1st CfP: ICAS 2022 || May 22 – 26, 2022 – Venice, Italy

============== ICAS 2022 | Call for Papers ===============

CALL FOR PAPERS, TUTORIALS, PANELS

ICAS 2022, The Eighteenth International Conference on Autonomic and Autonomous Systems

General page: https://www.iaria.org/conferences2022/ICAS22.html

Submission page: https://www.iaria.org/conferences2022/SubmitICAS22.html

Event schedule: May 22 – 26, 2022

Contributions:

– regular papers [in the proceedings, digital library]

– short papers (work in progress) [in the proceedings, digital library]

– ideas: two pages [in the proceedings, digital library]

– extended abstracts: two pages [in the proceedings, digital library]

– posters: two pages [in the proceedings, digital library]

– posters:  slide only [slide-deck posted at www.iaria.org]

– presentations: slide only [slide-deck posted at www.iaria.org]

– demos: two pages [posted at www.iaria.org]

Submission deadline: March 20, 2022

Extended versions of selected papers will be published in IARIA Journals:  https://www.iariajournals.org

Print proceedings will be available via Curran Associates, Inc.: https://www.proceedings.com/9769.html

Articles will be archived in the free access ThinkMind Digital Library: https://www.thinkmind.org

The topics suggested by the conference can be discussed in term of concepts, state of the art, research, standards, implementations, running experiments, applications, and industrial case studies. Authors are invited to submit complete unpublished papers, which are not under review in any other conference or journal in the following, but not limited to, topic areas.

All tracks are open to both research and industry contributions.
Before submission, please check and comply with the editorial rules: https://www.iaria.org/editorialrules.html

ICAS 2022 Topics (for topics and submission details: see CfP on the site)

Call for Papers: https://www.iaria.org/conferences2022/CfPICAS22.html

============================================================

ICAS 2022 Tracks (topics and submission details: see CfP on the site)

SELFTRENDS: Toward brain-like autonomic and autonomous systems

Adaptive robust resource allocation; Optimal self-organized collective actions; Collective adaptation; Active learning;  Opportunistic collaborative interactive learning; Adaption fairness; Social and biometric data-aware adaptation; Brain connectivity models;  Using unbalanced Datasets;  Quantum-inspired optimization; Automated (industrial) assembly environments; Deep neural networks; Multimodal knowledge of the brain; Self-organization in M2M infrastructures; Self-organizing socio-technical systems; Context-aware data self-adaptation; Multi-level loop encapsulation in smart systems; Uncertainty in self-adaptive systems; Adaptive Software defined systems (SDS) scalability; Adaptability in multi-tenant Clouds; Self-aware model-driven systems; Proactive self-adaptation; Self-adaptive urban traffic; Adaptive power profiling; Run-time for self-adaptive systems; Distributed adaptive systems; Self-improving system integration; Self-improving activity recognition systems; Feedback computing; Optimal feedback control; Dynamic adaptive applications; Self-managing Clouds;  Decentralized autonomic behavior; Market-adaptive trust;  Semantics of self-behavior;  Self-organizing patterns; Stability propagation in self-organizing systems; Inconsistency in self-deciding systems; Reasoning problems tractability; Decidability in self-organizing systems

ROBOTRENDS: Robot-related trends

Autonomous aquatic agents; Aerial autonomous robots; Drones control and management; Knowledge-based robot motions; Autonomous mobile robot interaction; Humanoid robots; Intelligent robots; Self-reconfigurable mobile robots; Humanoid imitative learning; Robots in unknown environments; Human centric robots; Adjustable robust optimizations; Moral autonomous agents and human evolution; Cognitive robotics; Robot partnership; Affective communication robots; Human-centric robotics; Visually-impaired and robots; Evolutionary swarm robotics; Robots and human advices; Universal robot hands

SOCIAL ROBOTS: Social robots and cognition

Human-robot interaction; Robot-robot interaction; Perception of a humanoid robots; Humanoid robots mediating social Interaction; Socially assistive robots; Conversational robots; Verbal Interaction; Human-robot touch interaction; Expressive interactions; Social emotions; Arts by humanoid robots;  Collaborative social robots; Game approaches; Human-robot interactive games; Robots co-worker partners;  Healthcare companion robots; Socially assistive robots;  Robot-assisted rehabilitation therapy; Child-robot interaction; Mobile assistive robots; Robots in public spaces; Shopping mall robots; Home utility robots; Robot-assisted cognitive training; Robot-based multimodal emotion recognition; Advertizign robots; Telepresence robots; Robot teleoperation; Robots' social credibility

MACHINE LEARNING: Advanced topics in Deep/Machine learning

Distributed and parallel learning algorithms; Image and video coding; Deep learning and Internet of Things; Deep learning and Big data; Data preparation, feature selection, and feature extraction; Error resilient transmission of multimedia data; 3D video coding and analysis; Depth map applications; Machine learning programming models and abstractions; Programming languages for machine learning; Visualization of data, models, and predictions; Hardware-efficient machine learning methods; Model training, inference, and serving; Trust and security for machine learning applications; Testing, debugging, and monitoring of machine learning  applications; Autonomous and robotics systems; Machine learning for systems.

