check (SPC) block encoder and a memoryless modulator in such a way that the inherent block encoder has a recursive nature. When concatenated with a forward-error-correcting (FEC) code, iterative demodulation, demapping, and decoding of the FEC code and the inherent SPC code of NS-2/sup 2n+1/-QAM is then possible. Simulation results show that coded NS-8QAM performs nearly 2 dB better than standard 8QAM and star-8QAM, and nearly 1 dB better than 8-ary phase-shift keying when the FEC code is a rate-1/2, 16-state convolutional code, while coded NS-32QAM performs 0.75 dB better than standard 32QAM.
机译:结果表明,可以将非平方(NS)2 / sup 2n + 1 /二进制正交幅度调制(QAM)分解为单个奇偶校验(SPC)块编码器和无记忆调制器,固有的块编码器具有递归性质。当与前向纠错(FEC)码连接时,FEC码和NS-2 / sup 2n + 1 / -QAM的固有SPC码的迭代解调,解映射和解码成为可能。仿真结果表明,当FEC码为1/2速率,16态卷积码时,编码的NS-8QAM比标准8QAM和star-8QAM好近2 dB,比8进制相移键控好近1 dB。编码的NS-32QAM比标准32QAM的性能好0.75 dB。

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