Title :
A new blind adaptive interference suppression scheme for acquisition and MMSE demodulation of DS/CDMA signals
Author :
Hwang, Ho-Chi ; Wei, Che-Ho
Author_Institution :
Comput. & Commun. Res. Lab., Ind. Technol. Res. Inst., Taiwan
fDate :
5/1/2000 12:00:00 AM
Abstract :
We present an efficient blind algorithm for estimating the code timing of a desired user in an asynchronous direct-sequence code-division multiple-access (DS/CDMA) system over frequency-nonselective-fading channels. The proposed algorithm acquires the code timing explicitly and results in a near-far resistant minimum mean-squared error (MMSE) demodulation without requiring the knowledge of the timing information, amplitudes, and transmitted symbols of all transmissions. The only required knowledge is the information of the signature sequence used by the desired transmission. Several computer simulations are done for additive white Gaussian channels, Rayleigh fading channels, and two-ray Rayleigh fading multipath channels, respectively. Numerical results show that the new algorithm is near-far resistant to the multiple-access interference (MAI) in the DS/CDMA system
Keywords :
AWGN channels; Rayleigh channels; adaptive signal processing; code division multiple access; demodulation; interference suppression; least mean squares methods; multipath channels; multiuser channels; radiofrequency interference; signal detection; spread spectrum communication; timing; DS/CDMA signals; Rayleigh fading channels; additive white Gaussian channels; algorithm; amplitudes; asynchronous direct-sequence code-division multiple-access; blind adaptive interference suppression; code timing estimation; computer simulations; efficient blind algorithm; frequency-nonselective-fading channels; linear detector; minimum mean-squared error; multiple-access interference; near-far resistant MMSE demodulation; signature sequence; transmitted symbols; two-ray Rayleigh fading multipath channels; Computer errors; Computer simulation; Demodulation; Fading; Frequency estimation; Gaussian channels; Interference suppression; Multiaccess communication; Multiple access interference; Timing;
Journal_Title :
Vehicular Technology, IEEE Transactions on