Discover the entire online offer
Degrees
Master’s degrees
FP

Microcredential in Human-Robot Interaction

Discover how people and robots work together in real-world environments and understand the impact of artificial intelligence on the evolution of interactive robotic systems.

Length Credits 50 hours / 2 ECTS
Modality Online
Faculty Business & Tech

Why choose UAX?

61000 GRADUATES

Each year, we add quality to the work market with professionals prepared to step forward into every area.

8800 BUSINESS CONNECTIONS

We have partnered with the most recognised companies in each industry to provide you with the most complete education.

181 CERTIFICATIONS

We create innovative certifications that meet the needs of the labour market you will be stepping into.

30 % OUT OF 100 STUDENTS ARE INTERNATIONAL

A diverse and competitive cultural offering that will prepare you for a global environment

What will you learn?

Advances in robotics and artificial intelligence are transforming the way people interact with technology. From industrial settings to sectors such as healthcare, education and services, interactive robots are playing an increasingly important role in activities that require collaboration, assistance or communication with users.

The Human-Robot Interaction micro-credential offers a structured introduction to the study of interaction between people and robotic systems, providing a comprehensive overview of the technologies that make this possible and the challenges associated with their development and implementation.

Throughout the course, students will learn how interactive robots work, how they perceive and interpret their environment using sensors and artificial intelligence systems, and how interaction experiences are designed to suit different contexts and needs.

Upon completion of the micro-credential, you will be able to:

  • Understand the fundamentals of human–robot interaction and its evolution.
  • Identify the essential components of an interactive robotic system.
  • Understand the perception and processing mechanisms used by robots.
  • Understand the role of artificial intelligence in user interaction.
  • Distinguish between the main models of human-robot interaction.
  • Analyse applications of interactive robotics in fields such as industry, healthcare, education and services.
  • Identify the risks, limitations and challenges associated with the use of robots in real-world environments.
  • To assess aspects relating to the safety, reliability and responsible use of robotic systems.

A course designed to provide an understanding of one of the most innovative disciplines with the greatest potential to impact society and the digital economy.

Academic information and format