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    Hybrid Method Analysis Of Electromagnetic Transmission Through Apertures Of Arbitrary Shape In A Thick Conducting Scree

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    Date
    2004
    Author
    Otieno, Alfred V
    Dominic B O, Konditi
    Abungu, N Odero
    Type
    Article
    Language
    en
    Metadata
    Show full item record

    Abstract
    In this paper a hybrid numerical technique is presented, suitable for analyzing transmission properties of an arbitrarily shaped slot in a thick conducting plane. The slot is excited by an electromagnetic source of arbitrary orientation. The analysis of the problem is based on the "generalized network formulation" for aperture problems. The problem is solved using the method of moments(MOM) and the finite element method(FEM) in a hybrid format. The finite element method is applicable to inhomogeneously filled slots of arbitrary shape while the method of moments is used for solving the electromagnetic fields in unbounded regions of the slot. The cavity region has been subdivided into tetrahedral elements resulting in triangular elements on the surfaces of the apertures. Validation results for rectangular slots are presented. Close agreement between our data and published results is observed. Thereafter, new data has been generated for cross-shaped, H-shaped and circular apertures. Index Terms –
    URI
    http://scholar.google.com/scholar?q=Hybrid+Method+Analysis+Of+Electromagnetic+Transmission+Through+Apertures+Of+Arbitrary+Shape+In+A+Thick+Conducting+Scree&btnG=&hl=en&as_sdt=0%2C5
    http://erepository.uonbi.ac.ke:8080/xmlui/handle/123456789/34687
    Citation
    Abungu, NO, Konditi DB, Otieno AV. 2004. Hybrid Method Analysis of Electromagnetic Transmission through Apertures of Arbitrary Shape in a Thick Conducting Scree. World Scientific and Engineering Academy and Society (WSEAS). : World Scientific and Engineering Academy and Society (WSEAS)
    Publisher
    Electrical and Information Engineering, University of Nairobi
    Subject
    Finite–Element Method, Method of Moments, Perfect Electric Conductor (PEC)
    Collections
    • Faculty of Engineering, Built Environment & Design (FEng / FBD) [1491]

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