A Method to Enhance the Bandwidth and Noise Immunity of IIoT When Exposed to Natural and Intentional Electromagnetic Interference

A. Serkov, V. Tkachenko, Vyacheslav Kharchenko, V. Pevnev, Karyna Trubchaninova
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引用次数: 2

Abstract

The rapidly developing ultra-wideband (UWB) radio technology is very promising for use in infocommunication systems and networks, in particular in wireless, personal (WPAN) and local (WLAN) IoT / IIoT (Internet of Things / Industrial Internet of Things) networks, including and in wearable networks (Wireless Body Area Network, WBAN) for IoMT (Internet of Medical Things). Ensuring high reliability, increasing noise immunity and the degree of information protection from interception in IIoT is due to the use of UWS technology based on ultrashort pulses with a duration of the order of units and fractions of a nanosecond, time pulse modulation and flickering polarization of the emitted signal. The use of UWS technology in a wireless IIoT network provides a number of advantages that cannot be achieved with existing methods. UWS technologies make it possible to provide high speed data transmission, low power consumption of communication facilities, solution of the problem of determining the location of objects with an accuracy of several centimeters, high penetrating power of the radio signal, an almost unlimited number of communication channels and low cost of communication facilities. The aim of the work is to ensure high reliability, noise immunity and the degree of information protection against interception in IIoT critical in speed, reliability and safety under the influence of natural and deliberate electromagnetic interference. The results obtained and the directions for further research are discussed in the conclusions.
一种增强工业物联网在自然和故意电磁干扰下的带宽和抗噪声能力的方法
快速发展的超宽带(UWB)无线电技术非常有希望用于信息通信系统和网络,特别是无线、个人(WPAN)和本地(WLAN) IoT / IIoT(物联网/工业物联网)网络,包括用于IoMT(医疗物联网)的可穿戴网络(无线体域网络,WBAN)。在工业物联网中,确保高可靠性、提高抗噪声能力和信息免受拦截的程度,是由于使用了基于持续时间为单位和纳秒的超短脉冲、时间脉冲调制和发射信号的闪烁极化的UWS技术。在无线IIoT网络中使用UWS技术提供了许多现有方法无法实现的优势。UWS技术可以提供高速数据传输,通信设施的低功耗,以几厘米的精度解决确定物体位置的问题,无线电信号的高穿透能力,几乎无限数量的通信信道和低成本的通信设施。这项工作的目的是确保在自然和人为电磁干扰的影响下,工业物联网的高可靠性、抗噪声性和防拦截信息保护程度对速度、可靠性和安全性至关重要。最后,对所得结果和今后的研究方向进行了讨论。
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