(New page: == Memoryless System & System with Memory == * A system is memoryless if for any t0, the output y(t0) only depends on the present input, x(t0).<br> The output doesn't depend on past o...) |
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== Memoryless System & System with Memory == | == Memoryless System & System with Memory == | ||
− | * A system is memoryless if for any t0, the output y(t0) only depends on the present input, | + | * A system is memoryless if for any t0, the output y(t0) only depends on the present input, x(t0).The output doesn't depend on past or future input, x(t0 + k) for any integer k.<br> |
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− | * A system is a system with memory if for any t0, | + | * A system is a system with memory if for any t0, the output y(t0) depends on not only the present input, x(t0) but also the past or future, x(t0 + k) for any integer k.<br> |
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− | + | == Example == | |
+ | '''<math>y(t) = x(t) + x(t^2)\,</math>'''<br> | ||
+ | If t equals to 2, <math>y(2) = x(2) + x(4)\,</math>. | ||
+ | Then the output depends on the present and future inputs. So the system is memory. |
Latest revision as of 10:08, 19 September 2008
Memoryless System & System with Memory
- A system is memoryless if for any t0, the output y(t0) only depends on the present input, x(t0).The output doesn't depend on past or future input, x(t0 + k) for any integer k.
- A system is a system with memory if for any t0, the output y(t0) depends on not only the present input, x(t0) but also the past or future, x(t0 + k) for any integer k.
Example
$ y(t) = x(t) + x(t^2)\, $
If t equals to 2, $ y(2) = x(2) + x(4)\, $.
Then the output depends on the present and future inputs. So the system is memory.