Academic literature on the topic 'UPPAAL Model Checker'

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Journal articles on the topic "UPPAAL Model Checker"

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Herrmann, Peter, Jan Olaf Blech, Fenglin Han, and Heinz Schmidt. "A Model-Based Toolchain to Verify Spatial Behavior of Cyber-Physical Systems." International Journal of Web Services Research 13, no. 1 (2016): 40–52. http://dx.doi.org/10.4018/ijwsr.2016010103.

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A method preserving cyber-physical systems to operate safely in a joint physical space is presented. It comprises the model-based development of the control software and simulators for the continuous physical environment as well as proving the models for spatial and real-time properties. The corresponding toolchain is based on the model-based engineering tool Reactive Blocks and the spatial model checker BeSpaceD. The real-time constraints to be kept by the controller are proven using the model checker UPPAAL.
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Cha, Sungdeok, Hanseong Son, Junbeom Yoo, Eunkyung Jee, and Poong Hyun Seong. "Systematic evaluation of fault trees using real-time model checker UPPAAL." Reliability Engineering & System Safety 82, no. 1 (2003): 11–20. http://dx.doi.org/10.1016/s0951-8320(03)00059-0.

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Saleh Insani, Rachmat Wahid, and Reza Pulungan. "Pemodelan dan Verifikasi Formal Protokol EE-OLSR dengan UPPAAL CORA." IJCCS (Indonesian Journal of Computing and Cybernetics Systems) 10, no. 1 (2016): 93. http://dx.doi.org/10.22146/ijccs.11192.

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Information and Communication Technology systems is a most important part of society. These systems are becoming more and more complex and are massively encroaching on daily life via the Internet and all kinds of embedded systems. Communication protocols are one of the ICT systems used by Internet users. OLSR protocol is a wireless network communication protocol with proactive, and based on link-state algorithm. EE-OLSR protocol is a variant of OLSR that is able to prolong the network lifetime without losses of performance.Protocol verification process generally be done by simulation and testi
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Lu, Yuteng, and Meng Sun. "Modeling and Verification of IEEE 802.11i Security Protocol in UPPAAL for Internet of Things." International Journal of Software Engineering and Knowledge Engineering 28, no. 11n12 (2018): 1619–36. http://dx.doi.org/10.1142/s021819401840020x.

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IEEE 802.11i is the IEEE standard that provides enhanced MAC security and has been widely used in wireless networks and Internet of Things. It improves IEEE 802.11 (1999) by providing a Robust Security Network (RSN) with two new protocols: the Four-Way Handshake and the Group Key Handshake. These protocols utilize the authentication services and port access control described in IEEE 802.1X to establish and change the appropriate cryptographic keys. In this paper, we carry out a formal modeling and verification approach based on timed automata for IEEE 802.11i protocol, using the UPPAAL model c
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Boumaza, Amel, and Ramdane Maamri. "Mapping OWL-S Process Model to Timed Automata." Journal of Information Technology Research 11, no. 1 (2018): 29–48. http://dx.doi.org/10.4018/jitr.2018010103.

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The conversion of web services to semantic web comes the opportunity to automate various tasks. OWL-S plays a key role in describing web services behaviour. While ontology-based semantics given to OWL-S is structural rather than behaviourally oriented, we cannot automate an essential task in this field, verification. In this article, the mapping of OWL-S process model to Timed automata is investigated, which is a suitable formalism for real time systems modeling and automatic verification. Hence, this has led to not only enabling automatic verification but also covering problems related to aut
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Guo, Yunchuan, Lihua Yin, Chao Li, and Junyan Qian. "Spatiotemporal Access Model Based on Reputation for the Sensing Layer of the IoT." Scientific World Journal 2014 (2014): 1–15. http://dx.doi.org/10.1155/2014/671038.

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Access control is a key technology in providing security in the Internet of Things (IoT). The mainstream security approach proposed for the sensing layer of the IoT concentrates only on authentication while ignoring the more general models. Unreliable communications and resource constraints make the traditional access control techniques barely meet the requirements of the sensing layer of the IoT. In this paper, we propose a model that combines space and time with reputation to control access to the information within the sensing layer of the IoT. This model is called spatiotemporal access con
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Vilallonga, Gabriel D., Antônio-Carlos G. de Almeida, Kelison T. Ribeiro, Sergio V. A. Campos, and Antônio M. Rodrigues. "Hypothesized diprotomeric enzyme complex supported by stochastic modelling of palytoxin-induced Na/K pump channels." Royal Society Open Science 5, no. 3 (2018): 172155. http://dx.doi.org/10.1098/rsos.172155.

