Sunday 25 February 2018

COIT20261 | Basic Routing and Switching Assignment Brief | Information Technology

Objectives

This assessment task requires you to demonstrate your knowledge of basic routing concepts by completing a number of exercise questions.The questions contain various numerical as well as descriptive questions covering the material from Weeks 1 to 9. Question #4 requires you to research further and then demonstrate knowledge of advanced concepts.
Completing these questions should help you to achieve the course learning outcomes as listed in the course profile.

Instructions

Type all your answers in the ‘Template for Your Answers’ Section of this document and upload only that template. You could do that by copying the Template section into a new Word document for uploading.  Answers that are not typed into the “Template for Your Answers” section may not be marked, or may be returned to you for re-typing and re-submission – late penalties will apply.
You must show all your working, that is, steps you took to arrive at your answers. Write your answers in your own words to avoid potential plagiarism and copyright violations.
You must submit the template section as a Word file Plagiarism Procedures can be found in the CQ University Policies section of the Course Profile.

Question 1-routing table construction

Given the following network, construct the routing table for routers R2 and R3. Be sure to include the default route.

Question 2– Allocating subnets from a block

ABEC Pty Ltd (a public company)has been granted a block of addresses starting with the address 172.154.60.0/24.

Question 3 – Fragmentation

An Ethernet packet 1,500 bytes long arrives at a router, which determines that the next destination is an X.25 network.  Do the following, being sure to show your calculations and explain your reasons.
  • Assuming that the router decides to fragment the packet into 3 fragments, determine the size of each fragment, and identify their starting byte and end byte.
  • Calculate the fragmentation offset for each fragment.
  • Under what specific condition would the router decide not to fragment the packet and in that case how would the packet be treated?  Be as precise as possible in your answer.

Question 4– Advanced routing study

Research and review appropriate materials, including the textbook, and answer the first two questions (a & b).
  • Define the terms and discuss the relationship between Autonomous Systems, Inter-domain routing, and Intra-domain routing.
  • Identify the major routing protocols associated with Inter-domain and Intra-domain routing and list their similarities and differences (1.5 marks).   Finish by commenting on why we need different protocols for Inter-domain and Intra-domain routing.
    Study the two articles listed below– both are freely available on the Internet.You may use other references in addition to these, as needed.  Then answer the remaining 3 questions (c, d & e).
  • Briefly summarize in your own words the problems with current routing methods that the authors have identified.
  • Contrast and compare the concepts of embedded routing and extensible routing.
  • How does the proposal of Network Routing As A Service (RAAS or just RAS) address the problems with current routing methods?
Referencing:  List all references and use proper in-text citation using the Harvard referencing convention.   Remember that diagrams also need to be cited.  Marks will be deducted on a per-question basis for not adhering to referencing standards.

Question 5- IPv6 Packets

The following problem is adapted from Practice Set 27.7 Exercise #2 from the textbook.
Case: An IPv6 packet consists of a base header and a TCP segment.   The data is 128,000 bytes long (jumbo payload).
  • Draw a diagram of this packet that shows and labels all the base header fields, the Hop-by-hop Extension header fields, and the TCP segment fields. (3 marks)
  • Place a correct value in the following fields in the base header with a brief explanation for the value you selected
Version; Payload Length, Next Header;  Hop limit, Source Address, Destination Address

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