Feedback Flow Control for a Pitching Turret (Part I) (POSTPRINT)

Abstract

Closed-loop systems have been developed for controlling the flow above a three-dimensional turret. The top of the turret is hemispherical, houses a flat optical aperture, and can rotate about two axes (pitch and yaw). The extent of separation and concomitant turbulence levels in the flow above the aperture change as the turret rotates. The control objective is to minimize the separation and turbulence in the dynamic environment created by the articulating turret. The closed-loop control systems include dynamical and measurement-based estimators, regulators, filters, and compensators. These components are developed using both computational data from CFD simulations and experimental data from wind tunnel runs within the common framework of SMARTflow - engineering software for flow control system design. The control systems are evaluated through a series of control-in-the-loop CFD simulations and wind tunnel runs, demonstrating the merits of feedback control through robustness in the presence of measurement noise, modeling errors, and highly unsteady conditions and through reductions in actuation energy below levels required by open-loop systems. Controller designs and computational tests are described here; wind tunnel tests are described in the companion paper.

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Document Details

Document Type
Technical Report
Publication Date
Jan 01, 2010
Accession Number
ADA516389

Entities

People

  • H. A. Carlson
  • M. N. Glauser
  • P. R. Shea
  • R. D. Wallace
  • T. Vaithianathan

Tags

Communities of Interest

  • Energy and Power Technologies
  • Space

DTIC Thesaurus Topics

  • Air Force
  • Air Force Research Laboratories
  • Closed Loop Systems
  • Computational Fluid Dynamics
  • Control Systems
  • Differential Equations
  • Estimators
  • Experimental Data
  • Feedback
  • Fluid Dynamics
  • Fluid Flow
  • Hypervelocity Flow
  • Measurement
  • Open Loop Systems
  • Three Dimensional
  • Wind Tunnel Tests
  • Wind Tunnels

Fields of Study

  • Physics

Readers

  • Adaptive Control and Estimation with Uncertainty in Dynamic Systems.
  • Fluid Mechanics and Fluid Dynamics.
  • ballistics.