1. Fundamentals of Digital Signal Processing (DSP):
-Introduce the core principles of DSP, including discrete-time signals, systems, and their representation. Cover essential concepts like sampling, quantization, and the importance of the Nyquist theorem in signal reconstruction.
2. Transform Techniques and Algorithms:
-Explore transform methods used in DSP, such as the Fourier Transform (FT), Discrete Fourier Transform (DFT), and Fast Fourier Transform (FFT). Include the Z-transform and its role in analyzing and designing digital filters.
3. Digital Filters Design and Applications:
-Discuss the principles and methods for designing digital filters, including Finite Impulse Response (FIR) and Infinite Impulse Response (IIR) filters. Highlight their practical applications in signal conditioning, noise reduction, and system analysis.
4. Applications in Real-World Systems:
-Provide examples of DSP applications in various fields such as telecommunications, audio and speech processing, image and video processing, biomedical engineering, and control systems.
5. Advanced Topics and Emerging Trends:
-Cover advanced topics like adaptive signal processing, multirate processing, wavelets, and their applications in modern technologies. Discuss the role of DSP in machine learning, IoT, and real-time embedded systems.
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