Frequency response and Impulse Response

In summary, the conversation is about a system with a difference equation and the task of calculating its transfer function using the z transform. The person has managed to work out the system function but is struggling with calculating the frequency and impulse response. They also ask about the relationship between a network's impulse response and its frequency response in either the s or z domain.
  • #1
Cossie
2
0
Im struggling to do the following question. Any help would be appreciated

A following system has the following difference equation

y(n)+ 1/8y(n-1) - 5/8y(n-2)=1/2x(n-1)

First part is to calculate the system transfer function using the z transform. Then get the frequency response and the impulse

Ive managed to work out the system function and using the z transform it equates to
[itex]\frac{Y(z)}{X(z)}[/itex]=[itex]\frac{1/2z^{-1}}{1+1/8z^{-1}-5/8z^{-2}}[/itex]

From this how do i calculate the frequency response and the impulse response of the system.

Many thanks
 
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  • #2
What is the z transform of δ(t), the Dirac delta (impulse) step function?

What is the relationship between a network's impulse response and its frequency response?
(Either in the s or z domain?).
 

What is frequency response?

Frequency response is a measure of how a system responds to different frequencies of an input signal. It describes the amplitude and phase of the output signal compared to the input signal at different frequencies.

What is impulse response?

Impulse response is the output of a system when an impulse signal (a short, high-energy burst) is applied as the input. It represents the behavior or characteristics of the system and can be used to determine the system's frequency response.

How are frequency response and impulse response related?

Frequency response and impulse response are closely related. The frequency response can be calculated from the impulse response by taking the Fourier transform. This means that the frequency response provides a more comprehensive view of a system's behavior, while the impulse response provides a more detailed view of the system's response to a specific input.

Why are frequency response and impulse response important?

Frequency response and impulse response are important in analyzing and understanding the behavior of systems, such as electronic circuits or audio equipment. They can help identify any issues or limitations in the system and can also be used to design and optimize systems for specific applications.

How can frequency response and impulse response be measured?

Frequency response and impulse response can be measured using various techniques, such as using a function generator and oscilloscope, using FFT analysis, or using specialized equipment such as an audio analyzer. These measurements can provide valuable information about the characteristics of a system and can be used for troubleshooting and system design purposes.

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