Budapest University of Technology and Economics, Faculty of Electrical Engineering and Informatics

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    Computer Aided Design in Building's Electricity

    A tantárgy neve magyarul / Name of the subject in Hungarian: Épületvillamossági számítógépes tervezés

    Last updated: 2023. augusztus 21.

    Budapest University of Technology and Economics
    Faculty of Electrical Engineering and Informatics
    MSc, Building's Electricity sub-specialisation
    Course ID Semester Assessment Credit Tantárgyfélév
    VIVEMA23   2/1/0/v 5  
    3. Course coordinator and department Dr. Kiss István,
    Web page of the course www.vet.bme.hu
    4. Instructors

    Dr. István KISS, Dept of Electric Power Engieering

    Dr. Tamás Iváncsy, Dept. of Electric Power Engineering 

    5. Required knowledge Basics of Electrotechnics and Electric Power Engineering
    6. Pre-requisites
    Kötelező:
    NEM
    (TárgyEredmény( "BMEVIVEMA12", "jegy" , _ ) >= 2
    VAGY
    TárgyEredmény("BMEVIVEMA12", "FELVETEL", AktualisFelev()) > 0)

    A fenti forma a Neptun sajátja, ezen technikai okokból nem változtattunk.

    A kötelező előtanulmányi rend az adott szak honlapján és képzési programjában található.

    Ajánlott:
    -
    7. Objectives, learning outcomes and obtained knowledge

    Need for engineers with skills connected to Building’ electricity is very significant. Our goal to give such skills for the student that help to fulfil this need providing knowledge about computer aided design of electric systems of buildings.

    8. Synopsis

    1st week: Introduction. Design of electric systems as technical communication. Basics, general rules.

    2nd week: Fields of computer aided design. Notation of devices.

    3rd week: Typical tasks in building electricity design. Standards, regulations. Description of homeworks.

    4th week: Design of a simple distribution board for motor protection. Overview of a sample design.

    5th week: Rules of 2D representation and drawing. Numeration systems of drawings.

    6th week: Parts of technical documentation: technical description, designer’s statements and declarations, drawings, quality clearance, measurement reports, cabinet drawings, etc.

    7th week: Types of plans: network of electric energy distribution, lighting network, extra low voltage networks, overvoltage protection, etc. trail plans, single line schematic diagrams, drawings of distribution boards, front images.

    8th week: Aids to determine energy consumption. Softwares for lighting design.

    9th week: Tools for dimensioning and selection of devices. (Cross-section of cables, protective devices, chek of selectivity and protection against electric shock).

    10th week: Control calculation of electric and magnetic fields inside and near the building.

    11th week: Softwares to aid designing lightning protection - 1. Basics, overview of standard MSZ EN 62305

    12th week: Softwares to aid designing lightning protection – 2. Applications.

    13th week: Data exchange between different CAD softwares. Typical formats.

    14th week: Programming AutoCAD, case studies

    Detailed topics of exercises

    ·       Basics of WS-CAD setup, design steps of a single distribution board, simplified drawing.

    ·       Cabinet drawings with WS-CAD

    ·       Construction of trail plans in WS-CAD

    ·       Basics of AutoCAD, model space. Paper space. Typical tasks of design.

    ·       Trail plans, circuit diagrams with WS-CAD

    ·       3D models (switchgears and applied devices) in AUTO-CAD

    ·       Simple case studies using different softwares presented in the lectures.

    9. Method of instruction Presentation, comp. lab. practice
    10. Assessment

    During the semester: successful solution of a homework.

    In the exam period: written exam

    14. Required learning hours and assignment
    Contact lessons42
    Studying for lessons28
    Studying for tests-
    Preparation of homework20
    Studying written materiel24
    Preparation for exam36
    Overall150