Ryu et al., 2013 - Google Patents
Vehicle sideslip angle estimation and experimental validationRyu et al., 2013
View PDF- Document ID
- 8832342731100305060
- Author
- Ryu J
- Nardi F
- Moshchuk N
- Publication year
- Publication venue
- ASME International Mechanical Engineering Congress and Exposition
External Links
Snippet
This paper presents a comparison study of three different methods for the estimation of vehicle's lateral velocity: one based on algebraic relationships, a second based on a dynamic observer, and lastly one based on kinematic equations. All methods are based on …
- 238000010200 validation analysis 0 title description 2
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60T—VEHICLE BRAKE CONTROL SYSTEMS OR PARTS THEREOF; BRAKE CONTROL SYSTEMS OR PARTS THEREOF, IN GENERAL; ARRANGEMENT OF BRAKING ELEMENTS ON VEHICLES IN GENERAL; PORTABLE DEVICES FOR PREVENTING UNWANTED MOVEMENT OF VEHICLES; VEHICLE MODIFICATIONS TO FACILITATE COOLING OF BRAKES
- B60T8/00—Arrangements for adjusting wheel-braking force to meet varying vehicular or ground-surface conditions, e.g. limiting or varying distribution of braking force
- B60T8/17—Using electrical or electronic regulation means to control braking
- B60T8/172—Determining control parameters used in the regulation, e.g. by calculations involving measured or detected parameters
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60T—VEHICLE BRAKE CONTROL SYSTEMS OR PARTS THEREOF; BRAKE CONTROL SYSTEMS OR PARTS THEREOF, IN GENERAL; ARRANGEMENT OF BRAKING ELEMENTS ON VEHICLES IN GENERAL; PORTABLE DEVICES FOR PREVENTING UNWANTED MOVEMENT OF VEHICLES; VEHICLE MODIFICATIONS TO FACILITATE COOLING OF BRAKES
- B60T8/00—Arrangements for adjusting wheel-braking force to meet varying vehicular or ground-surface conditions, e.g. limiting or varying distribution of braking force
- B60T8/17—Using electrical or electronic regulation means to control braking
- B60T8/1755—Brake regulation specially adapted to control the stability of the vehicle, e.g. taking into account yaw rate or transverse acceleration in a curve
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60T—VEHICLE BRAKE CONTROL SYSTEMS OR PARTS THEREOF; BRAKE CONTROL SYSTEMS OR PARTS THEREOF, IN GENERAL; ARRANGEMENT OF BRAKING ELEMENTS ON VEHICLES IN GENERAL; PORTABLE DEVICES FOR PREVENTING UNWANTED MOVEMENT OF VEHICLES; VEHICLE MODIFICATIONS TO FACILITATE COOLING OF BRAKES
- B60T2210/00—Detection or estimation of road or environment conditions; Detection or estimation of road shapes
- B60T2210/10—Detection or estimation of road conditions
- B60T2210/12—Friction
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60W—CONJOINT CONTROL OF VEHICLE SUB-UNITS OF DIFFERENT TYPE OR DIFFERENT FUNCTION; CONTROL SYSTEMS SPECIALLY ADAPTED FOR HYBRID VEHICLES; ROAD VEHICLE DRIVE CONTROL SYSTEMS FOR PURPOSES NOT RELATED TO THE CONTROL OF A PARTICULAR SUB-UNIT
- B60W40/00—Estimation or calculation of non-directly measurable driving parameters for road vehicle drive control systems not related to the control of a particular sub unit, e.g. by using mathematical models
- B60W40/02—Estimation or calculation of non-directly measurable driving parameters for road vehicle drive control systems not related to the control of a particular sub unit, e.g. by using mathematical models related to ambient conditions
- B60W40/06—Road conditions
- B60W40/068—Road friction coefficient
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60T—VEHICLE BRAKE CONTROL SYSTEMS OR PARTS THEREOF; BRAKE CONTROL SYSTEMS OR PARTS THEREOF, IN GENERAL; ARRANGEMENT OF BRAKING ELEMENTS ON VEHICLES IN GENERAL; PORTABLE DEVICES FOR PREVENTING UNWANTED MOVEMENT OF VEHICLES; VEHICLE MODIFICATIONS TO FACILITATE COOLING OF BRAKES
- B60T2230/00—Monitoring, detecting special vehicle behaviour; Counteracting thereof
- B60T2230/02—Side slip angle, attitude angle, floating angle, drift angle
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60W—CONJOINT CONTROL OF VEHICLE SUB-UNITS OF DIFFERENT TYPE OR DIFFERENT FUNCTION; CONTROL SYSTEMS SPECIALLY ADAPTED FOR HYBRID VEHICLES; ROAD VEHICLE DRIVE CONTROL SYSTEMS FOR PURPOSES NOT RELATED TO THE CONTROL OF A PARTICULAR SUB-UNIT
- B60W40/00—Estimation or calculation of non-directly measurable driving parameters for road vehicle drive control systems not related to the control of a particular sub unit, e.g. by using mathematical models
- B60W40/12—Estimation or calculation of non-directly measurable driving parameters for road vehicle drive control systems not related to the control of a particular sub unit, e.g. by using mathematical models related to parameters of the vehicle itself, e.g. tyre models
- B60W40/13—Load or weight
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Zhao et al. | Design of a nonlinear observer for vehicle velocity estimation and experiments | |
US7908112B2 (en) | Dynamic observer for the estimation of vehicle lateral velocity | |
US8086367B2 (en) | Vehicle lateral velocity and surface friction estimation using force tables | |
US8078351B2 (en) | Estimation of surface lateral coefficient of friction | |
US8050838B2 (en) | Kinematic estimator for vehicle lateral velocity using force tables | |
Rajamani et al. | Algorithms for real-time estimation of individual wheel tire-road friction coefficients | |
CN103407451B (en) | A kind of road longitudinal and additional forces method of estimation | |
Yoon et al. | A cost-effective sideslip estimation method using velocity measurements from two GPS receivers | |
Nishio et al. | Development of vehicle stability control system based on vehicle sideslip angle estimation | |
CN108594652A (en) | A kind of vehicle-state fusion method of estimation based on observer information iteration | |
Pi et al. | Design and evaluation of sideslip angle observer for vehicle stability control | |
CN103279675B (en) | Tire-road attachment coefficient and the method for estimation of slip angle of tire | |
Hrgetic et al. | Vehicle sideslip angle EKF estimator based on nonlinear vehicle dynamics model and stochastic tire forces modeling | |
Ahn | Robust Estimation of Road Friction Coefficient for Vehicle Active Safety Systems. | |
Kayacan et al. | Modeling and identification of the yaw dynamics of an autonomous tractor | |
Song et al. | Pneumatic trail based slip angle observer with Dugoff tire model | |
Rubin et al. | Vehicle yaw stability control using rear active differential via sliding mode control methods | |
CN111006884A (en) | Fourier Transform-Based Measurement Method for Side Slip Angle and Corner Rigidity of Wheel and Axle | |
Yu et al. | A least-squares regression based method for vehicle yaw moment of inertia estimation | |
Ryu et al. | Vehicle sideslip angle estimation and experimental validation | |
Ghosh et al. | Sideslip angle estimation of a Formula SAE racing vehicle | |
Sun et al. | Joint estimation of states and parameters of vehicle model using cubature Kalman filter | |
Arat et al. | Optimal tire force allocation by means of smart tire technology | |
Limroth | Real-time vehicle parameter estimation and adaptive stability control | |
Lenzo et al. | A Physical-based observer for vehicle state estimation and road condition monitoring |