Robotics Opplæringskurs

Robotics Opplæringskurs

Local instructorled live Robotics training courses in Norge .

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Robotics Underkategorier

Robotics Kursplaner

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14 timer
Oversikt
ArduPilot is an open source, unmanned vehicle Autopilot Software Suite for controlling drones.

This instructor-led, live training (onsite or remote) is aimed at developers and technical persons who wish to design and develop an unmanned drone.

By the end of this training, participants will be able to:

- Setup a suitable development environment.
- Select and apply the right tools for programming a drone.
- Understand and configure the firmware, middleware and API stack.
- Test and debug their code using drone simulation software.

Format of the course

- Interactive lecture and discussion.
- Lots of exercises and practice.
- Hands-on implementation in a live-lab environment.

Course Customization Options

- This training is based on the open source autopilot software: ArduPilot.
- To request a customized training for this course, please contact us to arrange.
14 timer
Oversikt
Azure Bot Service kombinerer kraften i Microsoft Bot Framework og Azure funksjoner for å muliggjøre rask utvikling av intelligente roboter.

I denne instruktørledede, liveopplæringen, vil deltakerne lære hvordan de enkelt kan lage en intelligent bot ved hjelp av Microsoft Azure

Ved slutten av denne opplæringen vil deltakerne kunne:

- Lær grunnleggende om intelligente roboter
- Lær hvordan du lager intelligente roboter ved hjelp av skylpplikasjoner
- Forstå hvordan du bruker Microsoft Bot Framework, Bot Builder SDK og Azure Bot Service
- Forstå hvordan du designer bots ved hjelp av botmønstre
- Utvikle deres første intelligente bot ved å bruke Microsoft Azure

Publikum

- Utviklere
- amatører
- ingeniører
- IT-fagfolk

Kursets format

- Delforelesning, deldiskusjon, øvelser og tung praktisk øvelse
28 timer
Oversikt
In this instructor-led, live training, participants will learn how to build a robot using Arduino hardware and the Arduino (C/C++) language.

By the end of this training, participants will be able to:

- Build and operate a robotic system that includes both software and hardware components
- Understand the key concepts used in robotic technologies
- Assemble motors, sensors and microcontrollers into a working robot
- Design the mechanical structure of a robot

Audience

- Developers
- Engineers
- Hobbyists

Format of the course

- Part lecture, part discussion, exercises and heavy hands-on practice

Note

- Hardware kits will be specified by the instructor before the training, but will roughly contain the following components:

- Arduino board
- Motor controller
- Distance sensor
- Bluetooth slave
- Prototyping board and cables
- USB cable
- Vehicle kit

- Participants will need to purchase their own hardware.
- If you wish to customize this training, please contact us to arrange.
14 timer
Oversikt
A bot or chatbot is like a computer assistant that is used to automate user interactions on various messaging platforms and get things done faster without the need for users to speak to another human.

In this instructor-led, live training, participants will learn how to get started in developing a bot as they step through the creation of sample chatbots using bot development tools and frameworks.

By the end of this training, participants will be able to:

- Understand the different uses and applications of bots
- Understand the complete process in developing bots
- Explore the different tools and platforms used in building bots
- Build a sample chatbot for Facebook Messenger
- Build a sample chatbot using Microsoft Bot Framework

Audience

- Developers interested in creating their own bot

Format of the course

- Part lecture, part discussion, exercises and heavy hands-on practice
21 timer
Oversikt
Mekatronikk (aka mechatronic engineering) er en kombinasjon av mekanikk, elektronikk og informatikk.

Denne instruktørledede, liveopplæringen (stedet eller fjernkontrollen) er rettet mot ingeniører som ønsker å lære om anvendelsen av kunstig intelligens på mekatroniske systemer.

Ved slutten av denne opplæringen vil deltakerne kunne:

- Få oversikt over kunstig intelligens, maskinlæring og beregningsintelligens.
- Forstå begrepene nevrale nettverk og forskjellige læringsmetoder.
- Velg kunstig intelligens tilnærminger effektivt for problemer i det virkelige liv.
- Implementere AI-applikasjoner i mekatronisk prosjektering.

Kursets format

- Interaktiv forelesning og diskusjon.
- Masse øvelser og trening.
- Praktisk implementering i et live-lab-miljø.

