Research Article
Performance of an adaptive PSO partial parallel interference canceller for CDMA communication systems
@INPROCEEDINGS{10.4108/ICST.WICON2010.8626, author={Chia-Hsin Cheng and Hsi-Chou Hsu and Yung-Fa Huang and Jyh-Horng Wen and Ling-Cheng Hsu}, title={Performance of an adaptive PSO partial parallel interference canceller for CDMA communication systems}, proceedings={5th International ICST Conference on Wireless Internet}, publisher={IEEE}, proceedings_a={WICON}, year={2010}, month={4}, keywords={CDMA partial parallel interference cancellation partial cancellation weight PSO}, doi={10.4108/ICST.WICON2010.8626} }
- Chia-Hsin Cheng
Hsi-Chou Hsu
Yung-Fa Huang
Jyh-Horng Wen
Ling-Cheng Hsu
Year: 2010
Performance of an adaptive PSO partial parallel interference canceller for CDMA communication systems
WICON
IEEE
DOI: 10.4108/ICST.WICON2010.8626
Abstract
In this paper, we propose an adaptive particle swarm optimization (APSO) based partial parallel interference cancellation scheme for direct-sequence code-decision multiple access (CDMA) communication system over frequency selective fading channels. However, the partial cancellation tries to reduce the cancellation error in parallel interference cancellation schemes due to the wrong interference estimations in the early stages. Thus, in order to reduce the computational complexity and improve the performance of the CDMA system, particle swarm optimization (PSO), which has the ability of solution to complex combinatorial optimization problem, is employed in searching the optimal weight for multiple access interference cancellation. Experiments have been carried out on the method can improved on the multiuser detection in CDMA system, the simulation results show that APSO detector can achieve the global optimization in fast convergence rate, and also show that the proposed detector is obviously superior to conventional receiver and multiuser detectors based on some optimum algorithm in terms of the multiple access interfere and the mitigation of near-far effect.