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Internal combustion engine control for improved fuel efficiency 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • F02D-041/40
  • F02P-005/04
  • F02D-043/00
출원번호 UP-0615232 (2009-11-09)
등록번호 US-7849835 (2011-02-10)
발명자 / 주소
  • Tripathi, Adya S.
  • Silvestri, Chester J.
출원인 / 주소
  • Tula Technology, Inc.
대리인 / 주소
    Beyer Law Group LLP
인용정보 피인용 횟수 : 65  인용 특허 : 66

초록

A variety of methods and arrangements for improving the fuel efficiency of internal combustion engines are described. Generally, an engine is controlled to operate in a skip fire variable displacement mode. Feedback control is used to dynamically determine the working cycles to be skipped to provide

대표청구항

What is claimed is: 1. An engine controller for controlling the operation of an internal combustion engine having at least one working chamber, each working chamber being generally arranged to operate in a succession of working cycles, wherein the engine controller is arranged to: receive and input

이 특허에 인용된 특허 (66)

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이 특허를 인용한 특허 (65)

  1. Matthews, Gregory P., Air mass determination for cylinder activation and deactivation control systems.
  2. Matthews, Gregory P.; Liu, Zhiping Steven; Brennan, Daniel G., Air per cylinder determination systems and methods.
  3. Beikmann, Randall S.; Wagh, Nitish J., Combination cylinder state and transmission gear control systems and methods.
  4. Serrano, Louis J., Control of a partial cylinder deactivation engine.
  5. Carlson, Steven E.; Yuan, Xin; Switkes, Joshua P.; Serrano, Louis J., Control of manifold vacuum in skip fire operation.
  6. Rayl, Allen B.; Beikmann, Randall S.; Naik, Sanjeev M., Cylinder activation and deactivation control systems and methods.
  7. Beikmann, Randall S., Cylinder activation/deactivation sequence control systems and methods.
  8. Phillips, Andrew W., Cylinder control systems and methods for discouraging resonant frequency operation.
  9. Rayl, Allen B., Cylinder deactivation pattern matching.
  10. Li, Jinbiao; Liu, Haifeng, Cylinder firing fraction determination and control systems and methods.
  11. 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.
  12. Serrano, Louis J.; Wang, Robert C., Deceleration cylinder cut-off in a hybrid vehicle.
  13. Serrano, Louis J.; Carlson, Steven E.; Switkes, Joshua P.; Yuille, Ronald D., Engine braking controller.
  14. Pirjaberi, Mohammad R.; Tripathi, Adya S., Firing fraction management in skip fire engine control.
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  27. Tripathi, Adya S.; Silvestri, Chester J., Internal combustion engine control for improved fuel efficiency.
  28. Tripathi, Adya S.; Silvestri, Chester J., Internal combustion engine control for improved fuel efficiency.
  29. Tripathi, Adya S.; Silvestri, Chester J., Internal combustion engine control for improved fuel efficiency.
  30. Tripathi, Adya S.; Silvestri, Chester J., Internal combustion engine control for improved fuel efficiency.
  31. Tripathi, Adya S.; Silvestri, Chester J., Internal combustion engine control for improved fuel efficiency.
  32. Tripathi, Adya S.; Silvestri, Chester J., Internal combustion engine control for improved fuel efficiency.
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  52. Beikmann, Randall S., System and method for controlling a firing sequence of an engine to reduce vibration when cylinders of the engine are deactivated.
  53. Beikmann, Randall S., System and method for controlling a firing sequence of an engine to reduce vibration when cylinders of the engine are deactivated.
  54. Verner, Douglas R., System and method for controlling a firing sequence of an engine to reduce vibration when cylinders of the engine are deactivated.
  55. Klingbeil, Adam Edgar; Jackson, Jennifer Lynn; Mischler, James Robert; Fisher, Kevin Michael, System and method for controlling operation of an engine.
  56. 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.
  57. Rayl, Allen B., System and method for deactivating a cylinder of an engine and reactivating the cylinder based on an estimated trapped air mass.
  58. Liu, Zhiping Steven; Matthews, Gregory P.; Will, Anthony B., System and method for predicting parameters associated with airflow through an engine.
  59. 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.
  60. Burleigh, Darrell W.; Beikmann, Randall S., Systems and methods for controlling cylinder deactivation periods and patterns.
  61. Akinyemi, Omowoleola Chukuwuemeka; Klingbeil, Adam; Blythe, Neil Xavier; Gallagher, Shawn Michael; Mischler, James Robert; Henry, Luke; Jackson, Jennifer Lynn, Systems and methods for engine control.
  62. Phillips, Andrew W.; Carlson, Steven E., Torque converter clutch lockup during skip-fire operation.
  63. Burtch, Joseph B., Torque converter clutch slip control systems and methods based on active cylinder count.
  64. Wilcutts, Mark A.; Yuan, Xin; Switkes, Joshua P.; Chien, Li-Chun; Carlson, Steven E.; Chandler, Christopher W.; Hand, Christopher C.; Younkins, Matthew A.; Tripathi, Adya S., Using cylinder firing history for combustion control in a skip fire engine.
  65. Brennan, Daniel G.; Matthews, Gregory P.; Wiggins, Layne K., Volumetric efficiency determination systems and methods.
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