Advanced methods of low cost mission design for the Galilean moons exploration

被引:0
|
作者
Grushevskii, Alexey [1 ,2 ]
Golubev, Yury [1 ]
Koryanov, Victor [1 ]
Tuchin, Andrey [1 ]
Tuchin, Denis [1 ]
机构
[1] Russian Acad Sci, Keldysh Inst Appl Math, 4 Miusskaya Sq, Moscow 125047, Russia
[2] Keldysh Inst Appl Math, 4 Miusskaya Sq, Moscow 125047, Russia
关键词
D O I
10.1088/1742-6596/1391/1/012031
中图分类号
O1 [数学];
学科分类号
0701 ; 070101 ;
摘要
The implementation of the deep space expeditions to the outer Solar system is the one of main priorities of modern astrodynamics One of the irritating factors for this is the probability of the life determination in the underground ocean at the Jovian icy moon Europa. In that regard the realization of the cosmic projects using the spacecraft - orbiters around the Jovian Galilean Moons and especially the descent modules implementation on their surface is one of the basic focuses of the current international cosmic space researches collaboration. The mission design of such cosmic projects must be executed using new advanced methods for their planning: Low Energy Tours exploring, Favourable Total Radiation Doze of the spacecraft (SC) provision, and tolerable maintenance of the SC's Time of Flight during the Jupiter system phase. Furthermore, the saving character of the trajectory design for the artificial satellite of the Galilean moon necessary required the smallness of the SC's velocity relative this moon, i.e. the smallness of the SC's hyperbolic velocity excess vector. In this work multibody bunch adaptive synthesis algorithms to overcome ballistic determinism expressed by existing of the integral of Jacobi in the basic CR3BP (circular restricted three body problem) are developed. It is shown that the diversity of the gravity of the ensemble in the Jovian system, not only complicates the accurate ballistic mission analysis, but, when its multibody effective use, allowing you to tailor flowed algorithms for the constructing scenarios of gravity assist maneuvers for interplanetary missions design, including circumvention of dangerous radiation areas, as well as landing at selected Galilean moon at a reasonable cost, resources and time.
引用
收藏
页数:4
相关论文
共 50 条
  • [11] LOW-COST EXPLORATION METHODS
    MORRIS, DB
    OIL & GAS JOURNAL, 1987, 85 (01) : 48 - 50
  • [12] LOW COST EXPLORATION METHODS.
    Morris, D.B.
    Oil and Gas Journal, 1987, 85 (01): : 48 - 50
  • [13] Exploration of the Galilean Moons using Electrodynamic Tethers for Propellantless Maneuvers and Self-Powering
    Lorenzini, E. C.
    Curreli, D.
    Zanutto, D.
    GALILEO'S MEDICEAN MOONS: THEIR IMPACT ON 400 YEARS OF DISCOVERY, 2010, (269): : 229 - 233
  • [14] Design of a Low Cost Mission to the Neptunian System
    Alibay, Farah
    Fernandes, Philip
    McGranaghan, Ryan
    Leonard, Jason
    Clegg, Ryan
    Craig, Patricia
    Day, Mackenzie
    Fougere, Nicolas
    Girazian, Zachary
    Hosseini, Sona
    Hutchins, Michael
    Scully, Jennifer
    Uckert, Kyle
    Malaska, Michael
    Patthoff, Alex
    Ries, Paul
    Budney, Charles
    Mitchell, Karl
    2014 IEEE AEROSPACE CONFERENCE, 2014,
  • [15] MISSION DESIGN FOR THE EXPLORATION OF ICE GIANTS, KUIPER BELT OBJECTS AND THEIR MOONS USING KILOPOWER ELECTRIC PROPULSION
    McCarty, Steven L.
    Oleson, Steven R.
    Masons, Lee S.
    Gibson, Marc A.
    ASTRODYNAMICS 2018, PTS I-IV, 2019, 167 : 3521 - 3550
  • [16] Tether System in Martian-Moons-eXploration-Like Mission for Phobos Surface Exploration
    Aslanov, Vladimir S.
    JOURNAL OF SPACECRAFT AND ROCKETS, 2023,
  • [17] Exploration of Jupiter's Galilean satellites and their complex interactions with the Jovian magnetosphere: Hungary's participation in ESA's Jupiter Icy Moons Explorer mission
    Bebesi, Zsofia
    EUROPEAN PHYSICAL JOURNAL-SPECIAL TOPICS, 2025,
  • [18] Critical Design of Martian Moons eXploration (MMX)
    Kawakatsu, Yasuhiro
    Kuramoto, Kiyoshi
    Usui, Tomohiro
    Fukai, Ryota
    Sugahara, Haruna
    Ikeda, Hitoshi
    Oki, Yusuke
    Yoshikawa, Kent
    Grebenstein, Markus
    Mary, Stephane
    Baroukh, Julien
    Arrat, Denis
    Ono, Go
    Mitani, Shinji
    Sawada, Hirotaka
    Kato, Hiroki
    Suzuki, Toshiyuki
    Yamada, Kazuhiko
    Imada, Takane
    Shimada, Takanobu
    Ogawa, Kazunori
    Ootake, Hisashi
    Kameda, Shingo
    Ozaki, Masanobu
    Senshu, Hiroki
    Mizuno, Takahide
    Iwata, Takahiro
    Barucci, Maria Antonietta
    Rees, Jean-Michel
    Lawrence, David J.
    Schratz, Brian C.
    Yokota, Shoichiro
    Matsukoka, Ayako
    Satoh, Yasutaka
    Zacny, Kris
    van Dyne, Dylan
    Kobayashi, Masanori
    Nagamatsu, Aiko
    Matsumoto, Haruhisa
    Funatsu, Ryohei
    Baba, Hajime
    Maki, Kenichiro
    Tokaji, Ayumu
    Tasker, Elizabeth
    Proceedings of the International Astronautical Congress, IAC, 2022, 2022-September
  • [19] Preliminary design of Martian Moons eXploration (MMX)
    Kawakatsu, Yasuhiro
    Kuramoto, Kiyoshi
    Usui, Tomohiro
    Sugahara, Haruna
    Ootake, Hisashi
    Yasumitsu, Ryoichiro
    Yoshikawa, Kent
    Mary, Stephane
    Grebenstein, Markus
    Sawada, Hirotaka
    Imada, Takane
    Shimada, Takanobu
    Ogawa, Kazunori
    Otsuki, Masatsugu
    Baba, Mitsuhisa
    Fujita, Kazuhisa
    Zacny, Kris
    van Dyne, Dylan
    Satoh, Yasutaka
    Tokaji, Ayumu
    ACTA ASTRONAUTICA, 2023, 202 : 715 - 728
  • [20] Methods of mission analysis, design and validation for lunar exploration based on STK
    Huang, Wende
    Xi, Xiaoning
    Wang, Wei
    Zhongguo Kongjian Kexue Jishu/Chinese Space Science and Technology, 2010, 30 (06): : 72 - 80