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Fuzzy logic integrated electrical control to improve variable speed wind turbine efficiency and performance 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H02P-005/20
출원번호 US-0384055 (1995-02-06)
발명자 / 주소
  • Spiegel Ronald J. (Chapel Hill NC) Bose Bimal K. (Knoxville TN)
출원인 / 주소
  • The United States of America as represented by the Administrator of the U.S. Environmental Protection Agency (Washington DC 06)
인용정보 피인용 횟수 : 98  인용 특허 : 11

초록

A control system utilizing fuzzy logic adaptive control to control the operation of a wind turbine driven electric power generator to control power generator speed and hence power frequency while maximizing the power output of the power generator. Wind turbulence effects are eliminated and airgap ma

대표청구항

An efficient wind turbine driven electric power generator fuzzy logic based control system to improve power efficiency of the generator comprising: an induction operated generator including an air gap with magnetic flux; a pulse width modulated control to vary an operating speed of said generator to

이 특허에 인용된 특허 (11)

  1. Claude David L. (Justin TX), Apparatus and method for controlling the output frequency of a wind-driven alternator.
  2. Lauw Hian K. (Corvallis OR) Alexander Gerald C. (Corvallis OR), Doubly fed generator variable speed generation control system.
  3. Spiegel Ronald J. (Chapel Hill NC) Chappell Paul J. (Raleigh NC), Fuzzy logic integrated control method and apparatus to improve motor efficiency.
  4. Gonzalez Avelino J. (Forest Hills PA) Murphy Franklin J. (Oviedo FL) Emery Franklin T. (Orlando FL) Weyant Perry A. (Winter Springs FL) Craig William G. (Casselberry FL), Generator stator winding diagnostic system.
  5. Kawamura Hideaki (Hachioji JPX), Jump control system for an electric discharge machine.
  6. Jordan ; Jr. Lawrence B. (Bolingbrook IL), Locomotive traction control system using fuzzy logic.
  7. Orii Akira (Hachioji JPX), Motor speed control system.
  8. Saito Tadayoshi (Hitachiota JPX) Kawakami Junzo (Mito JPX) Takahashi Susumu (Katsuta JPX) Suehiro Testuo (Katsuta JPX) Matsumoto Hiroshi (Ibaraki JPX) Tachibana Kouji (Katsuta JPX), Pid controller system.
  9. Holley William E. (Pleasanton CA), Speed control system for a variable speed wind turbine.
  10. Syverson Charles D. (2007 Roe Crest Dr. North Mankato MN 56001), Wind power generator and control therefore.
  11. Syverson Charles D. (North Mankato MN), Wind power generator and control therefore.

이 특허를 인용한 특허 (98)

