Last Mile, December 20 || ICNS 2014 || April 20 - 24, 2014 - Chamonix, France

Cristina Pascual<[email protected]> Tue, 10 Dec 2013 21:05:00 +0100
Newsgroups gmane.comp.video.xine.codec.devel
Message-ID <[email protected]>
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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 ICNS 2014.
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The submission deadline is December 20, 2013.
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Authors of selected papers will be invited to submit extended article ver=
sions 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 ICNS 2014 | Call for Papers =3D=
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CALL FOR PAPERS, TUTORIALS, PANELS
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ICNS 2014, The Tenth International Conference on Networking and Services
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April 20 - 24, 2014 - Chamonix, France
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General page: http://www.iaria.org/conferences2014/ICNS14.html
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Call for Papers: http://www.iaria.org/conferences2014/CfPICNS14.html
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- regular papers
 - short papers (work in progress)
 - posters
 - ideas
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Submission page: http://www.iaria.org/conferences2014/SubmitICNS14.html
 Submission deadline: December 20, 2013
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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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Please note the Poster and Work in Progress options.
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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 comply with the editorial rules: http=
://www.iaria.org/editorialrules.html
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ICNS 2014 Topics (topics and submission details: see CfP on the site)
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ENCOT: Emerging Network Communications and Technologies
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Access and home networks; Ad hoc networks; Application-specific networks =
(e.g. SANs); Autonomic Networks; Delay-tolerant Networking; Distributed c=
ommunications systems & applications; Energy-efficient networking; High-s=
peed & optical networks; Mobile networking and systems; MPLS-VPN & IPSec-=
VPN networks; Multimedia and multicast communications; Networking Communi=
cation theory; Network modeling & simulation; Network monitoring techniqu=
es; Network security; Next Generation Networks (NGN); Overlay networks; P=
eer-to-peer networking; Programmable and Active Networks; Sensor networks=
; Switching and routing; Wireless and Satellite Networks
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COMAN: Network Control and Management
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Network, control and service architectures; Network signaling, pricing an=
d billing; Network middleware; Network management, monitoring and control=
; Network resource scheduling; Networks policy-based management; Manageme=
nt of autonomic networks and systems; Telecommunication networks architec=
tures; On-demand networks, utility computing architectures; Applications =
and case studies
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SERVI: Multi-technology service deployment and assurance
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Service-oriented architectures; Service definition, creation, bundling, d=
eployment; Service reuse, composition and service feature interaction; Se=
rvice orchestration and federation; Inter-provider service dependency; In=
tra-provider service dependency and service interaction; Service middlewa=
re and service development platforms (SDPs); Service open architecture (S=
OA); Profiling and service adaptation; Service privacy and security; Qual=
ity of service, service level agreement [QoS/SLA]; Service agreement viol=
ations; Mobile services and service migration; Reliability, availability,=
 serviceability [RAS]; Service performance metrics; Traffic engineering, =
metering, monitoring; Voice over IP services; IP Multimedia services; Rea=
l-time/not-real-rime services; real-time services over IP/IPv6; Service p=
erformance evaluation, tools, simulation
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NGNUS:  Next Generation Networks and Ubiquitous Services
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Methodologies, development support, and tools for NGN and converging serv=
ices; NGN and convergence of ubiquitous services; NGN frameworks, archite=
ctures, and concepts; NGN technologies and mechanisms; QoS/SLA, traffic i=
n NGN; NGN transport/service layered capabilities and operations; NGN con=
cepts for active, ad hoc, mobile, and wireless networks; 3G and 4G Mobile=
 networks; Fixed/mobile networks integration and internetworking; Service=
s and service differentiation over NGN; Managing ubiquitous services in N=
GN; NGN interworking, non-NGN interoperability, migration; Regulatory ser=
vices in NGN and standard activities; NGN device instrumentation; NGN pol=
icy-based control; Next Generation Internet
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MPQSI: Multi Provider QoS/SLA Internetworking
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Architectures, frameworks, mechanisms for admission control and measureme=
nt; QoS in multi-provider and multi-technology networks; Service classes =
and multi-provider service class discovery; Service level agreement and s=
ervice assurance in multi-provider environments; Carrier-class end-to-end=
 SLA and QoS monitoring and management; Multi provider accounting/billing=
/cost sharing; Management, monitoring, and measurements in multi-provider=
 networks; End-to-end QoS/SLA advanced network services in multi-provider=
 networks; End-to-end QoS/SLA for multimedia applications and services in=
 multi-provider networks; Security issues in multi-service provider netwo=
rks; Business models for multi-providers under QoS/SLA constraints; Stand=
ards and fora activities
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GRIDNS: Grid Networks and Services
