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Benefits of Real-Time Monitoring to Distribution Systems: Dynamic Thermal Rating

机译:实时监控配电系统的好处:动态热额定值

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摘要

With anticipated proliferation of electric vehicles and distributed generations in near future, dynamic thermal rating (DTR) as a tool for unlocking network capacities, is becoming critical for distribution network operators. DTR is gaining a great and still growing focus of attention in today’s power industries. However, potential benefits of DTR, although have been envisioned to be significant, have not yet been studied quantitatively. This paper intends to comprehensively assess the potential impacts of DTR on the performance of a realistic Finnish distribution network. For doing so, first a step-by-step procedure is devised. Then, weather data and loading information of circuits in the network are gathered by advanced metering infrastructure available in the network. Thereafter, the gathered data are fed to mathematical models provided by the IEEE Standard 738-2006 and component dynamic thermal models to give thermal rating of circuits. The ratings are then used in reliability analysis where likely system states are simulated. This paper is performed for several cases and the results are discussed.
机译:随着不久的将来电动汽车和分布式发电设备的激增,动态热额定值(DTR)作为释放网络容量的工具,对于配电网络运营商而言变得至关重要。在当今的电力行业中,DTR越来越受到人们的关注,并且还在不断增长。但是,尽管已经设想到DTR的潜在益处,但是尚未进行定量研究。本文旨在全面评估DTR对现实的芬兰分销网络性能的潜在影响。为此,首先设计一个逐步过程。然后,通过网络中可用的高级计量基础结构收集网络中的天气数据和电路的负载信息。此后,将收集的数据馈送到IEEE标准738-2006提供的数学模型和组件动态热模型,以给出电路的热额定值。然后,将这些等级用于可靠性分析中,在其中模拟可能的系统状态。本文针对几种情况进行了讨论,并对结果进行了讨论。

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