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Project

  • Midterm evaluation is based on interim report and presentation before a committee
  • A final report in the prescribed format on the literature survey, theoretical analysis, design guidelines, simulation and experimental results etc. to be submitted to the committee during end semester evaluation
  • Final evaluation is done based on the technical presentation before an expert committee, report submitted and supervisor’s assessment

Project

  • Midterm evaluation is based on interim report and presentation before a committee
  • A final report in the prescribed format on the literature survey, theoretical analysis, design guidelines, simulation and experimental results etc. to be submitted to the committee during end semester evaluation
  • Final evaluation is done based on the technical presentation before an expert committee, report submitted and supervisor’s assessment

Nonlinear Control Systems

Nonlinear Control: An introduction to vector fields, flows and integral curves of differential equations, Lie Brackets, Frobenious theorem, Orbits, accessibility and controllability, Control design based on Liapunov’s method

Feedback Linearization: Feedback Linearization and the canonical form, Input‐state Linearization of SISO systems, Input output Linearization of SISO systems

Embedded System Design Lab

Introduction to C: 'Hello World!' program, Fizz-buzz program, and Fizz-Buzz-Zazz program.

Micro controllers and DSP: Getting started with Code composer studio/ PSoC Creator: Architecture and review of Digital Signal Controllers/ microcontroller (PSoC), Architecture of PSoC-5 LP, PSoC Creator edit and debug modes, blinking of an LED with one second ON, half second OFF

Advanced Mathematics

Vectors: Representation and Dot products, Norms, Matrices: The Four Fundamental Spaces of a Matrix, The Matrix as a Linear Operator, The Geometry associated with matrix operations, Inverses and Generalized Inverses, Matrix factorization/Decompositions, rank of a matrix, Matrix Norms.

Control System Design

Basics of feedback control: History and motivation for feedback; terminologies, Frequency response, Stability concepts, Bandwidth, Transient response, closed loop design specifications w.r.t tracking and disturbance rejection, Sensitivity to parameter variations. Linear Control System Design Techniques: PD, PI and PID controllers, Lead and Lag compensators, Controller design with root locus technique, frequency response technique and state-space technique.

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