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Showing posts with label EI 7th (V) Semester syllabus. Show all posts
Showing posts with label EI 7th (V) Semester syllabus. Show all posts
EI7204 Total Quality Management TQM EI 7th (Fifth) sem Electronics and Instrumentation(EI) Syllabus

EI7204 Total Quality Management TQM EI 7th (Fifth) sem Electronics and Instrumentation(EI) Syllabus

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EI7204 Total Quality Management TQM  Syllabus
RGTU/RGPV Total Quality Management TQM
Electronics and Instrumentation EI VII-7th Semester Syllabus

EI7204 Total Quality Management TQM  Course Contents:

Unit-I Quality Concepts And Management
Evolution of quality control, Quality journey : Inspection to TQM, Quality of design, conformance, performance, functions, Global scenario, concept of Quality costs.

Unit-II Standardization and Quality Assurance
Quality assurance: Concept, need; ISO 9000 systems, ISO 14000; Quality audit, documentation.

Unit-III Statistical Quality Control
Basic statistical concepts, Probability distribution-Binomial, Poisson and Normal, control chars for variables and attributes, CUSUM charts, Multivariate charts, Process capability, Tolerances and selective assembly, Acceptance sampling.

Unit-IV Diagnosis and Prevention of Defects
Defect study, Identification and analysis of defects, Corrective measure, Factors affecting reliability, MTBF, MTTR, Calculation of reliability, Building reliability in the product, Evaluation of reliability, Interpretation of test results, Reliability control, Maintainability, FMEA, Guarantee, Warrantee and claims.

Unit-V Quality Awards
Break through in quality management, Quality gurus: Deming, Crosby, Ishikawa, Juran etc., Seven quality tools, Quality circle, Kaizen, Concepts of poka yoke, 5 S campaign, Six sigma, Qquality function deployment, Benchmarking, National quality award model; Malcom Balbridge, National Quality Awards , Quality in service sector, Administration etc., Case Studies.

References:
  • Lt. Gen. H. Lal, “Total Quality Management”, Wiley Eastern Limited.
  • Greg Bounds, : Beyond Total Quality Management”, McGraw Hill.
  • Besterfield, Total Quality Management, Pearson Education, Asia.
  • w.e.f Academic session 2010 Page 18 of 32
  • Menon, H.G., “TQM in New Product Manufacturing”, McGraw Hill.
  • Mitra, Total Quality Control, Pearson Publication.
  • Quality assurance and TQM by K.C. Jain and A.K. Chitale.
EI7203 Bio Medical digital Signal Processing EI 7th (Seventh) sem Electronics and Instrumentation(EI) Syllabus

EI7203 Bio Medical digital Signal Processing EI 7th (Seventh) sem Electronics and Instrumentation(EI) Syllabus

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EI7203 Bio Medical digital Signal Processing Syllabus
RGTU/RGPV  Bio Medical digital Signal Processing Syllabus
Electronics and Instrumentation EI VII-7th Semester Syllabus

EI7203 Bio Medical digital Signal Processing Course Contents:

 Unit-I
Introduction: Origin of Bio electric signals and their characteristics. Noise coupling, powerline and other interfering sources, Artifacts, Analysis of concurrent, coupled and correlated processes.

Unit-II
Filtering techniques for removal of noise, artifacts and interferences. Design of Time domain and frequency domain filter. Optimal and Adaptive filtering techniques.

Unit-III
Detection of events in Bioelectric signals like ECG, EEG, PCG, etc. Detection of waves, correlation &
coherence analysis, Few case studies.

Unit-IV
Wave shape & envelope extraction analysis. Processing of event related potentials. DSP techniques for
Bio medical signals.

Unit-V
Frequency domain characterization, The Fourier spectrum, Estimation of the power spectral density function, Measures derived from PSD’s. The short time Fourier transform and wavelet basics with application to Bio signals.

