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Advanced signal processing techniques for fixed and mobile satellite communications

机译:固定和移动卫星通信的高级信号处理技术

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Enabling ultra fast systems has been widely investigated during recent decades. Although polarization has been deployed from the beginning in satellite communications, nowadays it is being exploited to increase the throughput of satellite links. More precisely, the application of diversity techniques to the polarization domain may provide reliable, robust, and fast satellite communications. Better and more flexible spectrum use is also possible if transmission and reception can take place simultaneously in close or even overlapping frequency bands. In this paper we investigate novel signal processing techniques to increase the throughput of satellite communications in fixed and mobile scenarios. First, we investigate four-dimensional (4D) constellations for the forward link. Second, we focus on the mobile scenario and introduce an adaptive algorithm which selects the optimal tuple of modulation order, coding rate, and MIMO scheme that maximizes the throughput constraint to a maximum packet error rate. Finally, we describe the operation of radio transceivers which cancel actively the self-interference posed by the transmit signal when operating in full-duplex mode.
机译:在最近的几十年中,启用超快速系统已得到广泛研究。尽管极化已经从一开始就部署在卫星通信中,但如今已被利用来增加卫星链路的吞吐量。更精确地,将分集技术应用于极化域可以提供可靠,健壮和快速的卫星通信。如果发射和接收可以同时在接近或什至重叠的频带中进行,则可以更好,更灵活地使用频谱。在本文中,我们研究了新颖的信号处理技术,以增加固定和移动方案中卫星通信的吞吐量。首先,我们研究前向链路的四维(4D)星座。其次,我们关注移动场景,并介绍一种自适应算法,该算法选择调制阶数,编码率和MIMO方案的最佳元组,该方案将吞吐量约束最大化到最大包错误率。最后,我们描述了无线电收发器的工作原理,这些收发器在全双工模式下工作时会主动消除发射信号造成的自干扰。

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