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Design and Development of a Simulation System for GNSS Radio Occultation Satellite Constellation Design

机译:GNSS无线电枢层卫星星座设计的设计与开发

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摘要

Space-borne global navigation satellite system (GNSS) radio occultation (RO) is a superior tool for global sounding of atmosphere and ionosphere. The amount of operated low Earth orbit (LEO) satellite equipped with GNSS RO receivers for atmospheric sounding are surging in recent years. The orbits of these RO sounding satellites are varied because of the requirement of multitask. A digital simulation system aimed at GNSS RO atmospheric sounding satellite constellation design with or without on-orbit LEO satellites is presented in this paper. The system contains two main simulation modules. One of them is a transient position and velocity generator for both LEO satellites and GNSS satellites. The other is a forward GNSS RO event simulator for GNSS-LEO atmospheric sounding. In addition, a data processing module and graphical user interface (GUI) are designed and developed for interacting the data convenient and efficient in the initiative design of LEO satellite constellation. A Walker-8 satellite constellation with 6 LEO satellites is designed based on this system with simulations of GPS RO atmospheric sounding.
机译:空间传播的全球导航卫星系统(GNSS)无线电掩星(RO)是全球响应大气和电离层的优越工具。近年来,配备有用于大气探测的GNSS RO接收器的经营的低地球轨道(LEO)卫星的数量正在汹涌澎湃。由于多址的要求,这些RO探测卫星的轨道变化。本文介绍了针对GNSS RO大气探测卫星星座设计的数字仿真系统,本文提出了有或没有轨道卫星。该系统包含两个主要的仿真模块。其中一个是Leo卫星和GNSS卫星的瞬态位置和速度发生器。另一个是用于GNSS-Leo大气声音的前GNSS RO事件模拟器。此外,设计并开发了数据处理模块和图形用户界面(GUI),用于在Leo卫星星座的主动设计中交互方便,高效。带有6个Leo卫星的步行者-8卫星星座是根据该系统设计的,具有GPS RO大气探测的模拟。

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