SYSAT: Advances in system automation

Methods, techniques ant tools for automation features; Methodologies for automating of design systems; Industrial automation for production chains; Nonlinear optimization and automation control; Nonlinearities and system stabilization; Automation in safety systems; Structured uncertainty; Open and closed automation loops; Test systems automation; Theory on systems robustness; Fault-tolerant systems

UNMANNED: Driver-less cars and unmanned vehicles

Self-driving cars; Drones; Terrestrial unmanned vehicles; Unmanned aerial vehicles; Underwater unmanned vehicles; Unmanned sea surface vehicles; Collision control; Traffic surveillance challenges; Path planning and estimation; Communication between unmanned vehicles; Integration of unmanned aerial vehicles in civil airspace; Unmanned vehicular clusters; Designing unmanned vehicular-based systems; Safety of unmanned vehicles; Commercial and surveillance applications; Emergency applications; Legal aspects of unmanned vehicular systems; Testbeds and pilot experiments

AUTSY: Theory and Practice of Autonomous Systems

Design, implementation and deployment of autonomous systems; Frameworks and architectures for component and system autonomy; Design methodologies for autonomous systems; Composing autonomous systems; Formalisms and languages for autonomous systems; Logics and paradigms for autonomous systems; Ambient and real-time paradigms for autonomous systems; Delegation and trust in autonomous systems; Centralized and distributed autonomous systems; Collocation and interaction between autonomous and non-autonomous systems; Dependability in autonomous systems; Survivability and recovery in autonomous systems; Monitoring and control in autonomous systems; Performance and security in autonomous systems; Management of autonomous systems; Testing autonomous systems; Maintainability of autonomous systems

AWARE: Design and Deployment of Context-awareness Networks, Services and Applications

Context-aware fundamental concepts, mechanisms, and applications; Modeling context-aware systems; Specification and implementation of awareness behavioral contexts; Development and deployment of large-scale context-aware systems and subsystems; User awareness requirements and design techniques for interfaces and systems; Methodologies, metrics, tools, and experiments for specifying context-aware systems; Tools evaluations, Experiment evaluations

AUTONOMIC: Autonomic Computing: Design and Management of Self-behavioral Networks and Services

Theory, architectures, frameworks and practice of self-adaptive management mechanisms; Modeling and techniques for specifying self-ilities; Self-stabilization and dynamic stability criteria and mechanisms; Tools, languages and platforms for designing self-driven systems; Autonomic computing and GRID networking; Autonomic computing and proactive computing for autonomous systems; Practices, criteria and methods to implement, test, and evaluate industrial autonomic systems; Experiences with autonomic computing systems

CLOUD: Cloud computing and Virtualization

Hardware-as-a-service; Software-as-a-service [SaaS applicaitions]; Platform-as-service; On-demand computing models; Cloud Computing programming and application development; Scalability, discovery of services and data in Cloud computing infrastructures; Privacy, security, ownership and reliability issues; Performance and QoS; Dynamic resource provisioning; Power-efficiency and Cloud computing; Load balancing; Application streaming; Cloud SLAs, business models and pricing policies; Custom platforms; Large-scale compute infrastructures; Managing applications in the clouds; Data centers; Process in the clouds; Content and service distribution in Cloud computing infrastructures; Multiple applications can run on one computer (virtualization a la VMWare); Grid computing (multiple computers can be used to run one application); Virtualization platforms; Open virtualization format; Cloud-computing vendor governance and regulatory compliance

MCMAC: Monitoring, Control, and Management of Autonomous Self-aware and Context-aware Systems

Agent-based autonomous systems; Policy-driven self-awareness mechanisms and their applicability in autonomic systems; Autonomy in GRID networking and utility computing; Studies on autonomous industrial applications, services, and their developing environment; Prototypes, experimental systems, tools for autonomous systems, GRID middleware

CASES: Automation in specialized mobile environments

Theory, frameworks, mechanisms and case studies for satellite systems; Spatial/temporal constraints in satellites systems; Trajectory corrections, speed, and path accuracy in satellite systems; Mechanisms and case studies for nomadic code systems; Platforms for mobile agents and active mobile code; Performance in nomadic code systems; Case studies systems for mobile robot systems; Guidance in an a priori unknown environment; Coaching/learning techniques; Pose maintenance, and mapping; Sensing for autonomous vehicles; Planning for autonomous vehicles; Mobile networks, Ad hoc networks and self-reconfigurable networks

ALCOC: Algorithms and theory for control and computation

Control theory and specific characteristics; Types of computation theories; Tools for computation and control; Algorithms and data structures; Special algorithmic techniques; Algorithmic applications; Domain case studies; Technologies case studies for computation and control; Application-aware networking

MODEL: Modeling, virtualization, any-on-demand, MDA, SOA

Modeling techniques, tools, methodologies, languages; Model-driven architectures (MDA); Service-oriented architectures (SOA); Utility computing frameworks and fundamentals; Enabled applications through virtualization; Small-scale virtualization methodologies and techniques; Resource containers, physical resource multiplexing, and segmentation; Large-scale virtualization methodologies and techniques; Management of virtualized systems; Platforms, tools, environments, and case studies; Making virtualization real; On-demand utilities; Adaptive enterprise; Managing utility-based systems; Development environments, tools, prototypes

