论文标题
迈向混合RF/光学月球通信系统(Lunarcomm)
Towards a Hybrid RF/Optical Lunar Communication System (LunarComm)
论文作者
论文摘要
近年来,人类重返月球的前景引起了很多关注。计划在未来十年内完成数十个农历任务,这将需要开发具有高数据速率和最小延迟的可持续通信基础设施。到目前为止,空间通信系统仅依赖射频(RF)链接,但是激光通信的最新发展表明,自由空间光学(FSO)链接可以达到更高的数据速率。在考虑了RF和FSO链接的各自的好处和缺点后,我们为将这两种技术集成到混合RF/FSO Lunar通信体系结构中,为在低地球轨道(Leo)恒星中利用小卫星。我们在分析图形系统工具套件(STK)软件中为该技术提供了一项案例研究。结果以链访问持续时间,传播延迟,传输损失,信噪比(SNR)和位错误率(BER)(BER)表示。该架构显示出彻底改变外星交流的潜力,并为太空中的雄心勃勃的未来任务铺平了道路。
The prospect of mankind returning to the Moon has garnered a great amount of attention in recent years. Dozens of lunar missions are planned for the coming decade which will require the development of a sustainable communication infrastructure with high data rates and minimal latency. Space communication systems thus far have relied on Radio Frequency (RF) links alone, but recent developments in laser communications have demonstrated that Free Space Optical (FSO) links can achieve much higher data rates. Upon considering the respective benefits and drawbacks of RF and FSO links, we make a case for the integration of these two technologies into a hybrid RF/FSO lunar communications architecture which leverages small satellites in a Low Earth Orbit (LEO) constellation. We include a case study for this technology designed in Analytical Graphics Systems Tool Kit (STK) software. Results are presented in terms of chain access duration, propagation delay, transmission loss, Signal-to-Noise Ratio (SNR), and Bit Error Rate (BER). This architecture shows potential to revolutionize extraterrestrial communications and pave the way for highly ambitious future missions in space.