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On the impact of mobile node radio architectures on heterogeneous wireless network standards: A performance analysis of LTE-eHRPD mobility

机译:关于移动节点无线电架构对异构无线网络标准的影响:LTE-eHRPD移动性的性能分析

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With the availability of various heterogeneous radio access technology standards, how to support multiple heterogeneous radio interfaces in a single device and provide seamless mobility between them is one of key issues in the design and implementation of modern multi-radio mobile devices (like smartphones). The radio architectures of such multi-radio mobile devices can have great impacts on achievable mobility performance. This paper presents a case study that investigates into the impacts of radio architecture design on mobility performance achievable in wireless standard implementation, with a particular focus on heterogeneous radio access mobility between Long Term Evolution (LTE) and enhanced High Rate Packet Data (eHRPD). We present an in-depth overview of handover procedures in standards and their achievable performance enhancements from the perspective of device radio architectures. We consider three radio architectures (single transmission/ reception, single transmission dual reception, and dual transmission/reception architectures) and provide a performance analysis to compare the three architectures in terms of handover delay and energy consumption. We also discuss supportability for advanced flow-precision mobility under the different radio architectures, and present a comparison with another vertical handover technology.
机译:随着各种异构无线电接入技术标准的可用性,如何在单个设备中支持多个异构无线电接口并在它们之间提供无缝移动性是现代多无线电移动设备(如智能手机)的设计和实现中的关键问题之一。这种多无线电移动设备的无线电体系结构可能对可实现的移动性能产生很大影响。本文提供了一个案例研究,调查了无线体系结构设计对无线标准实现中可达到的移动性性能的影响,特别关注了长期演进(LTE)和增强型高速率分组数据(eHRPD)之间的异构无线接入移动性。我们从设备无线电体系结构的角度对标准中的切换过程及其可实现的性能增强进行了深入的概述。我们考虑了三种无线电体系结构(单发送/接收,单发送双接收和双发送/接收体系结构),并提供了性能分析,以比较三种体系结构的切换延迟和能耗。我们还将讨论不同无线电架构下高级流精度移动性的可支持性,并与另一种垂直切换技术进行比较。

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