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A complexity-performance-balanced multiuser detector based on artificial fish swarm algorithm for DS-UWB systems in the AWGN and multipath environments

机译:AWGN和多径环境中基于人工鱼群算法的DS-UWB系统复杂度-性能平衡的多用户检测器

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In this article, an efficient multiuser detector based on the artificial fish swarm algorithm (AFSA-MUD) is proposed and investigated for direct-sequence ultrawideband systems under different channels: the additive white Gaussian noise channel and the IEEE 802.15.3a multipath channel. From the literature review, the issues that the computational complexity of classical optimum multiuser detection (OMD) rises exponentially with the number of users and the bit error rate (BER) performance of other sub-optimal multiuser detectors is not satisfactory, still need to be solved. This proposed method can make a good tradeoff between complexity and performance through the various behaviors of artificial fishes in the simplified Euclidean solution space, which is constructed by the solutions of some sub-optimal multiuser detectors. Here, these sub-optimal detectors are minimum mean square error detector, decorrelating detector, and successive interference cancellation detector. As a result of this novel scheme, the convergence speed of AFSA-MUD is greatly accelerated and the number of iterations is also significantly reduced. The experimental results demonstrate that the BER performance and the near–far effect resistance of this proposed algorithm are quite close to those of OMD, while its computational complexity is much lower than the traditional OMD. Moreover, as the number of active users increases, the BER performance of AFSA-MUD is almost the same as that of OMD.
机译:在本文中,提出了一种基于人工鱼群算法(AFSA-MUD)的高效多用户检测器,并研究了在不同信道下的直接序列超宽带系统:加性高斯白噪声信道和IEEE 802.15.3a多径信道。从文献回顾来看,经典最优多用户检测(OMD)的计算复杂度随用户数量呈指数增长,而其他次优多用户检测器的误码率(BER)性能却不能令人满意,这一问题仍然需要解决。解决了。通过简化的欧几里得解空间中的人工鱼的各种行为,该方法可以在复杂性和性能之间做出良好的权衡,而简化的欧几里得解空间是由一些次优的多用户检测器的解决方案构成的。在此,这些次优检测器是最小均方误差检测器,去相关检测器和连续干扰消除检测器。这种新颖方案的结果是,大大加快了AFSA-MUD的收敛速度,并且迭代次数也大大减少了。实验结果表明,该算法的误码性能和远近抗力与OMD相当,而计算复杂度却比传统OMD低。此外,随着活动用户数量的增加,AFSA-MUD的BER性能几乎与OMD相同。

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