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[미국특허] Hybrid vehicle drive system adapted to prevent concurrent mode change and transmission shifting or torque distribution 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • B60L-011/12
  • B61C-009/38
출원번호 US-0838130 (1997-04-15)
우선권정보 JP-0220247 (1996-08-22)
발명자 / 주소
  • Tabata Atsushi,JPX
  • Taga Yutaka,JPX
  • Ibaraki Ryuji,JPX
  • Hata Hiroshi,JPX
  • Mikami Tsuyoshi,JPX
출원인 / 주소
  • Toyota Jidosha Kabushiki Kaisha, JPX
대리인 / 주소
    Oliff & Berridge, PLC
인용정보 피인용 횟수 : 69  인용 특허 : 8

초록

A hybrid drive system including an engine and an electric motor at least one of which is operated as drive power source to drive a motor vehicle in a selected one of different operation modes. The system is adapted to prevent concurrent operations to change the operation mode and the speed ratio of

대표청구항

[ What is claimed is:] [1.] A hybrid drive system for a motor vehicle, comprising:a drive power source including an engine operated by combustion of a fuel, and an electric motor operated with an electric energy, at least one of said engine and said electric motor being operated for driving the moto

이 특허에 인용된 특허 (8) 인용/피인용 타임라인 분석

  1. Urban Edward F. ; Mavroudis George E. ; Peskin Brian, Energy distribution method for hydrid electric vehicle.
  2. Sherman James F. (Brighton MI), Hybrid power transmission.
  3. Gray ; Jr. Charles L. (Pickney MI) Hellman Karl H. (Ann Arbor MI) Safoutin Michael J. (Ann Arbor MI), Hybrid powertrain vehicle.
  4. Kubo Kaoru,JPX, Hybrid vehicle and its control method.
  5. Yoshida Masato (Kyoto JPX), Operating method for a hybrid car.
  6. Buschhaus Wolfram ; Bates Bradford ; Belaire Richard C. ; Gale Allan R., Parallel hybrid powertrain for an automotive vehicle.
  7. Hibi Toshifumi (Yokohama JPX), Ratio change control for transmission.
  8. Ibaraki Ryuji,JPX ; Taga Yutaka,JPX ; Hata Hiroshi,JPX ; Tabata Atsushi,JPX ; Kubo Seitoku,JPX, Vehicle control apparatus adapted to select engine-or motor-drive mode based on physical quantity reflecting energy con.

