EC DIGITAL IMAGE PROCESSING SYLLABUS | ANNA UNIVERSITY BE ECE 7TH SEMESTER SYLLABUS REGULATION Anna University, Chennai Department Of ELECTRICAL AND COMMUNICATION engineering Subject Code: E Subject Name: EC To introduce the student to various image processing techniques. OBJECTIVES. · To study the image fundamentals and mathematical transforms necessary for.
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Skip to main content. Log In Sign Up. To make the students to sylkabus about the various modulation techniques, propagation methods, coding and multi access techniques used in the mobile communication.
Various wireless network systems and standards are to be introduced. Finally to discuss about digital transmission and its associated parameters on system performance. To understand the different kind of losses, signal distortion in optical wave guides and other signal degradation factors.
Design optimization of SM fibers, RI profile and cut-off wave length. To learn fiber slicing and connectors, noise effects on system performance, operational principles WDM and solutions. PIN Photo detectors, Avalanche photo diodes, construction, characteristics and properties, Comparison of performance, Photo detector noise -Noise sourcesSignal to Noise ratioDetector response time. Optical Fiber Communication — John M.
Senior — Pearson Education — Second w w Edition. To study Microwave sources and amplifiers. High frequency parameters-Formulation of S parameters, properties of S parameters-Reciprocal and lossless networks, transmission matrix, Introduction to component basics, wire, resistor, capacitor and inductor, applications of RF UNIT II.
Scattering matrix -Concept of N port scattering matrix representation- j e Properties of S matrix- S matrix formulation of two-port junction. Microwave junctions – w w.
Parametric devices -Principles of operation – applications of parametric amplifier. Design the Instrumentation amplifier with the bridge type transducer Thermistor or any resistance variation transducers and convert the amplified voltage from the a instrumentation amplifier to 4 — 20 mA current using op-amp. Plot the variation of the jjii npp temperature Vs output current. Design of Wireless data modem. Microcontroller based systems design Design of microcontroller based system for simple applications like security systems combination lock.
Psuedo-random Sequence Generator Arithmetic Logic Unit Design Note: Kits should not be used. Instead each experiment may be given as mini project. Reflex Klystron — Mode characteristics aa p 2. Gunn Diode — Characteristics e jjiinn p 3.
Isolator and Circulator — S – parameter measurement w w w w 6. Attenuation and Power measurement 7. Radiation Pattern of Antennas. Mode Characteristics of Fibers 3. Measurement of Connector and Bending Losses.
Fiber Optic Analog and Digital Link 5. Numerical Aperture Determination for Fibers 6. Carr and John M. To have an introduction to distributed operating system. Mukesh Singhal, Niranjan G. Mechanism of speech production, Acoustic phonetics – Digital models for speech signals – Representations of speech waveform: Sampling speech 9 signals, basics of quantization, delta modulation, and Differential PCM – Auditory perception: Phase vocoder, Channel Vocoder – Homomorphic speech analysis: Dynamic time warping, K-means clusering and Vector quantization, Gaussian mixture modeling, hidden Markov modeling – Automatic Speech Recognition: This course gives a complete procedure for solving different kinds of problems occur in engineering numerically.
When huge amounts of experimental data are involved, the methods discussed on interpolation will be useful in constructing approximate polynomial to represent the data and to find the intermediate values. The numerical differentiation and integration find application when the function in the analytical form is too complicated or the huge amounts of data are given such as series of measurements, observations or some other empirical information.
The methods introduced in the solution of ordinary differential equations and partial differential equations will be useful in attempting any engineering problem. Taylor series method — Euler method for first order equation — w w wFourth order Runge — Kutta method for solving first and second order equations — Multistep methods: Veerarjan, T and Ramachandran, T.
C and Canale, R. Solutions to parallel programming problems — Data races, deadlocks and livelocks — Non-blocking algorithms — Memory and cache related issues. Hennessey and David A. John Paul Shen, Mikko H.
SCAD Engineering College – Lecture Notes – ECE
Castleman, Digital Image Processing, Pearson, V — Engineering Electromagnetic Compatibility — S. To highlight the features of different technologies involved in High Speed Networking jjii pp and their performance.
S to different congestion control. Series and parallel protection.
Power Electronics, TMH, Thyristorised Power Controllers, Wiley Eastern Jacob, Power Electronics, Thomson Learning, Details- functions of vertical pulse train- Scanning sequence details.
Picture signal transmission- positive and negative modulation- VSB transmission- Sound signal transmission- Standard channel bandwidth. Types of nanotechnology and nanomachines — periodic table — atomic structure — molecules and phases — energy — molecular and atomic size — surface and dimensional space — top down and bottom up; Molecular Nanotechnology: Electron microscope — scanning electron microscope — atomic force microscope — scanning tunnelling microscope — nanomanipulator — nanotweezers — atom manipulation — nanodots — self assembly — dip pen nanolithography.
Quantum transport devices based on resonant tunneling: Fullerenes sc2029 types of nanotubes — formation of nanotubes — sc2029 w. MEMS — robots — random access memory — mass storage devices. Evans and William M. Janakiraman, Syllabys and Gopal, R. To have a detailed knowledge about authentication, hash functions and application level security mechanisms. Wade Trappe and Lawrence C.
EC DIGITAL IMAGE PROCESSING syllabus
Introduction – Multimedia skills – Multimedia components and their chacracteristics – Text, sound, images, graphics, animation, video, hardware. Types of nanotechnology and nanomachines — periodic table — atomic structure — molecules and phases — energy — molecular and atomic size — mm surface and dimensional space — top down and bottom up; Molecular Nanotechnology: To introduce the concepts of shared memory based and thread based w implementations.
To learn the two modes of distributed computing using message passing and remote w procedure calls. To introduce basic concepts of distributed data bases and distributed operating systems.
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