[1] Bingham J A C. Multicarrier modulation for data transmission: an idea whose time has come [J]. IEEE Commun Mag, 1990, 28(5): 5-14.
[2] Jones A E, Wilkinson T A, Barton S K. Block coding scheme for reduction of peak to mean envelope power ratio of multicarrier transmission schemes [J]. Electron Lett, 1994, 30(25): 2098-2099.
[3] Han S H, Lee J H. An overview of peak-to-average power ratio reduction techniques for multicarrier transmission [J]. IEEE Wireless Commun, 2005, 12(2): 56-65.
[4] Muller S H, Huber J B. OFDM with reduced peak-to-average power ratio by optimum combination of partial transmit sequences [J]. Electron Lett, 1997, 33(5): 368-369.
[5] Chen H, Pottie G J. An orthogonal projection-based approach for PAR reduction in OFDM [J]. IEEE Commun Lett, 2002, 6(5): 169-171.
[6] Alavi A, Tellambura C, Fair I. PAPR reduction of OFDM signals using partial transmit sequence: an optimal approach using sphere decoding [J]. IEEE Commun Lett, 2005, 9(11): 982-984.
[7] Muller S, Huber J B. A novel peak power reduction scheme for OFDM [C]//Proc IEEE PIMRC’97. Helsinki, Finland, 1997: 1090-1094.
[8] Kang S G, Kim J G, Joo E K. A novel subblock partition scheme for partial transmit sequence OFDM [J]. IEEE Trans Broadcast, 1999, 45(3): 333-338.
[9] Lu G, Wu P, Carlemalm-Logothetis C. Enhanced interleaved partitioning PTS for peak-to-average power ratio reduction in OFDM systems [J]. Electron Lett, 2006, 42(17): 983-984.
[10] Tellambura C. Computation of the continuous-time PAR of an OFDM signal with BPSK subcarriers [J]. IEEE Commun Lett, 2001, 5(5): 185-187.