Modelling the technical influence of randomly distributed solar PV uptake on electrical distribution networks

Steyn Anrich F.W., A. Rix
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引用次数: 6

Abstract

This paper investigates network integration of distributed rooftop PV systems on three distribution networks (one residential, one commercial and one industrial) in Cape Town, South Africa. A methodology is developed that can be used to model the technical influence (focusing solely on voltage rise and equipment overload) of randomly distributed solar PV uptake on electrical distribution networks. For the residential- and industrial area, the amount of PV-eligible roof space provides potential PV generation capacity that far exceeds the load requirements of the area. It is shown that allowable PV installations on the residential LV networks vary between 187 kW – 373 kW, and allowable PV penetration levels vary between 82% - 150%. The industrial network has the lowest allowable PV penetration level (31%), whilst the commercial area experiences no limit to the uptake of PV, since there is not enough PV-eligible roof space, and subsequent potential PV generation capacity, to cause network problems. This paper concludes guidelines as to the PV hosting capacity of the sample networks. The results of this paper provide a better understanding to utilities in terms of the technical limits that dictate PV uptake for different types of networks, as well as the corresponding PV penetration levels.
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模拟随机分布的太阳能光伏发电对配电网的技术影响
本文研究了南非开普敦三个配电网(一个住宅、一个商业和一个工业)上分布式屋顶光伏系统的网络集成。开发了一种方法,可用于模拟随机分布的太阳能光伏发电对配电网的技术影响(仅关注电压上升和设备过载)。对于住宅和工业区,符合光伏条件的屋顶空间提供的潜在光伏发电能力远远超过该地区的负荷要求。研究表明,住宅低压电网允许的光伏安装量在187 kW - 373 kW之间,允许的光伏渗透率在82% - 150%之间。工业网络的允许光伏渗透率最低(31%),而商业区域对光伏的吸收没有限制,因为没有足够的光伏屋顶空间,以及随后的潜在光伏发电容量,从而导致网络问题。本文总结了样本网络PV承载能力的准则。本文的结果为公用事业提供了更好的理解,就技术限制而言,这些限制决定了不同类型网络的光伏吸收,以及相应的光伏渗透水平。
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