首页> 外文期刊>Elektrotechnik und Informationstechnik >Extended thermal rating calculations of 400 kV XLPE cables for urban grid applications based on long-term experimental data
【24h】

Extended thermal rating calculations of 400 kV XLPE cables for urban grid applications based on long-term experimental data

机译:基于长期实验数据的城市电网应用扩展了400 kV XLPE电缆的延长了热额定值计算

获取原文
获取原文并翻译 | 示例

摘要

Conventional rating calculations for power cables are based on the analytical methods given by IEC standards. These methods lead to rather conservative results though, which has been acceptable in the past since high-voltage cables are normally not loaded to their thermal limits and are rather operated in cold conditions, relatively speaking. However, the power system is undergoing a transition towards increasing and more dynamic loads and, therefore, towards the need for a more flexible and resilient grid. This applies in particular to cable systems in urban areas where high-voltage cables are used due to the infeasibility of overhead lines and where the renewal or expansion of those systems is attached to high installation costs. An optimized use of existing and future cable systems is a crucial feature in order to cope with the increasing requirements. Therefore, an attempt is made to combine the advantages of the different calculation methods in order to improve performance and efficiency. Furthermore, there is high potential to improve cable calculations with the application of artificial intelligence (AI). First, however, these procedures must be brought together to be evaluated, and experience in the application of AI in cable calculations must be gathered. Therefore, an actual 400 kV cable system with a typical urban laying profile was set up in a cooperation project between Vienna's grid operator Wiener Netze GmbH and the High Voltage Test Laboratory Graz Ltd. to develop and validate calculation methods. In addition, it is investigated which input parameters are necessary, what effect do they have on the result and which accuracy and efficiency can be achieved.
机译:电力电缆的常规评级计算基于IEC标准给出的分析方法。这些方法导致了相当保守的结果,但在过去已经接受,因为高压电缆通常不会加载到它们的热限制并且相当在寒冷条件下操作。然而,电力系统正在朝着增加和更具动态负载的过渡,因此朝着需要更灵活和弹性的网格的需要。这尤其适用于城市地区的电缆系统,其中由于架空线的不可行性而使用高压电缆,并且在那里将这些系统的更新或扩展附加到高安装成本。优化使用现有和未来的电缆系统是一个关键的特征,以便应对越来越多的要求。因此,尝试结合不同计算方法的优点,以提高性能和效率。此外,利用人工智能(AI)的应用,改善电缆计算的高潜力。首先,必须将这些程序放在一起进行评估,并且必须收集在电缆计算中应用AI的应用。因此,在维也纳网格运营商维纳网格(Vienner Wiener Netze GmbH和高压测试实验室Graz Ltd.)之间建立了一个具有典型城市铺设简介的实际400 kV电缆系统,开发和验证计算方法。此外,还研究了哪些输入参数是必要的,结果有哪些效果,并且可以实现哪种准确性和效率。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号