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Apparatus for measuring the yaw rate of a vehicle 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • B60G-017/01
  • G01C-025/00
출원번호 US-0773857 (1991-12-09)
우선권정보 GB-0009074 (1989-04-21)
국제출원번호 PCT/GB90/00607 (1990-04-20)
§371/§102 date 19911209 (19911209)
국제공개번호 WO-9012698 (1990-11-01)
발명자 / 주소
  • Williams David A. (Milton Keynes GBX)
출원인 / 주소
  • Group Lotus PLC (Hethel GB2 03)
인용정보 피인용 횟수 : 66  인용 특허 : 7

초록

An apparatus for measuring the yaw rate of a vehicle, comprising a device for measuring the velocity of the vehicle, a device for measuring the lateral acceleration of the vehicle, and a device for measuring the steering angle of the vehicle, a correction device, and a yaw gyrometer. The correction

대표청구항

Apparatus for measuring a yaw rate of a vehicle comprising a gyrometer which can provide an output signal corresponding to the yaw rate of the vehicle, measuring means for measuring a velocity, a steering angel and a lateral acceleration of the vehicle; and correction means for removing bias errors

이 특허에 인용된 특허 (7)

  1. Tagami Katsutoshi (Saitama JPX) Takahashi Tsuneo (Saitama JPX) Yasui Shinichiro (Tokyo JPX) Ichikawa Akira (Saitama JPX) Kitasei Yasuzi (Saitama JPX) Hidaka Akira (Saitama JPX), Method of adjusting the zero-point of rate type sensor.
  2. Inagaki Mitsuo (Okazaki JPX) Sasaya Hideaki (Okazaki JPX) Iwanami Shigeki (Okazaki JPX), Power steering apparatus for a vehicle with yaw control.
  3. Karnopp Dean C. (Davis CA) Yasui Yoshiyuki (Davis CA), Steering control apparatus.
  4. Schindler Erich (Waiblingen DEX), Supplementary steering system.
  5. Okuda Eiichiro (Habikino JPX) Takigawa Masuo (Ikoma JPX), Suspension control apparatus.
  6. Ohashi Kaoru (Okazaki JPX) Hamada Chiaki (Susono JPX) Kawakami Hiroshi (Toyota JPX) Hirano Yutaka (Toyota JPX) Murakami Zensaku (Susono JPX), Suspension controller for improved turning.
  7. Shiraishi Shuji (Wako) Kiryu Hironobu (Wako JPX), Yaw motion control device.

이 특허를 인용한 특허 (66)

