A Method for Building Trustworthy Hybrid Performance Models for Cyber-Physical Systems of Systems

被引:1
作者
Modaber, Mahtab [1 ]
Hendriks, Martijn [1 ]
Geilen, Marc [1 ]
Basten, Twan [1 ]
Voeten, Jeroen [1 ]
机构
[1] Eindhoven Univ Technol, Dept Elect Engn, NL-5612 AP Eindhoven, Netherlands
来源
IEEE ACCESS | 2024年 / 12卷
关键词
Object oriented modeling; Computational modeling; Predictive models; Unified modeling language; Cyber-physical systems; Buildings; Mathematical models; Bayes methods; Cloud computing; Design engineering; Trusted computing; Performance evaluation; Bayesian calibration; cloud-based cyber-physical systems; design patterns; hybrid modeling; model validation; trustworthy performance models; APPROXIMATE BAYESIAN COMPUTATION; MONTE-CARLO; INFERENCE;
D O I
10.1109/ACCESS.2024.3422660
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
The increasing dynamism and interconnectivity of Cyber-Physical Systems of Systems (CPSoS) emphasize the need for advanced performance modeling approaches. Performance models serve the purpose of exploring and evaluating design solutions, providing insights into system behavior during the early design phases, and managing performance risks during development. Despite the advancements in hybrid modeling within the field of performance modeling, the challenge of constructing models effectively and efficiently while ensuring their trustworthiness has not received much attention. This paper proposes a method, that is, step-by-step guidelines on using formalisms, techniques, and tools, to construct trustworthy hybrid models for analyzing and predicting stochastic timing performance of CPSoS. The method integrates design patterns for improved model design and development, alongside Bayesian calibration and statistical validation techniques to further enhance trustworthiness of the models. Although many individual techniques, formalisms and tools are available, our contribution lies in proposing a systematic method for achieving trustworthiness within the context of hybrid performance modeling and simulation. We concretize the method for cloud-based cyber-physical systems. Through two case studies, we show the efficacy of the proposed method for accurately predicting end-to-end latency of offloading imaging tasks to the cloud. The first case study showcases the application of design patterns in a practical scenario involving a cloud-based healthcare system-a collaboration with an industry partner in healthcare systems. The second case study has been implemented as a prototype to show the use of calibration and validation techniques with operational data in a laboratory context using an image-reconstruction application.
引用
收藏
页码:92733 / 92752
页数:20
相关论文
共 50 条
  • [1] Towards Trustworthy Smart Cyber-Physical Systems
    David, M. W.
    Yerkes, C. R.
    Simmons, M. E.
    Franceschini, W.
    INFORMATION AND COMMUNICATIONS SECURITY, ICICS 2016, 2016, 9977 : 392 - 399
  • [2] A Trustworthy Communication Hub for Cyber-Physical Systems
    Latvakoski, Juhani
    Heikkinen, Jouni
    FUTURE INTERNET, 2019, 11 (10):
  • [3] Trustworthy Inter-connected Cyber-Physical Systems
    Hankin, Chris
    Barrere, Martin
    CRITICAL INFORMATION INFRASTRUCTURES SECURITY, CRITIS 2020, 2020, 12332 : 3 - 13
  • [4] Cyber-physical systems integration of building information models and the physical construction
    Akanmu, Abiola
    Anumba, Chimay J.
    ENGINEERING CONSTRUCTION AND ARCHITECTURAL MANAGEMENT, 2015, 22 (05) : 516 - 535
  • [5] Trustworthy Delegation Toward Securing Mobile Healthcare Cyber-Physical Systems
    Hahn, Changhee
    Kwon, Hyunsoo
    Hur, Junbeom
    IEEE INTERNET OF THINGS JOURNAL, 2019, 6 (04) : 6301 - 6309
  • [6] The Trustworthy Autonomic Interface Guardian Architecture for Cyber-Physical Systems
    Lyn, Kevin G.
    Lerner, Lee W.
    McCarty, Christopher J.
    Patterson, Cameron D.
    CIT/IUCC/DASC/PICOM 2015 IEEE INTERNATIONAL CONFERENCE ON COMPUTER AND INFORMATION TECHNOLOGY - UBIQUITOUS COMPUTING AND COMMUNICATIONS - DEPENDABLE, AUTONOMIC AND SECURE COMPUTING - PERVASIVE INTELLIGENCE AND COMPUTING, 2015, : 1804 - 1811
  • [7] Ontology Building for Cyber-Physical Systems: Application in the Manufacturing Domain
    Hildebrandt, Constantin
    Koecher, Aljosha
    Kuestner, Christof
    Lopez-Enriquez, Carlos-Manuel
    Mueller, Andreas W.
    Caesar, Birte
    Gundlach, Claas Steffen
    Fay, Alexander
    IEEE TRANSACTIONS ON AUTOMATION SCIENCE AND ENGINEERING, 2020, 17 (03) : 1266 - 1282
  • [8] A Hybrid Approach to Cyber-Physical Systems Verification
    Kumar, Pratyush
    Goswami, Dip
    Chakraborty, Samarjit
    Annaswamy, Anuradha
    Lampka, Kai
    Thiele, Lothar
    2012 49TH ACM/EDAC/IEEE DESIGN AUTOMATION CONFERENCE (DAC), 2012, : 688 - 696
  • [9] Hybrid systems tools for compiling controllers for cyber-physical systems
    Patrick Martin
    Magnus B. Egerstedt
    Discrete Event Dynamic Systems, 2012, 22 : 101 - 119
  • [10] Hybrid systems tools for compiling controllers for cyber-physical systems
    Martin, Patrick
    Egerstedt, Magnus B.
    DISCRETE EVENT DYNAMIC SYSTEMS-THEORY AND APPLICATIONS, 2012, 22 (01): : 101 - 119