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基于路标观测角的星际着陆器自主位姿确定技术
引用本文:朱圣英,崔平远,崔祜涛,邵巍.基于路标观测角的星际着陆器自主位姿确定技术[J].航空学报,2010,31(2):318-326.
作者姓名:朱圣英  崔平远  崔祜涛  邵巍
作者单位:1. 北京理工大学,深空探测技术研究所,北京,100081
2. 北京理工大学,深空探测技术研究所,北京,100081;哈尔滨工业大学,深空探测基础研究中心,黑龙江,哈尔滨,150001
3. 哈尔滨工业大学,深空探测基础研究中心,黑龙江,哈尔滨,150001
摘    要:针对利用导航路标进行六自由度状态估计这一非线性、模糊性问题,对星际着陆器自主位姿确定技术进行了研究。为了减小算法的复杂性,提高求解精度,基于欧式变换下角度不变性,提出以导航路标观测视线之间所形成的夹角作为观测量,对像素观测方程中位置、姿态状态进行解耦求解。通过对观测矩阵的讨论,分析了导航路标空间分布对位姿确定精度的影响,给出了导航路标选取的最优观测方案。最后利用蒙特卡罗仿真对所提导航算法进行了验证,并对影响导航精度的各相关因素进行了分析。

关 键 词:自主位姿确定  星际着陆器  导航路标  观测角  最优观测  几何最优  

Autonomous Position and Attitude Determination for Interplanetary Landers Based on Landmark Observation Angles
Zhu Shengying,Cui Pingyuan,Cui Hutao,Shao Wei.Autonomous Position and Attitude Determination for Interplanetary Landers Based on Landmark Observation Angles[J].Acta Aeronautica et Astronautica Sinica,2010,31(2):318-326.
Authors:Zhu Shengying  Cui Pingyuan  Cui Hutao  Shao Wei
Institution:1.Deep Space Exploration Technology Institute, Beijing Institute of Technology 2.Deep Space Exploration Research Center, Harbin Institute of Technology
Abstract:To deal with the non-linear and non-unique question of six freedom states estimation using the pixels of navigation landmarks,the autonomous position and attitude determination for interplanetary landers is discussed.Based on the invariability of angles in orthogonal transformation,the position and attitude are decoupied for determination by importing the observation angles between of measured lines of sight so as to reduce algorithmic complexity and improve solution precision.For the optimal observation questions,an observation matrix is utilized to analyze the effect of landmark geometry configuration on determination precision,and a novel landmark selecting scheme is proposed to improve the precision of state estimation.Finally,the autonomous optical navigation algorithm is validated and the factors influencing navigation precision is analyzed using Monte Carlo simulations.
Keywords:autonomous position and attitude determination  interplanetary lander  navigation landmark  observation angle  optimal observation  geometry optimization
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