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Distributed signal processing for dense 5G IoT platforms: Networking, synchronization, interference detection and radio sensing

机译:适用于密集5G IoT平台的分布式信号处理:网络,同步,干扰检测和无线电感应

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Driven by the fourth industrial revolution (Industry 4.0), future and emerging Internet of Things (IoT) technologies will be required to support unprecedented services and demanding applications for massive machine-type connectivity, with low latency, high reliability and distributed information processing capability. In this article, distributed signal processing methodologies are highlighted as enablers for next generation cloud-assisted IoT systems. The proposed distributed algorithms run inside a wireless cloud network (WCN) platform and are exploited for WCN self-organization, distributed synchronization, networking and sensing. The WCN can lease augmented communication and sensing services to off-the-shelf industrial wireless devices via a dense, self-organizing "cloud" of wireless nodes. The paper introduces, at first, the WCN architecture and illustrates an experimental case study inside a pilot industrial plant. Next, it proposes a re-design of consensus-based algorithms for enabling a selected set of distributed information processing functionalities within the WCN platform, with application in practical loT scenarios. In particular, cooperative communication algorithms are adopted to support reliable communication services. Distributed timing and carrier frequency offset estimation methods are investigated to enable low-latency services through accurate synchronization. Autonomous identification of recurring interference patterns is proposed for multiple access coordination in the shared 5G spectrum. Finally, localization and vision applications based on distributed processing of wireless signals are investigated to support contact-free human-machine interfaces. (C) 2019 Elsevier B.V. All rights reserved.
机译:在第四次工业革命(工业4.0)的推动下,未来和新兴的物联网(IoT)技术将需要支持前所未有的服务和苛刻的应用程序,以实现具有低延迟,高可靠性和分布式信息处理能力的大规模机器类型连接。在本文中,分布式信号处理方法论被重点介绍为下一代云辅助物联网系统的促成因素。所提出的分布式算法在无线云网络(WCN)平台内运行,并被用于WCN自组织,分布式同步,联网和传感。 WCN可以通过密集,自组织的无线节点“云”将增强的通信和传感服务租赁给现成的工业无线设备。本文首先介绍了WCN架构,并举例说明了一个试验性工厂内部的实验案例研究。接下来,它提出了基于共识的算法的重新设计,用于实现WCN平台内选定的一组分布式信息处理功能,并应用于实际的loT场景中。特别地,采用协作通信算法来支持可靠的通信服务。研究了分布式定时和载波频率偏移估计方法,以通过精确的同步来实现低延迟服务。针对共享5G频谱中的多址协作,提出了重复干扰模式的自治标识。最后,研究了基于无线信号分布式处理的定位和视觉应用程序,以支持非接触式人机界面。 (C)2019 Elsevier B.V.保留所有权利。

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