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− | = Lecture 6 Blog, [[2011 Spring ECE 301 Boutin|ECE301 | + | = Lecture 6 Blog, [[2011 Spring ECE 301 Boutin|ECE301 Spring 2011]], [[User:Mboutin|Prof. Boutin]] = |
M0nday January 24, 2011 (Week 3) - See [[Lecture Schedule ECE301Spring11 Boutin|Course Schedule]]. | M0nday January 24, 2011 (Week 3) - See [[Lecture Schedule ECE301Spring11 Boutin|Course Schedule]]. | ||
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− | Today we | + | Today we covered some basic properties of a system. More precisely, we defined and provided examples of a memoryless system, a causal system, an invertible system, and a stable system. We then more on to the very important concept of time invariance. I announced that I would give 4 different definitions of time invariance, but we only had time to cover two definitions before time was up. |
== Action items before the next lecture:<br> == | == Action items before the next lecture:<br> == | ||
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**[[Invertibility_of_a_system_ECE301S11|Is the following system invertible?]] | **[[Invertibility_of_a_system_ECE301S11|Is the following system invertible?]] | ||
**[[Stability_of_a_system_ECE301S11|Is the following system stable?]] | **[[Stability_of_a_system_ECE301S11|Is the following system stable?]] | ||
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+ | ==Relevant Rhea Pages== | ||
+ | *[[Systems_properties|A hug page listing several Rhea pages on basic systems properties]] | ||
+ | *[[Six_Basic_Systems_Properties|Definition and examples for the 6 basic systems properties, from Summer 2008]] | ||
+ | *[[ECE_301_Fall_2007_mboutin_Automated_Property_Verification|Automated Property Verification, from Fall 2007]] | ||
+ | *[[Media:ECE_301_Fall_2007_Ch1_pt5.pdf|Course notes for Chapter 1 (part 5) of Oppenheim Willsky (pdf)]] from [[ECE301]] Fall 2007 | ||
Previous: [[Lecture5ECE301S11|Lecture 5]] | Previous: [[Lecture5ECE301S11|Lecture 5]] | ||
Next: [[Lecture7ECE301S11|Lecture 7]] | Next: [[Lecture7ECE301S11|Lecture 7]] | ||
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Latest revision as of 04:41, 2 February 2011
Contents
Lecture 6 Blog, ECE301 Spring 2011, Prof. Boutin
M0nday January 24, 2011 (Week 3) - See Course Schedule.
Today we covered some basic properties of a system. More precisely, we defined and provided examples of a memoryless system, a causal system, an invertible system, and a stable system. We then more on to the very important concept of time invariance. I announced that I would give 4 different definitions of time invariance, but we only had time to cover two definitions before time was up.
Action items before the next lecture:
- Read Sections 2.2, 2.3 in the book.
- Finish the second homework assignment
- Solve the following problems on Basic Signal Properties
Relevant Rhea Pages
- A hug page listing several Rhea pages on basic systems properties
- Definition and examples for the 6 basic systems properties, from Summer 2008
- Automated Property Verification, from Fall 2007
- Course notes for Chapter 1 (part 5) of Oppenheim Willsky (pdf) from ECE301 Fall 2007
Previous: Lecture 5
Next: Lecture 7