Implement Using KY Converter for Hybrid Renewable Energy Applications: Design, Analysis, and Implementation

P. Murugan, Jothi Swaroopan Nesa Mony
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引用次数: 1

Abstract

This chapter mainly focuses on meeting the energy demand and methodologies of renewable energy. Nowadays, researchers are mainly focusing on renewable energy from the sun, wind, biomass, etc. due to energy crises and the lack of non-renewable energy. The potential for solar energy is high and this demand can best be met with hybrid systems, which can provide an uninterruptible power supply. This chapter looks at the performance metrics of hybrid energy as well as the methodologies and various control techniques connected with power management. The chapter also defines the photovoltaic (PV)-based, novel, dual KY boost converter. Dual PV sources act as input for the dual KY boost converter to generate as much energy as possible from the dual PV system, using the inverter module to produce single-phase alternating current output. A dual KY boost converter can provide higher maximum power, a faster response, and smaller voltage ripple. KY boost converters are designed to generate stable output values according to various conditions because of various control techniques and the maximum power point tracking control algorithm.
使用KY转换器实现混合可再生能源应用:设计、分析和实现
本章主要介绍了满足能源需求和可再生能源的方法。目前,由于能源危机和不可再生能源的缺乏,研究人员主要关注太阳能、风能、生物质能等可再生能源。太阳能的潜力很大,这种需求可以最好地满足混合系统,它可以提供不间断的电力供应。本章着眼于混合能源的性能指标,以及与电源管理相关的方法和各种控制技术。本章还定义了基于光伏(PV)的新型双KY升压变换器。双PV源作为双KY升压变换器的输入,从双PV系统中产生尽可能多的能量,使用逆变器模块产生单相交流电输出。双KY升压转换器可以提供更高的最大功率,更快的响应和更小的电压纹波。KY升压变换器采用了多种控制技术和最大功率点跟踪控制算法,可以根据各种情况产生稳定的输出值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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