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Turbo-coded APSK modulations design for satellite broadband communications

机译:用于卫星宽带通信的Turbo编码APSK调制设计

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This paper investigates the design of power and spectrally efficient coded modulations based on amplitude phase shift keying (APSK) modulation with application to satellite broadband communications. APSK represents an attractive modulation format for digital transmission over nonlinear satellite channels due to its power and spectral efficiency combined with its inherent robustness against nonlinear distortion. For these reasons APSK has been very recently introduced in the new standard for satellite Digital Video Broadcasting named DVB-S2. Assuming an ideal rectangular transmission pulse, for which no nonlinear inter-symbol interference is present and perfect pre-compensation of the nonlinearity, we optimize the APSK constellation. In addition to the minimum distance criterion, we introduce a new optimization based on the mutual information; this new method generates an optimum constellation for each spectral efficiency. To achieve power efficiency jointly with low bit error rate (BER) floor we adopt a powerful binary serially concatenated turbo-code coupled with optimal APSK modulations through bit-interleaved coded modulation. We derive tight approximations on the maximum-likelihood decoding error probability, and results are compared with computer simulations. The proposed coded modulation scheme is shown to provide a considerable performance advantage compared to current standards for satellite multimedia and broadcasting systems.
机译:本文研究了基于幅度相移键控(APSK)调制的功率和频谱有效编码调制的设计,并将其应用于卫星宽带通信。由于APSK的功率和频谱效率以及其固有的抵抗非线性失真的鲁棒性,它代表了一种通过非线性卫星信道进行数字传输的有吸引力的调制格式。由于这些原因,APSK最近被引入了名为DVB-S2的卫星数字视频广播新标准中。假设理想的矩形传输脉冲不存在非线性符号间干扰,并且对非线性进行了完美的预补偿,我们优化了APSK星座图。除了最小距离准则之外,我们还基于互信息引入了一种新的优化方法。这种新方法为每个频谱效率生成了一个最佳星座图。为了在低误码率(BER)底限的情况下共同实现功率效率,我们采用了功能强大的二进制串行级联Turbo码,并通过位交错编码调制结合了最佳APSK调制。我们得出最大似然解码错误概率的近似值,并将结果与​​计算机仿真进行比较。与卫星多媒体和广播系统的当前标准相比,所提出的编码调制方案显示出可观的性能优势。

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