Alternativer for tilpasning av kurset

- For å be om en tilpasset opplæring for dette kurset, vennligst kontakt oss for å avtale.
21 timer
Oversikt
Dette kurset introduserer maskinlæringsmetoder i robotikkapplikasjoner.

Det er en bred oversikt over eksisterende metoder, motivasjoner og hovedideer i sammenheng med mønstergjenkjenning.

Etter en kort teoretisk bakgrunn vil deltakerne utføre enkel trening ved å bruke open source (vanligvis R) eller annen populær programvare.
14 timer
Oversikt
Denne klasseromsbaserte treningsøkten vil utforske Robotics and Robotic Process Automation (RPA) . Delegater vil ta datamaskinbaserte eksempler og løse oppgaveløsningsøvelser.
21 timer
Oversikt
ROS stands for Robot Operating System. It is an open source framework that is used to aid in the development of advanced robots.

In this instructor-led, live training, 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.

Format of the course

- Part lecture, part discussion, exercises and heavy hands-on practice
14 timer
Oversikt
ROS -Industrial ( ROS -I) er et åpen kildekode-prosjekt som bygger på ROS . Det utvider mulighetene til ROS til å produsere automatisering og robotikk.

I denne instruktørledede liveopplæringen vil deltakerne lære å begynne å utvikle seg med ROS -Industrial.

Ved slutten av denne opplæringen vil deltakerne kunne:

- Installer og konfigurer ROS -Industrial
- Implementere bevegelses- og baneplanlegging på ROS -I ved hjelp av verktøy som MoveIt! og Descartes
- Lag enkle ROS jeg applikasjoner
- Bygg, test, distribuer og feilsøk en ny robot med ROS -I

Publikum

- programmerere
- Utviklere
- ingeniører

Kursets format

- Delforelesning, deldiskusjon, øvelser og tung praktisk øvelse

Merk

- For å be om en tilpasset opplæring for dette kurset, vennligst kontakt oss for å avtale.
84 timer
Oversikt
A Smart Robot is an Artificial Intelligence (AI) system that can learn from its environment and its experience and build on its capabilities based on that knowledge. Smart Robots can collaborate with humans, working along-side them and learning from their behavior. Furthermore, they have the capacity for not only manual labor, but cognitive tasks as well. In addition to physical robots, Smart Robots can also be purely software based, residing in a computer as a software application with no moving parts or physical interaction with the world.

In this instructor-led, live training, participants will learn the different technologies, frameworks and techniques for programming different types of mechanical Smart Robots, then apply this knowledge to complete their own Smart Robot projects.

The course is divided into 4 sections, each consisting of three days of lectures, discussions, and hands-on robot development in a live lab environment. Each section will conclude with a practical hands-on project to allow participants to practice and demonstrate their acquired knowledge.

The target hardware for this course will be simulated in 3D through simulation software. The ROS (Robot Operating System) open-source framework, C++ and Python will be used for programming the robots.

By the end of this training, participants will be able to:

- Understand the key concepts used in robotic technologies
- Understand and manage the interaction between software and hardware in a robotic system
- Understand and implement the software components that underpin Smart Robots
- Build and operate a simulated mechanical Smart Robot that can see, sense, process, grasp, navigate, and interact with humans through voice
- Extend a Smart Robot's ability to perform complex tasks through Deep Learning
- Test and troubleshoot a Smart Robot in realistic scenarios

Audience

- Developers
- Engineers

Format of the course

- Part lecture, part discussion, exercises and heavy hands-on practice

Note

- To customize any part of this course (programming language, robot model, etc.) please contact us to arrange.
14 timer
Oversikt
Intelligent Process Automation, or IPA, refers to the use of Artificial Intelligence (AI), robotics and integration with third-party services to extend the power of RPA.

This instructor-led, live training (onsite or remote) is aimed at technical persons who wish to set up or extend an RPA system with more intelligent capabilities.

By the end of this training, participants will be able to:

- Install and configure UiPath IPA.
- Enable robots to manage other robots.
- Apply computer vision to locate screen objects with accuracy.
- Enable robots that can detect language patterns and carry out sentiment analysis on unstructured content.

Format of the Course

- Interactive lecture and discussion.
- Lots of exercises and practice.
- Hands-on implementation in a live-lab environment.

Course Customization Options

- To request a customized training for this course, please contact us to arrange.
- To learn more about UiPath IPA, please visit: https://www.UiPath.com/rpa/intelligent-process-automation
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