SMART GRIDS AND ENERGY MANAGEMENT

Lucio IPPOLITO SMART GRIDS AND ENERGY MANAGEMENT

0623300003
DEPARTMENT OF INFORMATION AND ELECTRICAL ENGINEERING AND APPLIED MATHEMATICS
EQF7
ELECTRICAL ENGINEERING FOR DIGITAL ENERGY
2024/2025

OBBLIGATORIO
YEAR OF COURSE 2
YEAR OF DIDACTIC SYSTEM 2023
AUTUMN SEMESTER
CFUHOURSACTIVITY
432LESSONS
18EXERCISES
18LAB
Objectives
COURSE OBJECTIVE IS TO DEVELOP METHODOLOGICAL SKILLS IN SMART ENERGY MANAGEMENT IN THE CONTEXT OF POWER SYSTEMS, WITH A FOCUS ON ENERGY MARKET DYNAMICS AND POWER FLOW OPTIMIZATION IN ELECTRICAL SYSTEMS. FURTHER, THE OBJECTIVE OF THE COURSE IS TO PROVIDE ANALYTICAL TOOLS AND ALGORITHMS FOR POWER SYSTEM MANAGEMENT, ALSO AIMED AT SAVING AND EFFECTIVE USE OF RESOURCES.

KNOWLEDGE AND UNDERSTANDING SKILLS
AT THE END OF THE COURSE, THE STUDENT IS ABLE TO UNDERSTAND THE ENERGETIC NEEDS WITHIN ELECTRICAL SYSTEMS AND TO INDIVIDUATE SOLUTIONS FOR THE CHOICE OF LOAD AND ENERGY MANAGEMENT POLICIES.

APPLIED KNOWLEDGE AND UNDERSTANDING SKILLS
AT THE END OF THE COURSE THE STUDENT IS ABLE TO IMPLEMENT ENERGY MANAGEMENT STRATEGIES FOR THE MONITORING AND CONTROL OF ELECTRICAL SYSTEMS WITHIN THE DEREGULATED ENERGY MARKET.

AUTONOMY OF JUDGMENT
KNOW HOW TO INDIVIDE THE AREAS OF INTERVENTION TO ASSESS THE ACTIONS TO BE TAKEN FOR OPTIMAL MANAGEMENT OF POWER FLOWS WITHIN LIBERALIZED MARKET-GOVERNED POWER SYSTEMS. KNOW HOW TO INDIVIDUATE SOLUTIONS IN TERMS OF MIXES OF APPROPRIATIONS AND SYNTHESIS OF ENERGY MANAGEMENT STRATEGIES AIMED AT EFFICIENCY AND ENERGY SAVINGS.

COMMUNICATION SKILLS
KNOWING HOW TO WORK IN GROUPS. KNOW HOW TO PRESENT, ARGUMENTING THEM, CHOICES RELATED TO THE DEFINITION OF ENERGY MANAGEMENT POLICIES, ALSO WITH A VIEW TO THE SMART GRID.
KNOWING HOW TO MANAGE PROCESSES AND TECHNOLOGIES FOR THE AUTOMATION OF INDUSTRIAL PROCESSES, ALSO RELATING TO THE EFFICIENT USE OF ELECTRIC ENERGY, INTERACTING WITH ELECTRIC SECTOR COMPANIES.

ABILITY TO LEARN (LEARNING SKILLS)
BE ABLE TO BE ABLE TO APPLY THE ACQUIRED KNOWLEDGE TO CONTEXTS DIFFERENT FROM THOSE PRESENTED DURING THE COURSE AND DEEPEN THE TOPICS COVERED USING MATERIALS DIFFERENT FROM THOSE PROPOSED.
Prerequisites
KNOWLEDGE ACQUIRED IN THE ELECTRIC POWER SYSTEMS COURSE IN ADDITION TO BASIC COMPUTER KNOWLEDGE ACQUIRED DURING FIRST LEVEL COURSES IS REQUIRED.
Contents
INTRODUCTION TO ELECTRIC POWER SYSTEMS: ENERGY SCENARIOS AT NATIONAL AND INTERNATIONAL LEVEL, RECALLS ON THE ARCHITECTURE OF AN ELECTRICAL SYSTEM. ENERGY DEMAND AND PRODUCTION AT THE NATIONAL LEVEL.
THE ENERGY MARKET: MARKET STRUCTURE. THE ELIGIBLE CUSTOMER. GRID SUPPORT SERVICES: THE PROBLEM OF BALANCING POWER SUPPLY AND DEMAND, THE AGGREGATOR, VPN AND ENERGY DISTRICTS. DEVELOPMENT OF APPLICATION EXAMPLES.
LOAD ANALYSIS: POWER AND ENERGY DEMAND IN THE INDUSTRIAL SECTOR. ENERGY AUDIT: ANALYSIS AND CLASSIFICATION OF ELECTRICAL LOADS IN INDUSTRY. DEVELOPMENT OF APPLICATION EXAMPLES.
STATIC OPTIMIZATION PROBLEMS. METHOD FOR SOLVING LINEAR AND NONLINEAR PROBLEMS. IMPLEMENTATION AND COMPUTER EXERCISE.
OPTIMAL POWER FLOW IN POWER GRIDS: MINIMIZATION OF COST FUNCTIONS, NETWORK LOSSES, UNIT COMMITMENT PROBLEM.
TECHNICAL VISITS.
Teaching Methods
THERE ARE FRONTAL LESSONS IN CLASS, LABORATORY ACTIVITIES AND TECHNICAL VISITS TO COMPANIES OPERATING IN THE ELECTRICITY PRODUCTION AND DISTRIBUTION FIELD AS ALSO OF COMPANIES IMPLEMENTING ADVANCED ENERGY MANAGEMENT AND SELF-PRODUCTION AND SELF-CONSUMPTION FUNCTIONS. DURING THE COURSE THE STUDENTS, ORGANIZED IN WORKING GROUPS, DEVELOP A PROJECT DRAWING UP WITH ONE OF THE COURSE TOPICS AS ITEM.
Verification of learning
THE EXAM CONSISTS OF ONLY ORAL INTERVIEW DURING WHICH THE PROJECT IS ALSO DISCUSSED. THE PROJECT DISCUSSION WEIGHS FOR ABOUT 30% OF THE FINAL VOTE.
Texts
P. KUNDUR, “POWER SYSTEM STABILITY AND CONTROL,” MCGRAW- HILL, NEW YORK
J. A. MOMOH, ELECTRIC POWER SYSTEM APPLICATIONS OF OPTIMIZATION, CRC PRESS
DANIEL KIRSCHEN, GORAN STRBAC - FUNDAMENTALS OF POWER SYSTEM ECONOMICS - JOHN WILEY & SONS

COURSE NOTES
More Information
THE COURSE IS IN ENGLISH
Lessons Timetable

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