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Assessment of the MV/LV on-load tap changer technology as a way to increase LV hosting capacity for photovoltaic power generators

机译:评估MV / LV有载分接开关技术,作为提高光伏发电机低压承载能力的一种方法

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摘要

This paper assesses the use of voltage measurements obtained from advanced metering infrastructure (AMI) to control an on-load tap changer (OL1TC with five or nine tap positions) located at the secondary substation, with the aim of increasing the hosting capacity of the low voltage (LV) network for photovoltaic power generators. The future growth of photovoltaic power generators is simulated with and without OLTC on 631 real-world LV networks located in Lyon(**) (France) and we study the maximum growth before a constraint occurs. The results surprisingly show that, although all our test networks are taken from the same geographical area, there is a large variation from one LV network to the other regarding how the MV/LV OLTC affects their hosting capacity. Indeed, this hosting capacity may be increased significantly in a few networks while the gain is modest or non-existent in the others. Another important finding is that, for the networks we studied, the OLTC with nine tap positions does not substantially increase the hosting capacity when compared with the one with five tap positions.
机译:本文评估了从高级计量基础设施(AMI)获得的电压测量值的使用,以控制位于次级变电站的有载分接开关(带有五个或九个分接位置的OL1TC),目的是增加低压配电箱的承载能力。光伏发电机的电压(LV)网络。在法国里昂(**)的631个实际LV网络上,在有无OLTC的情况下模拟了光伏发电机的未来增长,我们研究了出现约束之前的最大增长。结果令人惊讶地表明,尽管我们所有的测试网络都来自同一地理区域,但是关于MV / LV OLTC如何影响其承载能力,从一个LV网络到另一个LV网络都有很大的差异。确实,在一些网络中,这种托管能力可能会显着增加,而在其他网络中,这种增长是适度的或不存在的。另一个重要发现是,对于我们研究的网络,与具有五个抽头位置的OLTC相比,具有九个抽头位置的OLTC不会显着增加托管容量。

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