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Fourier Series 4.2-4.3. Motivation (Time Domain Representation) (Frequency Domain Representation)

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Presentation on theme: "Fourier Series 4.2-4.3. Motivation (Time Domain Representation) (Frequency Domain Representation)"— Presentation transcript:

1 Fourier Series 4.2-4.3

2 Motivation (Time Domain Representation) (Frequency Domain Representation)

3 Goal

4 Connection to Calc (Taylor Series)

5 Introductory Example

6 Details

7 Fourier Coefficients

8 Methods of Calculating the Fourier Series Coefficients

9 Fourier Series of Impulse Train

10

11 Fourier Series of a Square Wave Co is a DC average.

12 Details (1)

13 Details (2)

14 Details (3)

15 Gibbs Phenomenon

16 Gibbs Phenomenon (2)

17 Fourier Series Coefficient K=-5, Ck=2jV/(5π) K=-3, Ck=2jV/(3π) K=-1, Ck=2jV/π K=1, Ck=-2jV/π K=3, Ck=-2jV/(3π) K=5, Ck=-2jV/(5π)

18 Frequency Spectra K=-5, Ck=2jV/(5π) K=-3, Ck=2jV/(3π) K=-1, Ck=2jV/π K=1, Ck=-2jV/π K=3, Ck=-2jV/(3π) K=5, Ck=-2jV/(5π)

19 Use Matlab to Calculate Fourier Series Coefficient Integration from 0.5 to 1

20 Different Representations of Fourier Series

21 Rectangular Pulse

22 Sinc Function

23 Spectrum for a Rectangular Pulse Train

24 Peak Values of Sinc x


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