Design of H5 Transformerless Inverter for Photovoltaic System

Author:

Daivagna Amrutha N,Kumar Sujit,Balamurugan M,Mayur Mukul,Tiwari Abhishek Kumar,Kumar Akhilesh,Bharti Aniket

Abstract

Abstract There are two distinct categories of sources for generating electrical power: conventional and non-conventional. At now, traditional sources such as coal, gas, and nuclear power are widely employed for the purpose of electricity generation; nevertheless, they are associated with detrimental environmental consequences. Therefore, it is crucial to utilize renewable energy sources like sun and wind to provide some of the necessary electrical power. The driving force behind this transition is the imperative for clean energy, the mitigation of greenhouse gas emissions, and the capacity to create electricity in geographically isolated regions. A proposed solution for using solar energy in single-phase AC applications involves the implementation of an H5 converter topology. The proposed architecture employs twin input DC-DC boost converters, which incorporate solar panels and batteries, to manage the desired output DC voltage. The H5 topology has notable suitability for single-phase transformerless inverters in AC applications encompassing low and high-power demands, owing to its capacity to effectively mitigate leakage current. In order to evaluate the viability of the suggested methodology, a MATLAB simulation is performed to simulate the complete procedure. Furthermore, the development of a prototype is underway in order to assess and verify the performance and outcomes of the converter. The simulation will be conducted with either the MATLAB.

Publisher

IOP Publishing

Subject

Industrial and Manufacturing Engineering

Reference28 articles.

1. Synchronous resonant control technique to address power grid instability problems due to high renewables penetration;Mehrasa;Energies (Basel),2018

2. Novel Control Strategy for Modular Multilevel Converters Based on Differential Flatness Theory;Mehrasa;IEEE J Emerg Sel Top Power Electron,2018

3. A multi-loop control technique for the stable operation of modular multilevel converters in HVDC transmission systems;Mehrasa;International Journal of Electrical Power and Energy Systems,2018

4. Comparative efficiency study of single phase photovoltaic grid connected inverters using PLECS®;Rouzbehi,2016

5. A novel H5-D topology for transformerless photovoltaic grid-connected inverter application;Li,2016

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