• DocumentCode
    3701983
  • Title

    Correlator based group delay measurement for delta-DOR signals

  • Author

    R Chethan;P K Govardhan;R Shridhar;C V Babu; Mohana;Yogesh Prasad;H. V. Ravish Aradhya

  • Author_Institution
    Department of Telecommunication R.V. College of Engineering Bangalore, India
  • fYear
    2015
  • fDate
    4/1/2015 12:00:00 AM
  • Firstpage
    419
  • Lastpage
    422
  • Abstract
    Very Long Base Line Interferometry (VLBI) is a technique that allows determination of angular position of spacecraft by measuring the geometric time delay between received radio signals at two geographically separated base stations. Delta Differential One Way Ranging (Delta-DOR) is an application of VLBI where delay measurements of a spacecraft radio signals are compared with delay measurements of angularly nearby quasar radio signals. Delta-DOR is a framework that can increase the accuracy of deciding the Spacecraft position in deep space when combined with other navigation techniques. Navigation and tracking of spacecraft is rudimentary until it reaches its designated orbit. The Delta-DOR correlator system gathers signals from independent antennas which are then processed to find essential data used for guidance and navigation of spacecraft. The high speed parallel correlator designed can calculate delay up to 64 lags, with a maximum integration time of 800μs. The design was synthesized using Xilinx ISE 14.1 and simulated with ISim and validated on Virtex-5 family ML510 Embedded Development platform. The correlator structure chosen is amenable for expansion to calculate larger lags in future.
  • Keywords
    "Correlators","Space vehicles","Delays","Extraterrestrial measurements","Clocks","Correlation","Radio interferometry"
  • Publisher
    ieee
  • Conference_Titel
    Communication Technologies (GCCT), 2015 Global Conference on
  • Type

    conf

  • DOI
    10.1109/GCCT.2015.7342697
  • Filename
    7342697