RF and Baseband Techniques for Software Defined Radio

Wiesler, A., and F. K. Jondral, A Software Radio for Secondand Third-Generation Mobile Systems, IEEE Trans. on Vehicular Technology, Vol. 51, No. 4, July 2002, pp. 738 748.
Colebrook, F. M., Homodyne, Wireless World and Radio Review, No. 13, 1924, p. 774.
Lessing, L., Man of High Fidelity: Edwin Howard ArmstrongA Biography, New York: Bantam Books, 1969.
Fernandez-Duran, A., et al., Zero-IF Receiver Architecture for Multistandard Compatible Radio Systems: Girafe Project, IEEE Vehicular Technology Conference, Vol. 2, May 1996, pp. 1,052-1,056.
Lawton, M. C., and J. D. Waters, The Design of Flexible Receivers for Communicating Appliances, IEEE Vehicular Technology Conference, Vol. 2, May 1996, pp. 1,060-1,064.
Kirkland, W. R., and K. H. Teo, I/Q Distortion Correction for OFDM Direct Conversion Receiver, IEE Electronics Letters, Vol. 39, No. 1, January 9, 2003, pp. 131 133.
Itoh, K., et al., Even Harmonic Direct Conversion IC for Mobile Handsets: Design Challenges and Solutions, IEEE RFIC Symposium Digest, June 1999, pp. 53 56.
Loke, A., and F. Ali, Direct Conversion Radio for Digital Mobile PhonesDesign Issues, Status, and Trends, IEEE Trans. on Microwave Theory and Techniques, Vol. 50, No. 11, November 2002, pp. 2,422-2,435.
Lang, S., R. M. Rao, and B. Daneshrad, Design and Development of a 5.25GHz Software Defined Wireless OFDM Communication Platform, IEEE Radio Communications, Vol. 1, No. 2, June 2004, pp. S6 S12. [Note: contained within IEEE Communications Magazine, Vol. 42, No. 6, June 2004].
Wolf, D., 1/f Noise: Noise in Physical Systems, Proc.