Information Theory and Coding Sample Essay

Unit of measurement 1 Introduction to uncertainness. information. information and its belongingss. information of binary memory less beginning and its extension to discrete memory less beginning. coding theorem. informations compaction. prefix coding. HUFFMAN coding. Lempel-Ziv Coding Unit 2 Discrete memory less channels. Binary symmetric channel. common information & A ; its belongingss. channel capacity. channel coding theorem. and its application to BSC. Shannon’s theorem on channel capacity. capacity of channel of infinite bandwidth. Bandwidth signal to resound Trade off. Practical communicating system in visible radiation of shannon’s theorem. Fading Channel. Unit 3 m

Group and field of Binary system Galois field and its building in GF ( 2 ) and its basic belongingss. vector infinites and matrices in GF ( 2 ) . Linear Block Codes. Systematic codifications. and its encoding circuits. syndrome and mistake sensing. minimal distance. mistake detection and rectifying capablenesss of block codification. Decoding circuits. Probability of undetected mistake for additive block codification in BSC. Hamming codification and their applications. Unit 4 Cyclic codifications and its basic belongingss. Generator & A ; para check matrix of cyclic codifications. encoding & A ; decrypting circuits. syndrome calculation & A ; error sensing. cyclic Hamming codifications. Unit 5 Introduction to BCH codifications. its encoding & A ; decrypting. mistake location & A ; rectification. Introduction to whirl codifications. its building & A ; viterbi algorithm for maximal likeliness decryption. Reference Books: 1. Digital Communication by Haykins Simon Wiley Publ. 2. Mistake control Coding: Theory and Application. by Shu Lin and Cosstlello. PHI 3. Modern parallel and Digital Communication system. by B. P. Lathi 4. Digital Communication by Sklar. Pearson Education 5. Principal of Communication system by Taub & A ; Schilling. TMH 6. Mistake Correcting Codes by Peterson W. . MIT Press 7. Digital Communication by Carson. MGH 8. Digital Communication by Proakis. TMH

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MEDC – 302 ( A ) Advanced Digital Communication

Unit of measurement 1 Introduction to digital transition technique and their spectral features. optimal receiving systems for signals corrupted by AWGN and their public presentation for memory less channel. optimal receiving systems for PCM. regenerative repeaters and associate budget analysis. Unit 2 Estimation of signal parametric quantities. bearer stage and symbol timings. Signal design set limited channels and their word picture. chance of mistake in sensing PAM with zero ISI. transition codifications for spectrum spacing. Unit 3 Optimum receiving systems for channels with ISI and AWGN. additive equalisation and determination provender back equalisation. adaptative linear and adaptative determination provender back equalizer. Unit 4 Multi channel and multi bearer systems. dispersed spectrum signals for digital communicating. direct sequence spread spectrum signals and frequence hopped dispersed spectrum signals and their public presentations. OFDM. Unit5 Characterization of melting multi way channels. frequence non-selective easy embroidering channels. diverseness techniques for embroidering multi way channels. coded wave form for embroidering channels and their application. REFERENCE BOOKS: Digital Communication by Proakis TMH Digital Communication by Glover and Grantt PHI Digital Communication by Simon Haykins

MEDC – 302 ( B ) Optical Instrumentation & A ; Measurement

Unit of measurement 1 Optical Instrument: Optical Time Domain Reflector. Optical low Coherence Reflect metre. Optical Spectrum Analyzer Optical power and energy metre. Monochrometer. CCD. Ellipsometer. transducer. Lock in Amplifier. Box auto Average. Unit 2 Fiber Optics Component and Devices: Direction Couplings. beam splitters. switches. transitions. connections. couplings. polarizer. polarisation accountants. amplifiers. fiber optical maser. reflector. wavelength filters. polarising beam splitter. wavelength division multiplexes. fiber ocular isolator etc. Unit 3 Fiber ocular detectors: Pressure. temperature. strain. Magnetic & A ; Electric field detectors based on features like strength. stage. polarisation. frequence and wavelength of light wave Unit 4 Fiber ocular Measurement: Introduction to measurement techniques i )

Multimode Fiber: Refractive Index Profile. Geometric Measurement. Numeric Aperture. Entire Attenuation. Scattering Loss and differential manner loss. Non destructive loss Measurement ( OTDR ) . Transmission Bandwidth and scattering. Bandwidth of Jointed fiber. Differential Mode Delay ( DMD ) two ) Single Mode Fiber: Attenuation. Refractive Index Profile ( RIP ) . Mode Field Diameter. Equivalent measure Index ( EXI ) Profile. Mode Cut off Wave length and the Single Mode runing government. Dispersion. Birefringenence Measurement. Measurement of the Propagation invariable of fibre manner Reference Books: 1. Optical Fiber Communication By S. Senior 2. Fiber Optics Measurement By A. Ghatak. M. R. Shenoy 3. Fundamental Of Fiber Optics in Telecommunication & A ; Sensors Systems 4. Introduction to Fiber Optics By A. Ghatak and Tyagrajan 5. Optical Fiber Sensors system And Application By B. Culshaw

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