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Distributed RF Immunity Hardening Design Approach for Telecommunication Hardware and Installation Sites

机译:电信硬件和安装地点的分布式RF抗扰度加固设计方法

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摘要

Telecommunication installations should have sufficient intrinsic immunity to radio frequency (RF) conducted voltages and radiated electromagnetic field intensity levels to enable them to operate as intended. Design requirements for telecommunication devices traditionally are based on conducted voltages of co-located and field intensity levels of licensed wireless devices. This paper addresses the necessity for design requirements that address clandestinely operated interference sources intended to sabotage and disrupt telecommunication systems. When selecting electromagnetic severity levels, the technical and economic circumstances should also be taken into account so that cost of producing telecommunication devices will not be exorbitantly high. However, RF voltage and field intensity levels that can be produced easily with commercially available devices should not be ignored. This paper describes a distributed RF immunity hardening design approach that can be economically and quickly implemented. Device immunity requirements, installation site shielding requirements, and sensing elements outside the installation sites are discussed.
机译:电信设备应具有足够的抗射频(RF)传导电压和辐射电磁场强度水平的固有抗扰性,以使其能够按预期运行。传统上,对电信设备的设计要求是基于同位的传导电压和许可无线设备的场强水平。本文提出了设计要求的必要性,以解决旨在破坏和破坏电信系统的秘密操作干扰源。在选择电磁严重性等级时,还应考虑技术和经济情况,以使生产电信设备的成本不会过高。但是,不应忽略使用市售设备容易产生的RF电压和场强水平。本文介绍了一种可以经济,快速地实施的分布式RF抗扰度强化设计方法。讨论了设备抗扰度要求,安装场所屏蔽要求以及安装场所之外的传感元件。

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