SELF: Self-adaptability and self-management of context-aware systems

Novel approaches to modeling and representing context adaptability, self-adaptability, and self-manageability; Models of computation for self-management context-aware systems; Use of MDA/MDD (Model Driven Architecture / Model Driven Development) for context-aware systems; Design methods for self-adaptable context-aware systems; Applications of advanced modeling languages to context self-adaptability; Methods for managing adding context to existing systems and context-conflict free systems; Architectures and middleware models for self-adaptable context-aware systems; Models of different adaptation and self-adaptation mechanisms (component-based adaptation approach, aspect oriented approach, etc.); System stability in the presence of context inconsistency; Learning and self-adaptability of context-aware systems; Business considerations and organizational modeling of self-adaptable context-aware systems; Performance evaluation of self-adaptable context-aware systems; Scalability of self-adaptable context-aware systems 

KUI: Knowledge-based user interface

Evolving intelligent user interface for WWW; User interface design in autonomic systems; Adaptive interfaces in a knowledge-based design; Knowledge-based support for the user interface design process; Built-in knowledge in adaptive user interfaces; Requirements for interface knowledge representation; Levels for knowledge-based user interface; User interface knowledge on the dynamic behavior; Support techniques for knowledge-based user interfaces; Intelligent user interface for real-time systems; Planning-based control of interface animation; Model-based user interface design; Knowledge-based user interface migration; Automated user interface requirements discovery for scientific computing; Knowledge-based user interface management systems; 3D User interface design; Task-oriented knowledge user interfaces; User-interfaces in a domestic environment; Centralised control in the home; User-interfaces for the elderly or disabled; User-interfaces for the visually, aurally, or mobility impaired; Interfacing with ambient intelligence systems; Assisted living interfaces; Interfaces for security/alarm systems

AMMO: Adaptive management and mobility

QoE and adaptation in mobile environments; Content marking and management (i.e. MPEG21); Adaptive coding (H.265, FEC schemes, etc.. ); Admission control resource allocation algorithms; Monitoring and feedback systems; Link adaptation mechanisms; Cross layer approaches; Adaptation protocols (with IMS and NGNs scenarios); QoE vs NQoS mapping systems; Congestion control mechanisms; Fairness issues (fair sharing, bandwidth allocation…); Optimization/management mechanisms (MOO, fuzzy logic, machine learning, etc.)

1st CfP: ICAS 2022 || May 22 – 26, 2022 – Venice, Italy

Please consider to contribute to and/or forward to the appropriate groups the following opportunity to submit and publish original scientific results to:

– ICAS 2022, The Eighteenth International Conference on Autonomic and Autonomous Systems

ICAS 2022 is scheduled to be May 22 – 26, 2022 in Venice, Italy under the InfoSys 2022 umbrella.

The submission deadline is scheduled for February 10, 2022.

Authors of selected papers will be invited to submit extended article versions to one of the IARIA Journals: https://www.iariajournals.org

All events will be held in a hybrid mode: on site, online, prerecorded videos, voiced presentation slides, pdf slides.

=================

============== ICAS 2022 | Call for Papers ===============

CALL FOR PAPERS, TUTORIALS, PANELS

ICAS 2022, The Eighteenth International Conference on Autonomic and Autonomous Systems

General page: https://www.iaria.org/conferences2022/ICAS22.html

Submission page: https://www.iaria.org/conferences2022/SubmitICAS22.html

Event schedule: May 22 – 26, 2022

Contributions:

– regular papers [in the proceedings, digital library]

– short papers (work in progress) [in the proceedings, digital library]

– ideas: two pages [in the proceedings, digital library]

– extended abstracts: two pages [in the proceedings, digital library]

– posters: two pages [in the proceedings, digital library]

– posters:  slide only [slide-deck posted at www.iaria.org]

– presentations: slide only [slide-deck posted at www.iaria.org]

– demos: two pages [posted at www.iaria.org]

Submission deadline: March 20, 2022

Extended versions of selected papers will be published in IARIA Journals:  https://www.iariajournals.org

Print proceedings will be available via Curran Associates, Inc.: https://www.proceedings.com/9769.html

Articles will be archived in the free access ThinkMind Digital Library: https://www.thinkmind.org

The topics suggested by the conference can be discussed in term of concepts, state of the art, research, standards, implementations, running experiments, applications, and industrial case studies. Authors are invited to submit complete unpublished papers, which are not under review in any other conference or journal in the following, but not limited to, topic areas.

