Broadband Input Block of Radio Receiver for Software-Defined Radio Devices

Mirosław Magnuski, Maciej Surma, Dariusz Wójcik

Abstract


In the paper a cost-effective input block of the SDR receiver for 0:9


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References


P. Burns, Software Defined Radio for 3G, Artech House, Boston-London, 1993.

P. B. Kenington, RF and Baseband Techniques for Software Defined Radio, Artech House, Boston-London, 2005.

T. J. Rouphael, RF and Digital Signal Processing for Software-Defined Radio. A Multi-Standard Multi-Mode Approach, Elsevier, Oxford, 2009.

V. Giannini, J. Craninckx, and A. Baschirotto, Baseband Analog Circuits for Software Defined Radio, Springer, Dordrecht, 2008.

J. Mitola, The software radio architecture, IEEE Commun. Mag., vol. 33, pp.26 -38, 1995.

L. Huang and P. Russer, Electrically tunable antenna design procedure for mobile applications, IEEE Trans. Microw. Theory Techn., vol. 56, pp.2789 -2797, 2008.

M. Kaltiokallio, R. Valkonen, K. Stadius, and J. Ryynanen, A 0.7-2.7GHz Blocker-Tolerant Compact-Size Single-Antenna Receiver for Wideband Mobile Applications, IEEE Trans. Microw. Theory Techn, vol. 61, pp. 3339-3349, 2013.

P. S. Hall, P. Gardner, and A. Faraone, Antenna requirements for software defined and cognitive radios, Proc. IEEE, vol. 100, pp.2262 -2270, 2012.

J.D. Kraus, R.J. Marhefka, Antennas for all Applications, Mc-Graw Hill, New York, 2002.

D.M. Pozar, Microwave Engineering, John Wiley and Sons, New York, 1998.


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