  1. Bilac, Mario; Fan, Chun; Terricciano, Paul, AC motor controller.
  2. Haissig Christine M. ; Woessner Michael A. ; Pirovolou Dimitris K., Adaptive fuzzy controller that modifies membership functions.
  3. Frampton, Isaac S.; Larson, Adam; Van Maaren, Richard, Alternator controller.
  4. Wilkins, Thomas A.; Elkachouty, Nagwa M.; Walling, Reigh A.; Lyons, James P.; Delmerico, Robert W.; Bose, Sumit; Miller, Nicholas Wright, Continuous reactive power support for wind turbine generators.
  5. Krueger, Thomas, Control device for wind power systems having power failure detection.
  6. Jadric, Ivan; Schnetzka, Harold, Control loop and method for variable speed drive ride-through capability improvement.
  7. Li, Shuhui; Haskew, Tim A., Control of a permanent magnet synchronous generator wind turbine.
  8. Jalbout, Bassam D.; Wong, Brian, Control of light intensity using pulses of a fixed duration and frequency.
  9. Tracy,Mark D.; Klein,Jesse N., Control system for a sputtering system.
  10. Ibaraki Shigeru,JPX ; Kiuchi Takeo,JPX, Control system for hybrid vehicle.
  11. Shoichi Maeda JP, Controller and control method for motor/generator.
  12. Li, Shuhui; Haskew, Timothy A., Converter control of variable-speed wind turbines.
  13. Sarlioglu, Bulent; Huggett, Colin E., Decoupling of cross coupling for floating reference frame controllers for sensorless control of synchronous machines.
  14. Kawas, Percy; Kawas, Gulnar, Device, system and method to lower starting torque for electrical system.
  15. Sullivan, Brian J., Devices and methods for magnetic flux return optimization in electromagnetic machines.
  16. Sullivan, Brian J., Devices and methods for magnetic flux return optimization in electromagnetic machines.
  17. Tripathi, Anshuman; Yu, Cao Shu; Jörgensen, Allan Holm; Helle, Lars; Gupta, Saurabh, Direct power and stator flux vector control of a generator for wind energy conversion system.
  18. Tripathi, Anshuman; Yu, Cao Shu; Jörgensen, Allan Holm; Helle, Lars; Gupta, Saurabh, Direct power and stator flux vector control of a generator for wind energy conversion system.
  19. Green,Tim Charles; Mansir,Hassan; Prodanovic,Milan, Distributed control method.
  20. Mazza Ettore,ITX ; Russo Biagio,ITX ; Giacalone Biagio,ITX ; Bourgeois Jean-Marie,FRX, Driving of a three-phase motor with fuzzy logic control of the slip.
  21. Lazaris, Spyros James, Dynamic demand response in a renewable energy-based electricity grid infrastructure.
  22. Scott Michael W., Efficient fuzzy logic fault accommodation algorithm.
  23. Marra, III, Michael Anthony; Mayo, Randall David, Electric motor velocity controller.
  24. Smith, James S.; Pillsbury, Robert; Sullivan, Brian, Flux focusing arrangement for permanent magnets, methods of fabricating such arrangements, and machines including such arrangements.
  25. Smith, James S.; Pillsbury, Robert; Sullivan, Brian, Flux focusing arrangement for permanent magnets, methods of fabricating such arrangements, and machines including such arrangements.
  26. Smith, James S.; Pillsbury, Robert; Sullivan, Brian J., Flux focusing arrangement for permanent magnets, methods of fabricating such arrangements, and machines including such arrangements.
  27. Smith, James S.; Pillsbury, Robert; Sullivan, Brian J., Flux focusing arrangement for permanent magnets, methods of fabricating such arrangements, and machines including such arrangements.
  28. Wu, Hsien-Cheng Kevin; Heil, Edward, Fuzzy logic based brake control.
  29. Sepe, Jr., Raymond B; Miller, John Michael, Fuzzy logic controller optimization.
  30. Ichinose, Masaya; Futami, Motoo; Arita, Hiroshi, Gas turbine system and method for controlling the same.
  31. Ou, Ting-Chia, Hybrid intelligent control method and system for power generating apparatuses.
  32. Heber, Brian P.; Chen, Xian; Taylor, Paul, Intelligent sensorless control of a phase controlled rectifier.
  33. Rexilius, Stephan, Inverter circuit having a controller to supply a reactive current on a phase with a voltage drop.