All tracks are open to both research and industry contributions.
Before submission, please check and comply with the editorial rules: https://www.iaria.org/editorialrules.html

ICAS 2022 Topics (for topics and submission details: see CfP on the site)

Call for Papers: https://www.iaria.org/conferences2022/CfPICAS22.html

============================================================

ICAS 2022 Tracks (topics and submission details: see CfP on the site)

SELFTRENDS: Toward brain-like autonomic and autonomous systems

Adaptive robust resource allocation; Optimal self-organized collective actions; Collective adaptation; Active learning;  Opportunistic collaborative interactive learning; Adaption fairness; Social and biometric data-aware adaptation; Brain connectivity models;  Using unbalanced Datasets;  Quantum-inspired optimization; Automated (industrial) assembly environments; Deep neural networks; Multimodal knowledge of the brain; Self-organization in M2M infrastructures; Self-organizing socio-technical systems; Context-aware data self-adaptation; Multi-level loop encapsulation in smart systems; Uncertainty in self-adaptive systems; Adaptive Software defined systems (SDS) scalability; Adaptability in multi-tenant Clouds; Self-aware model-driven systems; Proactive self-adaptation; Self-adaptive urban traffic; Adaptive power profiling; Run-time for self-adaptive systems; Distributed adaptive systems; Self-improving system integration; Self-improving activity recognition systems; Feedback computing; Optimal feedback control; Dynamic adaptive applications; Self-managing Clouds;  Decentralized autonomic behavior; Market-adaptive trust;  Semantics of self-behavior;  Self-organizing patterns; Stability propagation in self-organizing systems; Inconsistency in self-deciding systems; Reasoning problems tractability; Decidability in self-organizing systems

ROBOTRENDS: Robot-related trends

Autonomous aquatic agents; Aerial autonomous robots; Drones control and management; Knowledge-based robot motions; Autonomous mobile robot interaction; Humanoid robots; Intelligent robots; Self-reconfigurable mobile robots; Humanoid imitative learning; Robots in unknown environments; Human centric robots; Adjustable robust optimizations; Moral autonomous agents and human evolution; Cognitive robotics; Robot partnership; Affective communication robots; Human-centric robotics; Visually-impaired and robots; Evolutionary swarm robotics; Robots and human advices; Universal robot hands

SOCIAL ROBOTS: Social robots and cognition

Human-robot interaction; Robot-robot interaction; Perception of a humanoid robots; Humanoid robots mediating social Interaction; Socially assistive robots; Conversational robots; Verbal Interaction; Human-robot touch interaction; Expressive interactions; Social emotions; Arts by humanoid robots;  Collaborative social robots; Game approaches; Human-robot interactive games; Robots co-worker partners;  Healthcare companion robots; Socially assistive robots;  Robot-assisted rehabilitation therapy; Child-robot interaction; Mobile assistive robots; Robots in public spaces; Shopping mall robots; Home utility robots; Robot-assisted cognitive training; Robot-based multimodal emotion recognition; Advertizign robots; Telepresence robots; Robot teleoperation; Robots' social credibility

MACHINE LEARNING: Advanced topics in Deep/Machine learning

Distributed and parallel learning algorithms; Image and video coding; Deep learning and Internet of Things; Deep learning and Big data; Data preparation, feature selection, and feature extraction; Error resilient transmission of multimedia data; 3D video coding and analysis; Depth map applications; Machine learning programming models and abstractions; Programming languages for machine learning; Visualization of data, models, and predictions; Hardware-efficient machine learning methods; Model training, inference, and serving; Trust and security for machine learning applications; Testing, debugging, and monitoring of machine learning  applications; Autonomous and robotics systems; Machine learning for systems.

SYSAT: Advances in system automation

Methods, techniques ant tools for automation features; Methodologies for automating of design systems; Industrial automation for production chains; Nonlinear optimization and automation control; Nonlinearities and system stabilization; Automation in safety systems; Structured uncertainty; Open and closed automation loops; Test systems automation; Theory on systems robustness; Fault-tolerant systems

UNMANNED: Driver-less cars and unmanned vehicles

Self-driving cars; Drones; Terrestrial unmanned vehicles; Unmanned aerial vehicles; Underwater unmanned vehicles; Unmanned sea surface vehicles; Collision control; Traffic surveillance challenges; Path planning and estimation; Communication between unmanned vehicles; Integration of unmanned aerial vehicles in civil airspace; Unmanned vehicular clusters; Designing unmanned vehicular-based systems; Safety of unmanned vehicles; Commercial and surveillance applications; Emergency applications; Legal aspects of unmanned vehicular systems; Testbeds and pilot experiments

AUTSY: Theory and Practice of Autonomous Systems

Design, implementation and deployment of autonomous systems; Frameworks and architectures for component and system autonomy; Design methodologies for autonomous systems; Composing autonomous systems; Formalisms and languages for autonomous systems; Logics and paradigms for autonomous systems; Ambient and real-time paradigms for autonomous systems; Delegation and trust in autonomous systems; Centralized and distributed autonomous systems; Collocation and interaction between autonomous and non-autonomous systems; Dependability in autonomous systems; Survivability and recovery in autonomous systems; Monitoring and control in autonomous systems; Performance and security in autonomous systems; Management of autonomous systems; Testing autonomous systems; Maintainability of autonomous systems

AWARE: Design and Deployment of Context-awareness Networks, Services and Applications

Context-aware fundamental concepts, mechanisms, and applications; Modeling context-aware systems; Specification and implementation of awareness behavioral contexts; Development and deployment of large-scale context-aware systems and subsystems; User awareness requirements and design techniques for interfaces and systems; Methodologies, metrics, tools, and experiments for specifying context-aware systems; Tools evaluations, Experiment evaluations