Reference:
1. Reddy- Biomedical Signal Processing: Principles and Techniques 1st ed., TMH
EI7202 Environmental Instrumentation EI 7th (Seventh) sem Electronics and Instrumentation(EI) Syllabus

EI7202 Environmental Instrumentation EI 7th (Seventh) sem Electronics and Instrumentation(EI) Syllabus

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EI7202 Environmental Instrumentation Syllabus
RGTU/RGPV  Environmental Instrumentation Syllabus
Electronics and Instrumentation EI VII-7th Semester Syllabus

EI7202 Environmental Instrumentation Course Contents:

 Unit-I
Characterization of waste and sources of pollution. Effects of pollution-ecological balance, Quality Standards and legislation.

Unit-II
Air pollution: Emission intensity and dispersion measurement and analysis techniques Photometric, Gas chromatography, and Mass Spectroscopic analysis. Dust Collectors, Colorimetry and radioactivity detectors. Trace element detectors, Continuous pollution monitoring. Control of Air Pollution and control instrumentation.

Unit-III
Water Pollution: Effluents and their characterization, Concentration and Separation methods of measurement and analysis. Waste treatment by Biological, Physical and Chemical (Aeration, Sedimentation, Flotation Coagulation, Ion-exchange, Aerobic and Anaerobic digestion) process control and Instrumentation. Colorimetry and Spectroscopic remote sensing techniques and  instrumentation.

Unit-IV
Land Pollution: Instrumentation in sludge handling radioactive waste disposal and safety instrumentation. Soil Characteristic and fertility conservation. Instrumentation for Noise and Thermal Pollution monitoring.

Unit-V
Control Instrumentation of Specific Industrial pollution in Steels, Paper, Cement, Power and Petrochemical Plants.

References:
Bond. R.G., C.P. Straub, Handbook of Environmental Control, Volume II.
Jones Instrumentations series.
EI7201 Artificial Intelligence & Expert Systems EI 7th (Fifth) sem Electronics and Instrumentation(EI) Syllabus

EI7201 Artificial Intelligence & Expert Systems EI 7th (Fifth) sem Electronics and Instrumentation(EI) Syllabus

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EI7201 Artificial Intelligence & Expert Systems Syllabus
RGTU/RGPV  Artificial Intelligence & Expert Systems Syllabus
Electronics and Instrumentation EI VII-7th Semester Syllabus

EI7201 Artificial Intelligence & Expert Systems Course Contents:

Unit-I
Basic Problem solving methods: Production systems-state space search, control strategies, Heuristic search, forward and backward reasoning, Hill climbing techniques, Breadth first search, Depth first search, Best search, staged search.

Unit-II
Knowledge Representation: Predicate logic, Resolution question Answering, Nonmonotonic Reasoning, statistical and probabilistic reasoning, Semantic Nets, Conceptual Dependency, frames and scripts.

Unit-III
AI languages: Important characteristics of AI languages - PROLOG, LISP.

Unit -IV
Introduction to Expert Systems: Structure of an Expert system interaction with an expert, Design of an
Expert system.

Unit-V
Fundamentals of Artificial Neural Network (ANN), perceptrons, Back propagation, Cohenon  self organizing network, Hop field networks

References:
  • Rich E and Knight K, Artificial Intelligence, TMH New Delhi.
  • Nelsson N.J., Principles of Artificial Intelligence, Springer Verlag, Berlin.
  • Barr A, Fergenbaub E.A. and Cohen PR. Artificial Intelligence, Addison Wesley, Reading
  • Waterman D.A., A guide to Expertsystem, Adision - Wesley, Reading
  • Artificial Intelligence Hand book, Vol. 1-2, ISA, Research Triangle Park.
  • Kos Ko B, Neural Networks and Fuzzy system –PHI.
  • Haykin S, Artificial Neural Networks-Comprehensive Foundation, Asea, Pearson.
EI7104 Advanced Digital Signal Processing DSP EI 7th (Seventh) sem Electronics and Instrumentation(EI) Syllabus

EI7104 Advanced Digital Signal Processing DSP EI 7th (Seventh) sem Electronics and Instrumentation(EI) Syllabus

