{
    "ok": true,
    "doi": "10.46243/jstj.2017.v2.i4.173",
    "doi_display": "10.46243/jstj.2017.v2.i4.173",
    "doi_url": "https://doi.org/10.46243/jstj.2017.v2.i4.173",
    "state": "registered",
    "url": "https://www.jst.org.in/index.php/pub/article/view/173",
    "title": "Simulation of Extended Range Hybrid Type Full Bridge DC-DC Converter with Closed Loop Control",
    "version": 2,
    "registered_via": "crossref",
    "prefix": {
        "prefix": "10.46243",
        "status": "live"
    },
    "registrant": {
        "name": "Longman Publishers",
        "kind": "publisher",
        "country": "India"
    },
    "reserved_at": null,
    "registered_at": "2026-09-29 22:00:33",
    "updated_at": "2026-09-29 23:59:52",
    "withdrawn_at": null,
    "withdrawn_reason": null,
    "record": {
        "format": "smartscholars-doi-metadata/1.0",
        "doi": "10.46243/jstj.2017.v2.i4.173",
        "referent": "Creation",
        "type": "JournalArticle",
        "structural_type": "Digital",
        "modes": [
            "Visual"
        ],
        "characters": [
            "Language"
        ],
        "titles": [
            {
                "value": "Simulation of Extended Range Hybrid Type Full Bridge DC-DC Converter with Closed Loop Control",
                "type": "PrincipalTitle",
                "lang": "en"
            }
        ],
        "identifiers": [
            {
                "type": "DOI",
                "value": "10.46243/jstj.2017.v2.i4.173"
            }
        ],
        "agents": [
            {
                "role": "author",
                "name": {
                    "given": "M. Durga",
                    "family": "Sai Chand"
                },
                "sequence": "first"
            },
            {
                "role": "author",
                "name": {
                    "given": "B.V.R.S.",
                    "family": "Bhanu Seshu"
                },
                "sequence": "additional"
            },
            {
                "role": "publisher",
                "name": {
                    "org": "Longman Publishers"
                }
            }
        ],
        "dates": {
            "published": "2017-07-06",
            "date_type": "PublicationDate",
            "online": "2017-07-06"
        },
        "language": "en",
        "container": {
            "type": "Journal",
            "titles": [
                {
                    "value": "Journal of Science & Technology",
                    "type": "PrincipalTitle"
                }
            ],
            "identifiers": [
                {
                    "type": "ISSN",
                    "value": "2456-5660",
                    "medium": "electronic"
                }
            ],
            "volume": "02",
            "issue": "04",
            "pages": {
                "first": "18",
                "last": "23"
            }
        },
        "links": [
            {
                "url": "https://www.jst.org.in/index.php/pub/article/view/173",
                "return_type": "text/html",
                "primary": true
            },
            {
                "url": "https://www.jst.org.in/index.php/pub/article/download/173/151",
                "purpose": "text-mining",
                "return_type": "application/pdf"
            },
            {
                "url": "https://www.jst.org.in/index.php/pub/article/download/173/3542",
                "purpose": "text-mining",
                "return_type": "application/xml"
            },
            {
                "url": "https://www.jst.org.in/index.php/pub/article/view/173/151",
                "purpose": "similarity-checking"
            }
        ],
        "abstract": {
            "value": "This paper presents a hybrid-type Z-Source fullbattery or external supply (sometimes higher or lower than the bridge dc/dc converter with high efficiency. Using a hybrid supply voltage).Additionally, the battery voltage declines as control scheme with a simple circuit structure, the proposed its stored energy is drained. Switched dc to dc converters offer dc/dc converter has a Z- Source impedance which will a method to increase voltage from a partially lowered battery extend the range of the full bridge converter. Under a voltage thereby saving space instead of using multiple normal input range, the proposed converter operates as a batteries to accomplish the same thing. phase-shift full-bridge series-resonant converter that Most dc to dc converter circuits also regulate the output provides high efficiency by applying soft switching on all voltage. Some exceptions include high-efficiency LED power switches and rectifier diodes and reducing conduction losses. sources, which are a kind of dc to dc converter that regulates When the input is lower than the normal input range, the the current through LEDs, and the simple charge pumps which converter operates as an active-clamp