An MPC approach to individual pitch control of wind turbines using uncertain LIDAR measurements
Spatial distribution of the wind field exerts unbalanced loads on wind turbine structures and it is shown these loads could be mitigated by controlling each blade's angle individually (individual pitch control). In this work the problem of individual pitch control of a variable-speed variable-p...
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creator | Mirzaei, Mahmood Soltani, Mohsen Poulsen, Niels K. Niemann, Hans H. |
description | Spatial distribution of the wind field exerts unbalanced loads on wind turbine structures and it is shown these loads could be mitigated by controlling each blade's angle individually (individual pitch control). In this work the problem of individual pitch control of a variable-speed variable-pitch wind turbine in the full load region is considered. Model predictive control (MPC) is used to solve the problem. A new approach is proposed to simplify the optimization problem of MPC. We linearize the obtained nonlinear model for different operating points which are determined by the effective wind speed on the rotor disc and take the wind speed as a scheduling variable. The wind speed is measurable ahead of the turbine using LIDARs, therefore the scheduling variable is known for the entire prediction horizon. We consider uncertainty in the wind propagation, which is the traveling time of wind from the LIDAR measurement point to the rotor. An algorithm based on wind speed estimation and measurements from the LIDAR is devised to find an estimate of the delay and compensate for it before it is used in the controller. Comparisons between the MPC with error compensation, without error compensation and a benchmark cyclic pitch PI controller are given. The results show that with appropriate signal processing techniques, LIDAR measurements improve the performance of the wind turbine controller. |
doi_str_mv | 10.23919/ECC.2013.6669729 |
format | Conference Proceeding |
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In this work the problem of individual pitch control of a variable-speed variable-pitch wind turbine in the full load region is considered. Model predictive control (MPC) is used to solve the problem. A new approach is proposed to simplify the optimization problem of MPC. We linearize the obtained nonlinear model for different operating points which are determined by the effective wind speed on the rotor disc and take the wind speed as a scheduling variable. The wind speed is measurable ahead of the turbine using LIDARs, therefore the scheduling variable is known for the entire prediction horizon. We consider uncertainty in the wind propagation, which is the traveling time of wind from the LIDAR measurement point to the rotor. An algorithm based on wind speed estimation and measurements from the LIDAR is devised to find an estimate of the delay and compensate for it before it is used in the controller. Comparisons between the MPC with error compensation, without error compensation and a benchmark cyclic pitch PI controller are given. The results show that with appropriate signal processing techniques, LIDAR measurements improve the performance of the wind turbine controller.</description><identifier>EISBN: 9783033039629</identifier><identifier>EISBN: 3033039626</identifier><identifier>DOI: 10.23919/ECC.2013.6669729</identifier><language>eng</language><publisher>EUCA</publisher><subject>Blades ; Delays ; Laser radar ; Measurement uncertainty ; Rotors ; Wind speed ; Wind turbines</subject><ispartof>2013 European Control Conference (ECC), 2013, p.490-495</ispartof><oa>free_for_read</oa><woscitedreferencessubscribed>false</woscitedreferencessubscribed></display><links><openurl>$$Topenurl_article</openurl><openurlfulltext>$$Topenurlfull_article</openurlfulltext><thumbnail>$$Tsyndetics_thumb_exl</thumbnail><linktohtml>$$Uhttps://ieeexplore.ieee.org/document/6669729$$EHTML$$P50$$Gieee$$H</linktohtml><link.rule.ids>310,311,781,785,790,791,2059,27930,54925</link.rule.ids><linktorsrc>$$Uhttps://ieeexplore.ieee.org/document/6669729$$EView_record_in_IEEE$$FView_record_in_$$GIEEE</linktorsrc></links><search><creatorcontrib>Mirzaei, Mahmood</creatorcontrib><creatorcontrib>Soltani, Mohsen</creatorcontrib><creatorcontrib>Poulsen, Niels K.</creatorcontrib><creatorcontrib>Niemann, Hans H.</creatorcontrib><title>An MPC approach to individual pitch control of wind turbines using uncertain LIDAR measurements</title><title>2013 European Control Conference (ECC)</title><addtitle>ECC</addtitle><description>Spatial distribution of the wind field exerts unbalanced loads on wind turbine structures and it is shown these loads could be mitigated by controlling each blade's angle individually (individual pitch control). In this work the problem of individual pitch control of a variable-speed variable-pitch wind turbine in the full load region is considered. Model predictive control (MPC) is used to solve the problem. A new approach is proposed to simplify the optimization problem of MPC. We linearize the obtained nonlinear model for different operating points which are determined by the effective wind speed on the rotor disc and take the wind speed as a scheduling variable. The wind speed is measurable ahead of the turbine using LIDARs, therefore the scheduling variable is known for the entire prediction horizon. We consider uncertainty in the wind propagation, which is the traveling time of wind from the LIDAR measurement point to the rotor. An algorithm based on wind speed estimation and measurements from the LIDAR is devised to find an estimate of the delay and compensate for it before it is used in the controller. Comparisons between the MPC with error compensation, without error compensation and a benchmark cyclic pitch PI controller are given. The results show that with appropriate signal processing techniques, LIDAR measurements improve the performance of the wind turbine controller.