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Design and Synthesis of Polymer-Based Advanced Nanomaterials Usin

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Nội dung chi tiết: Design and Synthesis of Polymer-Based Advanced Nanomaterials Usin

Design and Synthesis of Polymer-Based Advanced Nanomaterials Usin

^|/*WestVirginiaUniversityTHE RESEARCH REPOSITORY @ wvuGraduate Theses, Dissertations, and Problem Reports2019Design and Implementation of Overcurrent

Design and Synthesis of Polymer-Based Advanced Nanomaterials Usint Protection Relays Test BenchKhalid Daud Khattakkk0041 @>mix. wvu.eduFollow this and additional works at: https://researchrepositorywvu.edu/etd& Part

of the Electrical and Electronics Commons, and the Power and Energy CommonsRecommended CitationKhattak, Khalid Daud, 'Design and Implementation of Ov Design and Synthesis of Polymer-Based Advanced Nanomaterials Usin

ercurrent Protection Relays Test Bench' (2019). Graduate Theses, Dissertations, and Problem Reports. 7468.https://researchrepository.wvu.edu/etd/7468T

Design and Synthesis of Polymer-Based Advanced Nanomaterials Usin

his Thesis IS protected by copyright and/or related rights. It has been brought to you by the The Research Repository © wvu with permission from the r

^|/*WestVirginiaUniversityTHE RESEARCH REPOSITORY @ wvuGraduate Theses, Dissertations, and Problem Reports2019Design and Implementation of Overcurrent

Design and Synthesis of Polymer-Based Advanced Nanomaterials Usin. For other uses you must obtain permission from the rights-holder(s) directly, unless additional rights are indicated by a Creative Commons license i

n the record and/ or on the work Itself. This Thesis has been accepted for inclusion in wvu Graduate Theses. Dissertations, and Problem Reports collec Design and Synthesis of Polymer-Based Advanced Nanomaterials Usin

tion by an authorized administrator of The Research Repository @ wvu. For more information, please contact researchrepository©mail vAru.edu.Design and

Design and Synthesis of Polymer-Based Advanced Nanomaterials Usin

Implementation of Overcurrent ProtectionRelays Test BenchKhalid Daud KhanakThesis submitted to theCollege of Engineering and Mineral Resources at Wes

^|/*WestVirginiaUniversityTHE RESEARCH REPOSITORY @ wvuGraduate Theses, Dissertations, and Problem Reports2019Design and Implementation of Overcurrent

Design and Synthesis of Polymer-Based Advanced Nanomaterials Usin. ChairAli Feliachi, Ph.D.,David w. Graham. Ph.D.Lane Department of Computer Science and Electrical EngineeringMorgantown. West Virginia 2019 Keywords

:Overcurrent Protection Relay Test Bench, SEL-751A Feeder Protection Relay. Serial Communication, COM Ports, ACCELERATOR QuickSet*, Electromechanical Design and Synthesis of Polymer-Based Advanced Nanomaterials Usin

CO-8 (Inverse Time) Relay. Power SimulatorCopyright 2019 Khalid Daud KhattakABSTRACTDesign and Implementation of Overcurrent Protection Relays Test Be

Design and Synthesis of Polymer-Based Advanced Nanomaterials Usin

nchKhalid Daud KhattakThe electrical power simulator ill Engineering Sciences Building (ESB) at wvu was dismantled in July 2018. The simulator was use

^|/*WestVirginiaUniversityTHE RESEARCH REPOSITORY @ wvuGraduate Theses, Dissertations, and Problem Reports2019Design and Implementation of Overcurrent

Design and Synthesis of Polymer-Based Advanced Nanomaterials Usin, manual isolation and industrial circuit breakers, switches, variable autotransformer (VARIAC), voltmeters and ammeters. During the dismantling, a lo

t of equipment was retrieved for future possible use. This led to the idea of designing and implementing a simple circuit on a test bench that can be Design and Synthesis of Polymer-Based Advanced Nanomaterials Usin

used as a lab equipment to demonstrate the operation of overcurrent protection relays. Il was decided to design the circuit so that it employs equipme

Design and Synthesis of Polymer-Based Advanced Nanomaterials Usin

nt removed from the power simulator including microprocessor-based SEL-751A Feeder Protection Relays, Westinghouse CO-8 electromechanical relays, vari

^|/*WestVirginiaUniversityTHE RESEARCH REPOSITORY @ wvuGraduate Theses, Dissertations, and Problem Reports2019Design and Implementation of Overcurrent

Design and Synthesis of Polymer-Based Advanced Nanomaterials Usinab. was modified for this purpose. The bench provides the advantage of hav ing a setup on a small and movable platform.1 he circuit of the Ovcrcurrcnl

Protection Relays l est Bench has a variable aulolransfonncr with protection relays, protection breakers and changeover switches installed on the pri Design and Synthesis of Polymer-Based Advanced Nanomaterials Usin

mary and secondary side of the transformer. SLL-751A or three electromechanical CO-8 relays, one on each phase, can be selected as the main protection

Design and Synthesis of Polymer-Based Advanced Nanomaterials Usin

device on both sides of the transformer. There was only one industrial circuit breaker available in the lab. This has been installed on the secondary

^|/*WestVirginiaUniversityTHE RESEARCH REPOSITORY @ wvuGraduate Theses, Dissertations, and Problem Reports2019Design and Implementation of Overcurrent

Design and Synthesis of Polymer-Based Advanced Nanomaterials Usinage limiting resistors, toggle switch and pushbutton reset switch. This use of the breaker circuit has saved a lot of costs since most of the componen

ts used in the design were already available in the lab.Based on the cost-effective design, it is planned to design a similar circuit that can demonst Design and Synthesis of Polymer-Based Advanced Nanomaterials Usin

rate the operation of differential cunent protection relay based on SEL-387A Current Differential Relay.

^|/*WestVirginiaUniversityTHE RESEARCH REPOSITORY @ wvuGraduate Theses, Dissertations, and Problem Reports2019Design and Implementation of Overcurrent

^|/*WestVirginiaUniversityTHE RESEARCH REPOSITORY @ wvuGraduate Theses, Dissertations, and Problem Reports2019Design and Implementation of Overcurrent

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