下一代个人卫星通信鲁棒调制需求研究

Julius Ssimbwa, Byungju Lim, Ju-Hyung Lee, Young-Chai Ko
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引用次数: 1

摘要

近年来,无线网络一代技术的不断进步唤醒了将卫星纳入个人通信的运动。利用卫星系统提供广泛覆盖、统一服务、宽带宽等的能力,卫星系统将有望与当前最先进的地面网络基础设施共存。在此,我们对用于个人卫星通信的代表性数字调制技术进行了比较研究。我们讨论了不同调制技术的优点和局限性,例如相移键控、连续相位调制、幅度相移键控和正交幅度调制。我们还在高功率放大器非线性和多普勒效应存在的情况下,根据频谱效率、功率效率、调制错误率、误差矢量幅度和峰均功率比进行评估。还以表格、插图和曲线的形式进行了比较。根据上述指标所做的比较,我们得出结论,连续相位调制是个人卫星通信的最佳候选调制方案,因为它通过在功率效率、带宽效率和抗误差之间的权衡而优于其他方案。我们进一步提出开放的问题,将加强个人卫星通信方面的可靠性,吞吐量和延迟,除了功率和频谱效率,如果结合适当的调制方案。
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A Survey on Robust Modulation Requirements for the Next Generation Personal Satellite Communications
The unrelenting technological advancement in the generation of wireless networks in recent years has awakened the motion concerning the inclusion of satellites in personal communications. Leveraging their ability to provide wide coverage, uniform services, wide bandwidth, and so forth, Satellite systems will be expected to co-exist with the current state-of-the-art infrastructure of terrestrial networks. Herein, we present a comparative study on the representative digital modulation techniques for use in personal satellite communications. We discuss the advantages and limitations of different modulation techniques, such as phase shift keying, continuous phase modulation, amplitude phase shift keying, and quadrature amplitude modulation. We also perform evaluations based on spectral efficiency, power efficiency, modulation error ratio, error vector magnitude, and peak-to-average power ratio in the presence of high power amplifier nonlinearities and Doppler effects. Comparisons in the form of tables, illustrations, and curves are also presented. In correspondence to the comparisons made basing on the aforementioned metrics, we conclude that continuous phase modulation is the best candidate modulation scheme for personal satellite communications since it outperforms other schemes by compromising the trade-off between power efficiency, bandwidth efficiency, and immunity to errors. We further present open issues that would reinforce personal satellite communications in terms of reliability, throughput and latency, other than power and spectral efficiency, if combined with appropriate modulation schemes.
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