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面向未来北斗的S频段导航信号射频兼容性评估

Radio Frequency Compatibility Evaluation of S Band Navigation Signals for Future BeiDou.

作者信息

Sun Yanbo, Xue Rui, Zhao Danfeng, Wang Dun

机构信息

College of Information & Communication Engineering, Harbin Engineering University, Harbin 150001, China.

State Key Laboratory of Space-Ground Integrated Information Technology, Beijing 100086, China.

出版信息

Sensors (Basel). 2017 May 5;17(5):1039. doi: 10.3390/s17051039.

Abstract

With L band frequency allocations for satellite navigation getting more crowded, S band (2483.5-2500 MHz) is already allocated for navigation services, where Globalstar broadcasts downlink communications to user terminals. The Indian Regional Navigation Satellite System (IRNSS) is transmitting navigation signals and Galileo exploits some potential signals in S band. Also, several candidate S band signals based on binary offset carrier (BOC), binary phase shift keying (BPSK), continuous phase modulation (CPM) and minimum shift keying-BOC (MSK-BOC) are suggested for BeiDou system (BDS). In quite narrow S band, mutual interference among these systems is inevitable, thus the compatibility issue is particularly significant for S band signal design. To explore desired S band signals for BDS, the paper firstly describes a comprehensive compatibility evaluation methods based on effective carrier-to-noise ratio degradation for acquisition and code tracking. Then a real simulation is established using space constellations, modulation schemes and received power. Finally, the worst mutual interference of BDS candidate signals with Galileo, IRNSS and Globalstar is calculated and compared. The results indicate that CPM signal is easier to allow peaceful coexistence of other systems with minimal mutual interference in S band compared to other BDS candidates.

摘要

随着用于卫星导航的L频段频率分配日益拥挤,S频段(2483.5 - 2500兆赫兹)已被分配用于导航服务,全球星公司在该频段向用户终端广播下行链路通信。印度区域导航卫星系统(IRNSS)正在传输导航信号,伽利略系统也在利用S频段的一些潜在信号。此外,还为北斗系统(BDS)提出了几种基于二进制偏移载波(BOC)、二进制相移键控(BPSK)、连续相位调制(CPM)和最小频移键控 - BOC(MSK - BOC)的候选S频段信号。在相当狭窄的S频段内,这些系统之间的相互干扰不可避免,因此兼容性问题对于S频段信号设计尤为重要。为了探索适合北斗系统的S频段信号,本文首先描述了一种基于捕获和码跟踪时有效载噪比降级的综合兼容性评估方法。然后利用空间星座、调制方案和接收功率建立了实际仿真。最后,计算并比较了北斗系统候选信号与伽利略系统、IRNSS和全球星系统之间的最坏相互干扰。结果表明,与北斗系统的其他候选信号相比,CPM信号在S频段更容易与其他系统实现和平共存,且相互干扰最小。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0fd4/5469644/9951528da958/sensors-17-01039-g001a.jpg

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