Automation Control

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Automation Control by Mind Map: Automation Control

1. Quality

1.1. Measurementsystems

1.1.1. Laser

1.1.2. Light & Camera

1.1.3. Inductionmeasurement

1.1.4. Glass ruler

2. Industries / contexts

2.1. Chemical- & Heavy Industry

2.1.1. Petrol & Gas

2.1.2. (Bio)Chemical

2.1.3. Pharmacy

2.1.4. Steel

2.1.5. Glass

2.1.6. Mining

2.2. Production

2.2.1. Motion equipment, incl:Railway, Automotive, MarineAviation, Marine, Spacesystems

2.2.2. Energy generation

2.2.3. Products at home

2.2.4. Industrial products & machines

2.2.4.1. Conveyer technology

2.2.4.2. Glass processing

2.2.4.3. Handling systems

2.2.4.4. Machine-tooling

2.2.4.5. Metalforming

2.2.4.6. Packaging

2.2.4.7. Plastics

2.2.4.8. Printing

2.2.4.9. Textile

2.2.4.10. Woodworking

2.2.4.11. Paper

2.2.4.11.1. pulp

2.2.4.11.2. paper

2.2.4.11.3. print

2.3. Food Beverage

2.3.1. Processing equipment

2.3.2. Packaging /fill line

2.4. Logistics

2.4.1. transportation planning / tracking & Tracing

2.4.2. Warehousing

2.4.3. Traffic control

2.4.3.1. Railway

2.4.3.2. Automotive

2.4.3.3. Aviation

2.4.3.4. Marine

2.4.3.5. Inhouse Traffic (AGV)

2.4.4. Hoisting Equipment

2.5. Agriculture & Environment

2.5.1. Agricultural equipment

2.5.2. Greenhouse Horticulture incl. vertical farming

2.5.3. Watermanagement

2.5.3.1. Water

2.5.3.2. Wastewater

2.6. Entertainment

2.6.1. Rollercoaster

2.6.2. Robot-puppetshows

2.6.3. Mechanical attractions

2.7. care

2.7.1. Medical intramural equipment

2.7.2. Medical extramural equipment

2.8. Building systems

2.8.1. Installation equipement

2.8.2. Home- / Building Automation

3. Software

3.1. Visualizing for operators

3.1.1. Human Machine Interface

3.1.2. Web-based at devices (GUI)

3.2. Standardisation

3.3. PLC / Industerial control

3.3.1. basics of controlling

3.3.2. Basics of PLC Programming

3.3.3. Object Oriented

3.3.4. Function blocks

3.3.5. Libraries

3.4. SCADA

3.5. ERP-systems

3.6. Developments in software

3.6.1. code-writing versus automated code-generating

3.7. Digital Twin

3.7.1. Physical or virtual machine

3.7.2. Modelling

3.7.3. emulation

3.7.4. simmulation

3.7.5. visualizing

3.8. artificial Intelligence

3.8.1. data-collection

3.8.2. Statistics

3.8.3. Logarithms / analysis

4. Concepts

4.1. Systemintegrated thinking

4.1.1. when designing systems

4.1.2. when maintaining

4.1.2.1. determination-tools

4.1.2.2. Proactive maintenance

4.2. Production Execution Systems / ERP

4.3. layers in automation control

4.3.1. Piramid of layers

4.4. Process-control

4.5. CAD-CAM etc.

4.6. Control-principals

4.6.1. types of control

4.6.1.1. PI/PD/PID

4.6.1.2. On/Off Control

4.6.1.3. Relaiscontrol

4.6.1.4. Fixed, embedded systems

4.6.1.5. Microcontrollor

4.6.1.6. PC

4.6.2. Open / closed loop

4.6.3. Centralized, decentralized, combination

4.6.3.1. Distributed Control Systems

4.6.4. analog / digital

4.7. PLC Control Systems

4.8. Numerical Control (CNC)

4.9. Robotics (independend & collaboration)

4.10. Multiple movements

4.10.1. Time-Path diagrams

4.10.2. Curves & arms

4.10.3. Robotics

5. Customer-support

5.1. Training

5.1.1. Human Machine Interface

5.1.1.1. Installation

5.1.1.2. tripping & settings

5.1.1.3. Operational handling

5.1.2. Virtual Reality

5.1.3. Augmented Reality

5.2. Maintenance

5.2.1. Measuring & analitics

5.2.2. Condition-monitoring

5.2.3. Augmented Reality

5.3. Implementation

6. Choices in concepts & projects

6.1. Strategies

