Difference between revisions of "Computer Networks"
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|description=Helpful resources for your journey with artificial intelligence; videos, articles, techniques, courses, profiles, and tools | |description=Helpful resources for your journey with artificial intelligence; videos, articles, techniques, courses, profiles, and tools | ||
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| − | [ | + | [https://www.youtube.com/results?search_query=-neural+cognitive+network+intent+ai+computer+SDN+SD-WAN+Functions+Virtualization+NFV+artificial+intelligence+deep+machine+learning Youtube search...] |
| − | [ | + | [https://www.google.com/search?q=-neural+cognitive+network+intent+ai+computer+SDN+SD-WAN+Functions+Virtualization+NFV+artificial+intelligence+deep+machine+learning ...Google search] |
* [[Case Studies]] | * [[Case Studies]] | ||
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= Cognitive Network (CN) = | = Cognitive Network (CN) = | ||
| − | * [ | + | * [https://www.infinera.com/blog/the-five-steps-to-cognitive-networking-part-1-of-2/tag/software-and-automation/ The Five Steps to Cognitive Networking | Mike Capuano - Infinera] |
In communication networks, cognitive network is a new type of data network that makes use of cutting edge technology from several research areas to solve some problems current networks are faced with. Cognitive network is different from cognitive radio as it covers all the layers of the OSI model. [https://en.wikipedia.org/wiki/Cognitive_network Cognitive Network | Wikipedia] | In communication networks, cognitive network is a new type of data network that makes use of cutting edge technology from several research areas to solve some problems current networks are faced with. Cognitive network is different from cognitive radio as it covers all the layers of the OSI model. [https://en.wikipedia.org/wiki/Cognitive_network Cognitive Network | Wikipedia] | ||
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<youtube>sTIPGCY_SUg</youtube> | <youtube>sTIPGCY_SUg</youtube> | ||
| − | + | https://www.infinera.com/facade/uploads/2017/03/Cognitive-Networking-1-Image.png | |
| − | + | https://www.infinera.com/facade/uploads/2017/03/Instant-Network-Blog-1-768x432.png | |
| − | + | https://www.infinera.com/facade/uploads/2017/03/Instant-Network-Blog-3-768x432.png | |
= Intent-Based Networking (IBN) = | = Intent-Based Networking (IBN) = | ||
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= <span id="Software-Defined Enterprise (SDE) / Software-Defined Networking (SDN) / Software-defined Wide Area Network (SD-WAN)"></span>Software-Defined Enterprise (SDE) / Software-Defined Networking (SDN) / Software-defined Wide Area Network (SD-WAN) = | = <span id="Software-Defined Enterprise (SDE) / Software-Defined Networking (SDN) / Software-defined Wide Area Network (SD-WAN)"></span>Software-Defined Enterprise (SDE) / Software-Defined Networking (SDN) / Software-defined Wide Area Network (SD-WAN) = | ||
| − | [ | + | [https://www.youtube.com/results?search_query=Network+Functions+Virtualization+NFV+intent+ai+computer+SDN+SD-WAN+artificial+intelligence+deep+machine+learning+ai Youtube search...] |
| − | [ | + | [https://www.google.com/search?q=Network+Functions+Virtualization+NFV+intent+ai+computer+SDN+SD-WAN+artificial+intelligence+deep+machine+learning+ai ...Google search] |
| − | * [ | + | * [https://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] |
| − | * [ | + | * [https://rule11.tech/sdn-ai-and-devops/ SDN, AI, and DevOps | Russ White - Rule11 Reader] |
* [[Defense#US Defense Information Systems Agency (DISA)|Defense Information Systems Agency (DISA)]] | * [[Defense#US Defense Information Systems Agency (DISA)|Defense Information Systems Agency (DISA)]] | ||
| − | * [ | + | * [https://www.lanner-america.com/blog/use-cases-machine-learning-sd-wan/ 3 Use Cases for Machine Learning Within SD-WAN | Lanner] |
| − | * [ | + | * [https://blogs.juniper.net/en-us/engineering-simplicity/sdn-ai-and-devops SDN, AI and DevOps | Russ White - Juniper] |
