Abbrevation
IC-ICTES
City
Amphawa
Country
Thailand
Deadline Paper
Start Date
End Date
Abstract

The 4th annual International Conference on Information and Communication Technology for Embedded Systems (IC&#8211;ICTES 2013) is to provide an international forum for researchers and industry practitioners&#046; Our goals are to share their new ideas, original research results and practical development experiences from all embedded system&#8211;related areas including ubiquitous computing, pervasive computing, embedded system design, development of new HW/SW&#8211;related theories and techniques in embedded systems, information and communication technology for supporting development of embedded systems, and information and communication technology used in embedded systems&#046;<br>Proceedings will be published by TAIST Tokyo Tech Program, National Science and Technology Development Agency (NSTDA)&#046; The first page should include the paper title, the names and the complete mailing addresses of all authors, and the e&#8211;mail address of the corresponding author&#046; Each paper should consist of up to 200&#8211;word abstract, up to 5 keywords&#046; No page number should be printed&#046; All the text, figures and reference must be between 4&#8211;6 double&#8211;column A4 pages with font size of 10 pts&#046; Authors MUST use IEEE manuscript submission guidelines for their initial submissions&#046; All papers must be submitted electronically in PDF format only, using the conference management tool&#046; The submitted papers must not be published or under consideration to be published elsewhere&#046;<br>Areas:<br>Embedded system architecture:<br>Multiprocessors, reconfigurable platforms, memory management support, communication, protocols, network&#8211;on&#8211;chip, real&#8211;time systems, embedded Microcontrollers<br>&#8211; Real&#8211;time systems:<br>All real&#8211;time related aspects such as software, distributed real&#8211;time systems, real&#8211;time kernels, real&#8211;time OS, task scheduling, multitasking design&#046;<br>&#8211; Embedded hardware support:<br>System&#8211;on&#8211;a&#8211;chip, DSPs, hardware specification, synthesis, modeling, simulation and analysis at all levels for low power, power&#8211;aware, testable, reliable, verifiable systems, performance modeling, validation, security issues, real&#8211;time behavior and safety critical systems&#046;<br>&#8211; Embedded software:<br>Compilers, assemblers and cross assemblers, programming, memory management, object&#8211;oriented aspects, virtual machines, scheduling, concurrent software for SoCs, distributed/resource aware OS, OS and middleware support&#046;<br>&#8211; Hardware/software co&#8211;design:<br>Methodologies, test and debug strategies, real&#8211;time systems, specification and modeling, design representation, synthesis, partitioning, estimation, design space exploration beyond traditional hardware/software boundary and algorithms&#046;<br>&#8211; Testing techniques:<br>All aspects of testing, including design&#8211;for&#8211;test, test synthesis, built&#8211;in self&#8211;test, embedded test, for embedded and system&#8211;on&#8211;a&#8211;chip systems&#046;<br>&#8211; Application&#8211;specific processors and devices:<br>Network processors, real&#8211;time processor, media and signal processors, application specific hardware accelerators, reconfigurable processors, low power embedded processors, bio/fluidic processors, Bluetooth, hand&#8211;held devices&#046;<br>&#8211; Industrial practices and benchmark suites:<br>System design, processor design, software, tools, case studies, trends, emerging technologies, experience maintaining benchmark suites, representation, interchange format, tools, copyrights, maintenance, metrics&#046;<br>&#8211; Embedded computing education:<br>Curriculum issues, teaching tools and methods&#046;<br>&#8211; Emerging new topics:<br>New challenges for next generation embedded computing systems, arising from new technologies (e&#046;g&#046;, nanotechnology), new applications (e&#046;g&#046;, pervasive or ubiquitous computing, embedded internet tools) and new principle (e&#046;g&#046;, embedded Engineering)&#046;<br>&#8211; Embedded System Applications:<br>All ranges of applications on embedded system, including speech processing, image processing, network computing, distributed computing, parallel computing and power conversion&#046;<br>