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Guidance characteristics of GNSS landing systems

机译:GNSS着陆系统的指导特征

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Technical and operation concepts for precision landing have evolved around the signal in space characteristics of the Instrument Landing System (ILS). For the Global Navigation Satellite System (GNSS) Landing System (GLS), many of these characteristics will be dependent on computational processes inside the airborne receiver. Development of GLS standards creates an opportunity to improve on inherent ILS limitations while retaining useful features. This paper compares proposed GLS guidance algorithms including an approach where nominal ILS features are reproduced as well as alternatives proposed to eliminate features seen as undesirable. Simulated deviation outputs are derived for various maneuvers, including orbits, on-path, and near-path approach trajectories. The potential impact of alternative approaches on aircraft performance during capture, flare, and rollout is shown. Additional considerations addressed include the impact of changes of field verification and flight inspection and the applicability of these concepts to the Multi-Mode Receiver (MMR)
机译:精密着陆的技术和操作概念在仪表着陆系统(ILS)的空间特性中的信号周围已经进化。对于全球导航卫星系统(GNSS)着陆系统(GLS),许多这些特征将取决于空中接收器内的计算过程。 GLS标准的开发创造了改进固有的ILS限制的机会,同时保留有用的功能。本文比较了所提出的GLS引导算法,包括再现标称ILS特征的方法以及所提出的替代方案,以消除视为不希望的特征。仿真偏差输出用于各种机动,包括轨道,路径和近路径接近轨迹。显示了替代方法对捕获,耀斑和卷展栏期间飞机性能的潜在影响。解决的其他考虑因素包括现场验证和飞行检验变化的影响以及这些概念对多模式接收器(MMR)的适用性

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