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Service class resource management for green wireless-optical broadband access networks (WOBAN)

机译:绿色无线宽带接入网络(WOBAN)的服务类资源管理

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摘要

Exponential growth in the volume of wireless data, boosted by the growing popularity of mobile devices, such as smartphone and tablets, has forced the telecommunication industries to rethink the way networks are currently designed, and to focus on the development of high-capacity mobile broadband networks. In response to this challenge, researchers have been working toward the development of an integrated wireless optical broadband access network. Two major candidate technologies, which are currently known for their high capacity as well as quality of service (QoS) for multimedia traffic, are passive optical networks (PON), and fourth generation (4G) wireless networks. PON is a wired access technology, well known for its cost efficiency and high capacity; whereas 4G is a wireless broadband access technology, which has achieved broad market acceptance because of its ease of deployment, ability to offer mobility, and its cost efficiency. Integration of PON and 4G technologies in the form of wireless-optical broadband access networks, offers advantages, such as extension of networks in rural areas, support for mobile broadband services, and quick deployment of broadband networks. These two technologies however, have different design architectures for handling broadband services that require quality of service. For example, 4G networks use traffic classification for supporting different QoS demands, whereas the PON architecture has no such mechanism to differentiate between types of traffic. These two technologies also differ in their power saving mechanisms. In this paper, we propose a service class mapping for the integrated PON-4G network, which is based on the M/G/1 queuing model. We also propose a class-based power saving mechanism which significantly improves the sleep period for the integrated optical wireless unit, without compromising support for QoS. Results indicate that our proposed class-based power saving scheme reduces power consumption by up to 80\% , and maintains the QoS within the requirements of the service level agreement.
机译:受智能手机和平板电脑等移动设备日益普及的推动,无线数据量呈指数级增长,这迫使电信行业重新思考当前网络的设计方式,并专注于大容量移动宽带的发展网络。为了应对这一挑战,研究人员一直在努力开发集成的无线光宽带接入网络。当前以其高容量以及多媒体流量的服务质量(QoS)而著称的两种主要候选技术是无源光网络(PON)和第四代(4G)无线网络。 PON是一种有线接入技术,以其高性价比和高容量而著称。而4G是一种无线宽带接入技术,由于其易于部署,提供移动性以及其成本效益而获得了广泛的市场认可。以无线宽带接入网络的形式集成PON和4G技术具有许多优势,例如在农村地区扩展网络,支持移动宽带服务以及快速部署宽带网络。但是,这两种技术具有不同的设计架构,用于处理需要服务质量的宽带服务。例如,4G网络使用流量分类来支持不同的QoS要求,而PON体系结构则没有这种机制来区分流量类型。这两种技术在节能机制上也有所不同。在本文中,我们提出了基于M / G / 1排队模型的集成PON-4G网络的服务类别映射。我们还提出了一种基于类的节能机制,该机制可显着改善集成光学无线单元的睡眠时间,而不会损害对QoS的支持。结果表明,我们提出的基于类的节能方案可将功耗降低多达80%,并在服务水平协议的要求范围内保持QoS。

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