提高光伏在低压配电中的承载能力

Masroor Khan, Mahesh Kumar, A. M. Soomro, Abdullah Shoukat
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引用次数: 0

摘要

由于尽可能减少气候变化的努力,世界范围内光伏(PV)系统的安装数量有所增加。由于电压和电流的限制,光伏主机容量大大降低。为了提高低压配电网的光伏发电容量,本研究提出了一种基于电压控制和动态电压控制的可行策略,采用无功功率控制和两种不同的补偿方式,包括有载分接变压器和无功功率控制器与协调电压管理。为了验证所开发的策略,使用IEEE 123标准母线系统评估低压配电系统中不同母线的最大承载能力,然后通过在线分接变换变压器和无功补偿进行调节,提高特定母线的承载能力。该策略足够有效,能够随着光伏系统的渗透动态控制低压配电系统的电压,从而提高配电系统的光伏承载能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhancing the Photovoltaic Hosting Capacity in Low Voltage Distribution
There has been an increase in the installation of photovoltaic (PV) systems worldwide because of the push to reduce climate change as much as possible. Due to voltage and current limitations, the PV hosting capacity has been significantly reduced. To enhance PV hosting capacity in low voltage distribution networks, this research provides a viable strategy based on voltage control and dynamic voltage control using reactive power control with two different types of compensation including onload tap changing transformers as well reactive power controller with coordinated voltage management. For testing of developed strategy, the IEEE 123 standard bus systems is used to evaluate the maximum hosting capacity of different buses present in low voltage distribution system then to enhance the hosting capacity of specific bus via regulation using online tap changing transformers and reactive power compensation. The presented strategy is sufficiently effective and capable of dynamically controlling the voltages of low voltage distribution system with penetration of PV system hence enhancing the PV hosting capacity of distribution system.
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