Changes for page 2024 Synchronous Languages
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... ... @@ -55,36 +55,23 @@ 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 -(% style="color:#003366" %)**[assigned] **(% style="color:#333333" %)Joaquin Aguado and Alejandra Duenas, [[Synchronised Shared Memory and Model Checking: A Proof of Concept>>url:https://ieeexplore.ieee.org/abstract/document/9568373||shape="rect"]], //2021 Forum on specification & Design Languages (FDL)//, 2021, pp. 01-08 60 60 61 61 (% style="margin-left: 30.0px;" %) 62 -==== ** Real-Time/Embedded** ====60 +==== **Safety Analysis / Model Checking** ==== 63 63 64 64 (% style="margin-left: 30.0px;" %) 65 - SaranyaNatarajan andDavidBroman, [[TemporalProperty-BasedTesting ofaTimedC Compilerusing Time-FlowGraphSemantics>>url:https://ieeexplore.ieee.org/document/9232935||shape="rect"]],//2020ForumforSpecificationndDesignLanguages(FDL)//(%style="color:#333333"%),202063 +(% style="color:#333333" %)J. Axelsson and A. Kobetski, [[Towards a risk analysis method for systems-of-systems based on systems thinking>>url:https://ieeexplore.ieee.org/document/8369501||shape="rect"]]. //2018 Annual IEEE International Systems Conference (SysCon)//, 2018, pp. 1-8, doi: 10.1109/SYSCON.2018.8369501. 66 66 67 67 (% style="margin-left: 30.0px;" %) 68 - Francisco Sant'Anna,RodrigoSantos,andNoemiRodriguez.2021.[[Symmetricdistributedapplications>>url:https://dl.acm.org/doi/10.1145/3486605.3486786||shape="rect"]]. //Proceedingsof the 8th ACM SIGPLANInternationalWorkshop on Reactiveand Event-Based LanguagesandSystems//.AssociationforComputing Machinery.66 +(% style="color:#333333" %)F. G. R. de Souza, J. de Melo Bezerra, C. M. Hirata, P. de Saqui-Sannes and L. Apvrille, [[Combining STPA with SysML Modeling>>url:https://ieeexplore.ieee.org/document/9275867||shape="rect"]]. //2020 IEEE International Systems Conference (SysCon)//, 2020, pp. 1-8, doi: 10.1109/SysCon47679.2020.9275867. 69 69 70 70 (% style="margin-left: 30.0px;" %) 71 - ====**SafetyAnalysis**====69 +J. Kloos, T. Hussain, and R. Eschbach. [[Risk-based testing of safety-critical embedded systems driven by fault tree analysis>>url:https://ieeexplore.ieee.org/stamp/stamp.jsp?arnumber=5954386]]. In //2011 IEEE Fourth International Conference on Software Testing, Verification and Validation Workshops//, pp. 26-33. IEEE, 2011. 72 72 73 73 (% style="margin-left: 30.0px;" %) 74 - (%style="color:#222222" %)Sven Stefan Krauss,MartinRejzek,andChristianHilbes.[[Tool QualificationConsiderationsfor ToolsSupportingSTPA>>url:https://www.sciencedirect.com/science/article/pii/S1877705815038606||shape="rect"]].(%style="text-align:left" %)//Procedia Engineering//(%style="color:#222222"%)128(2015):15-24.72 +L. A. Cortes, P. Eles and Z. Peng, [[Formal coverification of embedded systems using model checking>>url:https://ieeexplore.ieee.org/stamp/stamp.jsp?arnumber=874622&tag=1]]. //Proceedings of the 26th Euromicro Conference. EUROMICRO 2000. Informatics: Inventing the Future//. Vol. 1. IEEE, 2000. 75 75 76 -(% style="margin-left: 30.0px;" %) 77 -(% style="color:#333333" %)H. Reza, M. Pimple, V. Krishna and J. Hildle, [[A Safety Analysis Method Using Fault Tree Analysis and Petri Nets>>url:https://ieeexplore.ieee.org/document/5070769||shape="rect"]]. (% style="color:#222222" %)//2009 Sixth International Conference on Information Technology: New Generations//(% style="color:#333333" %), 2009, pp. 1089-1094, doi: 10.1109/ITNG.2009.183. 78 78 79 -(% style="margin-left: 30.0px;" %) 80 -(% style="color:#333333" %)J. Axelsson and A. Kobetski, [[Towards a risk analysis method for systems-of-systems based on systems thinking>>url:https://ieeexplore.ieee.org/document/8369501||shape="rect"]]. //2018 Annual IEEE International Systems Conference (SysCon)//, 2018, pp. 1-8, doi: 10.1109/SYSCON.2018.8369501. 81 - 82 -(% style="margin-left: 30.0px;" %) 83 -(% style="color:#333333" %)F. G. R. de Souza, J. de Melo Bezerra, C. M. Hirata, P. de Saqui-Sannes and L. Apvrille, [[Combining STPA with SysML Modeling>>url:https://ieeexplore.ieee.org/document/9275867||shape="rect"]]. //2020 IEEE International Systems Conference (SysCon)//, 2020, pp. 1-8, doi: 10.1109/SysCon47679.2020.9275867. 84 - 85 -(% style="margin-left: 30.0px;" %) 86 -(% style="color:#333333" %)D. L. Gurgel, C. M. Hirata and J. De M. Bezerra, [[A rule-based approach for safety analysis using STAMP/STPA>>url:https://ieeexplore.ieee.org/document/7311464||shape="rect"]]. //2015 IEEE/AIAA 34th Digital Avionics Systems Conference (DASC)//, 2015, pp. 7B2-1-7B2-8, doi: 10.1109/DASC.2015.7311464. 87 - 88 88 === Master Recommendations === 89 89 90 90 (% style="margin-left: 30.0px;" %) ... ... @@ -102,28 +102,8 @@ 102 102 (% style="margin-left: 30.0px;" %) 103 103 (% 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. 104 104 105 -(% style="margin-left: 30.0px;" %) 106 -==== **Real-Time / Embedded** ==== 107 107 108 108 (% style="margin-left: 30.0px;" %) 109 -(% 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 110 - 111 -(% style="margin-left: 30.0px;" %) 112 -(% 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. 113 - 114 -(% style="margin-left: 30.0px;" %) 115 -(% 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. 116 - 117 -(% style="margin-left: 30.0px;" %) 118 -(% 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. 119 - 120 -(% style="margin-left: 30.0px;" %) 121 -(% 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. 122 - 123 -(% style="margin-left: 30.0px;" %) 124 -(% 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. 125 - 126 -(% style="margin-left: 30.0px;" %) 127 127 ==== **Safety Analysis / Testing** ==== 128 128 129 129 (% style="margin-left: 30.0px;" %)