Mars entry trajectory planning using robust optimization and uncertainty quantification

被引:18
|
作者
Jiang, Xiuqiang [1 ]
Li, Shuang [1 ]
机构
[1] Nanjing Univ Aeronaut & Astronaut, Coll Astronaut, Dept Astronaut Engn, Nanjing 210016, Jiangsu, Peoples R China
基金
中国国家自然科学基金;
关键词
Mars atmospheric entry; Trajectory planning; Robust optimization; Uncertainty quantification; MULTIDISCIPLINARY DESIGN OPTIMIZATION; POLYNOMIAL CHAOS; GUIDANCE; PROPAGATION;
D O I
10.1016/j.actaastro.2019.05.033
中图分类号
V [航空、航天];
学科分类号
08 ; 0825 ;
摘要
Due to the existence of obvious uncertainties within Mars atmospheric entry, design and analysis of the optimal trajectory under uncertainties play a significant role in reducing flight risk and maintaining guidance performance and delivery accuracy. In this paper, using robust optimization strategy and uncertainty quantification technique, we developed an innovative approach for planning the Mars entry trajectory under uncertainties. The main contribution of this work is twofold: one is considering both dynamics parameter uncertainty and initial state uncertainty, and the other is simultaneously focusing on the reliability of constraint satisfaction and insensitivity of performance index towards uncertainties. First, Mars entry trajectory planning problem under uncertainties is formulated as a robust optimization problem. Second, the uncertainty propagation with regard to Mars entry dynamics is derived, and the quantification of objective function and constraints under uncertainties is conducted. Third, the robust trajectory optimization problem is transformed into an equivalent optimal control problem in the expanded higher-dimensional state space by polynomial chaos expansion, and the solution is obtained by the hp-adaptive pseudospectral method. Finally, the effectiveness of the proposed method is verified through two Mars entry optimal trajectory cases. And the obtained optimal trajectories are reliable and evidently robust to uncertainties compared to traditional deterministic optimization and reliability-based optimization.
引用
收藏
页码:249 / 261
页数:13
相关论文
共 50 条
  • [1] ROBUST TRAJECTORY OPTIMIZATION FOR MARS ATMOSPHERIC ENTRY BASED ON UNCERTAINTY PROPAGATION
    Jiang, Xiuqiang
    Li, Shuang
    ASTRODYNAMICS 2018, PTS I-IV, 2019, 167 : 1657 - 1676
  • [2] Mars entry trajectory robust optimization based on evidence under epistemic uncertainty
    Huang, Yuechen
    Li, Haiyang
    Du, Xin
    He, Xiangyue
    ACTA ASTRONAUTICA, 2019, 163 : 225 - 237
  • [3] MARS ENTRY TRAJECTORY ROBUST OPTIMIZATION BASED ON EVIDENCE UNDER EPISTEMIC UNCERTAINTY
    Huang, Yuechen
    Li, Haiyang
    Du, Xin
    He, Xiangyue
    FOURTH IAA CONFERENCE ON DYNAMICS AND CONTROL OF SPACE SYSTEMS 2018, PTS I-III, 2018, 165 : 719 - 738
  • [4] Mars entry trajectory optimization using DOC and DCNLP
    Li Shuang
    Peng Yuming
    ADVANCES IN SPACE RESEARCH, 2011, 47 (03) : 440 - 452
  • [5] MARS ENTRY TRAJECTORY PLANNING FOR HIGHER ELEVATION LANDING
    Soler, Lluis
    Khatib, Ahmad
    Mease, Kenneth D.
    SPACEFLIGHT MECHANICS 2013, PTS I-IV, 2013, 148 : 397 - 412
  • [6] Uncertainty Quantification for Mars Entry, Descent, and Landing Reconstruction Using Adaptive Filtering
    Dutta, Soumyo
    Braun, Robert D.
    Karlgaard, Christopher D.
    JOURNAL OF SPACECRAFT AND ROCKETS, 2014, 51 (03) : 967 - 977
  • [7] UNCERTAINTY QUANTIFICATION FOR MARS ATMOSPHERIC ENTRY USING MODIFIED GENERALIZED POLYNOMIAL CHAOS
    Jiang, Xiuqiang
    Li, Shuang
    Furfaro, Roberto
    ASTRODYNAMICS 2018, PTS I-IV, 2019, 167 : 1677 - 1696
  • [8] A CONVEX OPTIMIZATION APPROACH TO MARS ENTRY TRAJECTORY UPDATING
    Noyes, Connor D.
    Mease, Kenneth D.
    ASTRODYNAMICS 2018, PTS I-IV, 2019, 167 : 1147 - 1163
  • [9] Mars Entry Trajectory Planning with Range Discretization and Successive Convexification
    Liu, Xu
    Li, Shuang
    Xin, Ming
    JOURNAL OF GUIDANCE CONTROL AND DYNAMICS, 2022, 45 (04) : 755 - 763
  • [10] Uncertainty Quantification and Robust Optimization in Engineering
    Kumar, D.
    Alam, S. B.
    Vucinic, Dean
    Lacor, C.
    ADVANCES IN VISUALIZATION AND OPTIMIZATION TECHNIQUES FOR MULTIDISCIPLINARY RESEARCH: TRENDS IN MODELLING AND SIMULATIONS FOR ENGINEERING APPLICATIONS, 2020, : 63 - 93