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7 7  (% style="text-align: left;" %)
8 8  == Prerequisites ==
9 9  
10 -This seminar is built upon the contents of the "Synchronous Languages" lecture. All participants that did not yet attend this lecture are recommended to read the following introduction paper, at least parts I and II:
10 +This seminar is build upon the contents of the "Synchronous Languages" lecture. All participants that did not yet attend this lecture are recommended to read the following introduction paper, at least parts I and II:
11 11  
12 12  Benveniste, A.; Caspi, P.; Edwards, S.A.; Halbwachs, N.; Le Guernic, P.; de Simone, R., "The synchronous languages 12 years later," //Proceedings of the IEEE// , vol.91, no.1, pp.64,83, Jan 2003 ([[pdf>>url:http://www.cs.columbia.edu/%7Esedwards/papers/benveniste2003synchronous.pdf||shape="rect" class="MIME-application MIME--pdf external-link"]]).
13 13  
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55 55  (% style="margin-left: 30.0px;" %)
56 56  (% style="color:#333333" %)L. Grimm, S. Smyth, A. Schulz-Rosengarten, R. von Hanxleden and M. Pouzet, [[From Lustre to Graphical Models and SCCharts>>url:https://ieeexplore.ieee.org/document/9232944||shape="rect"]], //2020 Forum for Specification and Design Languages (FDL)//, 2020, pp. 1-8, doi: 10.1109/FDL50818.2020.9232944.
57 57  
58 -(% style="margin-left: 30.0px;" %)
59 -M. C. Werner and K. Schneider, "[[From IEC 61131-3 Function Block Diagrams to Sequentially Constructive Statecharts>>https://ieeexplore.ieee.org/document/9925656]]," //2022 Forum on Specification & Design Languages (FDL)//, Linz, Austria, 2022, pp. 1-8, doi: 10.1109/FDL56239.2022.9925656.
60 60  
61 61  (% style="margin-left: 30.0px;" %)
62 -Fabien Siron, Dumitru Potop-Butucaru, Robert De Simone, Damien Chabrol, and Amira Methni. 2023.[[ Semantics foundations of PsyC based on synchronous Logical Execution Time>>https://dl.acm.org/doi/10.1145/3576914.3587495]]. In Proceedings of Cyber-Physical Systems and Internet of Things Week 2023 (CPS-IoT Week '23). Association for Computing Machinery, New York, NY, USA, 319–324. [[https:~~/~~/doi.org/10.1145/3576914.3587495>>https://doi.org/10.1145/3576914.3587495]]
63 -
64 -
65 -(% style="margin-left: 30.0px;" %)
66 66  ==== **Safety Analysis / Model Checking** ====
67 67  
68 68  (% style="margin-left: 30.0px;" %)
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96 96  (% style="color:#003366" %)Evgeny Kusmenko, Bernhard Rumpe, Sascha Schneiders, and Michael von Wenckstern. 2018. [[Highly-Optimizing and Multi-Target Compiler for Embedded System Models: C++ Compiler Toolchain for the Component and Connector Language EmbeddedMontiArc>>url:https://dl.acm.org/citation.cfm?id=3239388||shape="rect"]]. In //Proceedings of the 21th ACM/IEEE International Conference on Model Driven Engineering Languages and Systems// (MODELS '18). ACM, New York, NY, USA, 447-457.
97 97  
98 98  (% style="margin-left: 30.0px;" %)
99 -Kenwright, L., Roop, P.S., Allen, N., Lall, S., Cascaval, C., Spalink, T., & Izzard, M. (2024). [[Logical Synchrony Networks: A formal model for deterministic distribution>>https://arxiv.org/abs/2402.07433]]. //ArXiv, abs/2402.07433//.
93 +==== **Real-Time / Embedded** ====
100 100  
101 101  (% style="margin-left: 30.0px;" %)
102 -K. Didier, A. Cohen, D. Potop-Butucaru and A. Gauffriau, "[[Sheep in wolf's Clothing: Implementation Models for Dataflow Multi-Threaded Software>>https://ieeexplore.ieee.org/document/8843684]]," //2019 19th International Conference on Application of Concurrency to System Design (ACSD)//, Aachen, Germany, 2019, pp. 43-52, doi: 10.1109/ACSD.2019.00009.
