References

Abidi, A.A. (1995) Direct-conversion radio transceivers for digital communications. IEEE Journal on Solid-State Circuits, 30, 1399–1410.

Abidi, A. (2000) Wireless transceivers in CMOS IC technology: the new wave, Proceedings of the Symposium on VLSI Technology, pp. 151–158.

Armstrong, J. (2007) OFDM, John Wiley & Sons, Inc.

Bingham, J.A.C. (1990) Multicarrier modulation for data transmission: an idea whose time has come. IEEE Communications Magazine, 28, 5–14.

Brandolini, M., Rossi, P., Manstretta, D., and Svelto, F. (2005) Toward multi-standard mobile terminals—fully integrated receivers requirements and architectures. IEEE Transactions on Microwave Theory and Techniques, 53 (3), 1026–1038.

Crols, J. [paracontinued]and Steyaert, M.S.J. (1998) Low-if topologies for high-performance analog front ends of fully integrated receivers. IEEE Transactions on Circuits Systems II, 45, 269–282.

Farrukh, F., Baig, S., and Mughal, M.J., (2009) MMSE equalization for discrete wavelet packet based OFDM. Proceedings of IEEE International Conference on Electrical Engineering.

Fettweis, G., Löhning, M., Petrovic, D. et al. (2007) Dirty RF: a new paradigm. International Journal of Wireless Information Networks, 14 (2), 133–148.

Haykin, S. (2001) Communication Systems, 4th edn, John Wiley & Sons, Inc.

Hoeher, P., Kaiser, S., and Robertson, P. (1997) Pilot-symbol aided channel estimation in time and frequency. Proceedings of Globecom, pp. 90–96.

Iwai, H. (2000) CMOS technology for RF applications. ...

Get RF Analog Impairments Modeling for Communication Systems Simulation: Application to OFDM-based Transceivers now with the O’Reilly learning platform.

O’Reilly members experience books, live events, courses curated by job role, and more from O’Reilly and nearly 200 top publishers.