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A LIGHTNING CONDUCTOR MONITORING SYSTEM BASED ON A WIRELESS SENSOR NETWORK

机译:基于无线传感器网络的雷电监测系统

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Automated heating, lighting and irrigation systems are nowadays standard features of industrial and commercial buildings, and are also increasingly found in ordinary housing. In addition to the benefits of user comfort, automated technology for buildings saves energy and, above all, it provides enhanced protection against leakage of water and hazardous gases, and against fire hazards. Lightning strikes are a natural phenomenon that poses a significant threat to the safety of buildings. The statistics of the Fire and Rescue Service of the Czech Republic show that buildings are in many cases inadequately protected against lightning strikes, or that systems have been damaged by previous strikes. A subsequent strike can occur within the period between regular inspections, which are normally made at intervals of 2–4 years. Over the whole of Europe, thousands of buildings are subjected to the effects of direct lightning strikes each year. This paper presents ways to carry out wireless monitoring of lightning strikes on buildings and to deal with their impact on lightning conductors. By intervening promptly (disconnecting the power supply, disconnecting the gas supply, sending an engineer to inspect the structure, submitting a report to ARC, etc.) we can prevent many downstream effects of direct lightning strikes on buildings (fires, electric shocks, etc.) This paper introduces a way to enhance contemporary home automation systems for monitoring lightning strikes based on wireless sensor networks technology.
机译:如今,自动化的供暖,照明和灌溉系统已成为工业和商业建筑的标准配置,并且在普通房屋中也越来越多。除了为用户带来舒适感外,楼宇自动化技术还可以节省能源,最重要的是,它可以提供增强的保护,防止水和有害气体泄漏以及火灾隐患。雷击是一种自然现象,会对建筑物的安全构成重大威胁。捷克共和国消防和救援局的统计数据表明,在许多情况下,建筑物的防雷能力不足,或者建筑物曾因先前的雷击而受损。在常规检查之间的间隔时间内可能会发生随后的罢工,通常以2-4年为间隔。在整个欧洲,每年都有成千上万的建筑物受到直接雷击的影响。本文介绍了对建筑物的雷击进行无线监视并处理其对雷电导体的影响的方法。通过迅速进行干预(断开电源,断开气体供应,派遣工程师检查结构,向ARC提交报告等),我们可以防止雷电对建筑物造成的许多下游影响(火灾,电击等) 。)本文介绍了一种基于无线传感器网络技术的增强现代家庭自动化系统的方法,该系统可用于监视雷击。

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