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 2021

 رمادي الذئب محسن القائم على MPPT الجزئي لمولد الحرارية الكهربائية

 . Elbloye, Abdelrahman Eid Saleh


//uquui/handle/20.500.12248/131028
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DC FieldValueLanguage
dc.contributor.adviserKorrany, Mohamed-
dc.contributor.adviserFathi, Ahmed-
dc.contributor.author. Elbloye, Abdelrahman Eid Saleh-
dc.date.accessioned2021-10-21T06:55:29Z-
dc.date.available2021-10-21T06:55:29Z-
dc.date.issued2021en_US
dc.identifier.urihttp://dorar.uqu.edu.sa//uquui/handle/20.500.12248/131028-
dc.description50 ورقةen_US
dc.description.abstractThe energy collected from the thermoelectric generator; TEG is mainly dependent on the temperature difference between the hot and cold sides of the TEG along with the connected load. Therefore, a maximum power tracker is needed to force the TEG to work near the maximum power with any variation during operation. In the present work, an optimized fractional maximum power point tracker; OFMPPT is suggested to improve TEG performance. The suggested tracker is based on fractional control. The optimal parameters of OFMPPT were determined using the grey wolf enhancer; GWO. To demonstrate the superiority of GWO, the results were compared with the particle swarm optimization; PSO methodology and the genetic algorithm; GA. GWO achieves a largest fitness function, lowest standard deviation, and highest efficiency. The objective of the proposed OFMPPT is to overcome two major problems in conventional tracking devices. It is the slow dynamics of the conventional incremental resistance tracker; INRT as objective function and the high steady-state variability around maximum power point; MPP in the observation tracker and very common perturbation perturb & observe (POT). The main result confirmed the superiority of OFMPPT compared to INRT and POT for bothen_US
dc.language.isoانجليزيen_US
dc.publisherجامعة أم القرىen_US
dc.relation.isformatofمكتبة الملك عبدالله بن عبدالعزيز الجامعيةen_US
dc.subjectالهندسة الميكانيكيةen_US
dc.titleرمادي الذئب محسن القائم على MPPT الجزئي لمولد الحرارية الكهربائيةen_US
dc.title.alternativeGrey Wolf Optimizer-Based Fractional MPPT for Thermoelectric Generatoren_US
dc.identifier.callnum24569-
dc.type.formatماجستيرen_US
dc.publisher.countryالمملكة العربية السعوديةen_US
dc.relation.collageالهندسة والعمارة الإسلاميةen_US
dc.type.statusمجازen_US
dc.rights.holdYesen_US
dc.rights.digitalYesen_US
dc.publisher.cityمكة المكرمةen_US
dc.date.issuedhijri1440en_US
dc.relation.depالهندسة الميكانيكيةen_US
dc.rights.digitizedYesen_US
Appears in Collections :الرسائل العلمية المحدثة

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