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Torque converter clutch slip control systems and methods based on active cylinder count 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • F16H-061/00
  • F16H-061/14
  • F16D-033/18
출원번호 US-0798384 (2013-03-13)
등록번호 US-8979708 (2015-03-17)
발명자 / 주소
  • Burtch, Joseph B.
출원인 / 주소
  • GM Global Technology Operations LLC
인용정보 피인용 횟수 : 17  인용 특허 : 14

초록

A torque converter clutch control system of a vehicle includes a target slip module and a slip control module. The target slip module determines a target torque converter clutch slip based on an average number of activated cylinders of an engine during a predetermined period. The slip control module

대표청구항

1. A torque converter clutch control system of a vehicle, comprising: a target slip module that determines a target torque converter clutch slip based on an average number of activated cylinders of an engine during a predetermined period;a slip error module that determines a slip error based on a di

이 특허에 인용된 특허 (14)

  1. Morris Robert Leonard (Livonia MI), Active driveline damping.
  2. Dudek Kenneth P. (Rochester Hills MI) Matthews Gregory P. (Bloomfield Hill MI) Folkerts Charles H. (Troy MI) Davis Ronald A. (Commerce Township ; Oakland County MI), Air dynamics state characterization.
  3. Matthews, Gregory Paul; Folkerts, Charles Henry, Airflow estimation for engines with displacement on demand.
  4. Ishikawa,Yutaka, Driving power control devices for hybrid vehicle.
  5. Dudek Kenneth P. (Rochester Hills MI) Matthews Gregory P. (Bloomfield Hills MI) Folkerts Charles H. (Troy MI) Davis Ronald A. (Commerce Township MI), Internal combustion engine control.
  6. Tripathi, Adya S.; Silvestri, Chester J., Internal combustion engine control for improved fuel efficiency.
  7. Tripathi, Adya S.; Silvestri, Chester J., Internal combustion engine control for improved fuel efficiency.
  8. Tripathi, Adya S.; Silvestri, Chester J., Internal combustion engine control for improved fuel efficiency.
  9. Tripathi, Adya S.; Silvestri, Chester J., Internal combustion engine control for improved fuel efficiency.
  10. Dudek Kenneth P. (Rochester Hills MI) Folkerts Charles H. (Troy MI), Method for predicting R-step ahead engine state measurements.
  11. Vian,John L.; Travis,Matt H., Methods and systems for analyzing engine unbalance conditions.
  12. Gibson, Alex O'Connor; Kolmanovsky, Ilya V., Variable displacement engine powertrain fuel economy mode.
  13. Gibson, Alex; Trask, Nate; Reed, Dennis; Kolmanovsky, Ilya V., Vehicle braking control.
  14. Kodama,Yoshiyuki; Hiramatsu,Kazunori, Writing device for color electronic paper.

이 특허를 인용한 특허 (17)

  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. Rayl, Allen B.; Beikmann, Randall S.; Naik, Sanjeev M., Cylinder activation and deactivation control systems and methods.
  4. Beikmann, Randall S., Cylinder activation/deactivation sequence control systems and methods.
  5. Phillips, Andrew W., Cylinder control systems and methods for discouraging resonant frequency operation.
  6. Rayl, Allen B., Cylinder deactivation pattern matching.
  7. Li, Jinbiao; Liu, Haifeng, Cylinder firing fraction determination and control systems and methods.
  8. Wagh, Nitish J.; Beikmann, Randall S., Firing pattern management for improved transient vibration in variable cylinder deactivation mode.
  9. Hayman, Alan W.; McAlpine, Robert S., Fuel consumption based cylinder activation and deactivation control systems and methods.
  10. Brennan, Daniel G.; Matthews, Gregory P.; Wiggins, Layne K., Intake runner temperature determination systems and methods.
  11. Beikmann, Randall S., System and method for controlling a firing sequence of an engine to reduce vibration when cylinders of the engine are deactivated.
  12. 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.
  13. Rayl, Allen B., System and method for deactivating a cylinder of an engine and reactivating the cylinder based on an estimated trapped air mass.
  14. Liu, Zhiping Steven; Matthews, Gregory P.; Will, Anthony B., System and method for predicting parameters associated with airflow through an engine.
  15. 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.
  16. Burleigh, Darrell W.; Beikmann, Randall S., Systems and methods for controlling cylinder deactivation periods and patterns.
  17. Brennan, Daniel G.; Matthews, Gregory P.; Wiggins, Layne K., Volumetric efficiency determination systems and methods.
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