• DocumentCode
    142450
  • Title

    Small satellite systems design methodology: A formal and agile design process

  • Author

    Edmonson, William ; Chenou, Jules ; Neogi, N. ; Herencia-Zapana, Heber

  • Author_Institution
    NC A & T State Univ., Greensboro, NC, USA
  • fYear
    2014
  • fDate
    March 31 2014-April 3 2014
  • Firstpage
    518
  • Lastpage
    524
  • Abstract
    We propose to develop a model-based systems engineering process that results in high-confidence designs for small satellite systems in the pico-/nano-class, i.e. <; 50kg. This objective will be achieved through the integration of formal methods and model based systems engineering to develop an agile framework for high-confidence designs for these small systems. We propose, Reliable and Formal Design (RFD) process whose results are correct by construction, formally verified, and responsive to system requirement changes. This paper develops an intelligent framework that ties requirements, models, and simulations in a cogent manner. Furthermore, this papers provides a formulation for consistency and traceability, where the latter enforces a condition on the relationship between abstraction layers, that is, the function that refines any layer of abstraction into a successive layer must have a dual. An example of this refinement is illustrated using PVS to express the logical requirement formulation and for providing type checking proof.
  • Keywords
    artificial satellites; formal specification; formal verification; systems engineering; RFD process; agile design process; high-confidence designs; logical requirement formulation; model-based systems engineering; nano-class; pico-class; reliable and formal design; small satellite systems design; type checking proof; Mathematical model; Modeling; Satellites; Semantics; Software; System analysis and design;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Systems Conference (SysCon), 2014 8th Annual IEEE
  • Conference_Location
    Ottawa, ON
  • Print_ISBN
    978-1-4799-2087-7
  • Type

    conf

  • DOI
    10.1109/SysCon.2014.6819305
  • Filename
    6819305