光伏系统
计算机科学
辐照度
逆变器
网格
功率(物理)
电子工程
最大功率点跟踪
太阳辐照度
动力学(音乐)
转换器
系统动力学
光伏并网发电系统
控制理论(社会学)
控制工程
电力系统
网格代码
电源逆变器
太阳能微型逆变器
振幅
交流电源
电网
最大功率原理
编码(集合论)
模拟
作者
Bidur Poudel,Nischal Guruwacharya,Sunil Subedi,Ujjwol Tamrakar,Felipe Wilches‐Bernal,Hossein Moradi Rekabdarkolaee,Timothy M. Hansen,Reinaldo Tonkoski
出处
期刊:IEEE Access
[Institute of Electrical and Electronics Engineers]
日期:2024-01-01
卷期号:12: 164137-164150
被引量:1
标识
DOI:10.1109/access.2024.3488493
摘要
As conventional direct connections of synchronous generators are being phased out, inverter-based resources (IBRs) with grid support functions are increasingly being integrated into power systems. This transition requires the development of accurate dynamic models for IBRs to predict how power systems will adapt to varying levels of IBRs penetration, establish grid code requirements, and ensure compliance. Here, this study introduces an active probing signal-based data-driven modeling technique to accurately derive the dynamics model of a smart photovoltaic inverter operating in Volt-Watt and Freq-Watt modes, in compliance with the IEEE 1547–2018 standard. The paper focuses on investigating how the dynamics of the PV inverter model respond to fluctuations in solar irradiance, utilizing real-time digital simulator experimentation. The experimental analysis demonstrates that the amplitude of dynamics fluctuates with changes in irradiance across both operational modes and confirms the active power’s dependence on irradiance levels. Furthermore, the nature of inverter dynamics varies distinctly between the different modes of activation. Critically, our findings indicate that dynamic models require DC-gain adjustments to accommodate contrasting irradiance levels, highlighting a negative gradient linear relationship between the DC-gain of each model and the irradiance.
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