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Resource allocation and sharing for heterogeneous data collection over conventional 3GPP LTE and emerging NB-IoT technologies

机译:通过常规3GPP LTE和新兴的NB-IoT技术进行异构数据收集的资源分配和共享

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摘要

Tremendous growth in the volumes and diversity of data to be collected in future Internet of Things (IoT) applications is one of the key challenges for the networking infrastructures as they evolve from 4G + to true 5G systems. Particularly, ubiquitous deployments of wireless video surveillance cameras force the IoT service providers to support massive multimedia data transfer together with more 'conventional' machine-type communications. Hence, the data services in a complex IoT network may become heterogeneous, since several categories of traffic need to be supported simultaneously, each having its own loads, quality-of-service requirements, and radio technology preferences. An emerging example of the latter is the in-band deployment mode of the recently standardized NarrowBand IoT (NB-IoT) technology, where the same spectrum is shared between 3GPP LTE-connected high-end equipment and NB-IoT-connected low-end devices. However, while all of the necessary technology enablers are already in place, the question of how to share the available bandwidth efficiently has not been addressed comprehensively. Targeting the indicated challenge, this paper introduces feasible strategies for resource sharing between the multimedia and sensory data in a hybrid LTE/NB-IoT wireless deployment as well as compares them within our rigorous analytical methodology. The conducted numerical study advocates for one of the allocation strategies - dynamic resource sharing with reservation - as the preferred solution for reliable collection of heterogeneous data in large-scale 5G-grade IoT deployments.
机译:随着从4G +到真正的5G系统的发展,未来物联网(IoT)应用程序中要收集的数据量和多样性的巨大增长是网络基础设施面临的主要挑战之一。特别是,无线视频监控摄像机的无处不在部署迫使IoT服务提供商支持大规模的多媒体数据传输以及更多的“常规”机器类型通信。因此,复杂的物联网网络中的数据服务可能变得异构,因为需要同时支持几种类型的流量,每种类型的流量都有自己的负载,服务质量要求和无线电技术偏好。后者的一个新兴示例是最近标准化的窄带物联网(NB-IoT)技术的带内部署模式,该模式在连接3GPP LTE的高端设备和连接NB-IoT的低端设备之间共享相同的频谱。设备。但是,尽管所有必要的技术支持因素都已经到位,但如何有效共享可用带宽的问题尚未得到全面解决。针对指出的挑战,本文介绍了在混合LTE / NB-IoT无线部署中多媒体和感官数据之间资源共享的可行策略,并在我们严格的分析方法中进行了比较。进行的数值研究提倡一种分配策略-带保留的动态资源共享-作为大规模5G级IoT部署中可靠收集异构数据的首选解决方案。

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