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The sodium–potassium pump (Na + /K + pump) is crucial for cell physiology. Despite great advances in the understanding of this ionic pumping system, its mechanism is not completely understood. We propose the use of a statistical model checker to investigate palytoxin (PTX)-induced Na + /K + pump channels. We modelled a system of reactions representing transitions between the conformational substates of the channel with parameters, concentrations of the substates and reaction rates extracted from simulations reported in the literature, based on electrophysiological recordings in a whole-cell co
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Suzanti, Ika Oktavia, and Reza Pulungan. "Verifikasi Dua Varian Protokol Ad hoc On demand Distance Vector dengan UPPAAL." IJCCS (Indonesian Journal of Computing and Cybernetics Systems) 9, no. 1 (2015): 13. http://dx.doi.org/10.22146/ijccs.6636.

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AbstrakMobile Ad-hoc Network (MANET) adalah sekumpulan wireless mobile yang terhubung satu sama lain tanpa infrastruktur yang tetap sehingga perubahan topologi dapat terjadi setiap saat. Protokol routing MANET memiliki dua model yaitu protokol routing reaktif yang membentuk tabel routing hanya saat dibutuhkan dan protokol routing proaktif yang melakukan pemeliharaan tabel routing secara berkala. Properti umum yang harus dipenuhi oleh protokol jaringan ad-hoc adalah route discovery, packet delivery dan loop fredom. AODV merupakan protokol reaktif MANET yang memiliki standar waktu berapa lama se
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Volkanov, D. Yu, V. A. Zakharov, D. A. Zorin, I. V. Konnov, and V. V. Podymov. "On the Designing of Model Checkers for Real-Time Distributed Systems." Modeling and Analysis of Information Systems 19, no. 6 (2015): 45–56. http://dx.doi.org/10.18255/1818-1015-2012-6-45-56.

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To verify real-time properties of UML statecharts one may apply a UPPAAL, toolbox for model checking of real-time systems. One of the most suitable ways to specify an operational semantics of UML statecharts is to invoke the formal model of Hierarchical Timed Automata. Since the model language of UPPAAL is based on Networks of Timed Automata one has to provide a conversion of Hierarchical Timed Automata to Networks of Timed Automata. In this paper we describe this conversion algorithm and prove that it is correct w.r.t. UPPAAL query language which is based on the subset of Timed CTL.
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Zhongsheng, Qian, Li Xin, and Wang Xiaojin. "Modeling Distributed Real-time Elevator System by Three Model Checkers." International Journal of Online Engineering (iJOE) 14, no. 04 (2018): 94. http://dx.doi.org/10.3991/ijoe.v14i04.8383.

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The characteristics of three popular model checking tools called SPIN, UPPAAL and NuSMV respectively, are compared and analyzed to determine which type of systems is propitious to be described. And a distributed elevator system model is built, whose related properties are verified and compared by these three model checking tools. To begin with, SPIN, UPPAAL and NuSMV, whose modeling language features are compared, are employed to construct an elevator system model respectively. Then, the three validation tools are used to verify several important properties of the elevator model, and the resul
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Dissertations / Theses on the topic "UPPAAL Model Checker"

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Markovic, Filip. "Automated Test Generation for Structured Text Language using UPPAAL Model Checker." Thesis, Mälardalens högskola, Akademin för innovation, design och teknik, 2015. http://urn.kb.se/resolve?urn=urn:nbn:se:mdh:diva-28412.

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Filipovikj, Predrag. "Connecting a Design Framework for Service-oriented Systems with UPPAAL model-checker." Thesis, Mälardalens högskola, Akademin för innovation, design och teknik, 2013. http://urn.kb.se/resolve?urn=urn:nbn:se:mdh:diva-23137.

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In the context of Service-Oriented Systems (SOS), services represent loosely coupled discrete units that can be created, invoked, composed and decomposed upon a client request. In such a setting, where complex systems are composed out of services based on the client request, ensuring the expected level of Quality-of-Service (QoS) becomes a difficult task. In systems built on service-oriented principles, the formal specification of both functional and extra-functional system behavior, service availability, compatibility and interoperability between different services and systems have become imp
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Gani, Kahina. "Using timed automata formalism for modeling and analyzing home care plans." Thesis, Clermont-Ferrand 2, 2015. http://www.theses.fr/2015CLF22628/document.

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Dans cette thèse nous nous sommes intéressés aux problèmes concernant la conception et la gestion des plans de soins à domicile. Un plan de soins à domicile définit l'ensemble des activités médicales et/ou sociales qui sont menées jour après jour au domicile d'un patient. Ce plan de soins est généralement construit à travers un processus complexe impliquant une évaluation complète des besoins du patient ainsi que son environnement social et physique. La spécification de plans de soins à domicile est difficile pour plusieurs raisons: les plans de soins à domicile sont par nature des processus n
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Brynedal, Ignell Nils. "Definition, analysis and implementation of a model-checked Space Plug-and-play Architecture adaptation for the Controller Area Network." Thesis, Mälardalens högskola, Akademin för innovation, design och teknik, 2014. http://urn.kb.se/resolve?urn=urn:nbn:se:mdh:diva-26049.

