440-4216/02 – Radiocommunications Engineering (RT II)

Gurantor departmentDepartment of TelecommunicationsCredits4
Subject guarantorIng. Marek Dvorský, Ph.D.Subject version guarantorIng. Marek Dvorský, Ph.D.
Study levelundergraduate or graduateRequirementChoice-compulsory
Year2Semestersummer
Study languageEnglish
Year of introduction2015/2016Year of cancellation
Intended for the facultiesFEIIntended for study typesFollow-up Master
Instruction secured by
LoginNameTuitorTeacher giving lectures
DVO133 Ing. Marek Dvorský, Ph.D.
TOM551 Ing. Martin Tomis, Ph.D.
Extent of instruction for forms of study
Form of studyWay of compl.Extent
Full-time Credit and Examination 2+2
Part-time Credit and Examination 2+8

Subject aims expressed by acquired skills and competences

Students will understand in detail the basic features of individual blocks of radio receivers and transmitters. Will be familiar with the technique of single frequency networks, communications via spread-spectrum noise and interference.

Teaching methods

Lectures
Individual consultations
Tutorials
Experimental work in labs
Project work
Other activities
Field trip
Teaching by an expert (lecture or tutorial)
Field data collection

Summary

Subject to the task in detail to familiarize the student with the basic blocks radio communication chain. Emphasis is particularly placed on the portion of the transmitter and receiver design elements of radio, trunk networks, single-frequency network and communication via spread-spectrum. Another part of the course deals with the noise, interference, interference target resources in space and radio systems for positioning.

Compulsory literature:

Bernard Sklar. 1988. Digital Communications: Fundamentals and Applications. Prentice-Hall, Inc., Upper Saddle River, NJ, USA. HAGEN, Jon B. Radio-frequency electronics: circuits and applications. 2nd ed. New York: Cambridge University Press, 2009. ISBN 052188974X.

Recommended literature:

BALANIS, Constantine A. Antenna Theory: Analysis and Design. 3rd Edition. England: Wiley-Interscience, April 4, 2005. ISBN 978-0471667827. BY ROBERT SOBOT. Wireless Communication Electronics by Example. Aufl. 2014. Cham: Springer International Publishing, 2014. ISBN 3319028715.

Additional study materials

Way of continuous check of knowledge in the course of semester

quizes laboratories

E-learning

http://comtech.vsb.cz/moodle

Other requirements

Student has to work on a semestral project.

Prerequisities

Subject has no prerequisities.

Co-requisities

Subject has no co-requisities.

Subject syllabus:

Subject in detail familiarize the student with the basic blocks of radio communication chain. Emphasis is particularly placed on transmitter and receiver design elements, trunk networks, single-frequency network and communication via spread-spectrum. A part of the course deals with the noise, interference, interference target resources in space and radio systems for positioning. The course aims to familiarize the student with the basic detail blocks radio communication chain. The emphasis is mainly placed on the transmitter and receiver design features radio systems , trunked networks , single-frequency network and communication via spread- spectrum frequency . Another part of the subject it deals with the noise , interference , measurement of interference sources in space and systems for radio positioning. It is recommended to pass the course Radiocommunications 1. lectures: First Introduction to radio communication technology ( mathematical apparatus , variable) . Second The specific characteristics of individual frequency bands ( wave propagation in EHF / SHF bands ) . 3rd Meassurement instruments in radiotechnics (oscilloscope, spectrum analyser, VNA). 4th Noise, electromagnetic interference and filters (analysis, mathematical description). 5th Functional blocks of modern receivers and transmitters I.(RF inlet portion , sw receiver cognitive radio). 6th Functional blocks of modern receivers and transmitters II. (power output stages , mixer) . 7th Design elements of radio systems - RF relay, attenuator , preamplifier , rotators and elevators . 8th Radio communications equipment in heavy industry (trunk networks) . 9th Radio direction finding. 10th Software design of radio system . exercise: Seminar: First Computer exercises - the mathematical apparatus in a radio communication technology. Second Calculation of the attenuator , a power strip. 3rd Calculation of the combiner and channel bandpass filter. 4th test 5th Familiarization with laboratory measurements 1 to 5 Laboratory: 6th Laboratory measurements 1st: Analysis of the frequency spectrum of an unknown device . 7th Laboratory measurement 2 : Design and verification of impedance matching transmitter. 8th Laboratory measurement 3 : Measurement of RF attenuation elements. 9th Laboratory measurements 4th : Measuring the impact of impedance matching to the antenna characteristics . 10th Laboratory measurements 5th : Direction finding of the radio interference source.

Conditions for subject completion

Full-time form (validity from: 2014/2015 Summer semester)
Task nameType of taskMax. number of points
(act. for subtasks)
Min. number of pointsMax. počet pokusů
Credit and Examination Credit and Examination 100 (100) 51
        Credit Credit 44  22
        Examination Examination 56 (56) 24 3
                written Written examination 46  23
                verbal Oral examination 10  1
Mandatory attendence participation: compulsory participation in all laboratory exercises, the maximum leave of absence is 20 %,

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Conditions for subject completion and attendance at the exercises within ISP: Completion of all mandatory tasks within individually agreed deadlines.

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Occurrence in special blocks

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Assessment of instruction

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