Orbital Angular Momentum Transmission Based on Satellite Formation Relay in Space Communications

Yufei Zhao, Gaohua Ju, Zhaojie Yang, Yao Ge, Yilong Lu, Y. Guan
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Abstract

Orbital Angular Momentum (OAM) transmission is expected to be implemented for large capacity communication. However, the conical beam and the coaxial all-phase reception brings painful difficulties. As a promising solution to overcome this difficulty, an OAM multiplexing transmission method is proposed for use in a satellite formation relay scheme in this paper. Specifically, the channel model of the OAM wave from the base station to the relay satellites and then forwarded by relays to the central receiver is established and analyzed. In order to explore the feasibility of the scheme and its influencing factors, we analyze the influence of orbit distribution and random jitter on channel capacity based on the orbit parameters of actual satellite formations. The simulation results show that the uniform and evenly spaced satellite formation has the highest multiplexed channel capacity and anti-interference performance.
空间通信中基于卫星编队中继的轨道角动量传输
轨道角动量传输有望实现大容量通信。然而,锥形波束和同轴全相位接收带来了痛苦的困难。为了克服这一困难,本文提出了一种用于卫星编队中继方案的OAM复用传输方法。具体地说,建立并分析了从基站到中继卫星再经中继转发到中央接收机的OAM波的信道模型。为了探讨该方案的可行性及其影响因素,根据实际卫星编队的轨道参数,分析了轨道分布和随机抖动对信道容量的影响。仿真结果表明,均匀均匀间隔的卫星编队具有最高的复用信道容量和抗干扰性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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