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Sunday, May 17, 2020 | History

2 edition of 20GHz proof-of-concept test model results for a multiple scan beam dual reflector antenna found in the catalog.

20GHz proof-of-concept test model results for a multiple scan beam dual reflector antenna

20GHz proof-of-concept test model results for a multiple scan beam dual reflector antenna

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Published by Ford Aerospace & Communications Corporation, Western Development Laboratories in Palo Alto, Calif .
Written in English

    Subjects:
  • Antennas, Reflector

  • Edition Notes

    Statementby T. Roberts ... [et al.]
    SeriesNASA-CR -- 174268, NASA contractor report -- 174268
    ContributionsRoberts, T. 1923-, Ford Aerospace & Communications Corporation. Western Development Laboratories, United States. National Aeronautics and Space Administration
    The Physical Object
    FormatMicroform
    Pagination1 v.
    ID Numbers
    Open LibraryOL17978202M

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20GHz proof-of-concept test model results for a multiple scan beam dual reflector antenna Download PDF EPUB FB2

Get this from a library. 20GHz proof-of-concept test model results for a multiple scan beam dual reflector antenna. [T Roberts; Ford Aerospace & Communications Corporation. Western Development Laboratories.; United States.

National Aeronautics and Space Administration.;]. Antenna theory and design. Englewood Cliffs, N.J: Prentice-Hall. MLA Citation.

Elliott, Robert S. Antenna theory and design / Robert S. Elliott Prentice-Hall Englewood Cliffs, N.J Australian/Harvard Citation. Elliott, Robert S. Antenna theory and design / Robert S.

Elliott Prentice-Hall Englewood Cliffs, N.J. Wikipedia Citation. multiple fixed and scanned spot beams to allow for multiple independent users. This paper will discuss the testing of a proof-of-concept (POC) antenna built to demonstrate the feasibility of the mulitple beam concept.

MULTIPLE BEAM ANTENNA (MBA) CONFIGURATION The POC MBA is a dual offset reflector, line-arly polarized antenna using a m File Size: 2MB. Dual Beam Phased Array Antenna with Wide Scan Angle For Repeater Applications dual beam antenna, scan angle, port isolation.

simulation results for this case are shown in Figure 2. proof of concept using data acquired with an experimental ground-based multichannel feed reflector antenna system.

Introduction and Motivation Synthetic Aperture Radar (SAR) imaging combining high resolution and wide swath (HRWS) has been an active research field [1],[2],[3],[4],[5],[6], owing to the fact that conventional. An earlier two reflector version of this antenna [11] has been extended to three reflectors to better maintain beam with scan [12].

In this configuration any power coupled into the receiving. A low cost wafer scale phased array antenna has been developed. Beam scanning up to 90o is demonstrated.

Estimated production cost for the antenna is in tens of dollars. Such an antenna is suitable for automotive radar collision warning systems that require fast beam scan, large scan angles and low cost.

Further work. homogeneous dielectrics radiates a beam into the denser medium at an angle which largely frequency independent. In [3] the first leaky wave antenna implementing this concept was reported. In a preliminary proof of concept the potential of such leaky lens concepts to realize integrated transmitters or receivers with extremely broadbandAuthor: S.

Bruni, A. Neto, G. Gerini, D. Bekers. Full text of "DTIC ADA Proceedings of IEEE International Conference on Phased Array Systems and Technology Held in Dana Point, California on May " See other formats.

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Fig. Accuracy test +V level ms Period for samples Second test has been made with ms time interval. To measure accuracy of the device the time interval increased by ms. The results get better however instead of overall linear graph we have been seen that ripples between sequential voltages.

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Sloan Foundation Minority Graduate Program College of Engineering Leadership Team. Conduct breadboard testing of the antenna concept and demonstrate feasibility through both testing and analytical tools.

PHASE II: Fabricate a scale model of the C and Phase I antenna concept. Conduct performance measurements on model antenna and provide cost estimates for potential retrofits.

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