3rd CfP: SPACOMM 2022 || April 24 – 28, 2022 – Barcelona, Spain

============== SPACOMM 2022 | Call for Papers ===============

CALL FOR PAPERS, TUTORIALS, PANELS

SPACOMM 2022, The Fourteenth International Conference on Advances in Satellite and Space Communications

General page: https://www.iaria.org/conferences2022/SPACOMM22.html

Submission page: https://www.iaria.org/conferences2022/SubmitSPACOMM22.html

Event schedule: April 24 – 28, 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: January 10, 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 Authors are invited to submit complete unpublished papers, which are not under review in any other conference or journal in the following, but not limited to, topic areas.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

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

Call for Papers: https://www.iaria.org/conferences2022/CfPSPACOMM22.html

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

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

Signal processing in telecommunications

Signal processing theory and practice; Advances in modulation and coding; Image and multidimensional signal processing; Signal filter design and structures; Multirate filtering, filter banks, and adaptive filters; Fast signal processing algorithms; Nonlinear signals and systems; Nonuniform transformation; 2D nonuniform DFT; Fast algorithm of NDFT; Advanced image/video coding; Advanced prediction techniques; Signal detection and reconstruction; Spectral estimation and time-frequency analysis; Higher order spectrum analysis; Parameter estimation; Array signal processing; Statistical signal analysis; Signal and system modeling; Cyclostationary signal analysis; Active noise control, active noise reduction and echo cancellation; Psychoacoustics and room acoustics; Signal processing for music; Binaural systems and multidimensional signal systems; Geophysical and seismic signal processing; Nonlinear interpolation/resampling; Extensions to wavelet based coding (x-lets); Low complexity image/video compression; Multiple resolution signal processing; New approach to digital signal processing; Compression of random data; Recompression of compressed data; 2D projection of 3D data; Stereo data matching; Emerging applications requiring new compression tools; Unified compression and recognition; H.264 and latest video coding standards; Latest audio coding standards

Remote spatial sensing

Remote sensing technology and geographic information system (GIS); Remote sensing computation applications; Optical communication for remote sensing; High performance computing for remote sensing; Lidar technology in remote sensing; Satellites and remote sensing; Geolocation of radio frequency signals; Synthetic aperture radar (SAR) image process modeling; Quality of remote data (spatial, spectral, radiometric and temporal resolutions); Remote sensing tools and software; Sensor calibration; Applications of remote sensing; Remote sensing for solar energy forecasting; Turbulence modeling and simulation; Climate prediction models

Global coverage via 6G/7G:  integrating 5G and IoT with satellite networks

High data rates; Ultra fast access of Internet; Full home automation and home applications; Smart homes and cities; Global energy sources; Space and defense 6G-oriented technologies; Integrated satellite-to-satellite communications; Monitoring/driving natural calamities; Sea-to-Space communications; Nano antennas; Fly sensors; Point-to-point wireless communication networks;  Super-fast broadband signals; High speed optical broadcasting fibers lines; Space roaming; Earth observation (backhaul link); Space observation (backhaul link); Small cell (cover zones without Internet); Space-IoT (monitoring sensors);  Standard adaptation to 6G for handoff and roaming challenges (Global Position System (GPS), Galileo, COMPASS, GLONASS)

Antenna/Radar signal processing

Signal detection and estimation; RF engineering; Active filters; Analog and digital filters; Oscillator circuit design; Circuit design for high-speed frequency synthesis; Statistical and adaptive signal processing; Computational electrodynamics; Signal processing for sensing systems; RFID and MMIC design principles and applications; Microstrip circuit design and applications; Design and analysis of microwave radiometer systems; Modem microwave; System-in-package RF design and applications

Satellite and space communications

Earth-space communications; MIMO satellite communications; Hybrid satellite and terrestrial networks; Access Schemes; Demand Assignment Multiple Access (DAMA); Cross-layer air interface design; Channel models; Navigation services; Reliable multicast protocols; Transport protocol performance over satellite; IP over satellite Routing protocols; Game theory applications in satellite networks; Onboard switching and processing technologies; QoS and performance; Call admission control schemes; Dynamic bandwidth allocation; Adjacent and terrestrial interference; Fade mitigation techniques; Advanced channel modeling; Security, privacy, and trust; Radio resource management; IT application in Space Communications; Standards activities