AUTONOMIC: Autonomic Computing: Design and Management of Self-behavioral Networks and Services

Theory, architectures, frameworks and practice of self-adaptive management mechanisms; Modeling and techniques for specifying self-ilities; Self-stabilization and dynamic stability criteria and mechanisms; Tools, languages and platforms for designing self-driven systems; Autonomic computing and GRID networking; Autonomic computing and proactive computing for autonomous systems; Practices, criteria and methods to implement, test, and evaluate industrial autonomic systems; Experiences with autonomic computing systems

CLOUD: Cloud computing and Virtualization

Hardware-as-a-service; Software-as-a-service [SaaS applicaitions]; Platform-as-service; On-demand computing models; Cloud Computing programming and application development; Scalability, discovery of services and data in Cloud computing infrastructures; Privacy, security, ownership and reliability issues; Performance and QoS; Dynamic resource provisioning; Power-efficiency and Cloud computing; Load balancing; Application streaming; Cloud SLAs, business models and pricing policies; Custom platforms; Large-scale compute infrastructures; Managing applications in the clouds; Data centers; Process in the clouds; Content and service distribution in Cloud computing infrastructures; Multiple applications can run on one computer (virtualization a la VMWare); Grid computing (multiple computers can be used to run one application); Virtualization platforms; Open virtualization format; Cloud-computing vendor governance and regulatory compliance

MCMAC: Monitoring, Control, and Management of Autonomous Self-aware and Context-aware Systems

Agent-based autonomous systems; Policy-driven self-awareness mechanisms and their applicability in autonomic systems; Autonomy in GRID networking and utility computing; Studies on autonomous industrial applications, services, and their developing environment; Prototypes, experimental systems, tools for autonomous systems, GRID middleware

CASES: Automation in specialized mobile environments

Theory, frameworks, mechanisms and case studies for satellite systems; Spatial/temporal constraints in satellites systems; Trajectory corrections, speed, and path accuracy in satellite systems; Mechanisms and case studies for nomadic code systems; Platforms for mobile agents and active mobile code; Performance in nomadic code systems; Case studies systems for mobile robot systems; Guidance in an a priori unknown environment; Coaching/learning techniques; Pose maintenance, and mapping; Sensing for autonomous vehicles; Planning for autonomous vehicles; Mobile networks, Ad hoc networks and self-reconfigurable networks

ALCOC: Algorithms and theory for control and computation

Control theory and specific characteristics; Types of computation theories; Tools for computation and control; Algorithms and data structures; Special algorithmic techniques; Algorithmic applications; Domain case studies; Technologies case studies for computation and control; Application-aware networking

MODEL: Modeling, virtualization, any-on-demand, MDA, SOA

Modeling techniques, tools, methodologies, languages; Model-driven architectures (MDA); Service-oriented architectures (SOA); Utility computing frameworks and fundamentals; Enabled applications through virtualization; Small-scale virtualization methodologies and techniques; Resource containers, physical resource multiplexing, and segmentation; Large-scale virtualization methodologies and techniques; Management of virtualized systems; Platforms, tools, environments, and case studies; Making virtualization real; On-demand utilities; Adaptive enterprise; Managing utility-based systems; Development environments, tools, prototypes

SELF: Self-adaptability and self-management of context-aware systems

Novel approaches to modeling and representing context adaptability, self-adaptability, and self-manageability; Models of computation for self-management context-aware systems; Use of MDA/MDD (Model Driven Architecture / Model Driven Development) for context-aware systems; Design methods for self-adaptable context-aware systems; Applications of advanced modeling languages to context self-adaptability; Methods for managing adding context to existing systems and context-conflict free systems; Architectures and middleware models for self-adaptable context-aware systems; Models of different adaptation and self-adaptation mechanisms (component-based adaptation approach, aspect oriented approach, etc.); System stability in the presence of context inconsistency; Learning and self-adaptability of context-aware systems; Business considerations and organizational modeling of self-adaptable context-aware systems; Performance evaluation of self-adaptable context-aware systems; Scalability of self-adaptable context-aware systems 

KUI: Knowledge-based user interface

Evolving intelligent user interface for WWW; User interface design in autonomic systems; Adaptive interfaces in a knowledge-based design; Knowledge-based support for the user interface design process; Built-in knowledge in adaptive user interfaces; Requirements for interface knowledge representation; Levels for knowledge-based user interface; User interface knowledge on the dynamic behavior; Support techniques for knowledge-based user interfaces; Intelligent user interface for real-time systems; Planning-based control of interface animation; Model-based user interface design; Knowledge-based user interface migration; Automated user interface requirements discovery for scientific computing; Knowledge-based user interface management systems; 3D User interface design; Task-oriented knowledge user interfaces; User-interfaces in a domestic environment; Centralised control in the home; User-interfaces for the elderly or disabled; User-interfaces for the visually, aurally, or mobility impaired; Interfacing with ambient intelligence systems; Assisted living interfaces; Interfaces for security/alarm systems

AMMO: Adaptive management and mobility

QoE and adaptation in mobile environments; Content marking and management (i.e. MPEG21); Adaptive coding (H.265, FEC schemes, etc.. ); Admission control resource allocation algorithms; Monitoring and feedback systems; Link adaptation mechanisms; Cross layer approaches; Adaptation protocols (with IMS and NGNs scenarios); QoE vs NQoS mapping systems; Congestion control mechanisms; Fairness issues (fair sharing, bandwidth allocation…); Optimization/management mechanisms (MOO, fuzzy logic, machine learning, etc.)

