A Resource Allocation Scheme Based on Memetic Algorithm for D2D Communication

Yongqiang Xia, Luping Tang, Hairui Wang, Yijun Wang, Jialong Hou
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Abstract

In this paper, we propose a new resource allocation scheme based on improved memetic algorithm to solve the complex interference problem caused by multiple device-to-device (D2D) users multiplexing the channel resources occupied by multiple cellular users. Firstly, we initialize the total channel multiplexing strategies of D2D users according to the channel state information. Then, the global search and local search of the improved memetic algorithm are used to optimize these initial total channel multiplexing strategies. The optimization is accompanied by the dynamic control of D2D user transmission power, and the global optimal solution is found through iteration. The purpose is to maximize the system capacity while ensuring the minimum information transmission rate of each cellular user. Simulation results show that the convergence rate and system capacity of the proposed scheme are significantly improved compared with the existing methods, and the complexity of the algorithm is lower.
基于模因算法的D2D通信资源分配方案
本文提出了一种新的基于改进模因算法的资源分配方案,以解决多设备对设备(D2D)用户复用多个蜂窝用户占用的信道资源所造成的复杂干扰问题。首先,根据信道状态信息初始化D2D用户的总信道复用策略;然后,利用改进模因算法的全局搜索和局部搜索对初始全信道复用策略进行优化。优化过程伴随着D2D用户传输功率的动态控制,通过迭代求出全局最优解。其目的是在保证每个蜂窝用户的最小信息传输速率的同时,使系统容量最大化。仿真结果表明,与现有方法相比,所提方案的收敛速度和系统容量均有显著提高,且算法复杂度较低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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