Catalogue of Trainings

Supportive Partners

Project MARCH: behind the technology of robotic exoskeletons

Learn about cutting-edge exoskeleton technology that can help people with spinal cord injuries to walk again. Create your own vision of how to advance this technology in the future, benefiting from the hands-on experience of the Project MARCH student team in building exoskeletons.
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Website Technology: Robotics
Project: Delft University of Technology
Durations: +7 days

PV Modeling, Simulation and Analysis

Enhance your use of tools and methods to accurately characterize, model and predict the performance and yield of photovoltaic materials, devices, modules and systems
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Website Technology: Others
Project: Delft University of Technology
Durations: +7 days

Python fundamentals and Data science

This training addresses the growing interest on Python programming for modulation, modeling, systems simulation and experimental or statistical data processing
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Website Technology: Others
Project: PTCentroDiH
Durations: +7 days

Quantum 101: Quantum Computing & Quantum Internet

Learn how a quantum computer works. Explore the scientific principles behind it, and the software that operates it.
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Website Technology: IoT
Project: Delft University of Technology
Durations: +7 days

Resource Optimization

ProOpt performs process quality and efficiency optimisation using nonlinear model predictive control. The system learns the dynamics of the production process, after which is can predict the process output quality metrics given the current values for the control parameters. The user can also make simulated predictions about the key quality indicators with alternative control parameter values, so as to seek for better control. The system can also find optimal control values given the desired output quality and optimisation constraints, and can thus be used as an advisory tool for the operator or as an autonomous closed-loop controller.
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Website Technology: Data analytics
Project: Better Factory
Durations: 1h to 4h

RespiceSME Value Chain Analysis

The RespiceSME Value Chain Analysis is focused on the development/ strategic positioning of an early stage Photonics product concept. The Value Chain Analysis tool is based on three key concepts for product and company assessment: Stakeholder Mapping, Technology Readiness Levels (TRLs), and Innovation Potential Assessment. The tool focuses on a new Product or Service and is of particular benefit for those that are targeting a new market. The method involves defining and scoring key factors crucial for success at a very early stage while aligning systematic elements essential for growth. Numerical values are assigned to important properties, and scores are compiled to indicate where a company should consider targeting their efforts.
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Website Technology: Others
Project: LaserLT DIH
Durations: 1-3 days

Responsible Innovation: Ethics, Safety and Technology

Learn how to deal with risks and ethical questions raised by the development of new technologies.
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Website Technology: Others
Project: Delft University of Technology
Durations: +7 days

Robot Operation

In this one-day course you will learn about the basics of robot operation. In this course we will discuss multiple types of robots (industrial robot, cobot, articulated, scara, delta arm, etc.) and the ways to operate them. We will also cover multiple safety systems that can be used to create a safe working environment. Generally, the robot interfaces with other automated systems (conveyor belts etc.). These interfaces will also be discussed. Lastly, we will cover the grippers possibilities of picking up objects.
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Website Technology: Robotics
Project: RoboValley
Durations: 4h to 8h

Robot Perception

In this one day course you will learn the basics of Robot Perception. We will cover the advantages and disadvantages of multiple commonly used sensortypes (lidar, ultrasonic, IR, (depth) camera). Since the (depth) camera is one of the most used sensors, the vision used in this course will be explained a bit more. Deep learning can also be used to detect objects in sensor data. Lastly, ROS (Robot Operating System) will be discussed. This is one of the ways to program a robot based on the sensor input.
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Website Technology: Robotics
Project: RoboValley
Durations: 4h to 8h

Robotics

This training consists of an overview of the essential concepts in order to be able to program an autonomous robot. An important part of the training will be based on practical exercises on a Turtlebot robot. These robots are simple yet complete platforms suitable for learning robotics. Most of illustration examples will be provided by our Robocup team .
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Website Technology: Robotics
Project: DIHNAMICS
Durations: 1h to 4h, 4h to 8h, 1-3 days, 3-5 days, 5-7 days