Difference between revisions of "Optical communication engineering"

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(Created page with 'This is Derek Abbott's wiki project page for the '''Optical Communication Engineering (4041)''' lectures. All information regarding this course can be found here. ==Introduction...')
 
(How to pass an exam)
 
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* Monday 11am, '''322''' (Hughes Building)  
 
* Monday 11am, '''322''' (Hughes Building)  
 
* Monday 12noon, '''322''' (Hughes Building)  
 
* Monday 12noon, '''322''' (Hughes Building)  
* Wednesday, '''N132''' (Engineering North Building)  
+
* Wednesday 3pm, '''N132''' (Engineering North Building)  
  
 
We will meet during all three lecture slots and will have three lectures per week. The Wednesday slot will sometimes be a tutorial.
 
We will meet during all three lecture slots and will have three lectures per week. The Wednesday slot will sometimes be a tutorial.
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This will be announced the week before. In total there will be 2 tutorials and 23 set lectures. We will probably go over the 23 lectures for revision and worked examples, if needed.
 
This will be announced the week before. In total there will be 2 tutorials and 23 set lectures. We will probably go over the 23 lectures for revision and worked examples, if needed.
  
==Course Notes==
+
==Course description==
 +
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/optcomms/4041-10.pdf  Opt Comms 4041 course description]
 +
 
 +
==Course notes==
 
You must bring hard copies of the notes to every lecture and annotate the notes, based on my lecture in order to make the most of attendance. It is cheaper to buy the notes from EESAU, however if you miss out you can download them from here:
 
You must bring hard copies of the notes to every lecture and annotate the notes, based on my lecture in order to make the most of attendance. It is cheaper to buy the notes from EESAU, however if you miss out you can download them from here:
  
Line 21: Line 24:
  
 
==Tutorials==
 
==Tutorials==
You must download these tutorials and attempt them 1-week before the tutorial to get the most out of it. Each tutorial date will be announced a week in advance. Note that tutorial solutions are not given out, so need to attend the tutorials.
+
You must download these tutorials and attempt them 1-week before the tutorial to get the most out of it. Each tutorial date will be announced a week in advance. Note that tutorial solutions are not given out, so you need to attend the tutorials.
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/comms/eesau2008/tute1_2008.pdf Tutorial 1] Do after lecture at end of Section 2.
+
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/optcomms/tut1.pdf Tutorial 1]  
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/comms/eesau2008/tute2_2008.pdf Tutorial 2] Do after lecture at end of Section 4.
+
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/optcomms/tut2.pdf Tutorial 2]
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/comms/eesau2008/tute3_2008.pdf Tutorial 3] Do after lecture at end of Slide 18 of Section 7.
+
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/comms/eesau2008/tute4_2008.pdf Tutorial 4] Do after lecture at end of Section 9.
+
  
 
==Assignment==
 
==Assignment==
There will be one Matlab based assignment that will count towards 30% of the course (the exam will count as 70%).  
+
There will be one Assignment that will count towards 30% of the course (the exam will count as 70%). The time to start working on the assignment is the mid-term break.
 
+
*[[Comms IV Assignment]]
+
 
+
==Exercises==
+
There are exercises on the lecture slides at the end of each section. You are expected to do these promptly in your own time as a means of helping you to absorb the material. These are not assessed. The solutions are given below. It is upto you you whether you wish to peek before attempting them or not. Do whatever works best for your teaching yourself. Note that exercises begin at Section 2 and carry through to Section 9.
+
  
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/comms/Exercises/CommsIV_Ch2_Solns.pdf Solutions for Section 2]
+
* [[Optical communications assignment]]
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/comms/Exercises/CommsIV_Ch3_Solns.pdf Solutions for Section 3]
+
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/comms/Exercises/CommsIV_Ch4_Solns.pdf Solutions for Section 4]
+
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/comms/Exercises/CommsIV_Ch5_Solns.pdf Solutions for Section 5]
+
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/comms/Exercises/CommsIV_Ch6_Solns.pdf Solutions for Section 6]
+
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/comms/Exercises/CommsIV_Ch7_Solns.pdf Solutions for Section 7]
+
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/comms/Exercises/CommsIV_Ch8_Solns.pdf Solutions for Section 8]
+
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/comms/Exercises/CommsIV_Ch9_Solns.pdf Solutions for Section 9]
+
  
