Reliable and prioritized communication using polarization diversity for industrial Internet of Things

R. K. Kalle
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引用次数: 1

Abstract

Industrial Internet of Things (IIoT) requires superior reliability from underlying communication technology that consumer wireless technologies often fail to meet. New physical layer techniques have been proposed to enhance the performance of wireless monitoring and control networks to address this challenge. Utilizing polarization diversity techniques through Rotating Polarization Waves (RPW) have been recently proposed to improve the coverage and reliability of IIoT network. In industrial environments that have large metallic scatterers, RPW can improve the coverage and reliability as compared to fixed polarization radio waves. However, suitable multiple access protocol to utilize the polarization diversity is a subject of ongoing research. In this paper, novel medium access techniques to improve the reliability and support priority in the RPW wireless communication have been described. Also, an overview of medium access (MAC) protocol and analytical model to support above functions is provided.
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利用极化分集实现工业物联网的可靠、优先级通信
工业物联网(IIoT)要求底层通信技术具有卓越的可靠性,这是消费者无线技术通常无法满足的。为了应对这一挑战,人们提出了新的物理层技术来增强无线监测和控制网络的性能。利用旋转极化波(RPW)极化分集技术来提高工业物联网网络的覆盖率和可靠性是近年来提出的一种新方法。在具有大量金属散射体的工业环境中,与固定极化无线电波相比,RPW可以提高覆盖范围和可靠性。然而,如何利用极化分集的合适的多址协议一直是一个有待研究的课题。本文介绍了提高RPW无线通信可靠性和支持优先级的新型介质接入技术。此外,还概述了支持上述功能的介质访问(MAC)协议和分析模型。
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