| − | Virtual network architecture that allows enterprises to leverage any combination of transport services to securely connect users to applications. SD-WAN simplifies the management and operation of a WAN by decoupling the networking hardware from its control mechanism. This concept is similar to how software-defined networking implements virtualization technology to improve data center management and operation. [ | + | Virtual network architecture that allows enterprises to leverage any combination of transport services to securely connect users to applications. SD-WAN simplifies the management and operation of a WAN by decoupling the networking hardware from its control mechanism. This concept is similar to how software-defined networking implements virtualization technology to improve data center management and operation. [https://en.wikipedia.org/wiki/SD-WAN Wikipedia] |
* WAN Optimization | * WAN Optimization | ||
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<b>Cisco's Intent-Based Networking and the Journey to Software Defined Networks | <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 | + | </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 https://ter.li/okom270 |
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<youtube>SjdHoYbM7yM</youtube> | <youtube>SjdHoYbM7yM</youtube> | ||
<b>Evolution of SDN in [[Google]]’s Network Infrastructure- Vijoy Pandey | <b>Evolution of SDN in [[Google]]’s Network Infrastructure- Vijoy Pandey | ||
| − | </b><br>OpenDaylight Project Evolution of Software Defined Networking in Google’s Network Infrastructure - Vijoy Pandey, [[Google]] | + | </b><br>OpenDaylight Project Evolution of Software Defined Networking in Google’s Network Infrastructure - Vijoy Pandey, [[Google]] https://sched.co/7j8X [[Google]] has long been a pioneer in distributed computing and data processing, and we’ve known that great computing infrastructure like this requires great networking technology. For the past decade we have been building our own network hardware and software to connect all of the servers in our datacenters together, and also to connect our datacenters with each other, with Software Defined Networking principles in mind. This talk walks through the evolution of Google’s SDN-based networking infrastructure, from building an SDN-based WAN (B4), to allocating wide area bandwidth amongst thousands of individual applications based on centralized policy management (BwE), to creating building-scale data center fabrics (Jupiter). We will discuss how technologies were cross leveraged in building these networks, the operational challenges faced, and the lessons learned. Vijoy Pandey is Head of Engineering for Data Center Fabrics and Inter Data Center Backbone Networks at [[Google]]. He works on SDN and data center, cloud and backbone network architectures looking out 18 months+, and leads the team responsible for the design, engineering, deployment & operations of these networks. Prior to [[Google]], he was the CTO of Networking at [[IBM]] where he led the technical vision & system architecture for [[IBM]] System Networking. He was previously the CTO and Director Engineering of a startup, Blade Networking Technologies (BNT) which was acquired by [[IBM]]. Before that has held various leadership and management roles in switching, security, and application delivery controller companies & startups. Vijoy holds an undergraduate degree in Computer Science from the Indian Institute of Technology, and a Ph.D. in Computer Science from the University of California, Davis. |
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<youtube>u2N7q1w26Mg</youtube> | <youtube>u2N7q1w26Mg</youtube> | ||
<b>Software-Defined WAN (SD-WAN) - Explained | <b>Software-Defined WAN (SD-WAN) - Explained | ||
| − | </b><br>Learn what SD-WAN is, how it works, and its benefits. If you were ever curious about what SD-WAN is or how it works, then this explainer video will teach you the basics. See how it is more effective and efficient compared to older technology managed by Command Line Interfaces (CLI). SD-WAN offers greater flexibility, control, agility, and performance than traditional means of managing Wide Area Networks (WANs). Learn more: | + | </b><br>Learn what SD-WAN is, how it works, and its benefits. If you were ever curious about what SD-WAN is or how it works, then this explainer video will teach you the basics. See how it is more effective and efficient compared to older technology managed by Command Line Interfaces (CLI). SD-WAN offers greater flexibility, control, agility, and performance than traditional means of managing Wide Area Networks (WANs). Learn more: https://rvbd.ly/2zGYiel |
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== Network Functions Virtualization (NFV) == | == Network Functions Virtualization (NFV) == | ||
| − | [ | + | [https://www.youtube.com/results?search_query=Network+Functions+Virtualization+NFV+intent+ai+computer+SDN+SD-WAN+artificial+intelligence+deep+machine+learning+ai Youtube search...] |
