自动分析安装杆自动重合闸数据的故障预测,以减轻客户供应中断

Xiaoyu Wang, S. Strachan, J. Kirkwood, S. Mcarthur
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引用次数: 5

摘要

历史上,恢复开关策略通过配电自动化方案来解决永久故障活动造成的影响,从而提高系统的可靠性。本文研究了配电自动化系统(DAS)在处理麻烦跳闸中的潜在作用,其中客户经常受到频繁发生的影响其供应质量的短期供应中断的干扰。为了减轻这些麻烦的供电中断,本文将重点开发一个综合决策支持系统,该系统利用可用的监控和数据采集(SCADA)警报数据和配电网络数据,从安装在杆状的自动重合闸器(由配电网络运营商提供)中获得,以检测和诊断导致麻烦跳闸的预永久性故障活动。开发的系统可侦测电路出现滋扰跳闸,然后进行预测健康检查,以确定导致滋扰跳闸的潜在电路故障活动的原因,而这些故障通常会在未来导致更严重的永久性故障。以前的故障活动可以通过数据挖掘技术来识别故障特征数据模式和趋势,这些数据挖掘技术可以预测与网络行为、瞬时活动和永久网络故障相关的潜在滋扰跳闸。配电自动化方案可以随后操作,以减轻妨害跳闸的风险,从而提高与网络运营商相关的客户服务水平。该系统能够对不断演变的故障提供“早期预警”,从而允许进行干预,通知和协助维护人员采取适当的预防措施,在故障发生之前将负面影响降至最低。
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Automatic analysis of pole mounted auto-recloser data for fault prognosis to mitigate customer supply interruptions
Historically restoration switching strategies have been deployed to improve the system reliability by addressing effects resulting from permanent fault activity via distribution automation schemes. This paper investigates the potential role of a Distribution Automation System (DAS) in dealing with nuisance tripping where customers are often disturbed by frequently occurring short-term supply outages affecting their quality of supply. In order to mitigate these nuisance supply interruptions, this paper will focus on the development of an integrated decision support system that utilises available Supervisory Control And Data Acquisition (SCADA) alarm data and distribution network data available from pole mounted auto-reclosers (provided by a distribution network operator) to detect and diagnose pre-permanent fault activity responsible for nuisance tripping. The developed system will detect the advent of nuisance tripping on a circuit, and subsequently conduct prognostic health checks to determine the cause of the underlying circuit fault activity, responsible for the nuisance tripping, which often leads to more serious permanent faults in the future. Previous fault activity could be used to identify fault signature data patterns and trends through data mining techniques that predict potential nuisance tripping associated with network behaviour, transient activity and permanent network faults. The distribution automation scheme may be subsequently operated to mitigate the risk of nuisance tripping and so improve the level of customer service associated with network operators. This system is capable of providing `early warning' of evolving faults which in turn allows an intervention to take place to inform and assist maintenance staff to take appropriate preventative action to minimise negative effect prior to it occurring.
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