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From version < 3.1 >
edited by uru
on 2016/08/03 14:43
To version < 8.1 >
edited by Richard Kreissig
on 2023/09/07 11:18
>
Change comment: There is no comment for this version

Summary

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1 +Projects.WebHome
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1 -XWiki.uru
1 +XWiki.stu230980
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1 -{{layout}}
2 -{{layout-section ac:type="single"}}
3 -{{layout-cell}}
4 -{{tip title="Welcome to your new space!"}}
5 -Confluence spaces are great for sharing content and news with your team. This is your home page. Right now it shows recent space activity, but you can customize this page in anyway you like.
6 -{{/tip}}
1 +This project is offered as [[MSP1101: Masterprojekt - Echtzeitsysteme/Eingebettete Systeme (Layout) (080098)>>url:http://univis.uni-kiel.de/prg?show=llong&key=16/lectures/2016w:techn/infor/inform/echtze/prakte||shape="rect"]].** **Master students may subsequently write a thesis building on results of the project.
7 7  
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4 +{{info title="Kick-Off Meeting"}}
5 +If you would like to join this project, you need to attend the kick-off meeting on **October 26th at 10:00am**. The meeting will be held in CAP4, room 1115.
6 +{{/info}}
7 +
8 8  = [[Layout Project>>doc:RTProjectSS15.Layout Project||shape="rect"]] =
9 9  
10 10  Graph layout algorithms are widely used to have computers generate visualizations of graph-like information. To that end, a graph layout algorithm generates a two-dimensional layout that consists of positioning data for nodes (represented as closed shapes) and routing data for edges (represented as curves). There are several approaches for designing graph layout algorithms [1,2].
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19 19  (% style="text-align: center;" %)
20 20  //This is KLighD showing a graphical view of a textually specified electric circuit.//
21 21  
22 -(% style="text-align: center;" %)
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24 24  
25 25  (% style="text-align: center;" %)
26 26  (% class="confluence-embedded-file-wrapper confluence-embedded-manual-size" %)[[image:attach:droprequest1_klay.png]]
27 27  
28 28  (% style="text-align: center;" %)
29 -//A diagram layouted with our KLay Layered algorithm.//
27 +//A diagram laid out with our ELK Layered algorithm.//
30 30  
31 31  (% style="text-align: center;" %)
32 -//[[image:attach:image2016-8-3 14:42:22.png]]//
30 +[[image:/bin/download/Projects/Real%20Time%20Project%20WS%201617%20%28Layout%29/WebHome/image2016-8-3%2014%3A42%3A22.png?rev=1.2||alt="image2016-8-3 14:42:22.png"]]//[[image:attach:image2016-8-3 14:42:22.png]]//
33 33  
34 34  (% style="text-align: center;" %)
35 -//A visualization of a Ptolemy diagram's hierarchy.
36 -//
33 +//A visualization of a Ptolemy diagram's hierarchy.//
37 37  
38 38  Responsible for this project is [[Ulf>>mailto:msp@informatik.uni-kiel.de||rel="nofollow" shape="rect" class="external-link"]][[ Rüegg>>mailto:uru@informatik.uni-kiel.de||rel="nofollow" shape="rect" class="external-link"]]. If you need assistance, feel free to send an email or ask for an appointment.
39 39  
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44 44  [3] Christoph Daniel Schulze and Miro Spönemann and Reinhard von Hanxleden. Drawing Layered Graphs with Port Constraints. Journal of Visual Languages and Computing, Special Issue on Diagram Aesthetics and Layout, 2014.
45 45  
46 46  
47 -
48 -{{/layout-cell}}
49 -{{/layout-section}}
50 50  
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52 -{{layout-cell}}
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55 55  
56 -{{layout-cell}}
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61 -{{layout-section ac:type="single"}}
62 -{{layout-cell}}
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64 -{{/layout-cell}}
65 -{{/layout-section}}
66 -{{/layout}}
46 +(% style="display: none;" %)
47 +(((
48 +318
49 +)))
KLighD-CircuitDiagrams.png
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1 -https://rtsys.informatik.uni-kiel.de/confluence//wiki/spaces/RTP16/pages/18776125/Real Time Project WS 16/17 (Layout)
1 +https://rtsys.informatik.uni-kiel.de/confluence//wiki/spaces/RTP16/pages/18776118/Real Time Project WS 16/17 (Layout)