Graciela Perera gperera@neiu.edu Introduction Graciela Perera gperera@neiu.edu.

Slides:



Advertisements
Similar presentations
Introduction 2 1: Introduction.
Advertisements

James 1:5 If any of you lacks wisdom, he should ask God, who gives generously to all without finding fault, and it will be given to him.
Introduction1-1 Introduction to Computer Networks Our goal:  get “feel” and terminology  more depth, detail later in course  approach:  use Internet.
Lecture 2 Introduction 1-1 Chapter 1: roadmap 1.1 What is the Internet? 1.2 Network edge  end systems, access networks, links 1.3 Network core  circuit.
Introduction1-1 Communication Systems Lecturer Dr. Marina Kopeetsky Lecture 1: Introduction Computer Networking: A Top Down Approach Featuring the Internet,
Lecture 1 Internet Overview: roadmap 1.1 What is the Internet? 1.2 Network edge  end systems, access networks, links 1.3 Network core  network structure,
CS 325 Computer Networks Sami Rollins Fall 2003.
Lecture Chapter 1: roadmap 1.1 What is the Internet? 1.2 Network edge  end systems, access networks, links 1.3 Network core  network structure,
1-1 Foundation Objectives: 1.1 What’s the Internet? 1.2 Network edge 1.3 Network core 1.4 Network access and physical media 1.5 Internet structure and.
Lecture Internet Overview: roadmap 1.1 What is the Internet? (A simple overview last week) Today, A closer look at the Internet structure! 1.2 Network.
1 Day 01 - The Internet. 2 Chapter 1 Introduction Computer Networking: A Top Down Approach Featuring the Internet, 3 rd edition. Jim Kurose, Keith Ross.
Networking Based on the powerpoint presentation of Computer Networking: A Top Down Approach Featuring the Internet, Third Edition, J.F. Kurose and K.W.
Lecture Internet Overview: roadmap 1.1 What is the Internet? 1.2 Network edge  end systems, access networks, links 1.3 Network core  circuit switching,
Lecture Internet Overview: roadmap 1.1 What is the Internet? 1.2 Network edge  end systems, access networks, links 1.3 Network core  circuit switching,
Lecture 1 Overview: roadmap 1.1 What is computer network? the Internet? 1.2 Network edge  end systems, access networks, links 1.3 Network core  network.
Introduction to Packet Switching 1-1. Introduction 1-2 What is the Internet 1.1 What is the Internet? 1.2 Network edge  end systems, access networks,
Introduction1-1 CS 325 Computer Networks Sami Rollins Fall 2005.
What’s the Internet: “nuts and bolts” view
1-1 CS 456 – Computer Networks □ Instructor: Ian Goldberg □ Classes: Tuesday and Thursday 8:30 – 9:50am MC 4063 (section.
1: Introduction1 Part I: Introduction Goal: r get context, overview, “feel” of networking r more depth, detail later in course r approach: m descriptive.
Chapter 1 Introduction Computer Networking: A Top Down Approach 6th edition Jim Kurose, Keith Ross Addison-Wesley March 2012 A note on the use of these.
CS 3830 Day 2 Introduction 1-1. Announcements  Program 1 posted on the course web  Project folder must be in 1DropBox on S drive by: 9/14 at 3pm  Must.
Computer Networking Introduction, Part I. Lecture #1: Part I: Introduction Chapter goal: get context, overview, “feel” of networking.
CS448 Computer Networking Chapter 1 Introduction to Computer Networks Instructor: Li Ma Office: NBC 126 Phone: (713)
RSC Part I: Introduction Redes y Servicios de Comunicaciones Universidad Carlos III de Madrid These slides are, mainly, part of the companion slides to.
Introduction 1-1 Chapter 1: roadmap 1.1 What is the Internet? 1.2 Network edge  end systems, access networks, links 1.3 Network core  circuit switching,
