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Control device for internal combustion engine 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • F02M-007/00
  • F02D-041/00
출원번호 US-0516358 (2008-04-30)
등록번호 US-8286610 (2012-10-16)
우선권정보 JP-2007-120949 (2007-05-01)
국제출원번호 PCT/IB2008/001068 (2008-04-30)
§371/§102 date 20090527 (20090527)
국제공개번호 WO2008/146108 (2008-12-04)
발명자 / 주소
  • Moriya, Hidenori
출원인 / 주소
  • Toyota Jidosha Kabushiki Kaisha
대리인 / 주소
    Oblon, Spivak, McClelland, Maier & Neustadt, L.L.P.
인용정보 피인용 횟수 : 0  인용 특허 : 30

초록

In an internal combustion engine control device having an air-fuel ratio control device that controls the fuel injection amount so that the air-fuel ratio of exhaust gas of an internal combustion engine approaches a target stoichiometric air-fuel ratio, the control device further includes a device t

대표청구항

1. An internal combustion engine control device, comprising: an air-fuel ratio sensor that detects air-fuel ratio of an exhaust gas of an internal combustion engine;a stoichiometric air-fuel ratio calculation device that calculates a stoichiometric air-fuel ratio based on the air-fuel ratio detected

이 특허에 인용된 특허 (30)

  1. May,Andrew, Adaptive engine control.
  2. Benninger Nikolaus (Vaihingen/Enz DEX) Boerkel Wolfgang (Ruelzheim DEX) Miller Stefan (Waiblingen-Bittenfeld DEX) Plapp Guenther (Filderstadt DEX), Adaptive fuel/air mixture adjustment for taking fuel characteristics into consideration.
  3. Washino Shoichi (Amagasaki JPX) Ohkubo Satoru (Amagasaki JPX), Air-fuel ratio control apparatus for an internal combustion engine.
  4. Ohkubo Satoru (Amagasaki JPX) Washino Shoichi (Amagasaki JPX) Demizu Akira (Himeji JPX), Combustion control device for internal combustion engines.
  5. Hokuto, Hiroyuki; Miyashita, Shigeki, Control device and control method for internal combustion engine.
  6. Mauro Marco,ITX ; Ciuti Stefano,ITX ; Fornatto Enrico,ITX ; Volpin Alessandro,ITX ; Zanet Claudio,ITX, Control method for controlling injection of an internal combustion engine as a function of fuel quality.
  7. Hasegawa, Mamoru; Yamaguchi, Satoshi; Sakamoto, Hideki; Kitayama, Naoto; Yamanaka, Tatsuo, Control system for internal combustion engine.
  8. Zur Loye Axel Otto, Cylinder pressure based air-fuel ratio and engine control.
  9. Adam Klaus (Asperg DEX) Bhmler Heinz (Pleidelsheim DEX), Fuel control system.
  10. Arcara Samuel A. (Doylestown PA), Fuel entrained oxygen compensation for calorific content analyzer.
  11. Abo Toshimi (Yokohama JPX) Satoh Hiroshi (Yokosuka JPX) Takahashi Nobutaka (Yokosuka JPX), Fuel monitoring arrangement for automotive internal combustion engine control system.
  12. Washino Shoichi (Tsukaguchihonmachi JPX) Ohkubo Satoru (Tsukaguchihonmachi JPX), Fuel properties detecting apparatus for an internal combustion engine.
  13. Wang,Junmin; Neely,Gary D.; Sasaki,Shizuo; Ryan, III,Thomas W., Fuel property-adaptive engine control system with on-board fuel classifier.
  14. May,Andrew, Fuel quantity modulation in pilot ignited engines.
  15. Bailey John M. (Dunlap IL), Measuring-signaling apparatus for a multi-fuel system of an engine.
  16. Wong,Hoi Ching, Method and apparatus for controlling transition between operating modes in a multimode engine.
  17. Kude William B. (Plymouth MN) Pearman A. Noel J. (St. Paul MN), Method and apparatus for determining the Wobbe index of gaseous fuels.
  18. Shiraishi, Masataka; Kakuhama, Yoshitaka; Sakai, Kei; Kitamura, Yosuke, Method and device for integrative control of gas engine.
  19. Rendahl, Craig S.; Foley, Theresa A., Method and system for determining the type of fuel used to power a vehicle.
  20. Brown Scott C. ; Willi Martin L., Method for a controlled transition between operating modes of a dual fuel engine.
  21. Yoshida Masato (Kyoto JPX) Yokoyama Takanao (Nagaokakyo JPX) Nanba Muneyoshi (Kyoto JPX) Kato Yoshihiko (Kyoto JPX) Iida Kazumasa (Kyoto JPX) Miyamoto Katsuhiko (Kyoto JPX), Method for detecting fuel blending ratio.
  22. Yoshida Masato (Kyoto) Yokoyama Takanao (Nagaokakyo) Nanba Muneyoshi (Kyoto) Kato Yoshihiko (Kyoto) Iida Kazumasa (Kyoto) Miyamoto Katsuhiko (Kyoto JPX), Method for detecting fuel blending ratio.
  23. Ishida Tetsuro (Kyoto JPX) Danno Yoshiaki (Kyoto JPX) Togai Kazuhide (Takatsuki JPX) Ando Hiromitsu (Okazaki JPX) Sanbayashi Daisuke (Toyota JPX) Yoshida Masato (Kyoto JPX) Shiraishi Kazuhiro (Kyoto , Method for determining combustion condition in spark ignition internal combustion engine and combustion condition contro.
  24. Streib, Martin; Poertner, Nikolas, Method for determining the composition of a fuel blend.
  25. Brown Scott C. ; Willi Martin L., Method for determining the energy content of a fuel delivered to an engine.
  26. Mauro Marco,ITX ; Bolla Ugo,ITX ; Pastorelli Francesco,ITX ; Santamaria Nelson,ITX ; Ciasullo Marco,ITX, Method of controlling injection of an internal combustion engine as a function of fuel quality.
  27. Nankee ; II Robert J. ; Cheng Yi ; Huff Shean ; Joyce Mary ; Kennie Jerry ; Krozek Dennis A. ; Moote Richard K. ; Richardson Roland T. ; Seitz Gary L., Method of determining the composition of fuel in a flexible fueled vehicle.
  28. zur Loye, Axel O.; Brackney, Larry J.; Chenanda, Cariappa M.; Hurst, Robert M.; Peters, Lester L.; Pierz, Patrick M.; Wright, John F., Multiple operating mode engine and method of operation.
  29. Stander Douglas M. ; Liu Sam K. ; Sway-Tin Min ; Robinson William O., Neural network based transient fuel control method.
  30. Malaczynski, Gerard Wladyslaw; Baker, Michael Edward, Wavelet-based artificial neural net combustion sensing.
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