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EI7104 Advanced Digital Signal Processing Syllabus
RGTU/RGPV  Advanced Digital Signal Processing Syllabus
Electronics and Instrumentation EI VII-7th Semester Syllabus

EI7104 Advanced Digital Signal Processing Course Contents:

1. Fundamentals of multirate systems, decimation, interpolation, aliasing, imaging, single stage and multistage implementation, polyphase representation, anti-alias and anti-image filters.
2. Filterbanks: Introduction, analysis and synthesis filter abnks, two-channel QMF, M-channel filterbanks, Tree structured filterbanks, polyphase representation.
3. Cosine modulated filter banks, near perfect and perfect reconstruction, pseudo QMF bank, polyphase structure.
4. Design of cosine modulated filterbanks, paraunitary filterbanks.
5. Quantization effects: Types of quantization effects, standard techniques, noise in filterbanks, coding gain, sub-band coding.

References:
  • Multirate systems and filterbanks, P.P. Vaidyanathan, Preason Edu.
  • Digital signal processing: A computer based approach, S.K. Mitra, TMH.
  • Multirate digital signal processing, N.J. Fliege., John Wiley.
  • Multirate Digital Signal Processing, Crochiere and Rabiner., PHI.
EI7103 Management Information System (MIS) EI 7th (Fifth) sem Electronics and Instrumentation(EI) Syllabus

EI7103 Management Information System (MIS) EI 7th (Fifth) sem Electronics and Instrumentation(EI) Syllabus

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EI7103 Management Information System (MIS) Syllabus
RGTU/RGPV  Management Information System (MIS) Syllabus
Electronics and Instrumentation EI VII-7th Semester Syllabus

EI7103 Management Information System (MIS) Course Contents:

Unit-I : The meaning and role of MIS
What is MIS, Decision support systems, systems approach, The systems view of business, MIS organization within the Company. Management organizational theory and the systems approach: Development of organizational theory, Management and organizational behavior, Management information and the systems approach.

Unit-II : Information systems for decision-making:
Evolution of an information system, Basic information systems, Decision making and MIS, MIS as echnique for making programmed decisions, design assisting information systems. Strategic and project planning for MIS General business planning, appropriate MIS response, MIS planning-general, MIS planning-details.

Unit-III: Conceptual System Design
Define the problems, Systems objectives, Establish system constraints, Determine information needs,
Determine information sources, Develop alternative conceptual designs and select one, Document the
system concept, Prepare the conceptual design report.
Detailed System Design
Information and involve the organization, arm of detailed design, Project management of MIS detailed
design. Identify dominant and trade off criteria define the subsystems, Sketch the detailed operating MIS systems and information flows, Determine the degree of automation of each operation, inform and involve the organization again, Inputs, Outputs and processing, early system testing, Software, Hardware and tools, propose an organization to operate the system, Document the detailed design., Revisit the manager user.

Unit-IV
Implementation, Evaluation and Maintenance of the MIS Plan the implementation, Acquire floor space and plan space layouts organized for implementation, Develop procedures for implementation, Train the operating personnel, Computer related acquisitions, Develop forms for data collection and information dissemination, Develop the files, Test the system, Cut over, Document the system,  Evaluate the MIS, Control and maintain the system.

Unit-V : Pitfalls in MIS Development
Fundamental weaknesses, Soft spots in planning, Design problem, Implementation the TAR PITF.

References:
  • Murdick R.G., Russ J.B., Clagget J.R., Information Systems for modern management.
  • Effy OZ, Management Information Systems, 3rd edition, Thomson.
  • Jawadekar W.S., Management Information System.
  • Brien J.A.O., Irwin, Management Information Systems, McGraw Hill.
  • Dour’s G.B., Olson M.H., Management Information Systems, 2nd edition, McGraw Hill.
  • Thireramp R.J., Decision Support Systems for Effective Planning and Control, PHI.
  • Sadagopan S., Management Information Systems, 4th edition, Prentice-Hall of India