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References

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  • Adve, R. S., T. K. Sarkar, and S. M. Rao (1997), Application of the Cauchy method for extrapolating/interpolating narrow-band system responses, IEEE Trans. Microwave Theory Tech., 45(5), 837845.
  • Brezinski, C. (1980), Pade-Type Approximation and General Orthogonal Polynomials, Birkhauser, Basel, Switzerland.
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  • Harrington, R. F. (1982), Field Computation by Moment Methods, Krieger, Melbourne, Fla.
  • Himed, B. (1990), Application of the matrix pencil approach to direction finding, Ph.D. thesis, Syracuse Univ., Syracuse, N. Y.
  • Hua, Y., and T. K. Sarkar (1989), Generalized pencil-of-function method for extracting poles of an EM system from its transient response, IEEE Trans. Antennas Propag., 37, 229234.
  • Hua, Y., and T. K. Sarkar (1990), Matrix pencil method for estimating parameters of exponentially damped/undamped sinusoids in noise, IEEE Trans. Acoust. Speech Signal Process., 38, 814824.
  • Hua, Y., F. Baqai, Y. Zhu, and D. Heilbronn (1993), Imaging of point scatterers from step frequency ISAR data, IEEE Trans. Aerosp. Electron. Syst., AES-29, 195205.
  • Kahrizi, M., T. K. Sarkar, and Z. A. Maricevic (1997), Analysis of a wide radiating slot in the ground plane of a microstrip line, IEEE Trans. Microwave Theory Tech., 45(5), 837845.
  • Kottapalli, K., T. K. Sarkar, and Y. Hua (1991), Accurate computation of wideband response of electromagnetic system utilizing narrowband information, IEEE Trans. Microwave Theory Tech., 39, 682688.
  • Newman, E. H. (1993), Generation of wide-band data from the Method of Moments by interpolating the impedance matrix, IEEE Trans. Antennas Propag., 36, 18201824.
  • Ouibrahim, H., D. D. Weiner, and T. K. Sarkar (1988), Matrix pencil approach to direct finding, IEEE Trans. Acoust. Speech Signal Process., 36, 610612.
  • Sarkar, T. K., and O. M. Pereira-Filho (1995), Using the matrix pencil method to estimate the parameters of a sum of complex exponentials, IEEE Antennas Propag. Mag., 37, 4855.
  • Sarkar, T. K., and M. Salazar (1994), An alternate interpretation of complex modes in closed perfectly conducting (lossless) structures, AEU, 48, 123129.
  • Taylor, M. C., and T. K. Sarkar (2005), WIPL-D results and time domain response for an impulse radiating antenna (IRA), paper presented at International Conference on Wireless Communications and Applied Computational Electromagnetics, Inst. of Electr. and Electron. Eng., Hawaii.
  • Taylor, M. C., and T. K. Sarkar (2006a), Modeling, simulation and transient analysis of a bistatic impulse radiating antenna (IRA) scene, paper presented at Antennas and Propagation Society International Symposium With USNC/URSI National Radio Science and AMEREM Meetings, Inst. of Electr. and Electron. Eng., Albuquerque, N. M.
  • Taylor, M. C., and T. K. Sarkar (2006b), Investigate ground plane effect on bistatic impulse radiating antenna (IRA) scene, paper presented at Antennas and Propagation Society International Symposium With USNC/URSI National Radio Science and AMEREM Meetings, Inst. of Electr. and Electron. Eng., Albuquerque, N. M.
  • Yang, J., and T. K. Sarkar (2007), Interpolation/extrapolation of RCS data in frequency domain using the Cauchy method, IEEE Trans. Antennas Propag., 55, 28442851.
  • Zhang, Y., M. C. Taylor, T. K. Sarkar, H. Moon, and M. Yuan (2008), Solving large complex problems using a higher order basis: Parallel in-core and out-of-core integral equation solvers, IEEE Antennas Propag. Mag., in press.