  34. Bo, Yin; Deng, Heng; Larsen, Kim B., Method and a controlling arrangement for controlling an AC generator.
  35. Suliman,Alaadin M.; Willey,Lawrence Donald, Method and apparatus for capture of grid characteristics corresponding to fluctuation events.
  36. Kabatzke, Wolfgang; Jurkat, Mark; Harms, Ulrich, Method and apparatus for the operation of a wind energy plant in the power-limited operation.
  37. Barbu,Corneliu; Teichmann,Ralph; Avagliano,Aaron; Kammer,Leonardo Cesar; Pierce,Kirk Gee; Pesetsky,David Samuel; Gauchel,Peter, Method and apparatus for wind turbine braking.
  38. Tripathi, Anshuman; Cao, Shu Yu; Donescu, Victor; Andersen, Søren; D-O Mohamed Arif, Rasool Beevi, Method and system for operating an electromechanical generator.
  39. Lyons James Patrick ; Esser Albert Andreas Maria ; Bixel Paul Scott, Method and system for wind turbine braking.
  40. Patel, Nitinkumar R.; O'Meara, Thomas P., Method and system of reducing inefficiencies in an internal permanent magnet motor using fuzzy logic.
  41. Lausen, Hans Henrik, Method for controlling at least one adjustment mechanism of a wind turbine, a wind turbine and a wind park.
  42. Wilson, Kitchener Clark; Zhang, Feng; Chen, Lin; Sun, Yuping, Method for operating a wind turbine based on degradation of wind turbine blade.
  43. Christiansen, Per Moelhave; Esbensen, Thomas; Laurberg, Hans; Rieper, Johnny, Method for operating a wind turbine having a rotor hub supporting at least one rotor blade.
  44. Siegfriedsen, Sonke, Method for operating offshore wind turbine plants based on the frequency of their towers.
  45. Pasuri,Osmo, Method in a wind power plant.
  46. Goodman, Jenny; Hales, Kelvin, Method of controlling a wind turbine.
  47. Victor R. Stefanovic ; John Michael Miller, Method of controlling an induction generator.
  48. Llorente Gonzalez,Jose Ignacio, Method of operating a wind turbine.
  49. Banerjee, Swarnab; Sullivan, Brian J.; Smith, James S., Methods and apparatus for protection in a multi-phase machine.
  50. Jalbout, Bassam D.; Wong, Brian, Methods and systems for controlling electrical power to DC loads.
  51. Winterhalter, Craig R.; Schmidt, Robert H.; Baran, Michael S.; Oestreich, Todd M., Motor drive system with bus voltage control.
  52. Delmerico, Robert William; Yuan, Xiaoming, Power conversion system and method for a rotary power generation system.
  53. Schreiber,Dejan; Heilbronner,Heinrich, Power converter circuit and associated triggering method for generators with dynamically variable power output.
  54. Schreiber, Dejan, Power converter circuit arrangement for generators with dynamically variable power output.
  55. Venturini, Marco; Calvini, Marco, Power supply and drive device for a permanent magnet electric motor.
  56. Henriksen Carsten,DKX, Procedure to connect an asynchronous generator on an alternating current and an electrical connecting for use at this procedure.
  57. Lee, Chun-Yao, Rotating electrical machine abnormal state detection method and apparatus and wind driven generating system using the same.
  58. Hua, Yahan; Wu, Dongxiao; Lequesne, Bruno Patrice-Bernard; Klapstein, David Lee; Dimino, Steven Andrew; Woodley, Kaijam M., Soft starter system and method of operating same.
  59. Petter, Jeffrey K., Speed setting system and method for a stall-controlled wind turbine.
  60. Gerber, Brandon Shane; Perley, Thomas Franklin; Rastogi, Rahul, System and method for controlling a wind turbine.
  61. Hall, David J.; Krefta, Mark P., System and method for controlling an electric motor.
  62. Delmerico, Robert William; Cardinal, Mark Edward; Miller, Nicholas Wright; Liu, Dapeng; Ye, Zhihong, System and method for controlling operation of a solar power generation system.
  63. Perley, Thomas Franklin; Gerber, Brandon Shane; Gandhi, Jignesh Govindlal; Vadlamudi, Venkata Krishna, System and method for preventing excessive loading on a wind turbine.
  64. Slack, Robert Peter; Gerber, Brandon Shane; Perley, Thomas Franklin; Movsichoff, Bernardo Adrian, System and method for thrust-speed control of a wind turbine.
