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The Effect of Terrain Mask on RAIM Availability

机译:地形遮罩对RAIM可用性的影响

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Receiver Autonomous Integrity Monitoring (RAIM) is a method, used by an aircraft's receiver, for detecting and isolating faulty satellites of the Global Navigation Satellite System (GNSS). In order for a receiver to be able to detect and isolate a faulty satellite using a RAIM algorithm, a couple of conditions must be met: a minimum number of satellites, and an adequate satellite geometry. Due to the highly predictable orbits of the GPS satellites, a RAIM availability prediction can be done easily. A number of RAIM methods exist; however, none of them takes into account the precise terrain masking of the satellites for the specific location. They consider a uniform fixed mask angle over the whole horizon. This paper will introduce the variable mask RAIM algorithm in order to show to what extent the terrain can affect the RAIM availability and how much it differs from the conventional algorithms.
机译:接收机自主完整性监控(RAIM)是飞机接收机使用的一种方法,用于检测和隔离全球导航卫星系统(GNSS)的故障卫星。为了使接收器能够使用RAIM算法检测和隔离故障卫星,必须满足以下两个条件:最小数量的卫星和足够的卫星几何形状。由于GPS卫星的轨道高度可预测,因此可以轻松完成RAIM可用性预测。存在许多RAIM方法。但是,它们都没有考虑到特定位置的卫星的精确地形掩蔽。他们考虑在整个范围内均匀的固定遮罩角度。本文将介绍可变掩码RAIM算法,以显示地形可在多大程度上影响RAIM的可用性以及与常规算法有多大差异。

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