双面组件对巴西分布式光伏发电系统逆变器削波的影响

João Lucas de Souza Silva, K. B. de Melo, T. Costa, Gilson Mario Vieira Machado, H. S. Moreira, M. G. Villalva
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引用次数: 2

摘要

根据687/2015号规范决议,考虑到逆变器输出功率,巴西的分布式发电(DG)太阳能光伏(PV)发电厂限制在5mw。这一限制带来了挑战,试图在最大功率下尽可能长时间地工作,以最大限度地提高利润,减少回报时间。解决方案之一是增加电站直流/交流比(光伏阵列超大尺寸)。然而,当逆变器无法处理光伏组件的总功率时,增加直流/交流比也会产生发电损失。光伏逆变器的功率削波限制了光伏模块的功率,这是造成超大光伏阵列损耗的一个原因,当使用双面模块时,这一事实可能会产生更大的影响。本文分析了采用单面和双面模块的不同交直流比的分布式光伏电站的截波水平和光伏阵列大型化的效益。系统顾问模型(SAM)用于对巴西米纳斯吉拉斯州的一个场景进行模拟。结果表明,与单面模块相比,双面模块对剪切损耗的影响更大。然而,双面模块提供更多的能源生产。因此,该分析对于寻找双面光伏阵列的最佳直流/交流比非常重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of Bifacial Modules on the Inverter Clipping in Distributed Generation Photovoltaic Systems in Brazil
Distributed generation (DG) solar photovoltaic (PV) power plants in Brazil are limited to 5 MW, considering the inverter output power, according to the normative resolution 687/2015. This limitation creates the challenge of trying to work at maximum power for as long as possible to maximize the profit and reduce the payback time. One of the solutions for this is to increase the plant DC/AC ratio (PV array oversizing). Nevertheless, increasing the DC/AC ratio also generates losses on power production when the total power of the PV modules cannot be handled by the inverters. Power clipping by the PV inverter limiting the power of PV modules is a cause of losses in oversized PV arrays, and this fact can have a higher impact when bifacial modules are used. This paper analyzes the level of clipping and the benefits of PV array oversizing in distributed generation PV power plants with different DC/AC ratios with monofacial and bifacial modules. The System Advisor Model (SAM) is used for simulations with a scenario in Minas Gerais-Brazil. The results show that bifacial modules have a higher influence on clipping losses in comparison with monofacial ones. However, bifacial modules provide more energy production. Therefore, this analysis is important for finding the best DC/AC ratio for bifacial PV arrays.
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