Last Mile, April 18 || ADVCOMP 2014 || August 24 - 28, 2014 - Rome, Italy

Cristina Pascual<[email protected]> Thu, 3 Apr 2014 22:26:42 +0200
Newsgroups gmane.comp.video.xine.codec.devel
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INVITATION:
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 Please consider to contribute to and/or forward to the appropriate group=
s the following opportunity to submit and publish original scientific res=
ults to ADVCOMP 2014.
 The submission deadline is April 18, 2014.
 Authors of selected papers will be invited to submit extended article ve=
rsions to one of the IARIA Journals: http://www.iariajournals.org
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=3D=3D=3D=3D=3D=3D=3D=3D=3D=3D=3D=3D=3D=3D ADVCOMP 2014 | Call for Papers=
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CALL FOR PAPERS, TUTORIALS, PANELS
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ADVCOMP 2014, The Eighth International Conference on Advanced Engineering=
 Computing and Applications in Sciences
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August 24 - 28, 2014 - Rome, Italy
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Submission page: http://www.iaria.org/conferences2014/SubmitADVCOMP14.htm=
l
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General page: http://www.iaria.org/conferences2014/ADVCOMP14.html
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Call for Papers: http://www.iaria.org/conferences2014/CfPADVCOMP14.html
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Contributions:
 - regular papers
 - short papers (work in progress)
 - posters
 - ideas
 - presentations
 - demos
 - doctoral forum submissions
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Proposals for:
 - symposia
 - workshops
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Submission deadline: April 18, 2014
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Sponsored by IARIA, www.iaria.org
 Extended versions of selected papers will be published in IARIA Journals=
:  http://www.iariajournals.org
 Print proceedings will be available via Curran Associates, Inc.: http://=
www.proceedings.com/9769.html
 Articles will be archived in the free access ThinkMind Digital Library: =
http://www.thinkmind.org
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The topics suggested by the conference can be discussed in term of concep=
ts, state of the art, research, standards, implementations, running exper=
iments, applications, and industrial case studies. Authors are invited to=
 submit complete unpublished papers, which are not under review in any ot=
her conference or journal in the following, but not limited to, topic are=
as.
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All tracks are open to both research and industry contributions, in terms=
 of Regular papers, Posters, Work in progress, Technical/marketing/busine=
ss presentations, Demos, Tutorials, and Panels.
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Before submission, please check and conform with the Editorial rules: htt=
p://www.iaria.org/editorialrules.html
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ADVCOMP 2014 Topics (topics and submission details: see CfP on the site)
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Advances on computing theories
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    Finite-state machines; Petri nets /stochastic/colored/probabilistic/e=
tc; Genetic algorithms; Machine learning theory; Prediction theory; Bayes=
ian theory /statistics/filtering/estimation/reasoning/rating/etc; Markov =
chains/process/model/etc; Graphs theories
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Advances in computation methods
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    Hybrid computational methods; Advanced numerical algorithms; Differen=
tial calculus; Matrix perturbation theory; Rare matrices; Fractals & supe=
r-fractal algorithms; Random graph dynamics; Multi-dimensional harmonic e=
stimation
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Computational logics
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    Knowledge-based systems and automated reasoning; Logical issues in kn=
owledge representation /non-monotonic reasoning/belief; Specification and=
 verification of programs and systems; Applications of logic in hardware =
and VLSI; Natural language, concurrent computation, planning; Deduction a=
nd reasoning; Logic of computation; Dempster-Shafer theory; Fuzzy theory/=
computation/logic/etc
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Advances on computing mechanisms
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    Clustering large and high dimensional data; Data fusion and aggregati=
on; Biological sequence analysis; Biomecatronics mechanisms; Biologically=
 inspired mechanisms; System theory and control mechanisms; Multi-objecti=
