Dew Computing Architecture for Cyber-Physical Systems and IoT

Internet of Things - Tập 11 - Trang 100186 - 2020
Marjan Gushev1
1University Sts Cyril and Methodius, Faculty of Computer Science and Engineering, Rugjer Boshkovikj 16, PO BOX 393 1000 Skopje, North Macedonia

Tài liệu tham khảo

E. A. Lee, Cyber physical systems: Design challenges, IEEE, 2008. 2008 11th IEEE International Symposium on Object and Component-Oriented Real-Time Distributed Computing (ISORC), 363–369. J. Shi, J. Wan, H. Yan, H. Suo, A survey of cyber-physical systems, IEEE, 2011. 2011 international conference on wireless communications and signal processing (WCSP), 1–6. Lee, 2016 Baheti, 2011, Cyber-physical systems, The impact of control technology, 12, 161 Zhuge, 2005, Future interconnection environment, Computer, 38, 27, 10.1109/MC.2005.142 Gunes, 2014, A survey on concepts, applications, and challenges in cyber-physical systems, KSII Transactions on Internet & Information Systems, 8 Gubbi, 2013, Internet of things (iot): A vision, architectural elements, and future directions, Future generation computer systems, 29, 1645, 10.1016/j.future.2013.01.010 Patel, 2016, Internet of things-iot: definition, characteristics, architecture, enabling technologies, application & future challenges, International journal of engineering science and computing, 6 Engell, 2014, Cyber-physical systems of systems–definition and core research and development areas, CPSoS Dillon, 2011, Web-of-things framework for cyber–physical systems, Concurrency and Computation: Practice and Experience, 23, 905, 10.1002/cpe.1629 Lu, 2017, Industry 4.0: A survey on technologies, applications and open research issues, Journal of Industrial Information Integration, 6, 1, 10.1016/j.jii.2017.04.005 Zhou, 2017, Post-cloud computing paradigms: a survey and comparison, Tsinghua Science and Technology, 22, 714, 10.23919/TST.2017.8195353 Satyanarayanan, 2015, Edge analytics in the internet of things, IEEE Pervasive Computing, 14, 24, 10.1109/MPRV.2015.32 Rabinovich, 2004, Computing on the edge: A platform for replicating internet applications, 57 F. Bonomi, R. Milito, J. Zhu, S. Addepalli, Fog computing and its role in the internet of things, ACM, 2012. Proceedings of the first edition of the MCC workshop on Mobile cloud computing, 13–16. Satyanarayanan, 2009, The case for vm-based cloudlets in mobile computing, IEEE pervasive Computing, 10.1109/MPRV.2009.82 Bahtovski, 2014, Cloudlet challenges, Procedia Engineering, 69, 704, 10.1016/j.proeng.2014.03.045 Skala, 2015, Scalable distributed computing hierarchy: Cloud, fog and dew computing, Open Journal of Cloud Computing (OJCC), 2, 16 Wang, 2016, Definition and categorization of dew computing, Open Journal of Cloud Computing (OJCC), 3, 1 R. Rajkumar, I. Lee, L. Sha, J. Stankovic, Cyber-physical systems: the next computing revolution, IEEE, 2010. Design Automation Conference, 731–736. Kim, 2012, Cyber–physical systems: A perspective at the centennial, Proceedings of the IEEE, 100, 1287, 10.1109/JPROC.2012.2189792 Alur, 2015 Liu, 2017, Review on cyber-physical systems, IEEE/CAA Journal of Automatica Sinica, 4, 27, 10.1109/JAS.2017.7510349 Maier, 1998, Architecting principles for systems-of-systems, Systems Engineering: The Journal of the International Council on Systems Engineering, 1, 267, 10.1002/(SICI)1520-6858(1998)1:4<267::AID-SYS3>3.0.CO;2-D Lee, 2015, A cyber-physical systems architecture for industry 4.0-based manufacturing systems, Manufacturing letters, 3, 18, 10.1016/j.mfglet.2014.12.001 Wan, 2011, Advances in cyber-physical systems research, KSII Transactions on Internet & Information Systems, 5, 10.3837/tiis.2011.11.001 Xu, 