Showing posts with label software defined network. Show all posts
Showing posts with label software defined network. Show all posts

Friday, 25 March 2016

Computing students learn about the future of networking from Hewlett-Packard

HP Lecture
Computing students from the School of Science and Technology had the opportunity to hear from the Senior Product Manager of Hewlett-Packard about the future of computer networking.
In a two-hour lecture Bruno Hareng explained the limitation that IT professionals face with the current distributed architecture used by networks today and how Software Defined Networking (SDN) can make networks more agile and secure.  Defined as cutting edge technology, SDN allows network administrators to manage network services through abstraction of higher-level functionality. The School of Science and Technology has recently received HEFCE funding to purchase the latest Hewlett-Packard SDN lab equipment for teaching purposes and Northampton is one of only three universities to have such facilities.
Dr Ali Al-Sherbaz, Senior Lecturer in Computing at the University of Northampton, commented: “It was a great opportunity for both our students and staff to listen to Bruno Hareng talk about SDN, as some of our research students and staff are working in this area and we are planning to establish a larger research team in the future. They were able to discuss several technical issues regarding teaching and research, which will help to improve our students’ learning experience and employability too.”
Dr Mu Mu, Lecturer in Computing, said: “The talk covers the origins of SDN and OpenFlow (a widely adopted SDN specification), key research and development milestones in academia and industry in the last ten years, and the most recent use cases of SDN in education and enterprise networks. Bruno concluded the talk with a vision of the future networking research, a collaborative effort between academia, service providers, and vendors. Through this talk, students had a first-hand tutorial of emerging network technologies from one of the pioneers in this field. The post-talk Q&A was also centred around the education of future network designers, engineers and architects. We touched on plans to evolve our curriculum, emphasising topics such as: design and prototyping of distributed systems, a great knowledge of network virtualisation, the ability to think outside the box with a solid understanding of the software development process.”
Ameer Al-Sadi , a PhD student whose research focus is on utilising SDN in smart cities, commented:  “This was a great opportunity to meet Bruno Hareng personally and discuss several technical issues with him. Having an SDN lab will open the gate; not only for research, but for teaching both undergraduate and postgraduate students this latest technology, which will have a huge impact on our future careers.”


If you'd like to find out more about Computing at the University of Northampton go to: www.computing.northampton.ac.uk. All views and opinions are the author's and do not necessarily reflected those of any organisation they are associated with

Saturday, 26 December 2015

The management of the future internet

A recent presentation by Ameer Al-Sadi, a PhD student, discusses the use of Software-Defined Networks as part of the future of the internet.

Ameer Al-Sadi 
Topic: Network management by help distributed system

 


Al-Sadi, A., Al-Sherbaz, A., Xue, J. and Turner, S. J.
8th Manchester Metropolitan University (MMU) Postgraduate Research Conference 2015: Innovation, Manchester Metropolitan University, 
05 November 2015.



Abstract
The future internet will include a cloud of assisted living and smart applications that serve a user by providing a remote communication and management for specific resources. It will contain a numerous number of fixed and movable devices, sensors, and actuators. This requires very fast and dynamic communication, which is performed by a novel paradigm of network that contains a forwarding device with a central management, called Software-Define Network (SDN). SDN provides a faster, cheaper and more efficient network. In addition, it strongly supports Network Function Virtualization (NFV), which enables the quicker development of the network by using the software programs for executing the network functions instead of physical devices. 
The aim of the research is to optimise the distribution and use of the SDN network resources through the following objectives: Develop the algorithm responsible for determining the initial number and the location of the elements of SDN network; The algorithm will extend to dynamically adapt this number and these locations according to the network changes; Model software platform to run SDN in wide Area Network and optimize its performance by applying the developed algorithms.
The implications of SDN will be pervasive because it is a powerful network paradigm, which carries the solutions for today's problems. The proposed algorithm will fill part of the gap of the SDN network management and enhance its performance. This work aims to be a helpful tool to design, test and manage any SDN network, starting from the campus network and extending to multiple campuses or the city.



Citation Al-Sadi, A., Al-Sherbaz, A., Xue, J. and Turner, S. J. (2015) The management of the future internet.Workshop presentation to: 8th Manchester Metropolitan University (MMU) Postgraduate Research Conference 2015: Innovation, Manchester Metropolitan University, 05 November 2015.
...is now publicly visible in NECTAR

More details of the paper can be found at: The management of the future internet.

If you'd like to find out more about Computing at the University of Northampton go to: www.computing.northampton.ac.uk. All views and opinions are the author's and do not necessarily reflected those of any organisation they are associated with