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Introduction to robotics

  • Development
  • Mar 27, 2025
SynopsisIntroduction to robotics, available at $19.99, with 14 lectur...
Introduction to robotics  No.1

Introduction to robotics, available at $19.99, with 14 lectures.

You will learn about Create a mathematical model of a robotic arm Calculate direct kinematics Create a basic simulation in Matlab/Simulink Calculate inverse kinematics Representation of position in robotics This course is ideal for individuals who are Anyone who wants to start with robotics and understand the basic principles It is particularly useful for Anyone who wants to start with robotics and understand the basic principles.

Enroll now: Introduction to robotics

Summary

Title: Introduction to robotics

Price: $19.99

Number of Lectures: 14

Number of Published Lectures: 14

Number of Curriculum Items: 14

Number of Published Curriculum Objects: 14

Original Price: 19.99

Quality Status: approved

Status: Live

What You Will Learn

  • Create a mathematical model of a robotic arm
  • Calculate direct kinematics
  • Create a basic simulation in Matlab/Simulink
  • Calculate inverse kinematics
  • Representation of position in robotics
  • Who Should Attend

  • Anyone who wants to start with robotics and understand the basic principles
  • Target Audiences

  • Anyone who wants to start with robotics and understand the basic principles
  • Are you interested in robotics and don’t know where to start? The best way to get started with robotics is to learn the necessary basic concepts in the correct order, as each subsequent concept is related to the previous one. This course has been designed to provide theory without going into unnecessary detail. Compared to books, this course also provides coding and simulation to supplement theoretical knowledge with practical.

    In this course you will learn:

  • methods of direct kinematics

  • methods of inverse kinematics

  • representation of position in robotics

  • rotation matrix and homogeneous transformation matrix

  • implement mathematical model in Matlab

  • create a simple Simulink model

  • verify theoretical formulas in Matlab

  • All these methods will be explained in this course and will be shown on the example of a simple robotic arm.

    Almost every manufacturer has its own software, but the basis is still the same: Mathematical description is the key to bring the robot to life. Direct and inverse kinematics are the key approaches in every robotic device.

    In this course, we will implement the mathematical model in the Matlab/Simulink environment. All materials will then be uploaded to the course page.

    For this course you need to master the basics of mathematics.

    Course Curriculum

    Chapter 1: Introduction

    Lecture 1: Introduction

    Lecture 2: Types of robots

    Lecture 3: Basic concepts

    Chapter 2: Position representation in robotics

    Lecture 1: Representation of rotation

    Lecture 2: Example of rotation matrix in Matlab

    Lecture 3: Homogeneous transformation matrix

    Lecture 4: Example of position representation in Matlab

    Chapter 3: Direct kinematics

    Lecture 1: Direct kinematics and D-H convention

    Lecture 2: 3 DoF robotic arm direct kinematics

    Lecture 3: Example of direct kinematics in Matlab

    Lecture 4: Simulink model

    Chapter 4: Inverse kinematics

    Lecture 1: Introduction to inverse kinematics

    Lecture 2: 3 DoF robotic arm inverse kinematics

    Lecture 3: Example of inverse kinematics in Matlab

    Instructors

  • Introduction to robotics  No.2
    Joseph Robotics
    Engineer
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  • Frequently Asked Questions

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