Advanced Robotics

Advanced Robotics & Physical AI for Industry

Scheduled editions

Inizio: 30 September 2026 9:00

Fine: 2 October 2026 13:00

September 30 and October 2 from 9:00 AM to 1:00 PM

CIM Headquarters: Corso Luigi Settembrini 178, Turin

Inizio: 21 October 2026 9:00

Fine: 23 October 2026 13:00

October 21 and 23 from 9:00 AM to 1:00 PM

CIM Headquarters: Corso Luigi Settembrini 178, Turin

Course description

The manufacturing industry is evolving toward increasingly intelligent, autonomous, and connected production models, driven by the convergence of advanced robotics, Artificial Intelligence, Digital Twins, Edge/Cloud Computing, and new forms of human–machine collaboration. In the Industry 5.0 paradigm, robots are no longer simple automation tools but adaptive and cognitive systems integrated into intelligent production ecosystems, with significant impacts on productivity, flexibility, and operational resilience.

Inspired by the position paper Advanced Robotics in Industry: Technological Evolution, Impacts and Future Perspectives, the course offers an introductory yet structured overview of Advanced Robotics, combining strategic perspectives and technological foundations to guide companies toward a conscious, effective, and sustainable adoption of these solutions.

The course is introductory and offers a comprehensive overview of the technologies, operating logic, and main applications of advanced robotics, without involving programming activities or direct use of the robots.

The first part of the course will analyze the evolution from traditional automation to multi-functional robots, key market trends, growth drivers, investments, and the emerging role of humanoid robotics, with particular focus on strategic impacts for businesses and industrial scalability challenges.

The second part will delve into the main technologies redefining advanced robotics, including AI, simulation and Digital Twins, multimodal perception, autonomous navigation, Edge/Cloud Computing, and human–machine interaction. Frameworks and platforms used in the development and simulation of advanced robotic systems, such as ROS, Gazebo, RViz, and NVIDIA ecosystems, will also be introduced with a pragmatic approach oriented toward real-world application cases.

Through industrial use cases and a visit to the CIM laboratories, participants will also be able to observe concrete applications of the technology in real operational contexts, connecting theoretical aspects to actual industrial implementation dynamics.

The laboratory component will be demonstrative: participants will watch demos developed by the CIM team, serving to concretely show functionalities, enabling technologies, and main application cases.

Main Topics

Day 1 | 9:00 AM – 1:00 PM

  • Evolution of robotics in industry
    • From traditional automation to advanced robotics
    • Evolution toward multi-functional robots
    • Key technological trends
  • The global race for advanced robotics
    • Global market size and growth
    • Main segments and evolutionary trajectories
    • Strategic growth drivers
    • Investments and emerging trends
    • Humanoid robots: Hype or industrial revolution?
      • Ecosystem and value chain
      • Potential and emerging use cases
      • Technological limits for humanoid robots and factory challenges
      • From proof-of-concept to industrial scalability
    • Strategic impacts for businesses
      • Impacts on competitiveness, productivity, and operational resilience
      • Opportunities and main challenges for businesses in technology adoption
      • Recommendations for decision-makers

Day 2 | 9:00 AM – 1:00 PM

  • Technological foundations of robotics
    • What is a robot
    • Movement and control
    • Perception and environmental awareness
    • Localization, mapping, and navigation
    • Robot classification
  • Enabling technologies for advanced robotics
    • What makes a robot advanced
    • AI applied to robotics
    • Robot training
    • Advanced sensing for environmental understanding
    • Mobility and physical interaction with the world
    • Collaborative robotic ecosystems
    • Communication infrastructure between robots
    • Cybersecurity
  • From theory to real-world robotics – Lab visit, demos, and use cases
    Demonstration session dedicated to observing demos and applications developed in the CIM laboratories.

  • Perception & Human-Robot Interaction
  • Digital Twin with NVIDIA and Gazebo environments
  • Autonomous navigation with obstacle avoidance
  • Humanoid robotics

Participant profile

The course is aimed at decision-makers; therefore, technical content will be covered with an introductory approach focused on understanding the main technologies, their operating logic, and related application cases, without requiring specialized technical skills. The course is informative and demonstrative: there are no practical exercises, programming activities, or direct use of robots by participants.

Upon completion of the course, participants will receive a certificate of attendance.

Objectives

The course provides an integrated view of advanced robotics, combining strategic and technological perspectives.

Participants will gain an understanding of:

  • the evolution of robotics;
  • the main technological and market trends accelerating the adoption of advanced robotics;
  • the impacts of robotics on productivity, competitiveness, operational resilience, and the transformation of industrial models;
  • the potential, technological limits, and main challenges related to industrial scalability;
  • the main enabling technologies and frameworks used in the development of advanced robotic systems.

Learning outcomes

At the end of the course, participants will be able to:

  • understand the evolution from traditional automation to advanced robotics;
  • interpret the main market and technological trends, drivers, and investment dynamics accelerating the adoption of advanced robotics;
  • evaluate impacts, opportunities, and challenges related to industrial scalability;
  • understand the role of key enabling technologies;
  • distinguish the main architectures, types, and components of advanced robotic systems;
  • understand the operating principles of perception, navigation, control, and human–robot/robot-robot interaction;
  • gain familiarity with frameworks and platforms used in the development, simulation, and deployment of advanced robotic systems (ROS, Gazebo, Rviz, NVIDIA, etc.);
  • analyze use cases and application scenarios of advanced robotics in real industrial contexts..
  • observe and interpret advanced robotics application demos, linking the functionalities shown to the technological principles covered during the course.

Participation conditions

None.

Cost per participant

300 €

Participants

Min 5

Resources funded by PNRR, Mission 4 – Component 2 – Investment 2.3:

MICRO-SMALL ENTERPRISES: 50%
MEDIUM ENTERPRISES: 40%
LARGE ENTERPRISES: 30%

Cost per company

1500 €

Participants

Max 15 per company

Mode

In-person

Duration

8 hours

Level

Introductory

Trainer

CIM

At the end of each course, you will receive a certificate of participation issued by the CIM4.0 Competence Center.
As an implementing body for digital transition, CIM4.0 holds the accreditation certificate from the Piedmont Region for the provision of continuous training. Certificate No.: 1503/001

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