==Formula Sheets==
+
==Formula sheets==
Familiarize yourselves with these as you get them as handouts in the exams:
+
Familiarize yourselves with this sheet as you get it as a handout in the exam:
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/comms/eesau2008/fourier_2008.pdf Tables of Fourier Transforms]
+
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/optcomms/formulae.pdf Tables of Formulas for Opt. Comms.]
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/comms/eesau2008/qfunc_2008.pdf Q Function Tables]
+
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/comms/eesau2008/trigmisc_2008.pdf Trigonometric Relations]
+
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/comms/eesau2008/comdat_2008.pdf Useful Comms Formulae]
+
  
 
The following formula sheet is designed for the whole BEng degree and is '''not''' given at exams. However it is very useful for solving problems for all courses in the degree for all 4 years. It is also useful if you carry on with a PhD.
 
The following formula sheet is designed for the whole BEng degree and is '''not''' given at exams. However it is very useful for solving problems for all courses in the degree for all 4 years. It is also useful if you carry on with a PhD.
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==Questions==
 
==Questions==
If you found something confusing in a Comms IV lecture and thought it was a rather "muddy point" then on the list page, below, go ahead and ask a question. Anyone can answer: either myself or any other student can answer. I will of course tweek everyone's answers to make them clear and check they are correct.
+
If you found something confusing in an Opt Comms lecture and thought it was a rather "muddy point" then on the list page, below, go ahead and ask a question. Anyone can answer: either myself or any other student can answer. I will of course tweek everyone's answers to make them clear and check they are correct.
  
* [[List of Muddy Points in Comms IV]]
+
* [[List of muddy points in optical communications]]
  
==Podcasts==
+
==How to pass an exam==
* [[Comms IV 2007 Podcasts]]
+
The trick with passing my exams is to note that I am more interested in your discussion and working than the final numerical answer. I like to see that you have understood the intuition of the problem and that you understand where the assumsptions are.  I don't really care that much if you make a numerical error.  If you think your final answer has an unphysical value of the wrong order of magnitude, just explain in your script why you think the number us out and that'll show me you are thinking critically. It is the critical thinking I care about. To see what I consider a "model" way of answering exam questions, see here:
* [[Comms IV 2008 Podcasts]]
+
* [[Comms IV 2009 Podcasts]]
+
  
==Past Exams==
+
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/optcomms/model_solution.pdf Example of how to write a model exam solution to get 100% marks]
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/comms/Exams/Comms1998Exam.pdf 1998 Exam]
+
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/comms/Exams/Comms1999Exam.pdf 1999 Exam]
+
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/comms/Exams/Comms2000Exam.pdf 2000 Exam]
+
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/comms/Exams/Comms2001Exam.pdf 2001 Exam] - unvailable
+
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/comms/Exams/Comms2002Exam.pdf 2002 Exam] - unavailble
+
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/comms/Exams/Comms2003Exam.pdf 2003 Exam]
+
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/comms/Exams/Comms2004Exam.pdf 2004 Exam]
+
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/comms/Exams/Comms2005Exam.pdf 2005 Exam]
+
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/comms/Exams/Comms2006Exam.pdf 2006 Exam]
+
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/comms/Exams/Comms2007Exam.pdf 2007 Exam]
+
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/comms/Exams/Comms2008Exam.pdf 2008 Exam]
+
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/comms/Exams/Comms2009Exam.pdf 2009 Exam]
+
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/comms/Exams/Comms2010Exam.pdf 2010 Exam] - wishful thinking :-)
+
  
