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Adaptive pre- and post-compensation of nonlinear distortions for high-level data Modulations

机译:用于高级数据调制的非线性失真的自适应预补偿和后补偿

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摘要

In this letter, we show how different signal processing techniques can be combined to optimize the performance of a typical wideband nonlinear satellite link with spectrally efficient high-level modulation techniques. In particular, we follow two concurrent approaches: on one side, we pursue signal optimization in the form of special amplitude and phase shift keying (APSK) constellations to reduce the effect of nonlinear distortions, while on the other, we analyze the feasibility of adaptive data predistortion (DP) at the transmitter and adaptive nonlinear equalization (NLE) at the receiver. We demonstrate that the use of such optimized constellations relieves the complexity of the nonlinearity compensation techniques, and we also show that by clever adoption of these techniques the sensitivity to nonlinear distortion of both uncoded and turbo coded quadrature amplitude modulation and APSK constellations is greatly reduced.
机译:在这封信中,我们展示了如何使用频谱有效的高电平调制技术将不同的信号处理技术结合起来,以优化典型的宽带非线性卫星链路的性能。特别是,我们遵循两种并发方法:一方面,我们以特殊幅度和相移键控(APSK)星座的形式进行信号优化,以减少非线性失真的影响,而另一方面,我们分析自适应方法的可行性。发射机的数据预失真(DP)和接收机的自适应非线性均衡(NLE)。我们证明了使用这种优化的星座图可以减轻非线性补偿技术的复杂性,并且我们还表明,通过巧妙地采用这些技术,可以极大地降低未编码和涡轮编码正交幅度调制和APSK星座图对非线性失真的敏感性。

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