이 특허를 인용한 특허 (69) 인용/피인용 타임라인 분석

  1. Minowa,Toshimichi; Ochi,Tatsuya; Kuragaki,Satoru; Kayano,Mitsuo; Yoshikawa,Tokuji, Automotive control apparatus and method.
  2. Endo, Hiroatsu, Control apparatus and control method for drive apparatus of hybrid vehicle.
  3. Ueno, Munetoshi, Control apparatus and method for controlling a hybrid vehicle.
  4. Yamamoto, Akihiro; Yonekura, Takahiro; Nishi, Tomohiro; Sugiyama, Tetsu; Tatara, Yusuke, Control device for controlling front and rear wheel drive vehicle.
  5. Matsubara, Tooru; Tabata, Atsushi; Kaifuku, Masakazu, Control device for vehicle power transmission device.
  6. Tabata, Atsushi; Inoue, Yuji; Kamada, Atsushi, Control device for vehicular drive apparatus.
  7. Tabata, Atsushi; Matsubara, Tooru; Shibata, Hiroyuki; Kumazaki, Kenta; Iwase, Yuji; Kaifuku, Masakazu, Control device for vehicular power transmitting apparatus.
  8. Itoh,Yoshiki; Mori,Tatsuji; Noda,Norihiro, Controller for hybrid vehicle.
  9. Itoh,Yoshiki; Mori,Tatsuji; Noda,Norihiro, Controller for hybrid vehicle.
  10. Itoh,Yoshiki; Mori,Tatsuji; Noda,Norihiro, Controller with motor output torque limiter for hybrid vehicle.
  11. Nedorezov, Felix; Jahr, Kenneth; Gibson, Alexander O'Connor; McCullough, Todd; Banker, Adam Nathan, Controlling a clutch between an engine and a motor during a shift event in a hybrid vehicle.
  12. Suzuki,Takehiko; Yamaguchi,Yasuo; Wakuta,Satoru, Driving control device and method for electric vehicle and program therefor.
  13. Guedes-Pinto, Paulo; Saban, Daniel M.; Stout, John; Krishnan, Venkateshwaran; Strouse, Dennis; Ivaschenko, Alex, Electric machine.
  14. Saban, Daniel M.; Ahmad, Raed H.; Pan, Zhiguo, Electromechanical energy conversion systems.
  15. Hijikata,Kenji, Engine control apparatus.
  16. Kitagawa, Takumi, Engine start control device, engine start control method and recording medium having program recorded thereon for implementing engine start control method.
  17. Kim, Jong Hun, Four-wheel drive apparatus using motor, and method thereof.
  18. Ito,Masatoshi; Oba,Hidehiro; Endo,Hiroatsu; Hoshiya,Kazumi, Hybrid drive system wherein clutch is engaged when engine speed has exceeded motor speed upon switching from motor drive mode to engine drive mode.
  19. Ito,Masatoshi; Oba,Hidehiro; Endo,Hiroatsu; Hoshiya,Kazumi, Hybrid drive system wherein clutch is engaged when engine speed has exceeded motor speed upon switching from motor drive mode to engine drive mode.
  20. Takeshi Suzuki JP, Hybrid motive power vehicle.
  21. Takemura Tadashi,JPX ; Sawase Kaoru,JPX, Hybrid powered vehicle.
  22. Severinsky, Alex J.; Louckes, Theodore, Hybrid vehicle configuration.
  23. Tanishima, Kaori; Kawamura, Hiroaki; Yamanaka, Fumihiro, Hybrid vehicle control device.
  24. Nozaki, Yuji; Nakamura, Kiminori, Hybrid vehicle drive control system.
  25. Nozaki, Yuji; Nakamura, Kiminori, Hybrid vehicle drive control system.
  26. Severinsky, Alex J.; Louckes, Theodore, Hybrid vehicles.
  27. Severinsky, Alex J.; Louckes, Theodore, Hybrid vehicles.
  28. Severinsky, Alex J.; Louckes, Theodore, Hybrid vehicles.
  29. Severinsky,Alex J.; Louckes,Theodore, Hybrid vehicles.
  30. Severinsky,Alex J.; Louckes,Theodore, Hybrid vehicles.
  31. Severinsky,Alex J.; Louckes,Theodore, Hybrid vehicles.
  32. Severinsky,Alex J.; Louckes,Theodore, Hybrid vehicles.
  33. Saban, Daniel M.; Stout, John, Hybrid winding configuration of an electric machine.
  34. Takaoka,Toshifumi; Kojima,Masakiyo, Hybrid-vehicle drive system with torque increasing device and driving method thereof.
  35. Murakami, Akira; Ohtake, Masanori; Nomoto, Hisanori; Nagashima, Nobuyuki; Umeyama, Mitsuhiro; Osada, Tomoe; Oshima, Koji, Hydraulic control system for automatic transmissions.
