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Capacity maximization based power loading analysis for digital channelized satcom systems

机译:基于容量最大化的数字信道化卫星通信系统的功率负载分析

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摘要

For digital channelized frequency division multiple access based satellite communication (SATCOM) systems, it is a challenging but critical issue to improve the transponder power and spectrum efficiency simultaneously under limited and non-linear high-power amplifier conditions. In this paper, different from the traditional link supportability designs aiming at minimizing the total transponder output power, a maximal sum Shannon capacity optimization objective is firstly raised subject to link supportability constraints. Furthermore, an efficient multilevel optimization (MO) algorithm is proposed to solve the considered optimization problem in the case of single link for each terminal. Moreover, in the case of multiple links for one terminal, an improved MO algorithm involving Golden section and discrete gradient searching procedures is proposed to optimize power allocation over all links. Finally, several numerical results are provided to demonstrate the effectiveness of our proposals. Comparison results show that, by the MO algorithm, not only all links??? supportability can be guaranteed but also a larger sum capacity can be achieved with lower complexity.
机译:对于基于数字信道化频分多址的卫星通信(SATCOM)系统,在有限和非线性大功率放大器条件下同时提高转发器功率和频谱效率是一个具有挑战性但至关重要的问题。在本文中,与传统的链路支持能力设计(旨在最大程度地减少转发器的总输出功率)不同,首先提出了最大总和香农容量优化目标,该目标受链路支持能力约束的影响。此外,提出了一种有效的多级优化(MO)算法,以解决每个终端只有一条链路的情况下所考虑的优化问题。此外,在一个终端有多个链路的情况下,提出了一种改进的MO算法,该算法涉及黄金分割和离散梯度搜索程序,以优化所有链路上的功率分配。最后,提供了一些数值结果来证明我们建议的有效性。比较结果表明,通过MO算法,不仅所有链接都可以???既可以保证可支持性,又可以以较低的复杂度实现更大的总容量。

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