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An efficient carrier recovery scheme for high-bit-rate W-band satellite communication systems

机译:高比特率W波段卫星通信系统的有效载波恢复方案

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Recent efforts in satellite communication research considered the exploitation of higher frequency bands as a valuable alternative to conventional spectrum portions. An example of this can be provided by the W-band (70-110 GHz). Recently, a scientific experiment carried on by the Italian Space Agency (ASI), namely the DAVID-DCE experiment, was aimed at exploring the technical feasibility of the exploitation of the W-band for broadband networking applications. Some preliminary results of DAVID research activities pointed out that phase noise and high Doppler-shift can severely compromise the efficiency of the modulation system, particularly for what concerns the aspects related to the carrier recovery. This problem becomes very critical when the use of spectrally efficient M-ary modulations is considered in order to profitably exploit the large amount of bandwidth available in the W-band. In this work, a novel carrier recovery algorithm has been proposed for a 16-QAM modulation and tested, considering the presence of phase noise and other kinds of non-ideal behaviors of the communication devices typical of W-band satellite transmission. Simulation results demonstrated the effectiveness the proposed solution for carrier recovery and pointed out the achievable spectral efficiency of the transmission system, considering some constraints about transmitted power, data BER and receiver bandwidth.
机译:卫星通信研究的最新努力认为,开发更高的频段是传统频谱部分的宝贵替代方案。 W波段(70-110 GHz)可以提供一个示例。最近,由意大利航天局(ASI)进行的一项科学实验,即DAVID-DCE实验,旨在探索为宽带网络应用开发W波段的技术可行性。 DAVID研究活动的一些初步结果指出,相位噪声和高多普勒频移会严重影响调制系统的效率,尤其是在与载波恢复相关的方面。当考虑使用频谱有效的Mary调制以有利地利用W波段中的大量可用带宽时,此问题变得非常关键。在这项工作中,考虑到相位噪声的存在以及典型的W波段卫星传输的通信设备的其他非理想行为,已经提出了一种新颖的载波恢复算法用于16-QAM调制并进行了测试。仿真结果证明了所提出的载波恢复解决方案的有效性,并指出了传输系统可实现的频谱效率,同时考虑了有关发射功率,数据BER和接收器带宽的一些限制。

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