Future Networks – The 4th IEEE 5G World Forum

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Call for Participation
2021 IEEE 4th 5G World Forum (5GWF'21) 
Theme: Future Networks 
13-15 October 2021 
Virtual Event 
 
 
===================================================== 
2021 IEEE 4th 5G World Forum (5GWF'21) 
Theme: Future Networks 
13-15 October 2021 
Virtual Event 
===================================================== 
 
Organized by IEEE Future Networks, IEEE Computer Society, IEEE Communications Society, and IEEE Montreal Section 
 
Register here: 
 
The 2021 IEEE 4th 5G World Forum (5GWF'21) will be a fully virtual event. All sessions will be scheduled to begin and end at specified times, and speakers will be available to answer questions in real-time during those sessions. Registrants will also be able to view these sessions on-demand after their scheduled time, and can communicate with speakers/authors asynchronously using the virtual platform. 
 
 
PLENARY KEYNOTE SESSIONS 
Four keynote talks daily from visionaries in industry, academia and SDOs. Confirmed so far are: 
 
Robert Kahn, “Father of the Internet” and CEO and President of CNRI 
Magnus Frodigh, Head of Ericsson Research 
Vincent Poor, Princeton University 
Shen Jia, OPPO 
Peter Vetter, Nokia 
Javan Erfanian, Bell Canada 
Muriel Médard, Massachusetts Institute of Technology 
Peiying Zhu, Huawei 
Kaniz Mahdi, VMware 
Sylvain Nadeau, EXFO 
Juan Montojo, Qualcomm 
Sumit Roy, Innovate Beyond 5G Lead, OUSD (R&E) 
 
TECHNICAL PROGRAM 
Technical papers are presented across 8 sessions of two hours each. As a consideration to our global author base, this year authors are grouped by time zone rather than topic area. Please click through to the details for each session. 
T-1: Technical Session 1 
T-2: Technical Session 2 
T-3: Technical Session 3 
T-4: Technical Session 4 
T-5: Technical Session 5 
T-6: Technical Session 6 
T-7: Technical Session 7 
T-8: Technical Session 8 
 
 
WORLDWIDE 5G INDUSTRY FORA 
Our annual gathering of invited 5G industry associations from multiple regions/countries to share and discuss their current activities, visions and future roadmaps towards 5G deployment, and also to develop on international industry collaboration. This year's speakers are being confirmed. 
 
 
FUTURE NETWORKS TOWARDS 2031: INGR PANEL SERIES 
The International Network Generations Roadmap (INGR) is a technology roadmap evaluating future network (5G and beyond) technologies, development challenges, and deployment opportunities at 3-year, 5-year, and 10-year horizons. Each panel in this series pairs different INGR working groups and speakers to discuss the challenges and opportunities ahead as technologies evolve. The panels will group INGR experts on the following topics: 
 
IP-1: INGR Panel: Millimeter Wave and Massive MIMO – Deployment Challenges and New Trends 
IP-2: INGR Panel: Connecting the Unconnected and Satellite Networking Trends and Challenges 
IP-3: INGR Panel: Testbeds bridging the gap between optical and radio hardware and applications 
IP-4: INGR Panel: Deployment, Energy Efficiency, and Applications and Services Comprehensive Plans 
IP-5: INGR Panel: Combining Energy Efficiency and Systems Optimization for Network Sustainability 
IP-6: INGR Panel: Standardization update on INGR of FNI 
IP-7: INGR Panel: Edge Services, AI/ML, and Security Networking Trends and Challenges 
 
 
WORKSHOPS AND SPECIAL SESSIONS 
WS-1: Workshop on 5G Security: Current Trends, Challenges and New Enablers, Second Edition 
WS-2: Architectural Evolution toward 6G Networks: A European View 
WS-3: Predictive Quality of Service in 5G and Beyond 
WS-4: Workshop on AI-enabled Future Networks: A Cross-layer Perspective 
WS-7: Workshop on Satellite and Non-Terrestrial Networks 
 
TOPICAL/VERTICAL SESSIONS 
TV-1: 6G Vertical Summit 
TV-2: Super Infrastructure for Large-Scale Experimental Computer Science (SLICES) 
TV-3: Optical Wireless Communication (OWC) 
TV-4: 5G for Connected & Automated Mobility Vertical Summit 
TV-5: Blockchain Enabling Vertical Summit 
TV-6: Reflecting Intelligent Surfaces for 5G and Beyond 5G 
TV-7: 5G ecosystem towards smarter and sustainable agriculture: opportunities and challenges 
TV-8: Healthcare and IoT 
TV-9: IoT applications in Energy Sectors 
TV-10: Future Networks Security, Privacy and Resilience Track 
TV-11: Dialogues between 5G/B5G and Vertical Domains: AI for Intelligent Services 
TV-12 : The Role of Frugal Technologies in Rural Connectivity 
TV-13 : Systems Optimization for 5G and Beyond 
 
