智能反射表面辅助的火星探测

Hongjun Zhang, Zhendong Yin, Yanlong Zhao, Zhilu Wu
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引用次数: 0

摘要

在深空通信中,传统的点对点通信技术已经达到瓶颈,不再满足深空探测任务的要求,深空通信面临的特殊困难以及相应的关键技术急需一种新的通信模式来解决和突破,因此在火星探测任务中采用了中继通信模式。火星探测任务的通信中继系统主要由火星轨道中继卫星提供,具有相对较短的间歇中继通信,由于卫星速度快,加之火星表面地形结构等环境因素复杂,使得火星中继卫星与火星表面探测器之间的通信链路难以快速建立。基于上述问题,本文将智能反射面作为中继卫星与火星表面探测器之间的中继应用于火星探测任务中,智能反射面可以通过配置各单元的相移来改变信号方向,形成与探测器精确对准的波束,从而达到信号波束绕过障碍物和实时跟踪探测器的目的,提高通信性能。使火星探测通信网络更加完善和高效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mars Exploration Aided by Intelligent Reflecting Surface
In deep space communication, the traditional point-to-point communication technology has reached a bottleneck and no longer meets the requirements of deep space exploration missions, and the special difficulties faced by deep space communication and the corresponding key technologies are in urgent need of a new communication mode to solve and breakthrough, so the relay mode of communication is used in the exploration mission for Mars. The communication relay system of Mars exploration mission is mainly provided by Mars orbiting relay satellite with relatively short intermittent relay communication, which makes it very difficult to quickly establish the communication link between Mars relay satellite and Mars surface probe due to the fast satellite speed and complex environmental factors such as Mars surface terrain structure. Based on the above problems, this paper applies the intelligent reflective surface as a relay between the relay satellite and the Mars surface probe to the Mars exploration mission, and the intelligent reflecting surface can change the signal direction by configuring the phase shift of each unit to form a beam precisely aligned with the probe, which can achieve the purpose of bypassing obstacles and real-time tracking of the probe by the signal beam, improve the communication performance, and make the Mars exploration communication network more perfect and efficient.
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