Title :
Mutual Information Analysis of OFDM Radio Link Under Phase Noise, IQ Imbalance and Frequency-Selective Fading Channel
Author :
Gokceoglu, Ahmet ; Yaning Zou ; Valkama, Mikko ; Sofotasios, Paschalis C. ; Mathecken, P. ; Cabric, Danijela
Author_Institution :
Dept. of Electron. & Commun. Eng., Tampere Univ. of Technol., Tampere, Finland
Abstract :
OFDM and other multicarrier waveforms are in general very sensitive to RF non-idealities, such as phase noise and IQ imbalance, of transmitting and receiving devices. Extensive work has been carried out in the open literature in analyzing the performance of OFDM radio link under such RF impairments in terms of detection error rate and mostly concentrating on one impairment at a time. However, there is only very limited work on analytical investigations of mutual information and rate loss expressions, the heart of communication theory, as functions of RF impairment levels. In this article, we derive two closed-form mutual information expressions, in the form of infinite series representation, for an arbitrary subcarrier of a general OFDM radio link impaired with transceiver phase noise and IQ imbalance in frequency-selective Rayleigh distributed block-fading radio channel, covering both uncorrelated as well as fully correlated mirror subcarrier scenarios. We also show that the mutual information saturates to a finite value due to the inherent RF impairments even in the case that the symbol-to-noise ratio approaches infinity. Extensive comparisons with results obtained from full OFDM radio link simulations are also provided to illustrate and verify the accurate match between analytical and simulated mutual information behavior.
Keywords :
OFDM modulation; Rayleigh channels; phase noise; radio links; radio transceivers; IQ imbalance; RF impairment level; RF nonideality; closed-form mutual information expression; communication theory; error rate detection; frequency-selective Rayleigh distributed block-fading radio channel; frequency-selective fading channel; general OFDM radio link arbitrary subcarrier; infinite series representation form; multicarrier waveform; mutual information; mutual information analysis; mutual information behavior simulation; rate loss expression; receiving device; symbol-to-noise ratio approach; transceiver phase noise; transmitting device; IQ imbalance; Mutual information; OFDM; direct-conversion radio; frequency-selective channel; phase noise;
Journal_Title :
Wireless Communications, IEEE Transactions on
DOI :
10.1109/TWC.2013.042213.121618