Descripción: for lab experiments in MATLAB and CODE COMPOSER STUDIO
Ejercicios de Procesamiento digital de señalesDescripción completa
Chapter 1 Solutions for DSP First
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project report
project report
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Project in DSP c6713 1. Implementing a non real-time re al-time adaptation demonstration 2. Implementing an Adaptive FIR for system ID of an FIR 3. Implementing an Adaptive FIR filter for noise cancellation 4. Implementing an Adaptive FIR for sinusoidal noise interference 5. Illustration of down sampling, aliasing, up sampling 6. Implementing AM using table for carrier and baseband signals 7. Implementing an averaging filter 8. Implementing a beat detector circuit 9. FFT implementation calling a C-coded FFT function 10. DSP/BIOS Application to flash LED s ’
11. DSP/BIOS application to generate sine wave 12. Implementing BPSK modulation and demodulation 13. Generating a Basic Time delay 14. Implementing a N-point DFT of a sequence read from lookup table 15. Generating an impulse function or an impulse train 16. Calculating Dot Product of 2 Vectors 17. Multiplying two arrays using C calling linear ASM function 18. Implementing dot product with software pipelining(Fixed point/Floating point) 19. Implementing dot product with no parallel instructions 20. Implementing dot product with parallel instructions for fixed-point implementation 21. Implementing dot product With parallel instructions for Floating-point numbers 22. Implementing a system for decoding DTMF signals and turning on corresponding LEDs 23. Using LED to detect DTMF signals using using radix-4 FFT 24. Implement a system for generating an echo with fixed delay and feedback feedback 25. Implement a system for generating an echo with variable delay and feedback 26. Implementing a system for displaying spectrum of a signal through EMIF using LCDs 27. Data Encryption Standard software emulation 28. Calculating Factorial of number by calling linear ASM function function 29. Implementing fast convolution 30. Overlap-add convolution algorithm implementation 31. Implementing FFT using TI's optimized FFT function and real-time input 32. Implementing low pass, High pass, band pass, Band stop FIR filters 33. FIR with internally generated input noise sequence 34. Sine generation to illustrate use of flash 35. Implementing a triple-buffered N sample sample frame-based processing 36. Implementations using main executive routine of G.722 audio audio codec 37. Spectrum display of signal using TI s enhanced FFT Algorithm ’
38. Implementing a Graphic Equalizer using TI floating-point FFT functions 39. Implementing iir filter using cascaded second order sections 40. Implementing a voice descrambler
41. Implementing generic IIR filter using cascaded second order sections 42. Implementing Modulation Schemes (PAM, BPSK, QPSK) 43. Implementing Mu law for speech companding 44. Pseudo-random noise generation by calli ng ASM function 45. Implementing a two FIR notch filters to remove sinusoidal noise signals 46. Implementing a linear PLL 47. Generating a ramp function 48. Record/play input using external memory 49. RTDX using LABVIEW for filter desig n and plotting DSK output 50. RTDX using LABVIEW to control gain from DSK of generated sine wave 51. Sine generation with RTDX using Lab VIEW 52. Implementing a MATLAB-DSK interface using RTDX between PC & DSK 53. RTDX using Visual basic for loop gain control 54. Sine generation with RTDX using Visual Basic 55. FIR with RTDX using VC++ to transfer coefficients file 56. Sine generation with RTDX using Visual C++ 57. Sine generation with DIP Switch control 58. Sine generation to both LEFT and RIGHT channels 59. Implementing a DTMF tone generation system using lookup table 60. Sine wave generation using difference equations 61. Time-Frequency analysis of signals Using RTDX-MATLAB 62. Implementing a Speech Synthesis system U sing Linear Predictive Coding 63. Square Wave generation using lookup table 64. Generating a sweeping sinusoid with difference equations 65. Implementing a viterbi convolution encoder