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GRID theory, frameworks, methodologies, architecture, ontology; GRID infr=
astructure and technologies; GRID middleware; GRID protocols and networki=
ng; GRID computing, utility computing, autonomic computing, metacomputing=
; Programmable GRID; Data GRID; Context ontology and management in GRIDs;=
 Distributed decisions in GRID networks; GRID services and applications; =
Virtualization, modeling, and metadata in GRID; Resource management, sche=
duling, and scalability in GRID; GRID monitoring, control, and management=
; Traffic and load balancing in GRID; User profiles and priorities in GRI=
D; Performance and security in GRID systems; Fault tolerance, resilience,=
 survivability, robustness in GRID; QoS/SLA in GRID networks; GRID fora, =
standards, development, evolution; GRID case studies, validation testbeds=
, prototypes, and lessons learned
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EDNA: Emergency Services and Disaster Recovery of Networks and Applicatio=
ns
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Theory on disaster-tolerant robust networks; Recovery by disruption resou=
rce procedures; Security issues with emergency services and disaster reco=
very; Networks resiliency methods; Formal methods for safety-critical sys=
tems; Networks emergency services; Public safety, reliable emergency comm=
unications, and applications; Response to the networks emergency services=
; Disaster prevention and recovery; Fighting mechanisms for disaster of n=
etworks and applications; Notifications and recovery in various network t=
echnologies; Customer protection and serviceability perception; Cost mode=
ls and business impact; Cultural and legal aspects; Future advanced netwo=
rk development and evolution; Standards and guidelines; Lawful intercepti=
on and defense strategies;
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IPv6DFI: Deploying the Future Infrastructure
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IP Upgrade - An Engineering Exercise or a Necessity?; Worldwide IPv6 Adop=
tion - Trends and Policies; National Strategies in Stimulating IPv6 Adopt=
ion; IPv6 in Government Infrastructures - Specific Requirements; IPv6 Inf=
rastructures for Emergency Response and Law Enforcement - MetroNet6; Comm=
unications Equipment Certification for IPv6 Support; IPv6 in Broadband Ne=
tworks; IPv6 Programs, from Research to Knowledge Dissemination; IPv6 Tec=
hnology - Practical Information; Advanced Topics and Latest Developments =
in IPv6; IPv6 Deployment Experiences and Case Studies; IPv6 Enabled Appli=
cations and Devices
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IPDy: Internet Packet Dynamics
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Measurement of stream characteristics (reordering, delay, losses, jitter,=
 etc.); Measurement and estimation of network characteristics; Tools, met=
rics and benchmarks; End-to-end packet dynamics; Timing aspects in packet=
 dynamics; Impact of load balancing, parallelism within nodes, etc. on pa=
cket dynamics; QoS mechanisms and their impact on packet dynamics; Models=
 (e.g., relating protocols, resources and architectures to packet dynamic=
s); Mitigation of adverse effects of reordering, jitter, etc.; Traffic en=
gineering; Impact of packet dynamics on application performance
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GOBS: GRID over Optical Burst Switching Networks
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Terabit burst switching; Burst assembly for IP DiffServ over optical burs=
t switching networks; Optical network infrastructure for Grid; Synchronou=
s stream optical burst switching; Optical burst switching based GRID arch=
itecture; Reliable optical burst switching for next-generation Grid netwo=
rks; Throughput for Grid optical burst switching Grid networks; Resilienc=
y paths over the optical Grid networks; Consumer oriented Grids using opt=
ical burst switching; Protocols for optical burst switched Grid networks;=
 Hybrid optical switching for data-intensive media Grid; Anycast routing =
in optical burst switched Grid networks; Optical burst switching for IP-o=
ver-WDM/DWDM; Customizable Grid-to-optical network; Ultra high capacity o=
ptical networks; Hybrid optical burst/circuit switched for Grid-enabled o=
ptical networks; Job scheduling in optical burst switching Grid networks;=
 Architecture and middleware for Grid-Over-OBS
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LEARN: Learning Methodologies and Platforms
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New learning methodologies; Blended learning; Accessibility in Learning; =
Online laboratories; Virtual laboratories; Remote laboratories; Learning =
strategies to enhance online courses; Learning Content adaptation for ble=
nded learning; Learning platforms and their compatibility with cisco.neta=
cad.net
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-------------------------
 Committee: http://www.iaria.org/conferences2014/ComICNS14.html
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ICNS Advisory Chairs
 Pedro Andr=E9s Aranda Guti=E9rrez, Telef=F3nica I+D - Madrid, Spain
 Carlos Becker Westphall, Federal University of Santa Catarina, Brazil
 Eugen Borcoci, University 'Politehnica' Bucharest, Romania
 Jaime Lloret Mauri, Polytechnic University of Valencia, Spain
 Sathiamoorthy Manoharan, University of Auckland, New Zealand
 Yoshiaki Taniguchi, Osaka University, Japan
 Go Hasegawa, Osaka University, Japan
 Abdulrahman Yarali, Murray State University, USA
 Emmanuel Bertin, Orange Labs, France
 Steffen Fries, Siemens, Germany
 Rui L.A. Aguiar, University of Aveiro, Portugal
 Iain Murray, Curtin University of Technology, Australia
 Khondkar Islam, George Mason University - Fairfax, USA
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ICNS Industry/Research Relation Chairs
 Eunsoo Shim, Samsung Electronics, Korea
 Tao Zheng, Orange Labs Beijing, China
 Bruno Chatras, Orange Labs, France
 Jun Kyun Choi, KAIST, Korea
 Michael Galetzka, Fraunhofer Institute for Integrated Circuits - Dresden=
, Germany
 Mikael Gidlund, ABB, Sweden
 Juraj Giertl, T-Systems, Slovakia
 Sinan Hanay, NICT, Japan
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