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The Virtual Network (VN) protocol is a communications protocol software compatible with the Space Plug-and-play Architecture (SPA). This Master Thesis defines a protocol that extends the Virtual Network protocol to cover communication over the Controller Area Network (CAN). The Virtual Network for the Controller Area Network (VN-CAN) is defined, modelled and verified using UPPAAL as well as implemented and tested while running on actual hardware. The VN-CAN protocol enables components on the CAN network to communicate with other components both inside and outside of the CAN network, which toge
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Book chapters on the topic "UPPAAL Model Checker"

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Haxthausen, Anne E., and Kristian Hede. "Formal Verification of Railway Timetables - Using the UPPAAL Model Checker." In From Software Engineering to Formal Methods and Tools, and Back. Springer International Publishing, 2019. http://dx.doi.org/10.1007/978-3-030-30985-5_25.

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Filipovikj, Predrag, Nesredin Mahmud, Raluca Marinescu, Cristina Seceleanu, Oscar Ljungkrantz, and Henrik Lönn. "Simulink to UPPAAL Statistical Model Checker: Analyzing Automotive Industrial Systems." In FM 2016: Formal Methods. Springer International Publishing, 2016. http://dx.doi.org/10.1007/978-3-319-48989-6_46.

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Filipovikj, Predrag, Nesredin Mahmud, Raluca Marinescu, Cristina Seceleanu, Oscar Ljungkrantz, and Henrik Lönn. "Erratum to: Simulink to UPPAAL Statistical Model Checker: Analyzing Automotive Industrial Systems." In FM 2016: Formal Methods. Springer International Publishing, 2017. http://dx.doi.org/10.1007/978-3-319-48989-6_51.

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Havelund, Klaus, Kim Guldstrand Larsen, and Arne Skou. "Formal Verification of a Power Controller Using the Real-Time Model Checker Uppaal." In Formal Methods for Real-Time and Probabilistic Systems. Springer Berlin Heidelberg, 1999. http://dx.doi.org/10.1007/3-540-48778-6_17.

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Nigro, Christian, Libero Nigro, and Paolo F. Sciammarella. "Modelling and Analysis of Partially Stochastic Time Petri Nets Using Uppaal Model Checkers." In Advances in Intelligent Systems and Computing. Springer International Publishing, 2019. http://dx.doi.org/10.1007/978-3-030-22868-2_66.

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Herrmann, Peter, Jan Olaf Blech, Fenglin Han, and Heinz Schmidt. "A Model-Based Toolchain to Verify Spatial Behavior of Cyber-Physical Systems." In Robotic Systems. IGI Global, 2020. http://dx.doi.org/10.4018/978-1-7998-1754-3.ch033.

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A method preserving cyber-physical systems to operate safely in a joint physical space is presented. It comprises the model-based development of the control software and simulators for the continuous physical environment as well as proving the models for spatial and real-time properties. The corresponding toolchain is based on the model-based engineering tool Reactive Blocks and the spatial model checker BeSpaceD. The real-time constraints to be kept by the controller are proven using the model checker UPPAAL.
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Rodriguez-Navas, Guillermo, Julian Proenza, Hans Hansson, and Paul Pettersson. "Using Timed Automata for Modeling the Clocks of Distributed Embedded Systems." In Behavioral Modeling for Embedded Systems and Technologies. IGI Global, 2010. http://dx.doi.org/10.4018/978-1-60566-750-8.ch007.

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Model checking is a widely used technique for the formal verification of computer systems. However, the suitability of model checking strongly depends on the capacity of the system designer to specify a model that captures the real behaviour of the system under verification. For the case of real-time systems, this means being able to realistically specify not only the functional aspects, but also the temporal behaviour of the system. This chapter is dedicated to modeling clocks in distributed embedded systems using the timed automata formalism. The different types of computer clocks that may be used in a distributed embedded system and their effects on the temporal behaviour of the system are introduced, together with a systematic presentation of how the behaviour of each kind of clock can be modeled. The modeling is particularized for the UPPAAL model checker, although it can be easily adapted to other model checkers based on the theory of timed automata.
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Rashid, Adnan, and Osman Hasan. "Formal Verification of ZigBee-Based Routing Protocol for Smart Grids." In Encyclopedia of Information Science and Technology, Fifth Edition. IGI Global, 2021. http://dx.doi.org/10.4018/978-1-7998-3479-3.ch069.

