Integration of Grid System with Single Stage PV Inverter using Hardware in the loop Simulation

Suyash Binod, Abhishek Baluni, Sudhanshu Maurya, Aayush Srivastava, Sudipto Poddar, Y. P. Verma
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Abstract

The perception to improvise the human conduct to attain maximum sustainability and quality has been a priority for the past 25 years, the essential energy need which is creating a blockade against our ambitions should be taken into account without distorting our environment. Thus, renewable energy generation techniques might be the right option for us, among various holistic approaches the photovoltaic (PV) generation is chosen for this purpose. The photovoltaic (PV) panels of 5kW rating is taken into account, so as to achieve maximum stability the switching has been improved which can nullify the harmonics during its normal operation. To enhance the maximum power tracking process a certain code is employed as compared with other models. As a result, the proposed system is simulated under real time conditions via Typhoon HIL Software, and it is further analyzed on the basis of performance and efficacy which comes out to be more stabilized and reliable.
电网系统与单级光伏逆变器集成的硬件在环仿真
即兴发挥人类行为以达到最大的可持续性和质量的观念是过去25年来的优先事项,基本的能源需求正在对我们的雄心造成封锁,应该在不扭曲我们的环境的情况下考虑到这一点。因此,可再生能源发电技术可能是我们的正确选择,在各种整体方法中,光伏发电是为此目的而选择的。考虑到5kW额定值的光伏(PV)板,为了达到最大的稳定性,对开关进行了改进,可以消除其正常运行时的谐波。与其他模型相比,采用了一定的代码来增强最大功率跟踪过程。最后,利用Typhoon HIL软件对所提出的系统进行了实时仿真,并在性能和效果的基础上进行了进一步的分析,结果表明所提出的系统更加稳定可靠。
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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