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Research on Delay Control Parameters Error and Leading Simulation Method for GNSS Satellites Link Emulator

机译:GNSS卫星链路仿真器的时延控制参数误差及超前仿真方法研究。

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This paper tries the first attempt in GNSS related fields, the signal emitted by four different static navigation satellites on the ground, passed the latest self-research four-channel navigation satellite link emulator, which emulating the relative motion between the satellite and the user, and adding signal transmission channel time-varying parameters (group delay, phase shift, Doppler, fading), finally, the navigation receiver receives signal to complete positioning. Essence of satellite navigation and positioning is aligning the satellite and user time, and measuring signal transmission delay. This paper has established the positioning principle model based on four-channel satellite link emulator, designed the positioning implementation process, analyzed the errors generated model, proposed a delay parameters leading simulation control method. The measured results show that it could effectively reduce the positioning error caused by the navigation satellite channel emulator. It provides an effective way to fully verify its signal performance indicators, before the navigation satellite launched.
机译:本文尝试了GNSS相关领域的首次尝试,即地面上四个不同的静态导航卫星发出的信号,通过了最新的自研究型四通道导航卫星链路仿真器,该仿真器模拟了卫星与用户之间的相对运动,并添加信号传输信道时变参数(群时延,相移,多普勒,衰落),最后,导航接收机接收信号以完成定位。卫星导航和定位的本质在于调整卫星和用户时间,并测量信号传输延迟。本文建立了基于四通道卫星链路仿真器的定位原理模型,设计了定位实现过程,分析了误差产生模型,提出了一种延时参数超前仿真控制方法。测量结果表明,该方法可以有效减少导航卫星信道模拟器引起的定位误差。它提供了一种有效的方法,可以在导航卫星发射之前完全验证其信号性能指标。

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