  65. Klodowski, Anthony Michael; Barker, Sidney Allen, System for improved wind turbine generator performance.
  66. Delmerico,Robert; Cardinal,Mark; Miller,Nicholas; Liu,Dapeng; Ye,Zhihong, System, method, and article of manufacture for controlling operation of an electrical power generation system.
  67. Trimble, Daniel; McConnell, Robert, Systems and methods for boosting DC link voltage in turbine generators.
  68. Edenfeld, Thomas, Systems and methods for increasing wind turbine power output.
  69. Conway, Brian D.; O'Gorman, Patrick A.; Stephens, Dennis L., Systems and methods for optimizing the operation of a generator.
  70. Rajashekara, Kaushik; Alt, John Timothy, Systems and methods for synchronous power generation.
  71. Jalbout, Bassam D.; Wong, Brian, Traction system for electrically powered vehicles.
  72. Lazaris, Spyros James, Transmission system for delivery of dynamic demand response in a renewable energy-based electricity grid infrastructure.
  73. Perriere, Bernard, Turbine having optimized efficiency.
  74. Himmelmann, Richard A., Unmanned underwater vehicle propulsion system including an AC power distribution bus.
  75. Mikhail,Amir S.; Cousineau,Kevin L.; Howes,Lawrence H.; Erdman,William; Holley,William, Variable speed distributed drive train wind turbine system.
  76. Jadric,Ivan; Schnetzka,Harold Robert, Variable speed drive for a chiller system.
  77. Jadric,Ivan; Schnetzka,Harold Robert; Smith,Stephen Harold, Variable speed drive for a chiller system with a switched reluctance motor.
  78. Kovach, Joesph A.; Lindner, Norman C.; Nicol, Bradley E.; Kimpel, Richard D., Variable speed wind turbine drive and control system.
  79. Amir S. Mikhail ; Craig L. Christenson ; Kevin L. Cousineau ; William L. Erdman ; William E. Holley, Variable speed wind turbine generator.
  80. Mikhail, Amir S.; Christenson, Craig L.; Cousineau, Kevin L.; Erdman, William L.; Holley, William E., Variable speed wind turbine generator.
  81. Mikhail, Amir S.; Christenson, Craig L.; Cousineau, Kevin L.; Erdman, William L.; Holley, William E., Variable speed wind turbine generator.
  82. Mikhail, Amir S.; Christenson, Craig L.; Cousineau, Kevin L.; Erdman, William L.; Holley, William E., Variable speed wind turbine generator.
  83. Mikhail,Amir S.; Christenson,Craig L.; Cousineau,Kevin L.; Erdman,William L.; Holley,William E., Variable speed wind turbine generator.
  84. Feddersen, Lorenz; Siebenthaler, Eckardt; Andresen, Bj?rn, Variable speed wind turbine having a passive grid side rectifier with scalar power control and dependent pitch control.
  85. Feddersen,Lorenz; Siebenthaler,Eckardt; Andresen,Bj철rn, Variable speed wind turbine having a passive grid side rectifier with scalar power control and dependent pitch control.
  86. Kalman, Gabor; Huggett, Colin, Voltage control of an HR-PMG without a rotor position sensor.
  87. Premkumar, Jayant; Hu, Jiamu; Lobbestael, Brad; Wu, Hsien-cheng, Wheel speed estimation using a drivetrain model.
  88. Letas, Heinz-Hermann; Fortmann, Jens, Wind energy installation having a double-energized asynchronous generator and converter control.
  89. Fortmann, Jens, Wind energy installation having converter control.
  90. Xue, Haifen; Chen, Li; Lu, Fei; Wang, Changyong, Wind power generation control device and wind power generation system having the same.
  91. Feddersen,Lorenz, Wind power plant having magnetic field adjustment according to rotation speed.
  92. Calley, David Gregory; Knowler, Harrison Marden, Wind turbine controller.
  93. Ichinose, Masaya; Futami, Motoo; Sakai, Hiromitsu, Wind turbine generator system.
  94. Ichinose, Masaya; Futami, Motoo; Sakai, Hiromitsu, Wind turbine generator system.
  95. Ichinose, Masaya; Futami, Motoo; Sakai, Hiromitsu, Wind turbine generator system.
  96. Ichinose,Masaya; Futami,Motoo; Sakai,Hiromitsu, Wind turbine generator system.
  97. Ichinose,Masaya; Futami,Motoo; Sakai,Hiromitsu, Wind turbine generator system.
  98. Garrigan, Neil Richard; Young, Henry Todd, Wound field synchronous machine control system and method.
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