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A System View on SKA Bandwidth Usage G.W. (Dion) Kant AAVP Dwingeloo , 14 December 2011

A System View on SKA Bandwidth Usage G.W. (Dion) Kant AAVP Dwingeloo , 14 December 2011. Outline. Introduction Overview of main envelope requirements The concept of a base element Bandwidth requirements. Introduction. Details in Document “ AA-MID CONCEPT DESCRIPTION ”

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A System View on SKA Bandwidth Usage G.W. (Dion) Kant AAVP Dwingeloo , 14 December 2011

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  1. A System View on SKA Bandwidth UsageG.W. (Dion) KantAAVP Dwingeloo, 14 December 2011

  2. Outline • Introduction • Overview of main envelope requirements • The concept of a base element • Bandwidth requirements

  3. Introduction • Details in Document “AA-MID CONCEPT DESCRIPTION” • Presentation to initiate some discussion • A technology independent approach!

  4. Introduction • Where are we now?

  5. Design Requirements • Analysis of /, and Bandwidth. • A technology independent approach! • Select technology after understanding the repercussions of the requirements

  6. SKA2/envelope

  7. Consequence for

  8. SKA2 Survey Speed envelope

  9. SKA2 Resulting HPBW

  10. Minimum required bandwidth • Utilize concept of a base element: • Base element is an antenna element which provides just the required FOV: • Main-Beam solid angle: • is effective area of base element • #(base) elements required to implement

  11. Minimum required bandwidth • Total aggregated bandwidth from base elements: Survey spaced in terms of base elements

  12. Bandwidth from base elements

  13. Physical element behavior • Assume constant (aperture antenna) • Inherent physical element behavior does not provide flat FOV! • Current requirements demand spending processing to create flat FOV

  14. FOV processing • Described by using a concept of an artificial element with effective area not constant as function of subband channels

  15. Station Bandwidth • #signals to be transported per subband Aggregated signal transport bandwidth

  16. Bandwidth • AA-mid aggregated signal transport bandwidth from (base) receptors & from stations

  17. Station processing mechanisms • Two station processing mechanisms are identified: • A lossless source coding retaining all available information denoted as station beam forming reducing correlator load: • A lossy source coding which is reducing the available information denoted as FOV processing

  18. An integral survey speed • Current SS requirement is a spot frequency property. Bandwidth is not involved. • A practical way to include bandwidth is defined (Integral Survey Speed) • Provides a means to define spectral efficiency

  19. Spectral efficiency • Average survey speed encoded in one Hertz bandwidth (ISS/Btot)

  20. Conclusion • An analysis is presented of three key science requirements • Analysis not based on specific technology • Current science requirements dictate huge differences in resource requirements over the different SKA bands. • Tailor science requirements for better usage of physical antenna properties

  21. Conclusion (continued) • Introduced the concept of a base receptor element to analyse bandwidth requirements • Aggregated bandwidth is a measure for required processing

  22. Conclusion (continued) • Two different station processing mechanisms are identified: • Signal processing required for limiting information in the spatial domain; • Signal processing required for reducing the processing load of a correlator subsystem. This one can be considered as a lossless recoding of information in the form of station beam forming providing the station beams.

  23. From the archives

  24. From the archives

  25. 15 Years of SKA AA Concepts

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