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Performance of CS Fallback from LTE to UMTS

机译:从LTE到UMTS的CS后备性能

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Circuit Switched Fallback (CSFB) is the most commonly used method to support voice services over Long Term Evolution (LTE) networks today, as the deployment of IP Multimedia Subsystem (IMS) is still in its infancy. In this article, we discuss the performance of CSFB voice traffic redirection from LTE to UMTS using data from live commercial networks. The key factors impacting CSFB call setup delay are highlighted. Data from multiple cell geometries including stationary and mobility conditions are presented for Mobile Originated (MO) calls towards landlines, Mobile Terminated (MT) calls from landlines and Mobile-to-Mobile (M2M) CSFB calls. Analysis results in well optimized deployments show that on an average, MO/MT call-setup time for CSFB from LTE to UMTS is around 1 sec greater than legacy UMTS. However, the results can vary depending on the network configuration and the conditions of the measurement. To illustrate the optimization of CSFB performance in real networks, we also highlight the principal call set up optimization and implementation factors impacting CSFB call setup delay and success rates. This article demonstrates that in well optimized networks, CSFB to UMTS call setup success rates can be very close to those achieved in the legacy UMTS systems.
机译:如今,由于IP多媒体子系统(IMS)的部署仍处于起步阶段,电路交换回退(CSFB)是支持长期演进(LTE)网络上语音服务的最常用方法。在本文中,我们将讨论使用实时商业网络中的数据将CSFB语音流量从LTE重定向到UMTS的性能。突出显示影响CSFB呼叫建立延迟的关键因素。针对固定电话的移动始发(MO)呼叫,固定电话的移动终接(MT)呼叫和移动到移动(M2M)CSFB呼叫,提供了​​来自多个小区几何的数据,包括静止和移动性条件。经过良好优化的部署的分析结果表明,从LTE到UMTS的CSFB的MO / MT呼叫建立时间平均比传统UMTS多大约1秒。但是,结果可能会因网络配置和测量条件而异。为了说明实际网络中CSFB性能的优化,我们还重点介绍了影响CSFB呼叫建立延迟和成功率的主要呼叫建立优化和实施因素。本文证明,在经过良好优化的网络中,CSFB到UMTS的呼叫建立成功率可以非常接近传统UMTS系统中实现的成功率。

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    《IEEE Communications Magazine》 |2013年第9期|1-1|共1页
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