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Volume 19 Issue 2
Mar.  1997
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Liao Guisheng, Bao Zheng . BLIND ESTIMATES OF DOA-DOPPLER FREQUENY WITH UNKNOWN ARRAY MANIFOLD[J]. Journal of Electronics & Information Technology, 1997, 19(2): 152-157.
Citation: Liao Guisheng, Bao Zheng . BLIND ESTIMATES OF DOA-DOPPLER FREQUENY WITH UNKNOWN ARRAY MANIFOLD[J]. Journal of Electronics & Information Technology, 1997, 19(2): 152-157.

BLIND ESTIMATES OF DOA-DOPPLER FREQUENY WITH UNKNOWN ARRAY MANIFOLD

  • Received Date: 1995-08-04
  • Rev Recd Date: 1996-05-06
  • Publish Date: 1997-03-19
  • A novel blind estimate of direction of arrival (DOA) and Doppler frequency with unknown array manifold is proposed, employing Doppler frequency difference between a successive pulses as rotational parameter. The effectiveness of the new method is confirmed by computer simulations. Compared with the existing two-dimensional frequency estimates, the computation load of the proposed method can be saved greatly.
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  • Schmidt R. Multiple emitter location and signal parameter estimation, IEEE Trans. on AP, 1986, AP-34(3): 267-280.[2]ZisKind I, Wax M. Maximum likelihood localization of multiple sources by alternating projection. IEEE Trans, on ASSP, 1988, ASSP-36(10): 1553-1560.[3]RocKah Y, Schultheiss P M. Array shape calibration using sources in unknown locations Part I: far field sources. IEEE Trans on ASSP, 1987, ASSP-35(3): 286-299.[4]Weiss A J, Fridlander B. Eigenstructure methods for direction finding with sensor gain and phase uncertanties. Circuits Systems and Signal Processing, 1990, 9(3): 272-300.[5]Roy R, Kailath T. ESPRIT-estimation of signal parameter via rotational invariance technique. IEEE[6]Trans. on ASSP, 1989, ASSP-37(7): 984-995.[7]Capon J. High resolution frequency-wavenumer spectrum analysis[J].Proc. IEEE.1969, 57(8):1408-1418[8]Sacchini J J, Steedly W M, Moses R L. Two-dimensional Prony modeling and parameter estimation.IEEE Trans. on SP, 1993, SP-41(11): 3127-3137.
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