Cite this DOI
10.46243/jstj.2018.v3.i3.207 · Boosting Inverter Without electrolytic capacitor In a SingleStage Conversion
APA (7th edition)
Praveen, A. A., P. Sabarish, & Lilly Renuka (2018). Boosting Inverter Without electrolytic capacitor In a SingleStage Conversion. *Journal of Science & Technology*, *03*(03), 25–34. https://doi.org/10.46243/jstj.2018.v3.i3.207
⬇ text Italics are shown as *asterisks* in plain text — the journal or book title and the volume.
BibTeX
@article{praveen2018boosting,
author = {Praveen, A.Anton Amala and P. Sabarish and Lilly Renuka},
title = {{Boosting Inverter Without electrolytic capacitor In a SingleStage Conversion}},
journal = {Journal of Science \& Technology},
year = {2018},
month = {may},
volume = {03},
number = {03},
pages = {25--34},
publisher = {Longman Publishers},
issn = {2456-5660},
doi = {10.46243/jstj.2018.v3.i3.207},
url = {https://doi.org/10.46243/jstj.2018.v3.i3.207},
language = {en},
abstract = {This paper introduces a high-gain single-stage boosting inverter for alternative energy generation. As compared to the traditional two-stage approach, the SSBI has a simpler topology and a lower component count. One cycle control was employed togenerate ac voltage output. This paper presents theoretical analysis, simulation and experimental results obtained from a 200 W prototype. The experimental results reveal that the proposed SSBI can achieve high dc input voltage boosting, good dc–ac power decoupling, good quality of ac output waveform, and good conversion efficiency.}
}RIS (EndNote, Zotero, Mendeley)
TY - JOUR TI - Boosting Inverter Without electrolytic capacitor In a SingleStage Conversion AU - Praveen, A.Anton Amala AU - P. Sabarish AU - Lilly Renuka JO - Journal of Science & Technology PY - 2018 DA - 2018/05/17/ VL - 03 IS - 03 SP - 25 EP - 34 PB - Longman Publishers SN - 2456-5660 LA - en AB - This paper introduces a high-gain single-stage boosting inverter for alternative energy generation. As compared to the traditional two-stage approach, the SSBI has a simpler topology and a lower component count. One cycle control was employed togenerate ac voltage output. This paper presents theoretical analysis, simulation and experimental results obtained from a 200 W prototype. The experimental results reveal that the proposed SSBI can achieve high dc input voltage boosting, good dc–ac power decoupling, good quality of ac output waveform, and good conversion efficiency. DO - 10.46243/jstj.2018.v3.i3.207 UR - https://doi.org/10.46243/jstj.2018.v3.i3.207 ER -
CSL-JSON
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} ⬇ .json What citeproc and reference managers read; the DOI system hands it out for Accept: application/vnd.citationstyles.csl+json, and so does this registry's resolver.
From the record as registered (version 2) — the record and its history. Programs: https://registry.smartscholars.in/api.php?action=cite&doi=10.46243%2Fjstj.2018.v3.i3.207 gives all four in one JSON answer.
