{"title":"多rat环境下手机从无线电链路故障中恢复的评估","authors":"D. Das, S. Saha","doi":"10.1109/IMSAA.2008.4753932","DOIUrl":null,"url":null,"abstract":"Radio link failure (RLF) is a common phenomenon in all radio access technologies like GSM or UMTS or wireless-LAN etc., when the radio channel signal strength is weak to continue with the application. RLF is a local event detected by mobile handset (or user equipment-UE) immediately and network nodes come to know later. It is also difficult to recover for the UE due to low signal. Hence, RLF has to be dealt locally by the UE. In case of RLF, 3GPP specification indicates to release of dedicated data and signaling resources which leads to discontinuation of the application. In order to avoid discontinuation of application one of the solution proposed to use other available RAT (radio access technology) from multi-RATs in the UE. A few literatures present the possibility of single-RAT or multi-RATs RLF recovery [2-11]. However, to the best of authorspsila knowledge, none of these publications present any performance evaluation for selecting an available RAT from multi-RATs environment after a RLF. In this paper, the authors have investigated the impact of three key parameters namely, RSSI (received signal strength identifier), QoS (quality of service), connection re-establishment time for RLF recovery across all available RATs. The analytical studies show that, two times increase in radio resources along with three times increase in number of mobile handsets experiencing RLF, the probability of success of RLF recovery increases significantly. Furthermore, one of the studies reveals that, when mean utilization of resources in the cells increases by 50% and the number of mobile handsets suffering from RLF increase by two times, the probability of success of RLF recovery decreases by 15%.","PeriodicalId":393607,"journal":{"name":"2008 2nd International Conference on Internet Multimedia Services Architecture and Applications","volume":"13 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2008-12-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"3","resultStr":"{\"title\":\"Evaluation of mobile handset recovery from radio link failure in a multi-RATS environment\",\"authors\":\"D. Das, S. 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引用次数: 3
摘要
无线链路故障(Radio link failure, RLF)是在GSM、UMTS、无线局域网等无线接入技术中,当无线信道信号强度较弱时无法继续应用的一种常见现象。RLF是由手机(或用户设备- ue)立即检测到的本地事件,稍后网络节点才会知道。由于信号较低,用户终端也难以恢复。因此,RLF必须由欧盟在当地处理。在RLF情况下,3GPP规范指示释放专用数据和信令资源,导致应用程序终止。为了避免应用中断,提出了一种解决方案,即从终端的多个无线接入设备中使用其他可用的无线接入技术。少数文献提出了单鼠或多鼠RLF恢复的可能性[2-11]。然而,据作者所知,这些出版物中没有一个对RLF后从多RAT环境中选择可用的RAT进行任何性能评估。在本文中,作者研究了三个关键参数的影响,即RSSI(接收信号强度标识符),QoS(服务质量),连接重建时间在所有可用的rat中恢复RLF。分析研究表明,无线电资源增加两倍,经历RLF的手机数量增加三倍,RLF恢复成功的概率显著增加。此外,其中一项研究表明,当蜂窝中资源的平均利用率增加50%,遭受RLF的手机数量增加两倍时,RLF成功恢复的概率降低15%。
Evaluation of mobile handset recovery from radio link failure in a multi-RATS environment
Radio link failure (RLF) is a common phenomenon in all radio access technologies like GSM or UMTS or wireless-LAN etc., when the radio channel signal strength is weak to continue with the application. RLF is a local event detected by mobile handset (or user equipment-UE) immediately and network nodes come to know later. It is also difficult to recover for the UE due to low signal. Hence, RLF has to be dealt locally by the UE. In case of RLF, 3GPP specification indicates to release of dedicated data and signaling resources which leads to discontinuation of the application. In order to avoid discontinuation of application one of the solution proposed to use other available RAT (radio access technology) from multi-RATs in the UE. A few literatures present the possibility of single-RAT or multi-RATs RLF recovery [2-11]. However, to the best of authorspsila knowledge, none of these publications present any performance evaluation for selecting an available RAT from multi-RATs environment after a RLF. In this paper, the authors have investigated the impact of three key parameters namely, RSSI (received signal strength identifier), QoS (quality of service), connection re-establishment time for RLF recovery across all available RATs. The analytical studies show that, two times increase in radio resources along with three times increase in number of mobile handsets experiencing RLF, the probability of success of RLF recovery increases significantly. Furthermore, one of the studies reveals that, when mean utilization of resources in the cells increases by 50% and the number of mobile handsets suffering from RLF increase by two times, the probability of success of RLF recovery decreases by 15%.