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A Unified Architecture and Key Techniques for Interworking between WiMAX and Beyond 3G/4G Systems

机译:WiMAX与Beyond 3G / 4G系统之间互通的统一架构和关键技术

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The trend of inter-connection among a multitude of different wireless access networks presents the great and bright potential business opportunities for communication operators. However, such a trend also creates a huge challenge for the network designers to manage the different radio access technologies in a cooperative mode. Therefore, this paper proposes two advanced functional architectures to support the functionalities of interworking between WiMAX and beyond 3G/4G systems, i.e., Radio Control Server (RCS) and Access Point (AP) based centralized architectures. Both control and user planes are defined in these two architectures. This paper further describes the corresponding key techniques for the interworking. These techniques can be partitioned into four categories: the key mechanisms in Generic Link Layer (GLL), the key mechanisms in Multi-Radio Resource Management (MRRM), the end-to-end Quality of Service (QoS) provision, and the heterogeneous paging. For the mechanisms in GLL, Multi-radio transmission diversity (MRTD) and Multi-Radio Multi-Hop networking (MRMH) schemes are researched. Meanwhile, Radio Access Technology (RAT) selection and load balancing schemes in aspect of MRRM are presented to improve the performance of interworking. In particular, the heterogeneous paging procedures for the convergence of WiMAX and beyond 3G/4G are proposed and evaluated, which can decrease the transmission load and save the power consumption.
机译:众多不同的无线接入网络之间的互连趋势为通信运营商带来了巨大而光明的潜在商机。然而,这种趋势也给网络设计者以协作模式管理不同的无线电接入技术提出了巨大的挑战。因此,本文提出了两种高级功能架构,以支持WiMAX与3G / 4G以后的系统之间的互通功能,即基于无线电控制服务器(RCS)和基于接入点(AP)的集中式架构。在这两种体系结构中都定义了控制平面和用户平面。本文进一步描述了互通的相应关键技术。这些技术可以分为四类:通用链路层(GLL)中的关键机制,多无线电资源管理(MRRM)中的关键机制,端到端服务质量(QoS)提供以及异构分页。对于GLL中的机制,研究了多无线电传输分集(MRTD)和多无线电多跳联网(MRMH)方案。同时,提出了MRRM方面的无线接入技术(RAT)选择和负载均衡方案,以提高互通性能。特别地,提出并评估了用于WiMAX融合以及超越3G / 4G的异构寻呼程序,可以降低传输负载并节省功耗。

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