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IN ULTRA-TIGHT WITH NEW SIMULATION TOOL

机译:采用新的仿真工具进行超紧

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摘要

This article shows the performance of a newly proposed ultra-tight GPS/INS integrated system using an RISS that is intended to enhance GPS receivers' tracking ability in challenging environments, thus improving navigation availability. Additionally, we present a freshly combined GPS/INS trajectory data simulator that can be used to generate simulation data sets for all levels of GPS/INS integration. The two components of the simulator are demonstrated to be perfectly linked. Performance of the algorithm was tested using several trajectories, and the algorithm demonstrated durability against harsh signal degradation. Acceptable position and velocity errors were achieved. Expected future improvements to the algorithm aim to employ longer integration time, and the performance of different grades of IMUs are to be simulated.
机译:本文显示了使用RISS的最新提议的超紧密GPS / INS集成系统的性能,该系统旨在增强在恶劣环境中GPS接收机的跟踪能力,从而提高导航的可用性。此外,我们提出了一个新组合的GPS / INS轨迹数据模拟器,可用于为所有级别的GPS / INS集成生成模拟数据集。模拟器的两个组件被证明是完美连接的。使用多个轨迹测试了该算法的性能,并且该算法展示了针对恶劣信号衰减的耐久性。达到了可接受的位置和速度误差。对该算法的预期未来改进旨在采用更长的积分时间,并且要模拟不同等级的IMU的性能。

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  • 来源
    《GPS World》 |2018年第11期|1827-32|共7页
  • 作者单位

    Department of Electrical and Computer Engineering, Queen's University, Canada;

    Department of Geomatics Engineering and the Department of Electrical and Computer Engineering, University of Calgary, Alberta, Canada;

    departments of electrical and computer engineering in Queen's University and the Royal Military College (RMC) of Canada;

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