S
S. P. Gawande
Researcher at Yeshwantrao Chavan College of Engineering
Publications - 51
Citations - 369
S. P. Gawande is an academic researcher from Yeshwantrao Chavan College of Engineering. The author has contributed to research in topics: Inverter & Voltage. The author has an hindex of 9, co-authored 47 publications receiving 263 citations.
Papers
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Journal ArticleDOI
An Isolated Multi-Input ZCS DC–DC Front-End-Converter Based Multilevel Inverter for the Integration of Renewable Energy Sources
Naresh Kumar Reddi,M.R. Ramteke,Hiralal M. Suryawanshi,Koteswararao Kothapalli,S. P. Gawande +4 more
TL;DR: In this article, a front-end dc/dc converter based multilevel inverter is proposed for multi-input applications, which integrates two different renewable energy sources, resulting in an advantageous compact structure and low conduction losses.
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Sliding Mode Control of Single-Phase Grid-Connected Quasi-Z-Source Inverter
Umesh K. Shinde,Sumant G. Kadwane,S. P. Gawande,M. Jaya Bharata Reddy,Dusmanta Kumar Mohanta +4 more
TL;DR: A grid-connected qZSI with both ac and dc side control withSliding mode control (SMC)-based controller for capacitor voltage regulation has been proposed to ensure a fast and dynamic response for wide variations in input voltage, output load, and reference controlled quantity.
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An Intelligent Hybrid Approach Using KNN-GA to Enhance the Performance of Digital Protection Transformer Scheme
TL;DR: In this paper, a hybrid K nearest neighbor-genetic algorithm (KNN-GA)-based digital protection transformer scheme was proposed, which effectively discriminates its internal faults with non-internal faults.
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Five-Level Diode Clamped Multilevel Inverter (DCMLI) Based Electric Spring for Smart Grid Applications
TL;DR: In this paper, the multilevel inverter (MLI) based electric spring (ES) for smart grid applications is realized using 5-level DCMLI, and the performance of two-level and five-level MLI based ES is investigated in terms of Total Harmonic Distortion (THD).
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Dual Mode Controller-Based Solar Photovoltaic Simulator for True PV Characteristics
TL;DR: In this article, a real-time PV simulator based on a dc-dc buck converter is investigated to obtain true PV characteristics, which is required to exhibit PV system behavior under working conditions without the use of real outdoor installation.