Signals And Systems – That Will Break Your Fear
Signals And Systems – That Will Break Your Fear, available at $49.99, has an average rating of 4.67, with 35 lectures, 1 quizzes, based on 3 reviews, and has 38 subscribers.
You will learn about Understand continuous-time signals and discrete-time signals and their classification. Basic Signal Operations: Addition, Subtraction, Shifting, Scaling, Time Reversal Understand System properties – importance of superposition in the analysis of Linear system, Time invariance , presence or absence of memory, Causality, bounded-input bounded-output Stability and Invertibility Will be able explain the role of convolution in the analysis of linear time invariant systems, and use convolution to determine the response of linear systems Understand and resolve the signals in frequency domain using Fourier series and Fourier transforms Be able to use the properties of the Fourier transforms to compute the Fourier transform and its inverse for a broader class of signals Understand the relationship between the stability and causality of systems and the region of convergence of their Laplace transforms Use Laplace transforms to solve differential equations, and to determine the response of linear systems to known inputs Apply the Z- transform for analyze of discrete-time signals and systems This course is ideal for individuals who are GATE, ESE aspirants or Under Graduate students or Students preparing for Competitive exams or Any student enthusiastic to learn fundamental subject for Communication Engineering or Further useful in subjects like Control systems, Signal Processing and Robotics It is particularly useful for GATE, ESE aspirants or Under Graduate students or Students preparing for Competitive exams or Any student enthusiastic to learn fundamental subject for Communication Engineering or Further useful in subjects like Control systems, Signal Processing and Robotics.
Enroll now: Signals And Systems – That Will Break Your Fear
Summary
Title: Signals And Systems – That Will Break Your Fear
Price: $49.99
Average Rating: 4.67
Number of Lectures: 35
Number of Quizzes: 1
Number of Published Lectures: 35
Number of Published Quizzes: 1
Number of Curriculum Items: 36
Number of Published Curriculum Objects: 36
Original Price: ₹1,199
Quality Status: approved
Status: Live
What You Will Learn
- Understand continuous-time signals and discrete-time signals and their classification.
- Basic Signal Operations: Addition, Subtraction, Shifting, Scaling, Time Reversal
- Understand System properties – importance of superposition in the analysis of Linear system, Time invariance , presence or absence of memory, Causality, bounded-input bounded-output Stability and Invertibility
- Will be able explain the role of convolution in the analysis of linear time invariant systems, and use convolution to determine the response of linear systems
- Understand and resolve the signals in frequency domain using Fourier series and Fourier transforms
- Be able to use the properties of the Fourier transforms to compute the Fourier transform and its inverse for a broader class of signals
- Understand the relationship between the stability and causality of systems and the region of convergence of their Laplace transforms
- Use Laplace transforms to solve differential equations, and to determine the response of linear systems to known inputs
- Apply the Z- transform for analyze of discrete-time signals and systems
Who Should Attend
- GATE, ESE aspirants
- Under Graduate students
- Students preparing for Competitive exams
- Any student enthusiastic to learn fundamental subject for Communication Engineering
- Further useful in subjects like Control systems, Signal Processing and Robotics
Target Audiences
- GATE, ESE aspirants
- Under Graduate students
- Students preparing for Competitive exams
- Any student enthusiastic to learn fundamental subject for Communication Engineering
- Further useful in subjects like Control systems, Signal Processing and Robotics
DO YOU WANT TO LEARN FROM BASICS ?
DO YOU WANT TO LEARN MORE NUMERICALS ?
DO YOU WANT TO ANALYZE CONCEPTS WITH BEAUTIFUL EXAMPLE PROBLEMS ?
DO YOU WANT TO CHECK HOW MUCH CONTENT YOU HAVE GRASPED AFTER EACH LECTURE ?
DO YOU WANT TO PRACTICE MORE ASSIGNMENTS ?
DO YOU WANT TO SOLVE QUIZ QUESTIONS AFTER LEARNING EVERY TOPIC ?
THEN MY DEAR STUDENTS THIS COURSE IS THE ONE STOP SOLUTION FOR ALL THE ABOVE QUESTIONS.
“Signals and systems” is the basis of all control and signal processing engineering. It will allow you to take a real world machine, process (the system) and create a mathematical model, at which we apply stimuli and analyze it’s response (stimuli and response being signals).
