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An approach to the utilization of grid integration to analyze the performance and quality of solar photovoltaic model

光伏系统 可再生能源 太阳能 电气工程 光伏并网发电系统 汽车工程 电压 工程类 最大功率点跟踪 计算机科学 逆变器
作者
Syed Hamim Jeelani,R. Puviarasi,M. Chilambarasan,Sarita Santaji Shinde,Raviteja Surakasi,Vipin Sharma,S. Madhavarao,M. Sudhakar,V. Mohanavel
出处
期刊:Energy Reports [Elsevier BV]
卷期号:8: 1029-1044 被引量:4
标识
DOI:10.1016/j.egyr.2022.10.282
摘要

Photovoltaic power is most important cause of energy subsequently it is simultaneously clean and limitless. PV power conversion devices must be maintained at MPP there to maximize the energy production of Solar array. To get the most energy out of the Solar array, MPPT monitoring is necessary. In recent times, a slew of strategies for controlling the voltage was presented. Power electronic devices developments for the combination of wind and solar power generation are discussed. Based on the dependability and development of each technology, conversations concerning developments and trends in sustainable source systems are provided. The consumption of electricity generated is increasing exponentially, and as a result, the incorporation of photovoltaic panels into distribution companies is increasing rapidly as well, even though it has a substantial impact on the show's voltage stability. The purpose of this report is to look at how solar PV integration affects distribution transmission energy reliability. The analysis is carried out using RSCAD software, with one of the radial distribution networks with the lowest voltage profile accessible during the maximum of linked loads. Furthermore, the influence of current and voltage on the transmission or distribution system is compared by analyzing distribution system configuration with various solar PV system penetration rates. The simulated findings show that as the penetrating capability of the PV system increases, large harmonic distortion levels are injected, indicating that the solar photo system should only integrate corresponding to the highest capability the connection can sustain. When a PV technology is connected further than this maximum penetration of renewable energy sources, it produces considerable harmonic components, which harms the system that improves. Total voltage output frequency and current consumption distortion are determined to be 4.98 percent and 14.99 percent, correspondingly, at the maximum diffusion way that enables the permissible harmonic distortion limitation. Thus, the research presents the uses of Grid Integration to estimate the performance and the quality of the solar PV model.
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