Development of General-Purpose Root-Finding Module for General Mission Analysis Tool

被引:0
|
作者
Minhee Kim
Sang-Young Park
Steven P. Hughes
机构
[1] Yonsei University,Astrodynamics and Control Laboratory, Department of Astronomy
[2] NASA Goddard Space Flight Center,undefined
[3] Satrec Initiative,undefined
关键词
Broyden’s method; Root-finding methods; General mission analysis tool; Space trajectory design;
D O I
暂无
中图分类号
学科分类号
摘要
A general-purpose root-finding module for designing spacecraft trajectories is developed to have similar accuracy to that of other well-known root-finding modules, and greater speed. Three quasi-Newton root-finding algorithms are implemented: the Newton–Raphson method, the Broyden’s method and the Generalized Broyden’s method. Based on the proposed root-finding module, General Mission Analysis Tool (GMAT) of National Aeronautics and Space Administration’s Goddard Space Flight Center (NASA/GSFC) is functionally extended by integrating the Broyden’s method and the Generalized Broyden’s method into its differential corrector module. Non-trivial spacecraft trajectory design problems, such as Lambert’s problem for trans-lunar trajectory and minimum-time transfer problem to the Mars are solved to analyze the performance of the proposed module. The numerical performances of each root-finding algorithm are quantitatively analyzed by the total number of function evaluations, the total number of iterations, convergence error, mean convergence rate, and running time. The overall comparative analysis shows that the Broyden’s method and the Generalized Broyden’s method are about 20–40% faster than the Newton–Raphson method and solutions from each algorithm have similar numerical accuracy. We also show that for selected test problems, the Generalized Broyden’s method converges in less running time than others with similar numerical accuracy in GMAT. The updated differential corrector module was released in R2014a version of GMAT.
引用
下载
收藏
页码:315 / 324
页数:9
相关论文
共 50 条
  • [41] A general-purpose discharge module for pumping solid-state lasers
    Togatov, VV
    Gnatyuk, PA
    INSTRUMENTS AND EXPERIMENTAL TECHNIQUES, 2002, 45 (01) : 87 - 90
  • [42] A General-Purpose Discharge Module for Pumping Solid-State Lasers
    V. V. Togatov
    P. A. Gnatyuk
    Instruments and Experimental Techniques, 2002, 45 : 87 - 90
  • [43] A GENERAL-PURPOSE TOOL FOR RESTORING INTER-ELEMENT CONTINUITY
    MARECHAL, Y
    MEUNIER, G
    COULOMB, JL
    MAGNIN, H
    IEEE TRANSACTIONS ON MAGNETICS, 1992, 28 (02) : 1728 - 1731
  • [44] General-Purpose Tool for Modelling of Custom Network Devices and Protocols
    Maksutov, Artem A.
    Fedorova, Natalia O.
    Cherepanov, Ilya A.
    Makedonskaya, Maria M.
    PROCEEDINGS OF THE 2017 IEEE RUSSIA SECTION YOUNG RESEARCHERS IN ELECTRICAL AND ELECTRONIC ENGINEERING CONFERENCE (2017 ELCONRUS), 2017, : 176 - 178
  • [45] A Module of General-Purpose for Temperature Measurement Based on MSP430
    Ye Dunfan
    Lin Lijuan
    TECHNOLOGY AND APPLICATION OF ELECTRONIC INFORMATION, 2009, : 232 - 235
  • [46] INTERACTIVE-GRAPHICS GENERAL-PURPOSE NDE LABORATORY TOOL
    STIEFELD, B
    PROCEEDINGS OF THE IEEE, 1975, 63 (10) : 1431 - 1437
  • [47] Nauticle: A general-purpose particle-based simulation tool
    Havasi-Toth, Balazs
    COMPUTER PHYSICS COMMUNICATIONS, 2020, 246 (246)
  • [48] StreamLiner: A General-Purpose Interactive Course-Visualization Tool
    Yuan, Shengqiong
    Tabard, Aurelien
    Mackay, Wendy
    2008 IEEE INTERNATIONAL SYMPOSIUM ON KNOWLEDGE ACQUISITION AND MODELING WORKSHOP PROCEEDINGS, VOLS 1 AND 2, 2008, : 915 - +
  • [49] The Spiral Discovery Network as an Automated General-Purpose Optimization Tool
    Csapo, Adam B.
    COMPLEXITY, 2018,
  • [50] General-purpose software tool for serial segmentation of stacked images
    Chalana, V
    Sannella, M
    Haynor, DR
    MEDICAL IMAGING 2000: IMAGE PROCESSING, PTS 1 AND 2, 2000, 3979 : 192 - 203