Wireless Communications: Principles and Practice
Wireless Communications: Principles and Practice
Walsh-Like Nonlinear Phase Orthogonal Codes for Direct Sequence CDMA Communications
IEEE Transactions on Signal Processing - Part II
A Constructive Representation for the Fourier Dual of the Zadoff–Chu Sequences
IEEE Transactions on Information Theory
A ZCMT Precoding Based Multicarrier OFDM System to Minimize the High PAPR
Wireless Personal Communications: An International Journal
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The perfect sequences are so ideal that all out-of-phase autocorrelation coefficients are zero. A method to generate a prime number N of perfect sequences with length N is presented. Moreover, these new sets have one more perfect sequence than Chu polyphase sets with the same maximum absolute value of periodic cross-correlation, and are slightly better for asynchronous direct sequence code division multiple access (DS-CDMA). The new sequences are more robust than Chu sequences when used with M-ary quadrature amplitude modulation (QAM). The reason for this improvement is that the new sequences are designed to be orthogonal to the M-ary QAM carriers. Other sequence transformations are also suggested and may be used to obtain many other perfect sequences with the same correlation properties. For example, the new sequences can be transformed into quadriphase sequences, also with good correlation properties.