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GNSS Receiver Testing by Hardware Simulation with Measured Interference Data from Flight Trials

机译:GNSS接收器通过硬件仿真测试,具有来自飞行试验的测量干扰数据

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The new signals and services provided by future GNSSs like Galileo and modernized GPS will foster the use of satellite navigation for safety of life applications, e. g. for precision landing approaches of higher categories in aviation. These new signals and services require the development of advanced receiver technologies, which make full use of the performance provided by the new signal characteristics. In aviation environments various potential interference sources exist, which can degrade the performance of receivers. In particular, DME/TACAN is one of the main interference sources in the E5 Galileo band in aviation environments. Therefore, besides functional receiver validation under nominal conditions also the behaviour of the receiver under strong interference conditions must be tested. Software and hardware simulations have shown already that DME interference can reduce the C/N0 of a receiver by some dB even if pulse blanking is applied in the receiver [1], [2]. However, there is a gap of real measurements for flight conditions. Therefore, a flight measurement campaign was performed within the frame of the "ANASTASIA" project, which was financed by the Sixth Framework Program of the EU. During this campaign terabytes of data have been recorded in the E5 band at different flight levels over the Frankfurt DME hotspot area [5]. These data contain numerous recordings of DME and other interferers. The measurements were made with- a skyward looking navigation antenna for the Galileo E5/L1 bands. This antenna belongs to a L1/E5 Galileo mock-up receiver for safety-of-life applications which was also developed within ANASTASIA. The receiver that is compliant with current Galileo MOPS standards has been already tested and validated with the help of simulated Galileo signals which were superposed with synthetic DME data [2]. The Galileo signals were generated at the nominal RF carrier frequencies and power levels by the very powerful Multi-output Advanced Signal Test Environment for Receivers (MASTER) [3], [4] of the German Aerospace Center (DLR) and fed into the antenna port of the receiver under test. The synthetic DME data were generated with a programmable signal generator according to the test procedures defined in the Galileo MOPS [5] by EUROCAE WG 62. In this paper a similar approach will be used, but now the synthetic data will be replaced by the recorded data from the flight measurements, which will be again superposed with simulated Galileo signals. The collection of the interference data as well as the test setup will be described and test results will be presented. During the simulations the navigation performance of the receiver under interference conditions will be investigated.
机译:伽利略和现代化GPS等未来GNSS提供的新信号和服务将促进卫星导航以确保寿命安全应用,即G。用于平移高等类别的精密着陆方法。这些新的信号和服务需要开发先进的接收器技术,可以充分利用新信号特性提供的性能。在航空环境中,存在各种潜在的干扰源,这可能会降低接收器的性能。特别是,DME / TACAN是航空环境中E5伽利略带中的主要干扰源之一。因此,除了在标称条件下的功能接收器验证之外,还必须测试接收器在强烈干扰条件下的行为。已经显示软件和硬件模拟已经显示DME干扰即使在接收器[1],[2]中也可以将接收器的C / N0减少一些DB。然而,飞行条件存在真实测量的差距。因此,在“宪向”项目的框架内进行了飞行测量运动,该项目由欧盟第六框架计划提供资金。在此活动期间,在法兰克福DME热点区域的不同飞行水平的E5频段中记录了数据的Tberytes [5]。这些数据包含DME和其他干扰的许多录音。使用伽利略E5 / L1带的天空导航天线进行测量。该天线属于L1 / E5 Galileo模拟接收器,用于骶纳似乎的寿命安全性应用。符合当前Galileo Mops标准的接收器已经在模拟伽利略信号的帮助下进行了测试和验证,这些伽利略信号叠加在合成DME数据[2]。通过非常强大的RF载波频率和功率水平产生伽利略信号,由德国航空航天中心(DLR)的接收器(Master)[3],[4],加入天线接收器的港口被测测试。用可编程信号发生器产生合成DME数据,根据伽利略MOPS [5]中定义的测试程序,通过Eurocae WG 62。在本文中,将使用类似的方法,但现在合成数据将被记录的替换来自飞行测量的数据,这将再次叠加模拟伽利略信号。将描述干扰数据以及测试设置的集合,并将显示测试结果。在模拟期间,将研究干扰条件下接收器的导航性能。

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