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Lecturers: Joël Gähwiler, Luke Franzke

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  • Object emits one value from 0.0 to 1.0 to be understood as the current energy production.
  • Circular Base with a diameter of 400mm (the tree stump is 600mm).
  • Robust, waterproof and resistant in below zero environments.
  • Construction only with appropriate materials (decision will be made together).
  • The object should have both sensors (inputs) and actuators (feedback).
  • Easily reproducible: CAD drawings and electronic schematics must also be delivered.

Technical Specification

Each object must use a Arduino MKR1000 (WiFi, 3.3V) that connects to a shifr.io namespace and transmits the current energy production as string representation of a floating point value between 0.0 and 1.0. At the final presentation we will communicate access credentials to a shared namespace as well as topics for the individual objects that need to be configured. We will use the data to feed a simple visualization that will present the common energy production per power type.

Groups

Wind

  1. Jennifer, Mara, Felix (wind1)
  2. Lilian, Randy (wind2)

Water

  1. Melanie
  2. Marcial

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  1. , Marcial, Michelle (water1)
  2. Duy, Fiona, Colin (water2)

Solar

  1. Claudia, Stefan, Janina (solar1)
  2. Andrin, Edna, Dominik (solar2)

Deliverables

Individual

  • Scans of Notebook (PDF)

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  • Individual Documentation (30%)
  • Group Work (70%)

Presentation

For the presentation you will need to bring your objects to 4.T33. Ensure that your project is connected to shiftr.io using the MKR100 with the shared name space for the Zauberwald project  (you will be briefed how to do this). A simple visualisation has been prepared to show the outputs on the screen in the seminar room.  

  • 5 minutes for presentation, and 5 minutes for feedback and discussion
  • Live demonstration of your project 
  • Explain the process and the thinking that brought you to this outcome 
  • Indicate any further steps that are required to realise your project in an outdoor, winter setting 
  • No slides needed 

Schedule

Morning: 09:00 - 12:00 Uhr, Afternoon: 13:30 - 17:00 Uhr

W1

Tuesday 9.10

Wednesday 10.10

Thursday 11.10

Friday 12.10

Morning

Kick-off
JG, LF - 4.T06 - 09:00

Electricity Basics
Resistors, LED's

JG, LF - 4.T06

Analog Input
Analog Sensors 
Voltage Divider
Smoothing
JG - 4.T06 - 09:00

Transistors
Motors, Solenoids
Servo Motors
LF - 4.K14 - 09:00

Digital Components
Digital Interfaces
I2C (de), SPI, UART
Neo Pixel, Ultra Sonic
JG, LF - 4.K14 - 09.00

Afternoon

Digital Output
Pulse Width Modulation
Digital Input Debouncing
JG, LF, 4.T06 - 13:30

Soldering
Arduino & Processing
Serial Communication

JG - 4.T06 - 13:30

ICs, H-Bridges
LF - 4.K14 - 13:30

Bits & Atoms III
FW - 4.K14 - 15.00

Individual Work
Cleanup, Material Check
JG, LF - 4.K14 - 09.00-15.00

W2

Tuesday 16.10

Wednesday 17.10

Thursday 18.10

Friday 19.10

Morning

EAGLE CAD
LF - 3.K10 - 09.00

Individual Repetition

Ideation

Afternoon

PCB Milling
LF - 3.E07-A - 13.30

Networking
JG - 3.E07-A - 13:30

Project Kickoff
JG, LF, JS, EWZ - 4.T06 - 13.00

Bits & Atoms III
JG - 4.T06 - 15.00

Concept

W3

Tuesday 23.10

Wednesday 24.10

Thursday 25.10

Friday 26.10

Morning

Short Presentation
JG, LF - 3.E07-A - 09.00

Mentoring
JG, LF - 3.E07-A - 10.30

Mentoring
LF, JG - 3.E07-A - 09.00Mentoring
JG, LF - 3.E07-A - 09.00

PrototypingPrototyping
Afternoon

Prototyping

PrototypingPrototyping

Mentoring

Bits & Atoms III
JG, LF - Lab - 13.30-15.00

Prototyping

W4

Tuesday 30.10

Wednesday 31.10

Thursday 01.11

Friday 02.11

Morning

Build

Build

BuildDocumentation

Bits & Atoms III
JG - 5.D02 - 09.00

Afternoon

Mentoring
LF, JG - Atelier - 13.30

Build

Final Presentation
LF, JG - 4.T33 - 15:00

Documentation


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