Abbrevation
DSD
City
Limassol
Country
Cyprus
Deadline Paper
Start Date
End Date
Abstract

The Euromicro Conference on Digital System Design (DSD) addresses all aspects of (embedded, pervasive and high&#8211;performance) digital and mixed hardware/software system engineering, down to microarchitectures, digital circuits and VLSI techniques&#046; It is a discussion forum for researchers and engineers from academia and industry working on state&#8211;of&#8211;the&#8211;art investigations, development and applications&#046;<br>It focuses on today&#8242;s and future challenges of advanced system architectures for embedded and high&#8211;performance HW/SW systems, application analysis and parallelization, design automation for all design levels, as well as, on modern implementation technologies from full custom in nanometer technology nodes, through FPGAs, to multi&#8211;core infrastructures&#046; It covers a multitude of highly relevant design aspects from system, hardware and embedded&#8211;software specification, modeling, analysis, synthesis and validation, through system adaptability, security, dependability and fault tolerance, to system energy consumption minimization and multi&#8211;objective optimization&#046;<br>Authors are kindly invited to submit their work according (but not limited) to the seven main topics of the conference main track&#046; In addition, eight Special Sessions (with their own coordinators and subprogram committees) do also welcome contributions in specific themes of particular interest&#046; All papers are reviewed following guidelines, quality requirements and thresholds that are common to all committees&#046;<br>MAIN TRACK TOPICS<br>T1: Advanced applications of embedded and cyber&#8211;physical systems<br>T2: Application analysis and parallelization for embedded and high&#8211;performance design<br>T3: Specification, modeling, verification and test for systems, hardware and embedded software<br>T4: Design and synthesis of systems, hardware and embedded software<br>T5: Systems&#8211;on&#8211;a&#8211;chip and networks&#8211;on&#8211;a&#8211;chip<br>T6: Programmable/re&#8211;configurable/adaptable architectures<br>T7: New issues introduced by emerging technologies<br>MAIN TOPICS DESCRIPTION<br>T1: Advanced applications of embedded and cyber&#8211;physical systems<br>Challenging and highly&#8211;demanding modern applications in (wireless) communication and networking; networked electronic media, multimedia and ambient intelligence; image and video processing; mobile systems; ubiquitous, wearable and implanted systems; military, space, avionics, measurement, control and automotive applications; wireless sensor network applications; surveillance and security; environmental, agriculture, urban, building, transportation, traffic, energy, hazard and disaster monitoring and control&#046;<br>T2: Application analysis and parallelization for embedded and high&#8211;performance hardware and software design<br>Application profiling, characterization and bottleneck detection; application restructuring for parallelism; application parallelization, information&#8211;flow analysis, scheduling and mapping for application&#8211;specific processor; MPSoC memory and communication architecture synthesis; HW/SW co&#8211;design and algorithm/architecture matching; combined hardware/software design space exploration and HW/SW system multi&#8211;objective optimization; parallelization, scheduling and mapping of applications for (heterogeneous) processor and MPSoC architectures; re&#8211;targetable (application&#8211;specific) compilation; architectural support for compilers/programming models; performance, energy consumption and other parametric analysis for HW/SW systems; analytical modeling and simulation tools; benchmark applications, workload and benchmarking for heterogeneous HW/SW systems; virtual and FPGA&#8211;based system prototyping&#046;<br>T3: Specification, modeling, analysis, verification and test for systems, hardware and embedded software<br>Modeling, simulation, design and verification languages; functional, structural and parametric specification and modeling; model&#8211;based design and verification; system, hardware, and embedded software analysis, simulation, emulation, prototyping, formal verification, design&#8211;for&#8211;test and testing at all design levels; dependability, safety, security and fault&#8211;tolerance issues&#046;<br>T4: Design and synthesis of systems, hardware and embedded software<br>Quality&#8211;driven design; model&#8211;, platform&#8211; and template&#8211;based design; design&#8211;space exploration; multi&#8211;objective optimization; system, processor, memory and communication architecture design; application scheduling and mapping to platforms; application&#8211;specific circuits and processors; arithmetic, signal, vector and graphics processing units; hardware accelerators; transaction level modeling and higher&#8211;level modeling; synthesis of asynchronous and dataflow systems; methods and CAD tools for analysis and synthesis of systems, architectures, embedded and high&#8211;performance software, and hardware at high&#8211;, logic&#8211; and physical level; methods and CAD tools for modeling, analysis and optimization of performance, energy consumption, reliability, robustness, safety, security, and testability&#046;<br>T5: Systems&#8211;on&#8211;a&#8211;chip and networks&#8211;on&#8211;a&#8211;chip<br>(Heterogeneous) multiprocessor systems on&#8211;a&#8211;chip (MPSoC), hardware multiprocessors and complex accelerators; generic system platforms and platform&#8211;based design; processor, memory and communication architectures; 3D MPSoCs and 3D NoCs; ASIP&#8211; and GPU&#8211;based platforms; software design and programming models for multicore platforms; IP design, standardization and reuse; parallelism exploitation and scalability techniques; virtual components; system of systems; compiler assisted MPSoCs; hardware support for embedded kernels; embedded software features; static, run&#8211;time and dynamic optimizations of embedded MPSoCs; benchmarks and benchmarking for MPSoCs; NoC architecture and quality of service; power dissipation and energy issues in SoCs and NoCs&#046;<br>T6: Programmable/reconfigurable/adaptable architectures<br>Design methodologies and tools for reconfigurable computing; run&#8211;time, partial and dynamic reconfiguration; fine&#8211;grained, mixed&#8211;grained and coarse&#8211;grained reconfigurable architectures; reconfigurable interconnections and NoCs; FPGAs; systems on reconfigurable chip; system FPGAs, structured ASICs; co&#8211;processors; processing arrays; programmable fabrics; adaptive computing devices, systems and software; adaptable ASIPs and ASIP&#8211;based MPSoCs; hardware accelerators; optimization of FPGA&#8211;based cores; shared resource management; novel models, design algorithms and tools for FPGAs and FPGA&#8211;based systems; rapid prototyping systems and platforms; adaptable wireless and mobile systems&#046;<br>T7: New issues introduced by emerging technologies chnologies<br>Important issues for system, circuit and embedded software design introduced by e&#046;g&#046; the nanometer CMOS and beyond CMOS technologies, 3D integration, optical and other new memory and communication technologies; new human&#8211;machine interfaces; neural&#8211; and bio&#8211;computation; (bio)sensor and sensor network technologies; pervasive and ubiquitous computing (Internet of Things); related design methods and EDA tools; Flexible Digital Radio&#8211;digital architecture design and methodologies concepts for multi&#8211;standard, multi&#8211;mode flexible radios&#046;<br>