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GROUND AND IN-ORBIT TESTING OF GPS FOR SPACE APPLICATIONS

机译:GPS在空间应用中的地面和在轨测试

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The use of GPS for space applications is rapidly developing. MATRA MARCONI SPACE (MMS) has developed AOCS concepts and designs based on GPS use and also acquired practical data through various experiments including hardware. The tests performed at MMS have contributed to the validation of the main in-orbit GPS applications. Orbital Navigation by GPS was validated for the Leostar project. The main performances of the selected receiver have been measured with a RF GPS simulator. Closed-loop tests in a full hardware avionics configuration have evaluated its robustness with respect to the LEO missions. During the ARP-K project, MIR-shuttle missions have demonstrated relative GPS techniques in flight for ATV rendezvous. Attitude determination by GPS has been tested using the real GPS constellation for realistic multi-path environment, both in static conditions for the Leostar project with a TRIMBLE receiver and in dynamics conditions for an ESA study with a SEXTANT GPS-attitude receiver. These test campaigns have assessed the performance levels and pointed out the major error contributors showing the way to improvements. MMS will soon test the breadboard receiver of the Leeds University (UK), using the ASIC developed by ESA, in real conditions at ground level, and also with a RF stimulation. The purpose of this paper is to present all the test configuration set-ups used at MMS, the major results and the GPS experiments planned in the future.
机译:GPS在太空应用中的应用正在迅速发展。 MATRA MARCONI SPACE(MMS)基于GPS的使用开发了AOCS概念和设计,还通过包括硬件在内的各种实验获得了实际数据。在MMS进行的测试有助于验证主要在轨GPS应用。 GPS轨道导航已通过Leostar项目的验证。所选接收器的主要性能已通过RF GPS模拟器进行了测量。完整的硬件航空电子设备配置中的闭环测试已经评估了其相对于LEO任务的鲁棒性。在ARP-K项目期间,MIR航天飞机飞行任务演示了飞行中的ATV集合点的相对GPS技术。已使用真实GPS星座图对真实的多路径环境进行了GPS姿态确定测试,无论是在带有TRIMBLE接收器的Leostar项目的静态条件下还是带有SEXTANT GPS接收器的ESA研究的动态条件下。这些测试活动已经评估了性能水平,并指出了主要的错误贡献者,他们指出了改进方法。 MMS很快将使用ESA开发的ASIC在地面上的真实条件下以及在RF刺激下测试利兹大学(英国)的面包板接收机。本文的目的是介绍MMS上使用的所有测试配置设置,主要结果以及未来计划的GPS实验。

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