AI-Powered Robotics: Autonomous Systems & Automation Training Course

 

AI-Powered Robotics: Autonomous Systems & Automation Training Course

Introduction

The integration of Artificial Intelligence (AI) with robotics is ushering in a new era of autonomous systems and advanced automation, profoundly impacting industries from manufacturing and healthcare to logistics and exploration. This AI-Powered Robotics: Autonomous Systems & Automation Training Course is meticulously designed for robotics engineers, software developers, AI/ML specialists, and automation professionals eager to build, program, and deploy intelligent robots capable of perception, decision-making, and complex task execution. The program bridges the gap between theoretical AI concepts and their practical application in real-world robotic systems.

Participants will gain hands-on experience with fundamental aspects of robot programming, including the Robot Operating System (ROS), and delve into crucial AI topics such as robot perception (computer vision), machine learning for control, autonomous navigation, and human-robot interaction (HRI). The curriculum emphasizes designing robots that can learn, adapt, and operate intelligently in dynamic environments. By mastering the synergy of AI and robotics, you will be equipped to develop next-generation intelligent robots and drive innovation in industrial automation, mobile robotics, and various other sectors, contributing to the advancement of truly autonomous systems.

Target Audience

  • Robotics Engineers and Researchers.
  • Software Developers working on robotic applications.
  • AI/ML Engineers specializing in embodied AI.
  • Automation and Control System Engineers.
  • Manufacturing and Industrial Automation Professionals.
  • Embedded Systems Developers interested in intelligent hardware.

Duration

10 days

Course Objectives

  1. Understand the foundational principles of robotics and the role of AI in creating autonomous systems.
  2. Gain proficiency in using the Robot Operating System (ROS) for robot development and integration.
  3. Apply AI-driven computer vision techniques for robot perception and environmental understanding.
  4. Implement algorithms for robot localization, mapping (SLAM), and autonomous navigation.
  5. Explore the application of machine learning, including reinforcement learning, for robot control and task learning.
  6. Understand the principles and challenges of Human-Robot Interaction (HRI) for collaborative environments.
  7. Discuss the ethical, safety, and societal implications of deploying AI-powered robots.
  8. Develop practical skills in designing and building intelligent robotic solutions for real-world problems.

Physical Training Schedule

Start & End Date

Location

Fee (USD)

Register

July 20- July 31, 2026

Dar es Salaam

4,000

Aug 3- Aug 14, 2026

Nairobi

3,000

Aug 17- Aug 28, 2026

Kigali

4,000

Sep 7- Sept 18, 2026

Nairobi

3,000

Sep 14- Sept 25, 2026

Pretoria

5,950

Oct 5- Oct 16, 2026

Nairobi

3,000

Oct 19- Oct 30, 2026

Mombasa

3,450

Nov 2- Nov 13, 2026

Nairobi

3,000

Nov 16- Nov 27, 2026

Kigali

4,000

Dec 7 – Dec 18, 2026

Nairobi

3,000

Jan 5- Jan 16, 2027

Kigali

4,000

Jan 19- Jan 30, 2027

Nairobi

3,000

Feb 2- Feb 13, 2027

Mombasa

3,450

Feb 16- Feb 27, 2027

Nairobi

3,000

Mar 2- Mar 13, 2027

Kigali

4,000

Mar 16- Mar 27, 2027

Nairobi

3,000

Apr 6- Apr 17, 2027

Dar es Salaam

4,000

Apr 13- Apr 24, 2027

Nairobi

3,000

May 4- May 15, 2027

Pretoria

5,950

May 18- May 29, 2027

Nairobi

3,000

Jun 1- Jun 12, 2027

Mombasa

3,450

Jun 15- Jun 26, 2027

Nairobi

3,000

Jul 6- Jul 17, 2027

Nairobi

3,000

Online Training Schedule

Start & End Date

Fee (USD)

Register

Aug 3 – Aug 14, 2026

1,200

Sept 7 – Sept 18, 2026

1,200

Oct 5 – Oct 16, 2026

1,200

Nov 2 – Nov 13, 2026

1,200

Dec 7 – Dec 18, 2026

1,200

Jan 5- Jan 16, 2027

1,200

Feb 2- Feb 13, 2027

1,200

Mar 2- Mar 13, 2027

1,200

Apr 6- Apr 17, 2027

1,200

May 4- May 15, 2027

1,200

Jun 1- Jun 12, 2027

1,200

Jul 6- Jul 17, 2027

1,200

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