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Smart grids provide a digital upgradation of the conventional power grids by alleviating the power outages and voltage sags that occur due to their inefficient communication technologies and systems. They mainly tend to strengthen the efficiency, performance, and reliability of the traditional grids by establishing a trusted communication link between their different components through routing protocols. The conventional methods, i.e., the computer-based simulations and net testing, for analyzing these routing network protocols are error-prone and thus cannot be relied upon while analyzing the safety-critical smart grid systems. Formal methods can cater for the above-mentioned inaccuracies and thus can be very beneficial in analyzing communication protocols used in smart grids. In order to demonstrate the utilization and effectiveness of formal methods in analyzing smart grid routing protocols, we use the UPPAAL model checker to formally model the ZigBee-based routing protocol. We also verify some of its properties, such as, liveness, collision avoidance and deadlock freeness.
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Herrmann, Peter, Jan Olaf Blech, Fenglin Han, and Heinz Schmidt. "Model-Based Development and Spatiotemporal Behavior of Cyber-Physical Systems." In Advances in Web Technologies and Engineering. IGI Global, 2019. http://dx.doi.org/10.4018/978-1-5225-7268-8.ch004.

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Many cyber-physical systems operate together with others and with humans in a joint physical space. Because of their operation in proximity to humans, they have to operate according to very high safety standards. This chapter presents a method for developing the control software of cyber-physical systems. The method is model-based and assists engineers with spatial and real-time property verification. In particular, the authors describe a toolchain consisting of the model-based development toolset Reactive Blocks, the spatial analyzer BeSpaceD in conjunction with the real-time model checkers UPPAAL and PRISM. The combination of these tools makes it possible to create models of the control software and, if necessary, simulators for the actual system behavior with Reactive Blocks. These models can then be checked for various correctness properties using the analysis tools. If all properties are fulfilled, Reactive Blocks transforms the models automatically into executable code.
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Conference papers on the topic "UPPAAL Model Checker"

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Fogh, Peter, Thomas C. Hald, and Brian Nielsen. "WUppaal: A web-service for the Uppaal model-checker." In 2016 2nd International Workshop on Modelling, Analysis, and Control of Complex CPS (CPS Data). IEEE, 2016. http://dx.doi.org/10.1109/cpsdata.2016.7496421.

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Bhandal, Colm, Melanie Bouroche, and Arthur Hughes. "An Abstract Model of a Coordination Protocol Using the UPPAAL Model Checker." In 2011 IEEE/IFIP 9th International Conference on Embedded and Ubiquitous Computing (EUC). IEEE, 2011. http://dx.doi.org/10.1109/euc.2011.14.

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ab, Shimmi Asokan, and G. SanthoshKumar. "Modelling and Verification of the FlexRay Startup Mechanism using UPPAAL Model Checker." In 2018 8th International Symposium on Embedded Computing and System Design (ISED). IEEE, 2018. http://dx.doi.org/10.1109/ised.2018.8704029.

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Enoiu, Eduard Paul, Daniel Sundmark, and Paul Pettersson. "Model-Based Test Suite Generation for Function Block Diagrams Using the UPPAAL Model Checker." In 2013 IEEE 6th International Conference On Software Testing, Verification and Validation Workshops (ICSTW). IEEE, 2013. http://dx.doi.org/10.1109/icstw.2013.27.

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Nakatani, Yuta, and Shin-ya Nishizaki. "2D Geometric Modeling and Verification of Line Tracing Robot Using UPPAAL Model Checker." In 2014 2nd International Conference on Software Engineering, Knowledge Engineering and Information Engineering (SEKEIE 2014) ). Atlantis Press, 2014. http://dx.doi.org/10.2991/sekeie-14.2014.36.

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Singh, Abhishek, Meenakshi D'Souza, and Arshad Ebrahim. "Conformance testing of ARINC 653 compliance for a safety critical RTOS using UPPAAL model checker." In SAC '21: The 36th ACM/SIGAPP Symposium on Applied Computing. ACM, 2021. http://dx.doi.org/10.1145/3412841.3442053.

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Miron, E., J. P. Mendonca, J. Machado, D. Olaru, and G. Prisacaru. "CAD Information Handling for Obtaining Dependable Manufacturing Systems." In ASME 2015 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 2015. http://dx.doi.org/10.1115/imece2015-51712.

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The design of mechatronic systems is a multidisciplinary task that involves skills from mechanic, electronic and informatics areas. Recently, the expertise from such different fields is able to communicate and exchange the necessary contribution to successful design solutions, through a myriad of internet tools available. The introduction of internet of services on the design of mechatronic systems, mainly when teams, with different skills, operate in different geographic places, has contributed to flawlessly integrate better and interoperable final solutions. The design of mechatronic systems
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Fatima, T., K. Saghar, and A. Ihsan. "Evaluation of model checkers SPIN AND UPPAAL for testing wireless sensor network routing protocols." In 2015 12th International Bhurban Conference on Applied Sciences and Technology (IBCAST). IEEE, 2015. http://dx.doi.org/10.1109/ibcast.2015.7058514.

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