Hybrid Renewable Power Generation for Modeling and Controlling the Battery Storage Photovoltaic System

可再生能源 最大功率点跟踪 独立电源系统 光伏系统 计算机科学 混合动力 电气工程 降压式变换器 汽车工程 分布式发电 功率(物理) 电压 工程类 逆变器 物理 量子力学
作者
Mohd Mustafa,G. Anandhakumar,Anju Anna Jacob,Ngangbam Phalguni Singh,S. Asha,S. Arockia Jayadhas
出处
期刊:International Journal of Photoenergy [Hindawi Publishing Corporation]
卷期号:2022: 1-12 被引量:14
标识
DOI:10.1155/2022/9491808
摘要

A major portion of the global energy demand was likely to be fulfilled by an extensive supply of renewable power. Renewable energy outputs, on the other hand, are changeable due to the dynamic nature of their sources. The integration of these variable sources of power into current power grids is proving difficult for electrical power system operators all around the world. The fundamental issue with renewable energy systems is that, due to the stochastic nature of renewable power, electricity production varies from period to period. Recent research and development on renewable technologies can ensure the islands’ long-term electricity supply. Renewable energy sources, on the other hand, are limited by their unpredictable nature and significant reliance on weather conditions. To offset this disadvantage, several renewable energy sources and converters must be joined. To balance the power generation and load power, a hybrid renewable power generation for standalone application is proposed. The solar plant model is made up of a 170 W photovoltaic (PV) panel connected in series, and conversion of energy is done using the maximum power point tracking (MPPT) algorithm, which regulates a buck-boost converter modulation. The MPPT method used in the converter’s control step is based on perturb and observe (P&O) and enhanced with a PI controller. The bidirectional buck-boost DC-DC converters (BBDC) are utilized to preserve a DC-link voltage stable. This is also storing additional hybrid energy in a large battery and is distributed to the system load; then there is a shortage of hybrid power. The load current power is regulated in terms of the frequency and enables it to be achieved using three vector control technique voltage source inverters (VSI). The results were offered to demonstrate a hybrid performance of this organization.
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