Performance improvement of half bridge isolated dc dc converter using artificial intelligent techniques

dc.contributor.guideRajaram Men_US
dc.coverage.spatialHalf bridge isolated dc dc converter using artificial intelligent techniquesen_US
dc.creator.researcherGnana saravanan Aen_US
dc.date.accessioned2014-02-24T05:42:37Z
dc.date.available2014-02-24T05:42:37Z
dc.date.awarded31/11/2013en_US
dc.date.completed01/11/2013en_US
dc.date.issued2014-02-24
dc.date.registeredn.d.en_US
dc.description.abstractThe switching power converter has profound impact on the power newlineconversion applications. Rising energy intensity leads to a higher cost for newlinedelivering power. Meanwhile, the demand for compact power supply is grown newlinesignificantly. It requires power supply with high efficiency, low profile and newlinehigh power density. Conventional PWM DC-DC converters have relatively newlinelow power density. In contrast, asymmetric half bridge converters have newlinenumerous advantages in DC-DC power conversions. In this work, half bridge isolated DC-DC converter operation, newlinemonitoring and its controller design is investigated to meet the challenges of newlinesoft switching, current sharing and high volumetric power density for newlineeffectively processing the energy. A converter topology which consists of two newlineasymmetric half bridge converters, whose output voltages overlap in a finite newlineinterval of time is proposed in this work to overcome the issues of newlineconventional circuits. This converter is robust to input voltage and operating newlineduty cycle variations. Both the power semiconductor switches of the proposed converter newlineoperate asymmetrically under zero voltage switching to achieve high newlineefficiency and low voltage stress. The ringing which resulted from the newlineoscillation between the transformer leakage inductance and the junction newlinecapacitance of two switches are eliminated. Also, the asymmetric structure of the proposed converter guarantees equal current sharing of the two rectifiers, newlinethereby maximizing the utilization of the output rectifiers. Conversion newlineefficiency is improved by providing a very small output filter and hence newlineelectrolytic capacitor of low reliability is not required for this circuit. Here, newlinethe main transformer is working as both fly back and forward transformer to newlinemake the transformer utilization high. This work investigates the effectiveness of an artificial neural network newlinewhile training as an asymmetric half bridge DC-DC converter circuit. The newlinenetwork is trained to form a mapping between the inputs and outputs of newlineconverter circuit using back propagationen_US
dc.description.noteReferences p.157-166.en_US
dc.format.accompanyingmaterialNoneen_US
dc.format.dimensions21 cm.en_US
dc.format.extentxiv, 168p.en_US
dc.identifier.urihttp://hdl.handle.net/10603/16142
dc.languageEnglishen_US
dc.publisher.institutionFaculty of Electrical and Electronics Engineeringen_US
dc.publisher.placeChennaien_US
dc.publisher.universityAnna Universityen_US
dc.relationp.157-166en_US
dc.rightsuniversityen_US
dc.source.universityUniversityen_US
dc.subject.keywordArtificial intelligent techniquesen_US
dc.subject.keywordElectrical engineeringen_US
dc.subject.keywordHalf bridge isolated Ac Dc converteren_US
dc.titlePerformance improvement of half bridge isolated dc dc converter using artificial intelligent techniquesen_US
dc.title.alternativeen_US
dc.type.degreePh.D.en_US

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