雷电地电位上升下rs485通信线路防雷装置的反操作

P. H. Pretorius
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引用次数: 1

摘要

在防止雷击损坏方面,特别是与RS 485工业通信系统有关,通常的做法是采用浪涌保护装置作为缓解措施。然而,关于RS485通信系统的知识决定了其成功运行需要单点接地。在数据采集单元下游应用的浪涌保护装置的反向操作可能会覆盖单点接地系统,从而引入多点接地系统,与安装浪涌保护装置之前相比,这可能会导致大型工业厂房的损害加剧。在本文中,应用于典型工业通信线路的浪涌保护装置的行为在数值模拟的支持下进行了评估,以证明保护装置的预期反向操作。本文提高了防雷接地电位上升的认识和防雷装置的应用,特别是在电线技术的情况下,对防雷系统设计人员很重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reverse Operation of Surge Protective Devices on RS 485 Communication Lines Under Lightning Ground Potential Rise
In protecting against lightning damage, specifically related to RS 485 industrial communication systems, the approach is typically to apply surge protective devices as mitigation measure. However, knowledge about the RS485 communication system dictates that a single point earth is required for its successful operation. Reverse operation of surge protective devices, applied downstream from the data acquisition unit, are likely to override the single point earthing system to introduce a multipoint earthing system, that can lead to exacerbated damage in large industrial plant, compared to before the installation of the surge protective devices. In this paper, the behaviour of a surge protective device applied to a typical industrial communication line, is assessed with support of numerical modelling to demonstrate the anticipated reverse operation of the protective device. This paper raises awareness about lightning ground potential rise and the application of surge protective devices, particularly in the case of wire-line technology, important to the lightning protection system designer.
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