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PBJ Morse Co'

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Frequency of audio tone shall be 800 Hz within an audio ... SOS Tone Signal Generator. Implementation. AM Radio Transceiver. System Testing. Demonstration ... – PowerPoint PPT presentation

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Title: PBJ Morse Co'


1
PBJ Morse Co.
  • We put the FUN back in FUNction

Carolyn Salisbury CEO Brent Diley Anthony
Riccelli Ryan Roby Tyler Thompson
2
AM Radio Transceiver
  • Large antennas are required to efficiently
    radiate electromagnetic energy.
  • Impractical
  • The lower the frequency,
  • the bigger the antenna

3
Problems
  • Find a way to send a low frequency signal as a
    high frequency signal to reduce antenna size
  • Receiving antenna must recover the original
    signal by shifting its spectrum back to the
    baseband

4
Objectives
  • Shift the frequency spectrum of the audio signal
    to a higher frequency band my multiplying it by a
    high frequency signal.
  • Use envelope detector that consists of a diode
    rectifier and a bandpass filter to recover the
    original signal.

5
Approach
  • Demonstrate the working principle of the AM
    broadcasting with a Morse coded signal of SOS
    in SIMULINK.
  • Frequency of audio tone shall be 800 Hz within an
    audio bandwidth of 4 kHz.
  • Carrier frequency shall be 50 kHz

6
Spectral Analysis
  • Compute the spectrum
  • Results

7
Spectral Analysis
  • Compute the spectrum
  • Results

8
Spectral Analysis
  • Compute the spectrum
  • Results

9
Spectral Analysis
  • Compute the spectrum
  • Results

10
Spectral Analysis
  • Results Continued

11
Spectral Analysis
  • Results Continued

12
Spectral Analysis
  • Results Continued

13
Spectral Analysis
  • Compute the spectrum
  • Results

14
System Design
  • Minimizes static
  • Cleanest signal

15
System Design
  • Chebyshev Filter
  • Faster decay
  • More passband ripple
  • Minimizes the error
  • between the idealized
  • filter characteristic of
  • the actual over the range of the filter

16
Implementation
  • Bode plot of Chebychev
  • filter

17
Implementation
  • SOS Tone Signal Generator

18
Implementation
  • AM Radio Transceiver

19
System Testing
  • Demonstration
  • Testing results
  • System worked as designed and implemented

20
Test Result Analysis
  • The signal must be less than 2 seconds long or
    aliasing will occur.
  • Mu had to be 0.7 instead of 0.8

21
Summary
  • Project was a success
  • We were able to send a low frequency signal by
    multiplying it by a carrier signal and recovering
    the original signal

22
Conclusions
  • Theres always something new to learn in MATLAB
  • Helped to understand real world applications of
    Signals and Systems
  • Suggestions for future work
  • More time for research, developing solutions and
    analyzing results

23
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