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ssm 14.1 4 This project is offered as MSP1101: Masterprojekt - Echtzeitsysteme/Eingebettete Systeme.
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ssm 4.1 6 {{info title="Kick-Off Meeting"}}
ssm 16.1 7 If you would like to join this project, you need to attend the kick-off meeting on April 12th at 09:45am. The meeting will be held in CAP4, room 1115.
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ssm 1.1 9
ssm 4.1 10 == What is this whole Wiki thing? ==
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12 * It's the place where we post important information on the practical, such as due dates and similar information.
13 * It's also the place where we post tutorials. You will spend the first part of the practical working through the tutorials before starting your individual projects.
14 * And finally, it's the place where you will document their project.
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ssm 6.1 16 == About the Real-Time Project SS 16 ==
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18 The goal of this project is to plan, develop and build a miniature version (true to scale) of the lighthouse project employed during the 350 years celebration of the Kiel University. The lighthouse project deployed controllable LED arrays to all offices to light the whole highriser in a custom way. While several parts of the actual highriser may be build in an abstract way, the actual topology of your approach should also work with the real life version of the highriser. The project addresses different system design aspects:
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20 === Project Aspects ===
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25 Description
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27 Example
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30 Planing
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32 To ensure the success of your project you should carefully plan your approach. Your project schedule will affect all subsequent phases (3D Printing, Circuits, Assembling and Software Design). You need to keep costs at a minimum and delivery times in mind.
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ssm 8.1 34 [[image:attach:tinkercad.png]]
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36 TinkerCAD (Image from [[http:~~/~~/blog.123dapp.com/>>url:http://blog.123dapp.com/||shape="rect"]])
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ssm 6.1 40 3D Printing
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43 You are going to 3D print the miniature version of the highriser. Your task is to design a modular version of one floor that you are able to print in the available 3D printer. Use the modular floors to build your personal version of the CAU highriser.
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ssm 9.1 46 [[image:attach:3dprinter.jpg]]
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48 3D Printer (Arnd Plumhoff, CAP 4, R1111)
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52 Circuit Design
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55 To control the lights deployed in each office you will design your own controller (interface: WLAN or LAN). The controller topology will most likely be an abstract one, however, the design should be realistic. The controller boards will be manufactured professionally and you will solder the components yourselves.
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ssm 9.1 58 [[image:attach:circuitsmall.jpg]]
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60 LED Controller (Ulf Rüegg, CAP 4, R1111)
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64 Assembling
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67 Finally, you must assemble all your parts and build the miniature lighthouse.
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74 Software Design
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77 You will create an API to control the lighthouse and use it as demonstrator.
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ssm 5.1 85 == Important Dates ==
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88 Date
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90 Room
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92 Appointment
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ssm 15.1 95 April 12th, 2016
96 09:45am
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98 R1115 CAP4
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100 Kick-off
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ssm 7.1 104 April 18th, 2016
105 10:00am
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ssm 7.1 111 Proposal
ssm 5.1 112 )))
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uru 17.1 115 Mi April 27th, 2016
116 12:00am\\
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uru 17.1 119 LMS2 - R.Ü2/K
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uru 17.1 122 µC Lecture
ssm 5.1 123 )))
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126 Tu March 3nd, 2016
127 10:00am
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130 LMS2 - R.Ü2/K
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133 Breadboard Practice
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137 Mi March 4th, 2016
138 12:00am
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141 LMS2 - R.Ü2/K
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144 PCB Layout Lecture
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148 Tu March 10th, 2016
149 10:00am
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152 LMS2 - R.Ü2/K
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155 µC Programming Practice
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ssm 5.1 157
ssm 1.1 158 == Recent space activity ==
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164 == Space contributors ==
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ssm 5.1 174 == To Go Further ==
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176 * Real-Time Project SS 15 Home: [[doc:RTProjectSS15.Real-Time and Embedded Systems Project]]
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