IRECIN Nano-satellite communication system and ground segment

被引:0
|
作者
Ferrante, M [1 ]
Povia, M [1 ]
Di Ciolo, L [1 ]
Ortenzi, A [1 ]
Petrozzi, M [1 ]
机构
[1] VITROCISET Grp Engn, I-00156 Rome, Italy
关键词
D O I
10.1016/j.actaastro.2004.09.033
中图分类号
V [航空、航天];
学科分类号
08 ; 0825 ;
摘要
On board resources necessary to perform the mission tasks are very limited in nano-satellites. This paper proposes a real-time multi-processing system for the communication system between around segment and IRECIN nano-satellite. The first microprocessor is devoted to interface to the rice-transceiver subsystem decoding packet information and the second one is in charge to communicate with the other subsystems through (IC)-C-2 bus. It uses UHF band and less than 1 W in RE All electronic components are SMD technology in order to reduce weight and size. The realized electronic boards at,completely developed, realized and tested at the Vitrociset S.P.A. under control of Research and Develop Group. This multi-processor system even allows managing the tasks of the microprocessor eventually damaged. the microprocessor still working takes the functionalities of the first one using simpler algorithms. This choice assures an increasing nano-satellite life time. Moreover, the depicted method allows to free the on-board main microprocessor from the control functions of the communication data, increasing its communication capabilities with the other subsystems. The proposed system is implemented on the IRECIN, a modular nano-satellite weighing less than 1.5 kg. constituted by 16 external sides with surface-mounted solar cells and three internal Al plates. kept together by four steel bars. Lithium-ion batteries are added for eclipse operations. Attitude is determined by two three-axis magnetometers. and the solar panel data. Control is provided by an active magnetic control system. The spacecraft will be spin-stabilized with the spin-axis normal to the orbit. (C) 2004 Published by Elsevier Ltd.
引用
收藏
页码:175 / 179
页数:5
相关论文
共 50 条
  • [41] OPTICS FOR NANO-SATELLITE X-RAY MONITOR
    Tichy, Vladimir
    Burrows, David N.
    Prieskorn, Zachary
    Hudec, Rene
    BALTIC ASTRONOMY, 2015, 24 (03) : 242 - 250
  • [42] Multimode Reconfigurable Nano-satellite Antenna for PDTM Application
    Siblini, Ali
    Jecko, Bernard
    Arnaud, Eric
    2017 11TH EUROPEAN CONFERENCE ON ANTENNAS AND PROPAGATION (EUCAP), 2017, : 542 - 545
  • [43] Impact of Performance Modeling on Nano-Satellite Mission Design
    Abbott, John
    2012 IEEE AEROSPACE CONFERENCE, 2012,
  • [44] Novel Omnimagnet actuation method for a Cubesat nano-satellite
    Hassan, Amr M.
    El-Badawy, Ayman A.
    AEROSPACE SCIENCE AND TECHNOLOGY, 2021, 117
  • [45] FUZZY PID CONTROLLER FOR NANO-SATELLITE ATTITUDE CONTROL
    Mahdi, Mohammed Chessab
    JOURNAL OF SCIENCE AND ARTS, 2016, (04): : 407 - 416
  • [46] Exploiting Commercial Cellular Networks for Nano-satellite Communications
    MacDonald, John T.
    Ucci, Donald R.
    MILITARY COMMUNICATIONS CONFERENCE, 2010 (MILCOM 2010), 2010, : 1520 - 1525
  • [47] H∞ Tracking Control for Magnetically Controlled Nano-satellite
    Kumar, Shilpee
    Varma, Mithun S.
    Rao, Divya A.
    Agrawal, V. K.
    IFAC PAPERSONLINE, 2016, 49 (01): : 166 - 172
  • [48] Design and Implementation of Power Management Algorithm for a Nano-satellite
    Thakurta, Varun
    Jain, Avi
    Datla, Vishwanath
    Akhoury, Akshit
    Ravi, Arun
    Parashar, Akshiti
    Reddy, Ruchitha
    Dali, Harshal
    Kejriwal, Adhya
    2019 IEEE AEROSPACE CONFERENCE, 2019,
  • [49] Design of high performance management and control system of nano-satellite for distributed space exploration
    Sun Ke
    Fang Jiancheng
    Zhu Zhuangsheng
    Wei Xuechao
    SEVENTH INTERNATIONAL SYMPOSIUM ON INSTRUMENTATION AND CONTROL TECHNOLOGY: OPTOELECTRONIC TECHNOLOGY AND INSTUMENTS, CONTROL THEORY AND AUTOMATION, AND SPACE EXPLORATION, 2008, 7129
  • [50] Agent-oriented intelligent control strategies for the Nano-satellite autonomous thermal system
    Liu Jia
    Li Yunze
    Wang Yuying
    Wang Jun
    2009 9TH INTERNATIONAL CONFERENCE ON INTELLIGENT SYSTEMS DESIGN AND APPLICATIONS, 2009, : 708 - 713