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Ionospheric specification algorithms for precise GPS-based aircraft navigation

机译:基于精确GPS导航的电离层规范算法

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摘要

The Federal Aviation Administration (FAA) is implementing an aircraft navigation scheme for the United States using the Global Positioning System (GPS) L1 signal (1575.42 MHz). To achieve position accuracies of a few meters, sufficient to allow precision airfield approaches, it will be necessary to broadcast corrections to the direct GPS signal. A significant component of these corrections is the delay in the GPS signal introduced by its propagation through the ionosphere. Ionospheric delay corrections will be derived using a ground network of at least 24 dual-frequency GPS receivers distributed across the continental United States. This netWork is part of the FAA's wide area augmentation system (WAAS) and will provide real-time total electron content (TEC) measurements. We present a technique for converting these TECs into gridded vertical delay corrections at the GPS L_1 frequency, which will be broadcast to users every 5 min via geosynchronous satellite. Users will convert these delays to slant corrections for their own particular lines of sight to GPS satellites. To preserve user safety, estimates of the error in the user delay corrections will also be broadcast. However, the error algorithm must not resort to excessive safety margins as this reduces the expected accuracy, and thus utility, of the navigation system. Here we describe an error algorithm and its dependence on various factors, such as user location with respect to the WAAS ground network and ionospheric conditions.
机译:美国联邦航空管理局(FAA)正在使用全球定位系统(GPS)L1信号(1575.42 MHz)在美国实施飞机导航方案。为了获得几米的位置精度,足以允许精确的飞机进场,必须广播对直接GPS信号的校正。这些校正的重要组成部分是GPS信号通过电离层传播所引起的延迟。电离层延迟校正将使用分布在美国大陆上的至少24个双频GPS接收器的地面网络来推导。该网络是FAA广域增强系统(WAAS)的一部分,将提供实时的总电子含量(TEC)测量。我们提出了一种将这些TEC转换为GPS L_1频率的网格垂直延迟校正的技术,该技术将每5分钟通过地球同步卫星向用户广播一次。用户会将这些延迟转换为针对GPS卫星的特定视线的倾斜校正。为了维护用户安全,还将广播用户延迟校正中的错误估计。但是,错误算法不得求助于过多的安全裕度,因为这会降低导航系统的预期精度,进而降低其实用性。在这里,我们描述了一种错误算法及其对各种因素的依赖性,例如相对于WAAS地面网络和电离层状况的用户位置。

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