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Reliability and life expectancy of modern SCADA equipment in underground installations: SCADA Equipment in PGE secondary undergroud distribution networks

机译:现代SCADA设备在地下设施中的可靠性和预期寿命:PG&E二级账户分销网络中的SCADA设备

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Supervisory Control and Data Acquisition (SCADA) and monitoring systems are widely used in power infrastructure, including transmission, distribution and secondary network systems. This paper presents a research that primarily addresses the reliability and life expectancy of SCADA and monitoring equipment installed in secondary underground network systems of the Pacific Gas and Electric Company (PG&E) company, which serves areas where safety and reliability are critical. The equipment is installed in underground vaults and includes sensors, remote terminal units, communication switches, backup batteries and fiber cables. This equipment is exposed to harsh underground environmental conditions. Detrimental effects of these environmental conditions, such as moisture, corrosion and resistive contaminations, could potentially affect the reliability and accuracy of the monitoring devices. This paper presents the findings of the research that Exponent has performed on PG&E's SCADA equipment used in the secondary underground networks of San Francisco and Oakland in California. The research included the life expectancy of the existing equipment and effects of local conditions, integrity and reliability of the electrical connectors and monitoring sensors, methods to increase life expectancy, and the associated human factors and economics related to maintenance of the underground monitoring equipment. Factors affecting performance of the studied equipment are discussed and suggested methods to improve the reliability and life expectancy are outlined.
机译:监督控制和数据采集(SCADA)和监视系统被广泛地用于电力基础设施,包括输送,分配和次要网络系统。本文提出了主要解决SCADA的可靠性和寿命,并安装在太平洋天然气和电力公司(PG&E)公司,提供安全性和稳定性是关键领域的二次地下网络系统监控设备进行了研究。设备是安装在地下拱顶和包括传感器,远程终端单元,通信开关,备份电池和光缆。本设备暴露在恶劣的地下环境条件。这些环境条件的不利影响,如湿度,腐蚀和电阻的污染物,可能潜在地影响监控装置的可靠性和准确性。本文提出了指数已在美国加州旧金山和奥克兰的二次地下网络中使用PG&E的SCADA设备进行的研究的结果。研究内容包括现有设备和当地的条件,完整性和电连接器的可靠性和监控传感器,方法来提高预期寿命,以及相关的人为因素和经济相关的维修井下监控设备的影响的预期寿命。影响研究的设备的性能的因素进行了讨论,并提出方法,提高了可靠性和寿命进行了概述。

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