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Main menu for Browse IS/STAG
Course info
KEE / PIR
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Course description
Department/Unit / Abbreviation
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KEE
/
PIR
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Academic Year
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2019/2020
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Academic Year
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2019/2020
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Title
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Electric Distribution Network Design
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Form of course completion
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Exam
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Form of course completion
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Exam
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Accredited / Credits
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Yes,
5
Cred.
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Type of completion
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Combined
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Type of completion
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Combined
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Time requirements
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Lecture
2
[Hours/Week]
Tutorial
2
[Hours/Week]
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Course credit prior to examination
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Yes
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Course credit prior to examination
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Yes
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Automatic acceptance of credit before examination
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Yes in the case of a previous evaluation 4 nebo nic.
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Included in study average
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YES
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Language of instruction
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Czech
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Occ/max
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Automatic acceptance of credit before examination
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Yes in the case of a previous evaluation 4 nebo nic.
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Summer semester
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0 / -
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0 / -
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0 / -
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Included in study average
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YES
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Winter semester
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0 / -
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50 / -
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5 / -
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Repeated registration
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NO
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Repeated registration
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NO
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Timetable
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Yes
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Semester taught
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Winter semester
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Semester taught
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Winter semester
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Minimum (B + C) students
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10
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Optional course |
Yes
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Optional course
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Yes
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Language of instruction
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Czech
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Internship duration
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0
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No. of hours of on-premise lessons |
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Evaluation scale |
1|2|3|4 |
Periodicity |
každý rok
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Evaluation scale for credit before examination |
S|N |
Periodicita upřesnění |
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Fundamental theoretical course |
No
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Fundamental course |
No
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Fundamental theoretical course |
No
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Evaluation scale |
1|2|3|4 |
Evaluation scale for credit before examination |
S|N |
Substituted course
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None
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Preclusive courses
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N/A
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Prerequisite courses
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N/A
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Informally recommended courses
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N/A
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Courses depending on this Course
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N/A
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Histogram of students' grades over the years:
Graphic PNG
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XLS
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Course objectives:
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To acquaint students with the design of wiring system and the current situation in designing low voltage networks in the CR. Furthermore, to teach students the design procedures, so they will be able to design a project on their own for example two-generation family house, including a complete technical reports and layout of the main building power system in terms of safety, economy, efficiency and operational reliability.
Students apply theoretical knowledge of electrical design and distribution networks in the design of the project, ie - develop a model project and technical report using modern electrical wiring, and check propose main connection in terms of protection, voltage drop, three phase symmetrical short circuit, thermal effects and minimum section. Finally outline a budget for solved project.
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Requirements on student
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Participation in the laboratory measurements.
Project of el. installation design in a family house or in a civil fitted including technical report and economic balance for the object.
Power Point Presentation on the subject.
Scope of the substance of lectures given syllabus.
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Content
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Lectures are intended for those interested in both theoretical and practical information about how to properly desig and implement modern el. equipment in residential buildings and civil construction to ensure effective and reliable operation, while respecting the IEC.
Basic approach to the design of electrical wiring, design solutions, the basic regulations and related standards IEC. The solution intelligently or classical or modern in 3D.
1st Current status in terms of designing low voltage wiring in residential built-up area and so-called civil family homes, the Energy Act, the network nn
2nd Materials marking, safety and reliability of wiring materials
ISO standards, IEC and control wiring materials
3rd Electrical equipment
4th Wires for electrical
5th Storage material, fixing material. Installation boxes and distribution boards. Special construction, distribution boards
6th Installing internal distribution, environment el. equipment and materials
7th Preparation and distribution facility locations
8th Electricity, Centralized ripple control - function, use in low voltage networks
9th Method of storage management - the bare, můstkových wires and power cables up to 750 V
10th Modular distribution, connection and distribution, modern wiring
11th Connections nn from the upper and cable
12th Electrical wiring in homes, connecting el. appliances in bathrooms
13th Design protection against lightning, technical report, examples of household and industrial el. Installation
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Activities
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Fields of study
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Guarantors and lecturers
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Literature
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Recommended:
ČSN IEC. ČSN IEC pro projektování.
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Recommended:
Solid Team (firma). Elektro v praxi. 1, Právní předpisy, základní normy, silnoproud /.
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Recommended:
Solid Team (firma). Elektro v praxi. 2, Slaboproud a hromosvody /. Solid Team, Olomouc, 2009.
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Recommended:
Elektro v praxi. 3, Vysoké napětí a výbuchy. Olomouc : Solid Team s.r.o., 2008.
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Recommended:
Kunc, Josef. Elektroinstalace krok za krokem. Praha : Grada, 2003. ISBN 80-247-0559-1.
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Recommended:
Heřman, Josef. Elektrotechnické a telekomunikační instalace : komplexní zpracování problematiky elektrotechnických a telekomunikačních instalací v budovách : základní dílo - únor 2006. Praha : Verlag Dashöfer, 2006. ISBN 80-86897-06-0.
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Recommended:
Kunc, Josef. Komfortní a úsporná elektroinstalace. 1. vyd. Brno : ERA, 2002. ISBN 80-86517-14-4.
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Recommended:
Bastian, Peter. Praktická elektrotechnika. Praha : Europa-Sobotáles, 2006. ISBN 80-86706-15-X.
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Recommended:
Martínek, Zbyněk; Kučerová, Lucie; Noháč, Karel. Projektování elektroinstalací I. Plzeň : ZČU, 1994. ISBN 80-7082-129-9.
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Recommended:
Martínek, Zbyněk. Projektování elektroinstalací II. Plzeň : ZČU, 1994. ISBN 80-7082-164-7.
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Recommended:
Martínek Z. Přednášky z PIR, EZ, TZB2. Plzeň,, 2009.
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Recommended:
Tůma, Jiří,; Martínek, Zbyněk,; Tesařová, Miloslava,; Chemišinec, Igor. Security, quality and reliability of electrical energy. Praha : Conte, 2007. ISBN 978-80-239-9056-0.
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Recommended:
Tůma J. , Rusek S., Martínek Z., Goňo R., Chenišinec I. Spolehlivost v elektroenergetice. Praha : Conte, 2006. ISBN 80-239-6483-6.
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Recommended:
Dvořáček, Karel. Správná a bezpečná elektroinstalace. 2., opravené vyd. Brno : ERA, 2001. ISBN 80-86517-46-2.
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On-line library catalogues
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Time requirements
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All forms of study
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Activities
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Time requirements for activity [h]
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Contact hours
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52
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Individual project (40)
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40
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Presentation preparation (report) (1-10)
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10
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Preparation for an examination (30-60)
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40
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Total
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142
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Prerequisites
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Knowledge - students are expected to possess the following knowledge before the course commences to finish it successfully: |
Knowledge of the problems on graduate level of Electrical Power Engineering 1 subject, which is taught at the Department of Electrical Power Engineering and Ecology of the Faculty of Electrical Engineering, University of West Bohemia in Pilsen. |
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Learning outcomes
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Knowledge - knowledge resulting from the course: |
The student understands the basic principles of design and knows how to work with AutoCad.
Is able to work with the IEC standards, orientate himself in the companies catalog and make a complete technical report for a given project. |
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Assessment methods
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Knowledge - knowledge achieved by taking this course are verified by the following means: |
Oral exam |
Individual presentation at a seminar |
Project |
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Teaching methods
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Knowledge - the following training methods are used to achieve the required knowledge: |
Lecture supplemented with a discussion |
Collaborative instruction |
Students' portfolio |
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