Delay Tolerant Networking

Use of DTN protocols in space missions; DTN for PI/instrument connectivity; Routing for DTNs; Performance and reliability of DTN protocols

Satellites and nano-satellites

Satellite communications (hybrid satellites and terrestrial networks); Special protocols for nano-satellites; Onboard processing technology; Interplanetary communications (spatial mission analysis, in-flight experiences, delay tolerant networking [DTN]); Nano satellites and nano-rockets; Fundamental of nano-satellites communications; New technologies specific for small satellites; Applications (earth observation, science, telecommunications, navigation); New technologies; Satellite constellation design

Geographic Information and applications

Geographic information systems; Earth observation; Global positioning systems; Digital terrain modeling; Principles of GNSS, inertial and multi-sensor integrated navigation systems; GNSS applications; Spectrum systems for GNSS; GNSS devices for weak signals; Wireless positioning technologies and applications; Modern tracking systems; Satellite navigation (GPS, Galileo, augmentation systems); Visibility analysis of a satellite, or satellite constellation

Remote sensing

Remote Sensing Technology and Geographic Information System (GIS); Remote Sensing Computation Applications; Optical Communication for Remote Sensing; High Performance Computing for Remote Sensing; Lidar Technology in Remote Sensing; Satellites and Remote Sensing; Geolocation of Radio Frequency Signals; Synthetic Aperture Radar (SAR) Image Process Modeling; Quality of Remote Data (spatial, spectral, radiometric and temporal resolutions); Remote Sensing Tools and Software; Sensor Calibration; Applications of Remote Sensing; Remote Sensing for Solar Energy Forecasting; Turbulence Modeling and Simulation; Climate Prediction Models

Satellite/space communications-based applications

Satellite-based disaster recovery; Satellite-based large-scale sensor-networks; Satellite-based power grids monitoring and control; Satellite-based remote eHealth; Satellite based alarm systems; Satellite-based sensing and data mining; Satellite-based weather forecast; Satellite-based earthquake surveillance; Satellite-based environmental surveillance

Radar systems

Radar systems analysis and modeling; Radar and signal processing; Short range FM radar; Millimeter-wave radar targets; Radar reflectivity (land and sea); Radar system performance modeling; Interception and analysis of radar signal

Antennas

Antenna design and communications; Adaptive antenna and phased arrays for radar and communications; Smart antennas; Radioware propagation and antennas for personal communications; Dielectric resonator antennas; Multiantenna wireless communications systems; Antennas and propagation for body-centric wireless communications; Ultrawideband antennas; Mobile antennas systems; Parasitic antennas for cellular communications

Radio

Radio resource management and dynamic spectrum sharing; Platforms and architectures for cognitive radio; Access schemes; Wireless network co-existence; Ultra-Wideband cognitive radio system; Interference metric modeling; Beamforming and MIMO for interference avoidance; Anti-jamming channel coding; QoS provisioning and MAC protocols; Self-organizing mesh networks and autonomic communications; Multi-resolution channel sensing algorithms

Warfare

Electronic warfare target location systems; Statistical multisource-multitarget information fusion; Multisensor data fusion; Multimodel surveillance; Military applications

Galaxy-scale satellite communications and exploration missions

Planetary exploration management; Space astronomy advances; Solar-terrestrial sciences; Space life sciences and mission monitoring; Space physical sciences and satellite communications; Operational space medicine; Human exploitation of space resources

LACTLD Illegal Content Workshop Invitation

ILLEGAL CONTENT
WORKSHOP2021

Online
November 29 to December 1

DEAR ALL,
We are pleased to invite you to participate in the fourth edition of our Illegal Content Workshop, which will be held on November 29-30 and December 1, 2021 virtually.

The event will offer training to judges, prosecutors and law enforcement agencies (LEA's) from countries in the region focused on Internet operation, online abuses and judicial investigation, the Budapest Convention and effective mechanisms for collaboration between actors. The Workshop will have Spanish, English and Portuguese interpretation.

Please find below the full agenda of sessions and register at the Zoom link. Once you register, you will receive an email with login information. In addition, we kindly invite you to check your local schedule for the start of the event in the list below.
 

