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Assessing optimal conductor utilization under N-1 overload security studies

机译:在N-1超载安全研究下评估最佳导线利用

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Elevated temperature operation (ETO) is as an attractive way of enabling better utilization of existing transmission conductor assets especially during power system contingencies. However, due to the lack of Overhead Line conductor (OHLC) condition data, the present ETO ratings, short-term emergency (STE) and long-term emergency (LTE) ratings, are extremely conservative and inflexible. Furthermore, due to lack of sufficient historical operational data and algorithms, planners are unable to develop tools that enable increased and smarter utilization of the OHLC. The proliferation of modern real-time rating and other smart grid instrumentation allows for the use of historical data for planning purposes. On this basis, this paper presents how, in combination with OHL planning information, historical data can be utilized to develop improved operation guidance that accounts for the actual condition (ageing) of the OHLC. Therefore, it can be asserted that by knowing the OHLC condition, operators can flexibly make reliable cost effective decisions and thus be able to manage their OHL assets. Results are presented on a modified IEEE 24-bus RTS, implementing OHL properties into the analysis.
机译:升高的温度操作(ETO)是一种有吸引力的方式,可以更好地利用现有的传输导体资产,尤其是在电力系统的突发方面。然而,由于缺乏架空线导体(OHLC)条件数据,目前的ETO评级,短期紧急(STE)和长期紧急情况(LTE)评级是非常保守和不灵活的。此外,由于缺乏足够的历史运营数据和算法,规划者无法开发能够增加和更智能利用OHLC的工具。现代实时评级和其他智能电网仪表的增殖允许使用历史数据进行规划目的。在此基础上,本文介绍了如何与OHL规划信息组合,可以利用历史数据来制定改进的操作指导,该指导占OHLC的实际情况(老化)。因此,可以断言,通过了解OHLC条件,操作员可以灵活地进行可靠的成本效益决策,从而能够管理他们的OHL资产。结果显示在修改的IEEE 24总线RT上,在分析中实现OHL属性。

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