  1. Obi, Masakazu, Apparatus for estimating travel path of a vehicle.
  2. Brown,Todd; Chubb,Erik, Attitude sensing system for an automotive vehicle relative to the road.
  3. Eckert Alfred,DEX ; Drumm Stefan A.,DEX, Brake system for a motor vehicle with yaw moment control.
  4. Ulm Michael,DEX, Circuit configuration for evaluation of the signals from a yaw rate sensor.
  5. Madau Dinu Petre ; Ashrafi Behrouz, Compensation algorithm for initializing yaw rate sensor's zero point offset.
  6. Kamen, Dean; Ambrogi, Robert R.; Dattolo, James J.; Duggan, Robert J.; Field, J. Douglas; Heinzmann, Richard Kurt; McCambridge, Matthew M.; Morrell, John B.; Piedmonte, Michael D.; Rosasco, Richard J., Control of a personal transporter based on user position.
  7. Kamen, Dean; Ambrogi, Robert R.; Dattolo, James J.; Duggan, Robert J.; Field, J. Douglas; Heinzmann, Richard Kurt; McCambridge, Matthew M.; Morrell, John B.; Piedmonte, Michael D.; Rosasco, Richard J., Control of a personal transporter based on user position.
  8. Kamen, Dean; Ambrogi, Robert R.; Dattolo, James J.; Duggan, Robert J.; Field, J. Douglas; Heinzmann, Richard Kurt; McCambridge, Matthew M.; Morrell, John B.; Piedmonte, Michael D.; Rosasco, Richard J., Control of a personal transporter based on user position.
  9. Kamen, Dean; Ambrogi, Robert R.; Dattolo, James J.; Duggan, Robert J.; Field, J. Douglas; Heinzmann, Richard Kurt; McCambridge, Matthew M.; Morrell, John B.; Piedmonte, Michael D.; Rosasco, Richard J., Control of a personal transporter based on user position.
  10. Kamen, Dean; Ambrogi, Robert R.; Dattolo, James J.; Duggan, Robert J.; Field, J. Douglas; Heinzmann, Richard Kurt; McCambridge, Matthew M.; Morrell, John B.; Piedmonte, Michael D.; Rosasco, Richard J., Control of a personal transporter based on user position.
  11. Kamen, Dean; Ambrogi, Robert R.; Dattolo, James J.; Duggan, Robert J.; Field, J. Douglas; Heinzmann, Richard Kurt; McCambridge, Matthew M.; Morrell, John B.; Piedmonte, Michael D.; Rosasco, Richard J., Control of a personal transporter based on user position.
  12. Kamen, Dean; Ambrogi, Robert R.; Dattolo, James J.; Duggan, Robert J.; Field, J. Douglas; Heinzmann, Richard Kurt; McCambridge, Matthew M.; Morrell, John B.; Piedmonte, Michael D.; Rosasco, Richard J., Control of a personal transporter based on user position.
  13. Kamen, Dean; Ambrogi, Robert R.; Dattolo, James J.; Duggan, Robert J.; Field, J. Douglas; Heinzmann, Richard Kurt; McCambridge, Matthew M.; Morrell, John B.; Piedmonte, Michael D.; Rosasco, Richard J., Control of a personal transporter based on user position.
  14. Kamen, Dean; Ambrogi, Robert R.; Dattolo, James J.; Duggan, Robert J.; Field, J. Douglas; Heinzmann, Richard Kurt; McCambridge, Matthew M.; Morrell, John B.; Piedmonte, Michael D.; Rosasco, Richard J., Control of a personal transporter based on user position.
  15. Kamen, Dean; Ambrogi, Robert R.; Dattolo, James J.; Duggan, Robert J.; Field, J. Douglas; Heinzmann, Richard Kurt; McCambridge, Matthew M.; Morrell, John B.; Piedmonte, Michael D.; Rosasco, Richard J., Control of a personal transporter based on user position.
  16. Kamen, Dean; Ambrogi, Robert R.; Dattolo, James J.; Duggan, Robert J.; Field, J. Douglas; Heinzmann, Richard Kurt; McCambridge, Matthew M.; Morrell, John B.; Piedmonte, Michael D.; Rosasco, Richard J., Control of a personal transporter based on user position.
  17. Kamen, Dean; Rosasco, Richard J.; Ambrogi, Robert R.; Dattolo, James J.; Duggan, Robert J.; Field, J. Douglas; Heinzmann, Richard Kurt; McCambridge, Matthew M.; Morrell, John B.; Piedmonte, Michael D., Control of a personal transporter based on user position.
  18. Kamen, Dean; Heinzmann, Richard Kurt; Ambrogi, Robert R, Control of a transporter based on attitude.
  19. Kamen, Dean; Heinzmann, Richard Kurt; Ambrogi, Robert R., Control of a transporter based on attitude.
  20. Eckert Alfred,DEX ; Kranz Thomas,DEX, Driving stability control system with selective brake actuation.
  21. Lu,Jianbo; Brown,Todd Allen; Meyers,Joseph Carr, Enhanced system for yaw stability control system to include roll stability control function.
  22. Basnayake, Chaminda, In-vehicle sensor-based calibration algorithm for yaw rate sensor calibration.
  23. Lu,Jianbo; Brown,Todd Allen; Xu,Li; Meyers,Joseph Carr, Integrated sensing system.
  24. Lu, Jianbo; Rupp, Jeffrey, Integrated vehicle control system using dynamically determined vehicle conditions.
  25. Lu, Jianbo; Rupp, Jeffrey, Integrated vehicle control system using dynamically determined vehicle conditions.
  26. Lu, Jianbo; Rupp, Jeffrey, Integrated vehicle control system using dynamically determined vehicle conditions.
  27. Lu, Jianbo; Rupp, Jeffrey, Integrated vehicle control system using dynamically determined vehicle conditions.
  28. Lu, Jianbo; Rupp, Jeffrey, Integrated vehicle control system using dynamically determined vehicle conditions.
  29. Lohrenz Frank,DEX ; Menten Frank,DEX ; Probst Gregor,DEX, Method and circuit configuration for compensating for signal errors of a yaw velocity sensor.
  30. Samuel,Stephen Varghese; Brown,Todd Allen, Method and system for correcting sensor offsets.