</description><subject>Blades</subject><subject>Delays</subject><subject>Laser radar</subject><subject>Measurement uncertainty</subject><subject>Rotors</subject><subject>Wind speed</subject><subject>Wind turbines</subject><isbn>9783033039629</isbn><isbn>3033039626</isbn><fulltext>true</fulltext><rsrctype>conference_proceeding</rsrctype><creationdate>2013</creationdate><recordtype>conference_proceeding</recordtype><sourceid>6IE</sourceid><sourceid>RIE</sourceid><recordid>eNotkMFKxDAYhONBUNY-gHjJC2z9k2zT5LjUVRcqiuh5-TdNNNKmJUkV396CCwMD88HADCHXDEouNNO3u6YpOTBRSil1zfUZKXStBIhFWnJ9QYqUvgCA1TWTVXVJDttAn14aitMURzSfNI_Uh85_-27Gnk4-L5kZQ45jT0dHfxZI8xyPPthE5-TDB52DsTGjD7Td321f6WAxzdEONuR0Rc4d9skWJ1-R9_vdW_O4bp8f9s22XXuuNnltlMa6M06iA8clgkMJumNgKzCVVdIcUSGqjdIVIGfLPnncCFE5pjspQazIzX-vt9YepugHjL-H0w3iD0GZU1o</recordid><startdate>201307</startdate><enddate>201307</enddate><creator>Mirzaei, Mahmood</creator><creator>Soltani, Mohsen</creator><creator>Poulsen, Niels K.</creator><creator>Niemann, Hans H.</creator><general>EUCA</general><scope>6IE</scope><scope>6IL</scope><scope>CBEJK</scope><scope>RIE</scope><scope>RIL</scope></search><sort><creationdate>201307</creationdate><title>An MPC approach to individual pitch control of wind turbines using uncertain LIDAR measurements</title><author>Mirzaei, Mahmood ; Soltani, Mohsen ; Poulsen, Niels K. ; Niemann, Hans H.</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-i284t-c89a7dcf6af0f26a0fa609d10e50c5e86cba8aa848950a216666b4335f19d6603</frbrgroupid><rsrctype>conference_proceedings</rsrctype><prefilter>conference_proceedings</prefilter><language>eng</language><creationdate>2013</creationdate><topic>Blades</topic><topic>Delays</topic><topic>Laser radar</topic><topic>Measurement uncertainty</topic><topic>Rotors</topic><topic>Wind speed</topic><topic>Wind turbines</topic><toplevel>online_resources</toplevel><creatorcontrib>Mirzaei, Mahmood</creatorcontrib><creatorcontrib>Soltani, Mohsen</creatorcontrib><creatorcontrib>Poulsen, Niels K.</creatorcontrib><creatorcontrib>Niemann, Hans H.</creatorcontrib><collection>IEEE Electronic Library (IEL) Conference Proceedings</collection><collection>IEEE Proceedings Order Plan All Online (POP All Online) 1998-present by volume</collection><collection>IEEE Xplore All Conference Proceedings</collection><collection>IEEE Electronic Library Online</collection><collection>IEEE Proceedings Order Plans (POP All) 1998-Present</collection></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext_linktorsrc</fulltext></delivery><addata><au>Mirzaei, Mahmood</au><au>Soltani, Mohsen</au><au>Poulsen, Niels K.</au><au>Niemann, Hans H.</au><format>book</format><genre>proceeding</genre><ristype>CONF</ristype><atitle>An MPC approach to individual pitch control of wind turbines using uncertain LIDAR measurements</atitle><btitle>2013 European Control Conference (ECC)</btitle><stitle>ECC</stitle><date>2013-07</date><risdate>2013</risdate><spage>490</spage><epage>495</epage><pages>490-495</pages><eisbn>9783033039629</eisbn><eisbn>3033039626</eisbn><abstract>Spatial distribution of the wind field exerts unbalanced loads on wind turbine structures and it is shown these loads could be mitigated by controlling each blade's angle individually (individual pitch control). In this work the problem of individual pitch control of a variable-speed variable-pitch wind turbine in the full load region is considered. Model predictive control (MPC) is used to solve the problem. A new approach is proposed to simplify the optimization problem of MPC. We linearize the obtained nonlinear model for different operating points which are determined by the effective wind speed on the rotor disc and take the wind speed as a scheduling variable. The wind speed is measurable ahead of the turbine using LIDARs, therefore the scheduling variable is known for the entire prediction horizon. We consider uncertainty in the wind propagation, which is the traveling time of wind from the LIDAR measurement point to the rotor. An algorithm based on wind speed estimation and measurements from the LIDAR is devised to find an estimate of the delay and compensate for it before it is used in the controller. Comparisons between the MPC with error compensation, without error compensation and a benchmark cyclic pitch PI controller are given. The results show that with appropriate signal processing techniques, LIDAR measurements improve the performance of the wind turbine controller.</abstract><pub>EUCA</pub><doi>10.23919/ECC.2013.6669729</doi><tpages>6</tpages><oa>free_for_read</oa></addata></record> |
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language | eng |
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source | IEEE Electronic Library (IEL) Conference Proceedings |
subjects | Blades Delays Laser radar Measurement uncertainty Rotors Wind speed Wind turbines |
title | An MPC approach to individual pitch control of wind turbines using uncertain LIDAR measurements |
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