THE UNIVERSITY OF RWANDA NETWORK DESIGN PROJECT PROPOSAL BY: NSABIMANA JEAN CLAUDE REG. NUMBER: 11111128 SUPERVISOR: DR TWIZERE CELESTIN INTRODUCTION o Network is the interconnection of devices such that they can communicate one another‚ The university network is designed to link campus so that they have one Data center( ICT Center). o This network will link six campuses in star topology and in each campus there will be another kind of topology because of the structure of the
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Faculty of Engineering Department of Electrical Engineering Undergraduate project Dual Band Mobile Jammer for GSM 900 & GSM 1800 Done by: Ahmed Sudqi Hussein Abdul-Rahman Ahmad Nasr Raja Mohammad Supervised by: Prof. Nihad Dib 1 Table of contents Abstract ………….…...............................................................................................3 1. Introduction ………….................................................................…........................4 2. Jamming Techniques
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TABLE OF CONTENT 1. Introduction 5 2. Business Goals and Technical Goals 6 2.1. Business Goals 6 2.2. Technical Goals 7 3. Organization Unit 8 4. Design Concept 9 4.1. Hierarchical Network Design 9 4.2. Enterprise Network Design 11 5. Local Area Network (LAN) and Wide Area Network (WAN) 12 6. Server Farm 14 7. Topology 16 7.1. Types of Topology 16 7.1.1. Bus Topology 16 7.1.2. Ring Topology 17 7.1.3. Mesh Topology 17 7.1.4. Star Topology 18 7.2. Physical
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Personal Area Network Lito Gonzales April 15‚ 2012 Personal Area Network In the world where an assortment of technology is emerging and is changing not only how human beings live their lives‚ it also extends to how businesses are conducted for a more efficient and effective operations. From the simplifications of computing that evolved from the bulky desktop computer to the handy tablets‚ to the ever improving sophistications of mobile phone usage such as the candy bar handsets to smartphones
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Generation Network Evaluation June 2010 Produced by: Innovations for Scaling Impact and Keystone Accountability With generous support from the International Development Research Center and the Packard Foundation For questions and/or comments on this paper please contact Catrina Lucero at clucero@scalingimpact.net Table of Contents PURPOSE INTRODUCTION AND CONTEXT THE CURRENT FIELD NETWORK METRICS NETWORK TOOLS GAPS IN CURRENT PRACTICE NETWORK THEORIES OF CHANGE NETWORKS AS COMPLICATED
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Network diagrams are schematic displays of project schedule activities and the interdependencies between these activities. When developed properly‚ this graphical view of a project’s activities conveys critical schedule characteristics required to effectively analyze and adjust schedules – thus resulting in accurate and feasible schedules. This document addresses what should be considered in the development of a network diagram‚ how network diagrams are created‚ and how they may be analyzed to identify
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Artificial Neural Network Sphoorti Sood1and Divya Gupta2 1{Student of Computer Science Department SRMSWCET‚ Bareilly} sphoortisood@yahoo.in 2{Student of Computer Science Department SRMSWCET‚ Bareilly} divyagupta1309@gmail.com Abstract— Artificial neural networks (ANNs) are simplified models of human brain. These are networks of computing elements that have the ability to respond to input stimuli
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WIRELESS SENSOR NETWORK (Reshma Bhat‚ 3rd sem‚EC) Abstract A Wireless Sensor network (WSN) consists of spatially distributed autonomous sensors to cooperatively monitor physical or environmental conditions‚ such as temperature‚ sound‚ vibration‚ pressure‚ motion or pollutants. The development of wireless sensor networks was motivated by military applications such as battlefield surveillance and are now used in many industrial and civilian application areas‚ including industrial
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wireless sensor networks can be promptly understood simply by thinking about what they essentially are: a large number of small sensing self-powered nodes which gather information or detect special events and communicate in a wireless fashion‚ with the end goal of handing their processed data to a base station. Sensing‚ processing and communication are three key elements whose combination in one tiny device gives rise to a vast number of applications [A1]‚ [A2]. Sensor networks provide endless
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“virtual” network that is kept private by “tunneling” private data through the underlying infrastructure of a public Internet. VPN technology provides a way of using public network infrastructures‚ such as the Internet‚ to provide private‚ secure access to applications and company resources to employees in remote or home offices‚ to business partners‚ and even to customers. A VPN is one or more WAN links over a shared public network‚ typically over the Internet or an IP backbone from a Network Service
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