step-up converter that double or triple the output voltage. enhances an operation range. Due to the hybrid operation, Dc to Dc converters developed to maximize the energy harvest the proposed converter operates with larger phase-shift value for photovoltaic systems and for wind turbines are called than the conventional converters under the normal input power optimizers.Transformers used for voltage conversion at range. Thus, the proposed converter is capable of being mains frequencies of 50-60 Hz must be large and heavy for designed to give high power conversion efficiency and its powers exceeding a few watts. This makes them expensive, operation range is extended. A 1-kW prototype is and they are subject to energy losses in their windings and due implemented to confirm the theoretical analysis and validity to eddy currents in their cores. Dc-to-Dc techniques that use of the proposed converter. transformers or inductors work at much high frequencies, requiring only much smaller, lighter, and cheaper wound",
            "lang": "en"
        },
        "license": {
            "url": "https://creativecommons.org/licenses/by/4.0/",
            "start": "2017-07-06",
            "applies_to": "vor"
        },
        "references": [
            {
                "key": "ref1",
                "doi": "10.1109/apec.1990.66420",
                "unstructured": "J. A. Sabat´e, V. Vlatkovic, R. B. Ridley, F. C. Lee, and B. H. Cho, ―Design considerations for high-voltage high-power full-bridge zerovoltageswitching PWM converter,‖ in Proc. Appl. Power Electron. Conf., 1990,pp. 275–284"
            },
            {
                "key": "ref2",
                "unstructured": "I. O. L e e a n d G. W. M o o n, ― P h a s e-s h i ft e d P W M c o n v e rte r w i t h a w id e Z V S r a n g e a nd re d uc e d c i rc u l a t i n g c u r r e nt,‖ I E E E T r a n s. P o w e r Electron., vol. 28, no. 2, pp. 908–919, Feb. 2013"
            },
            {
                "key": "ref3",
                "doi": "10.1109/icpe.2011.5944489",
                "unstructured": "Y. S. Shin, S. S. Hong, D. J. Kim, D. S. Oh, and S. K. Han, ―A new changeable full bridge dc/dc converter for wide input voltage range,‖ in Proc. 8th Int. Conf. Power Electron. ECCE Asia, May 2011, pp. 2328–2335"
            },
            {
                "key": "ref4",
                "doi": "10.1109/tpel.2002.802181",
                "unstructured": "P. K. Jain, W., Kang, H. Soin, and Y. Xi, ―Analysis and design considerations of a load and line independent zero voltage switching full bridge dc/dc converter topology,‖ IEEE Trans. Power Electron., vol. 17, no. 5, pp. 649–657, Sep. 2002"
            },
            {
                "key": "ref5",
                "doi": "10.1109/tpel.2012.2199520",
                "unstructured": "I. O. Lee and G. W. Moon, ―Soft-switching DC/DC converter with a full ZVS range and reduced output filter for high-voltage application,‖ IEEE Trans. Power Electron., vol. 28, no. 1, pp. 112–122, Jan. 2013"
            },
            {
                "key": "ref6",
                "doi": "10.1109/tpel.2013.2284780",
                "unstructured": "G. N. B. Yadav and N. L. Narasamma, ―An active soft switched phaseshifted full-bridge dc-dc converter:Analysis, modeling, design, and implementation,‖ IEEE Trans. Power Electron., vol. 29, no. 9, pp. 4538–4550, Sep. 2014"
            },
            {
                "key": "ref7",
                "doi": "10.1109/tpel.2003.816189",
                "unstructured": "Y. Jang, M. M. Jovanovi´c, and Y.-M. Chang, ―A new ZVS-PWM fullbridge converter,‖ IEEE Trans. Power Electron., vol. 18, no. 5, pp. 1122–1129, Sep. 2003"
            },
            {
                "key": "ref8",
                "doi": "10.1109/tpel.2004.843016",
                "unstructured": "T. T. Song and N. Huang, ―A novel zero-voltage and zerocurrentswitching full-bridge PWM converter,‖ IEEE Trans. Power Electron., vol. 20, no. 2, pp. 286–291, Mar. 2005"
            },
            {
                "key": "ref9",
                "doi": "10.1109/tpel.2009.2022755",
                "unstructured": "R. Huang and S. K. Mazumder, ―A soft-switching scheme for an isolated dc/dc converter with pulsating dc output for a three-phase highfrequency link PWM converter,‖ IEEE Trans. Power Electron., vol. 24, no. 10, pp. 2276–2288, Oct. 2009"
            },
            {
                "key": "ref10",
                "doi": "10.1109/41.969400",
                "unstructured": "K.W. Seok and B. H. Kwon, ―An improved zero-voltage and zerocurrentswitching full-bridge PWM converter using a simple resonant circuit,‖ IEEE Trans. Ind. Electron., vol. 48 no. 6, pp. 1205–1209, Dec. 2001"
            },
            {
                "key": "ref11",
                "doi": "10.1109/tpel.2011.2178103",
                "unstructured": "M. Pahlevaninezhad, P. Das, J. Drobnik, P. K. Jain, and A. Bakhshai, ―A novel ZVZCS full-bridge dc/dc converter used for electric vehicles,‖ IEEE Trans. Power Electron., vol. 27, no. 6, pp. 2752–2769, Jun. 2012"
