Incorporating multicomputer hardware-software design concepts into the undergraduate curriculum through physical implementation

被引:0
|
作者
CruzRivera, JL
机构
关键词
D O I
暂无
中图分类号
G40 [教育学];
学科分类号
040101 ; 120403 ;
摘要
This paper presents a set of activities that have been undertaken within the Electrical and Computer Engineering Department at the University of Puerto Rico-Mayaguez in order to aid in the development of an undergraduate parallel processing academic and research environment. Specifically, a plan of action that allows upper-level ECE students to collaborate in the construction of parallel processing systems using low-cost commercially available FPGA hardware and software prototyping tools is presented. The activities, which require minimal infrastructure, are designed to take the students through a complete system design cycle, from specifications to hardware/software prototype integration and are also geared rewards the facilitation of the development of course materials and/or lab modules for the electronics' sequence of core and elective courses offered by our electrical and computer engineering department. These activities include the design and implementation of the hardware and software interfaces necessary to construct a fully functional microcontroller-based processing node for multiprocessing applications.
引用
收藏
页码:1146 / 1148
页数:3
相关论文
共 50 条
  • [31] An iterative algorithm for hardware-software partitioning, hardware design space exploration and scheduling
    Chatha, KS
    Vemuri, R
    DESIGN AUTOMATION FOR EMBEDDED SYSTEMS, 2000, 5 (3-4) : 281 - 293
  • [32] Hands-on Undergraduate Real-Time Systems and Hardware-Software Development
    Yusof, Yusman
    Abu Hassan, M. F.
    Nadzri, Nur Zulaikhah
    2012 IEEE CONFERENCE ON OPEN SYSTEMS (ICOS 2012), 2012, : 21 - 26
  • [33] Developing undergraduate FPGA curriculum using altium software and hardware
    Mayer, Erik A.
    Computers in Education Journal, 2013, 23 (01): : 35 - 42
  • [34] An Embedded Implementation of Discrete Zolotarev Transform Using Hardware-Software Codesign
    Kubak, Jan
    Stastny, Jakub
    Sovka, Pavel
    RADIOENGINEERING, 2021, 30 (02) : 364 - 371
  • [35] Hardware-software codesign and parallel implementation of a Golomb ruler derivation engine
    Sotiriades, E
    Dollas, A
    Athanas, P
    2000 IEEE SYMPOSIUM ON FIELD-PROGRAMMABLE CUSTOM COMPUTING MACHINES, PROCEEDINGS, 2000, : 227 - 235
  • [36] Integrated Hardware-Software Implementation of Silicon Photonic Interconnected Computing System
    Bergman, Keren
    2015 CONFERENCE ON LASERS AND ELECTRO-OPTICS (CLEO), 2015,
  • [37] A Mixed Hardware-Software Implementation of a High-Performance PMSM Controller
    Milik, Adam
    Rudnicki, Tomasz
    ELECTRONICS, 2023, 12 (02)
  • [38] Hardware-software co-design of a fingerprint matcher on card
    Fons, Mariano
    Fons, Francisco
    Canto, Enrique
    Lopez, Mariano
    2006 IEEE INTERNATIONAL CONFERENCE ON ELECTRO/INFORMATION TECHNOLOGY, 2006, : 113 - 118
  • [39] Hardware-software co-design of an iris recognition algorithm
    Lopez, M.
    Daugman, J.
    Canto, E.
    IET INFORMATION SECURITY, 2011, 5 (01) : 60 - 68
  • [40] Component-based hardware-software co-design
    Arató, N
    Mann, ZA
    Orbán, A
    ORGANIC AND PERVASIVE COMPUTING - ARCS 2004, 2004, 2981 : 169 - 183