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Design and experimental evaluation of indirect centralized and direct decentralized integration scheme for low-cost INS/GNSS system

机译:低成本INS / GNSS系统间接集中和直接分散整合方案的设计与实验评价

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摘要

Advances in Geomatics science and technologies such as global navigation satellite system (GNSS) as well as inertial navigation system (INS) make it possible to develop accurate navigation system relying on low-cost technologies. We concentrated on integrated INS/GNSS system as a significant development in modern navigation systems. The ultimate aim is to enhance the performance, reliability, and navigation accuracy of low-cost INS/GNSS system. To achieve this, we focus on configuration and integration mechanization in low-cost INS/GNSS system. Two configurations, called here indirect centralized (IC) and direct decentralized (DD) integration, are proposed and a detailed comparative evaluation of the proposed schemes is provided. A serious problem of the low-cost INS/GNSS is the system reliability during GNSS signal blockage. Based on motion velocity constraints, the auxiliary velocity-update approach is proposed to enhance the navigation accuracy during GNSS outages. The assessment of the proposed integration schemes is conducted in numerous land/flight tests in which the host vehicle undergoes different dynamical maneuverings. Experimental evaluation shows that the IC integrated INS/GNSS has better performance in orientation estimation, but DD integrated INS/GNSS results in better positioning accuracy.
机译:地理科学和技术的进步如全球导航卫星系统(GNSS)以及惯性导航系统(INS),可以开发依靠低成本技术的准确导航系统。我们专注于综合INS / GNSS系统,作为现代导航系统的显着发展。最终目标是提高低成本INS / GNSS系统的性能,可靠性和导航准确性。为此,我们专注于低成本INS / GNSS系统中的配置和集成机械化。提出了两个配置,在此被称为集中(IC)和直接分散(DD)集成,并提供了所提出的方案的详细比较评估。低成本INS / GNSS的严重问题是GNSS信号堵塞期间的系统可靠性。基于运动速度约束,提出了辅助速度更新方法,以增强GNSS中断期间的导航精度。拟议的整合方案的评估在许多土地/飞行试验中进行,其中主机车辆经历不同的动态机动。实验评估表明,IC集成INS / GNSS在方向估计方面具有更好的性能,但DD集成INS / GNSS导致更好的定位精度。

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