Difference between revisions of "Telecommunications"
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[http://www.youtube.com/results?search_query=defense+dod+darpa+disa+Virtualization+dynamic+Spectrum+sharing+artificial+intelligence+deep+machine+learning+ai Youtube search...] | [http://www.youtube.com/results?search_query=defense+dod+darpa+disa+Virtualization+dynamic+Spectrum+sharing+artificial+intelligence+deep+machine+learning+ai Youtube search...] | ||
[http://www.google.com/search?q=defense+dod+darpa+disa+Virtualization+dynamic+Spectrum+sharing+artificial+intelligence+deep+machine+learning+ai ...Google search] | [http://www.google.com/search?q=defense+dod+darpa+disa+Virtualization+dynamic+Spectrum+sharing+artificial+intelligence+deep+machine+learning+ai ...Google search] | ||
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<b>5G & Spectrum Sharing Panel, Mobile World Congress LA 2019 | <b>5G & Spectrum Sharing Panel, Mobile World Congress LA 2019 | ||
</b><br>Industry and government leaders discuss the SC2 Championship, how this relates to other spectrum sharing efforts being pursued by industry leaders and regulators, and look forward to the future of 5G and Spectrum Sharing technologies. Moderator: John Chapin, SC2 Subject Matter Expert Panelists: - Paul Tilghman, SC2 Program Manager, DARPA - Ali Kyayrallah, Engineering Director, Ericsson Research - John Smee - VP of Engineering, Qualcomm Research - Julius Knapp - Chief, Office of Engineering and Technology, FCC - Fred Moorefield - Acting Deputy CIO - C4IIC, DoD | </b><br>Industry and government leaders discuss the SC2 Championship, how this relates to other spectrum sharing efforts being pursued by industry leaders and regulators, and look forward to the future of 5G and Spectrum Sharing technologies. Moderator: John Chapin, SC2 Subject Matter Expert Panelists: - Paul Tilghman, SC2 Program Manager, DARPA - Ali Kyayrallah, Engineering Director, Ericsson Research - John Smee - VP of Engineering, Qualcomm Research - Julius Knapp - Chief, Office of Engineering and Technology, FCC - Fred Moorefield - Acting Deputy CIO - C4IIC, DoD | ||
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| + | = Software-Defined Enterprise (SDE) / Software-Defined Networking (SDN) = | ||
| + | * [http://fedtechmagazine.com/article/2018/09/why-disa-has-embraced-sdn-pentagon-perfcon Why DISA Has Embraced SDN for the Pentagon | Phil Goldstein FedTech] ...Software-Defined Networking (SDN) makes it easier to provision networks for the Defense Department and also enhances network security. | ||
| + | * [http://www.researchgate.net/publication/328932880_Artificial_Intelligence_Enabled_Software_Defined_Networking_A_Comprehensive_Overview Artificial Intelligence Enabled Software Defined Networking: A Comprehensive Overview | Majd Latah and Levent Toker] | ||
| + | * [http://rule11.tech/sdn-ai-and-devops/ SDN, AI, and DevOps | Russ White - Rule11 Reader] | ||
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| + | <youtube>KGBNsvih20g</youtube> | ||
| + | <b>4TH Estate Network Optimization - Defense Enclave Services (DES) | ||
| + | </b><br>USDISA The Fourth Estate Network Optimization will modernize the DoD IT architecture, consolidate networks, reduce costs, improve business practices and mitigate operational and cyber risks. The 14 organizations onboarding between fiscal years 2020-2025 onto DoDNet. | ||
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| + | <youtube>VMRlt_r6bO4</youtube> | ||
| + | <b>ENCOR - SD-WAN Principles | ||
| + | </b><br>It's time for the ENCOR 1.4 blueprint - The Principles of SD-WAN! In this video, we explore the problems with traditional WANs, why SD-WAN is a game-changer, and how Cisco's SD-WAN solution is architected. | ||
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| + | <youtube>sQ__iIAl2lM</youtube> | ||
| + | <b>Artificial Intelligence (AI) on Software-Defined Network (SDN) | ||
| + | </b><br>See how DCConnect makes use of Artificial Intelligence (AI) to apply on Software-Defined Networking (SDN) so as to improve network planning and facilitate efficient network utilization. Let’s see how DCConnect helps our customers to drive their network cost down with our solution on multi-point Carrier Ethernet Orchestration. | ||
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| + | <youtube>VZMUR5RN-ig</youtube> | ||
| + | <b>Cisco's Intent-Based Networking and the Journey to Software Defined Networks | ||
| + | </b><br>Expert Cisco instructor Chris Olsen explores Cisco's Intent-Based Networking and the Journey to Software Defined Networks. As organizations migrate to all-digital solutions in areas like Cloud, Mobility, and IoT, the strength of network will be more critical than ever. Cisco's Intent-Based Networks and SDN solutions will enable your organization to meet the demands of tomorrow's networks including programmability and automation. To learn more about Cisco Software-Defined Networking (SDN) Training, visit http://ter.li/okom270 | ||
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Revision as of 11:59, 8 October 2020
Youtube search... ...Google search
- Case Studies
- Ericsson launches unique AI functionality to boost radio access networks
- Deepsig pioneering the application of deep learning to wireless
- How Machine Learning Is Creating New Opportunities In The Telecommunications Industry | Julie Stoughton - Digitalist Magazine
- Top 10 Data Science Use cases in Telecom | Igor Bobriakov - Medium
Contents
Cognitive Radio (CR) / Software-defined radio (SDR)
Software-defined radio (SDR) is a radio communication system where components that have been traditionally implemented in hardware (e.g. mixers, filters, amplifiers, modulators/demodulators, detectors, etc.) are instead implemented by means of software on a personal computer or embedded system. Software radios have significant utility for the military and cell phone services, both of which must serve a wide variety of changing radio protocols in real time. In the long term, software-defined radios are to become the dominant technology in radio communications. SDRs, along with software defined antennas are the enablers of the cognitive radio.
