希腊伊卡里亚岛的光伏渗透潜力

Maria Fotopoulou , Dimitrios Rakopoulos , Kyriaki-Nefeli Malamaki , Nikolaos Andriopoulos , Georgios Lampsidis , Konstantinos Kaousias
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摘要

配电网(DN)的运行受到了正在进行的能源转型的影响,逐渐纳入了更多的分布式能源资源(DER),主要是可再生能源(RES),以及储能系统(ESS),从而持续增强了配电网的灵活性。以太阳能和风能潜力巨大的希腊伊卡里亚非互联岛屿为例,DN 包括常规发电机、光伏系统 (PV)、风电场和水泵 ESS。本研究的范围是评估光伏系统扩展可能产生的影响,考虑的因素包括:i) 固定式、ii) 单轴或 iii) 双轴跟踪面板。为此,使用了 CERTH 内部的 INTEMA.grid 平台。根据配电系统运营商 (DSO) 的指示,在将现有固定 0.4 兆瓦光伏发电设备的额定功率扩大两倍或三倍的情况下,对跟踪机制的有效性进行了研究。此外,还进行了月度分析,因为伊卡里亚岛在夏季因旅游业而负荷极高。结果表明,如果将目前的光伏发电量增加一倍或两倍,与固定面板相比,双轴扩展的年产量增幅分别为 16.0% 或 21.3%,单轴效应(分别为 14% 或 18.7%)远高于第二轴的增量效应(分别为 1.8% 或 2.3%)。在夏季,尤其是清晨或傍晚,跟踪机制的效果尤为突出。最后,对拟议装置的环境和经济指标进行了评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Photovoltaic penetration potential in the Greek island of Ikaria

The operation of Distribution Networks (DNs) has been affected by the ongoing energy transition, gradually incorporating more Distributed Energy Resources (DERs), mainly Renewable Energy Sources (RES), as well as Energy Storage Systems (ESS) sustainably enhancing DN’s flexibility. In the case of the non-interconnected island of Ikaria, Greece, with high solar and wind potential, the DN includes conventional generators, Photovoltaic systems (PVs), wind farms and a hydro-pumped ESS. Scope of this study is to assess the possible impact of the PVs expansion considering either: i) fixed, ii) single-axis or iii) dual-axis tracking panels. For this purpose, CERTH’s in-house INTEMA.grid platform is used. Tracking mechanism’s effectiveness is studied considering that the expansion doubles or triples the rated power of the existing, fixed 0.4 MW PVs, following the directions of the Distribution System Operator (DSO). Additionally, a monthly analysis is presented, because Ikaria is an island with extremely higher load during summer months due to tourism. According to the results, if the current PV capacity is doubled or tripled, a dual-axis expansion yields 16.0% or 21.3% yearly production increase compared to fixed panels, respectively, with the single-axis effect though being much higher (14% or 18.7%, respectively) than the incremental effect of the second axis (further comparative 1.8% or 2.3%, respectively). The effectiveness of tracking mechanisms is highlighted during summer months and particularly early in the morning or late in the afternoon. Finally, environmental and economic indicators for the proposed installations are assessed.

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