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Heterogeneous Multicore Processor Technologies for Embedded Systems - Kasahara, Hironori

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    Brand new, In English, Fast shipping from London, UK; Tout neuf, en anglais, expédition rapide depuis Londres, Royaume-Uni;ria9781461402831_dbm

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        Présentation Heterogeneous Multicore Processor Technologies For Embedded Systems de Kasahara, Hironori Format Relié

         - Livre Littérature Générale

        Livre Littérature Générale - Kasahara, Hironori - 01/04/2012 - Relié - Langue : Anglais

        . .

      • Auteur(s) : Kasahara, Hironori - Nojiri, Tohru - Shikano, Hiroaki - Tawara, Yasuhiro - Idehara, Akio - Iwata, Kenichi - Noda, Hideyuki - Uchiyama, Kunio - Arakawa, Fumio
      • Editeur : Springer Us, New York, N.Y.
      • Langue : Anglais
      • Parution : 01/04/2012
      • Format : Moyen, de 350g à 1kg
      • Nombre de pages : 236
      • Expédition : 524
      • Dimensions : 24.1 x 16.0 x 1.8
      • ISBN : 9781461402831



      • Résumé :
        To satisfy the higher requirements of digitally converged embedded systems, this book describes heterogeneous multicore technology that uses various kinds of low-power embedded processor cores on a single chip. With this technology, heterogeneous parallelism can be implemented on an SoC, and greater flexibility and superior performance per watt can then be achieved. This book defines the heterogeneous multicore architecture and explains in detail several embedded processor cores including CPU cores and special-purpose processor cores that achieve highly arithmetic-level parallelism. The authors developed three multicore chips (called RP-1, RP-2, and RP-X) according to the defined architecture with the introduced processor cores. The chip implementations, software environments, and applications running on the chips are also explained in the book.Provides readers an overview and practical discussion of heterogeneous multicore technologies from both a hardware and softwarepoint of view; Discusses a new, high-performance and energy efficient approach to designing SoCs for digitally converged, embedded systems; Covers hardware issues such as architecture and chip implementation, as well as software issues such as compilers, operating systems, and application programs; Describes three chips developed according to the defined heterogeneous multicore architecture, including chip implementations, software environments, and working applications.

        Sommaire:
        Waidyasoriya Hasitha Muthumala is an Assistant Professor in the Graduate School of Information Sciences at Tohoku University. He received the BE degree in information engineering, the MS degree in information sciences, and the PhD degree in information sciences from Tohoku University, Japan, in 2006, 2008, and 2010 respectively. His research interests include reconfigurable computing, processor architectures for big-data applications, and high-level design methodology for VLSIs. He is a member of the IEEE. Masanori Hariyama is a Professor in the Graduate School of Information Sciences at Tohoku University. He received the BE degree in electronic engineering, the MS degree in information sciences, and the PhD degree in information sciences from Tohoku University, Japan, in 1992, 1994, and 1997, respectively. His research interests include real-world applications such as robotics and medical applications, big data applications such as bio-informatics, high-performance computing, VLSI computing for real-world application, high-level design methodology for VLSIs, and reconfigurable computing. He is a member of the IEEE. Kunio Uchiyama, technical advisor of Hitachi, Ltd., received his BS, MS, and PhD degrees from the Tokyo Institute of Technology. He has worked for the Central Research Laboratory of Hitachi since 1978 on design automation, mainframe computers, microprocessors, multicore processors, and their applications. He led R&D for the commercial SuperH microprocessors from the early 1990s, and he was awarded Japan's national Medal of Honor with the Purple Ribbon in 2004 for his contribution to the development of commercial high-performance, low-power microprocessors. He also led the New Energy and Industrial Technology Development Organization project in Japan on heterogeneous multicore technologies from 2007 to 2010. He was a guest editor of IEEE Micro in 2005 and served as a general chair of the Asia and South Pacific Design Automation Conference sponsored by IEEE CAS/CEDA in 2015. He has also been a vice chair of the IEEE Symposium on Low-Power and High-Speed Chips, sponsored by the IEEE Computer Society since 2008. He is a member of the IEEE Computer Society, Solid-State Circuits Society, and the Institute of Electronics, Information and Communication Engineers (IEICE). He is a Fellow of IEEE and IEICE, and is a member of Board of Governors of IEEE Computer Society....

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