 
INDUSTRY FORUMS AND PANELS 
FP-1: IPv6-based 5G, IoT, CC Industry Forum 
FP-2: 5G Smart Cities 2021 
FP-3: Entrepreneurship and Innovations Forum (EIF) 
FP-4: Existing and Emerging 5G Millimeter-Wave Radiation Technologies 
FP-5: Security challenges in military applications of 5G technology 
FP-6: RAN disaggregation – where are we heading? 
FP-7: Secure end-to-end 5G cloud deployments 
FP-8: The Path to 6G 
FP-9: AI/ML driven 5G & beyond technology 
FP-10: The Internet is broken: we need The Grid (Internet Evolution) 
FP-11: Next G Mix Reality (Gaming + Media & Entertainment) 
FP-12: Cybersecurity – the priority of today & tomorrow 
FP-13: The Next G sustainability & societal challenges 
FP-15: 6G Must be Quantum 
FP-16: Smart-Digital-Green Manufacturing Technology 
FP-18: The Race to 5G is Not Yet Won: Deployment Challenges and Industry Priorities 
 
 
TUTORIALS 
TUT-1: 5G Network Performance: Key Considerations & Open Challenges 
TUT-2: Authentication and Key Agreements in 2G, 3G, 4G, and 5G 
TUT-3: Homomorphic encryption over 5G networks 
TUT-4: Blockchain, IoT and 5G – The Trio to Mitigate Current and Post COVID-19 Challenges 
TUT-5: Reconfigurable Intelligent Surfaces for Future Wireless Communications 
TUT-6: Voice services in 5G – Deployment options and strategies 
TUT-7: Private 5G Deployment Strategies & Use-Cases 
TUT-8: 6G Security and Privacy Vision Towards Reality 
TUT-9: Achieving Global Connectivity Using Aerial and Space Networks 
TUT-10: R & D in 5G with NetSim 
TUT-11: Shaping Future 6G Core Networks – Understanding Evolution Trends from 5G to 6G 
TUT-12: Evolution of NOMA Toward Next Generation Multiple Access 
TUT-13: 5G Inclusive Unified Digital Infrastructure Architecture – Imperatives, Rationale, Approach and Challenges 
TUT-14: 5G & Beyond: Addressing the Energy Challenge 
TUT-15: Evolution of Direct RF Sampling Technology – Recent Advances, Challenges, and the Road Ahead 
 
 
DEMONSTRATIONS 
Session 1 
Session 2 
 
STUDENT MENTORSHIP PROGRAM – 
sponsored by OPPO 
Date and time of the Mentorship Program: Day 2 (October 14) at 14:00 – 15:00 PM Eastern Time US. 
 
In the 5G World Forum Student Mentorship Program, students are invited to participate in a one-hour session during which they may ask questions and advice from industry experts. This is an opportunity to get expert advice on career next steps, career choices, and insights into working in the industry. The participating industry experts will be announced here shortly. 
 
ORGANIZING COMMITTEE 
GENERAL CHAIR
Luc Sirois – Chief Innovation Officer, Quebec
 
FOUNDING CO-CHAIRS 
Ashutosh Dutta, Johns Hopkins University Applied Physics Lab 
Latif Ladid, IPv6 Forum 
 
GENERAL CO-CHAIRS 
Benoit Pelletier, VMware 
Celia Desmond, President WCT 
Halim Yanikomeroglu, Carleton University 
Burkhard Stiller, University of Zurich 
 
TECHNICAL PROGRAM COMMITTEE 
TPC Chair, Fabrice Labeau McGill University 
TPC Co-Chairs: 
Halima Elbiaze, Université du Québec à Montréal 
Essaïd Sabir, ENSEM, Hassan II University of Casablanca 
Anura Jayasumana, Colorado State University 
Gunes Kurt, École Polytechnique de Montréal 
 
Sincerely, 
IEEE Future Networks Initiati

Call for Papers – SENSORNETS 2022 (Position/Regular Papers Extension)

Position/Regular Paper Submission Deadline: October 29, 2021

Exceptionally, due to COVID-19, SENSORNETS 2022 has strongly reduced the registration fees and is welcoming regular paper submissions until the deadline set for position papers.

https://sensornets.scitevents.org

February 07 – 08, 2022

Online Streaming

What is a position paper?
A position paper presents an arguable opinion about an issue. The goal of a position paper is to convince the audience that your opinion is valid and worth listening to, without the need to present completed research work and/or validated results.

