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EEE 514: WEB DESIGN AND ELECTRONIC COMMERCE
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bet | 38/48 | Sana | 02.01.2024 | Hajmi | 327 Kb. | | #129611 |
Bog'liq BACHELOR OF SCIENCE ELECTRICAL ELECTRONICS ENGINEERING
Internet concepts, browsers, creating web pages & forms, adding client-side scripts & active elements, using dynamic HTML, database access, creating hyperlinks. E-commerce concepts, building sites, creating product catalogues, managing shopping carts. Using dynamic HTML, database, creating hyperlinks. Processing orders, checking out the purchase process, tracking shopper information, business to business commerce.
EEE 515: ANALOGUE FILTERS
Survey of electrical filter technology. Approximation theory, ideal response, least squares method. Butterworth-Chebychev inverse Chebychev, elliptic phase response. Thompson and Gaussian approximation. Passive filters. Outline of image parameter synthesis, exact one port and two port synthesis of LC and RC network, ladder development with terminations, duality, transformations, pre-distortion, denormalisation. Active filters: controlled sources operational amplifier and converter.
EEE 516: STATE SPACE DESIGN AND DIGITAL CONTROL
State Space Design: review of the state space system description. Controller design. Selection of pole locations for good design. Estimator design. Compensator design and introduction of the reference input. Integral control design for systems with pure time delay. A design case study to illustrate state space design using suitable software. Digital control: Sampled data systems and the z-transform, inverse z-transform. Difference equations and pulse transfer functions. Mapping between the s-plane and the z-plane. Stability analysis. Impulse sampling and Data holds (Zero-Order Hold, First- Order-Hold, etc). Reconstruction of signals from sampled signals - Shannons theorem, properties of the ideal low-pass filter, frequency response of the Zero-Order-Hold. Block-diagram analysis - open-loop and closed-loop systems. Controller design: direct and indirect design methods. Implementation of discrete-time controllers using microprocessors, digital signal processors and microcontrollers. A design case study to illustrate discrete-time controller design and implementation. State-space analysis for discrete-time systems.
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