More information about the main objectives of the Illegal Content Workshop and its previous editions can be found at https://icflac.org/.

We look forward to your participation.

SPACOMM 2022 || April 24 – 28, 2022 – Barcelona, Spain

CALL FOR PAPERS, TUTORIALS, PANELS

SPACOMM 2022, The Fourteenth International Conference on Advances in Satellite and Space Communications

General page: https://www.iaria.org/conferences2022/SPACOMM22.html

Submission page: https://www.iaria.org/conferences2022/SubmitSPACOMM22.html

Event schedule: April 24 – 28, 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: January 10, 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

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

Call for Papers: https://www.iaria.org/conferences2022/CfPSPACOMM22.html

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

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

Signal processing in telecommunications

Signal processing theory and practice; Advances in modulation and coding; Image and multidimensional signal processing; Signal filter design and structures; Multirate filtering, filter banks, and adaptive filters; Fast signal processing algorithms; Nonlinear signals and systems; Nonuniform transformation; 2D nonuniform DFT; Fast algorithm of NDFT; Advanced image/video coding; Advanced prediction techniques; Signal detection and reconstruction; Spectral estimation and time-frequency analysis; Higher order spectrum analysis; Parameter estimation; Array signal processing; Statistical signal analysis; Signal and system modeling; Cyclostationary signal analysis; Active noise control, active noise reduction and echo cancellation; Psychoacoustics and room acoustics; Signal processing for music; Binaural systems and multidimensional signal systems; Geophysical and seismic signal processing; Nonlinear interpolation/resampling; Extensions to wavelet based coding (x-lets); Low complexity image/video compression; Multiple resolution signal processing; New approach to digital signal processing; Compression of random data; Recompression of compressed data; 2D projection of 3D data; Stereo data matching; Emerging applications requiring new compression tools; Unified compression and recognition; H.264 and latest video coding standards; Latest audio coding standards

Remote spatial sensing

Remote sensing technology and geographic information system (GIS); Remote sensing computation applications; Optical communication for remote sensing; High performance computing for remote sensing; Lidar technology in remote sensing; Satellites and remote sensing; Geolocation of radio frequency signals; Synthetic aperture radar (SAR) image process modeling; Quality of remote data (spatial, spectral, radiometric and temporal resolutions); Remote sensing tools and software; Sensor calibration; Applications of remote sensing; Remote sensing for solar energy forecasting; Turbulence modeling and simulation; Climate prediction models

Global coverage via 6G/7G:  integrating 5G and IoT with satellite networks

High data rates; Ultra fast access of Internet; Full home automation and home applications; Smart homes and cities; Global energy sources; Space and defense 6G-oriented technologies; Integrated satellite-to-satellite communications; Monitoring/driving natural calamities; Sea-to-Space communications; Nano antennas; Fly sensors; Point-to-point wireless communication networks;  Super-fast broadband signals; High speed optical broadcasting fibers lines; Space roaming; Earth observation (backhaul link); Space observation (backhaul link); Small cell (cover zones without Internet); Space-IoT (monitoring sensors);  Standard adaptation to 6G for handoff and roaming challenges (Global Position System (GPS), Galileo, COMPASS, GLONASS)

Antenna/Radar signal processing

Signal detection and estimation; RF engineering; Active filters; Analog and digital filters; Oscillator circuit design; Circuit design for high-speed frequency synthesis; Statistical and adaptive signal processing; Computational electrodynamics; Signal processing for sensing systems; RFID and MMIC design principles and applications; Microstrip circuit design and applications; Design and analysis of microwave radiometer systems; Modem microwave; System-in-package RF design and applications

Satellite and space communications

Earth-space communications; MIMO satellite communications; Hybrid satellite and terrestrial networks; Access Schemes; Demand Assignment Multiple Access (DAMA); Cross-layer air interface design; Channel models; Navigation services; Reliable multicast protocols; Transport protocol performance over satellite; IP over satellite Routing protocols; Game theory applications in satellite networks; Onboard switching and processing technologies; QoS and performance; Call admission control schemes; Dynamic bandwidth allocation; Adjacent and terrestrial interference; Fade mitigation techniques; Advanced channel modeling; Security, privacy, and trust; Radio resource management; IT application in Space Communications; Standards activities

