窄带4G LTE网络的延迟降低

Zubair Amjad, A. Sikora, Jean-Philippe Lauffenburger, B. Hilt
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引用次数: 7

摘要

下一代蜂窝网络有望提高可靠性、能源效率、数据速率、容量和延迟。最初,机器类型通信(MTC)是为低带宽高延迟应用而设计的,如环境传感、智能垃圾箱等,但围绕低延迟要求的应用,如工业自动化、无人驾驶汽车等,有了额外的需求。4G长期演进(LTE)网络需要改进,以发展下一代蜂窝网络,以提供非常低的延迟和高可靠性。为此,我们对导致4G网络延迟的参数进行了深入分析,并对延迟减少技术进行了描述。我们在窄带用户设备类别Cat-Ml (LTE-M)的开源网络模拟器(NS3)中实现并验证了这些延迟降低技术,以分析改进。提出的结果是实现窄带超可靠低延迟通信(URLLC)网络的一步。
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Latency Reduction in Narrowband 4G LTE Networks
The next generation cellular networks are expected to improve reliability, energy efficiency, data rate, capacity and latency. Originally, Machine Type Communication (MTC) was designed for low-bandwidth high-latency applications such as, environmental sensing, smart dustbin, etc., but there is additional demand around applications with low latency requirements, like industrial automation, driver-less cars, and so on. Improvements are required in 4G Long Term Evolution (LTE) networks towards the development of next generation cellular networks for providing very low latency and high reliability. To this end, we present an in-depth analysis of parameters that contribute to the latency in 4G networks along with a description of latency reduction techniques. We implement and validate these latency reduction techniques in the open-source network simulator (NS3) for narrowband user equipment category Cat-Ml (LTE-M) to analyze the improvements. The results presented are a step towards enabling narrowband Ultra Reliable Low Latency Communication (URLLC) networks.
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