References
- [1] ARMADA, A. G. : Understanding the Effects of Phase Noise in Orthogonal Frequency Division Multiplexing (OFDM), IEEE Trans. Broadcasting 47 No. 2 (June 2001), 153-159.
- [2] ZHANG, Y-LIU, H. : MIMO-OFDM Systems in the Presence of Phase Noise and Doubly Selective Fading, IEEE Trans. Vehicular Tech. 56 No. 4, Part 2 (July 2007), 2277-2285.
- [3] BARAN, O.-KASAL, M. : Modeling of the Phase Noise in Space Communication Systems, Radioengineering 19 No. 1 (Apr 2010), 141-148.
- [4] IEEE Std 1139-2008 - IEEE Standard Definitions of Physical Quantities for Fundamental Frequency and Time Metrology - Random Instabilities, IEEE, 2009.
- [5] WALLS,W. F. : Practical Problems Involving Phase NoiseMeasurements, Proc. 33rd Annual Precise Time and Time Interval (PTTI) Meeting 2001, pp. 407-416.
- [6] HAJIMIRI, A.-LEE, T. H. : A General Theory of Phase Noise in Electrical Oscillators, IEEE J. Solid-State Circuits 33 No. 2 (Feb 1998), 179-194.
- [7] RAUSCHER, C.-JANSSEN, V.-MINIHOLD, R. : Fundamentals of Spectrum Analysis, Rohde & Schwarz, 2008.
- [8] HUGHES, J. M. : Real World Instrumentation with Python, O’Reilly Media, 2011.
- [9] LEE, T. H.-HAJIMIRI, A. : Oscillator Phase Noise: A Tutorial, IEEE J. Solid-State Circuits 35 No. 3 (Mar 2000), 326-336.
- [10] LEESON, D. B. : A Simple Model of Feedback Oscillator Noise Spectrum, Proc. IEEE, 54 No. 2 (Feb 1966), 329-330.
DOI: https://doi.org/10.2478/jee-2014-0030 | Journal eISSN: 1339-309X (formerly 1335-3632) | Journal ISSN: 1335-3632
Language: English
Page range: 189 - 192
Submitted on: Sep 11, 2012
Published on: Jun 17, 2014
Published by: Slovak University of Technology in Bratislava
In partnership with: Paradigm Publishing Services
Keywords:
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© 2014 Ana Perić, Milan Bjelica, published by Slovak University of Technology in Bratislava
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.