Whether conducted online or on-site, instructor-led live Robotics training courses illustrate the fundamental and advanced concepts of Robotics through interactive, hands-on practice.
Robotics training is offered as either "online live training" or "onsite live training". Online live training (also known as "remote live training") is delivered via an interactive remote desktop. Onsite live training can take place locally at the customer’s premises in Plovdiv or at NobleProg corporate training centers in Plovdiv.
NobleProg -- Your Local Training Provider
Business Center Plovdiv
Han Kubrat St 1, Plovdiv, Bulgaria, 4017
This is the most modern business center in the city, with all the necessary functionalities, while being located in a green part of the city.
It is about 20 minutes by bus from the main train station as well as the city center.
This hands-on course, "Practical Rapid Prototyping for Robotics with ROS 2 & Docker," is designed to assist developers in efficiently building, testing, and deploying robotic applications. Participants will acquire the skills to containerize robotics environments, integrate ROS 2 packages, and create modular robotic systems using Docker, ensuring both reproducibility and scalability. The curriculum emphasizes agility, version control, and collaborative practices ideal for early-stage development and innovation teams.
Delivered by an instructor, this live training (available online or onsite) targets beginner to intermediate-level participants aiming to accelerate their robotics development workflows using ROS 2 and Docker.
Upon completion of this training, participants will be able to:
Configure a ROS 2 development environment within Docker containers.
Develop and test robotic prototypes in modular, reproducible setups.
Utilize simulation tools to validate system behavior prior to hardware deployment.
Collaborate effectively through containerized robotics projects.
Implement continuous integration and deployment concepts within robotics pipelines.
Format of the Course
Interactive lectures and demonstrations.
Hands-on exercises involving ROS 2 and Docker environments.
Mini-projects centered on real-world robotic applications.
Course Customization Options
To request a customized training for this course, please contact us to arrange.
This instructor-led, live training in Plovdiv (online or onsite) is designed for intermediate to advanced engineers and technicians who want to learn how to program, operate, and optimize Fanuc and Epson robotic systems for industrial applications.
By the end of this training, participants will be able to:
Understand the architecture and functionalities of Fanuc and Epson robots.
Program robot movements, logic, and sensor integrations.
Implement safety protocols and troubleshooting techniques.
The FIFISH V6 Expert is a high-performance underwater remotely operated vehicle (ROV) engineered for inspection, exploration, and the evaluation of submerged structures.
This instructor-led live training, available online or in-person, targets intermediate-level technical professionals seeking to operate and maneuver the FIFISH V6 Expert with safety and efficiency during underwater inspections.
Upon completion of this course, participants will be able to:
Configure, calibrate, and maintain the FIFISH V6 Expert system.
Pilot the ROV in both open water and confined underwater spaces.
Perform submerged structural inspections using the vehicle's built-in sensors and tools.
Capture, manage, and analyze underwater video footage and data.
Course Format
Instructor-guided demonstrations and practical briefings.
Hands-on practice using actual equipment or simulator environments.
Field operations with supervised piloting scenarios.
Customization Options
Training content can be tailored to specific inspection environments, mission profiles, or operator skill levels.
This instructor-led, live training in Plovdiv (online or onsite) is designed for beginner-level robotics engineers who wish to thoroughly understand the operation and programming of the ABB IRB 2600ID robot for welding tasks.
Upon completion of this training, participants will be able to:
Understand the application of robotics in welding.
Develop proficiency in programming the ABB IRB 2600ID robot for various welding tasks.
Learn to operate the ABB IRB 2600ID robot safely and effectively.
Understand the safety standards and procedures relevant to robotic welding operations.
The Evo Max 4T is a professional-grade drone designed for advanced aerial operations, inspections, and data collection.
This instructor-led, live training (online or onsite) is aimed at beginner-level to intermediate-level operators who wish to safely and effectively use the Evo Max 4T for professional applications and prepare for official certification.
By the end of this training, participants will be able to:
Understand the technical specifications and operation of the Evo Max 4T drone.
Apply operational safety procedures in aerial activities.
Comply with current AAC and local drone regulations.
Implement best practices for efficient and safe drone operations.
Prepare for certification/licensing through theoretical and practical training.
Format of the Course
Interactive lecture and discussion.
Hands-on practice with drone equipment and simulators.
Practical exercises and real flight scenarios.
Course Customization Options
To request a customized training for this course, please contact us to arrange.
Drones and photogrammetry have become indispensable tools for high-precision infrastructure monitoring. By leveraging advanced geodetic principles, real-time modeling, and high-accuracy drone mapping, professionals can achieve greater insight, precision, and efficiency in construction environments.
This instructor-led live training (available online or onsite) targets intermediate to advanced professionals seeking to implement sophisticated drone and photogrammetry workflows. Participants will learn to apply geodetic controls and high-precision mapping techniques to complex infrastructure projects.
Upon completion of this training, participants will be able to:
Implement advanced photogrammetric methods, including RTK/PPK workflows and ground control calibration.
Integrate geodetic reference systems and projections suitable for large-scale infrastructure sites.
Design precision flight missions tailored to complex terrain and infrastructure geometry.
Analyze photogrammetry data using GIS software for structural health assessment, deformation tracking, and compliance monitoring.
Course Format
Interactive lectures and discussions.
Advanced exercises and real-world case studies.
Hands-on implementation with drone data and modeling tools.
Customization Options
To request a customized training session for this course, please contact us to arrange details.
This instructor-led, live training in Plovdiv (online or onsite) is designed for participants at beginner to intermediate levels who wish to learn how to utilize drones and photogrammetry techniques for supervising infrastructure in construction projects.
By the end of this training, participants will be able to:
Gain a solid understanding of the fundamentals of drones and photogrammetry.
Create and execute drone flight plans tailored for construction sites.
Conduct photogrammetry tracking to generate detailed maps and 3D models.
Leverage photogrammetry data for infrastructure supervision and identifying potential issues.
Apply drone technology to enhance safety and operational efficiency on construction sites.
This instructor-led, live training in Plovdiv (online or onsite) is aimed at beginner-level to intermediate-level and potentially advanced-level robotics developers who wish to learn how to use ROS to program mobile robots using Python.
By the end of this training, participants will be able to:
Set up a development environment that includes ROS, Python, and a mobile robot platform.
Create and run ROS nodes, topics, services, and actions using Python.
Use ROS tools and utilities to monitor and debug ROS applications.
Use ROS packages and libraries to perform common tasks for mobile robots.
Natural Language Processing (NLP) converts unstructured text into valuable insights, allowing machines to interpret human language. This course covers essential techniques including corpus analysis, sentence parsing, text preprocessing workflows, and dimensionality reduction using SVD and NMF methods. Participants will gain hands-on experience implementing document clustering, topic modeling, sentiment analysis, named entity recognition, and Latent Dirichlet Allocation with Python. By the end of the training, learners will be equipped to develop intelligent text analytics systems for automated content classification and search capabilities.
In this instructor-led live training in Plovdiv, participants will learn how to start using ROS for their robotics projects through the use of robotics visualization and simulation tools.
By the end of this training, participants will be able to:
Understand the basics of ROS.
Learn how to create a basic robotics project using ROS.
Learn how to use different tools for robotics including simulation and visualization tools.
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