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PHYSICAL LAYER MODELS AND TECHNIQUES FOR SOFTWARE RADIO

CODICE 90139
ANNO ACCADEMICO 2022/2023
CFU
  • 5 cfu al 1° anno di 10378 INTERNET AND MULTIMEDIA ENGINEERING(LM-27) - GENOVA
  • SETTORE SCIENTIFICO DISCIPLINARE ING-INF/03
    LINGUA Inglese
    SEDE
  • GENOVA
  • PERIODO 2° Semestre
    MODULI Questo insegnamento è un modulo di:
    MATERIALE DIDATTICO AULAWEB

    OBIETTIVI E CONTENUTI

    OBIETTIVI FORMATIVI

    Mathematical models for radio transmission: (20) Radio Channel models; Free space model; Probabilistic rain model; Multipath time-variant general statistical model (Time variant pulse response, First order channel models (Fading (Rayleigh, Rice, Nagakami)); Second order models. Radio transmission system models: Frequency selectivity and temporal fading; Slow and fast fading; Diversity transmission (frequency, time, space); Wideband transmissions as frequency selective channels; Channel models and rake receivers. Wideband Digital radio transmission: systems and techniques (20): Multiple Access techniques overview; Wideband modulations: Spread Spectrum: General concepts, Direct Sequence Spread Spectrum and CDMA, Orthogonal Frequency Division Modulation (OFDM) Software and Cognitive Radio (10) : Software radio architectures;. from software to cognitive radio

    OBIETTIVI FORMATIVI (DETTAGLIO) E RISULTATI DI APPRENDIMENTO

    L'insegnamento è erogato in lingua inglese. Si rimanda alla scheda-insegnamento compilata in tale lingua.

    MODALITA' DIDATTICHE

    .L'insegnamento è erogato in lingua inglese. Si rimanda alla scheda-insegnamento compilata in tale lingua.

    PROGRAMMA/CONTENUTO

    L'insegnamento è erogato in lingua inglese. Si rimanda alla scheda-insegnamento compilata in tale lingua.

    TESTI/BIBLIOGRAFIA

    Slides of all lectures will be made available on Aulaweb. Recording of lessons if available will be also provided.

    Books and research papers that can help the student to integrate concepts described during frontal activity are here provided and can be integrated during the year.  

    G. L. Stuber, Principles of Mobile Communication, Kluwer Academic Publishers, New York, 1996

    T. Rappaport, “Wireless Communications: Principles and Practice, 2nd Edition”, Prentice Hall, USA, 2001

    J.G.Proakis, “Communication Systems Engineering, 2nd Edition”, Prentice Hall, New Jersey, 2001

    Cognitive Radio, Software Defined Radio, and Adaptive Wireless Systems, Ed.,Hüseyin Arslan, Springer, Netherlands, 2007

    DOCENTI E COMMISSIONI

    Commissione d'esame

    CARLO REGAZZONI (Presidente)

    IGOR BISIO

    LUCIO MARCENARO

    FABIO LAVAGETTO (Presidente Supplente)

    LEZIONI

    ESAMI

    MODALITA' D'ESAME

    The exam for this module is oral. 

    In case of remote exam is necessary or mandatory exam will be oral and done by using Teams platform.

    Otherwise, exam will be in presence  In that case, upon request, the oral exam can be divided in two parts: a written pre-assessment based on a set of questions to be answered in one hour followed by a oral discussion.

    The written part can be substituted by a lab on line exercise in sessions immediately after the end of the course lessons. 

    The oral discussion will cover all the course program. A first set of questions   will be oriented to evaluate knowledge and capabilities of the student on modeling and choosing parameters for a wireless channels for a generic wireless transmission system. The second part of the exam will assess wideband modulation techniques and characteristics of Software Defined Radio architectures. 

    Official exam dates are provided by course calendar.   In addition, it is possible to schedule additional exams on per-appointment basis, depending on a number of interested students and professor's availability.

    In both cases (official and unofficial exam dates), if you wish to attend an exam, please send an e-mail to: 
    - Carlo.Regazzoni@unige.it

    at least one week before the exam.

    Students with learning disorders ("disturbi specifici di apprendimento", DSA) will be allowed to use specific modalities and supports that will be determined on a case-by-case basis in agreement with the delegate of the Engineering courses in the Committee for the Inclusion of Students with Disabilities

    MODALITA' DI ACCERTAMENTO

     Exam aims at assessing the following aspects about acquired student's knowldge and capabilities: 

    Level of Knowledge acquired with respect to theories and methods presented in course lectures

    Level of Capabilities when selecting appropriate parameters and comparing alternative choices for different wireless channel models and modulation techniques 

      Knowledge and capabilities will not be centered on mnemoninc listing of concepts, methods  and formulas, but on the capability to describe also in a mathematical probabilistic way signal transformations along the transmission and signal processing characteristics of modulation techniques  

    Calendario appelli

    Data Ora Luogo Tipologia Note
    11/01/2023 10:30 GENOVA Scritto
    11/01/2023 10:30 GENOVA Orale
    25/01/2023 10:30 GENOVA Scritto
    25/01/2023 10:30 GENOVA Orale
    08/02/2023 10:30 GENOVA Orale
    08/02/2023 10:30 GENOVA Scritto
    07/06/2023 10:30 GENOVA Scritto
    07/06/2023 10:30 GENOVA Orale
    21/06/2023 10:30 GENOVA Orale
    21/06/2023 10:30 GENOVA Scritto
    12/07/2023 10:30 GENOVA Scritto
    12/07/2023 10:30 GENOVA Orale
    26/07/2023 10:30 GENOVA Orale
    26/07/2023 10:30 GENOVA Scritto
    23/08/2023 10:30 GENOVA Scritto
    23/08/2023 10:30 GENOVA Orale
    13/09/2023 10:30 GENOVA Scritto
    13/09/2023 10:30 GENOVA Orale