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[1] R. F. Harrington, Field Computations by Moment Methods, New York:

Macmillan, 1968.

[2] A. F. Peterson, C. F. Smith, and R. Mittra, Computational Methods for Electromagnetics, IEEE Press, 1998.

[3] E. F. Knott, J. F. Shaeffer, M. T. Tuley, Radar Cross Section, Artech House, 1985.

[4] Constantine A. Balanis, Advanced Engineering Electromagnetics, Wiley & Sons, 1989.

[5] R. Mittra, Computer Techniques for Electromagnetics, A Summa Book, 1987.

[6] M. I. Aksun and Raj Mittra, “Choices of Expansion and Testing Functions for the Method of Moments Applied to a Class of Electromagnetic Problems”, IEEE Trans. Microwave Theory and Tech., vol. 41, no. 3, Mar. 1993.

[7] Richard C. Booton, Computational Methods for Electromagnetics and Microwaves, Wiley Interscience 1992.

[8] S. M. Rao, D. R. Wilton, “Electromagnetic Scattering by Surfaces of Arbitrally Shape”, IEEE Trans. Microwave Theory and Tech., vol. AP-30, no. 3, May. 1982.

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[9] Ching-Chuan Su, “Electromagnetic Scattering by a Dialetric Body with Arbitrary Inhomogeneity and Anisotropy” IEEE Trans. On Antenna and Propagation, vol.

37, no. 3, Mar. 1989.

[10] J.J. H. Wang, “Generalised Moment Methods in Electromagnetics”.

[11] F. X. Canning, “Reducing Moment Method Storage from Order N to order 2 N ”, Electronics Letters 14th September 1989 vol.25 no. 19.

[12] F. X. Canning, K. Rogovin, “Fast Direct Solution of Standard Moment Method Matrices”, IEEE Antennas and Propagation Magazine, Vol. 40, no. 3, June 1998.

[13] E. Suter, J. R. Mosig, “A Subdomain Multilevel Approach for the Efficient MoM

Analysis of Large Planar Antennas”, Microwave and Optical Technology Letters, vol. 26,no. 4, August 2000.

[14] R. Mittra, V.V.S. Prakash, S. J. Kwon, “An Improved Iterative Solution for

Method of Moments Problems in Electromagnetics”, IEEE Trans. Antennas Propagat., 2002.

[15] R. Mittra, S. J. Kwon, V.V.S. Prakash, “An Efficient Solution of a Dense System

of Linear Equations Arising in the Method of Moments Formulation”, Microwave and Optical Technology Letters, vol. 33, no. 3, May 2002.

[16] J. R. Poirier, P. Borderies, R. Mittra, V. Varadarajan, “Numerically Efficient Solution of Dense Linear System of Equations Arising in a Class of

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Electromagnetic Scattering Problems”, IEEE Transactions on Antenna and Propogation, vol. 46, no. 8, August 1998.

[17] B. Z. Steinberg, Y. Leviatin, “On the Use of Wavelet Expansions in the Method

of Moments”, IEEE Transactions on Antennas and Propagation, vol. 41, no. 5, May 1993.

[18] R. Mittra, V.V.S. Prakash, “Characteristic Basis Function Method: A New

Technique for Efficient Solution of Method of Moments Matrix Equations”, Microwave and Optical Technology Letters, vol. 36, no. 2, January 2003.

[19] R. Mittra, J. Yeo, V.V.S. Prakash, “Efficient Analysis of a Class of Microstrip

Antennas Using the Characteristic Basis Function Method (CBFM)”, Electromagnetic and Communication Laboratory Pennsylvania State University.

[20] Poynting- Balun Tutorial, www.poynting.co.za

[21] “The Singular Value Decomposition”, Matrix Factorizations, stat 540

[22] R. Mittra, V. V. S. Prakash, J. Ma, J. Yeo, N. Huang, and S. J. Kwon, “MNM-a

novel technique for iterative solution of matrix equation arising in the method-of- moments formulation,” Microwave Optical Technology Letters, vol. 33, no. 2, pp.

74-78, Apr. 2002.

[23] J. I. R. Nieves, M. V. Montijo, “Frequency Domain Analysis of Microwave Structures Using Computational Based Simulation”, Radiation Laboratory EE Department University of Puerto Rico.

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[24] R. F. Harrington, “Time Harmonic Electromagnetic Fields”, McGraw Hill 1961.

[25] E. Michielssen, “A Multilevel Matrix Decomposition Algorithm for Analyzing

Scattering from Large Structures”, IEEE Trans. Antennas and Propagation, vol.41,no. 8, August 1996.

[26] C. J. Reddy, M.D. Deshpande, “Application of AWE for RCS Frequency

Response Calculations Using Method of Moments”, NASA Contractor Report 4758.

[27] C. R. Cockrell, F. B. Beck, “Asymptotic Waveform Evaluation Technique for

Frequency Domain Electromagnetic Analysis”, NASA Technical Memorandum 110292.

[28] J. Yeo and R. Mittra, “An algorithm for interpolating the frequency variations of

Method-of-Moments matrices arising in the analysis of planar microstrip structures,” IEEE Trans. Microwave Theory and Tech., vol. 51, pp. 1018-1025, Mar. 2003.

[29] R. Coifman, V. Rokhlin, and S. Wandzura, “The fast multipole method for the

wave equation: a pedestrian prescription,” IEEE Antennas and Propagation Magazine, vol. 35, pp. 7-12, Jun. 1993.

[30] J. Song, C Lu, and W. C. Chew, “Multilevel fast multipole algorithm for electromagnetic scattering by large complex objects,” IEEE Trans. Antennas Propagat., AP-45, pp. 1488-1493, Oct. 1997.

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[31] C. A. Balanis, Antenna Theory: Analysis and Design, John Wiley & Sons, Inc., 1997.

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