Introduction 1-1 Chapter 1 Part 2 Network Core These slides derived from Computer Networking: A Top Down Approach, 6 th edition. Jim Kurose, Keith Ross.
Introduction1-1 Course Code:EE/TE533 Instructor: Muddathir Qamar.
CS 3214 Computer Systems Godmar Back Lecture 23. Announcements Project 5 due Dec 8 Exercise 10 handed out Exercise 11 coming before Thanksgiving CS 3214.
Introduction Switches and Access. 2 Chapter 1 Introduction Computer Networking: A Top Down Approach Featuring the Internet, 5 rd edition. Jim.
Chapter 1 Introduction Circuit/Packet Switching Protocols Computer Networking: A Top Down Approach, 5 th edition. Jim Kurose, Keith Ross Addison-Wesley,
RSC Part I: Introduction Redes y Servicios de Comunicaciones Universidad Carlos III de Madrid These slides are, mainly, part of the companion slides to.
Ch 1. Computer Networks and the Internet Myungchul Kim
Introduction1-1 Data Communications and Computer Networks Chapter 1 CS 3830 Lecture 1 Omar Meqdadi Department of Computer Science and Software Engineering.
Basic Concepts of Internet Technology What is a computer network? Isolated computers vs. networked computers internetworking The Internet What’s a protocol?
Introduction 1-1 Networking Admin  1 to 4 lectures a week for 11 weeks for a total of 23 lectures  Interleaves with Functional Programming  First prac.
1 Network Core and Network Edge By Muhammad Hanif To BS IT 4 th Semester.
Introduction1-1 Chapter 1 Computer Networks and the Internet Computer Networking: A Top Down Approach Featuring the Internet, 2 nd edition. Jim Kurose,
Introduction1-1 Chapter 1 Computer Networks and the Internet Computer Networking: A Top Down Approach Featuring the Internet, 2 nd edition. Jim Kurose,
Introduction1-1 Computer Network (  Instructor  Ai-Chun Pang 逄愛君, m Office Number: 417  Textbook.
Chapter 1, slide: 1 Summer 2010 CS 372 Introduction to Computer Networks* Monday, June 21, 2010 School of Electrical Engineering and Computer Science Oregon.
1: Introduction1 Internet Services and Protocols Adapted from “Computer Networking: A Top Down Approach Featuring the Internet” Kurose and Ross, Addison.
Introduction 1-1 1DT057 Distributed Information Systems Chapter 1 Introduction.
Introduction1-1 Data Communications and Computer Networks Chapter 1 CS 3830 Lecture 3 Omar Meqdadi Department of Computer Science and Software Engineering.
1 Ram Dantu University of North Texas, Practical Networking.
Administrative Things
CS 5565 Network Architecture and Protocols
Overview: Cloud Datacenters
CS 3214 Computer Systems Networking.
Day 01 - The Internet.
Part 0: Networking Review
Slides taken from: Computer Networking by Kurose and Ross
Chapter 1: Introduction
CS 3214 Computer Systems Lecture 21 Godmar Back.
A Taxonomy of Communication Networks
Part I: Introduction Chapter goal:
An Aleksandar,   Accounts have been created for any students in EECS 340 who did not already have one.  Physical access to the labs has.
CS 3214 Computer Systems Networking.
Introduction 1 1: Introduction.
CS 5565 Network Architecture and Protocols
Chapter 1: Introduction
Comp 365 Computer Networks Chapter 1 Part 2 Network Core Fall 2014
Part I: Introduction Chapter goal:
Network Core and QoS.
Part I: Introduction Chapter goal:
EEC-484/584 Computer Networks
Chapter 1: Introduction
Part I: Introduction Overview: what’s the Internet what’s a protocol?
Network Core and QoS.
Comp 410 AOS Packet Switching
Presentation transcript:

