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首页> 外文期刊>IEEE Wireless Communications >ALL-IP 4G NETWORK ARCHITECTURE FOR EFFICIENT MOBILITY AND RESOURCE MANAGEMENT
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ALL-IP 4G NETWORK ARCHITECTURE FOR EFFICIENT MOBILITY AND RESOURCE MANAGEMENT

机译:用于高效移动性和资源管理的全IP 4G网络架构

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摘要

In this article, we investigate 4G network architecture and consider two underlying layers: PHY and MAC. We compare two models of wireless access network: pure all-IP and subnet based networks. The pure all-IP model is simple and cost-efficient but causes implementation issues of mobility management and resource coordination. In contrast, the subnet based network enables layer 2 and layer 3 handoffs to be executed independently, deploying several access points under an access router. Further, to handle various cases efficiently according to traffic class and mobility, we present an advanced model of a hierarchical cellular system that combines multiple access techniques of OFDMA and FH-OFDMA with microcells and macrocells. Finally, as an integrated approach to support diverse QoS requirements, we consider an IP-triggered resource allocation strategy (ITRAS) that exploits IntServ and DiffServ of the network layer to interwork with channel allocation and multiple access of MAC and PHY layers, respectively. These cross layer approaches shed light on designing a QoS support model in a 4G network that cannot be handled properly by a single layer based approach
机译:在本文中,我们将研究4G网络架构,并考虑两个底层:PHY和MAC。我们比较了两种无线接入网络模型:纯全IP网络和基于子网的网络。纯全IP模型既简单又具有成本效益,但会导致移动性管理和资源协调的实施问题。相反,基于子网的网络使第2层和第3层切换能够独立执行,从而在接入路由器下部署了多个接入点。此外,为了根据业务类别和移动性有效地处理各种情况,我们提出了一种分层蜂窝系统的高级模型,该模型将OFDMA和FH-OFDMA的多种接入技术与微蜂窝和宏蜂窝相结合。最后,作为支持各种QoS要求的集成方法,我们考虑采用IP触发的资源分配策略(ITRAS),该策略利用网络层的IntServ和DiffServ分别与信道分配以及MAC和PHY层的多址互通。这些跨层方法为设计4G网络中的QoS支持模型提供了启示,而基于单层的方法无法正确处理该模型

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