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Adaptive Hybrid Genetic Algorithm Parallel Interference Cancellation High Rate Multi-user Detection For Dual Rate W-cdma Mobile Communications

机译:双速率W-cdma移动通信的自适应混合遗传算法并行干扰消除高速率多用户检测

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Adaptive hybrid genetic algorithm concatenated with improved parallel interference cancellation, i.e. adaptive hybrid genetic algorithm parallel interference cancellation (AHGAPIC) was proposed. A study is conducted on the application of AHGAPIC to soft decoding high rate multi-user detection with diversity reception for dual-rate wideband DS-CDMA spread spectrum communications, aiming to mitigate the effect of multiple access interference. The relevant research has revealed that the local search capability of hybrid genetic algorithm (HGA) is still not good enough. Therefore, first, two evolutionary operations, i.e. inversion and insertion are merged into HGA to constitute a novel algorithm. With its moderate local search capability, this new algorithm can search for the global optimum region according to the information entropy, and then it is made adaptively vary its probabilities of crossover and mutation depending on the fitness values of the solutions to form the adaptive hybrid genetic algorithm (AHGA). Second, AHGA is utilized to effectively identify the better and better binary string to maximize the log-likelihood function of dual-rate multi-user detection. As AHGA converges to the optimum region, the control factor of the improved parallel interference cancellation (IPIC) detector is set to be the ratio of the average fitness value to the maximum fitness value of the population of AHGA. Finally, equipped with both the control factor and the binary string with the maximum fitness value as the initial data, the IPIC detector can rapidly find out the approximately optimum soft decoding vector. Then, it can obtain the approximately global optimum estimate point on the basis of the soft decoding rule, corresponding to the transmitted data bits. A lower bound of computational complexity has been achieved through simulations and qualitative analyses. The property of the proposed algorithm to converge rapidly leads to lower computational complexity. Emulation results have shown that the AHGAPIC soft decoding high rate multi-user detector is superior to other suboptimum detectors considered in this paper in terms of two points. They are the mitigation of multiple access interference and the resistance to near-far effects. Its performance is close to the sequential group optimum multi-user detector but with a shorter time delay.
机译:提出了一种具有改进的并行干扰消除技术的自适应混合遗传算法,即自适应混合遗传算法并行干扰消除技术(AHGAPIC)。针对双速率宽带DS-CDMA扩频通信中AHGAPIC在带分集接收的软解码高速率多用户检测中的应用进行了研究,旨在减轻多址干扰的影响。相关研究表明,混合遗传算法(HGA)的局部搜索能力还不够好。因此,首先,将两个进化操作,即反演和插入合并到HGA中,以构成一种新颖的算法。该算法具有中等的局部搜索能力,可以根据信息熵搜索全局最优区域,然后根据解的适应度自适应地改变交叉和变异的概率,从而形成自适应混合遗传算法。算法(AHGA)。其次,利用AHGA有效地识别越来越好的二进制字符串,以最大化双速率多用户检测的对数似然函数。当AHGA收敛到最佳区域时,将改进的并行干扰消除(IPIC)检测器的控制因子设置为AHGA人口的平均适应值与最大适应值之比。最终,IPIC检测器同时具备控制因子和具有最大适应性值的二进制字符串作为初始数据,可以快速找出近似最佳的软解码矢量。然后,它可以基于软解码规则获得与所发送的数据比特相对应的近似全局最优估计点。通过模拟和定性分析已经达到了较低的计算复杂度。所提出算法快速收敛的性质导致较低的计算复杂度。仿真结果表明,AHGAPIC软解码高速率多用户检测器在两点方面优于本文考虑的其他次优检测器。它们是减轻多址访问干扰和抵抗近距离影响的一种方法。它的性能接近于顺序组最佳多用户检测器,但延时较短。

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