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Course Criteria
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0.00 - 3.00 Credits
(3-0) Cr. 3. S. Prereq: E E 565. Avionics functions. Applications of systems engineering principles to avionics. Top-down design of avionics systems. Automated design tools.
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0.00 - 3.00 Credits
(3-0) Cr. 3. Alt. S., offered 2008. Prereq : E M 324. Mechanics of fi ber-reinforced materials. Micromechanics of lamina. Macromechanical behavior of lamina and laminates. Strength and interlaminar stresses of laminates. Failure criteria. Stress analysis of laminates. Thermal moisture and residual stresses. Joints in composites.
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0.00 - 3.00 Credits
(3-0) Cr. 3. F. Prereq : E M 378, 345. Atmospheric circulations, atmospheric boundary layer wind, bluff-body aerodynamics, aeroelastic phenomena, wind-tunnel and full-scale testing, wind-load code and standards, effect of tornado and thunderstorm winds, design applications.
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0.00 - 3.00 Credits
(3-0) Cr. 3. Alt. S., offered 2008. Prereq : 543 or M E 538. Qualitative features of turbulence. Statistical and spectral representation of turbulent velocity fi elds: averages, moments, correlations, length and time scales and the energy cascade. Averaged equations of motion, closure requirements, Reynolds stress, dissipation rate. Isotropic turbulence, homogeneous shear fl ows, free shear fl ows, wall bounded fl ows. Scalar transport, particulate transport.
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0.00 - 3.00 Credits
(3-0) Cr. 3. F. Prereq : E E 324 or Aer E 331 or M E 370 or 411 or Math 341 or 395. Elementary notions of probability. Random processes. Autocorrelation and spectral functions. Estimation of spectrum from fi nite data. Response of linear systems to random inputs. Discrete and continuous Kalman fi lter theory and applications. Smoothing and prediction. Linearization of nonlinear dynamics.
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0.00 - 3.00 Credits
(3-0) Cr. 3. S. Prereq: E E 577. The optimal control problem. Variational approach. Pontryagin's principle. Hamilton-Jacobi equation. Dynamic programming. Time-optimal, minimum fuel, minimum energy control systems. The regulator problem. Structures and properties of optimal controls.
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0.00 - 3.00 Credits
(3-0) Cr. 3. Prereq : E E 577. Introduction to modern robust control. Model and signal uncertainty in control systems. Uncertainty description. Stability and performance robustness to uncertainty. Solutions to the H2, Hoo, and l1 control problems. Tools for robustness analysis and synthesis.
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0.00 - 3.00 Credits
(Cross-listed with E E, Math, M E). (3-0) Cr. 3. F. Prereq : E E 475 or Aer E 432 or M E 411 or 414 or Math 415; and Math 267. Sampled data, discrete data, and the z-transform. Design of digital control systems using transform methods; root locus, frequency response and direct design methods. Design using state-space methods. Controllability, observability, pole placement, state estimators. Digital fi lters in control systems. Microcomputer implementation of digital fi lters. Finite wordlength effects. Linear quadratic optimal control in digital control systems. Simulation of digital control systems.
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0.00 - 3.00 Credits
(3-0) Cr. 3. F. Prereq : E E 324 or Aer E 331 or M E 414 or Math 415; and Math 307. State variable and input-output descriptions of linear continuoustime and discrete time systems. Solution of linear dynamical equations. Controllability and observability of linear dynamical systems. Canonical descriptions of linear equations. Irreducible realizations of rational transfer function matrices. Canonical form dynamical equations. State feedback. State estimators. Decoupling by state feedback. Design of feedback systems. Stability of linear dynamical systems.
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0.00 - 3.00 Credits
(3-0) Cr. 3. S. Prereq: E E 577. Classifi cation of nonlinear control systems. Existence and uniqueness of solutions. Approximate analysis methods. Periodic orbits. Concept of stability and Lyapunov stability theory. Absolute stability of feedback systems. Input-output stability. Passivity.
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