Delay Tolerant Networking

Use of DTN protocols in space missions; DTN for PI/instrument connectivity; Routing for DTNs; Performance and reliability of DTN protocols

Satellites and nano-satellites

Satellite communications (hybrid satellites and terrestrial networks); Special protocols for nano-satellites; Onboard processing technology; Interplanetary communications (spatial mission analysis, in-flight experiences, delay tolerant networking [DTN]); Nano satellites and nano-rockets; Fundamental of nano-satellites communications; New technologies specific for small satellites; Applications (earth observation, science, telecommunications, navigation); New technologies; Satellite constellation design

Geographic Information and applications

Geographic information systems; Earth observation; Global positioning systems; Digital terrain modeling; Principles of GNSS, inertial and multi-sensor integrated navigation systems; GNSS applications; Spectrum systems for GNSS; GNSS devices for weak signals; Wireless positioning technologies and applications; Modern tracking systems; Satellite navigation (GPS, Galileo, augmentation systems); Visibility analysis of a satellite, or satellite constellation

Remote sensing

Remote Sensing Technology and Geographic Information System (GIS); Remote Sensing Computation Applications; Optical Communication for Remote Sensing; High Performance Computing for Remote Sensing; Lidar Technology in Remote Sensing; Satellites and Remote Sensing; Geolocation of Radio Frequency Signals; Synthetic Aperture Radar (SAR) Image Process Modeling; Quality of Remote Data (spatial, spectral, radiometric and temporal resolutions); Remote Sensing Tools and Software; Sensor Calibration; Applications of Remote Sensing; Remote Sensing for Solar Energy Forecasting; Turbulence Modeling and Simulation; Climate Prediction Models

Satellite/space communications-based applications

Satellite-based disaster recovery; Satellite-based large-scale sensor-networks; Satellite-based power grids monitoring and control; Satellite-based remote eHealth; Satellite based alarm systems; Satellite-based sensing and data mining; Satellite-based weather forecast; Satellite-based earthquake surveillance; Satellite-based environmental surveillance

Radar systems

Radar systems analysis and modeling; Radar and signal processing; Short range FM radar; Millimeter-wave radar targets; Radar reflectivity (land and sea); Radar system performance modeling; Interception and analysis of radar signal

Antennas

Antenna design and communications; Adaptive antenna and phased arrays for radar and communications; Smart antennas; Radioware propagation and antennas for personal communications; Dielectric resonator antennas; Multiantenna wireless communications systems; Antennas and propagation for body-centric wireless communications; Ultrawideband antennas; Mobile antennas systems; Parasitic antennas for cellular communications

Radio

Radio resource management and dynamic spectrum sharing; Platforms and architectures for cognitive radio; Access schemes; Wireless network co-existence; Ultra-Wideband cognitive radio system; Interference metric modeling; Beamforming and MIMO for interference avoidance; Anti-jamming channel coding; QoS provisioning and MAC protocols; Self-organizing mesh networks and autonomic communications; Multi-resolution channel sensing algorithms

Warfare

Electronic warfare target location systems; Statistical multisource-multitarget information fusion; Multisensor data fusion; Multimodel surveillance; Military applications

Galaxy-scale satellite communications and exploration missions

Planetary exploration management; Space astronomy advances; Solar-terrestrial sciences; Space life sciences and mission monitoring; Space physical sciences and satellite communications; Operational space medicine; Human exploitation of space resources

Submission deadline extended | Get high-quality reviewers, fair recognition, and faster publishing with EAI Community Review

Web version
Forward

May 14 – 15, 2022 | Nanjing, People's Republic of China
Submission Deadline: December 20, 2021 (extended)

SCOPE

The AC3 conference intends to bring together researchers and practitioners from all areas of applied cryptography in computer and communication systems. The conference encourages submissions on all technical aspects of applied cryptography, including but not limited to cryptographic algorithms, protocols, implementations, standards and practices, and applications of cryptography in computer, information, and system security.

