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CPM Signals for Satellite Navigation in the S and C Bands

机译:S和C波段中用于卫星导航的CPM信号

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摘要

Frequency allocations in the L band suitable for global navigation satellite system (GNSS) services are getting crowded and system providers face an ever tougher job when they try to bring in new signals and services while maintaining radio frequency compatibility. With the successive opening of the S and C bands to GNSS service, the multi-band combined navigation is predicted to become a key technology for future high-precision positioning navigation systems, and a single modulation scheme satisfying the requirements in each band is a promising solution for reducing user terminal complexity. A universal modulation scheme based on the continuous phase modulation (CPM) family suitable for the above bands’ demands is proposed. Moreover, this paper has put forward two specific CPM signals for the S and C bands, respectively. Then the proposed modulation schemes, together with existing candidates, are comprehensively evaluated. Simulation results show that the proposed CPM signals can not only satisfy the constraint condition of compatibility in different bands well and reduce user terminal complexity, but also provide superior performance in terms of tracking accuracy, multi-path mitigation and anti-jamming compared to other candidate modulation schemes.
机译:适用于全球导航卫星系统(GNSS)服务的L频段中的频率分配变得越来越拥挤,当系统提供商尝试引入新信号和服务并同时保持射频兼容性时,系统提供商将面临更加艰巨的工作。随着S和C频段向GNSS服务的连续开放,预计多频段组合导航将成为未来高精度定位导航系统的关键技术,并且满足每个频段要求的单个调制方案是有希望的降低用户终端复杂性的解决方案。提出了一种基于连续相位调制(CPM)系列的通用调制方案,适合上述频段的需求。此外,本文分别针对S和C频段提出了两种特定的CPM信号。然后,对提出的调制方案以及现有的候选方案进行综合评估。仿真结果表明,所提出的CPM信号不仅可以很好地满足不同频段兼容性的约束条件,降低了用户终端的复杂性,而且在跟踪精度,多径抑制和抗干扰方面均具有优于其他候选者的性能。调制方案。

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