A platform for research: civil engineering, architecture and urbanism
Hybrid Successive Interference Cancellation Multi-user Detector for WCDMA Uplink System
Successive Interference Cancellation(SIC) and Parallel Interference Cancellation(PIC) are promising nonlinear multi-user detection techniques for code division multiple access(CDMA). It has previously been shown that PIC has the high Bit Error Rate(BER) diffuseness of weak users and large hardware logic resources consumption and SIC suffers mightily from a high processing delay and ranks the sequence of received users frequently. The paper presents the Hybrid SIC(HSIC) algorithm that mitigates the above disadvantages from a point of view of tradeoff between the realization and the performance. Simulation results show that the performance of HSIC is close to the SIC and is superior to the PIC for the WCDMA Uplink system under the flat Rayleigh fading channel.
Hybrid Successive Interference Cancellation Multi-user Detector for WCDMA Uplink System
Successive Interference Cancellation(SIC) and Parallel Interference Cancellation(PIC) are promising nonlinear multi-user detection techniques for code division multiple access(CDMA). It has previously been shown that PIC has the high Bit Error Rate(BER) diffuseness of weak users and large hardware logic resources consumption and SIC suffers mightily from a high processing delay and ranks the sequence of received users frequently. The paper presents the Hybrid SIC(HSIC) algorithm that mitigates the above disadvantages from a point of view of tradeoff between the realization and the performance. Simulation results show that the performance of HSIC is close to the SIC and is superior to the PIC for the WCDMA Uplink system under the flat Rayleigh fading channel.
Hybrid Successive Interference Cancellation Multi-user Detector for WCDMA Uplink System
Chen, Lianghui (author) / Hu, Hanying (author)
2006-06-01
4689724 byte
Conference paper
Electronic Resource
English
Two-Stage Multiuser Detection With Soft Interference Cancellation
British Library Conference Proceedings | 1995
|SINR, Power Efficiency, and Theoretical System Capacity of Parallel Interference Cancellation
British Library Online Contents | 2001
|Radar - Interference Cancellation for High-Frequency Surface Wave Radar
Online Contents | 2008
|