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首页> 外文期刊>Wireless personal communications: An Internaional Journal >An Analytical Evaluation Approach for Control Plane Operations of a Multi-RAT Mobility Procedures in a User Equipment
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An Analytical Evaluation Approach for Control Plane Operations of a Multi-RAT Mobility Procedures in a User Equipment

机译:用户设备中多RAT移动性过程的控制平面操作的分析评估方法

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It is evident that the present and future deployment of multiple radio access technology (RAT), e.g., WLAN, LTE, WiMAX, etc., will advent multi-RAT user equipment (UE). There will be four major challenges due to multi-RATs existence, i.e., fast-reliable signaling, fast-reliable mobility with Quality of Service (QoS), security and reasonable cost. In this paper we deal with performance modeling signaling plane. Most of the reported works present signaling performance between two RATs e.g., EUTRAN to CDMA2000 etc., and vice versa (or single RAT scenarios e.g., UMTS to UMTS). To the best of our knowledge, there has been no analytical modeling approach available for performance analysis of entire control plane operations in a multi-RAT UE, right from cell search to completion of mobility procedures in case of more than two RATs, i.e., a generic model for N-number of RATs. This paper proposes a generic Discrete Time Markov Chain (DTMC) based analytical method for evaluation of control plane operations for multi-RAT mobility procedures. Using the case of UE initiated multi-RAT mobility procedures, for presenting our analytical model we propose an algorithm, integrating and extending some of the known approaches which were mostly limited to single RAT. For this algorithm a generic analytical relationship is derived between time taken by each signaling process in each layer involved in the multi-RAT mobility procedure and the probability of success of the same. Finally, using the above analytical model a case study is presented where the performance of UE initiated mobility procedure for WLAN interworking with LTE supported by Proxy Mobile IP (PMIP) and Media Independent Handover (MIH). With our analytical model, results show that, for a target LTE cell, the increase in probability of successful completion of mobility procedure is 11% from existing procedures, For target WLAN cell, the same is around 9%. Notably, the results show how our analytical approach helps in modeling most of the control plane operations in multi-RAT mobility procedures, in a holistic manner.
机译:显而易见的是,例如WLAN,LTE,WiMAX等的多无线接入技术(RAT)的当前和未来部署将出现多RAT用户设备(UE)。由于存在多个RAT,将面临四个主要挑战,即,快速可靠的信令,具有服务质量(QoS)的快速可靠的移动性,安全性和合理的成本。在本文中,我们处理性能建模信令平面。所报告的大多数工作都呈现了两个RAT之间的信令性能,例如EUTRAN至CDMA2000等,反之亦然(或单个RAT场景,例如UMTS至UMTS)。据我们所知,目前尚无分析建模方法可用于多RAT UE中整个控制平面操作的性能分析,从超过两个RAT(例如,一个RAT)的小区搜索到完成移动性过程N个RAT的通用模型。本文提出了一种基于通用离散时间马尔可夫链(DTMC)的分析方法,用于评估多RAT移动性程序的控制平面操作。以UE发起的多RAT移动性程序为例,为介绍我们的分析模型,我们提出了一种算法,集成并扩展了一些已知方法,这些方法大多限于单个RAT。对于该算法,在多RAT移动性过程所涉及的每一层中的每个信令过程所花费的时间与该成功的概率之间得出一般的分析关系。最后,使用上述分析模型进行案例研究,其中由代理移动IP(PMIP)和媒体独立切换(MIH)支持的,UE启动的WLAN与LTE互通的移动性规程的性能。根据我们的分析模型,结果表明,对于目标LTE小区,成功完成移动性程序的可能性比现有程序增加11%;对于目标WLAN小区,其完成率大约为9%。值得注意的是,结果表明我们的分析方法如何以整体方式帮助对多RAT移动性程序中的大多数控制平面操作进行建模。

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