Determine the transfer function

Assignment Help Electrical Engineering
Reference no: EM131812083

Part -1:

Question 1 (a) A high pass filter has the following specification:

fp = 8kHz    Lp = 0.5dB
fs = 6.8kHz  Ls = 26dB

Design a Chebyshev passive filter (R1=RL=1k?) that meets the specification using the filter prototype design table given at the end of the paper. In your design, you must show the following:

(i) The required order of a Chebyshev filter that meets the above specifications

(ii) The prototype circuit, prototype component values, actual circuit and filter actual component values

(b) Figure Q1 (b) shows a 2nd order passive filter. Giving:

R=2kΩ
C=0.5uF

1935_passive filter.png

(i) Determine the transfer function of the filter in Figure Q1(b).

(ii) At which frequency the magnitude response of the filter is maximal.

(iii) What is the filter's gain at DC, 1/2ΠRC and f = 100.1/2ΠRC

(c) (i) List the followings:

Magnitude response of the Nth-order low pass Butterworth filter transfer function;

Magnitude response the of the Nth-order low pass Chebyshev filter transfer function.

(ii) Sketch the magnitude response for each of the filters in Q1(c)(i) and using approximation to show that Chebyshev filter has a constant higher attenuation than its Butterworth counterpart of the same order in stop band (saying 0.2ω > ωp or higher).

(iii) Calculate the value of attenuation obtained at a frequency 1.6 times the 3-dB frequency of a 7th-order Butterworth filter, and compare it to the first order filter

Question 2:

A phase locked loop shown in Figure Q2 has a centre frequency of fc =100kHz, voltage controlled oscillator gain ko=45kHz/v and phase detector gain kd=1.5rad/v.

There is no other gain in the loop, and the loop filter is F(s ) = 1. The phase locked loop is used to demodulate an FSK data stream where logic 0s are keyed as f0=95kHz, and logic 1s are keyed as f1=105kHz . The bit duration is Tb=100uS.

2473_voltage controlled.jpg

2402_Centre frequency.jpg

(a) Determine the transfer function H( s)= θ2(s )/θ1(s ) of the loop.

(b) Determine the rise time of the VCO control voltage in response to a step change in frequency

(c) Determine the control transfer function Vd(s)/ω1(s ) of the loop and hence phase detector output Vd(t) when the input changes from 95 kHz to 105 kHz.

Part -2: Digital Systems

- All your Model and Test Bench VHDL source files. The code should be properly commented.
- Report (1200 words) which should record:

1. At System Level:
- Block diagram showing the structure of the system with all its sub-blocks and their interconnections.
- The "ports" interface (inputs and outputs of an entity, process sensitivity list) of each sub-block
- Description of the integration of the sub-systems into the top level.

2. For each Sub-System:
- Summary of its functionality requirements
- Description with justification of its design. The VHDL constructs used to code the design should be identified and argued with reference to the relevant lines of code.

3. For each Test Bench:
- Brief description of the test vectors used
- Annotated simulation waveforms highlighting sections where your modelling to the system is correct / incorrect

Verified Expert

This assignment discuss about electrical fundamental filter system which include chebyshev filter and Butterworth filter system. There are provide solution of transfer function of filter circuit, obtain frequency magnitude response of filter at maximal condition, VCO control voltage response of step change through frequency etc. the solution written in Microsoft word 2013.

Reference no: EM131812083

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Reviews

inf1812083

2/26/2018 4:07:58 AM

A low pass filter has the following specifications: Fp=2.4MHz Lp=3dB Fs=6MHz Ls=40dB 1. Determine the required order of a Butterworth filter that meets the above specifications. [5 marks] 2. Design a Butterworth passive filter (75? termination) that meets the specifications using the filter prototype design table given in your online notes. In your design, you must show the following: the low pass prototype circuit, prototype component values and the actual filter component values. 1. Draw a functional block diagram showing the transfer function of the circuit of a phase locked loop (PLL) and label the input and the output of each component. 2. Derive the closed loop transfer function T(s) and the error transfer function E(s) of the PLL using the functional block diagram developed in the question above. 3. Assuming the filter in your PLL is a 1st order low pass filter having a system natural frequency, ?n=4rad/s and damping factor ?=0.5, determine the frequency at which the PLL reaches its maximum response.

len1812083

1/13/2018 4:05:37 AM

I am under pressure to submit this assignment please assist ASAP Answer all questions. You must submit the detailed workout to each of the questions. The solutions must be typed. Diagrams may be scanned hand draw pictures. Marks Breakdown: ? VHDL Models (41 marks): Data generator: 7 marks, LFSR: 4 marks, Error Noise: 5 marks, Decoding: 20 marks, Top level : 5 marks ? Test Benches and Simulation Discussion (19 marks): Data generator: 3 marks, LFSR: 3 marks, Error Noise: 3 marks, Final System : 10 marks

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