Overloading Scheme for Cellular DS-CDMA using Quasi-Orthogonal Sequences and Iterative Interference Cancellation Receiver

Overloading is a technique to accommodate more number of users than the spreading factor N. This is a bandwidth efficient scheme to increase the number users in a fixed bandwidth. One of the efficient schemes to overload a CDMA system is to use two sets of orthogonal signal waveforms (O/O). The first set is assigned to the N users and the second set is assigned to the additional M users. An iterative interference cancellation technique is used to cancel interference between the two sets of users. In this paper, the performance of an overloading scheme in which the first N users are assigned Walsh-Hadamard orthogonal codes and extra users are assigned the same WH codes but overlaid by a fixed (quasi) bent sequence [11] is evaluated. This particular scheme is called QuasiOrthogonal Sequence (QOS) O/O scheme, which is a part of cdma2000 standard [12] to provide overloading in the downlink using single user detector. QOS scheme are balance O/O scheme, where the correlation between any set-1 and set-2 users are equalized. The allowable overload of this scheme is investigated in the uplink on an AWGN and Rayleigh fading channels, so that the uncoded performance with iterative multistage interference cancellation detector remains close to the single user bound. It is shown that this scheme provides 19% and 11% overloading with SDIC technique for N= 16 and 64 respectively, with an SNR degradation of less than 0.35 dB as compared to single user bound at a BER of 0.00001. But on a Rayleigh fading channel, the channel overloading is 45% (29 extra users) at a BER of 0.0005, with an SNR degradation of about 1 dB as compared to single user performance for N=64. This is a significant amount of channel overloading on a Rayleigh fading channel. Keywords—DS-CDMA, Iterative Interference Cancellation Orthogonal codes, Overloading.

[1]  D. P. Taylor,et al.  Vector assignment scheme for M+N users in N-dimensional global additive channel , 1992 .

[2]  Sergio Verdu,et al.  Multiuser Detection , 1998 .

[3]  Fumiyuki Adachi,et al.  Wideband DS-CDMA for next-generation mobile communications systems , 1998, IEEE Commun. Mag..

[4]  S. Chakrabarti,et al.  Performance Evaluation of Orthogonal/Scrambled-Orthogonal Overloaded DS-CDMA System , 2007, 2007 IFIP International Conference on Wireless and Optical Communications Networks.

[5]  Vijay K. Bhargava,et al.  New results on low complexity detectors for over-saturated CDMA systems , 2001, GLOBECOM'01. IEEE Global Telecommunications Conference (Cat. No.01CH37270).

[6]  Marc Moeneclaey,et al.  Critical load of oversaturated systems with multistage successive interference cancellation , 2003, The 57th IEEE Semiannual Vehicular Technology Conference, 2003. VTC 2003-Spring..

[7]  Marc Moeneclaey,et al.  Multiple access using two sets of orthogonal signal waveforms , 2000, IEEE Communications Letters.

[8]  Marc Moeneclaey,et al.  DS/CDMA with two sets of orthogonal spreading sequences and iterative detection , 2000, IEEE Communications Letters.

[9]  G S Sanyal A New Overloading Scheme for DS-CDMA System , 2006 .

[10]  P. Vijay Kumar,et al.  Quasi-orthogonal sequences for code-division multiple-access systems , 2000, IEEE Trans. Inf. Theory.