将现有逆变器转换为太阳能逆变器

Jagruti N. Mahajan, Ashok M. Jain
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引用次数: 3

摘要

化石燃料的大量使用导致了全球温室气体排放问题;这严重破坏了地球环境。此外,化石燃料将在未来耗尽。增加了太阳能、风能等可再生能源的利用。太阳是一个巨大而强大的能源;事实上,地球表面在一小时内从太阳接收的能量足以满足一年的能量需求。近年来,世界能源需求达到高峰,社会对环境保护的呼声也越来越高。传统的太阳能逆变系统是级联的,控制器简单,效率低。新型太阳能并网逆变器系统降低了功率半导体开关损耗,输出稳定同步的正弦波电流,同时提高了效率。逆变器的使用时间很长,很多改进正在发生,由于太阳能是可再生能源,将我们现有的旧逆变器转换成太阳能逆变器是非常有益的。本实验集中在太阳能如何以经济有效的方式转化为电能,什么是不同类型的太阳能逆变器系统,它们的优点和缺点,以及它们的应用进行了讨论。本实验是对太阳能逆变器充电控制器的各个方面进行研究,以提高太阳能系统的整体效率。实验还包括过载、过充、深度放电、放电深度等各种现象的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Conversion of existing inverter into solar inverter
The massive use of fossil fuels causes the problem of greenhouse emissions worldwide; this damages the earth's environment seriously. Moreover, the fossil fuels will be exhausted in the future. The use of renewable energies such as solar energy and wind energy has been increased. The sun is a giant powerful energy source; in fact the earth's surface receives too much energy from the sun in one hour to meet its energy requirements for one year. The world energy demand has got high peak in the recent years, as well as the social clamor for environment preservation. Traditional solar-based inverter system is in cascaded, with simple controller and low efficiency. In new solar grid-connected inverter system has reduced power semiconductor switching loss and output stable and synchronized sinusoid current but with higher efficiency. Inverters are in use from very long time, lot of improvement is taking place, as solar is renewable source of energy, it is very beneficial to convert our old existing inverters into solar inverters. This experiment is concentrated on how solar energy is converted into electrical energy in cost effective manner and what are different types of solar inverter systems, their advantages and disadvantages and also their applications have been discussed. The experiment is the study of all the aspects of charge controller with respect to solar inverter to improve overall efficiency of solar system. Experiment also contains study of various phenomenon such as overload, overcharge, deep discharge and depth of discharge.
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