Formal Verification of Human-Robot Interaction in Healthcare Scenarios
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Marcello M. Bersani | Mehrnoosh Askarpour | Matteo Rossi | Livia Lestingi | M. Bersani | M. Rossi | M. Askarpour | Livia Lestingi
[1] Wisama Khalil,et al. Suboptimal Trajectory Generation for Industrial Robots using Trapezoidal Velocity Profiles , 2006, 2006 IEEE/RSJ International Conference on Intelligent Robots and Systems.
[2] Thomas A. Henzinger,et al. The Algorithmic Analysis of Hybrid Systems , 1995, Theor. Comput. Sci..
[3] Cristina Seceleanu,et al. Statistical Model Checking of Complex Robotic Systems , 2019, SPIN.
[4] S. Konz. Work/rest: Part II – The scientific basis (knowledge base) for the guide1 , 2000 .
[5] Gurvinder S. Virk,et al. ISO 13482 - The new safety standard for personal care robots , 2014, ISR 2014.
[6] Rajeev Alur,et al. A Theory of Timed Automata , 1994, Theor. Comput. Sci..
[7] Kim G. Larsen,et al. Uppaal SMC tutorial , 2015, International Journal on Software Tools for Technology Transfer.
[8] V. Asirvadam,et al. Modeling battery management system using the lithium-ion battery , 2012, 2012 IEEE International Conference on Control System, Computing and Engineering.
[9] José Proença,et al. Formal verification of ROS-based robotic applications using timed-automata , 2017 .
[10] Allison Sauppé,et al. Authoring and Verifying Human-Robot Interactions , 2018, UIST.
[11] Clare Dixon,et al. Formal Specification and Verification of Autonomous Robotic Systems , 2018, ACM Comput. Surv..
[12] Marcello M. Bersani,et al. PuRSUE -from specification of robotic environments to synthesis of controllers , 2020, Formal Aspects of Computing.
[13] Marcello M. Bersani,et al. Mind the gap: Robotic Mission Planning Meets Software Engineering , 2020, 2020 IEEE/ACM 8th International Conference on Formal Methods in Software Engineering (FormaliSE).
[14] John K. Tsotsos,et al. Autonomous Vehicles That Interact With Pedestrians: A Survey of Theory and Practice , 2018, IEEE Transactions on Intelligent Transportation Systems.
[15] Maartje M. A. de Graaf,et al. Why Would I Use This in My Home? A Model of Domestic Social Robot Acceptance , 2019, Hum. Comput. Interact..
[16] Wang Yi,et al. Uppaal in a nutshell , 1997, International Journal on Software Tools for Technology Transfer.
[17] Angelo Ferrando,et al. Towards Integrating Formal Verification of Autonomous Robots with Battery Prognostics and Health Management , 2019, SEFM.
[18] Dino Mandrioli,et al. Formal model of human erroneous behavior for safety analysis in collaborative robotics , 2019, Robotics and Computer-Integrated Manufacturing.
[19] Michael Luck,et al. Quantitative Analysis of Multiagent Systems Through Statistical Model Checking , 2015, EMAS@AAMAS.
[20] Julio-Ariel Romero-Pérez,et al. A new methodology for facilitating the design of safety-related parts of control systems in machines according to ISO 13849: 2006 standard , 2018, Reliab. Eng. Syst. Saf..
[21] Clare Dixon,et al. Formal Verification of an Autonomous Personal Robotic Assistant , 2014, AAAI Spring Symposia.
[22] Dino Mandrioli,et al. Safety Assessment of Collaborative Robotics Through Automated Formal Verification , 2020, IEEE Transactions on Robotics.
[23] Philip R. O. Payne,et al. A Review of Clinical Workflow Studies and Methods , 2019, Health Informatics.
[24] Mark J Hadley,et al. A deterministic model of the free will phenomenon , 2018 .
[25] Gul A. Agha,et al. A Survey of Statistical Model Checking , 2018, ACM Trans. Model. Comput. Simul..
[26] Wafa Johal,et al. Social Human-Robot Interaction: A New Cognitive and Affective Interaction-Oriented Architecture , 2016, ICSR.
[27] Mohamad Y. Jaber,et al. Incorporating human fatigue and recovery into the learning–forgetting process , 2013 .