通过链路两端的自适应信号处理优化高阶调制高速卫星通信

L. Giugno, V. Lottici, M. Luise
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引用次数: 3

摘要

交互式多媒体宽带卫星业务(特别是在数字电视领域)将要求在未来的卫星传输标准中采用(编码的)频谱高效的高级调制技术。众所周知,这种调制受到板载(非线性)大功率放大器引起的非线性失真的影响,因此需要在这方面采取对策。本文的目的是研究在发送端采用自适应数据预失真(DP)和在接收端采用自适应非线性均衡(NLE)的适当混合,以最大限度地抵消非线性失真的可能性。我们首先证明了(未编码的)16-QAM和64-QAM星座对非线性失真的敏感性通过巧妙地使用这两种技术大大降低了。我们还研究了这些技术在使用最近引入的优化的16-APK星座及其扩展的64点版本时所带来的性能改进。最后,我们重新评估了优化后的链路性能,假设涡轮编码的16-QAM和16-APK星座具有迭代的SISO(软输入软输出)解码。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimizing high-speed satellite communication with high-order modulation via adaptive signal processing at both ends of the link
Interactive multimedia wideband satellite services (especially in the field of digital TV) will require the adoption of (coded) spectrally-efficient high-level modulation techniques in future satellite transmission standards. It is known that such modulations suffer from nonlinear distortion caused by the on board (nonlinear) high-power amplifier, so that countermeasures are to be adopted in this respect. The aim of this paper is to investigate the possibility to adopt a suited mixture of adaptive data predistortion (DP) at the transmitter and adaptive nonlinear equalization (NLE) at the receiver to counteract nonlinear distortion at best. We show first that the sensitivity to nonlinear distortion of (uncoded) 16-QAM and 64-QAM constellations is greatly reduced by clever use of both techniques. We also investigate the performance improvement brought forth by such techniques when using a recently introduced optimized 16-APK constellation, as well as its extended 64-point version. We finally re-evaluate the optimized link performance assuming turbo-coded 16-QAM and 16-APK constellations with iterative SISO (soft input soft output) decoding.
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