宽带无线网络中的干扰最小化与动态子载波分配

Ju Wang, Jonathan C. L. Liu
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引用次数: 3

摘要

在当今的宽带无线接入网中,有效的信道分配是充分利用多载波物理链路中信号分集的关键。越来越多的证据表明,4G和下一代系统将利用两种相反类型的访问方法,一种使用集中控制方法,另一种使用分布式方法。本文研究了宽带无线网络中的分布式信道分配问题,将其表述为非线性优化问题。讨论了3G和4G网络中多载波无线接口的信号特性,以理解信道分配问题的复杂性。提出了一种基于粒子群搜索的分布式启发式算法。分布式方法允许用户站在最小的基站干预下快速切换子载波。本文提出了一种有效的方法来分配大量的信道,同时尽量减少可能的干扰。针对这些新的问题设置,我们进行了大量的数值实验来评估几种版本的分布式信道分配算法。结果表明,在高维搜索空间下,基于粒子群的方法收敛速度快。所提出的技术最终将使真正的移动蒸视频/音频体验随时随地,这将对商业,娱乐和人们的生活质量产生巨大影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Interference Minimization and Dynamic Sub-Carrier Allocation in Broadband Wireless Networks
Efficient channel allocation is the key to fully exploit the signal diversity presented in the multi-carrier physical link in today's broadband wireless access networks. There are mounting evidences that the 4G and future-generation systems will take advantage of two opposite types of access methods, one using centralized control method and the other using a distributed approach. The authors study the distributed channel allocation problem in this article, formulated as a non-linear optimization problem, in broadband wireless networks. The signal properties of the multi-carrier radio interface in 3G and 4G networks are discussed to comprehend the complexity of the channel allocation problem. The authors propose a novel distributed heuristic algorithm based on the particle-swarm searching method. The distributed approach allows user stations to quickly switch sub-carriers with minimum intervention from the base station. The work presented in this paper shows an effective method to allocate a large number of channels while minimizing the possible interference. Extensive numerical experiments are conducted to evaluate several versions of distributed channel allocation algorithm for these new problem settings. The authors' results show that PSO-based method converges quickly in all our numerical experiments despite the high-dimensional searching space. The proposed technologies will eventually allow the true mobile steaming video/audio experience anywhere and anytime, which will have the huge impact to business, entertainment and people's quality of life.
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