Graciela Perera gperera@neiu.edu Introduction Graciela Perera gperera@neiu.edu

Chapter 1: Introduction Our goal: get “feel” and terminology more depth, detail later in course approach: use Internet as example Overview: what’s the Internet what’s a protocol? network edge network core performance: loss, delay protocol layers, service models network modeling Introduction

What’s the Internet: “nuts and bolts” view millions of connected computing devices: hosts = end systems running network apps communication links fiber, copper, radio, satellite transmission rate = bandwidth routers: forward packets (chunks of data) local ISP company network regional ISP router workstation server mobile Introduction

“Cool” internet appliances Web-enabled toaster + weather forecaster IP picture frame http://www.ceiva.com/ World’s smallest web server http://www-ccs.cs.umass.edu/~shri/iPic.html Internet phones Introduction

What’s the Internet: “nuts and bolts” view protocols control sending, receiving of msgs e.g., TCP, IP, HTTP, FTP, PPP Internet: “network of networks” loosely hierarchical public Internet versus private intranet Internet standards RFC: Request for comments IETF: Internet Engineering Task Force router workstation server mobile local ISP regional ISP company network Introduction

What’s the Internet: a service view communication infrastructure enables distributed applications: Web, email, games, e-commerce, file sharing communication services provided to apps: Connectionless unreliable connection-oriented reliable Introduction

What’s a protocol? human protocols: “what’s the time?” “I have a question” introductions … specific msgs sent … specific actions taken when msgs received, or other events network protocols: machines rather than humans all communication activity in Internet governed by protocols protocols define format, order of msgs sent and received among network entities, and actions taken on msg transmission, receipt Introduction

Chapter 1: roadmap 1.1 What is the Internet? 1.2 Network edge 1.3 Network core 1.4 Network access and physical media 1.5 Internet structure and ISPs 1.6 Delay & loss in packet-switched networks 1.7 Protocol layers, service models 1.8 History Introduction

A closer look at network structure: network edge: applications and hosts network core: routers network of networks access networks, physical media: communication links Introduction

The network edge: end systems (hosts): client/server model run application programs e.g. Web, email at “edge of network” client/server model client host requests, receives service from always-on server e.g. Web browser/server; email client/server peer-peer model: minimal (or no) use of dedicated servers e.g. Skype, BitTorrent, KaZaA Introduction

Chapter 1: roadmap 1.1 What is the Internet? 1.2 Network edge 1.3 Network core 1.4 Network access and physical media 1.5 Internet structure and ISPs 1.6 Delay & loss in packet-switched networks 1.7 Protocol layers, service models 1.8 History Introduction

The Network Core mesh of interconnected routers the fundamental question: how is data transferred through net? circuit switching: dedicated circuit per call: telephone net packet-switching: data sent thru net in discrete “chunks” Introduction

Network Core: Circuit Switching End-end resources reserved for “call” link bandwidth, switch capacity dedicated resources: no sharing circuit-like (guaranteed) performance call setup required Introduction

Network Core: Packet Switching each end-end data stream divided into packets user A, B packets share network resources each packet uses full link bandwidth resources used as needed resource contention: aggregate resource demand can exceed amount available congestion: packets queue, wait for link use store and forward: packets move one hop at a time Node receives complete packet before forwarding Bandwidth division into “pieces” Dedicated allocation Resource reservation Introduction

Packet switching versus circuit switching Packet switching allows more users to use network! 1 Mb/s link each user: 100 kb/s when “active” active 10% of time circuit-switching: 10 users packet switching: with 35 users, probability > 10 active less than .0004 N users 1 Mbps link Introduction

Packet switching versus circuit switching Is packet switching a “slam dunk winner?” Great for bursty data resource sharing simpler, no call setup Excessive congestion: packet delay and loss protocols needed for reliable data transfer, congestion control Q: How to provide circuit-like behavior? bandwidth guarantees needed for audio/video apps still an unsolved problem (chapter 7) Q: human analogies of reserved resources (circuit switching) versus on-demand allocation (packet-switching)? Introduction

Network Taxonomy Telecommunication networks Circuit-switched networks FDM TDM Packet-switched networks Networks with VCs Datagram Datagram network is not either connection-oriented or connectionless. Internet provides both connection-oriented (TCP) and connectionless services (UDP) to apps. Introduction