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Complex problems solution as a service based on predictive optimization and tasks orchestration in smart citiesoa mark
  • Ahmad, Shabir ;
  • Ali, Jehad ;
  • Jamil, Faisal ;
  • Whangbo, Taeg Keun ;
  • Kim, Do Hyeun
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dc.contributor.authorAhmad, Shabir-
dc.contributor.authorAli, Jehad-
dc.contributor.authorJamil, Faisal-
dc.contributor.authorWhangbo, Taeg Keun-
dc.contributor.authorKim, Do Hyeun-
dc.date.issued2021-01-01-
dc.identifier.urihttps://dspace.ajou.ac.kr/dev/handle/2018.oak/32077-
dc.description.abstractSmart cities have different contradicting goals having no apparent solution. The selection of the appropriate solution, which is considered the best compromise among the candidates, is known as complex problem-solving. Smart city administrators face different problems of complex nature, such as optimal energy trading in microgrids and optimal comfort index in smart homes, to mention a few. This paper proposes a novel architecture to offer complex problem solutions as a service (CPSaaS) based on predictive model optimization and optimal task orchestration to offer solutions to different problems in a smart city. Predictive model optimization uses a machine learning module and optimization objective to compute the given problem’s solutions. The task orchestration module helps decompose the complex problem in small tasks and deploy them on real-world physical sensors and actuators. The proposed architecture is hierarchical and modular, making it robust against faults and easy to maintain. The proposed architecture’s evaluation results highlight its strengths in fault tolerance, accuracy, and processing speed.-
dc.description.sponsorshipFunding Statement: This research was supported by Energy Cloud R&D Program through the National Research Foundation of Korea (NRF) funded by the Ministry of Science, ICT (2019M3F2A1073387), and this research was supported by Basic Science Research Program through the National Research Foundation of Korea (NRF) funded by the Ministry of Education (2018R1D1A1A09082919), and this research was supported by Institute for Information & communications Technology Planning & Evaluation (IITP) grant funded by the Korea government (MSIT) (No. 2018-0-01456, AutoMaTa: Autonomous Management framework based on artificial intelligent Technology for adaptive and disposable IoT). Any correspondence related to this paper should be addressed to Dohyeun Kim.-
dc.language.isoeng-
dc.publisherTech Science Press-
dc.subject.meshComplex problem solving-
dc.subject.meshComplex problems-
dc.subject.meshEvaluation results-
dc.subject.meshMachine learning module-
dc.subject.meshNovel architecture-
dc.subject.meshPhysical sensors-
dc.subject.meshPredictive modeling-
dc.subject.meshProposed architectures-
dc.titleComplex problems solution as a service based on predictive optimization and tasks orchestration in smart cities-
dc.typeArticle-
dc.citation.endPage1288-
dc.citation.startPage1271-
dc.citation.titleComputers, Materials and Continua-
dc.citation.volume69-
dc.identifier.bibliographicCitationComputers, Materials and Continua, Vol.69, pp.1271-1288-
dc.identifier.doi10.32604/cmc.2021.017773-
dc.identifier.scopusid2-s2.0-85107743541-
dc.identifier.urlhttps://www.techscience.com/cmc/v69n1/42765-
dc.subject.keywordArtificial cognition-
dc.subject.keywordComplex problem solving-
dc.subject.keywordEmbedded IoT systems-
dc.subject.keywordInternet of things-
dc.subject.keywordPredictive optimization-
dc.subject.keywordTask modeling-
dc.subject.keywordTask orchestration-
dc.description.isoatrue-
dc.subject.subareaBiomaterials-
dc.subject.subareaModeling and Simulation-
dc.subject.subareaMechanics of Materials-
dc.subject.subareaComputer Science Applications-
dc.subject.subareaElectrical and Electronic Engineering-
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