SENSORNETS is organized in 3 major tracks:
1 – Sensor Networks and Architectures
2 – Intelligent Data Analysis and Processing for Sensor Networks
3 – Sensor Networks Applications

Conference Chair(s)
Nirwan Ansari, New Jersey Institute of Technology, United States
César Benavente-Peces, Universidad Politécnica de Madrid, Spain

Program Chair(s)
RangaRao Venkatesha Prasad, Delft University of Technology, Netherlands
Dirk Pesch, University College Cork, Ireland

With the presence of internationally distinguished keynote speakers:
Luca Mottola, Politecnico di Milano, Italy
Biplab Sikdar, University of Singapore, Singapore
Niki Trigoni, University of Oxford, United Kingdom

Proceedings will be submitted for indexation by:
SCOPUS
Google Scholar
The DBLP Computer Science Bibliography
Semantic Scholar
Microsoft Academic
Engineering Index (EI)
Web of Science / Conference Proceedings Citation Index

A short list of presented papers will be selected so that revised and extended versions of these papers will be published by Springer in a CCIS Series book.

All papers presented at the conference venue will also be available at the SCITEPRESS Digital Library.

Kind regards,
Mónica Saramago
SENSORNETS Secretariat

1st CfP: INTELLI 2022 || May 22 – 26, 2022 – Venice, Italy

============== INTELLI 2022 | Call for Papers ===============

CALL FOR PAPERS, TUTORIALS, PANELS

INTELLI 2022, The Eleventh International Conference on Intelligent Systems and Applications

General page: https://www.iaria.org/conferences2022/INTELLI22.html

Submission page: https://www.iaria.org/conferences2022/SubmitINTELLI22.html

Event schedule: May 22 – 26, 2022

Contributions:

– regular papers [in the proceedings, digital library]

– short papers (work in progress) [in the proceedings, digital library]

– ideas: two pages [in the proceedings, digital library]

– extended abstracts: two pages [in the proceedings, digital library]

– posters: two pages [in the proceedings, digital library]

– posters:  slide only [slide-deck posted at www.iaria.org]

– presentations: slide only [slide-deck posted at www.iaria.org]

– demos: two pages [posted at www.iaria.org]

Submission deadline: May 5, 2022

Extended versions of selected papers will be published in IARIA Journals:  https://www.iariajournals.org

Print proceedings will be available via Curran Associates, Inc.: https://www.proceedings.com/9769.html

Articles will be archived in the free access ThinkMind Digital Library: https://www.thinkmind.org

The topics suggested by the conference can be discussed in term of concepts, state of the art, research, standards, implementations, running experiments, applications, and industrial case studies. Authors are invited to submit complete unpublished papers, which are not under review in any other conference or journal in the following, but not limited to, topic areas.

All tracks are open to both research and industry contributions.
Before submission, please check and comply with the editorial rules: https://www.iaria.org/editorialrules.html

INTELLI 2022 Topics (for topics and submission details: see CfP on the site)

Call for Papers: https://www.iaria.org/conferences2022/CfPINTELLI22.html

============================================================

INTELLI 2022 Tracks (topics and submission details: see CfP on the site)

Fundamentals in intelligent systems and applications

 – Intelligence by design

 – Intelligent distributed systems

 – Context-aware intelligent systems

 – Symbolic intelligence

 – Neuromorphic systems

 – Collective intelligence

 – Ambient Intelligence

 – Cooperative intelligent applications

 – Formal ontology and semantics

 – Persuasive intelligence

 – Bio-inspired intelligence

 – Cognitive systems and applications

 – Real-time intelligence

 – Hybrid artificial intelligent systems

 – Heuristic search

 – Automated planning

 – Adaptive problem solving

New production paradigms and concepts

 – Industry 4.0 in a global context

 – Industry 4.0 and Internet of Things (IoT) approaches

 – Smart factory and Industry 4.0

 – Manufacturing-oriented Big Data

 – Industry 4.0 Data analytics

 – Cyber-manufacturing systems

 – Life cycle sustainability of production systems

 – 3D/4D printing production-oriented

 – Cooperation and communication in manufacturing environments

 – Industrial robotics and intelligent manufacturing

 – New computing and knowledge paradigms in manufacturing environments

 – Flexible manufacturing systems

Intelligent Information processing

 – Intelligent signal processing

 – Intelligent data analysis

 – Web intelligence

 – IoT architecture for intelligent environments

 – Intelligent web search engines

 – Intelligent natural language systems and applications

 – Intelligent information extraction

 – Intelligent perception and intelligent machines

 – Intelligent agents

 – Augmented reality systems

 – Spiking neural networks and systems

 – Patterns in intelligent applications

 – Stability in intelligent systems

 – Ethical evaluation of intelligent systems

Intelligent communication networks

 – Cognitive intelligence in vehicular networks

 – Guidance systems

 – Intelligent health systems

 – Indoor special-awareness

 – Intelligent systems for software computing

 – Sensor-based intelligent systems

 – Intelligent systems for wireless applications

 – Intelligent transport systems

 – Intelligent applications for disaster management

 – Intelligence in medical decision applications

 – Intelligent forecasting applications

 – Intelligent human-computer interaction systems

 – Intelligent multimedia

 – Intelligent recommenders

 – Intelligent security systems and applications

 – Intelligent robotics

 – Intelligent embedded systems

 – RFID and BLE technologies in intelligent systems

 – Intelligent sensors and sensing applications

 – Mobility intelligence and semantic applications

 – Case studies and trials of intelligent solutions

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