==Course Texts==
+
==Past exams==
 +
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/optcomms/exam03.pdf 2003 Exam]
 +
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/optcomms/exam04.pdf 2004 Exam]
 +
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/optcomms/exam05.pdf 2005 Exam]
 +
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/optcomms/exam06.pdf 2006 Exam]
 +
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/optcomms/exam07.pdf 2007 Exam]
 +
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/optcomms/exam08.pdf 2008 Exam]
 +
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/optcomms/exam09.pdf 2009 Exam]
 +
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/optcomms/exam10.pdf 2010 Exam] - wishful thinking :-)
  
The mandatory text is Proakis & Salehi.  The recommended extra reference is Ziemer & Tranter.
+
==Course text==
  
* [http://www.amazon.com/Communication-Systems-Engineering-John-Proakis/dp/0130617938/ref=sr_1_4?ie=UTF8&s=books&qid=1236141159&sr=1-4 Proakis & Salehi:  "Communication Systems Engineering"  2nd Ed (Prentice Hall)]
+
The mandatory text is by Palais: 
* [http://www.amazon.com/Principles-Communication-Systems-Modulation-Noise/dp/0471392537/ref=sr_1_3?ie=UTF8&s=books&qid=1204851476&sr=1-3Tranter: Ziemer & Tranter: "Principles of Communications" 5th Ed (Wiley)]
+
* [http://www.amazon.com/Fiber-Optic-Communications-Joseph-Palais/dp/0130085103/ref=sr_1_1?s=books&ie=UTF8&qid=1280661775&sr=1-1 Palais: ''Fibre Optic Communications''  5th Ed (Prentice Hall)]
  
==Your Lecturers==
+
These are the two Bibles in the field and are worth getting if you see your career in photonic aspects of electrical engineering:
 +
* [http://www.amazon.com/Fundamentals-Photonics-Wiley-Applied-Optics/dp/0471358320/ref=sr_1_1?s=books&ie=UTF8&qid=1280661997&sr=1-1 Salen & Teich:  ''Fundamentals of Photonics''  2nd Ed (Wiley-Interscience)]
 +
* [http://www.amazon.com/Principles-Optics-Electromagnetic-Propagation-Interference/dp/0521642221/ref=sr_1_1?s=books&ie=UTF8&qid=1280663074&sr=1-1 Born and Wolf: ''Principles of Optics'' (Cambridge University Press)]
  
* Prof Derek Abbott
+
Optional reading for reference:
* Prof Bruce Davis
+
* [http://www.amazon.com/Lasers-Electro-optics-Fundamentals-Christopher-Davis/dp/0521484030/ref=sr_1_1?s=books&ie=UTF8&qid=1280663122&sr=1-1 Davis: ''Lasers and Electro-Optics'' (Cambridge University Press)]
* Dr Mark McDonnell
+
* [[Stochastic Resonance Book]]
+
  
==Lecture Slides==
+
==Your lecturer==
  
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/comms/eesau2008/comms_0_2008.pdf Section 0: Overview Lecture]
+
* Prof [[Derek Abbott]]
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/comms/eesau2008/comms_1_2008.pdf Section 1: Introduction Lecture]
+
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/comms/eesau2008/comms_2_2008.pdf Section 2: Frequency domain analysis]
+
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/comms/eesau2008/comms_3_2008.pdf Section 3: Analog Modulation Systems]
+
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/comms/eesau2008/comms_4_2008.pdf Section 4: Random processes and linear systems]
+
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/comms/eesau2008/comms_5_2008.pdf Section 5: Effect of Noise on Analog Systems]
+
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/comms/eesau2008/comms_6_2008.pdf Section 6: Information Theory]
+
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/comms/eesau2008/comms_7_2008.pdf Section 7: Digital Modulation Systems]
+
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/comms/eesau2008/comms_8_2008.pdf Section 8: Digital Transmission in Bandlimited Channels]
+
* [http://www.eleceng.adelaide.edu.au/personal/dabbott/comms/eesau2008/comms_9_2008.pdf Section 9: Channel Capacity and Coding]
+
  
