Title :
Performance Analysis of OFDM with Wiener Phase Noise and Frequency Selective Fading Channel
Author :
Mathecken, Pramod ; Riihonen, Taneli ; Werner, Stefan ; Wichman, Risto
Author_Institution :
Sch. of Electr. Eng., Dept. of Signal Process. & Acoust., Aalto Univ., Aalto, Finland
fDate :
5/1/2011 12:00:00 AM
Abstract :
We analyze the effect of Wiener phase noise on the capacity and signal-to-interference-plus-noise (SINR) ratio. Our analysis includes phase noise at the transmitter and receiver end of an OFDM communication link. We see that the capacity and SINR are random variables whose distribution depends on the phase noise and the fading channel. Using a Taylor series approximation, we show that the random variable, characterizing the phase noise, in the performance metrics can be expressed as a sum of correlated gamma variables with rank-deficient square-root normalized covariance matrix. The approximation holds well when the ratio between the subcarrier spacing and the 3dB bandwidth of the oscillator power spectral density is at least one order of magnitude, which for most practical oscillators is the case. In earlier literature, the probability density function of a sum of correlated gamma variables with full-rank square-root normalized covariance matrix was derived. We extend these results to the rank-deficient case and apply them to the random variable of our case. With the probability density functions characterizing the phase noise and the fading channel at hand, we proceed to obtain closed-form statistical measures of capacity and SINR. The simulations show the good agreement with our analytical expressions.
Keywords :
OFDM modulation; approximation theory; covariance matrices; fading channels; phase noise; stochastic processes; OFDM communication link; SINR; Taylor series approximation; Wiener phase noise; closed-form statistical measures; frequency selective fading channel; full-rank square-root normalized covariance matrix; oscillator power spectral density; performance analysis; probability density function; rank-deficient square-root normalized covariance matrix; signal to interference plus noise ratio; Approximation methods; Covariance matrix; Interference; OFDM; Phase noise; Signal to noise ratio; Phase noise; capacity; gamma variables; intercarrier interference; orthogonal frequency division multiplexing;
Journal_Title :
Communications, IEEE Transactions on
DOI :
10.1109/TCOMM.2011.030411.100401