96 +(% style="color:#003366" %)J(%%)ordan A. Ross, Alexandr Murashkin, Jia Hui Liang, Micha(% class="authors__name" %)ł Antkiewicz, Krzysztof Czarnecki, [[Synthesis and exploration of multi-level, multi-perspective architectures of automotive embedded systems>>url:https://rdcu.be/bQRqq||shape="rect"]],(% style="color:#003366" %) Software & Systems Modeling 2019
103 103  
98 +(% style="margin-left: 30.0px;" %)
99 +(% style="color:#003366" %)Reza Ahmadi, Ernesto Posse, and Juergen Dingel. 2018.[[ Slicing UML-based Models of Real-time Embedded Systems>>url:https://dl.acm.org/citation.cfm?doid=3239372.3239407||shape="rect"]]. In //Proceedings of the 21th ACM/IEEE International Conference on Model Driven Engineering Languages and Systems// (MODELS '18). ACM, New York, NY, USA, 346-356.
104 104  
105 105  (% style="margin-left: 30.0px;" %)
102 +(% style="color:#003366" %)Bader Alahmad and Sathish Gopalakrishnan. 2018. [[On Budgeting and Quality, with an Application to Safety-Critical Real-time Systems>>url:https://dl.acm.org/citation.cfm?doid=3273905.3273917||shape="rect"]]. In //Proceedings of the 26th International Conference on Real-Time Networks and Systems// (RTNS '18). ACM, New York, NY, USA, 19-29.
103 +
104 +(% style="margin-left: 30.0px;" %)
105 +(% style="color:#003366" %)Tobias Klaus, Florian Franzmann, Matthias Becker, and Peter Ulbrich. 2018. [[Data Propagation Delay Constraints in Multi-Rate Systems: Deadlines vs. Job-Level Dependencies>>url:https://dl.acm.org/citation.cfm?doid=3273905.3273923||shape="rect"]]. In //Proceedings of the 26th International Conference on Real-Time Networks and Systems// (RTNS '18). ACM, New York, NY, USA, 93-103.
106 +
107 +(% style="margin-left: 30.0px;" %)
108 +(% style="color:#003366" %)Andreas Sailer, Michael Deubzer, Gerald Lüttgen, and Jürgen Mottok. 2017. [[Comparing trace recordings of automotive real-time software>>url:https://dl.acm.org/citation.cfm?doid=3139258.3139265||shape="rect"]]. In //Proceedings of the 25th International Conference on Real-Time Networks and Systems// (RTNS '17). ACM, New York, NY, USA, 118-127.
109 +
110 +(% style="margin-left: 30.0px;" %)
111 +(% style="color:#003366" %)Guillaume Brau, Nicolas Navet, and Jérôme Hugues. 2017. [[Heterogeneous models and analyses in the design of real-time embedded systems - an avionic case-study>>url:https://dl.acm.org/citation.cfm?doid=3139258.3139281||shape="rect"]]. In //Proceedings of the 25th International Conference on Real-Time Networks and Systems// (RTNS '17). ACM, New York, NY, USA, 168-177.
112 +
113 +(% style="margin-left: 30.0px;" %)
106 106  ==== **Safety Analysis / Testing** ====
107 107  
108 108  (% style="margin-left: 30.0px;" %)
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122 122  Milestone
123 123  )))
124 124  |(((
125 -Tue. 16.04 10:00 CAP4 R.1115
133 +tbd
126 126  )))|(((
127 127  First Meeting/**Kick-Off **with a Latex and EasyChair introduction.
128 128  )))
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201 201  
202 202  === Talk ===
203 203  
204 -The talk should be 30 minutes (master) or 20 minutes (bachelor) long. This is followed by 5 minutes of questions. The slides should contain page numbers to allow the participants to ask specific questions after the talk. It would be great to include a short tool demo if your topic includes some concrete implementation.
212 +The talk should be 40 minutes (master) or 25 minutes (bachelor) long. This is followed by 5 minutes of questions. The slides should contain page numbers to allow the participants to ask specific questions after the talk. It would be great to include a short tool demo if your topic includes some concrete implementation.
205 205  
206 206  You can freely choose your presentation tool. Therefore, for the individual dates on the presentation slides it would be best to to use your own computer. If the slides are provided as PDF beforehand, a different computer could be used.
207 207