基于太赫兹轨道角动量(OAM)的星间通信信道建模与评价

IF 4.6 1区 计算机科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Weijun Gao;Zhirong Yang;Chong Han
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引用次数: 0

摘要

提供数十千兆赫的连续带宽,太赫兹(THz)卫星间链路(ISLs)为高速空间通信带来了巨大的希望。为了解决太赫兹ISLs空间自由度不足的问题,进一步提高其容量,引入轨道角动量(OAM),实现了模态域正交信号传输。然而,由于地球的扁率引起的卫星扰动,称为j{2}效应,导致波束偏差,从而引起不希望的OAM模式跃迁,并导致信道间干扰(ICI)。本文提出了一种考虑$ j_bb_0 $摄动的基于oam的太赫兹ISLs的确定性信道模型。具体来说,导出了卫星对相对运动方程(RME)的解析解,以精确表征$J_{2}$摄动引起的波束偏差。然后,推导了偏差太赫兹波束的模态分解,在此基础上对预期信号和干扰信号进行了建模。通过将$J_{2}$扰动特性引入到OAM模式分解中,可以确定基于OAM的太赫兹ISL的干扰功率和容量。对于基于oam的太赫兹ISLs,仿真结果表明:1)容量随偏差的增大先增大后减小;2)在适当的偏差(~1.5 km)下,实现OAM可以提供比不实现OAM的太赫兹isl两倍或更高的峰值容量;3)偏差较大(> ~ 3km)时,接收孔径越大,接收容量越小;4)接收机孔径半径以0.5 m为宜,在600 km处180 min后对卫星进行双oam模式复用,以限制偏差,保证高数据速率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Channel Modeling and Evaluation on Terahertz Orbital Angular Momentum (OAM)-Based Intersatellite Communications
Providing continuous bandwidth of several tens of gigahertz, terahertz (THz) intersatellite links (ISLs) hold great promise for high-speed space communications. To address the lack of spatial degree of freedom (DoF) to further enhance the capacity of THz ISLs, orbital angular momentum (OAM) is introduced, which realizes orthogonal signal transmission in the mode domain. However, the satellite perturbation caused by the oblateness of the Earth, called the $J_{2}$ effect, leads to beam deviation, which induces undesired OAM mode transition and results in interchannel interference (ICI). In this article, a deterministic channel model for OAM-based THz ISLs considering $J_{2}$ perturbation is proposed. Specifically, an analytical solution of the relative motion equation (RME) of satellite pairs is derived to precisely characterize the beam deviation induced by $J_{2}$ perturbation. Then, the OAM mode decomposition is derived for deviated THz OAM beams, based on which the intended signals and interference signals are modeled. By incorporating the $J_{2}$ perturbation characterization into the OAM mode decomposition, the interference power and capacity of OAM-based THz ISL can be determined. For OAM-based THz ISLs, simulation results indicate that: 1) the capacity first increases and then decreases with growing deviation; 2) with proper deviation (~1.5 km), the implementation of OAM can provide double or higher peak capacity compared to THz ISLs without OAM; 3) with significant deviation (>3 km), a larger receiver aperture decreases the capacity; and 4) the proper radius of the receiver aperture is 0.5 m and satellite pairs should calibrate after 180 min at 600 km operating in dual-OAM mode multiplexing to restrict deviation and ensure high data rates.
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来源期刊
CiteScore
10.40
自引率
28.10%
发文量
968
审稿时长
4.7 months
期刊介绍: IEEE Transactions on Antennas and Propagation includes theoretical and experimental advances in antennas, including design and development, and in the propagation of electromagnetic waves, including scattering, diffraction, and interaction with continuous media; and applications pertaining to antennas and propagation, such as remote sensing, applied optics, and millimeter and submillimeter wave techniques
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