$\require{mediawiki-texvc}$

연합인증

연합인증 가입 기관의 연구자들은 소속기관의 인증정보(ID와 암호)를 이용해 다른 대학, 연구기관, 서비스 공급자의 다양한 온라인 자원과 연구 데이터를 이용할 수 있습니다.

이는 여행자가 자국에서 발행 받은 여권으로 세계 각국을 자유롭게 여행할 수 있는 것과 같습니다.

연합인증으로 이용이 가능한 서비스는 NTIS, DataON, Edison, Kafe, Webinar 등이 있습니다.

한번의 인증절차만으로 연합인증 가입 서비스에 추가 로그인 없이 이용이 가능합니다.

다만, 연합인증을 위해서는 최초 1회만 인증 절차가 필요합니다. (회원이 아닐 경우 회원 가입이 필요합니다.)

연합인증 절차는 다음과 같습니다.

최초이용시에는
ScienceON에 로그인 → 연합인증 서비스 접속 → 로그인 (본인 확인 또는 회원가입) → 서비스 이용

그 이후에는
ScienceON 로그인 → 연합인증 서비스 접속 → 서비스 이용

연합인증을 활용하시면 KISTI가 제공하는 다양한 서비스를 편리하게 이용하실 수 있습니다.

Engine system and method with cylinder deactivation 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • F02D-041/04
  • F01N-009/00
출원번호 US-0794264 (2004-03-05)
발명자 / 주소
  • Surnilla, Gopichandra
  • Bidner, David
  • Elwart, Shane
  • Doering, Jeff
  • Goralski, Jr., Christian T.
출원인 / 주소
  • Ford Global Technologies, LLC
대리인 / 주소
    Alleman Hall McCoy Russell &
인용정보 피인용 횟수 : 83  인용 특허 : 16

초록

Various systems and methods are disclosed for carrying out combustion in a fuel-cut operation in some or all of the engine cylinders of a vehicle. Further, various subsystems are considered, such as fuel vapor purging, air-fuel ratio control, engine torque control, catalyst design, and exhaust syste

대표청구항

1. A computer readable storage medium having stored data representing instructions executable by a computer for operating an engine, the computer readable storage medium comprising:instructions for operating with at least a portion of all cylinders of the engine combusting air and injected fuel,inst

이 특허에 인용된 특허 (16)

  1. Han, Ed E.; Berger, Todd R., Adaptive powertrain braking control with grade, mass, and brake temperature.
  2. Wakichi Kondo JP, Apparatus for controlling internal combustion engine at decelerating state.
  3. Vukovich William Joseph (Ypsilanti MI) Koenig Melissa Mei (Ann Arbor MI), Automatic transmission shift stabilization control.
  4. Asada Toshiaki (Mishima JPX) Baika Toyokazu (Susono JPX) Iwahashi Kazuhiro (Susono JPX) Yamanaka Akihiro (Susono JPX), Control device of a varable cylinder engine.
  5. Akabori Kouichi,JPX ; Takahashi Nobutaka,JPX ; Deguchi Yoshitaka,JPX, Engine idle rotation speed controller.
  6. Ma Thomas Tsoi-Hei,GBX, Engine with cylinder deactivation.
  7. Welch Peter Damien, Engine with direct turbo compounding.
  8. Kenji Katoh JP; Takaaki Itou JP; Hiroshi Tanaka JP; Shuichi Kubo JP; Yoshiyuki Mandokoro JP; Masahiro Taki JP, Exhaust gas purification device for an internal combustion engine.
  9. Wakahara Tatsuo (Kawasaki JPX) Hayasaki Koichi (Ebina JPX), Lock-up control system for automatic transmission.
  10. Maruyama Ikuo (Kameoka JPX) Nagayoshi Yoshimasa (Kyoto JPX) Nakamura Hisaji (Kyoto JPX) Furuichi Yoichi (Kyoto JPX) Kato Koichi (Yokohama JPX) Oyaide Sadamu (Okazaki JPX) Yamauchi Takaki (Okazaki JPX, Lockup clutch released then re-engaged during deceleration control method.
  11. Gopichandra Surnilla ; David George Farmer, Method and system for operating dual-exhaust engine.
  12. Surnilla, Gopichandra, Method for rapid catalyst heating.
  13. Hayafune Kazuya (Okazaki JPX), Speed change control method for setting a gearshift position of an automatic transmission for vehicles based upon driver.
  14. Iizuka Haruhiko (Yokosuka JPX) Sugasawa Fukashi (Yokohama JPX), Split engine control system.
  15. Michael Livshiz ; Scott J. Chynoweth ; Rodney J. Rhodes, System and method of controlling the coastdown of a vehicle.
  16. Iwaki Yoshihisa (Saitama JPX) Sakai Ichiro (Saitama JPX) Sakaguchi Shinichi (Saitama JPX), Vehicle automatic transmission control system for controlling the speed change ratio based on driving resistance.