  36. King,Robert Dean; Sinha,Gautam, Low-energy storage fast-start uninterruptible power supply method.
  37. King, Robert Dean; Sinha, Gautam, Low-energy storage fast-start uninterruptible power supply system and method.
  38. Hewatt, Chris B., Method and apparatus for gyroscopic propulsion.
  39. Lee, Se-Jin, Method and system for reducing motor shock of a hybrid vehicle.
  40. Takehiko Nanri JP, Method for controlling a continuously variable transmission.
  41. Masterson,Brandon; Colvin,Dan, Method for controlling a hybrid vehicle.
  42. Nefcy, Bernard D.; Colvin, Daniel Scott; Shelton, Matthew John; Yamazaki, Mark Steven, Method of transitioning among shift schedules.
  43. Saito, Katsuyuki; Ueno, Munetoshi; Tsukidate, Hidetoshi, Mode change control system for hybrid vehicle.
  44. Werner, Martin; Schneider, Michael, Motor vehicle having a hybrid drive and method for selecting an electric machine and/or a starter for starting a combustion engine.
  45. Janson, David A.; Baldwin, Reid A., Multiple speed transmission producing a low-range.
  46. Thomson,Scott M.; Turner,Douglas J., Narrow range variable frequency starter/generator system.
  47. Fujikawa, Masato, Parallel hybrid vehicle.
  48. Kenji Nakashima JP, Parallel hybrid vehicle employing parallel hybrid system, using both internal combustion engine and electric motor generator for propulsion.
  49. Lilley, Timothy J.; Kingman, Grantland I., Power combining apparatus for hybrid electric vehicle.
  50. Timothy J. Lilley ; Grantland I. Kingman, Power combining apparatus for hybrid electric vehicle.
  51. Tseng, Jui-Tang; Chang, Yun-Yuan; Lin, Jung-Kuei; Tung, Chien-Chiang, Power generating device capable of outputting at constant rotation speed.
  52. Frank, Andrew; Ferchau, Joerg; Fahreddin, Leonhard; Razo, Julio; Kumar, Krishna; Serra, Anthony, Powertrain configurations for two-motor, two-clutch hybrid electric vehicles.
  53. Saban, Daniel M., Rotor for an electric machine.
  54. Petrov, Peter; Saban, Daniel M., Rotor for electric machine having a sleeve with segmented layers.
  55. Saban, Daniel M.; Guedes-Pinto, Paulo, Rotor for electric machine having a sleeve with segmented layers.
  56. Sah,Jy Jen F.; Steinmetz,Todd M, Shift through neutral control in an electrically variable transmission.
  57. Saban, Daniel M.; Stout, John; Guedes-Pinto, Paulo, Slot configuration of an electric machine.
  58. Saban, Daniel M.; Guedes-Pinto, Paulo, Stator for an electric machine.
  59. Saban, Daniel M.; Guedes-Pinto, Paulo, Stator for an electric machine.
  60. Stout, John; Saban, Daniel M.; Guedes-Pinto, Paulo, Stator wedge for an electric machine.
  61. Steinmetz,Todd M; Sah,Jy Jen F.; Hsieh,Tung Ming, Synchronous shift control in an electrically variable transmission.
  62. Frank, Andrew; Lin, Chan-Chiao; Kumar, Krishna; Serra, Anthony, Systems and methods for implementing dynamic operating modes and control policies for hybrid electric vehicles.
  63. Saban, Daniel M.; Guedes-Pinto, Paulo, Thermally matched composite sleeve.
  64. Jinno, Kunihiko; Nakagawa, Tadashi; Maeda, Masahiko; Yaguchi, Hideaki, Vehicle and control method thereof.
  65. Ortmann, Walter Joseph; Colvin, Daniel Scott; Masterson, Brandon R.; Baldwin, Reid Alan; Silveri, Andrew John; Connolly, Francis T.; Kraska, Marvin Paul, Vehicle and method for controlling engine start in a vehicle.
  66. Uchida, Kenji, Vehicle including rotating electric machine, inverter, and electronic control unit; and control method for the same.
  67. Tabata, Atsushi; Taga, Yutaka, Vehicular drive system.
  68. Tabata, Atsushi; Taga, Yutaka, Vehicular drive system.
  69. Saban, Daniel M.; Guedes-Pinto, Paulo, Wrapped rotor sleeve for an electric machine.

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