Novel resource allocation algorithm for improving reuse one scheme performance in LTE networks

M. Hassan, E. Sourour, S. Shaaban
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引用次数: 10

Abstract

The main challenge of LTE networks is to use unitary frequency reuse factor to achieve highest possible data throughput, however it leads to a severe interference affecting active users. Several interference mitigation techniques focus on bandwidth partitioning methods to avoid cell edge interference, although they improve user's average SINR, such techniques reduce maximum achievable data rate. In this work, we introduce a novel resource allocation algorithm utilizing reuse one scheme whereas users are scheduled so that interference between adjacent cells' users served at same time in same RBs is minimized. Furthermore to meet LTE networks' low latency target, a novel algorithm is designed to obtain the optimum allocation of users with better complexity compared to well-known combinatorial optimization algorithms. Simulation results show that new proposed resource allocation algorithm improves both cell edge users' throughput and total average throughput, and also achieves improved user's average SINR than classic reuse one scheme.
一种提高LTE网络复用性能的资源分配新算法
LTE网络面临的主要挑战是使用单一频率复用系数来实现尽可能高的数据吞吐量,但它会导致严重的干扰,影响活跃用户。一些干扰缓解技术侧重于带宽划分方法,以避免小区边缘干扰,尽管它们提高了用户的平均信噪比,但这些技术降低了可实现的最大数据速率。在这项工作中,我们引入了一种新的资源分配算法,利用重用一方案,同时对用户进行调度,从而最大限度地减少在相同RBs中同时服务的相邻小区用户之间的干扰。此外,为了满足LTE网络的低延迟目标,设计了一种新的算法,与已知的组合优化算法相比,该算法具有更好的复杂度来实现用户的最优分配。仿真结果表明,该资源分配算法不仅提高了小区边缘用户吞吐量和总平均吞吐量,而且比经典的复用方案获得了更高的用户平均信噪比。
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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