Novel 5G and B5G Network Architecture and Protocol for Multi SIM Devices

Ramkumar Thirumalli Sureshsah, Mohanraja Balasubramaniam, D. Das
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引用次数: 1

Abstract

User Equipment (UE) which has Multi SIM Multi Standby (MSMS) capability contains two or more Subscriber Identity Module (SIM) cards, in which each SIM card is associated with one Protocol Stack. The SIM cards could belong to same or different network service provider. Generally, MSMS UEs are built with single Radio Frequency Integrated Circuit (RFIC), time shared between activities of protocol stacks. Based on user preference, one of the SIMs associates with Internet service and enters Packet Switching (PS) Connected mode, while the other SIM(s) are in idle mode monitoring paging channel. Due to limitation of single RFIC, active PS connection has to be intermittently paused to grant idle mode stack(s) to utilize RFIC for monitoring its paging channel or to perform high priority activity. This intermittent pause on PS connection is referred as blackouts. Blackouts results in degradation of throughput performance and wastage of network's Physical Channel Resources (PCR). In the UEs available in market, MSMS capability is implemented without any protocol between UE and Network to manage blackouts, as there are no 3GPP standards for them yet. This makes UE specific implementation inefficient. In this paper, we propose a novel network architecture and underlying protocol to improve the throughput performance of MSMS UEs and reduce network's PCR wastage. In the proposed network architecture, a novel entity called Access Network Coordinator (ANC) is introduced to inter-connect network operators and exchange information to achieve coordination for paging and signaling procedures in MSMS UEs. This reduces blackout duration in PS connected protocol stack and inherently improves throughput performance of MSMS UEs. Since the ongoing activity on other SIM(s) is known to network, it shall refrain from scheduling resources during this period to avoid resource wastage. The analysis and simulation provided reveals ∼49% reduction in blackout duration and up to 84% improvement in throughput on PS activity with the solution proposed, in comparison with existing solutions for Triple SIM Triple Standby (TSTS) UEs.
面向多SIM卡设备的新型5G和B5G网络架构与协议
具有多SIM多待机(MSMS)功能的用户设备(UE)包含两个或多个用户身份模块(SIM)卡,其中每个SIM卡与一个协议栈相关联。SIM卡可能属于同一或不同的网络服务提供商。一般来说,MSMS ue是用单个射频集成电路(RFIC)构建的,在协议栈的活动之间共享时间。根据用户喜好,其中一张SIM卡与Internet业务关联,进入PS (Packet Switching) Connected模式,另一张SIM卡处于空闲模式,监控分页通道。由于单个RFIC的限制,活动PS连接必须间歇性地暂停以授予空闲模式堆栈,以便利用RFIC监视其分页通道或执行高优先级活动。这种断断续续的PS连接暂停被称为停电。中断会导致吞吐量性能的下降和网络物理信道资源的浪费。在市场上可用的终端中,由于没有3GPP标准,因此在没有任何协议的情况下实现了MSMS功能来管理停电。这使得特定于UE的实现效率低下。在本文中,我们提出了一种新的网络架构和底层协议,以提高MSMS ue的吞吐量性能并减少网络的PCR浪费。在提出的网络体系结构中,引入了一种称为接入网协调器(ANC)的新实体,用于连接网络运营商并交换信息,以实现对MSMS ue中的寻呼和信令过程的协调。这减少了PS连接协议栈中的停电持续时间,并从本质上提高了MSMS ue的吞吐量性能。由于网络知道其他SIM卡上正在进行的活动,因此在此期间应避免调度资源,以免造成资源浪费。所提供的分析和仿真显示,与现有的三SIM三待机(TSTS) ue解决方案相比,所提出的解决方案可将停电持续时间减少约49%,并将PS活动吞吐量提高高达84%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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