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首页> 外文期刊>IEEE transactions on mobile computing >Measuring and Understanding RRC State Machine Optimization in Light of Recent Advancements
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Measuring and Understanding RRC State Machine Optimization in Light of Recent Advancements

机译:根据最新进展衡量和了解RRC状态机优化

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Broadband mobile networks utilize a radio resource control (RRC) state machine to allocate scarce radio resources. Current implementations introduce high latencies and cross-layer degradation. Recently, the RRC enhancements, continuous packet connectivity (CPC), and the enhanced forward access channel (Enhanced FACH), have emerged in UMTS. We measure the availability and performance of these enhancements on a network serving a market with a population in the millions. We demonstrate that these enhancements offer significant reductions in latency, mobile device energy consumption, and improved end user experience. We develop new over-the-air measurements that resolve existing limitations in measuring RRC parameters. We find CPC provides significant benefits with minimal resource costs, prompting us to rethink past optimization strategies. We examine the cross-layer performance of CPC and Enhanced FACH, concluding that CPC provides reductions in mobile device energy consumption for many applications. While the performance increase of HS-FACH is substantial, cross-layer performance is limited by the legacy uplink random access channel (RACH), and we conclude full support of Enhanced FACH is necessary to benefit most applications. Given that UMTS growth will exceed LTE for several more years and the greater worldwide deployment of UMTS, our quantitative results should be of great interest to network operators adding capacity to these networks. Finally, these results provide new insights for application developers wishing to optimize performance with these RRC enhancements.
机译:宽带移动网络利用无线电资源控制(RRC)状态机来分配稀缺的无线电资源。当前的实现方式引入了高等待时间和跨层降级。最近,UMTS中出现了RRC增强功能,连续分组连接(CPC)和增强的前向访问信道(Enhanced FACH)。我们在为数百万人口市场服务的网络上评估这些增强功能的可用性和性能。我们证明,这些增强功能可以显着减少延迟,移动设备能耗以及改善的最终用户体验。我们开发了新的空中测量方法,以解决在测量RRC参数方面的现有限制。我们发现CPC可以以最小的资源成本带来显着的收益,促使我们重新思考过去的优化策略。我们检查了CPC和增强型FACH的跨层性能,认为CPC可以降低许多应用程序的移动设备能耗。虽然HS-FACH的性能提升非常可观,但跨层性能却受到传统上行链路随机接入信道(RACH)的限制,我们认为增强FACH的全面支持对于使大多数应用受益是必要的。鉴于UMTS的增长将超过LTE数年,并且UMTS在全球范围内的部署将更加广泛,因此,我们的定量结果应引起网络运营商对这些网络增加容量的极大兴趣。最后,这些结果为希望通过这些RRC增强来优化性能的应用开发人员提供了新的见解。

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