Ingegneria Elettronica | VIRTUAL INSTRUMENTATION FOR INDUSTRIAL AUTOMATION
Ingegneria Elettronica VIRTUAL INSTRUMENTATION FOR INDUSTRIAL AUTOMATION
cod. 0622400027
VIRTUAL INSTRUMENTATION FOR INDUSTRIAL AUTOMATION
0622400027 | |
DIPARTIMENTO DI INGEGNERIA INDUSTRIALE | |
ELECTRONIC ENGINEERING | |
2014/2015 |
OBBLIGATORIO | |
YEAR OF COURSE 1 | |
YEAR OF DIDACTIC SYSTEM 2012 | |
SECONDO SEMESTRE |
SSD | CFU | HOURS | ACTIVITY | |
---|---|---|---|---|
ING-INF/07 | 9 | 90 | LESSONS |
Objectives | |
---|---|
THE COURSE ENABLES STUDENTS TO DEEPEN THE KNOWLEDGE ABOUT DIGITAL INSTRUMENTATION FOR THE ANALYSIS OF CIRCUITS, SYSTEMS AND NETWORKS, AND THE DEVELOPMENT OF AUTOMATED MEASUREMENT SYSTEMS. |
Prerequisites | |
---|---|
FOR THE SUCCESSFUL ACHIEVEMENT OF OBJECTIVES THE STUDENT MUST HAVE THE FOLLOWING PREREQUISITES: KNOWLEDGE OF THE METROLOGICAL CHARACTERISTICS AND THE USE OF MEASURING INSTRUMENTS, THE EVALUATION OF MEASUREMENT UNCERTAINTY; KNOWLEDGE OF ISSUES RELATED MEASURES, THE ABILITY TO DEFINE ALGORITHMIC FORM THE SOLUTION OF A PROBLEM. NFOR THE SUCCESSFUL ACHIEVEMENT OF OBJECTIVES THE STUDENT MUST HAVE THE FOLLOWING PREREQUISITES: KNOWLEDGE OF THE METROLOGICAL CHARACTERISTICS AND THE USE OF MEASURING INSTRUMENTS, THE EVALUATION OF MEASUREMENT UNCERTAINTY; KNOWLEDGE OF ISSUES RELATED MEASURES, THE ABILITY TO DEFINE ALGORITHMIC FORM THE SOLUTION OF A PROBLEM. |
Contents | |
---|---|
INTRODUCTION TO VIRTUAL INSTRUMENTATION. PRESENTATION OF THE COURSE. INTRODUCTION TO THE DEVELOPMENT OF LABVIEW. (2 H) AUTOMATED MEASUREMENT SYSTEMS AND COMMUNICATION BUS (8 H THEO LAB 4H) INTRODUCTION TO PROGRAMMING "DATA DRIVEN." CONTROL STRUCTURES AND DATA TYPES IN LABVIEW. TECHNIQUES FOR THE DEVELOPMENT OF VIRTUAL INSTRUMENTS. (TEO 20 H LAB 10H) VOLTMETERS NUMERICAL MULTIPLE RAMP, Q-METERS, PHASE METERS, VOLTMETERS VECTOR ANALYZERS, LOGIC STATES (THEO 10H) WAVEFORM ANALYZERS, SPECTRUM ANALYZERS, NETWORK ANALYZER (THEO 10H) DESIGN AND IMPLEMENTATION OF AUTOMATED MEASUREMENT SYSTEMS AND INTELLIGENT. (LAB 26 H) |
Teaching Methods | |
---|---|
THE COURSE INCLUDES LECTURES AND LABORATORY EXERCISES. DURING THE LAB, STUDENTS, DIVIDED INTO WORKING GROUPS, IS ASSIGNED A PROJECT TO BE DEVELOPED. THE PROJECT INCLUDES ALL TEACHING CONTENT IN A UNIFIED MANNER AND ENABLES STUDENTS TO ACQUIRE THE ABILITY TO DESIGN, REALIZATION AND CHARACTERIZATION OF AUTOMATED MEASUREMENT SYSTEMS. |
Verification of learning | |
---|---|
THE ASSESSMENT OF THE ACHIEVEMENT OF THE OBJECTIVES WILL BE AN ORAL EXAM, WHICH INCLUDES ALSO THE DISCUSSION OF THE PROJECT DEVELOPED BY THE STUDENT DURING THE COURSE. |
Texts | |
---|---|
CLYDE F. COOMBS, JR “ELECTRONIC INSTRUMENT HANDBOOK”, SECOND EDITION MCGRAW-HILL, INC. SIGFRIDO LESCHIUTTA, “MISURE ELETTRONICHE STRUMENTAZIONE E TELECOMUNICAZIONI”, PITAGORA EDITRICE BOLOGNA. SUPPLEMENTARY MATERIAL GIVEN BY THE TEACHERS |
More Information | |
---|---|
THE COURSE IS TAUGHT IN THE ACADEMY INITIATIVE SPONSORED BY THE NATIONAL INSTRUMENTS LABVIEW. AT THE END OF THE COURSE, STUDENTS HAVE THE OPPORTUNITY TO SUPPORT DURING THE EXAMINATION OF CERTIFIED LABVIEW ASSOCIATE DEVELOPER (CLAD), WHICH CERTIFIES INTERNATIONAL KNOWLEDGE AND BASIC SKILLS DEVELOPMENT ENVIRONMENT LABVIEW. |
BETA VERSION Data source ESSE3 [Ultima Sincronizzazione: 2016-09-30]