DocumentCode :
1198451
Title :
On the performance of OFDM systems over a Cartesian clipping channel: a theoretical approach
Author :
Nikopour, Hosein ; Jamali, S. Hamidreza
Author_Institution :
Univ. of Tehran, Iran
Volume :
3
Issue :
6
fYear :
2004
Firstpage :
2083
Lastpage :
2096
Abstract :
We introduce an accurate theoretical approach for computing the symbol-error rate (SER) of an M-ary quadrature amplitude modulation (M-QAM) orthogonal frequency division-multiplexing (OFDM) system in the Nyquist rate Cartesian clipping channel. The Cartesian clipper clips the high peak values of the Nyquist rate in-phase/quadrature (I/Q) components of the complex baseband OFDM signal separately. In contrast to previous works that approximate the nonlinear noise, in the frequency domain, as a Gaussian additive random process, an accurate expression is derived for the probability density function (pdf) of the clipping noise at the output of the OFDM demodulator on each subcarrier. The inverse Fourier transform of the characteristic function of the noise is used to derive this accurate pdf. Using this pdf, we can evaluate the performance of the OFDM system for each subcarrier with high accuracy, especially at high backoffs where the Gaussian approximation of the nonlinear noise is no longer valid. The proposed method has the accuracy and validity of the simulation while being comparatively much less time consuming.
Keywords :
AWGN channels; Fourier transforms; OFDM modulation; error statistics; nonlinear distortion; probability; quadrature amplitude modulation; telecommunication channels; Cartesian clipping channel; Gaussian additive random process; M-ary quadrature amplitude modulation; OFDM system; inverse Fourier transform; nonlinear distortion; nonlinear noise; orthogonal frequency division-multiplexing system; peak-to-average power ratio; probability density function; symbol-error rate; Additive noise; Baseband; Demodulation; Frequency conversion; Frequency domain analysis; Gaussian noise; OFDM; Probability density function; Quadrature amplitude modulation; Random processes;
fLanguage :
English
Journal_Title :
Wireless Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
1536-1276
Type :
jour
DOI :
10.1109/TWC.2004.837425
Filename :
1374917
Link To Document :
بازگشت