University of Pisa Summer - Winter Schools & Foundation Course Summer School Microwaves and MM-waves for the Design of Advanced Wireless Links: Communication, Sensing and Power Transfer
University of Pisa Summer - Winter Schools & Foundation Course

University of Pisa Summer - Winter Schools & Foundation Course

Summer School Microwaves and MM-waves for the Design of Advanced Wireless Links: Communication, Sensing and Power Transfer

Pisa, Italy

Summer Course

6 days

English

Full time

EUR 250

Distance Learning, On-Campus

* Early Bird Application Deadline: 1 April 2026 (for those applicants interested in the four available tuition fee waiver)

Key Summary

    About : The Summer School on Microwaves and MM-waves focuses on the design of advanced wireless links for communication, sensing, and power transfer. It aims to provide participants with a comprehensive understanding of microwave technologies and their applications in modern wireless systems. The program offers hands-on experience and insights into the latest developments in the field.
    Career Outcomes : Graduates can explore various paths in the telecommunications industry, including roles in wireless communication, RF engineering, and sensing technology development. Opportunities may also arise in sectors focused on power transfer technologies and innovation in wireless applications.

Through 48 hours of lectures, the program offers a comprehensive introduction to electromagnetics (EM) and its application to the design of communication systems, radar and sensing technologies, wireless networks, and high-frequency circuits. The School awards 6 ECTS credits and is offered both in person at the Department of Information Engineering, University of Pisa (Via G. Caruso, 16, Pisa, Italy), and online via Microsoft Teams.

The first part of the program introduces the key electromagnetic phenomena and their implications for devices and systems, including wave propagation, guiding structures, passive components, antennas, and transceivers. Experimental demonstrations and the use of commercial EM simulation tools will complement the theoretical sessions.

The second part focuses on the practical application of EM concepts to advanced technologies such as 5G and beyond, non-terrestrial and satellite networks, wireless power transfer, automotive V2X communications, and microwave systems for aerospace, defense, and radioastronomy.

Lectures will be delivered by experts from the University of Pisa, the University of Bologna, leading ICT industries, and research centers, ensuring a balanced academic and professional perspective.

A special session will take place on June 17 at the Radio Astronomical Station in Medicina, Bologna (managed by INAF – Italian National Institute for Astrophysics), including lectures, a guided tour of the Northern Cross and 32-meter dish antennas, and a class-building lunch. The bus transfer for the round trip to Medicina will be provided by the Summer School organizers.

All participants will receive a Certificate of Attendance. Students wishing to earn 6 ECTS credits must complete a project work agreed upon with the coordinators and submit a final report by August 30, 2026 (pdf submission to paolo.nepa@unipi.it). The corresponding grades and transcript of records will be issued through the University of Pisa. Credits can be transferred to the participant’s home institution according to local regulations.

School Syllabus

Part I: Basic remarks on EM phenomena and devices

  • Free-space propagation, ray-based propagation models
  • Wave propagation through dielectric media, multipath models
  • Wave propagation in guiding structures, printed lines
  • Passive devices for advanced wireless systems: characterization and design criteria
  • Antennas and transceivers for high-frequency wireless links
  • Modeling and design examples
  • EM solvers for the analysis and design of devices and antennas
  • Instrumentation for the characterization of wireless network devices

Part II: Microwaves and mm-waves for advanced wireless links

  • Non-terrestrial communication networks
  • The evolution of terrestrial communication networks toward the fifth generation (5G)
  • Wireless sensing and communications in automotive V2X scenarios
  • Devices and architectures of systems for wireless power transfer and energy harvesting
  • Radio telescopes to capture radio waves from astronomical radio sources in the sky
  • Microwaves systems for satellite broadband networks, aerospace and defense

The Summer School will be activated with at least 10 students. The maximum number of participants is set to 50 students.

Lessons will be held in Pisa, at the Department of Information Engineering, in Via G. Caruso, 16, Pisa.

The program will be activated also in distance learning mode (TEAMS platform).