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Security constrained economic dispatch with dynamic thermal rating technology integration

机译:通过动态热定额技术集成,安全性限制了经济调度

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摘要

In traditional model for security constrained economic dispatch (SCED) decision, the limit on power transfer capability of overhead transmission line (OTL) is represented by its static thermal rating (STR) which incurs conservative constraints on OTLs' transfer limits which definitely causes conservative decision results. Comparing with STR, dynamic thermal rating (DTR) is an effective technique to improve the ampacity of OTL based on the monitoring of real-time environmental conditions including ambient temperature, solar radiation, wind speed and direction. Aiming to the issue mentioned above, in this paper, a SCED implementation framework is first designed with DTR technology integration, after that, on basis of the historical data gathered by DTR, a forecasting approach for thermal rating is proposed. Predict the environmental conditions along the overhead line using the exponential smoothing method first and then the forecasting of the DTR can be obtained. Then the benefits that delivered by utilizing the forecast thermal rating in SCED is analyzed via case studies. This paper explores an application pattern of DTR technology in SCED. It is capable of enhancing the power system security and economic performances by exploiting the potential transfer capability of OTLs.
机译:在传统的安全约束经济调度(SCED)决策模型中,架空传输线(OTL)的功率传输能力限制由其静态热额定值(STR)表示,这对OTL的传输限制产生了保守的约束,这肯定会导致保守的决策结果。与STR相比,动态热额定值(DTR)是基于对实时环境条件(包括环境温度,太阳辐射,风速和风向)的监视而提高OTL载流量的有效技术。针对上述问题,本文首先结合DTR技术设计了一个SCED实施框​​架,然后在DTR收集的历史数据的基础上,提出了热额定值的预测方法。首先使用指数平滑法对架空线沿线的环境条件进行预测,然后对DTR进行预测。然后,通过案例分析来分析利用SCED中的预测热额定值所带来的好处。本文探讨了DTR技术在SCED中的应用模式。通过利用OTL的潜在传输能力,它能够增强电力系统的安全性和经济性能。

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