Maximum Power Point Tracking Control of IPMSG Incorporating Loss Minimization and Speed Sensorless Schemes for Wind Energy System
In the variable-speed generation system, the wind turbine (WT) can be operated at maximum power operating points by adjusting the shaft speed optimally. This paper presents a novel maximum power point tracking (MPPT)-based control of interior permanent-magnet (IPM) synchronous generator incorporatin...
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Veröffentlicht in: | IEEE transactions on industry applications 2016-03, Vol.52 (2), p.1902-1912 |
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description | In the variable-speed generation system, the wind turbine (WT) can be operated at maximum power operating points by adjusting the shaft speed optimally. This paper presents a novel maximum power point tracking (MPPT)-based control of interior permanent-magnet (IPM) synchronous generator incorporating loss minimization algorithm (LMA). In the proposed method, without requiring the knowledge of wind speed, air density, or turbine parameters, MPPT algorithm generates optimum speed command for speed control loop of vector-controlled machine side converter. The MPPT algorithm uses the estimated active power output of the generator as its input and generates command speed so that maximum power is transferred to the dc link. The proposed control system also incorporates a LMA to minimize the losses in the generator and hence to improve the efficiency of the wind energy conversion system (WECS). A speed sensorless scheme is also incorporated to increase the reliability of the system. The performance of the proposed adaptive MPPT control of wind generator incorporating loss minimization and speed sensorless schemes is tested in both simulation and experiment at variable wind speed conditions. |
doi_str_mv | 10.1109/TIA.2015.2510507 |
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This paper presents a novel maximum power point tracking (MPPT)-based control of interior permanent-magnet (IPM) synchronous generator incorporating loss minimization algorithm (LMA). In the proposed method, without requiring the knowledge of wind speed, air density, or turbine parameters, MPPT algorithm generates optimum speed command for speed control loop of vector-controlled machine side converter. The MPPT algorithm uses the estimated active power output of the generator as its input and generates command speed so that maximum power is transferred to the dc link. The proposed control system also incorporates a LMA to minimize the losses in the generator and hence to improve the efficiency of the wind energy conversion system (WECS). A speed sensorless scheme is also incorporated to increase the reliability of the system. The performance of the proposed adaptive MPPT control of wind generator incorporating loss minimization and speed sensorless schemes is tested in both simulation and experiment at variable wind speed conditions.</description><identifier>ISSN: 0093-9994</identifier><identifier>EISSN: 1939-9367</identifier><identifier>DOI: 10.1109/TIA.2015.2510507</identifier><identifier>CODEN: ITIACR</identifier><language>eng</language><publisher>New York: IEEE</publisher><subject>Algorithms ; Commands ; Generators ; Loss minimization algorithm ; Mathematical model ; Maximum power ; Maximum power point trackers ; maximum power point tracking control ; Minimization ; Optimization ; Torque ; Wind energy ; Wind speed ; Wind turbines</subject><ispartof>IEEE transactions on industry applications, 2016-03, Vol.52 (2), p.1902-1912</ispartof><rights>Copyright The Institute of Electrical and Electronics Engineers, Inc. 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This paper presents a novel maximum power point tracking (MPPT)-based control of interior permanent-magnet (IPM) synchronous generator incorporating loss minimization algorithm (LMA). In the proposed method, without requiring the knowledge of wind speed, air density, or turbine parameters, MPPT algorithm generates optimum speed command for speed control loop of vector-controlled machine side converter. The MPPT algorithm uses the estimated active power output of the generator as its input and generates command speed so that maximum power is transferred to the dc link. The proposed control system also incorporates a LMA to minimize the losses in the generator and hence to improve the efficiency of the wind energy conversion system (WECS). A speed sensorless scheme is also incorporated to increase the reliability of the system. The performance of the proposed adaptive MPPT control of wind generator incorporating loss minimization and speed sensorless schemes is tested in both simulation and experiment at variable wind speed conditions.</description><subject>Algorithms</subject><subject>Commands</subject><subject>Generators</subject><subject>Loss minimization algorithm</subject><subject>Mathematical model</subject><subject>Maximum power</subject><subject>Maximum power point trackers</subject><subject>maximum power point tracking control</subject><subject>Minimization</subject><subject>Optimization</subject><subject>Torque</subject><subject>Wind energy</subject><subject>Wind speed</subject><subject>Wind turbines</subject><issn>0093-9994</issn><issn>1939-9367</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2016</creationdate><recordtype>article</recordtype><sourceid>RIE</sourceid><recordid>eNqNkcGrEzEQxoMoWJ_eBS8BL162zmyS3eb4KM9nocUHrXgM6e7kmeduUpMtWm_-56b04cGTlxmY-X0D33yMvUaYI4J-v1tdz2tANa8VgoL2CZuhFrrSommfshmAFpXWWj5nL3J-AECpUM7Y74396cfjyO_iD0ql-jDxXbLdNx_u-TKGKcWBR8dXd5vtLV-FLqZDTHY6r9cxZ77xwY_-V5nEwG3o-fZAVCqFHNNAhdh2X2mkzF1M_IsvxE2gdH_i21OeaHzJnjk7ZHr12K_Y5w83u-XHav3pdrW8XledUO1UFW8gFw10DnSjGhJ7qYVFiSgd1H2L2O1dv-8RrdY1kRB9q2rb4N4Bit6JK_bucveQ4vcj5cmMPnc0DDZQPGaDC1RFCQD_gYJSoBayLejbf9CHeEyhGDHYLpry8FrpQsGF6lJ5WSJnDsmPNp0MgjnHZ0p85hyfeYyvSN5cJJ6I_uKtaEBLIf4Aiy2Vdg</recordid><startdate>20160301</startdate><enddate>20160301</enddate><creator>Nasir Uddin, M.</creator><creator>Patel, Nirav</creator><general>IEEE</general><general>The Institute of Electrical and Electronics Engineers, Inc. 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This paper presents a novel maximum power point tracking (MPPT)-based control of interior permanent-magnet (IPM) synchronous generator incorporating loss minimization algorithm (LMA). In the proposed method, without requiring the knowledge of wind speed, air density, or turbine parameters, MPPT algorithm generates optimum speed command for speed control loop of vector-controlled machine side converter. The MPPT algorithm uses the estimated active power output of the generator as its input and generates command speed so that maximum power is transferred to the dc link. The proposed control system also incorporates a LMA to minimize the losses in the generator and hence to improve the efficiency of the wind energy conversion system (WECS). A speed sensorless scheme is also incorporated to increase the reliability of the system. The performance of the proposed adaptive MPPT control of wind generator incorporating loss minimization and speed sensorless schemes is tested in both simulation and experiment at variable wind speed conditions.</abstract><cop>New York</cop><pub>IEEE</pub><doi>10.1109/TIA.2015.2510507</doi><tpages>11</tpages></addata></record> |
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subjects | Algorithms Commands Generators Loss minimization algorithm Mathematical model Maximum power Maximum power point trackers maximum power point tracking control Minimization Optimization Torque Wind energy Wind speed Wind turbines |
title | Maximum Power Point Tracking Control of IPMSG Incorporating Loss Minimization and Speed Sensorless Schemes for Wind Energy System |
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