CODE 118069 ACADEMIC YEAR 2026/2027 CREDITS 6 cfu anno 2 INTERNET AND MULTIMEDIA ENGINEERING 11962 (LM-27) - GENOVA SCIENTIFIC DISCIPLINARY SECTOR ING-INF/03 LANGUAGE English TEACHING LOCATION GENOVA SEMESTER 1° Semester OVERVIEW The course addresses the fundamental principles of satellite communications and networks, analyzing the architecture of satellite systems, transmission techniques and next-generation broadband applications, including the integration between satellite networks and 5G/6G systems, Mega LEO constellations and global connectivity solutions. AIMS AND CONTENT LEARNING OUTCOMES The teaching unit provides a comprehensive understanding of the principles, technologies, and systems used in satellite-based communication networks. Students will gain knowledge of topics including satellite orbits, frequency allocation, link budget analysis, modulation and coding techniques, and multiple access methods. Students will also explore the architecture and operation of various satellite systems and protocols and their applications in broadband, broadcast, navigation, and global connectivity AIMS AND LEARNING OUTCOMES At the end of the teaching unit, the student will be able to: 1. Describe the fundamental principles of satellite communications, including orbital parameters, orbit types, and the main system architectures. 2. Analyze the main satellite subsystems and understand their role within telecommunication infrastructures. 3. Apply link engineering concepts to evaluate the performance of satellite links, considering attenuation, noise, and signal quality. 4. Distinguish and compare the main modulation, coding, and multiple access techniques used in satellite systems. 5. Critically evaluate the differences between GEO and NGSO networks and analyze the main issues related to LEO constellations. 6. Understand the principles of integration between satellite and terrestrial 5G/NTN networks, including beamforming, mobility, and connectivity management. 7. Communicate clearly and appropriately the technical and operational characteristics of the satellite solutions discussed during the course. PREREQUISITES Non sono previsti requisiti specifici. TEACHING METHODS Lessons in presence supported by previously forwarded didactic materials. Attendance is not compulsory. No practical activities are planned. Students with valid certifications for Specific Learning Disorders (SLDs), disabilities or other educational needs are invited to contact the teacher and the School's contact person for disability at the beginning of the teaching unit to agree on possible teaching arrangements that, while respecting the teaching objectives, take into account individual learning patterns. SYLLABUS/CONTENT Space systems fundamentals: Kepler's Laws, orbital parameters, LEO, MEO, and GEO orbits, satellite coverage Satellite systems architecture: Satellite subsystems, telecommunications payloads, satellite antennas, ground segment Radio kink engineering: Free-space losses, noise temperature, link budget, rain attenuation Satellite communication techniques: Modulation techniques, Multiple Access strategies, Coding techniques Satellite networks: GEO and NGSO networks, touting and network protocols Broadband satellite systems and satellite Internet: High Throughput Satellites (HTS), LEO constellations (Starlink, OneWeb) Integration with 5G / NTN networks: 3GPP NTN architecture, satellite-ground integration, Beamforming and mobility issues RECOMMENDED READING/BIBLIOGRAPHY Slides issued by the lecturer. (Optional) Books to deepen the telecommunication networks knowledge, such as: G. Maral, M. Bousquet, Z. Sun, “Satellite Communications Systems: Systems, Techniques and Technology”, Wiley T. Pratt, J. Allnutt, T. Bostian, “Satellite Communications”, Wiley M. Höyhtyä, “Satellite Communications and Networks”, Springer Additional bibliographic material may be indicated during the course. TEACHERS AND EXAM BOARD FABIO PATRONE Ricevimento: Write an email to the lecturer (fabio.patrone01@unige.it) to fix an appointment. LESSONS Class schedule The timetable for this course is available here: Portale EasyAcademy EXAMS EXAM DESCRIPTION Oral exam. There are no differences for Erasmus students. ASSESSMENT METHODS The exam will assess: the knowledge and understanding of satellite communication and networking principles; the ability to apply link engineering and networking concepts to practical scenarios; the ability to compare and evaluate different satellite architectures and channel access technologies; the clarity of exposition and the correct use of technical terminology; the ability to critically analyze issues related to satellite-terrestrial integration and next-generation broadband networks. Each learning outcome will be verified according to the criteria indicated above. FURTHER INFORMATION Contact the lecturer for further information not included in the teaching unit description. Agenda 2030 - Sustainable Development Goals Quality education Industry, innovation and infrastructure