이 특허를 인용한 특허 (83)

  1. Graves,Ronald L.; West,Brian H.; Huff,Shean P.; Parks, II,James E., Advanced engine management of individual cylinders for control of exhaust species.
  2. Matthews, Gregory P., Air mass determination for cylinder activation and deactivation control systems.
  3. Matthews, Gregory P.; Liu, Zhiping Steven; Brennan, Daniel G., Air per cylinder determination systems and methods.
  4. Yoshioka,Mamoru, Air-fuel ratio control apparatus of internal combustion engine.
  5. Tsukamoto, Toshinori; Oie, Naoki, Apparatus to determine cylinder deactivation state.
  6. Beikmann, Randall S.; Wagh, Nitish J., Combination cylinder state and transmission gear control systems and methods.
  7. Yamana, Shunsuke, Combustion state control device for vehicular internal combustion engine.
  8. Shinoda, Yoshihisa, Control apparatus for an internal combustion engine.
  9. Carlson, Steven E.; Yuan, Xin; Switkes, Joshua P.; Serrano, Louis J., Control of manifold vacuum in skip fire operation.
  10. Serrano, Louis J.; Carlson, Steven E., Coordination of vehicle actuators during firing fraction transitions.
  11. Serrano, Louis J.; Carlson, Steven E., Coordination of vehicle actuators during firing fraction transitions.
  12. Serrano, Louis J.; Carlson, Steven E.; Haase, Steven J.; Dibble, Donavan L.; Rayl, Allen B., Coordination of vehicle actuators during firing fraction transitions.
  13. Serrano, Louis J.; Carlson, Steven E.; Haase, Steven J.; Dibble, Donavan L.; Rayl, Allen B., Coordination of vehicle actuators during firing fraction transitions.
  14. Rayl, Allen B.; Beikmann, Randall S.; Naik, Sanjeev M., Cylinder activation and deactivation control systems and methods.
  15. Beikmann, Randall S., Cylinder activation/deactivation sequence control systems and methods.
  16. Phillips, Andrew W., Cylinder control systems and methods for discouraging resonant frequency operation.
  17. Nakamura,Makoto, Cylinder cutoff control apparatus of internal combustion engine.
  18. Rayl, Allen B., Cylinder deactivation pattern matching.
  19. Li, Jinbiao; Liu, Haifeng, Cylinder firing fraction determination and control systems and methods.
  20. Carlson, Steven E.; Yuan, Xin; Hashemi, Siamak; Srinivasan, Vijay; Kalluri, Srihari; Phillips, Andrew W.; Wilcutts, Mark A.; Serrano, Louis J.; Chen, Shikui Kevin, Deceleration cylinder cut-off.
  21. Serrano, Louis J.; Wang, Robert C., Deceleration cylinder cut-off in a hybrid vehicle.
  22. Surnilla, Gopichandra; Berger, Al Henry; Chen, Wan Joe; House, Christopher, Differential torque operation for internal combustion engine.
  23. Surnilla,Gopichandra; Berger,Al Henry; Chen,Wan Joe; House,Christopher, Differential torque operation for internal combustion engine.
  24. Srinivasan, Vijay, Dynamically varying an amount of slippage of a torque converter clutch provided between an engine and a transmission of a vehicle.
  25. Surnilla,Gopichandra; Goralski, Jr.,Christian T.; Smith,Stephen B.; O'Neill,James P.; Zawacki,Gary, Emission control device.
  26. Winstead,Vincent J., Emissions control.
  27. Skipp, David; Hoare, Graham; Berkemeier, Oliver; Crisp, Nicholas Dashwood, Engine system and a method of operating a direct injection engine.
  28. Lippitt, Raymond F., Engine with central gear train.
  29. Shiraishi,Taisuke; Hiraya,Koji; Hotta,Isamu; Tanaka,Daisuke, Exhaust emission control apparatus and method for internal combustion engine.
  30. Pirjaberi, Mohammad R.; Carlson, Steven E.; Serrano, Louis J.; Yuan, Xin; Chien, Li-Chun; Tripathi, Adya S., Firing fraction management in skip fire engine control.