  31. Eckert Alfred,DEX ; Nederkoorn C. Jan S.,NLX, Method for determining a wheel brake pressure.
  32. Eckert Alfred,DEX, Method for determining an additional yawing moment based on side slip angle velocity.
  33. Walter, Michael; Zobel, Matthias; Hoer, Johannes, Method for the calibration of a yaw rate measurement.
  34. Coulter, Stewart M.; Gray, Brian G.; van der Merwe, Dirk A.; Dastous, Susan D.; Pawlowski, Daniel F., Mobility device control system.
  35. Ying, Jiawei; Lin, Yunfei, Pressure control steering.
  36. Eckert Alfred,DEX, Process for controlling driving stability with a yaw rate sensor equipped with two lateral acceleration meters.
  37. Eckert Alfred,DEX, Process for driving stability control with control via pressure gradients.
  38. Brown,Todd; Meyers,Joseph C., Roll over stability control for an automotive vehicle.
  39. Lu, Jianbo; Brewer, Michael; Mattson, Keith; Meyers, Joseph C.; Brown, Todd, Roll stability control using four-wheel drive.
  40. Brown,Todd A.; Eisele,Daniel D.; Lopez,Michael P., System and method for determining desired yaw rate and lateral velocity for use in a vehicle dynamic control system.
  41. Lu, Jianbo; Mattson, Keith; Messih, David; Chubb, Erik; Salib, Albert, System and method for dynamically determining vehicle loading and vertical loading distance for use in a vehicle dynamic control system.
  42. Lu, Jianbo; Mattson, Keith; Messih, David; Chubb, Erik; Salib, Albert, System and method for dynamically determining vehicle loading and vertical loading distance for use in a vehicle dynamic control system.
  43. Lu, Jianbo; Mattson, Keith; Messih, David; Chubb, Erik; Salib, Albert, System and method for dynamically determining vehicle loading and vertical loading distance for use in a vehicle dynamic control system.
  44. Lu, Jianbo; Mattson, Keith; Messih, David; Chubb, Erik; Salib, Albert, System and method for dynamically determining vehicle loading and vertical loading distance for use in a vehicle dynamic control system.
  45. Lu, Jianbo; Mattson, Keith; Messih, David; Chubb, Erik; Salib, Albert, System and method for dynamically determining vehicle loading and vertical loading distance for use in a vehicle dynamic control system.
  46. Lu, Jianbo; Mattson, Keith; Messih, David; Chubb, Erik; Salib, Albert, System and method for dynamically determining vehicle loading and vertical loading distance for use in a vehicle dynamic control system.
  47. Salib,Albert Chenouda; Ghani,Hani Abdul; Geurink,Mathijs Willem; Brown,Todd Allen, System and method for operating a rollover control system during an elevated condition.
  48. Salib,Albert Chenouda; Ghani,Hani Abdul; Geurink,Mathijs Willem; Brown,Todd Allen, System and method for operating a rollover control system in a transition to a rollover condition.
  49. Messih, David; Lu, Jianbo, System and method for qualitatively determining vehicle loading conditions.
  50. Messih, David; Lu, Jianbo, System and method for qualitatively determining vehicle loading conditions.
  51. Wanke Peter,DEX, System for controlling yaw moment based on an estimated coefficient of friction.
  52. Eckert Alfred,DEX ; Lammen Benno,DEX, System for determining side slip angle.
  53. Lu, Jianbo, System for determining torque and tire forces using integrated sensing system.
  54. Eckert Alfred,DEX, System for driving stability control.
  55. Eckert Alfred,DEX ; Lammen Benno,DEX ; Wanke Peter,DEX ; Worsdorfer Karl-Friedrick,DEX ; Geiger Thomas,DEX ; Graber Johannes,DEX ; Drumm Stefan,DEX ; Kranz Thomas,DEX ; Neederkorn C. Jan,NLX, System for driving stability control.
  56. Graber Johannes,DEX, System for driving stability control during travel through a curve.
  57. Lu, Jianbo, System for dynamically determining axle loadings of a moving vehicle using integrated sensing system and its application in vehicle dynamics controls.
  58. Lu, Jianbo, System for dynamically determining axle loadings of a moving vehicle using integrated sensing system and its application in vehicle dynamics controls.
  59. Lu, Jianbo; Mattson, Keith; Meyers, Joe, System for dynamically determining vehicle rear/trunk loading for use in a vehicle control system.
  60. Lu, Jianbo; Mattson, Keith; Meyers, Joe, System for dynamically determining vehicle rear/trunk loading for use in a vehicle control system.
  61. Lu, Jianbo; Mattson, Keith; Meyers, Joe, System for dynamically determining vehicle rear/trunk loading for use in a vehicle control system.
  62. Lu, Jianbo; Mattson, Keith; Meyers, Joe, System for dynamically determining vehicle rear/trunk loading for use in a vehicle control system.
  63. Huang, Jihua, System for estimating vehicle states for rollover reduction.
  64. Eckert Alfred (Bodenheim DEX) Lammen Benno (Florsheim DEX) Wanke Peter (Frankfurt DEX) Worsdorfer Karl-Friedrick (Bodenheim DEX) Geiger Thomas (Freigericht/Neuses DEX) Graber Johannes (Eschborn DEX) , System for integrated driving stability control.
  65. Bustgens, Burkhard; Bestmann, Harald, Vehicle stability regulating system.
  66. Meyers,Joseph Carr; Brown,Todd Allen, Wheel lift identification for an automotive vehicle.
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