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DISCRETE EVENT DYNAMIC SYSTEMS-THEORY AND APPLICATIONS
基本信息
期刊名称 DISCRETE EVENT DYNAMIC SYSTEMS-THEORY AND APPLICATIONS
DISCRETE EVENT DYN S
期刊ISSN 0924-6703
期刊官方网站 http://link.springer.com/journal/10626
是否OA
出版商 Springer Netherlands
出版周期 Quarterly
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始发年份
年文章数 20
影响因子 1.4(2023)  scijournal影响因子  greensci影响因子
中科院SCI期刊分区
大类学科 小类学科 Top 综述
工程技术4区 AUTOMATION & CONTROL SYSTEMS 自动化与控制系统4区
MATHEMATICS, APPLIED 应用数学3区
OPERATIONS RESEARCH & MANAGEMENT SCIENCE 运筹学与管理科学4区
CiteScore
CiteScore排名 CiteScore SJR SNIP
学科 排名 百分位 1.92 0.815 1.538
Mathematics
Modelling and Simulation
83 / 259 67%
Engineering
Control and Systems Engineering
98 / 232 57%
Engineering
Electrical and Electronic Engineering
219 / 661 66%
补充信息
自引率 5.70%
H-index 40
SCI收录状况 Science Citation Index Expanded
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PubMed Central (PMC) http://www.ncbi.nlm.nih.gov/nlmcatalog?term=0924-6703%5BISSN%5D
投稿指南
期刊投稿网址 http://www.springer.com/journal/10626/submission
收稿范围

The research on discrete event dynamic systems (DEDSs) is multi-disciplinary in nature and its development has been dynamic. Examples of DEDSs include manufacturing plants, communication networks, computer systems, management information databases, logistics systems, command-control-communication systems, robotics, and other man-made operational systems. The state processes of such systems cannot be described by differential equations in general. The aim of this journal, Discrete Event Dynamic Systems: Theory and Applications, is to publish high-quality, peer-reviewed papers on the modeling and control of, and all other aspects related to, DEDSs. In particular, the journal publishes papers dealing with general theories and methodologies of DEDSs and their applications to any particular subject, including hybrid systems, as well as papers discussing practical problems from which some generally applicable DEDS theories or methodologies can be formulated; The scope of this journal is defined by its emphasis on discrete events and the dynamic nature of the systems and on their modeling, control and optimization.

  • Motivation. The Journal welcomes papers describing modeling and control problems with discrete events from all areas of engineering and sciences. The development of the theory of DEDS must continuously be motivated by concrete problems. The term "problem" is interpreted here in a broad sense to include not only problems from the real world but also well-defined problems arising from the methodological context. As a scientific and engineering discipline, DEDS must have both experimental and theoretical components. Carefully designed experiments accumulate evidence upon which a relevant theory can be built. Conversely, analytical and mathematical reasoning pinpoint further experiments to be conducted for theory validation and extension. The Journal shall encourage papers emphasizing this interplay between modeling, experimentation, and mathematical theory. It is not devoted exclusively to the mathematics of DEDS. The Journal aims at providing a science and engineering knowledge base for the studies of DEDS.
  • Dynamics of Discrete Event Systems. Recognition of the role of "dynamics" in DEDSs seems crucial for the eventual development of a fruitful theory. While the analysis of DEDS may proceed via many fronts, such as graph theory, queueing theory, simulation, automata, Petri nets, etc., concepts from system theory are expected to play a central role.
  • Control and Optimization. Most real-world DEDS are "man-made" to serve specific purposes, and, thus, they require control and/or management. Theoretical concepts, such as feedback, stability, and optimality, as well as implementation issues, such as software and languages, will all receive attention.
  • Interface with Operations Research and Computer Science. It is expected that the future developments of DEDS will continue to involve and be impacted by developments in OR and CS. This journal also welcomes papers dealing with issues at these intersections.

The journal welcomes submissions on all aspects of DEDS, including but not restricted to: theory and formal models (supervisory control, Petri-Nets, Min-Max-plus algebra, DEDS specification, or simulation formalisms), performance analysis, optimization, and optimal control (perturbation analysis, control synthesis, sample-path-based approaches, AI-based learning schemes, scalable solutions to large and complex systems), and applications (case studies and software engineering).


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编辑信息

Editor-in-Chief:

Stéphane Lafortune, The University of Michigan, USA

Founding and Advisory Editor:

Y. C. Ho, Harvard University, Cambridge, MA, USA

Department Editors: 

Christos G. Cassandras, Boston University, USA
Alessandro Giua, University of Cagliari, Italy 
Christoforos Hadjicostis, University of Cyprus, Cyprus
Karen Rudie, Queen's University, Canada 
Yorai Wardi, Georgia Institute of Technology, USA

Associate Editors:

Bart de Schutter, Delft University of Technology, Netherlands
Stefan Haar, INRIA and LSV, France
Jorge Julvez, University of Zaragoza, Spain
Manju Kamath, Oklahoma State University, USA
Jan Komenda, Czech Academy of Sciences, Czech Republic
Jianfeng Mao, Nanyang Technological University, Singapore
Thomas Moor, Friedrich-Alexander Universität Erlangen-Nürnberg, Germany 
Hervé Marchand, INRIA Rennes, France
Necmiye Ozay, University of Michigan, USA
Christos Panayiotou, University of Cyprus, Cyprus
Sophie Pinchinat, IRISA, Universitairé de Rennes 1, France
Joerg Raisch, Technische Universitaet Berlin, Germany
Spyros Reveliotis, Georgia Institute of Technology, USA
Klaus Werner Schmidt, Middle East Technical University, Turkey
Carla Seatzu, University of Cagliari, Italy
Rong Su, Nanyang Technological University, Singapore
Stavros Tripakis, Aalto University, Finland and University of California at Berkeley, USA
Li Xia, Tsinghua University, China 
Majid Zamani, University of Colorado Boulder, USA

Advisory Board:

X. R. Cao, Hong Kong University of Science & Technology, Hong Kong, China and Shanghai Jiaotong University, Shanghai, China
Yu-Chi Ho, Harvard University, USA
Jan van Schuppen, CWI, The Netherlands
Manuel Silva, Universidad de Zaragoza, Spain 
Pravin Varaiya, University of California at Berkeley, USA
Murray Wonham, University of Toronto, Canada
David D. Yao, Columbia University, USA


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