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Trajectory optimisation for avionics-based GNSS integrity augmentation system

机译:基于航空电子的GNSS完整性增强系统的轨迹优化

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In this paper, trajectory optimisation algorithms developed specifically for the Global Navigation satellite System (GNSS) Avionics-Based Integrity Augmentation (ABIA) system are presented. The ABIA system is designed to increase the levels of integrity and accuracy (as well as continuity in multi-sensor data fusion architectures) of GNSS in a variety of mission- and safety-critical aviation applications. The trajectory optimisation algorithms can be employed both for flight planning as well as real-time optimisation of manned and unmanned aircraft for all flight phases. Three and six Degrees-of-Freedom (3-DoF/6-DoF) aircraft dynamics models are adopted to generate a number of feasible flight trajectories that also satisfy the GNSS constraints. A detailed simulation case study is presented to evaluate the performance of trajectory optimisation algorithms for GNSS integrity augmentation using an AIRBUS A320 3-DoF aircraft dynamics model. Results confirm that the employed trajectory optimisation algorithms are capable of supporting high-integrity tasks when GNSS is used as the primary source of navigation data.
机译:本文提出了专门针对全球导航卫星系统(GNSS)基于航空电子的完整性增强(ABIA)系统开发的轨迹优化算法。 ABIA系统旨在提高各种任务和安全关键型航空应用中GNSS的完整性和准确性(以及多传感器数据融合体系结构的连续性)水平。轨迹优化算法既可以用于飞行计划,也可以用于所有飞行阶段的有人和无人飞机的实时优化。采用三自由度(6-DoF / 6-DoF)飞机动力学模型来生成许多可行的飞行轨迹,这些轨迹也满足GNSS约束。提出了详细的仿真案例研究,以评估使用AIRBUS A320 3自由度飞机动力学模型进行GNSS完整性增强的轨迹优化算法的性能。结果证实,当将GNSS用作导航数据的主要来源时,所采用的轨迹优化算法能够支持高完整性任务。

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