            },
            {
                "key": "ref12",
                "doi": "10.1109/tpel.2013.2293537",
                "unstructured": "J. Drobnik, M. Bodor, and M. Pastor, ―Soft-switching full-bridge PWM dc–dc converter with controlled output rectifier and secondary energy recovery turn-off snubber,‖ IEEE Trans. Power Electron., vol. 29, no. 8, pp. 4116–4125, Aug. 2014"
            },
            {
                "key": "ref13",
                "doi": "10.1109/tpel.2012.2210565",
                "unstructured": "B., Gu, J.-S. Lai, N. Kees, and C. Zheng, ―Hybrid-switching full-bridge dc–dc converter with minimal voltage stress of bridge rectifier, reduced circulating losses, and filter requirement for electric vehicle battery chargers,‖ IEEE Trans. Power Electron., vol. 28, no. 3, pp. 1132–1144, Mar. 2013"
            },
            {
                "key": "ref14",
                "doi": "10.1109/tie.2008.921462",
                "unstructured": "W. J. Lee, C. E. Kim, G. W. Moon, and S. K. Han, ―A new phase-shifted full-bridge converter with voltage-doubler-type rectifier for highefficiency PDP sustaining power module,‖ IEEE Trans. Ind. Electron., vol. 55, no. 6, pp. 2450–2458, Jun. 2008"
            },
            {
                "key": "ref15",
                "doi": "10.1109/tie.2009.2029581",
                "unstructured": "E. H. Kim and B. H.Kwon, ―Zero-voltage-and zero-current-switching fullbridge converter with secondary resonance,‖ IEEE Trans. Ind. Electron.,vol. 57 no. 3, pp. 1017–1025, Mar. 2010"
            },
            {
                "key": "ref16",
                "doi": "10.1109/apec.2001.911689",
                "unstructured": "B. Yang, P. Xu, and F. C. Lee, ―Range winding for wide input range front end dc/dc converter,‖ in Proc. IEEE Appl. Power Electron. Conf., 2001, pp. 476–479"
            },
            {
                "key": "ref17",
                "doi": "10.1109/tpel.2007.915158",
                "unstructured": "X.Wang, F. Tian, and I. Batarseh, ―High efficiency parallel post regulator for wide range input dc–dc converter,‖ IEEE Trans. Power Electron., vol. 23, no. 2, pp. 852–858, Mar. 2008"
            },
            {
                "key": "ref18",
                "doi": "10.1109/63.484429",
                "unstructured": "R. Watson, F. C. Lee, and G. C. Hua, ―Utilization of an active-clamp circuit to achieve soft switching in flyback converters,‖ IEEE Trans. Power Electron., vol. 11, no. 1, pp. 162–169, Jan. 1996"
            },
            {
                "key": "ref19",
                "doi": "10.1109/63.988664",
                "unstructured": "Q. Li, F. C. Lee, S. Buso, and M. M. Jovanovic, ―Large-signal transient analysis of forward converter with active-clamp reset,‖ IEEE Trans. Power Electron., vol. 17, no. 1, pp. 15–24, Jan. 2002"
            },
            {
                "key": "ref20",
                "doi": "10.1109/tpel.2012.2201504",
                "unstructured": "W. Y. Choi, ―High-efficiency DC–DC converter with fast dynamic response for low voltage photovoltaic sources,‖ IEEE Trans. Power Electron., vol. 28, no. 2, pp. 706–716, Feb. 2013"
            },
            {
                "key": "ref21",
                "doi": "10.1109/tpel.2011.2134871",
                "unstructured": "G. Spiazzi, P. Mattavelli, and A. Costabeber, ―High step-up ratio flyback converter with active clamp and voltage multiplier,‖ IEEE Trans. Power Electron., vol. 26, no. 11, pp. 3205–3214, Nov. 2011"
            },
            {
                "key": "ref22",
                "doi": "10.1109/28.195897",
                "unstructured": "P. Imbertson and N. Mohan, ―Asymmetrical duty cycle permits zero switching loss in PWM circuits with no conduction loss penalty,‖ IEEE Trans. Ind. Appl., vol. 29, no. 1, pp. 121–125, Jan. 1993"
            }
        ],
        "record": {
            "registrant": "Longman Publishers",
            "registered": "2026-09-08",
            "updated": "2026-09-20",
            "issue_number": 1,
            "source": "crossref-api",
            "source_agency": "Crossref (member 25296)"
        }
    },
    "record_sha256": "0424342a8fe82ad9dacf3361ce62d19c038a5ceae54df4c8d01f5ddfb3c84964",
    "handle": {
        "synced_at": "2026-10-01 18:13:34",
        "url": "https://www.jst.org.in/index.php/pub/article/view/173"
    },
    "links": {
        "record_page": "https://registry.smartscholars.in/record.php?doi=10.46243%2Fjstj.2017.v2.i4.173",
        "system_metadata": "https://registry.smartscholars.in/resolve.php?doi=10.46243%2Fjstj.2017.v2.i4.173&as=system",
        "history": "https://registry.smartscholars.in/api.php?action=history&doi=10.46243%2Fjstj.2017.v2.i4.173",
        "kernel_xml": "https://registry.smartscholars.in/resolve.php?doi=10.46243%2Fjstj.2017.v2.i4.173&as=xml"
    }
}