| − | [ | + | [https://www.google.com/search?q=Network+Functions+Virtualization+NFV+intent+ai+computer+SDN+SD-WAN+artificial+intelligence+deep+machine+learning+ai ...Google search] |
| − | * [ | + | * [https://jandra.wordpress.com/2014/09/17/network-functions-virtualization-nfv/ Network functions virtualization (NFV) | Jan Drasnar - 4 Minutes Ago] |
| − | * [ | + | * [https://www.adva.com/en/resources/resources-gated-page/application-brochures/do-it-itself-networks ADVA] |
NFV or Virtual Network Function (VNF) allows network operators to manage and expand their network capabilities on demand using virtual, software based applications where physical boxes once stood in the network architecture. This makes it easier to load-balance, scale up and down, and move functions across distributed hardware resources. With continual updates, operators can keep things running on the latest software without interruption to their customers. [https://www.ericsson.com/en/digital-services/trending/network-functions-virtualization On the road to NFV deployment | Ericsson] | NFV or Virtual Network Function (VNF) allows network operators to manage and expand their network capabilities on demand using virtual, software based applications where physical boxes once stood in the network architecture. This makes it easier to load-balance, scale up and down, and move functions across distributed hardware resources. With continual updates, operators can keep things running on the latest software without interruption to their customers. [https://www.ericsson.com/en/digital-services/trending/network-functions-virtualization On the road to NFV deployment | Ericsson] | ||
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# Network functions virtualization infrastructure (NFVI) is the totality of all hardware and software components that build the environment where NFVs are deployed. The NFV infrastructure can span several locations. The network providing connectivity between these locations is considered as part of the NFV infrastructure. | # Network functions virtualization infrastructure (NFVI) is the totality of all hardware and software components that build the environment where NFVs are deployed. The NFV infrastructure can span several locations. The network providing connectivity between these locations is considered as part of the NFV infrastructure. | ||
# Network functions virtualization management and orchestration architectural framework (NFV-MANO Architectural Framework) is the collection of all functional blocks, data repositories used by these blocks, and reference points and interfaces through which these functional blocks exchange information for the purpose of managing and orchestrating NFVI and VNFs. | # Network functions virtualization management and orchestration architectural framework (NFV-MANO Architectural Framework) is the collection of all functional blocks, data repositories used by these blocks, and reference points and interfaces through which these functional blocks exchange information for the purpose of managing and orchestrating NFVI and VNFs. | ||
| − | The building block for both the NFVI and the NFV-MANO is the NFV platform. In the NFVI role, it consists of both virtual and physical processing and storage resources, and virtualization software. [ | + | The building block for both the NFVI and the NFV-MANO is the NFV platform. In the NFVI role, it consists of both virtual and physical processing and storage resources, and virtualization software. [https://en.wikipedia.org/wiki/Network_function_virtualization Network function virtualization | Wikipedia] |
| − | <img src=" | + | <img src="https://jandra.files.wordpress.com/2014/09/nfv_vs_sdn.png" width="600"> |
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<youtube>Vl5UJUR1uV4</youtube> | <youtube>Vl5UJUR1uV4</youtube> | ||
<b>2. Introduction to NFV Network function Virtualization Basics - NFV Architecture and ETSI - NFV MANO | <b>2. Introduction to NFV Network function Virtualization Basics - NFV Architecture and ETSI - NFV MANO | ||
| − | </b><br> | + | </b><br>https://telecomtutorial.info Covering Introduction & Tutorial for Virtualization & NFV in Telco Networks . Covering Difference between NFV & SDN or How they work . Both architectures use network abstraction, they do so differently. While NFV covers Softwarization , Virtualization and makes building blocks ready , SDN forwards data packets from one network device to another. At the same time, SDN's networking control functions for routing & policy definition NFV : Network function Virtualization : Introduction & Basics Why we need NFV & Features of NFV ETSI Framework & Specs • NFV Architecture Need of SDN Connect Me @ Linkedin : www.linkedin.com/in/vikas-shokeen Music by Joakim Karud https://youtube.com/joakimkarud |
