用于紧急情况下卫星通信的稳健调制解调器设计

E. D. Re, A. Fanfani, S. Morosi, L. Ronga
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引用次数: 2

摘要

为了提高卫星链路的性能,人们对先进的调制技术进行了深入的研究。另一方面,在许多关键情况下,如卫星进入轨道时的控制操作、卫星寿命结束时的处置或深空任务等,都在追求低计算开销的可靠传输技术。在这些特定的关键任务场景中,快速和正确的数据接收比高信道容量更重要。一个未知和快速可变的信道状态,具有大的多普勒频移和低可用功率,需要非相干和轻计算调制技术。本文介绍了一种完全符合这些要求的基于双差分PSK (DD-PSK)调制的接收机的全数字实现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Robust modem design for satellite communications in emergency scenarios
Aiming at increasing the satellite link performance, advanced modulation techniques have been thoroughly studied. On the other hand, reliable transmission techniques with a low computational overhead are pursued for many applications in critical scenarios such as: control operation of a satellite while it is placed into its orbit, the disposal of a satellite at the end of its life or the deep-space missions. In these specific mission critical scenarios, fast and correct data reception is even more important than high channel capacity. An unknown and fast variable channel state condition, with large Doppler shifts and low available power require incoherent and light computationally modulation techniques. This paper introduces a whole digital implementation of a receiver, based on the Double Differential PSK (DD-PSK) modulation, that is perfectly compliant with these requirements.
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