利用实时滤波技术提高导航信号的性能

A. Rakshitha, K. R. Shobha, P. Parimala
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摘要

印度区域导航卫星系统(IRNSS)是印度自己的自主导航系统。它的目的是为印度以及周边地区的用户提供精确的位置信息,这些地区延伸到印度境外1500公里。卫星的几何形状、电离层和对流层引起的信号接收延迟、相对运动时钟漂移产生的多径多普勒效应以及接收机噪声都会影响卫星导航系统的定位精度。电离层的影响超过了前面的所有因素,因为即使信号的轻微延迟也会对用户的位置产生重大影响。不同的方法,如双频方法、差分校正方法和各种单频离子延迟模型,用于减轻电离层延迟。本文采用卡尔曼滤波对定位误差进行校正[1]。通过使用全球导航卫星系统(GNSS)接收器获得的实时数据来检验所建议的方法在城市环境中的性能。用静态和动态数据分析了该方法的性能。在位置域中,使用参数-百分比拟合误差和平均绝对误差[2]对结果进行评估。利用线性插值函数再生接收过程中的丢失路径。仿真结果表明,所提出的卡尔曼滤波算法与插值算法相结合,显著提高了实时跟踪的精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance Improvement of Navic Signal Using Real-time Filtering Techniques
The Indian Regional Navigational Satellite System [IRNSS] is India's own indigenous navigation system. Its purpose is to offer precise positional information to users in India as well as the surrounding region, which extends up to 1500 kilometers outside the country's borders. Satellite geometry, signal reception delays induced by the ionosphere and troposphere, multipath doppler effect produced by relative motion clock drift, and receiver noise all affect the positioning accuracy of a satellite-based navigation system. The ionosphere's influence surpasses all the preceding factors since even a slight delay in the signal has a significant impact on the user's position. Different methods, such as dual frequency methods, differential correction approaches, and various single frequency ion delay models, are used to alleviate ionosphere delays. In the proposed work Kalman filter is applied to correct the positioning errors [1]. The suggested method's performance in an urban setting is examined using real-time data obtained by a Global Navigation Satellite System (GNSS) receiver. Both static and dynamic data is used to analyse the performance of the proposed method. In the position domain the results are evaluated using the parameters - Percentage Fit Error and Mean Absolute Error [2]. The lost path during reception is regenerated using linear interpolation function. The simulation results obtained show that the proposed Kalman filter algorithm in combination with interpolation significantly improves accuracy of tracking in real-time.
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