A mathematical model for a GA-based dynamic excess bandwidth allocation algorithm for hybrid PON and wireless technology integrations for next generation broadband access networks

N. Moradpoor, G. Parr, S. McClean, B. Scotney
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引用次数: 2

Abstract

Optical and wireless integration scheme merges the high-speed and high-capacity of the optical networks with the low-cost, wide-coverage and mobility features of the wireless counterparts for the Subscriber Stations (SSs). It is also financially viable for the telecommunication service providers, particularly in the rural area where the development of the optical infrastructure or expansion of the exiting telecommunication solutions are either too costly or unreachable. In order to successfully integrate the two technologies, there are some technical concerns in terms of Architectural aspects, Physical Layer features and Media Access Control (MAC) issues. This paper is mainly focused on the MAC-related issues, particularly the dynamic excess bandwidth allocations where the hybrid Passive Optical Network (hybrid PON) is employed as a back haul solution for the wireless counterpart. A mathematical model for a Genetic Algorithm (GA)-based dynamic excess bandwidth allocation algorithm is proposed in this paper. The algorithm is proposed and implemented in order to generate the optimum/near optimum solutions for the problem of excess bandwidth allocations over the converged scenario between hybrid PON and wireless technologies.
基于遗传算法的下一代宽带接入网混合PON和无线技术集成动态剩余带宽分配算法的数学模型
光无线一体化方案将光网络的高速、大容量与无线网络的低成本、广覆盖和移动性相结合,为用户站提供服务。对于电信服务提供商来说,这在财政上也是可行的,特别是在农村地区,在那里发展光学基础设施或扩大现有电信解决办法要么费用过高,要么遥不可及。为了成功地集成这两种技术,在架构方面、物理层特性和媒体访问控制(MAC)方面存在一些技术问题。本文主要研究mac相关问题,特别是采用混合无源光网络(hybrid PON)作为无线对应物的回程解决方案时的动态多余带宽分配问题。提出了一种基于遗传算法的动态剩余带宽分配算法的数学模型。针对混合PON与无线技术融合场景下的带宽分配过剩问题,提出并实现了该算法。
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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