Stability and reliability analysis of a non‐isolated high gain DC‐DC converter

Author:

Rajesh Ramachandran1ORCID,Prabaharan Natarajan1ORCID

Affiliation:

1. School of Electrical & Electronics Engineering SASTRA Deemed University Tamilnadu India

Abstract

AbstractThis paper investigates the stability and reliability analysis of a non‐isolated high‐gain DC‐DC converter. The proposed DC‐DC converter produces a high gain output voltage with a lower duty ratio and reduced voltage stress on the semiconductor switch. A reliability analysis is performed to predict the failure rate and lifetime of the individual components using the military handbook (MIL‐HDBK‐217F). A state space equation and small signal modeling of the proposed converter are derived to elucidate the performance of the proposed converter through stability analysis. A closed‐loop using PID controller is incorporated to attain the constant regulated output voltage during sudden parameter changes. The validation of the closed‐loop using the PID controller is verified with the wide range of variations in the different parameters, such as input voltage, load value, and reference voltage value. The laboratory‐based prototype is developed for the proposed converter and validated the performance with 250 W. The power density and efficiency of the proposed converter are 1.360 kW/L and 93%, respectively.

Funder

Science and Engineering Research Board

Publisher

Institution of Engineering and Technology (IET)

Subject

Electrical and Electronic Engineering

Reference59 articles.

1. Global Electricity Review 2022. Ember. (n.d.). Retrieved December 27 2023 fromhttps://ember‐climate.org/insights/research/global‐electricity‐review‐2022/

2. Fossil Fuel Electricity Global Market Report 2022. (n.d.). Retrieved December 27 2023 fromhttps://www.globenewswire.com/news‐release/2021/12/30/2359143/0/en/Fossil‐Fuel‐Electricity‐Global‐Market‐Report‐2022.html

3. IRENA(2021) Renewable capacity statistics 2021 International Renewable Energy Agency (IRENA) Abu Dhabi

4. Global Market Outlook For Solar Power 2022‐2026 ‐ Solar Power Europe. (n.d.). Retrieved December 27 2023 fromhttps://www.solarpowereurope.org/insights/market‐outlooks/global‐market‐outlook‐for‐solar‐power‐2022

5. Solar ‐ IEA. (n.d.). Retrieved December 27 2023 fromhttps://www.iea.org/energy‐system/renewables/solar‐pv

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