1
Views
5
CrossRef citations to date
0
Altmetric
Original Articles

New Figures of Merit for Pulse Compression Sequences

, FIETE, , MIETE & , FIETE
Pages 209-216 | Received 05 Jun 1991, Published online: 02 Jun 2015

REFERENCES

  • A D Whalen, Detection of signals in noise. Academic Press, New York, 1971.
  • C E Cook & M Bernfeld, Radar signals an introduction to theory and application, Academic Press, New York, 1967.
  • M J E Golay, Hybrid low autocorrelation sequences, Trans IEEE, vol IT-21, pp 460–642, 1975.
  • M H Ackroyd, Amplitude and phase modulated pulse trains for radar, Radio & Electr Engr, vol 41, pp 541–552, 1971.
  • D E Vakman, Sophisticated signals and uncertainty principles in radar. Springer-Verlag, Berlin, 1968, p 224.
  • J B Thomas, An introduction to statistical commuuicatlon theory, John Wiley, New York, 1969, pp 386–400.
  • P S Moharir, Signal design, Int J Electron, vol 41, pp 381–398, 1976.
  • J N Hunt & M H Ackroyd, Some integer Huffman sequences, Trans IEEE, vol IT-26, pp 105–107, 1980.
  • P S Moharir, S K Varma & K Venkata Rao, Ternary pulse compression sequences, J Inst Electron Telecomm Engrs, vol 31, pp 1–8, 1985.
  • K Venkata Rao, Coded waveform design for radar, PhD Thesis, University of Roorkee, Roorkee, 1984.
  • K Venkata Rao, P S Moharir & S K Varma, Doubly Co-operative ternary sequences, Proc IEE, Pt F, vol 133, pp 61–67, 1986.
  • M H Ackroyd, The design of Huffman sequences, Trans IEEE, vol AES-6, pp 790–796, 1970.
  • M H Ackroyd, Synthesis of efficient Huffman sequences. Trans IEEE, vol AES-8, pp 2–8, 1972.
  • M H Ackroyd, Huffman sequences with approximately uniform envelopes or crosscorrelation functions, Trans IEEE, vol IT-23, pp 620–623, 1977.
  • D L Huffman, The generation of impulse equivalent pulse trains, Trans IRE, vol IT-8, pp 510–516, 1962.
  • D L Huffman, A modification of Huffman's impulse equivalent pulse trains to increase signal energy utilization, Trans IEEE, vol IT-20, pp 559–561, 1974.
  • D L Huffman, Modified Barker code approximating Huffman's impulse equivalent sequences, Trans IEEE, AES-11, pp 437–442. 1975.
  • D L Huffman, Modified Huffman and Barker sequences in combination codes, Trans IEEE, AES-13, pp 408–412, 1977.
  • M J Rutter & P M Grant, Generation of codes with good autocorrelation properties, Electron Lett, vol 19, pp 571–572, 1983.
  • D F DeLong Jr & E M Hofstetter, On the design of optimum radar waveforms for clutter rejection, Trans IEEE, vol IT-13, pp 454–463, 1967.
  • D F DeLong Jr & E M Hofstetter, The design of clutter resistant radar waveforms with limited dynamic range, Trans IEEE, vol IT-15, pp 376–385, 1969.
  • F C Schweppe & D Gray, Radar signal design subject to simultaneous peak and average power constraints, Trans IEEE, vol IT- 12, pp 13–26, 1966.
  • F W Smith, Effects of radar amplitude and phase weighting errors on clutter rejection by burst waveforms, Trans IEEE, vol AES-10, pp 160–162, 1974.
  • C A Stutt & L J Spafford, A best mismatched filter response for radar clutter discrimination, Trans IEEE, vol IT-14, pp 280–287. 1968.
  • S M Sussman, Least square synthesis of radar ambiguity functions, Trans IRE, vol IT-8, pp 246–254, 1962.
  • G W Zeoli, Some results on pulse burst radar design, Trans IEEE, AES-7, pp 486–498, 1971.
  • J A Chang, Ternary sequences with zero correlation, Proc IEEE, vol 55, pp 1211–1213, 1967.
  • T Hoholdt & J Justasen, Ternary sequences with perfect periodic correlation, Trans IEEE, vol IT-29, pp 597–600, 1983.
  • V P Ipatov, Ternary sequences with ideal autocorrelation properties, Radio Eng Electron Phys, vol 24, pp 75–79, 1979.
  • V P Ipatov, Contribution to the theory of sequences with perfect periodic autocorrelation properties, Radio Eng Electron Phys, vol 25, pp 31–34, 1980.
  • A D Shedd & D V Sarwate, Construction of sequences with good correlation properties, Trans IEEE, vol IT-25, pp 94–97, 1979.
  • W Blau, Synthesis of ambiguity functions for prescribed responses, Trans IEEE, pp 656–663, 1967.
  • V M Koshevoy, Synthesis of frequency sequences under additional constraints, Radio Engg & Electro Phys, vol 30, pp 67–74, 1985.
  • M J E Golay, The merit factor of long low autocorrelation binary sequences, Trans IEEE, vol IT-23 pp 543–549, 1982.
  • M J E Golay, The merit factor of Legendre sequences, Trans IEEE, vol IT-29, pp 934–936, 1983.
  • T Hoholdt & J Justasen, Determination of the merit factor of Legendre sequences, Trans IEEE, vol IT-34, pp 161–164, 1988.
  • S W Golomb & R A Scholtz, Generalized Barker sequences, Trans IEEE, vol IT-11, pp 533–537, 1965.
  • R A Scholtz, Search for digital radar ranging signals. IEEE conference on System Sciences, Hawai, 1971, pp 377–379.
  • R J Turyn, Four phase Barker codes, Trans IEEE, vol IT-20, pp 366–371, 1974.
  • S A Kassam & H V Poor, Robust techniques for signal processing: a survey, Proc IEEE, vol 73, pp 433–481, 1985.
  • P J Huber, Robust statistics, John Wiley, New York, 1981.
  • W J J Rey, Introduction to robust and quasi-robust statistical methods, Springer-Verlag, Berlin, 1983, p 236.
  • F R Hampel, P J Rousseeuw, E M Ronchetti & W A Stabel, Robust statistics, John Willey, New York, 1986, p 502.
  • M J E, Golay Sieves for low autocorrelation binary sequences, Trans IEEE, IT-23, pp 43–51, 1977.
  • P S Moharir, K Venkata Rao & S K Varma, Monogenic function range resolution radar, Proc IEE, Pt F, vol 134, pp 620–628, 1987.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.