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This paper addresses a method to mitigate the peak to mean power ratio (PMEPR) of orthogonal frequency division multiplexing (OFDM) signals. The idea is to use adjacent bands of the OFDM spectrum to allocate optimized subcarriers so as to decrease the signal PMEPR with the help of SOCP optimization process. This way of doing has only sense if additional subcarriers all fall under the standard spectrum...
Software radio (SWR) is an enabling technology for cognitive radio (CR) systems which promises to (de) modulate any signal, at any frequency. SWR signal therefore is composed of different standard's signals, and each standard's signal is either multicarrier or multiplex of single carriers. This combination leads to high temporal fluctuations and thus SWR signal inherits high peak to average power...
A combination of multiple-input multiple-output (MIMO) with orthogonal frequency division multiplexing (OFDM) has became a promising candidate for high performance 4G broadband wireless communications. However, like OFDM, one main disadvantage of MIMO-OFDM is that the signals transmitted on different antennas may exhibit a prohibitively large peak-to-average power ratio (PAPR). In this paper we extend...
The main disadvantage of OFDM is its high Peak to Mean Envelope Power Ratio (PMEPR), which can result in significant signal distortion in presence of nonlinear amplifiers. A major part of the proposed PMEPR reduction schemes is carry out on base band signals. In order to implement a digital modulator, an oversampled version of the continuous signal which would be generated by the analog modulator...
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