OTFS-Based Communication and Navigation Integrated Signal Transmission for LEO Satellites

Yue Li, Guomei Zhang, Jiayue Yu, Guobing Li, Yiheng Li
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Abstract

To get higher utilization efficiency of spectrum and orbits in low earth orbit (LEO) satellite system, satellite communication and navigation integration has become a search hotspot recently. Because orthogonal time frequency space (OTFS) modulation can reduce the effect of time-frequency doubly selective channels between the LEO satellite and earth, an OTFS-based communication and navigation integrated scheme is studied in this paper. First, a hybrid modulation constellation by superimposing quadrature amplitude modulation (QAM) and dual-code alternating binary offset carrier (AltBOC) modulation is proposed to realize signal integration of two systems. Second, a serial interference cancellation (SIC) detector is designed to separate two signals. In addition, a direct path time delay estimator based on pseudo-range code measurement is designed. What's more, the BER performance of the integrated signal is derived. Simulation results demonstrates that the proposed scheme has the lower BER and the higher localization accuracy than the baseline method under a LEO scenario with doubly selective channel.
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基于otfs的低轨道卫星通信导航综合信号传输
为了提高近地轨道卫星系统的频谱和轨道利用效率,卫星通信导航一体化已成为近年来研究的热点。由于正交时频空间(OTFS)调制可以降低低轨道卫星与地球间时频双选择信道的影响,本文研究了一种基于OTFS的通信导航组合方案。首先,提出了正交调幅(QAM)和双码交替二进制偏移载波(AltBOC)调制叠加的混合调制星座,实现了两系统的信号集成;其次,设计了串行干扰消除(SIC)检测器来分离两个信号。此外,设计了一种基于伪距离码测量的直接路径时延估计器。并推导了集成信号的误码率性能。仿真结果表明,在具有双选择信道的低轨道情况下,该方案比基线方法具有更低的误码率和更高的定位精度。
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