| − | Free HD Stock-Footage and Motion Graphics by CyberWebFX : | + | Free HD Stock-Footage and Motion Graphics by CyberWebFX : https://www.youtube.com/c/CyberWebFX |
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Revision as of 13:39, 4 January 2023
Youtube search... ...Google search
- Case Studies
- AIOps / MLOps
- Virtualization - Dynamic Spectrum Sharing (DSS)
- Containers; Docker, Kubernetes & Microservices
- Self-Organizing
- Graph
- Network Pattern
Contents
Cognitive Network (CN)
In communication networks, cognitive network is a new type of data network that makes use of cutting edge technology from several research areas to solve some problems current networks are faced with. Cognitive network is different from cognitive radio as it covers all the layers of the OSI model. Cognitive Network | Wikipedia
Intent-Based Networking (IBN)
- Intelligent Automation
- Intelligent Assurance
- Understanding what's on the Network
- Detecting Threats in encrypted traffic
Software-Defined Enterprise (SDE) / Software-Defined Networking (SDN) / Software-defined Wide Area Network (SD-WAN)
Youtube search... ...Google search
- Artificial Intelligence Enabled Software Defined Networking: A Comprehensive Overview | Majd Latah and Levent Toker
- SDN, AI, and DevOps | Russ White - Rule11 Reader
- Defense Information Systems Agency (DISA)
- 3 Use Cases for Machine Learning Within SD-WAN | Lanner
- SDN, AI and DevOps | Russ White - Juniper
Virtual network architecture that allows enterprises to leverage any combination of transport services to securely connect users to applications. SD-WAN simplifies the management and operation of a WAN by decoupling the networking hardware from its control mechanism. This concept is similar to how software-defined networking implements virtualization technology to improve data center management and operation. Wikipedia
- WAN Optimization
- Fault Prediction
- Network Management
- Security
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Explained
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Network Functions Virtualization (NFV)
Youtube search... ...Google search
NFV or Virtual Network Function (VNF) allows network operators to manage and expand their network capabilities on demand using virtual, software based applications where physical boxes once stood in the network architecture. This makes it easier to load-balance, scale up and down, and move functions across distributed hardware resources. With continual updates, operators can keep things running on the latest software without interruption to their customers. On the road to NFV deployment | Ericsson
For example, a virtual session border controller could be deployed to protect a network without the typical cost and complexity of obtaining and installing physical network protection units. Other examples of NFV include virtualized load balancers, firewalls, intrusion detection devices and WAN accelerators. ...The NFV framework consists of three main components:
- Virtualized network functions (VNFs) are software implementations of network functions that can be deployed on a network functions virtualization infrastructure (NFVI).
- Network functions virtualization infrastructure (NFVI) is the totality of all hardware and software components that build the environment where NFVs are deployed. The NFV infrastructure can span several locations. The network providing connectivity between these locations is considered as part of the NFV infrastructure.
- Network functions virtualization management and orchestration architectural framework (NFV-MANO Architectural Framework) is the collection of all functional blocks, data repositories used by these blocks, and reference points and interfaces through which these functional blocks exchange information for the purpose of managing and orchestrating NFVI and VNFs.
The building block for both the NFVI and the NFV-MANO is the NFV platform. In the NFVI role, it consists of both virtual and physical processing and storage resources, and virtualization software. Network function virtualization | Wikipedia
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