The IJAHUC publishes state-of-the-art international research in all areas of ad hoc and ubiquitous computing topics. The missions of IJAHUC are to improve international research on new and valuable ad hoc and ubiquitous computing technology by publishing high-quality articles, and to expose the reader to various methodologies and types of articles.
The International Journal of Adaptive Control and Signal Processing is concerned with the design, synthesis and application of estimators or controllers where adaptive features are needed to cope with uncertainties. The theory and application of adaptive systems and system identification are areas of interest. Contributions that bring together the expertise of the Control and Signal Processing communities, and explore the links between Adaptive Signal Processing and Control are encouraged. The area concerned with the design of estimators for uncertain systems that may not be strictly adaptive also falls within the scope of the journal. Signal processing that may not include adaptation but where the techniques could find application in adaptive systems, is also covered. The field of control and signal processing applications is a strong focus. This includes problems in the implementation of algorithms for real time signal processing and control. The topics of stability, convergence and numerical aspects of the algorithms are considered of importance. The related aspects of software engineering, expert systems, intelligent control and filtering algorithms are also of interest. Principal areas to be addressed include:
IJAIP fosters the exchange and dissemination of applications and case studies in the area of advanced intelligence paradigms among education and research professionals. The thrust of the journal is to publish papers dealing with the design, development, testing, implementation and management of advanced intelligent systems, and to provide guidelines in the development/management of these systems. IJAIP publishes archival articles and assessments of current trends, providing a medium for exchanging scientific research and technological achievements accomplished by the international community.
The International Journal of Advanced Manufacturing Technology bridges the gap between pure research journals and the more practical publications on factory automation systems. It therefore provides an outstanding forum for international papers covering applications-based research topics spanning the entire manufacturing spectrum.Published papers will continue to be to a high standard of excellence. This is ensured by subjecting each paper to a strict assessment procedure by members of the international editorial advisory board. The objective is firmly to establish that papers submitted do meet the requirements, especially in the context of proven applications-based research work. It is not acceptable that papers have a theoretical content alone.The journal covers the full range of advanced manufacturing technology. It therefore publishes papers on robotics; artificial intelligence, including speech technology, vision and tactile sensing; grippers; programmable controllers; lasers and other advanced processes
IJASM addresses agility, responsiveness, competitiveness and management of systems, defined as regularly interacting or interdependent groups of items or bodies forming a unified whole. IJASM highlights systems specified, designed, controlled, implemented, commissioned, operated, serviced or maintained with human and society requirements in mind. Examples include engineering assets, environment, building, transport, computers, supply chains, manufacturing, enterprises, and complex engineering products such as aircraft. IJASM acknowledges the need for better understanding of content/context/processes in systems and their interaction with the ever-changing environment.
IJASS is dedicated to publishing quality manuscripts on all aspects of systemic analysis, from both a practical and an academic viewpoint. It publishes contributions from practitioners and academics, as well as national and international policy- and standard-making bodies, and sets out to be the definitive international reference source for such information.
The International Journal of Approximate Reasoning is intended to serve as a forum for the treatment of imprecision and uncertainty in Artificial and Computational Intelligence, covering both the foundations of uncertainty theories, and the design of intelligent systems for scientific and engineering applications. It publishes high-quality research papers describing theoretical developments or innovative applications, as well as review articles on topics of general interest.Relevant topics include, but are not limited to, probabilistic reasoning and Bayesian networks, imprecise probabilities, random sets, belief functions (Dempster-Shafer theory), possibility theory, fuzzy sets, rough sets, decision theory, non-additive measures and integrals, qualitative reasoning about uncertainty, comparative probability orderings, game-theoretic probability, default reasoning, nonstandard logics, argumentation systems, inconsistency tolerant reasoning, elicitation techniques, philosophical foundations and psychological models of uncertain reasoning.Domains of application for uncertain reasoning systems include risk analysis and assessment, information retrieval and database design, information fusion, machine learning, data and web mining, computer vision, image and signal processing, intelligent data analysis, statistics, multi-agent systems, etc.The journal is affiliated with the North American Fuzzy Information Processing Society (NAFIPS), and collaborates with the Society for Imprecise Probability: Theories and Applications (SIPTA).Benefits to authorsWe also provide many author benefits, such as free PDFs, a liberal copyright policy, special discounts on Elsevier publications and much more. Please click here for more information on our author services.Please see our Guide for Authors for information on article submission. If you require any further information or help, please visit our support pages: http://support.elsevier.com
IJAIED publishes papers concerned with the application of AI to education. It aims to help the development of principles for the design of computer-based learning systems. Its premise is that such principles involve the modelling and representation of relevant aspects of knowledge, before implementation or during execution, and hence require the application of AI techniques and concepts. IJAIED has a very broad notion of the scope of AI and of a 'computer-based learning system', as indicated by the following list of topics considered to be within the scope of IJAIED: adaptive and intelligent multimedia and hypermedia systemsagent-based learning environmentsAIED and teacher educationarchitectures for AIED systemsassessment and testing of learning outcomesauthoring systems and shells for AIED systemsbayesian and statistical methodscase-based systemscognitive developmentcognitive models of problem-solvingcognitive tools for learningcomputer-assisted language learningcomputer-supported collaborative learningdialogue (argumentation, explanation, negotiation, etc.) discovery environments and microworldsdistributed learning environmentseducational roboticsembedded training systemsempirical studies to inform the design of learning environmentsenvironments to support the learning of programmingevaluation of AIED systemsformal models of components of AIED systemshelp and advice systemshuman factors and interface designinstructional design principlesinstructional planningintelligent agents on the internetintelligent courseware for computer-based trainingintelligent tutoring systemsknowledge and skill acquisitionknowledge representation for instructionmodelling metacognitive skills
IJAAC addresses the evolution and realisation of the theory, algorithms, techniques, schemes and tools for any kind of automation and control platforms including macro, micro and nano scale machineries and systems, with emphasis on implications that state-of-the-art technology choices have on both the feasibility and practicability of the intended applications. This perspective acknowledges the complexity of the automation, instrumentation and process control methods and delineates itself as an interface between the theory and practice existing in parallel over diverse spheres.