ve evolutionary algorithms; Constraint-based algorithms; Ontology-based r=
easoning; Topology and structure patterns; Geometrical pattern similarity=
; Strong and weak symmetry; Distortion in coordination mechanisms
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Computing techniques
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    Distributed computing; Parallel computing; Grid computing; Autonomic =
computing; Cloud computing; Development of numerical and scientific softw=
are-based systems; Pattern-based computing; Finite-element method computa=
tion; Elastic models; Optimization techniques; Simulation techniques; Str=
eam-based computing
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Resource intensive applications and services (RIAS)
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    Fundamentals on RIAS; Basic algorithms for RIAS; Communications inten=
sive; Process intensive; Data-intensive computing; Operational intensive;=
 Cloud-computing intensiveness; User intensive; Technology intensive; Con=
trol intensive; Complex RIAS; Bioinformatics computation; Large scale ehe=
alth systems; Pharmaceutical/drug computation; Weather forecast computati=
on; Earthquake simulations; Geo-spatial simulations; Spatial programs; Re=
al-time manufacturing systems; Transportation systems; Avionic systems; E=
conomic/financial systems; Electric-power systems
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Computational geometry
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    Theoretical computational geometry; Applied computational geometry; D=
esign and analysis of geometric algorithms; Design and analysis of geomet=
ric algorithms and data structures; Discrete and combinatorial geometry a=
nd topology; Data structures (Voronoi Diagrams, Delaunay triangulations, =
etc.); Experimental evaluation of geometric algorithms and heuristics; Nu=
merical performance of geometric algorithms; Geometric computations in pa=
rallel and distributed environments; Geometric data structures for mesh g=
eneration; Geometric methods in computer graphics; Solid modeling; Space =
Partitioning; Special applications (animation of geometric algorithms, ma=
nufacturing, computer graphics and image processing, computer-aided geome=
try design, solid geometry)
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Interdisciplinary computing
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    Computational /physics, chemistry, biology/ algorithms; Graph-based m=
odeling and algorithms; Computational methods for /crystal, protein/ stru=
cture prediction; Computation for multi-material structure;  Modeling and=
 simulation of large deformations and strong shock waves; Computation in =
solid mechanics; Remote geo-sensing; Interdisciplinary computing in music=
 and arts
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Cloud computing
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    Hardware-as-a-service; Software-as-a-service [SaaS applicaitions]; Pl=
atform-as-service; On-demand computing models; Cloud Computing programmin=
g and application development; Scalability, discovery of services and dat=
a in Cloud computing infrastructures; Privacy, security, ownership and re=
liability issues; Performance and QoS; Dynamic resource provisioning; Pow=
er-efficiency and Cloud computing; Load balancing; Application streaming;=
 Cloud SLAs, business models and pricing policies; Custom platforms; Larg=
e-scale compute infrastructures; Managing applications in the clouds; Dat=
a centers; Process in the clouds; Content and service distribution in Clo=
ud computing infrastructures; Multiple applications can run on one comput=
er (virtualization a la VMWare); Grid computing (multiple computers can b=
e used to run one application); Cloud-computing vendor governance and reg=
ulatory compliance
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Grid Networks, Services and Applications
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    GRID theory, frameworks, methodologies, architecture, ontology; GRID =
infrastructure and technologies; GRID middleware; GRID protocols and netw=
orking; GRID computing, utility computing, autonomic computing, metacompu=
ting; Programmable GRID; Data GRID; Context ontology and management in GR=
IDs; Distributed decisions in GRID networks; GRID services and applicatio=
ns; Virtualization, modeling, and metadata in GRID; Resource management, =
scheduling, and scalability in GRID; GRID monitoring, control, and manage=
ment; Traffic and load balancing in GRID; User profiles and priorities in=
 GRID; Performance and security in GRID systems; Fault tolerance, resilie=
nce, survivability, robustness in GRID; QoS/SLA in GRID networks; GRID fo=
ra, standards, development, evolution; GRID case studies, validation test=
beds, prototypes, and lessons learned
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Computing in Virtualization-based environments
