Title: Frequency analysis: why?
1Frequency analysis why?
- Fast efficient insight on signals building
blocks. - Simplifies original problem - ex. solving Part.
Diff. Eqns. (PDE). - Powerful complementary to time domain analysis
techniques. - Several transforms in DSPing Fourier, Laplace,
z, etc.
2Fourier analysis - applications
- Applications wide ranging and ever present in
modern life - Telecomms - GSM/cellular phones,
- Electronics/IT - most DSP-based applications,
- Entertainment - music, audio, multimedia,
- Imaging, image processing,
- Industry/research - X-ray spectrometry, chemical
analysis (FT spectrometry), radar design, - Medical - EGG, heart malfunction diagnosis,
- Speech analysis (voice activated devices,
biometry, ).
3Fourier analysis - tools
Input Time Signal Frequency spectrum
4Fourier Series (FS)
synthesis
analysis
Note cos(k?t), sin(k?t) k form orthogonal
base of function space.
5FS synthesis
Square wave reconstruction from spectral terms
Convergence may be slow (1/k) - ideally need
infinite terms. Practically, series truncated
when remainder below computer tolerance (?
error). BUT Gibbs Phenomenon.
6Gibbs phenomenon
Overshoot exist _at_ each discontinuity
7Fourier Integral (FI)
Fourier analysis tools for aperiodic signals.
8FT - example
FT of 2?-wide square window
9Digital data formats
Positional number system with base b
.. a2 a1 a0 . a-1 a-2 .. b .. a2 b 2 a1
b 1 a0 b 0 a-1 b -1 a-2 b -2 ..
Important bases 10 (decimal), 2 (binary), 8
(octal), 16 (hexadecimal).
10Fixed-point binary
Represent integer or fractional binary numbers.
NB Constant gap between numbers.
11 Floating-point binary - 2
IEEE 754 standard
12 Finite word-length effects
13DSP Devices Architectures
- Selecting a DSP several choices
- Fixed-point
- Floating point
- Application-specific devices(e.g. FFT
processors, speech recognizers,etc.). - Main DSP Manufacturers
- Texas Instruments (http//www.ti.com)
- Motorola (http//www.motorola.com)
- Analog Devices (http//www.analog.com)
14Typical DSP Operations
- Filtering
- Energy of Signal
- Frequency transforms
15Traditional DSP Architecture
X RAM
Y RAM
a
x(n-i)
Multiply/Accumulate
Accumulator
y(n)
Most modern DSPs have more advanced features.
16TIs DSP Portfolio
C6000 (C62x, C67x)
- Power Efficient Performance
- Wireless Telephones/IADs
- Modems / Telephony
- VoIP
- .32ma/MIPS to sub 1V parts
- 5 / 100 MIPS
C3x C4x C8x
- Control Efficient
- Storage
- Brushless Motor Control
- Flash Memory
- A/D
- PWM Generators
- High Performance
- Multi-Channel / Function
- Comm Infrastructure
- xDSL
- Imaging, Video
- VLIW architecture
- 2400 MIPS
- Roadmap to 1 GHZ
17Personal and Portable Applications
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19C67x Architecture
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23DSP STARTER KIT (DSK)
24C6711 DSK OVERVIEW
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