Examples of systems that manipulate signals are speech recognition, video streaming, cellular networks and medical scans such as MRI. The disciplines of signal and image processing are concerned with the analysis and synthesis of signals and their interaction with systems.
Students will
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Be able to describe signals mathematically
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Understand mathematical description and representation of continuous and discrete time signals
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Be familiar with commonly used signals such as the unit step, ramp, impulse function, sinusoidal signals and complex exponential
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Understand how to perform mathematical operations on signals
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Be able to classify signals as continuous-time Vs. discrete-time, periodic Vs. non-periodic, energy signal Vs. power signal, odd Vs. even, causal Vs. non- causal signals
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Understand system properties – linearity, time in variance, presence or absence of memory, causality, bounded-input bounded-output stability and invertibility
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Be able to perform the process of convolution between signals and understand its implication for analysis of linear time-invariant systems. Understand the notion of an impulse response
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Development of the mathematical skills to solve problems involving convolution
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Understand and resolve the signals in frequency domain using Fourier series and Fourier transforms Further, be able to use the properties of the Fourier transform to compute the Fourier transform (and its inverse) for a broader class of signals
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Understand the limitations of Fourier transform and need for Laplace transform and develop the ability to analyze the system in s- domain
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Apply the Laplace transform and Z- transform for analyze of continuous-time and discrete-time signals and system
Course Curriculum
Chapter 1: INTRODUCTION TO SIGNALS AND SYSTEMS
Lecture 1: Introduction
Lecture 2: UNIT STEP FUNCTION & ITS PROPERTIES
Lecture 3: GATE FUNCTION, IMPULSE FUNCTION AND ITS PROPERTIES
Lecture 4: DOUBLET, RAMP FUNCTION, TRIANGULAR FUNCTION
Lecture 5: EXPONENTIAL FUNCTION AND SOME IMPORTANT PROBLEMS
Lecture 6: UNIT STEP SEQUENCE AND UNIT IMPULSE SEQUENCE
Lecture 7: OPERATIONS ON SIGNALS
Lecture 8: TIME REVERSAL OPERATION
Lecture 9: THREE OPERATIONS SIMULTANEOUSLY ON A SIGNAL
Lecture 10: PROBLEM ON OPERATION ON A SIGNAL
Lecture 11: GRAPHICAL REPRESENTATION OF A SIGNAL GIVEN
Lecture 12: PROBLEM
Lecture 13: PROBLEM
Lecture 14: PROBLEM
Lecture 15: PROBLEM
Lecture 16: PROBLEM
Lecture 17: SCALING OF A DISCRETE SIGNAL
Lecture 18: PROBLEMS ON OPERATION OF SIGNALS
Chapter 2: ENERGY AND POWER SIGNALS
Lecture 1: ENERGY AND POWER SIGNALS
Lecture 2: PROPERTIES OF ENERGY AND POWER SIGNALS
Lecture 3: PROBLEMS ON ENERGY AND POWER
Lecture 4: PROBLEMS ON ENERGY AND POWER
Lecture 5: PROBLEMS ON ENERGY AND POWER
Lecture 6: PROBLEMS ON ENERGY AND POWER
Lecture 7: PROBLEMS ON ENERGY AND POWER
Lecture 8: ENERGY AND POWER OF DISCRETE SEQUENCE
Lecture 9: IMPORTANT POINTS ON ENERGY AND POWER SIGNALS
Chapter 3: EVEN AND ODD SIGNALS
Lecture 1: EVEN AND ODD SIGNALS
Lecture 2: PROBLEMS ON EVEN AND ODD SIGNALS
Lecture 3: PROBLEMS ON EVEN AND ODD SIGNALS
Lecture 4: PROBLEMS ON EVEN AND ODD SIGNALS
Chapter 4: PERIODIC AND APERIODIC SIGNALS
Lecture 1: PERIODIC AND APERIODIC SIGNALS
Lecture 2: PROBLEMS ON PERIODIC AND APERIODIC SIGNALS
Lecture 3: PROBLEMS ON PERIODIC AND APERIODIC SIGNALS
Chapter 5: CAUSAL AND NON CAUSAL SIGNALS
Lecture 1: CAUSAL AND NON CAUSAL SIGNALS
Instructors
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Amarender Reddy Byreddy
Senior GATE faculty
Rating Distribution
- 1 stars: 0 votes
- 2 stars: 0 votes
- 3 stars: 0 votes
- 4 stars: 1 votes
- 5 stars: 2 votes
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