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    1. Data och IT
    2. Systemvetenskap och AI

    Fractional-Order Design

    Devices, Circuits, and Systems

    AvAhmed G. Radwan,Farooq Ahmad Khanday

    Häftad, Engelska, 2021

    Del i serien Emerging Methodologies and Applications in Modelling, Identification and Control

    1 958 kr

    Beställningsvara. Skickas inom 10-15 vardagar. Fri frakt över 249 kr.

    Beskrivning

    Fractional-Order Design: Devices, Circuits, and Systems introduces applications from the design perspective so that the reader can learn about, and get ready to, design these applications. The book also includes the different techniques employed to comprehensively and straightforwardly design fractional-order systems/devices. Furthermore, a lot of mathematics is available in the literature for solving the fractional-order calculus for system application. However, a small portion is employed in the design of fractional-order systems. This book introduces the mathematics that has been employed explicitly for fractional-order systems.

    Students and scholars who wants to quickly understand the field of fractional-order systems and contribute to its different domains and applications will find this book a welcomed resource.



    • Presents a simple and comprehensive understanding of the field of fractional-order systems
    • Offers practical knowledge on the design of fractional-order systems for different applications
    • Exposes users to the possible new areas of applications of fractional-order systems

    Produktinformation

    • Utgivningsdatum:2021-10-27
    • Mått:152 x 229 x 28 mm
    • Vikt:840 g
    • Format:Häftad
    • Språk:Engelska
    • Serie:Emerging Methodologies and Applications in Modelling, Identification and Control
    • Antal sidor:548
    • Förlag:Elsevier Science
    • ISBN:9780323900904

    Utforska kategorier

    • Systemvetenskap och AI inom Data och IT
    • Maskinteknik och material inom Naturvetenskap och teknik

    Mer om författaren

    Ahmed G. Radwan (Senior member IEEE) is a Professor in the Engineering Mathematics Department, Cairo University, Egypt, and Acting Director of Research, Nile University, Egypt. He was the Former Director of Nanoelectronics Integrated Systems Center (NISC), Nile University, Egypt. Dr. Radwan was a visiting Professor in Computational Electromagnetic Lab (CEL), Electrical and Computer Engineering department (ECE), McMaster University, Canada in the interval [2008 – 2009], then he was selected to be a part of the first foundation research teams to join KAUST (King Abdullah University of Science and Technology) during the interval [2009 -2011]. His research interests include interdisciplinary concepts between mathematics and engineering applications such as fractional-order systems, bifurcation, chaos, memristor, and encryption. Dr. Radwan received the Cairo University excellence award for research in the engineering sciences in 2016, the Abdul Hameed Shoman Award for Arab Researchers in basic sciences in 2015, the state achievements award for research in mathematical sciences in 2012, the Cairo University achievements award for research in the engineering sciences in 2013, and the best researcher awards Nile University 2015 & 2016. Dr. Radwan has more than 200 papers, h-index 30, and more than 3000 citations based on Scopus database. He is the Co-inventor of Six US patents, author/Co-author of Seven international books as well as 15-chapter books in the highly ranked publishers such as Elsevier and Springer. He received many research grants as Principle Investigator (PI), CO-PI, or Consultant from different national/international organizations. He was Invited to be Lead/Guest Editors in Journal of Circuits, Systems and Signal Processing, and Journal of Mathematical Problems in Engineering, and Complexity. He organized many special sessions, serve as TPC (Technical Program Committee) in several international conferences. He was selected as a member of the first scientific council of Egyptian Young Academy of Sciences (EYAS) as well as in the first scientific council of the Egyptian Center for the Advancement of Science, Technology, and Innovation (ECASTI) to empower and encourage Egyptian young scientists in science and technology and build knowledge-based societies. Dr. Farooq Ahmad Khanday received his M.Sc. (Gold Medallist), M. Phil. and Ph.D. Degrees from the University of Kashmir. He served as Assistant Professor at University of Kashmir, Department of Electronics and Instrumentation Technology, followed by time at the Department of Higher Education J&K, the Department of Electronics and Vocational Studies, Islamia College of Science and Commerce Srinagar. He is currently associate professor in the Department of Electronics and Instrumentation Technology, University of Kashmir.Dr Khanday’s research interests include neuromorphic computing, fractional-order circuits, low-power circuit design, nano-electronics and stochastic computing. He is author or co-author of more than 150 publications, including eleven book chapters while also editing the PLOS ONE journal. He authored the book, “Nanoscale Electronic Devices and Their Applications” and edited “Neuromorphic Computing” and “Fractional-order Systems” for Elsevier. In addition, he has one patent on “Portable Microcontroller-Based Impedance Meter for Biological Tissue Analysis (563600)”. Dr Khanday was the Management Committee Observer of the COST Action CA15225 for the European Union (Fractional-order systems - analysis, synthesis and their importance for future design) and INSA Visiting Scientist Fellow 2020- 21.Lobna A. Said is a full-time Assistant Professor at the Faculty of Engineering and Applied Science and the Nano-Electronics Integrated System Research Center (NISC), Nile University (NU). She received the B.Sc. , the M.Sc., and the Ph.D. degrees in electronics and communications from Cairo University, Egypt, in 2007, 2011, and 2016, respectively. She has H-index 15, and more than 660 citations based on the Scopus database. She has over 85 publications distributed between high-impact journals, conferences, and book chapters. She was involved in many research grants as a Senior Researcher, or as a Co-PI from different national organizations. Her research interests are interdisciplinary, including system modeling, control techniques, optimization techniques, analog and digital integrated circuits, fractional-order circuits and systems, non-linear analysis, and chaos theory. She has received the Recognized Reviewer Award from many international journals. She is the Vice-Chair of research activities at the IEEE Computational Intelligence Egypt Chapter. She has received the Excellence Award from the Center for the Development of Higher education and Research in 2016. She is the Winner of Dr. Hazem Ezzat Prize for the outstanding researcher, NU 2019. She is one of the top 10 researchers at NU for the year 2018-2019. Recently, she was selected as a member of the Egyptian Young Academy of Sciences (EYAS) to empower and encourage young Egyptian scientists in science and technology and build knowledge-based societies. In 2020, she was selected to be an affiliate member of the African Academy of Science (AAS). She is in the technical program committee for many International Conferences.

    Innehållsförteckning

    • 1. MOS realizations of fractional-order elements2. A chaotic system with equilibria located on a line and its fractional-order form3. Approximation of fractional-order elements for sinusoidal oscillators4. Synchronization between fractional chaotic maps with different dimensions5. Stabilization of different dimensional fractional chaotic maps6. Observability of speed DC motor with self-tuning fuzzy-fractional-order controller7. Chaos control and fractional inverse matrix projective difference synchronization on parallel chaotic systems with application8. Aggregation of chaotic signal with proportional fractional derivative execution in communication and circuit simulation9. CNT-based fractors in all four quadrants: design, simulation, and practical applications10. Fractional-order systems in biological applications: estimating causal relations in a system with inner connectivity using fractional moments11. Unitary fractional-order derivative operators for quantum computation12. Analysis and realization of fractional step filters of order (1 + α)13. Fractional-order identification and synthesis of equivalent circuit for electrochemical system based on pulse voltammetry14. Higher-order fractional elements: realizations and applications15. Fabrication of polymer nanocomposite-based fractional-order capacitor: a guide16. Design guidelines for fabrication of MWCNT-polymer based solid-state fractional capacitor