Selective multi-hop relaying for ultra-reliable communication in a factory environment

Bikramjit Singh, O. Tirkkonen, Zexian Li, M. Uusitalo, R. Wichman
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引用次数: 14

Abstract

Evolving 5G cellular communication is envisioned to enable connectivity for a wide range of new use cases. The focus on mission-critical communications, such as factory automation, public safety and vehicular safety applications presses the demand for ultra-reliable communication. In this paper, we investigate by various means of multi-hop relaying schemes to improve the reliable communication in a factory environment. Impacts due to half- and full-duplex operation at relay nodes are studied together with resource allocation. No retransmissions are considered and the relaying schemes are limited to two hops to meet the low latency constraint. Performance evaluations in a factory scenario are shown. We illustrate that in a network of uncoordinated cells one can exploit the varying fading profiles and can improve the offered reliable rate using multi-hop communication.
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用于工厂环境中超可靠通信的选择性多跳中继
不断发展的5G蜂窝通信预计将为广泛的新用例提供连接。对关键任务通信的关注,如工厂自动化、公共安全和车辆安全应用,推动了对超可靠通信的需求。在本文中,我们研究了在工厂环境下通过多种方式的多跳中继方案来提高通信的可靠性。研究了中继节点的半双工和全双工操作对资源分配的影响。不考虑重传,并且中继方案被限制为两跳以满足低延迟约束。显示了工厂场景中的性能评估。我们说明了在不协调的蜂窝网络中,可以利用不同的衰落特征,并可以使用多跳通信来提高提供的可靠速率。
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Optimized transmission and resource allocation strategies for ultra-reliable communications Social comparison based relaying in device-to-device networks Single-rate and multi-rate multi-service systems for next generation and beyond communications Ultra-reliable communication in a factory environment for 5G wireless networks: Link level and deployment study Secrecy capacity analysis for α-μ/κ-μ and κ-μ/α-μ fading scenarios
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