JNTUK R19 B.Tech ECE 3-2 Digital Signal Processing Material/ Notes PDF Download: For JNTUK R19 B.Tech ECE 3-2 students, having the right study material for Digital Signal Processing (DSP) is essential. The JNTUK R19 B.Tech ECE 3-2 Digital Signal Processing Material covers topics like analyzing signals and systems in both time and frequency domains, understanding the FFT algorithm for computing the Discrete Fourier Transform, learning about different types of digital filter structures, and grasping the procedures for designing FIR and IIR filters. Additionally, it provides insights into DSP processors and their applications. With this material, students can easily access and download notes and study resources to enhance their understanding of DSP concepts.
JNTUK R19 B.Tech ECE 3-2 Digital Signal Processing Material – Units
No. Of Units | Name of the Unit |
Unit – 1 | Introduction to Digital Signal Processing |
Unit – 2 | Discrete Fourier Series & Fourier Transforms |
Unit – 3 | Design Of Iirdigital Filters & Realizations |
Unit – 4 | Design Of Fir Digital Filters & Realizations |
Unit – 5 | Introduction To DSP Processors, Architecture of ARM processors |
Unit 1 Syllabus PDF Download | JNTUK R19 B.Tech ECE Digital Signal Processing Material
Introduction to Digital Signal Processing: Discrete-time signals & sequences, Classification of discrete-time systems, stability and causality of LTI systems, Response of LTI systems to arbitrary inputs. Solution of linear constant coefficient difference equations. Discrete-time Fourier Transform (DTFT), Frequency domain representation of discrete-time signals and systems. Review of Z-transforms, solution of difference equations using Z-transforms, Systemfunction.
JNTUK R19 B.Tech ECE 3-2 Digital Signal Processing Material – PDF Download | |
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Unit 2 Syllabus PDF Download | JNTUK R19 B.Tech ECE Digital Signal Processing Material
Discrete Fourier Series & Fourier Transforms: Properties of discrete Fourier series, DFS representation of periodic sequences, Discrete Fourier transforms: Properties of DFT, linear filtering methods based on DFT, Fast Fourier transforms (FFT)-Radix-2 decimation-in-time and decimation-in-frequency FFT Algorithms, Inverse FFT, Circular convolution and linear convolution using DFT.
JNTUK R19 B.Tech ECE 3-2 Digital Signal Processing Material – PDF Download | |
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Unit 3 Syllabus PDF Download | JNTUK R19 B.Tech ECE Digital Signal Processing Material
Design Of Iirdigital Filters & Realizations: Analog filter approximations – Butterworth and Chebyshev, Design of IIR Digital filters from analog filters, Design Examples, Analog and Digital frequency transformations. Basic structures of IIR systems, Transposed forms.
JNTUK R19 B.Tech ECE 3-2 Digital Signal Processing Material – PDF Download | |
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Unit 4 Syllabus PDF Download | JNTUK R19 B.Tech ECE Digital Signal Processing Material
Design Of Fir Digital Filters & Realizations: Characteristics of FIR Digital Filters, Frequency Response. Design of FIR Digital Filters using Window technique and Frequency Sampling technique, Comparison of IIR & FIR filters. Basic structures of FIR systems.
JNTUK R19 B.Tech ECE 3-2 Digital Signal Processing Material – PDF Download | |
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Unit 5 Syllabus PDF Download | JNTUK R19 B.Tech ECE Digital Signal Processing Material
Introduction To DSP Processors: Introduction to programmable DSPs: Multiplier and Multiplier Accumulator, Modified bus structures and memory access schemes in P-DSPs, Multiple Access Memory, Multiported memory, VLIW architecture, Pipelining, Special addressing modes, On-Chip Peripherals.
Architecture of ARM processors: Technical details of ARM Processors, Introduction to Cortex-M3 and cortex M4 processors – Processor type, processor architecture, instruction set, block diagram, memorysystems.
JNTUK R19 B.Tech ECE 3-2 Digital Signal Processing Material – PDF Download | |
To Download The JNTUK R19 B.Tech ECE 3-2 Digital Signal Processing Unit 5 Notes PDF | Download PDF |
JNTUK R19 B.Tech Digital Signal Processing Material – Outcomes
- Apply difference equations to analyze discrete-time systems: Understand how changes in input values affect the output of a system over discrete time intervals.
- Use the FFT algorithm to solve the DFT of a given signal: Utilize the Fast Fourier Transform (FFT) algorithm to efficiently compute the Discrete Fourier Transform (DFT) of a signal, revealing its frequency components.
- Design digital filters (FIR & IIR) based on given specifications: Create Finite Impulse Response (FIR) and Infinite Impulse Response (IIR) digital filters according to specific requirements, such as desired frequency response or filter characteristics.
- Realize FIR and IIR structures from the designed digital filter: Implement the designed digital filters using appropriate structures, ensuring efficient signal processing and meeting design specifications.
- Utilize multirate processing concepts in various applications: Apply techniques like decimation and interpolation in different scenarios such as designing phase shifters or interfacing digital systems, optimizing signal processing tasks for specific requirements and hardware capabilities.
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