Structure of Spread Spectrum Telemetry Radio Link for LEO Small Satellite

D. Karavaev, E. Glushankov
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Abstract

The paper considers the design of telemetry radio link for low Earth orbit (LEO) satellites, particularly based on CubeSat format. A significant limitation of such spacecrafts are the available dimensions for antennas and the transmitting power, which leads to low energy level at the ground receiving point of transmitted signal. The article presents the physical level structure for data frame based on direct sequence spread spectrum technique, which allows for additional signal gain to achieve the required level of link performance. Using such principle also make possible to implement adaptive data rate control depending on dynamics in signal-to-noise ratio when the distance from the satellite to the ground point changes. For proposed data frame structure, an analysis of received information size during a communication session was carried out, which is parameterized on the maximum observable elevation angle of the satellite. The issue of datalink layer interaction between devices is also considered.
用于低地轨道小型卫星的扩频遥测无线电链路结构
本文考虑了低地球轨道(LEO)卫星遥测无线电链路的设计,特别是基于立方体卫星格式的设计。这类航天器的一个重要限制是天线的可用尺寸和发射功率,这导致地面接收点的发射信号能量水平较低。文章介绍了基于直接序列扩频技术的数据帧物理层结构,它允许额外的信号增益,以达到所需的链路性能水平。利用这一原理,还可以在卫星到地面点的距离发生变化时,根据信噪比的动态变化实施自适应数据速率控制。对于拟议的数据帧结构,对通信会话期间接收信息的大小进行了分析,其参数取决于卫星的最大可观测仰角。此外,还考虑了设备之间的数据链路层交互问题。
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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