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Safeguarding railway communication signals from radiated intentional EMI from a train

机译:保护从火车的辐射故意EMI保护铁路通信信号

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This article proposes a new technique to reduce the effect of low-power jammers that operate in radio frequency to meddle with control station-to-train communications and also evaluates the existing techniques serving the same purpose. The railway transportation systems form a part of the critical infrastructures in industrial countries and the railway signaling, which involves the communication between the trains and the control stations is very critical. However, the intentional electromagnetic interferences (IEMIs) caused by low power electromagnetic jammers functioning in railway environments pose a vicious threat. Jammers can be utilized to disrupt the radio communications of railway operators. In this paper, we suggest the use of phased antenna arrays to safeguard the railway communication signals from intentional EMIs from low power jammers. The performance of the currently used mitigation methodologies is also evaluated in this work. A comparative analysis against the existing works shows that the forward gain of the antenna is almost doubled using the proposed method and the front-to-back ratio of the radiated beam is improved by 3.4drawbacks caused by the existing mitigation methodologies that can be concluded from the detailed evaluation of the current mitigation schemes.
机译:本文提出了一种新的技术来减少在射频中运行的低功率干扰器的效果,与控制站到达托管通信中的干扰,并评估了相同目的的现有技术。铁路运输系统在工业国家和铁路信号传导中形成了一部分关键基础设施,这涉及列车和控制站之间的通信非常关键。然而,在铁路环境中运行的低功耗电磁干扰引起的故意电磁干扰(IEMIs)构成了恶性威胁。可以利用干扰器来破坏铁路运营商的无线电通信。在本文中,我们建议使用相控天线阵列来保护来自低功率干扰的故意EMIS的铁路通信信号。目前使用的缓解方法的表现也在这项工作中进行评估。对现有作品的比较分析表明,使用所提出的方法,天线的前向增益几乎加倍,辐射光束的前后比率提高了由现有的减缓方法引起的3.4Drawbacks从目前缓解计划的详细评估。

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