• DocumentCode
    1814532
  • Title

    Microwave transfer models and brightness temperature simulations of MWS for remote sensing lunar surface on CE-1 satellite

  • Author

    Wang, Zhenzhan ; Li, Yun ; Jiang, Jingshan ; Zhang, Xiaohui

  • Author_Institution
    Center for Space Sci. & Appl. Res., Chinese Acad. of Sci., Shanghai
  • Volume
    4
  • fYear
    2008
  • fDate
    21-24 April 2008
  • Firstpage
    1683
  • Lastpage
    1686
  • Abstract
    China has launched a microwave radiometer (MWS) to the Moon orbit to detect regolith information of the lunar surface. It is the first time that humankind directly applies sensed brightness temperature to investigate the lunar surface information by passive microwave sensor on lunar orbit. Therefore, it is necessary to set up theoretical models to describe lunar surface microwave transfer process, as well as heat conduction. These models will finally used for retrieving lunar surface information on regolith depths. In this paper, we will derive a microwave radiative transfer model for simulating MWS brightness temperature. We solve numerically the integral equation of the lunar soil by dividing the soil into many layers, and at each layer, emission, multi-reflection, and attenuation to the sub-layer radiation are all summed into a formula. The contributions of the underlying rock are also included for evaluating the amount of brightness temperature due to soil depth variation. Because it is necessary to learn about temperature distribution of lunar near surface layers for brightness temperature simulation, we simulate all the profiles from surface to 6 m depth of lunar surface from the North polar to the Equator of lunar using heat conduction equation with latest models of density, specific heat, and heat conductivity of lunar regolith. Finally, Some simulated brightness temperatures at different location of lunar surface are given by our models, which will be validated by MWS measurements soon.
  • Keywords
    brightness; heat conduction; integral equations; lunar rocks; lunar surface; microwave measurement; planetary remote sensing; radiative transfer; radiometry; specific heat; temperature distribution; CE-1 satellite; Equator of lunar; Moon orbit; North polar; brightness temperature simulations; heat conduction equation; heat conductivity; integral equation; lunar regolith; lunar rock; lunar soil; lunar surface information; microwave radiative transfer model; microwave radiometer; microwave transfer models; passive microwave sensor; remote sensing; soil depth variation; specific heat; temperature distribution; Brightness temperature; Electromagnetic heating; Heat transfer; Microwave radiometry; Microwave sensors; Moon; Passive microwave remote sensing; Remote sensing; Satellite broadcasting; Soil;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Microwave and Millimeter Wave Technology, 2008. ICMMT 2008. International Conference on
  • Conference_Location
    Nanjing
  • Print_ISBN
    978-1-4244-1879-4
  • Electronic_ISBN
    978-1-4244-1880-0
  • Type

    conf

  • DOI
    10.1109/ICMMT.2008.4540793
  • Filename
    4540793