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QoS and radio resource management in 3G and beyond systems

机译:3G及超越系统的QoS和无线电资源管理

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The provision of heterogeneous network topologies is conceptually a very attractive notion; however, it is certainly a challenge to the network designer. In particular, the available radio resources of coupled access networks will have to be managed jointly, up to the degree allowed by the coupling mechanism. Targeted is an optimum solution in terms of throughput, cost per packet, development and deployment cost, etc. radio resource management strategies are responsible for an utmost efficient utilization of the air interface resources in the radio access network (RAN). Any standalone wireless systems or heterogeneous hybrids thereof, rely on radio resource management strategies to guarantee a certain prior agreed QoS, to maintain the planned coverage area, to offer high capacity, etc. Without them, the most efficient physical transmission system coupled into the most sophisticated IP core network would fail. This presentation starts with a description of the RRM functionalities in the context of a single radio access technology (e.g. GERAN, UMTS, WLAN) together with specific RRM algorithms to provide more insight into the problem as well as insight into feasible solutions. Then, it will describe the added functionalities arising in a heterogeneous RANs context (e.g. GERAN plus UMTS plus WLAN in the same service area) and will provide a range of algorithm examples accompanied by illustrative performance results. Aspects related to network architectures, interworking capabilities and implementation aspects will also be discussed.
机译:提供异构网络拓扑的概念性是一个非常有吸引力的概念;但是,它肯定是网络设计师的挑战。特别地,必须共同地管理耦合接入网络的可用无线电资源,直到耦合机构允许的程度。目标是在吞吐量,每包成本,开发和部署成本方面的最佳解决方案。无线电资源管理策略负责无线电接入网络中的空中接口资源的最大有效利用率(RAN)。任何独立的无线系统或其异质混合动力,依靠无线电资源管理策略来保证某些先前商定的QoS,以维护计划的覆盖面积,提供高容量等,提供高容量等,最有效的物理传输系统耦合到最多复杂的IP核心网络将失败。该演示始于单个无线电接入技术(例如Geran,UMTS,WLAN)的上下文中的RRM功能的描述与特定的RRM算法一起提供更多地洞察问题以及对可行解决方案的洞察力。然后,它将描述异构RAN上下文中产生的附加功能(例如,在同一服务区域中的GERAN PLUS UMTS加WLAN),并将提供一系列算法示例,并通过说明性绩效结果伴随。还将讨论与网络架构,互通能力和实现方面相关的方面。

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