  31. Pirjaberi, Mohammad R.; Tripathi, Adya S., Firing fraction management in skip fire engine control.
  32. Pirjaberi, Mohammad R.; Tripathi, Adya S.; Serrano, Louis J., Firing fraction management in skip fire engine control.
  33. Pirjaberi, Mohammad R.; Tripathi, Adya S.; Serrano, Louis J., Firing fraction management in skip fire engine control.
  34. Nagashima, Masaki; Pirjaberi, Mohammad R.; Serrano, Louis J., Firing fraction transition control.
  35. Wagh, Nitish J.; Beikmann, Randall S., Firing pattern management for improved transient vibration in variable cylinder deactivation mode.
  36. Hayman, Alan W.; McAlpine, Robert S., Fuel consumption based cylinder activation and deactivation control systems and methods.
  37. Glugla, Chris Paul; VanDerWege, Brad Alan, If method and system for engine knock control.
  38. Lippitt, Raymond F.; Mason, Guy M., In-line six internal combustion engine.
  39. Matthews, Gregory P.; Liu, Zhiping Steven, Intake port pressure prediction for cylinder activation and deactivation control systems.
  40. Brennan, Daniel G.; Matthews, Gregory P.; Wiggins, Layne K., Intake runner temperature determination systems and methods.
  41. Sahandiesfanjani, Farzad; Hand, Chris; Pirjaberi, Mohammad; Tripathi, Adya S., Internal combustion engine control for improved fuel efficiency.
  42. Tripathi, Adya S.; Silvestri, Chester J., Internal combustion engine control for improved fuel efficiency.
  43. Tripathi, Adya S.; Silvestri, Chester J., Internal combustion engine control for improved fuel efficiency.
  44. Tripathi, Adya S.; Silvestri, Chester J., Internal combustion engine control for improved fuel efficiency.
  45. Tripathi, Adya S.; Silvestri, Chester J., Internal combustion engine control for improved fuel efficiency.
  46. Tripathi, Adya S.; Silvestri, Chester J.; Chandler, Christopher W.; Hand, Christopher C.; Switkes, Joshua P.; Wilcutts, Mark A.; Younkins, Matthew A., Internal combustion engine control for improved fuel efficiency.
  47. Lippitt, Raymond F., Internal combustion engines.
  48. Lippitt, Raymond F., Internal combustion engines.
  49. Lippitt, Raymond F.; Sweeney, Kevin S., Inverted V-8 I-C engine and method of operating same in a vehicle.
  50. Lippitt, Raymond F.; Sweeney, Kevin S., Inverted V-8 internal combustion engine and method of operating the same modes.
  51. Younkins, Matthew A.; Chen, Shikui Kevin; Wilcutts, Mark A., Lean burn internal combustion engine exhaust gas temperature control.
  52. Uitenbroek, Paul, Method and apparatus for controlling an air-fuel mixture.
  53. Shost, Mark A.; Serrano, Louis J.; Carlson, Steven E.; Srinivasan, Vijay; Defenderfer, Eric J.; Wagh, Nitish J.; Beikmann, Randall S.; Li, Jinbiao; Yuan, Xin; Chien, Li-Chun, Method and apparatus for determining optimum skip fire firing profile.
  54. Srinivasan, Vijay; Serrano, Louis J., Method and apparatus for determining optimum skip fire firing profile with adjustments for ambient temperature.
  55. Kim, Taek Soo, Method and system for controlling fuel injection for vehicles.
  56. VanDerWege, Brad Alan; Glugla, Chris Paul, Method and system for engine temperature control.
  57. Glugla, Chris Paul, Method and system for exhaust catalyst warming.
  58. Glugla, Chris Paul, Method and system for exhaust catalyst warming.
  59. Asai, Gou; Adachi, Hitoshi; Takagawa, Isao; Miyamoto, Takashi, Method of controlling internal combustion engine.
  60. Hartmann, Dirk; Mezger, Werner; Roth, Andreas; Rappold, Juergen; Mallebrein, Georg; Poertner, Nikolas; Barbier, Henri; Fecht, Ingo, Procedure for the reduction of the torque of an internal combustion engine.
