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Data-Based Predictive Control with Multirate Prediction StepData-based predictive control is an emerging control method that stems from Model Predictive Control (MPC). MPC computes current control action based on a prediction of the system output a number of time steps into the future and is generally derived from a known model of the system. Data-based predictive control has the advantage of deriving predictive models and controller gains from input-output data. Thus, a controller can be designed from the outputs of complex simulation code or a physical system where no explicit model exists. If the output data happens to be corrupted by periodic disturbances, the designed controller will also have the built-in ability to reject these disturbances without the need to know them. When data-based predictive control is implemented online, it becomes a version of adaptive control. One challenge of MPC is computational requirements increasing with prediction horizon length. This paper develops a closed-loop dynamic output feedback controller that minimizes a multi-step-ahead receding-horizon cost function with multirate prediction step. One result is a reduced influence of prediction horizon and the number of system outputs on the computational requirements of the controller. Another result is an emphasis on portions of the prediction window that are sampled more frequently. A third result is the ability to include more outputs in the feedback path than in the cost function.
Document ID
20110003571
Acquisition Source
Ames Research Center
Document Type
Conference Paper
Authors
Barlow, Jonathan S.
(SGT, Inc. Moffett Field, CA, United States)
Date Acquired
August 25, 2013
Publication Date
June 30, 2010
Subject Category
Mathematical And Computer Sciences (General)
Report/Patent Number
ARC-E-DAA-TN1724
Report Number: ARC-E-DAA-TN1724
Meeting Information
Meeting: 2010 American Control Conference - ACC2010
Location: Baltimore, MD
Country: United States
Start Date: June 30, 2010
End Date: July 2, 2010
Funding Number(s)
CONTRACT_GRANT: NNA08CG83C
Distribution Limits
Public
Copyright
Public Use Permitted.
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