We encourage submissions on the utilization of cryptographic technologies to solve security problems in real-world systems, including cloud services, the Internet of Things, cyber-physical systems, distributed systems, edge computing, information-centric networks, databases, data centers, etc.

We are pleased to invite you to submit your paper to AC3 2022. Submissions should be in English, following the Springer formatting guidelines (see Submission). 

Submit Paper

Read moreCall for Papers

Watch the full recording of EAI AC3 2021 livestream and get involved in this edition! 

Publication

All registered papers will be submitted for publishing by Springer and made available through SpringerLink Digital Library.

Proceedings will be submitted for inclusion in leading indexing services, such as Web of Science, Compendex, Scopus, DBLP, EU Digital Library, Google Scholar, IO-Port, MathSciNet, Inspec, and Zentralblatt MATH.

Authors of selected papers will be invited to submit an extended version to:

All accepted authors are eligible to submit an extended version in a fast track of:

Additional publication opportunities:

Important dates

Full Paper Submission Deadline: December 20, 2021 (extended)

Notification Deadline: JANUARY 25, 2022

Camera-ready deadline: FEBRUARY 15, 2022

Conference dates: MAY 14 – 15, 2022

CALL FOR WORKSHOP PAPERS

The Second International Workshop on Security for Internet of Things (IOTS 2022)

It’s known to all that the security is a critical element in IoT system. Especially in recently years, more and more devices have been used in daily life. IoT security has already received widespread attention in recently years. Many scholars have carried out a lot of research work. However, it is often neglected in the development of systems. In the process of IoT practice, there are still a lot of challenging security issues. Wide range of IoT applications are undeniable. Security is essential to realize the full potential of the IoT. The workshop aims to bring together academic and industrial researchers to discuss the challenges and recent results in recently years.

Workshop papers submission deadline: December 30, 2021

Learn more & submit

Workshop Chairs: Jiahai Yang (Tsinghua University, China); Fu Chen (Central University of Finance and Economics, China); Tao Lin (Amazon, USA)

Organizing committee

Honorary Chair
Yongbiao Liu – Jinling Institute of Technology, China
General Chairs
Bo Luo – The University of Kansas, USA 
Zheng Zhang – Jinling Institute of Technology, China
Technical Program Committee Chairs
Jingqiang Lin – University of Science and Technology of China, China
Qiang Tang – The University of Sydney, Australia

See the full Organizing Committee and Technical Program Committee.

Special Issue–“Survey in Deep Learning for IoT Applications”

Special Issue:”Survey in Deep Learning for IoT Applications”
Deadline for manuscript submissions: 31 December 2022
Website: https://www.mdpi.com/journal/computers/special_issues/DL_iot
Guest Editor: Dr. Rytis Maskeliunas, Prof. Dr. Robertas Damaševičius,
University of Technology, Kaunas, Lithuania.

=============
Dear Colleagues,

In recent years, methods and dedicated communication channels of the
Internet of Things (IoT) have been developed to detect and collect all
kinds of information to deliver a variety of advanced services and
applications, generating huge amounts of data, constantly received from
millions of IoT sensors deployed around the world. The techniques behind
deep learning now play an important role in desktop and mobile
applications and are now entering the resource-constrained IoT sector,
enabling the development of more advanced IoT applications, with proven
results in a variety of areas already, including image recognition,
medical data analysis, information retrieval, language recognition,
natural language processing, indoor location, autonomous vehicles, smart
cities, sustainability, pollution, bioeconomy, etc. This Special Issue
focuses on the research and application of the Internet of Things,
focusing on multimodal signal processing, sensor extraction, data
visualization and understanding, and other related topics, answering the
question of which deep neural network structures can efficiently process
and integrate multimodal sensor input data for various IoT applications,
how to adapt current and develop new designs to help to reduce the
resource cost of running deep learning models for the efficient
deployment on IoT devices, how to correctly calculate reliability
measurements in deep learning predictions for IoT applications within
limited and constrained calculation requirements, how to reduce the use
of labeled IoT for needs linked to learning signal data considering
operational limitations and other key areas.

Keywords
Internet of Things
Deep learning
Data fusion
Multimodal signal processing
Data processing and visualization

Prof. Dr. Robertas Damaševičius
Dr. Rytis Maskeliunas
Guest Editors
============

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