GNU Radio
is a free & open-source software development toolkit that provides signal processing blocks to implement software radios. It can be used with readily-available low-cost external RF hardware to create software-defined radios, or without hardware in a simulation-like environment.
Deepwave Digital Systems
Enabling deep learning and AI at the edge of wireless systems. GPUs are extremely well suited for processes that are highly parallel. The Fast Fourier Transform (FFT) is one of the most common techniques in signal processing and happens to be a highly parallel algorithm. In this blog post the Deepwave team walks you though how to leverage the embedded GPU built into the AIR-T to perform high-speed FFTs without the computational bottleneck of a CPU and without having to experience the long development cycle associated with writing VHDL code for FPGAs. By leveraging the GPU on the AIR-T, you get the best of both worlds: fast development time and high speed processing. A familiar tool to anyone working in the wireless domain, GNU Radio allows signal processing experts to tie together blocks of functionality using an intuitive GUI. Many of the “in the weeds” details regarding the software implementation are well abstracted so the user can focus on the algorithm instead.Once an algorithm has been optimized (or a pre-trained algorithm has been downloaded by a 3rd party), the user will reference it in Deepwave’s GR-WAVELEARNER software that provides a TensorRT Inference block for GNU Radio Companion (GRC)
Machine learning solving practical problems in Communications
5G
YouTube search... ...Google search
- Internet of Things (IoT)
- 3rd Generation Partnership Project (3GPP) ...unites [Seven] telecommunications standard development organizations: ARIB, ATIS, CCSA, ETSI, TSDSI, TTA, TTC
- Internet Engineering Taskforce (IETF)
- What is 5G? | NIST
- European Telecommunications Standards Institute (ETSI) ISG Network Functions Virtualisation (NFV) - ETSI Industry Specification Group
- China Global Television Network (CGTN) | Wikipedia
- 5G + Cloud + AI: Huawei Works with Carriers to Power New ICT Infrastructure | Huawei - PR Newswire
- Armed Forces Communications and Electronics Association ...communications, information technology, intelligence and security
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5G Security
YouTube search... ...Google search
Three-step approach to reach a high level of intelligent security management. How to master E2E network security when introducing 5G core | Kari-Pekka Perttula - Ericsson
- Dynamic: Introduce automated security policy configuration and compliance monitoring
- Cognitive: Automated threat and vulnerability detection assisted with ML /AI
- Intelligent: Repeatable, adaptive and holistic security management with threat intelligence. This provides end-to-end visibility for business-related security risks, and actions can be directed via automated workflows to mitigate risks faster.
Threat Model: STRIDE | Wikipedia The threats are:
- Spoofing
- Tampering
- Repudiation
- Information disclosure (breach or data leak)
- Denial of service
- Elevation of privilege]
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5G Testing
YouTube search... ...Google search
- Model_Monitoring
- [1] DOD Announces New Locations for Additional 5G Testing, Experimentation | C. Todd Lopez - DOD News
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Virtualization - Dynamic Spectrum Sharing (DSS)
Youtube search... ...Google search ...Google News
- Telecommunications
- Computer Networks
- If DARPA Has Its Way, AI Will Rule the Wireless Spectrum | Paul Tilghman
- The DARPA Spectrum Collaboration Challenge (SC2) ensure that the exponentially growing number of military and civilian wireless devices will have full access to the increasingly crowded electromagnetic spectrum.
- How to Know if You’re Ready to Deploy a Dark Fiber Network | Rob Coenen - Lightwave ...unused or under-utilized fiber infrastructure (including fibers, cabling, and repeaters) that was laid as part of a hedge against exponential growth in data use.
- DISA wants ideas on dynamic spectrum sharing | Lauren C. Williams - GCN ...solutions that could speed spectrum sharing capabilities, what the legal and national security challenges are and what is involved in owning and operating an independent domestic 5G network
Spectrum Sharing utilizes virtualization to partition optical spectrum
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Software-Defined Enterprise (SDE) / Software-Defined Networking (SDN)
- Why DISA Has Embraced SDN for the Pentagon | Phil Goldstein FedTech ...Software-Defined Networking (SDN) makes it easier to provision networks for the Defense Department and also enhances network security.
- Artificial Intelligence Enabled Software Defined Networking: A Comprehensive Overview | Majd Latah and Levent Toker
- SDN, AI, and DevOps | Russ White - Rule11 Reader
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