提高工业微电网光伏承载能力的研究

Adib Aktab Arnab, Md. Tahmid Jamil, Rafsan Huda, Mosiur Rahman, Ata E Rabbi, T. Aziz
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引用次数: 0

摘要

为了满足清洁能源的需求,越来越多的太阳能光伏发电被纳入现代电力系统。太阳能光伏发电装机容量的计算提供了在规划阶段光伏发电位置合适的最大可能额定值的思想。PV托管容量取决于系统参数,需要在实际部署前进行计算。因此,在初始计算之外,总是有一些空间可以增强托管容量。在本研究中,提出了几种光伏主机容量增强技术,并对其进行了比较,以找出系统规划者的最佳技术。采用IEEE 43总线工业系统作为测试系统。结果表明,并联线路与变压器、电容和电池储能系统(BESS)的结合可显著提高光伏主机容量,但增强幅度因母线而异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Study of Enhancing PV Hosting Capacity in an Industrial Microgrid
To meet the clean energy requirement, more and more solar photovoltaics are being integrated into the modern power system. Calculation of solar PV hosting capacity provides the idea of maximum possible rating with suitable location of PV in the planning phase. PV hosting capacity depends on system parameters and needs to be calculated prior to actual deployment. Hence, there is always some room to enhance the hosting capacity beyond the initial calculation. In this study, several PV hosting capacity enhancement techniques have been proposed and compared to find out the best possible technique for the system planners. The IEEE 43 bus industrial system has been used as the test system. Results show that inclusion of parallel lines and transformers, capacitor and battery energy storage system (BESS) can enhance the PV hosting capacity significantly though the enhancement percentage may vary from bus to bus.
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