Modeling and Simulation of Space Coverage Performance of BDS/GPS

Zhou Jun, Yang Jing
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Abstract

Because of the limitation caused by the number of visible BDS (BeiDou Navigation Satellite System) / GPS (Global Position System) satellites, the application of BDS/GPS on the spacecraft is different from the ground user. In this paper, the coverage performance model of BDS/GPS is established by taking the radiation angle of transmitting antenna, the elevation of receiver and the received signal strength into account. The simulation results reveal that BDS/GPS integrated navigation system is superior to BDS or GPS single system in all respects of coverage performance, especially in high earth orbit area. Consequently, adopting the BDS/GPS integrated navigation system in high earth orbit spacecraft's autonomous navigation that will be able to expand the field of space applications based on GNSS (Global Navigation Satellite System) significantly. In addition, the simulation conclusions have special reference value for the spacecraft's orbit design and application.
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BDS/GPS空间覆盖性能建模与仿真
由于可见BDS(北斗导航卫星系统)/GPS(全球定位系统)卫星数量的限制,BDS/GPS在航天器上的应用与地面用户不同。本文考虑发射天线辐射角、接收机仰角和接收信号强度,建立了BDS/GPS的覆盖性能模型。仿真结果表明,BDS/GPS组合导航系统在各方面的覆盖性能均优于BDS或GPS单系统,特别是在高地球轨道区域。因此,在高地球轨道航天器自主导航中采用BDS/GPS组合导航系统,能够显著拓展基于全球卫星导航系统(GNSS)的空间应用领域。此外,仿真结论对航天器的轨道设计和应用具有特殊的参考价值。
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