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Last modified by Niklas Rentz on 2025/03/13 09:21
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... ... @@ -41,7 +41,7 @@ 41 41 42 42 43 43 44 -* **2 Interactive Constraint Creation and Application in Automatic Layout **(Bachelor /Master)44 +* **2 Interactive Constraint Creation and Application in Automatic Layout **(Bachelor, Master) 45 45 Evaluate options how to create constraints on the layout like "Node x should be placed at position y" and how to implement this in the current layout algorithms. Assess how such constraints can be persisted within the model. 46 46 * **3 Force Based Drawing with Port Constraints** (Master) 47 47 Develop methods for integrating port constraints in force-based drawing approaches. The resulting node placement shall be evaluated using an edge router such as [[libavoid>>url:http://www.adaptagrams.org/||shape="rect"]] on the model library of [[Ptolemy>>url:http://ptolemy.eecs.berkeley.edu/||shape="rect"]]. ... ... @@ -50,7 +50,7 @@ 50 50 51 51 52 52 53 -* **1 A (Simple) Edge Router** (Bachelor) 53 +* **1 A (Simple) Edge Router** (Bachelor, Master) 54 54 Often, people want their nodes to stay in the same place, but have the edges routed somehow. We currently don't have any layout algorithm that can do so. In this assignment, you would implement a simple edge router to solve this. 55 55 * **1 Improved Spline Edge Routing **(Master) 56 56 Our layer-based layout algorithm is capable to route edges as splines. Evaluate the results using state machine diagrams, identify possible improvements and develop solutions to address these.
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... ... @@ -1,1 +1,1 @@ 1 -https://rtsys.informatik.uni-kiel.de/confluence//wiki/spaces/RTSYS/pages/2015235 6/Topics for Student Theses1 +https://rtsys.informatik.uni-kiel.de/confluence//wiki/spaces/RTSYS/pages/20152358/Topics for Student Theses