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on 07-11-2023
This year’s edition of MOBISLICE will shed a transversal multi-disciplinary look at what have been the cutting-edge prospects and installments for enabling network slicing. Inspired by the recent trials in 5G deployments, their proposition for Beyond-5G capabilities, and the current early progression work on 6G, MOBISLICE will showcase evidence of the pursuit of definite solutions towards this utilization capability paradigm.
This workshop will be held in Dresden, Germany, on November 7, 2023.
The MOBISLICE workshop focuses, but is not limited to, the following topics targeting slicing:
Vertical use cases and architectures evaluation
-- Slices in constrained environments (IoT, Edge, etc.)
-- Factories of the future use cases including manufacturing automation and process automation
-- Automotive service and ITS scenarios
-- Telco Operator and enterprise-based environments
-- Smart-X slice mobility
-- Reliability and security
-- Experimental, real trials and their impact on vertical performance
Network, Computation, and other enablers for MOBISLICE
-- Main operations and API
-- Inter- and intra-slice mobility procedures
-- Lifecycle management and impact
-- Heterogeneous access convergence or abstraction
-- High availability and reliability techniques
-- Experimental and real trials
Standardization efforts and activities for MOBISLICE
-- Status and progress in 3GPP/ETSI/IETF and other SDOs and vertical associations such as 5G-ACIA/5GAA
-- Proposals and standardization direction for advanced slicing
-- SDN/NFV initiatives
-- Slice-enhanced Networking and telecommunication protocols
Beyond 5G and 6G slicing
-- Disruptive architectures
-- Zero-touch slice performance
-- Experimental and real trials
-- New scenarios
IMPORTANT DATES:
Paper submission: 18th September 2023
Notification of Acceptance: 3rd October 2023
Camera-ready Submission: 9th October 2023
Workshop Chairs:
Daniel Corujo (University of Aveiro and Instituto de Telecomunicações, Portugal)
Augusto Neto (Federal University of Rio Grande do Norte, Brazil)
Seil Jeon (Telia Company, Sweden)
Check for more submission information at the workshop’s website:
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on 03-11-2023
NanoMEMS exploits the convergence between nanotechnology and microelectromechanical systems (MEMS) brought about by advances in the ability to fabricate nanometer-scale electronic and mechanical device structures. While the “Nano” aspect of this field is still in its early stages and is not expected to reach maturity until well into the 21st century, its “MEMS” aspect is a topic of much current and near-term impact in, for instance, inertial sensing, biomedicine, optical, RF/Wireless communications, and energy harvesting. In this context, we will begin this talk by discussing the fundamentals of NanoMEMS, in particular, as it relates to its most speculative and futuristic paradigms and applications, and then will focus on emerging applications that are poised to enable the exploding Internet of Things (IoT) paradigm.
Bio:
Héctor J. De Los Santos received the Ph.D. degree from the School of Electrical Engineering, Purdue University, West Lafayette, IN, in 1989. Prior to founding NanoMEMS in 2002, he spent two years as Principal Scientist at Coventor, Inc., Irvine, CA, and eleven years at Hughes Space and Communications Company, Los Angeles, CA, where he served as Principal Investigator and Director of the Future Enabling Technologies IR&D Program. Under this program, he pursued research in the areas of RF MEMS, Quantum Functional Devices and Circuits, and Photonic Bandgap Devices and Circuits. He holds over 30 US and European patents and is the author of bestseller textbooks, including Introduction to Microelectromechanical (MEM) Microwave Systems (1999), now in Artech House' IPF® (In-PrintForever®) series, Principles and Applications of NanoMEMS Physics (Springer, 2005), and Understanding Nanoelectromechanical Quantum Circuits and Systems (NEMX) for the Internet of Things (IoT) Era, (River Publishers, 2019). His most recent book is Understanding Communications Systems Principles ― A Tutorial Approach (River Publishers, 2021).
This lecture will have live transmission. Find the Zoom link below:
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