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Control system and control method of internal combustion engine 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • F02M-007/00
  • F02M-025/07
  • F01L-001/34
  • G06F-017/00
출원번호 US-0582226 (2005-10-07)
등록번호 US-7367318 (2008-05-06)
우선권정보 JP-2004-295090(2004-10-07); JP-2005-238999(2005-08-19)
국제출원번호 PCT/JP05/018907 (2005-10-07)
§371/§102 date 20060608 (20060608)
국제공개번호 WO06/038737 (2006-04-13)
발명자 / 주소
  • Moriya,Hidenori
  • Ogino,Ryusuke
출원인 / 주소
  • Toyota Jidosha Kabushiki Kaisha
대리인 / 주소
    Oliff & Berridge, PLC
인용정보 피인용 횟수 : 22  인용 특허 : 7

초록

An internal combustion engine (1) provided with a valve mechanism (VM) able to change a valve opening characteristic of at least one of an intake valve (Vi) and exhaust valve (Ve), a cylinder pressure sensor (15) for detecting a cylinder pressure in a combustion chamber (3), and an ECU (20), wherein

대표청구항

The invention claimed is: 1. A control system of an internal combustion engine having a valve mechanism able to change a valve opening characteristic of at least one of an intake valve and exhaust valve and burning an air-fuel mixture comprised of fuel and air inside a combustion chamber to generat

이 특허에 인용된 특허 (7)

  1. Fuwa,Naohide, Calculation of air charge amount in internal combustion engine.
  2. Miura, Hajime, Control apparatus for internal combustion engine.
  3. Kaga,Tomoyuki, Control device of internal combustion engine.
  4. Muto,Harufumi; Ido,Yuichiro, Control system of internal combustion engine.
  5. Morikawa Koji (Musashino JPX), Fuel injection control system for automotive engine.
  6. Yoshino,Takahiro; Nagaishi,Hatsuo; Arai,Masahiro; Yoshikawa,Shunichi; Kubota,Mitsuhiko, Internal combustion engine control apparatus.
  7. Koseki, Takahisa; Oshimi, Youichi; Nagaishi, Hatsuo, Internal exhaust gas recirculation amount estimation system of internal combustion engines.

이 특허를 인용한 특허 (22)

  1. Matthews, Gregory P.; Liu, Zhiping Steven; Brennan, Daniel G., Air per cylinder determination systems and methods.
  2. Beikmann, Randall S.; Wagh, Nitish J., Combination cylinder state and transmission gear control systems and methods.
  3. Barta, Jason; Hampson, Gregory James; Carlson, Jeffrey, Combustion pressure feedback based engine control with variable resolution sampling windows.
  4. Nagai, Masakatsu; Yasuda, Hiromichi, Control apparatus for determining an absolute pressure correction in an internal combustion engine.
  5. Rayl, Allen B.; Beikmann, Randall S.; Naik, Sanjeev M., Cylinder activation and deactivation control systems and methods.
  6. Beikmann, Randall S., Cylinder activation/deactivation sequence control systems and methods.
  7. Rayl, Allen B., Cylinder deactivation pattern matching.
  8. Li, Jinbiao; Liu, Haifeng, Cylinder firing fraction determination and control systems and methods.
  9. Willi, Martin L.; Fiveland, Scott B.; Montgomery, David T.; Gong, Weidong, Engine control system having fuel-based timing.
  10. Willi, Martin L.; Fiveland, Scott B.; Montgomery, David T.; Gong, Weidong, Engine control system having pressure-based timing.
  11. Willi, Martin L.; Fiveland, Scott B.; Montgomery, David T.; Gong, Weidong, Engine control system having speed-based timing.
  12. Endo, Hiroyuki, Engine with internal EGR system.
  13. Wagh, Nitish J.; Beikmann, Randall S., Firing pattern management for improved transient vibration in variable cylinder deactivation mode.
  14. Hano, Masaki; Machida, Kenichi, Intake air amount control apparatus for engine and control method thereof.
  15. Brennan, Daniel G.; Matthews, Gregory P.; Wiggins, Layne K., Intake runner temperature determination systems and methods.
  16. Moriya, Hidenori, Internal combustion engine control device and method.
  17. Beikmann, Randall S., System and method for controlling a firing sequence of an engine to reduce vibration when cylinders of the engine are deactivated.
  18. 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.
  19. Rayl, Allen B., System and method for deactivating a cylinder of an engine and reactivating the cylinder based on an estimated trapped air mass.
  20. Liu, Zhiping Steven; Matthews, Gregory P.; Will, Anthony B., System and method for predicting parameters associated with airflow through an engine.
  21. 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.
  22. Burleigh, Darrell W.; Beikmann, Randall S., Systems and methods for controlling cylinder deactivation periods and patterns.
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