==External Links==
+
==External links==
* [http://en.wikipedia.org/wiki/Completing_the_square Completing the square at Wikipedia]
+
*[http://opticaldictionary.com/ Online optical dictionary]
* [http://ptolemy.eecs.berkeley.edu/eecs20/week10/negativefreqs.html Java Applet illustrating negative frequency]
+
*[http://optics.org/ Optics.org]
* [http://mathworld.wolfram.com/Convolution.html Convolution animation]
+
*[http://www.lightandmatter.com/area1book5.html Online optics textbook]
* [http://courses.csail.mit.edu/6.440/spring08/index.html Essential coding theory at MIT]
+
*[http://www.lasertechonline.org/optics_links.html Useful optics links]
* [http://en.wikipedia.org/wiki/Information_theory Information theory at Wikipedia]
+
*[http://www.educypedia.be/education/physicsjavalabooptics.htm Java applets for optics]
* [http://en.wikipedia.org/wiki/Modulation Modulation at Wikipedia]
+
* [http://en.wikipedia.org/wiki/File:PAL-NTSC-SECAM.svg Map of the world showing TV formats]
+
* [http://www.youtube.com/watch?v=4PwnvqGEHoU Conditional probability]
+
  
 
==Back==
 
==Back==

Latest revision as of 14:56, 20 October 2010

This is Derek Abbott's wiki project page for the Optical Communication Engineering (4041) lectures. All information regarding this course can be found here.

Introduction

All the Comms IV materials and downloads are on this page. There are no rules. Anyone can edit this page and add questions and discussion. It is self-moderating and you can delete and edit anything you like. To resolve conflicts use the discussion page. I encourage you to use this as a forum to ask technical questions and even give answers if you know them. If you come across your own hints and tips that you think are useful to others, feel free to add them.

Schedule

For Semester 2, 2010, there will be three lectures per week:

  • Monday 11am, 322 (Hughes Building)
  • Monday 12noon, 322 (Hughes Building)
  • Wednesday 3pm, N132 (Engineering North Building)

We will meet during all three lecture slots and will have three lectures per week. The Wednesday slot will sometimes be a tutorial.

This will be announced the week before. In total there will be 2 tutorials and 23 set lectures. We will probably go over the 23 lectures for revision and worked examples, if needed.

Course description

Course notes

You must bring hard copies of the notes to every lecture and annotate the notes, based on my lecture in order to make the most of attendance. It is cheaper to buy the notes from EESAU, however if you miss out you can download them from here:

Tutorials

You must download these tutorials and attempt them 1-week before the tutorial to get the most out of it. Each tutorial date will be announced a week in advance. Note that tutorial solutions are not given out, so you need to attend the tutorials.

Assignment

There will be one Assignment that will count towards 30% of the course (the exam will count as 70%). The time to start working on the assignment is the mid-term break.

Formula sheets

Familiarize yourselves with this sheet as you get it as a handout in the exam:

The following formula sheet is designed for the whole BEng degree and is not given at exams. However it is very useful for solving problems for all courses in the degree for all 4 years. It is also useful if you carry on with a PhD.

Questions

If you found something confusing in an Opt Comms lecture and thought it was a rather "muddy point" then on the list page, below, go ahead and ask a question. Anyone can answer: either myself or any other student can answer. I will of course tweek everyone's answers to make them clear and check they are correct.

How to pass an exam

The trick with passing my exams is to note that I am more interested in your discussion and working than the final numerical answer. I like to see that you have understood the intuition of the problem and that you understand where the assumsptions are. I don't really care that much if you make a numerical error. If you think your final answer has an unphysical value of the wrong order of magnitude, just explain in your script why you think the number us out and that'll show me you are thinking critically. It is the critical thinking I care about. To see what I consider a "model" way of answering exam questions, see here:

Past exams

Course text

The mandatory text is by Palais:

These are the two Bibles in the field and are worth getting if you see your career in photonic aspects of electrical engineering:

Optional reading for reference:

Your lecturer

External links

Back