首页> 外文期刊>Advances in space research >Robust filter setting in GPS-based relative positioning of small-satellite LEO formations
【24h】

Robust filter setting in GPS-based relative positioning of small-satellite LEO formations

机译:基于GPS的小卫星LEO编队相对定位中的稳健滤波器设置

获取原文
获取原文并翻译 | 示例
       

摘要

Formations of small satellites are becoming more and more important to many space applications, since they offer the possibility of distributing the payload functionality among the different elements of the formation, so to improve scientific return, providing at the same time a number of advantages in terms of overall system reliability, flexibility and modularity. However, precise autonomous determination of the relative positions of the formation members is required for formation acquisition and maintenance, and scientific objective achievement. For Low-Earth-Orbit formations, this task can be performed exploiting GPS-based relative positioning techniques. The technique exploited in this paper is designed for on board usage. It processes double differenced pseudo-range and carrier phase observables on two frequencies within a hybrid filtering scheme to get satisfactory precision and high robustness. However, relative positioning by GPS is affected by the capability of correctly estimating differential ionospheric delays, and, then, by the status of ionosphere activity. Hence, the filter includes an ionospheric model capable of reproducing ionosphere horizontal gradients with a minimum number of parameters, which can be estimated on the fly. In addition, a robust tuning approach is developed in the paper to get stable filter performance over long period of times. Specifically, the proposed approach combines an empirical tuning technique with a randomized algorithm to get the best filter tuning. Filter performance and tuning approach effectiveness are successfully verified using freely available GPS flight data of Gravity Recovery and Climate Experiment mission.
机译:小卫星的编队在许多空间应用中变得越来越重要,因为它们提供了在编队的不同元素之间分配有效载荷功能的可能性,从而提高了科学回报率,同时提供了许多优势整体系统的可靠性,灵活性和模块化。但是,对于岩层的获取和维护以及科学目标的实现,需要精确自主确定岩层成员的相对位置。对于低地球轨道编队,可以利用基于GPS的相对定位技术来执行此任务。本文采用的技术是专为机载使用而设计的。它在混合滤波方案中的两个频率上处理双差伪距和载波相位可观测值,以获得令人满意的精度和高鲁棒性。但是,GPS的相对定位会受到正确估算电离层延迟差异的能力的影响,然后受电离层活动状态的影响。因此,该滤波器包括一个电离层模型,该模型能够以最少数量的参数再现电离层水平梯度,可以在运行时对其进行估算。此外,本文还开发了一种鲁棒的调整方法,可在长时间内获得稳定的滤波器性能。具体而言,所提出的方法将经验调整技术与随机算法相结合,以获得最佳的滤波器调整。使用重力恢复和气候实验任务的免费GPS飞行数据成功验证了过滤器性能和调整方法的有效性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号