Difference between revisions of "Telecommunications"
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<b>5G Life Cycle Automation with AI-Based Continuous Testing | <b>5G Life Cycle Automation with AI-Based Continuous Testing | ||
</b><br>B-Yond and Keysight Technologies discuss 5G Life Cycle Automation with AI-Based Continuous Testing and Validation. Key insights about how to enable full end to end life cycle automation and testing, with a practical example of a customer deployment for 5G. | </b><br>B-Yond and Keysight Technologies discuss 5G Life Cycle Automation with AI-Based Continuous Testing and Validation. Key insights about how to enable full end to end life cycle automation and testing, with a practical example of a customer deployment for 5G. | ||
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| + | == <span id="Virtualization - Dynamic Spectrum Sharing (DSS)"></span>Virtualization - Dynamic Spectrum Sharing (DSS) == | ||
| + | [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://news.google.com/search?q=spectrum+AI ...Google News] | ||
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| + | * [[Telecommunications]] | ||
| + | ** [[Telecommunications#Cognitive Radio (CR) / Software-defined radio (SDR)|Cognitive Radio (CR) / Software-defined radio (SDR)]] | ||
| + | ** [[Telecommunications#5G|5G]] | ||
| + | * [[Computer Networks]] | ||
| + | ** [[Computer Networks#Cognitive Network (CN)|Cognitive Network (CN)]] | ||
| + | ** [[Computer_Networks#Software-defined Network (SDN) / Software-defined Wide Area Network (SD-WAN)|Software-defined Network (SDN) / Software-defined Wide Area Network (SD-WAN)]] | ||
| + | ** [[Containers; Docker, Kubernetes & Microservices]] | ||
| + | ** [[Self-Organizing]] | ||
| + | * [http://spectrum.ieee.org/telecom/wireless/if-darpa-has-its-way-ai-will-rule-the-wireless-spectrum If DARPA Has Its Way, AI Will Rule the Wireless Spectrum | Paul Tilghman] | ||
| + | * [http://www.spectrumcollaborationchallenge.com/ 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. | ||
| + | * [http://www.lightwaveonline.com/network-design/high-speed-networks/article/16675796/how-to-know-if-youre-ready-to-deploy-a-dark-fiber-network 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. | ||
| + | * [http://gcn.com/articles/2020/09/22/disa-spectrum-sharing.aspx 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 | ||
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| + | Spectrum Sharing utilizes virtualization to partition optical spectrum | ||
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| + | <youtube>juq4Qi3tcfQ</youtube> | ||
| + | <b>R&S Thirty-Five: Introduction to 5G Dynamic Spectrum Sharing | ||
| + | </b><br>5G and LTE cooperating and sharing the same frequency. Is this possible and what are the technology settings and adjustments to make this real? Check out our today´s webcast and find out what Andreas Rößler, Technology Manager at Rohde & Schwarz thinks about it! | ||
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| + | <youtube>GIsqH0KRYe8</youtube> | ||
| + | <b>Understanding Dynamic Spectrum Sharing (DSS) | ||
| + | </b><br>Keysight EEsof EDA This video introduces dynamic spectrum sharing also known as LTE 5G coexistence and looks at the techniques adapted by 5G NR in order to coexist with LTE. There is a demo of verifying a DSS implementation using Keysight’s PathWave Signal Generation (N7631C, N7624C) and PathWave Vector Signal Analysis (89600 VSA) software. | ||
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| + | <youtube>Fa0hIC1HCh4</youtube> | ||
| + | <b>Stanford Seminar - The Future of Wireless Communications Hint: It's not a linear amplifier | ||
| + | </b><br>EE380: Computer Systems Colloquium Seminar Speaker: Douglas Kirkpatrick is the co-founder and CEO of Eridan Communications ...The future of wireless communications will demand leaps in spectrum efficiency, bandwidth efficiency, and power efficiency for successful technology deployments. Key applications that will fundamentally change how we interact with wireless systems and the demands we place on wireless technologies include Dynamic Spectrum Access Networks, massive MIMO, and the evasive unicorn of the "universal handset". While each of these breakthrough "system" capabilities make simultaneous demands of spectrum efficiency, bandwidth efficiency, and power efficiency, the current suite of legacy technologies forces system designers to make undesirable trade-offs because of the limitations of linear amplifier technology. ...Dr. Kirkpatrick was a Program Manager and Chief Scientist at the Defense Advanced Research Projects Agency (DARPA). While he was at DARPA he started and managed programs that, among other things, developed and deployed the first LED flashlights, started and validated the DOD path to bio-renewable jet fuel, developed and demonstrated ultra-high efficiency solar cells, developed and demonstrated full 3d dynamic holographic displays, and developed and demonstrated portable tools for the rapid de-novo synthesis of DNA up to 10,000 base pairs long. In addition to his DARPA role he was simultaneously the Senior Technologist for Technology Productization for the Undersecretary for Acquisition, Technology, and Logistics in the Department of Defense... Dr. Kirkpatrick is a Fellow of the American Physics Society, a Member of the IEEE, and a Member of the Materials Research Society. Dr. Kirkpatrick holds a BS degree in Physics and Mathematics (1980) from the College of William and Mary and a Ph.D. in Physics from M.I.T. (1988). | ||
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| + | <youtube>hRtdMI-VNtk</youtube> | ||
| + | <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 | ||
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Revision as of 11:56, 8 October 2020
Youtube search... ...Google search
- Case Studies
- Virtualization - Dynamic Spectrum Sharing (DSS)
- 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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