6.1.1. From IOT

6.1.2. from Automation

6.1.3. From Mechatronics

6.2. Technical choices

6.2.1. Industrial platform (topology etc.)

6.2.2. Open source / Closed / brand-specific

6.2.3. Solution by hard- or software

7. Data processing

7.1. Data-collection / datalogging

7.1.1. Detectionsystems

7.1.1.1. sensors

7.1.1.2. Camera

7.1.1.3. Datatransmission (RFID, WIFI etc.

7.1.1.4. Detection-loops & other countersystems

7.1.1.5. Satellite-systems

7.1.2. Datatransfer

7.1.2.1. Machine-data

7.1.2.2. Manual input

7.1.3. data-input

7.1.3.1. Keyboard

7.1.3.2. HMI

7.1.3.3. Touchscreen

7.2. Data-processing

7.2.1. algorithms

7.3. Speed

7.3.1. Transmission

7.3.2. number of data

7.4. Data-processing security

8. Motion Control

8.1. Motion

8.1.1. Applications & Types of construction

8.1.2. Physics about mass, movement, (de)acceleration, Torque, mass-slowness

8.1.3. Strength, Resonance, deformation

8.1.4. Constructions (mechanical)

8.2. Location

8.2.1. Speed

8.2.2. Position

8.2.3. Position-time diagramm

8.2.4. Postioning & Dynamic behaviour

8.3. electric drivesystems

8.3.1. types of motors AC/DC

8.3.1.1. Servo

8.3.1.1.1. Rotary / lineair

8.3.1.2. Brushed / brushless

8.3.1.3. Three-Phase motor / induction

8.3.1.4. Synchro-motor

8.3.1.5. Frequency / inverterdrive / torquemotor

8.3.1.6. Steppermotor

8.3.1.7. frameless motor

8.3.1.8. Regenerating motors

8.3.1.9. Vibration motor

8.3.1.10. Lineair drives

8.3.1.10.1. Lineair guidance

8.3.1.10.2. (de) accelerating control

8.3.1.11. Rotary Tables

8.3.2. Gearing systems

8.3.3. Constructions (Mechanical & electrical)

8.4. controllers

8.4.1. LAN motioncontrollers

8.4.2. Multi axis-controller

8.5. Pneumatics

8.6. Hydraulics

9. Proces control

9.1. Advanced procescontrol

9.2. Measuring & analitics

9.3. Sensors & actuators For proces control

9.4. Distributed control

9.5. Condition-monitoring

9.6. Human Machine Interface

10. Industrial connectivity

10.1. Working-principals

10.1.1. Master-slave

10.1.2. Peer to peer

10.1.3. Speed

10.1.4. Failure-correction

10.2. Bussystems

10.2.1. differences, similarity, application

10.3. Cable-systems

10.3.1. metal-wire

10.3.2. Optical

10.4. Networksystems

10.5. RFID

10.6. Industrial Wifi

11. Broadcast-systems

11.1. Tomtom-like

11.2. Traffic lights, matrix-systems etc.

11.3. Datatransmission to mobile devices (Also inhouse AGV)

12. Sensors

12.1. Types of sensors

12.1.1. Principals

12.1.1.1. Positioningtechnics

12.1.1.1.1. encoders

12.1.1.2. light, pressure, colorsensors

12.1.1.3. Inductive proximity switch

12.1.1.4. Mechanical (end)switches

12.1.1.5. Measurement sensors

12.1.1.6. Flowmeasurement

12.1.1.7. Mechanical contact measurement

12.1.1.8. Photoelectric

12.1.1.9. Ultrasonic

12.1.1.10. Capacitive proximity

12.1.2. Applications

13. Actuators

13.1. Types of actuators

13.1.1. Principals

13.1.2. Applications

14. Identification

14.1. Barcode & QR-code

14.2. RF-Tagging

14.3. NF-tagging

14.4. Chip

14.5. Vision-systems

15. Safetycomponents & safetysystems

15.1. Physical

15.1.1. Electrical

15.1.1.1. EMC

15.1.1.2. RF-technology

15.1.2. Mechanical

15.1.3. Water

15.1.4. Air

15.1.5. entrance

15.1.5.1. safety mat

15.1.5.2. safety laserscreens (lightscreen)

15.1.5.3. Safety Pushbutton

15.1.5.4. Cabinetswitch

15.1.5.5. Handdetection

15.2. Datasecurity

15.2.1. Hacking, virus etc.

15.2.2. Dataintegrity

15.3. CE-marking

15.3.1. Regulations

15.3.2. Test-methods

16. Energy

16.1. Consumption

16.2. Deliver back