2019, Big data for cyber physical systems in industry 4.0: A survey, Enterprise Information Systems, 13, 148, 10.1080/17517575.2018.1442934 Nastic, 2017, A serverless real-time data analytics platform for edge computing, IEEE Internet Computing, 21, 64, 10.1109/MIC.2017.2911430 Gusev, 2019, A deviceless edge computing approach for streaming iot applications, IEEE Internet Computing, 23, 37, 10.1109/MIC.2019.2892219 Tan, 2008, A prototype architecture for cyber-physical systems, ACM Sigbed Review, 5, 26, 10.1145/1366283.1366309 Dastjerdi, 2016, Fog computing: Helping the internet of things realize its potential, Computer, 49, 112, 10.1109/MC.2016.245 Pan, 2017, Future edge cloud and edge computing for internet of things applications, IEEE Internet of Things Journal, 5, 439, 10.1109/JIOT.2017.2767608 Wang, 2017, A cloud-edge computing framework for cyber-physical-social services, IEEE Communications Magazine, 55, 80, 10.1109/MCOM.2017.1700360 Garcia Lopez, 2015, Edge-centric computing: Vision and challenges, ACM SIGCOMM Computer Communication Review, 45, 37, 10.1145/2831347.2831354 M. Yannuzzi, R. Milito, R. Serral-Gracià, D. Montero, M. Nemirovsky, Key ingredients in an iot recipe: Fog computing, cloud computing, and more fog computing, IEEE, 2014. 2014 IEEE 19th International Workshop on Computer Aided Modeling and Design of Communication Links and Networks (CAMAD), 325–329. Ray, 2017, An introduction to dew computing: Definition, concept and implications, IEEE Access, 6, 723, 10.1109/ACCESS.2017.2775042 Beregi, 2019, A novel fluid architecture for cyber-physical production systems, International Journal of Computer Integrated Manufacturing, 32, 340, 10.1080/0951192X.2019.1571239 Wang, 2015, Cloud-dew architecture, International Journal of Cloud Computing, 4, 199, 10.1504/IJCC.2015.071717 Gusev, 2018, Going back to the rootsâthe evolution of edge computing, an iot perspective, IEEE Internet Computing, 22, 5, 10.1109/MIC.2018.022021657 M. Gusev, A dew computing solution for iot streaming devices, IEEE, 2017. 2017 40th International Convention on Information and Communication Technology, Electronics and Microelectronics (MIPRO), 387–392. Want, 2015, Enabling the internet of things, Computer, 28, 10.1109/MC.2015.12 M. Frincu, Architecting a hybrid cross layer dew-fog-cloud stack for future data-driven cyber-physical systems, IEEE, 2017. 2017 40th International Convention on Information and Communication Technology, Electronics and Microelectronics (MIPRO), 399–403. Mahmud, 2018, Fog computing: A taxonomy, survey and future directions, 103, 10.1007/978-981-10-5861-5_5 I. Stojmenovic, S. Wen, The fog computing paradigm: Scenarios and security issues, IEEE, 2014. 2014 Federated Conference on Computer Science and Information Systems, 1–8. Satyanarayanan, 2017, The emergence of edge computing, Computer, 50, 30, 10.1109/MC.2017.9 Klas, 2015, Fog computing and mobile edge cloud gain momentum open fog consortium, etsi mec and cloudlets, Google Scholar Ai, 2018, Edge computing technologies for internet of things: a primer, Digital Communications and Networks, 4, 77, 10.1016/j.dcan.2017.07.001 Ren, 2017, Serving at the edge: A scalable iot architecture based on transparent computing, IEEE Network, 31, 96, 10.1109/MNET.2017.1700030 Hu, 2017, Survey on fog computing: architecture, key technologies, applications and open issues, Journal of network and computer applications, 98, 27, 10.1016/j.jnca.2017.09.002 G. Cristescu, R. Dobrescu, O. Chenaru, G. Florea, Dew: A new edge computing component for distributed dynamic networks, IEEE, 2019. 2019 22nd International Conference on Control Systems and Computer Science (CSCS), 547–551.