In this project, you are required to use MATLAB/Octave/SCILAB software to simulate BPSK modulation waveform. PSK Modulation Phase Shift Keying (PSK) is the digital modulation technique in which the phase of the carrier signal is changed by varying the sine and cosine inputs at a particular time. PSK is of two types, depending upon the phases the signal gets shifted: - Binary Phase Shift Keying: This is also called as 2-phase PSK or Phase Reversal Keying. In this technique, the sine wave carrier takes two phase reversals such as 0° and 180°. - Quadrature Phase Shift Keying: This is the phase shift keying technique, in which the sine wave carrier takes four phase reversals such as 0°, 90°, 180°, and 270°. BPSK Modulator The block diagram of Binary Phase Shift Keying consists of the balance modulator which has the carrier sine wave as one input and the binary sequence as the other input. Following is the diagrammatic representation.

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In this project, you are required to use MATLAB/Octave/SCILAB software to simulate BPSK modulation waveform.


PSK Modulation Phase Shift Keying (PSK) is the digital modulation technique in which the phase of the carrier signal is changed by varying the sine and cosine inputs at a particular time. PSK is of two types, depending upon the phases the signal gets shifted: - Binary Phase Shift Keying: This is also called as 2-phase PSK or Phase Reversal Keying. In this technique, the sine wave carrier takes two phase reversals such as 0° and 180°. - Quadrature Phase Shift Keying: This is the phase shift keying technique, in which the sine wave carrier takes four phase reversals such as 0°, 90°, 180°, and 270°.


BPSK Modulator
The block diagram of Binary Phase Shift Keying consists of the balance modulator which has the carrier sine wave as one input and the binary sequence as the other input. Following is the diagrammatic representation.

 

 

Please show all the steps and explaination.

BPSK Modulator
Balance
PSK
Modulator
wave
Carrier wave
generator
Binary
sequence
(data)
The modulation of BPSK is done using a balance modulator, which multiplies the two
signals applied at the input. For a zero binary input, the phase will be 0° and for a high
input, the phase reversal is of 180°.
Following is the diagrammatic representation of BPSK Modulated output wave along with
its given input.
1v
Ov.
Input binary sequence
time
1v
Ov
-1v
time
BPSK Modulated output wave
Transcribed Image Text:BPSK Modulator Balance PSK Modulator wave Carrier wave generator Binary sequence (data) The modulation of BPSK is done using a balance modulator, which multiplies the two signals applied at the input. For a zero binary input, the phase will be 0° and for a high input, the phase reversal is of 180°. Following is the diagrammatic representation of BPSK Modulated output wave along with its given input. 1v Ov. Input binary sequence time 1v Ov -1v time BPSK Modulated output wave
Report Submission
The following points must be included in the report.
• Cover page: course title, project title, academic year, students names and
IDs
o Introduction to phase shift keying (PSK).
• The procedure followed to simulate BPSK.
• The plotted results including the square wave and the BPSK modulated
waveform.
o Result analysis.
o The simulation code with description
o Summary and conclusion
o A soft copy of the code
Transcribed Image Text:Report Submission The following points must be included in the report. • Cover page: course title, project title, academic year, students names and IDs o Introduction to phase shift keying (PSK). • The procedure followed to simulate BPSK. • The plotted results including the square wave and the BPSK modulated waveform. o Result analysis. o The simulation code with description o Summary and conclusion o A soft copy of the code
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