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    Principles of virtualization; Virtualization platforms; Thick and thi=
n clients; Data centers and nano-centers; Open virtualization format; Orc=
hestration of virtualization across data centers; Dynamic federation of c=
ompute capacity; Dynamic geo-balancing; Instant workload migration; Virtu=
alization-aware storage; Virtualization-aware networking; Virtualization =
embedded-software-based smart  mobile phones; Trusted platforms and embed=
ded supervisors for security; Virtualization management operations /disco=
very, configuration, provisioning, performance, etc.; Energy optimization=
 and saving for green datacenters; Virtualization supporting cloud comput=
ing; Applications as pre-packaged virtual machines; Licencing and support=
 policies
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Development of computing support
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    Computing platforms; Advanced scientific computing; Support for scien=
tific problem-solving; Support for distributed decisions; Agent-assisted =
workflow support; Middleware computation support; High performance comput=
ing; Problem solving environments; Computational science and education; N=
euronal networks
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Computing applications in science
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    Advanced computing in civil engineering; Advanced computing in physic=
s science; Advanced computing in chemistry science; Advanced computing in=
 mathematics; Advanced computing in operation research; Advanced computin=
g in economics; Advanced computing in electronics and electrical science;=
 Advanced computing on Earth science, geosciences and meteorology
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Complex computing in application domains
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    Computation genomic; Management of scientific data and knowledge; Adv=
anced computing in bioinformatics and biophysics; Advanced computing in m=
olecular systems and biological systems; Application of engineering metho=
ds to genetics; Medical computation and graphics; Advanced computing in s=
imulation systems; Advanced computing for statistics and optimization; Ad=
vanced computing in mechanics and quantum mechanics; Advanced computing f=
or geosciences and meteorology; Maps and geo-images building; Curve and s=
urface reconstruction; Financial computing and forecasting; Advanced comp=
uting in robotics and manufacturing; Advanced computing in power systems;=
 Environmental advanced computing
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---------------------------------
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Committee: http://www.iaria.org/conferences2014/ComADVCOMP14.html
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ADVCOMP Advisory Chairs
 Chih-Cheng Hung, Southern Polytechnic State University, USA
 Juha R=F6ning, Oulu University, Finland
 Sigeru Omatu, Osaka Institute of Technology, Japan
 Erich Schweighofer, University of Vienna, Austria
 Paul Humphreys, University of Ulster, UK
 Danny Krizanc, Wesleyan University, USA
 Ivan Rodero, Rutgers University - Piscataway, USA
 Ali Shawkat, CQ University of Australia - North Rockhampton, Australia
 George Spanoudakis, City University London, UK
 Vladimir Vlassov, KTH Royal Institute of Technology, Sweden
 Jerry Trahan, Louisiana State University, USA
 Dean Vucinic, Vrije Universiteit Brussel (VUB), Belgium
 Rudolf Berrendorf, Bonn-Rhein-Sieg University, Germany
 Wenbing Zhao, Cleveland State University, USA
 Camelia Mu=F1oz-Caro, Universidad de Castilla-La Mancha, Spain
 Laurent R=E9veill=E8re, Bordeaux Institute of Technology, France
 Ewa Grabska, Jagiellonian University - Krakow, Poland
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ADVCOMP Industry/Research Chairs
 Jorge Ejarque Artigas, Barcelona Supercomputing Center (BSC-CNS), Spain
 Helmut Reiser, Leibniz Supercomputing Centre (LRZ)-Garching, Germany
 H. Metin Aktulga, Lawrence Berkeley National Lab, USA
 Sameh Elnikety, Microsoft Research, USA
 Umar Farooq, Amazon.com - Seattle, USA
 Dmitry Fedosov, Forschungszentrum Juelich GmbH, Germany
 Alice Koniges, Lawrence Berkeley Laboratory/NERSC, USA
 Markus Kunde, German Aerospace Center & Helmholtz Association - Cologne,=
 Germany
 Peter M=FCller, IBM Zurich Research Laboratory- R=FCschlikon, Switzerlan=
d
 Simon Tsang, Applied Communication Sciences - Piscataway, USA
 Anna Schwanengel, Siemens AG, Germany
 Christoph Fuenfzig, Fraunhofer ITWM, Germany
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ADVCOMP Publicity Chairs
 Marie Lluberes, University of Puerto Rico at Mayag=FCez, USA
 Sascha Opletal, University of Stuttgart, Germany
 =C1lvaro Navas, Universidad Politecnica de Madrid, Spain
 Iwona Ryszka, Jagiellonian University - Krakow, Poland
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