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Computational Fluid Dynamics based Iterative Learning Control for Smart Rotor Enabled Fatigue Load Reduction in Wind Turbines

Computational Fluid Dynamics based Iterative Learning Control for Smart Rotor Enabled Fatigue Load Reduction in Wind Turbines
Computational Fluid Dynamics based Iterative Learning Control for Smart Rotor Enabled Fatigue Load Reduction in Wind Turbines
4458-4463
Blackwell, M.W.
c1d44f46-2510-4188-9e3e-fce6b6d8134a
Tutty, O.R.
c9ba0b98-4790-4a72-b5b7-09c1c6e20375
Rogers, E
611b1de0-c505-472e-a03f-c5294c63bb72
Blackwell, M.W.
c1d44f46-2510-4188-9e3e-fce6b6d8134a
Tutty, O.R.
c9ba0b98-4790-4a72-b5b7-09c1c6e20375
Rogers, E
611b1de0-c505-472e-a03f-c5294c63bb72

Blackwell, M.W., Tutty, O.R. and Rogers, E (2014) Computational Fluid Dynamics based Iterative Learning Control for Smart Rotor Enabled Fatigue Load Reduction in Wind Turbines. American Control Conference, Portland, OR. 04 - 06 Jun 2014. pp. 4458-4463 .

Record type: Conference or Workshop Item (Paper)

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More information

Accepted/In Press date: 2014
Published date: 2014
Venue - Dates: American Control Conference, Portland, OR, 2014-06-04 - 2014-06-06
Organisations: Southampton Wireless Group

Identifiers

Local EPrints ID: 361922
URI: http://eprints.soton.ac.uk/id/eprint/361922
PURE UUID: 5df3e2da-7b5f-4357-b05a-290f7b52b8b0
ORCID for E Rogers: ORCID iD orcid.org/0000-0003-0179-9398

Catalogue record

Date deposited: 05 Feb 2014 19:38
Last modified: 05 Mar 2024 02:33

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Contributors

Author: M.W. Blackwell
Author: O.R. Tutty
Author: E Rogers ORCID iD

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