* Cantinho Satkeys

Refresh History
  • cereal killa:
    Hoje às 21:17
  • j.s.: tenham uma Santa e Feliz Páscoa  49E09B4F 49E09B4F 49E09B4F
    Hoje às 18:19
  • j.s.:
    Hoje às 18:19
  • j.s.: dgtgtr a todos  4tj97u<z 4tj97u<z
    Hoje às 18:15
  • FELISCUNHA: Uma santa sexta feira para todo o auditório  4tj97u<z
    18 de Abril de 2025, 11:12
  • JPratas: try65hytr Pessoal  4tj97u<z classic k7y8j0
    18 de Abril de 2025, 03:28
  • cereal killa: try65hytr malta  classic 2dgh8i
    14 de Abril de 2025, 23:14
  • FELISCUNHA: Votos de um santo domingo para todo o auditório  101041
    13 de Abril de 2025, 11:45
  • j.s.: e um bom domingo de Ramos  43e5r6 43e5r6
    11 de Abril de 2025, 21:02
  • j.s.: tenham um excelente fim de semana  49E09B4F
    11 de Abril de 2025, 21:01
  • j.s.: try65hytr a todos  4tj97u<z
    11 de Abril de 2025, 21:00
  • JPratas: try65hytr  y5r6t Pessoal  classic k7y8j0
    11 de Abril de 2025, 04:15
  • JPratas: dgtgtr A Todos  4tj97u<z classic k7y8j0
    10 de Abril de 2025, 18:29
  • FELISCUNHA: ghyt74  pessoal   49E09B4F
    09 de Abril de 2025, 11:59
  • cereal killa: try65hytr pessoal  2dgh8i
    08 de Abril de 2025, 23:21
  • FELISCUNHA: Votos de um santo domingo para todo o auditório  43e5r6
    06 de Abril de 2025, 11:13
  • cccdh: Ola para todos!
    04 de Abril de 2025, 23:41
  • j.s.: tenham um excelente fim de semana  49E09B4F
    04 de Abril de 2025, 21:10
  • j.s.: try65hytr a todos  4tj97u<z
    04 de Abril de 2025, 21:10
  • FELISCUNHA: dgtgtr pessoal  49E09B4F  bom fim de semana  4tj97u<z
    04 de Abril de 2025, 14:29

Autor Tópico: PID Control with Arduino  (Lida 170 vezes)

0 Membros e 1 Visitante estão a ver este tópico.

Online mitsumi

  • Moderador Global
  • ***
  • Mensagens: 118935
  • Karma: +0/-0
PID Control with Arduino
« em: 02 de Outubro de 2019, 10:43 »

PID Control with Arduino
.MP4 | Video: 1280x720, 30 fps(r) | Audio: AAC, 44100 Hz, 2ch | 216 MB
Duration: 31 mins | Genre: eLearning | Language: English
Learn to implement the widely used industrial controller on the Arduino platform! (For students, makers, and engineers)

What you'll learn

    Students will gain an intuitive insight into how a PID controller works and how to implement it on the Arduino Platform!
    Use the PID algorithm for their Arduino or microcontroller-based projects such as quad-copters, self balancing robots, temperature control, motor speed control, and much more!

Requirements

    Having a basic understanding of electronics + C coding and exposure to the Arduino platform.
    Having a good foundation in math/physics and some exposure to calculus.
    Preferred: Intuitive understanding of feedback control and stability.

Description

Learn the basics behind how a proportional-integral-derivative (PID) controller works and how to implement one on the Arduino hardware!

A PID controller is the most common feedback controller used in the industry, but they can also be used for hobbyist electronic projects such as quad-copters, self-balancing robots, temperature controllers, and much more! In this course, we will not be going into the classical control theory behind PID controllers, instead we will approach the controller intuitively so that it's role and implementation is practically understood.

The lecture series contains 7 lectures covering:

    Feedback Systems, P, PI, and PID Controllers
    Arduino Implementation and Live Demonstration (Propeller Arm Example)
    Heuristic PID Tuning

A template for the Arduino code will also be provided and explained in the series. In order to demonstrate the controller in real-time, a propeller arm example has been constructed. The live demonstration will be used to explain the behavior of the PID controller and how to tune one heuristically.

This course is suitable for any student, engineer, hobbyist, or maker who always wished to understand PID control in a easy intuitive manner; although a basic understand of electronics, C coding, and calculus is preferred. Having knowledge of feedback control prior to taking this course is also a plus!

After taking this course, you will not only understand PID control better, but you'll become a lot more comfortable with designing projects that involve feedback control.

Who this course is for:

    Any engineer, student, or hobbyist who wishes to learn how to implement a PID controller in hardware (Arduino/Microcontrollers).
    Anyone designing projects that involve feedback control (quad-copters, self-balancing robots, temperature control, etc).
           

               

Download link:
Só visivel para registados e com resposta ao tópico.

Only visible to registered and with a reply to the topic.

Links are Interchangeable - No Password - Single Extraction