基于PWM逆变器的孤岛微电网临界负荷离网光伏系统。

Priyanka Mane, Santosh R. Madiwal, Pallavi P. Patil
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引用次数: 1

摘要

现在,大多数国家都倾向于可再生能源(如风能、水力、太阳能等),因为与其他不可再生能源(如热能、核能、天然气等)相比,它们储量丰富,而且无污染。离网光伏系统的主要装置不与电网相连,是独立运行的。在电网连接既复杂又昂贵的地区,我们可能需要可再生能源,因为它既环保又兼容。对此,独立的光伏系统是最实际、最实用的解决方案。在之前的研究中,我们已经对仿真结果进行了验证。这项工作详细研究了一个孤岛太阳能光伏(PV)系统,以满足小规模有需要的客户的电力需求。该系统是在考虑到个人消费者的能源需求的情况下创建的。这个160w的太阳能电池板由一个100ah的电池存储系统和一个1kva的变压器供电。逆变器还使用最大功率点跟踪(MPPT)技术和PWM控制方法进行控制。通过改变振荡器侧开关频率的宽度,脉冲宽度调制控制有助于将输出电压和频率保持在适当的水平。本文还包括硬件实现和结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
OFF Grid PV System with PWM Inverter for Islanded Micro-Grid feeding critical loads.
Now a days most of the countries are inclining towards renewable energy resources (e.g., Wind, hydro, solar energy etc.) due to the fact they’re abundant in nature & also pollution free as compare to other non-renewable energy sources (e.g. Thermal, nuclear, natural gas etc.). The main installations in an OFF-Grid PV system are not connected to the grid and is operate independently. We might need renewable energy in regions where grid connection is both complicated and expensive because it is both environmentally compatible. For this, a stand-alone PV system is the most practical and practical solution. In a prior study, we had already verified simulation results. This work details a study of an islanded solar photovoltaic (PV) system for small scale needy customer’s electricity requirements. The system is created with that individual consumer’s energy requirements in mind. This 160w solar panel is powered by a 100-ah battery storage system and a 1 kVA transformer. The inverter is also controlled using a maximum power point tracking (MPPT) technology and a PWM control approach. By altering the width of the switching frequency at the oscillator side, pulse width modulation control helps maintain output voltage and frequency at appropriate levels. This paper also includes a hardware implementation and its outcomes.
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