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Off-field Testing of Grid Scenarios at Medium Voltage in Flexible AC Transmission Systems involving Wind Energy

机译:涉及风能的柔性交流输电系统中压场景的现场测试

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As a result of the geographical location of north-western Germany, the local grid operator EWE NETZ has a pioneer role with respect to the integration of renewable energy sources in existing AC transmission systems. About 7kWh out of 10kWh from EWE NETZ are from renewable sources, which are fed into existing AC transmission systems using FACTS (Flexible AC Transmission System). Currently, electricity from renewable sources such as on- and offshore wind energy farms, biomass, photovoltaics and hydropower are fed into existing power grids in northern Germany. This process drives the medium voltage grid networks into power utilization limits, leading to various operational problems of the modules used in the networks. In areas away from big cities, such as villages and small towns, the low load demand and the high value of power fed into the grid frequently leads to outages of medium power transformers and/or the associated switchgears. In addition, due to long transmission lines, the allowable limits of voltage escalations are often violated. In the context of FACTS, observations by EWE NETZ show that the number of curtailments within the last decade has increased by 7200%! There is an increasing need to study various unstable grid behaviours by looking at switching stations, switch gears, load impedances, frequency variations etc. with respect to varying levels of renewable energy fed into the grid. By emulating the scenarios encountered in the field using a dedicated laboratory at Jade University of Applied Sciences (JUAS), measurements, modelling and model predictive control can be performed successfully.
机译:由于德国西北部的地理位置,当地电网运营商EWE NETZ在将可再生能源整合到现有交流输电系统中方面发挥了先锋作用。来自EWE NETZ的10kWh中约有7kWh来自可再生能源,可再生能源通过FACTS(柔性交流输电系统)馈入现有的交流输电系统。目前,来自可再生能源的电力,例如陆上和海上风电场,生物质能,光伏发电和水力发电,已被馈送到德国北部现有的电网中。该过程将中压电网网络驱动到功率利用率极限中,从而导致网络中使用的模块的各种运行问题。在远离大城市的地区,例如村庄和小镇,低负荷需求和馈入电网的高功率值经常导致中型电力变压器和/或相关开关设备的断电。另外,由于传输线较长,经常会违反电压上升的允许极限。在FACTS的背景下,EWE NETZ的观察表明,过去十年内削减的数量增加了7200%!越来越需要通过研究交换站,开关装置,负载阻抗,频率变化等方面的各种不稳定的电网行为,这些变化与馈入电网的可再生能源的变化水平有关。通过使用Jade应用科学大学(JUAS)的专门实验室模拟现场遇到的场景,可以成功执行测量,建模和模型预测控制。

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