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Method for determining pneumatic states in an internal combustion engine system 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • G01M-015/00
출원번호 US-0759276 (1996-12-02)
발명자 / 주소
  • Maloney Peter James
출원인 / 주소
  • General Motors Corporation
대리인 / 주소
    Cichosz
인용정보 피인용 횟수 : 43  인용 특허 : 0

초록

An internal combustion engine system includes a plurality of pneumatic elements including pneumatic resistances, pneumatic capacitances, and pneumatic sources. A pneumatic state model determines a pressure rate of change and pressure for certain areas of the internal combustion engine system designa

대표청구항

[ I claim:] [1.] A method for determining pneumatic states in an internal combustion engine system, the internal combustion engine system including a plurality of pneumatic elements having gas flow ports and a plurality of pneumatic flow branches for coupling gas flow between various ones of the plu

이 특허를 인용한 특허 (43)

  1. Kotwicki Allan Joseph ; Gates Freeman Carter ; Russell John David, Air flow and EGR flow estimation.
  2. Turin, Raymond Claude; Zhang, Rong; Chang, Man Feng, Airflow estimation method and apparatus for internal combustion engine.
  3. Perchanok, Mathias S.; Flemming, Michael F., Apparatus and method for compressor and turbine performance simulation.
  4. Shureb, Robert F., Closed crankcase ventilation system with flow meter for monitoring engine operation.
  5. Wegerich, Stephan W., Complex signal decomposition and modeling.
  6. Imamura, Tsukasa; Sugimoto, Tomohiko, Control system and control method of gas engine.
  7. Kavadeles,Bill, Controller module for modular supercharger system.
  8. Joseph C. Hamelink ; Stephen H. Hill, Crankcase bypass system with oil scavenging device.
  9. Matthews,Gregory P.; Livshiz,Michael, Determining manifold pressure based on engine torque control.
  10. Kishibata,Kazuyoshi; Kitagawa,Yuichi; Sato,Hiroyasu; Sekita,Tomoaki, Engine throttle opening degree area estimation method, as well as engine acceleration detection method and device and engine fuel injection control method and device using the estimation method.
  11. Grieve Malcolm James ; Himes Edward George ; Qiao Ningsheng, Evaporative emission control system with reduced running losses.
  12. Easton, Mark Richard, Extreme charger with air amplifier.
  13. Wegerich, Stephan W., Inferential signal generator for instrumented equipment and processes.
  14. Wegerich, Stephan W., Inferential signal generator for instrumented equipment and processes.
  15. Gangopadhyay,Anupam, Intake oxygen estimator for internal combustion engine.
  16. Herzog, James P., Kernel-based method for detecting boiler tube leaks.
  17. Pfitz Manfred,DEX, Method and apparatus for determining the gas temperature in an internal combustion engine.
  18. Auckenthaler, Theophil, Method and apparatus for measuring and controlling the EGR rate in a combustion engine.
  19. Kar,Krishnendu; Bagnasco,Andrew P.; Garcia,Sergio Eduardo; Himes,Edward George, Method and apparatus to control fuel metering in an internal combustion engine.
  20. Wang, Yue-Yun; Haskara, Ibrahim, Method and apparatus to determine a cylinder air charge for an internal combustion engine.
  21. Engel, Gerhard; Birk, Manfred; Meier, Frank; Bleile, Thomas; Kraus, Benedikt; Rupp, Peter; Kraemer, Wolfgang, Method and device for controlling an internal combustion engine that is provided with an air system.
  22. Lee, Joonsuck, Method for compensating for valve lift deviation between engines equipped with CVVL mechanism.
  23. Lee,Byungho; Gwidt,Jesse Michael, Method for determining intake port flow in an internal combustion engine.
  24. James Michael Kerns ; John David Russell, Method for estimation.
  25. Mikkelsen, Rikke; Nielsen, Kaj Hovhave; Schmidt, Niels Ravn; Christensen, Per Henrik Ertebjerg, Method for producing chewing gum granules and compressed gum products, and a chewing gum granulating system.
  26. Mikkelsen, Rikke; Schmidt, Niels Ravn, Method for producing chewing gum granules, a gum composition extruder and granulating system, and a chewing gum products.
  27. Ernst Wild DE; Wolfgang Wagner DE; Gerard Melchior DE; Klaus Ries-Mueller DE; Matthias Kuesell DE, Method of and device for operating a vacuum accumulator of an internal combustion engine, provided for servo function.
  28. Amit K. Sanyal ; Gregory L. Ohl ; Chris D. Kapolnek ; Timothy A. Coatesworth, Method of determining barometric pressure for use in an internal combustion engine.
  29. Olin, Peter M., Method of estimating gas pressure in an engine exhaust manifold.
  30. Herzog, James P., Method of sequential kernel regression modeling for forecasting and prognostics.
  31. Herzog, James P., Monitoring method using kernel regression modeling with pattern sequences.
  32. Herzog, James P., Monitoring system using kernel regression modeling with pattern sequences.
  33. Havice David M., Open engine cylinder compression testing device.
  34. Oeller Heinz,DEX, Process and arrangement for checking the operability of a secondary air pump in an internal-combustion engine.
  35. Hines, J. Wesley, Robust distance measures for on-line monitoring.
  36. Russell, John D.; Kotwicki, Allan Joseph; Gates, Freeman Carter, System and method for air flow and EGR flow estimation.
  37. Russell, John D.; Kotwicki, Allan Joseph; Gates, Freeman Carter, System and method for air flow and EGR flow estimation.
  38. Wills,J. Stephen; Andrews,Eric B., System for diagnosing reagent solution quality and emissions catalyst degradation.
  39. Wright, John F.; Boewe, Daniel E., System for estimating engine exhaust pressure.
  40. Sisken, Kevin D., System for purging exhaust gases from exhaust gas recirculation system.
  41. Dumas, Elijah; Dumas, Elisha; Dumas, Howard, System of an induced flow machine.
  42. Herzog, James P., System of sequential kernel regression modeling for forecasting and prognostics.
  43. Dennis C. Reed ; Peter James Maloney ; Jeffrey M. Pfeiffer, Volumetric efficiency compensation for dual independent continuously variable cam phasing.
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