Efficient Protocol for Performance Enhancement of B4G and 5G Networks for MultiSIM Deployment

Lalit Pathak, T. Vrind, Diwakar Sharma, D. Das
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引用次数: 6

Abstract

MultiSIM feature offers convenience to a user by providing connection to multiple operators for accessing different services through different SIMs with a User Equipment (UE). Generally, MultiSIM is deployed as a Dual Subscriber-Identity-Module (SIM) Dual Standby (DSDS) feature; sharing transceiver with secondary SIM (SIM-2), while primary SIM (SIM-I) is on an active data session with Operator-1. The sharing of transceiver (called tune away), causes inactivity on the Radio Link (RL) between UE and eNodeB (eNB) leading the Physical Channel Resource (PCR) wastage for Operator −1. Multi SIM Multi Standby (MSMS) feature is an enhancement over DSDS to scale up the usage with three or more SIMs with single transceiver. With MSMS deployment, PCR wastage will scale up as compared to DSDS, as it additionally introduces more challenges, like (a) increased number of tune away events due to more than two SIMs, (b) increase in tune away duration due to a cascading effect of simultaneous and back-to-back high priority procedures on secondary SIMs. MSMS will thus affect by increasing the backhaul retransmissions and buffering at Operator −1. To overcome the above challenges and to ensure MSMS is a reality soon, to the best of our knowledge for the first time, this paper proposes a new signaling via Non Access Stratum (NAS) layer, from UE to Evolved Packet Core (EPC) to indicate tune away when the duration of tune away spans several seconds. We propose to apply NAS signaling in a scenario specific manner to address tune away events. Through extensive simulation derived from mathematical modeling and measurements obtained from test bed with commercial UEs, the results reveal that for three SIMs in cascaded scenarios, with the proposed solution, the PCR wastage is reduced to only 7.9 % against 48.5% and eNB buffering reduced by 95% in comparison to the available literature for a practical deployment.
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用于MultiSIM部署的B4G和5G网络性能增强的高效协议
多sim卡功能为用户提供了方便,通过用户设备(UE)的不同sim卡连接多个运营商访问不同的服务。一般情况下,MultiSIM被部署为双用户身份模块(Dual Subscriber-Identity-Module, SIM)双待机(Dual Standby, DSDS)特性;与备用SIM卡(SIM-2)共享收发器,而主SIM卡(SIM- 1)与运营商-1进行活动数据会话。收发信机的共享(称为tune away)会导致UE和eNB之间的RL不活跃,导致Operator−1的物理信道资源(Physical Channel Resource)浪费。多SIM多待机(MSMS)功能是对DSDS的增强,可以扩展使用三个或更多的SIM卡和单个收发器。随着MSMS的部署,与DSDS相比,PCR浪费将扩大,因为它额外引入了更多的挑战,如(a)由于两个以上的sim卡而增加了调离事件的数量,(b)由于二级sim卡上同时和背对背高优先级程序的级联效应而增加了调离持续时间。因此,MSMS将通过增加回程重传和运营商−1的缓冲来影响。为了克服上述挑战并确保MSMS很快成为现实,据我们所知,本文首次提出了一种新的通过非接入层(NAS)层的信令,从UE到进化分组核心(EPC),当调谐持续时间跨越几秒钟时指示调谐。我们建议以特定场景的方式应用NAS信令来处理调离事件。通过从商业ue测试平台获得的数学建模和测量结果进行的广泛模拟,结果显示,与实际部署的现有文献相比,对于级联场景中的三个SIMs,使用所提出的解决方案,PCR浪费减少到7.9%,而不是48.5%,eNB缓冲减少了95%。
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