  61. Beikmann, Randall S., Recursive firing pattern algorithm for variable cylinder deactivation in transient operation.
  62. Tripathi, Adya S.; Chandler, Christopher W.; Hand, Christopher C.; Switkes, Joshua P.; Wilcutts, Mark A.; Younkins, Matthew A., Skip fire engine control.
  63. Tripathi, Adya S.; Silvestri, Chester J.; Chandler, Christopher W.; Hand, Chris; Switkes, Joshua P.; Wilcutts, Mark, Skip fire engine control.
  64. Tripathi, Adya S.; Switkes, Joshua P.; Pirjaberi, Mohammad R.; Chandler, Christopher W., Skip fire engine control.
  65. Tripathi, Adya S.; Sahandiesfanjani, Farzad, Skip fire internal combustion engine control.
  66. Tripathi, Adya S.; Sahandiesfanjani, Farzad; Ghosh, Biswa R., Skip fire internal combustion engine control.
  67. Nagashima, Masaki; Pirjaberi, Mohammad R.; Serrano, Louis J., Skip fire transition control.
  68. Pirjaberi, Mohammad R.; Serrano, Louis J.; Yuan, Xin; Carlson, Steven E.; Hashemi, Siamak; Kuhlenbeck, Ryan A., Skip fire transition control.
  69. Pirjaberi, Mohammad R.; Serrano, Louis J.; Yuan, Xin; Carlson, Steven E.; Hashemi, Siamak; Kuhlenbeck, Ryan A., Skip fire transition control.
  70. Carlson, Steven E.; Yuan, Xin; Serrano, Louis J.; Switkes, Joshua P.; Ghosh, Biswa R.; Lo, Norman C., Split bank and multimode skip fire operation.
  71. Rollinger, John Eric; Gibson, Alex O'Connor; Buckland, Julia Helen; Wade, Robert Andrew, Stored compressed air management for improved engine performance.
  72. Brennan, Daniel G., System and method for controlling a firing pattern of an engine to reduce vibration when cylinders of the engine are deactivated.
  73. Beikmann, Randall S., System and method for controlling a firing sequence of an engine to reduce vibration when cylinders of the engine are deactivated.
  74. Beikmann, Randall S., System and method for controlling a firing sequence of an engine to reduce vibration when cylinders of the engine are deactivated.
  75. Verner, Douglas R., System and method for controlling a firing sequence of an engine to reduce vibration when cylinders of the engine are deactivated.
  76. Brennan, Daniel G.; Naik, Sanjeev M., System and method for controlling spark timing when cylinders of an engine are deactivated to reduce noise and vibration.
  77. Surnilla, Gopichandra; Goralski, Jr., Christian T.; Smith, Stephen B., System and method for controlling valve timing of an engine with cylinder deactivation.
  78. Rayl, Allen B., System and method for deactivating a cylinder of an engine and reactivating the cylinder based on an estimated trapped air mass.
  79. Liu, Zhiping Steven; Matthews, Gregory P.; Will, Anthony B., System and method for predicting parameters associated with airflow through an engine.
  80. Phillips, Andrew W., System and method for randomly adjusting a firing frequency of an engine to reduce vibration when cylinders of the engine are deactivated.
  81. Tripathi, Adya S.; Silvestri, Chester J., System and methods for improving efficiency in internal combustion engines.
  82. Burleigh, Darrell W.; Beikmann, Randall S., Systems and methods for controlling cylinder deactivation periods and patterns.
  83. Brennan, Daniel G.; Matthews, Gregory P.; Wiggins, Layne K., Volumetric efficiency determination systems and methods.
섹션별 컨텐츠 바로가기

AI-Helper ※ AI-Helper는 오픈소스 모델을 사용합니다.

AI-Helper 아이콘
AI-Helper
안녕하세요, AI-Helper입니다. 좌측 "선택된 텍스트"에서 텍스트를 선택하여 요약, 번역, 용어설명을 실행하세요.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.

선택된 텍스트

맨위로