Question

Consider the following LTI system where, Q-5, and wo2000T rad./sec. e) What will be the output of this filter if input x2(t) = 5Cos(2000mt) Show all calculations on paper f)Verify your answer of part (e) by using Simulink model. Attach the snapshot of Simulink model and output. g What will be the output of this filter if input x(0) 5Cos(4000t). Show all calculations on paper. h) Verify your answer of part (g) by using Simulink model. Attach the snapshot of Simulink model and output. i)Using MATLAB find the poles of H(s). Is the system stable? j) Find and sketch h(t) in MATLAB

0 0
Add a comment Improve this question Transcribed image text
Answer #1

Given thamster sec L06 s Fon ax vem

(f)

Add a comment
Know the answer?
Add Answer to:
Consider the following LTI system where, Q-5, and wo2000T rad./sec. e) What will be the output...
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for? Ask your own homework help question. Our experts will answer your question WITHIN MINUTES for Free.
Similar Homework Help Questions
  • Clear steps, please. Consider the following LTI system where, Q -5, and w 2000m rad./sec. a)...

    Clear steps, please. Consider the following LTI system where, Q -5, and w 2000m rad./sec. a) Use MATLAB to determine magnitude response and phase response of the filter. b) What type of filter is it? c) What will be the output of this filter if input xio- 5Cos(1000). Show all calculations step by step as shown in Lecture-21 . d) Verify your answer of part (e) by using Simulink model. Attach the snapshot of Simulink model and output. e) What...

  • 100 Consider the following LTI system, 5, and wo = 2000π rad/sec. where, Q a) Use MATLAB to deter...

    please complete this project. 100 Consider the following LTI system, 5, and wo = 2000π rad/sec. where, Q a) Use MATLAB to determine magnitude response and phase response of the filter b) What type of filter is it? c) What will be the output of this filter if input x,(t)-5Cos(100t). Show all calculations step by step as shown in Lecture-20 d) Verify your answer of part (e) by using Simulink model. Attach the snapshot of Simulink model and output e)...

  • All i want is the whole MATLAB code for this nothing else

    All i want is the whole MATLAB code for this nothing else H(s) where, Q-5, and 40-2000, rad./sec. a) Use MATLAB to determine magnitude response and phase response of the filter. b) What type of filter is it? c) What will be the output of this filter if input x,() SCos(1001). Show all calculations step by step as shown in Lecture-20 d) Verify your answer of part (c) by using Simulink model. Attach the snapshot of Simulink model and output....

  • Please complete only F, H, and J only. step by step clearly. please follow the questions. also ty...

    please complete only F, H, and J only. step by step clearly. please follow the questions. also type any codes you used. 100 Consider the following LTI system, where, Q = 5, and wo 200π rad. /sec. a) Use MATLAB to determine magnitude response and phase response of the filter b) What type of filter is it? c) What will be the output of this filter if input x,(t)-5Cos(100t). Show all calculations step by step as shown in Lecture-20 d)...

  • please show steps 4. (25 points) Laplace and LCCDE Systems Consider an LTI system with input-output...

    please show steps 4. (25 points) Laplace and LCCDE Systems Consider an LTI system with input-output relation described by the LCCDE: -2y(t) - y0) + 3x(t) + deco (O) = (a) (5 pts) Find the transfer function H(s) and write it in factored form. (b) (5 pt) Sketch the ROC corresponding to H(s) if it is known the system is causal. Mark the poles and zeros. (c) (5 pts) Sketch the ROC corresponding to H(s) if it is known the...

  • Show Matlab plot comparasion properly please 2) Let a system with an LTI model be 100...

    Show Matlab plot comparasion properly please 2) Let a system with an LTI model be 100 G(s) = 2s2 + 24s + 200 a) Determine the zeros, poles, the steady state step response (aka DC gain), the damping ratio, and the natural frequency b) Find the step response of the system manually and plot the y(t) signal on Matlab c) Use Simulink to simulate the same step response and compare both by taking the L2 norm of the error between...

  • 2) Let a system with an LTI model be 100 G(s) 2s2 + 24s + 200...

    2) Let a system with an LTI model be 100 G(s) 2s2 + 24s + 200 a) Determine the zeros, poles, the steady state step response (aka DC gain), the damping ratio, and the natural frequency b) Find the step response of the system manually and plot the y(t) signal on Matlab c) Use Simulink to simulate the same step response and compare both by taking the L2 norm of the error between two outputs obtained through the analytic (manual)...

  • 2.6.1 Consider a causal continuous-time LTI system described by the differential equation u"(t) +...

    2.6.1-2.6.62.6.1 Consider a causal contimuous-time LTI system described by the differential equation$$ y^{\prime \prime}(t)+y(t)=x(t) $$(a) Find the transfer function \(H(s)\), its \(R O C\), and its poles.(b) Find the impulse response \(h(t)\).(c) Classify the system as stable/unstable.(d) Find the step response of the system.2.6.2 Given the impulse response of a continuous-time LTI system, find the transfer function \(H(s),\) the \(\mathrm{ROC}\) of \(H(s)\), and the poles of the system. Also find the differential equation describing each system.(a) \(h(t)=\sin (3 t) u(t)\)(b)...

  • 4. (5 pts) Consider a discrete-time LTI system T that generates an output y[n] according to...

    4. (5 pts) Consider a discrete-time LTI system T that generates an output y[n] according to a2 y[n] bx[n] – ay[n – 1] - *[n – 2] where a, b are non-negative real constants. (a) (2 pts) Find the poles of the z-transform of the impulse response h[n] of T. (b) (3 pts) Let H(ejl be the frequency response of T. Find a, b so that the system is causal and stable, |H(1)| = |H(ejº)] = 0.04, and |H(-1)] =...

  • Consider a causal LTI system described by e yin]-ανίn- μ) = xjn] A. What is the...

    Consider a causal LTI system described by e yin]-ανίn- μ) = xjn] A. What is the condition of o over which the system is BIBO stable? B. For & = /½ and u 2, find this system transfer function. C. For the same conditions in part B, find the frequency response H() D. Determine the magnitude and phase of H(o). E. Use MATLAB to sketch the magnitude spectrum over 0< w s 2n Consider a causal LTI system described by...

ADVERTISEMENT
Free Homework Help App
Download From Google Play
Scan Your Homework
to Get Instant Free Answers
Need Online Homework Help?
Ask a Question
Get Answers For Free
Most questions answered within 3 hours.
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT