Patents by Inventor JIN-YAN HSU

JIN-YAN HSU has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 11801834
    Abstract: A vehicle positioning method via data fusion and a system using the same are disclosed. The method is performed in a processor electrically connected to a self-driving-vehicle controller and multiple electronic systems. The method is to perform a delay correction according to a first real-time coordinate, a second real-time coordinate, real-time lane recognition data, multiple vehicle dynamic parameters, and multiple vehicle information received from the multiple electronic systems with their weigh values, to generate a fusion positioning coordinate, and to determine confidence indexes. Then, the method is to output the first real-time coordinate, the second real-time coordinate, and the real-time lane recognition data that are processed by the delay correction, the fusion positioning coordinate, and the confidence indexes to the self-driving-vehicle controller for a self-driving operation.
    Type: Grant
    Filed: December 21, 2021
    Date of Patent: October 31, 2023
    Assignee: Automotive Research & Testing Center
    Inventors: Tong-Kai Jhang, Jin-Yan Hsu, You-Sian Lin, Ji-Fan Yang, Chien-Hung Yu, Yi-Zhao Chen
  • Publication number: 20230192080
    Abstract: A vehicle positioning method via data fusion and a system using the same are disclosed. The method is performed in a processor electrically connected to a self-driving-vehicle controller and multiple electronic systems. The method is to perform a delay correction according to a first real-time coordinate, a second real-time coordinate, real-time lane recognition data, multiple vehicle dynamic parameters, and multiple vehicle information received from the multiple electronic systems with their weigh values, to generate a fusion positioning coordinate, and to determine confidence indexes. Then, the method is to output the first real-time coordinate, the second real-time coordinate, and the real-time lane recognition data that are processed by the delay correction, the fusion positioning coordinate, and the confidence indexes to the self-driving-vehicle controller for a self-driving operation.
    Type: Application
    Filed: December 21, 2021
    Publication date: June 22, 2023
    Inventors: TONG-KAI JHANG, JIN-YAN HSU, YOU-SIAN LIN, JI-FAN YANG, CHIEN-HUNG YU, YI-ZHAO CHEN
  • Patent number: 11623685
    Abstract: A system and a method for active steering control with automatic torque compensation are disclosed with a processor that generates a targeted torque signal after receiving a steering assistance signal generated by an active driver assistance device, overlays the targeted torque signal on a driver's torque signal after receiving the driver's torque signal sensed by a torque sensor to generate a steering torque signal, and performs an assistance logic algorithm according to the steering torque signal. As the assistance logic algorithm is performed based on both the steering assistance signal and the driver's torque signal, the steering assistance effect provided by the system and the method will not resist against the way of driver's steering, allowing the driver to easily and stably control the vehicle.
    Type: Grant
    Filed: August 6, 2021
    Date of Patent: April 11, 2023
    Assignee: Automotive Research & Testing Center
    Inventors: Tong-Kai Jhang, Jin-Yan Hsu
  • Patent number: 11560152
    Abstract: A method for controlling movement of an autonomous vehicle includes: estimating a set of tire force margins with respect to each wheel of the vehicle and a set of dynamic chassis margins associated with a chassis module of the vehicle; based on the margins, determining whether the vehicle is capable of moving in accordance with a decision command; when the determination is negative, outputting a request for update of the decision command; and when an updated decision command has not been received, calculating a set of marginal actuating signals based on the decision command, the margins, required slip angles respectively for the wheels and a center of percussion of the vehicle so as to make the autonomous vehicle move accordingly.
    Type: Grant
    Filed: December 23, 2020
    Date of Patent: January 24, 2023
    Assignee: AUTOMOTIVE RESEARCH & TESTING CENTER
    Inventors: Chien-Hung Yu, Jin-Yan Hsu, Tong-Kai Jhang, Chi-Chun Huang
  • Publication number: 20220194414
    Abstract: A method for controlling movement of an autonomous vehicle includes: estimating a set of tire force margins with respect to each wheel of the vehicle and a set of dynamic chassis margins associated with a chassis module of the vehicle; based on the margins, determining whether the vehicle is capable of moving in accordance with a decision command; when the determination is negative, outputting a request for update of the decision command; and when an updated decision command has not been received, calculating a set of marginal actuating signals based on the decision command, the margins, required slip angles respectively for the wheels and a center of percussion of the vehicle so as to make the autonomous vehicle move accordingly.
    Type: Application
    Filed: December 23, 2020
    Publication date: June 23, 2022
    Applicant: Automotive Research & Testing Center
    Inventors: Chien-Hung Yu, Jin-Yan Hsu, Tong-Kai Jhang, Chi-Chun Huang
  • Publication number: 20210362781
    Abstract: A system and a method for active steering control with automatic torque compensation are disclosed with a processor that generates a targeted torque signal after receiving a steering assistance signal generated by an active driver assistance device, overlays the targeted torque signal on a driver's torque signal after receiving the driver's torque signal sensed by a torque sensor to generate a steering torque signal, and performs an assistance logic algorithm according to the steering torque signal. As the assistance logic algorithm is performed based on both the steering assistance signal and the driver's torque signal, the steering assistance effect provided by the system and the method will not resist against the way of driver's steering, allowing the driver to easily and stably control the vehicle.
    Type: Application
    Filed: August 6, 2021
    Publication date: November 25, 2021
    Inventors: TONG-KAI JHANG, JIN-YAN HSU
  • Patent number: 11130493
    Abstract: A trajectory planning method for lane changing of a vehicle includes steps of: calculating a current position of a reference point of the vehicle on a preliminary lane change trajectory that is received from an LCA system of the vehicle at a current time point; based on kinematics data received from an IMU of the vehicle, calculating longitudinal and lateral displacements of the reference point moving during a unit of time from the current time point to a next time point, and a yaw angle of the vehicle at the next time point; and obtaining a calibrated lane change trajectory based on the preliminary lane change trajectory, the current position, the longitudinal and lateral displacements, and the yaw angle.
    Type: Grant
    Filed: December 30, 2019
    Date of Patent: September 28, 2021
    Assignee: AUTOMOTIVE RESEARCH & TESTING CENTER
    Inventors: Tong-Kai Jhang, Chien-Hung Yu, Jin-Yan Hsu, Kun-Lung Ku
  • Publication number: 20210197822
    Abstract: A trajectory planning method for lane changing of a vehicle includes steps of: calculating a current position of a reference point of the vehicle on a preliminary lane change trajectory that is received from an LCA system of the vehicle at a current time point; based on kinematics data received from an IMU of the vehicle, calculating longitudinal and lateral displacements of the reference point moving during a unit of time from the current time point to a next time point, and a yaw angle of the vehicle at the next time point; and obtaining a calibrated lane change trajectory based on the preliminary lane change trajectory, the current position, the longitudinal and lateral displacements, and the yaw angle.
    Type: Application
    Filed: December 30, 2019
    Publication date: July 1, 2021
    Applicant: Automotive Research & Testing Center
    Inventors: Tong-Kai JHANG, Chien-Hung YU, Jin-Yan HSU, Kun-Lung KU
  • Patent number: 10703365
    Abstract: A lane tracking method is proposed for use by an autonomous vehicle running on a lane. A future location of the autonomous vehicle that corresponds to a future time point is estimated based on a current location and a measurement result of an inertial measurement unit of the autonomous vehicle. The future location of the autonomous vehicle, and a reference lane line data and a reference past location that correspond to a reference past time point are used to estimate a future lane line data that corresponds to the future time point.
    Type: Grant
    Filed: December 26, 2018
    Date of Patent: July 7, 2020
    Assignee: AUTOMOTIVE RESEARCH & TESTING CENTER
    Inventors: Jin-Yan Hsu, Chien-Hung Yu, Kun-Lung Ku, Tong-Kai Jhang, Hung-Pang Lin
  • Publication number: 20200207342
    Abstract: A lane tracking method is proposed for use by an autonomous vehicle running on a lane. A future location of the autonomous vehicle that corresponds to a future time point is estimated based on a current location and a measurement result of an inertial measurement unit of the autonomous vehicle. The future location of the autonomous vehicle, and a reference lane line data and a reference past location that correspond to a reference past time point are used to estimate a future lane line data that corresponds to the future time point.
    Type: Application
    Filed: December 26, 2018
    Publication date: July 2, 2020
    Applicant: Automotive Research & Testing Center
    Inventors: Jin-Yan HSU, Chien-Hung YU, Kun-Lung KU, Tong-Kai JHANG, Hung-Pang LIN
  • Publication number: 20200180688
    Abstract: A system and a method for active steering control with automatic torque compensation are disclosed with a processor that generates a targeted torque signal after receiving a steering assistance signal generated by an active driver assistance device, overlays the targeted torque signal on a driver's torque signal after receiving the driver's torque signal sensed by a torque sensor to generate a steering torque signal, and performs an assistance logic algorithm according to the steering torque signal. As the assistance logic algorithm is performed based on both the steering assistance signal and the driver's torque signal, the steering assistance effect provided by the system and the method will not resist against the way of driver's steering, allowing the driver to easily and stably control the vehicle.
    Type: Application
    Filed: December 7, 2018
    Publication date: June 11, 2020
    Inventors: TONG-KAI JHANG, JIN-YAN HSU
  • Patent number: 10633024
    Abstract: A vehicle lateral control system having a lane model with modulation weighting for controlling a vehicle includes a camera, an image processing device, a controller and a steering device. The camera is configured to capture a front image of the vehicle to generate a front image dataset. The front image dataset is analyzed by the image processing device to obtain a plurality of lane markers, and the image processing device establishes a lane fitting curve according to the lane markers and a target weighting. The controller has a plurality of vehicle dynamic parameters and a target distance. The target weighting is changeable according to the target distance. The controller generates a steering control weighting according to the lane fitting curve and the vehicle dynamic parameters. The steering device is configured to control a turning direction of the vehicle according to the steering control weighting.
    Type: Grant
    Filed: December 27, 2017
    Date of Patent: April 28, 2020
    Assignee: Automotive Research & Testing Center
    Inventors: Kun-Lung Ku, Jin-Yan Hsu, Hung-Pang Lin, Tong-Kai Jhang
  • Patent number: 10583839
    Abstract: A method of lane change and path planning that receives sensed signals from multiple sensors through a car computer on a vehicle to generate multiple traveling speed time-sorted information and multiple surrounding circumstance time-sorted information, and to further generate a 3×3 grid corresponding to the surroundings of the vehicle; when receiving a signal to switch on the turn signals, the car computer selects data within a time interval from those traveling speed time-sorted information and surrounding circumstance time-sorted information, respectively; and then the selected data is to be processed together with the 3×3 grid to generate a lane change space, and through a decision strategy to determine whether the lane change space complies with a safety movement strategy, and then the car computer generates a planned path of movement, such that a safest space for assisting lane change is provided for improving convenience and safety.
    Type: Grant
    Filed: December 28, 2017
    Date of Patent: March 10, 2020
    Assignee: AUTOMOTIVE RESEARCH & TESTING CENTER
    Inventors: Tzu-Sung Wu, Wei-Jen Wang, Jin-Yan Hsu
  • Patent number: 10518802
    Abstract: A method for controlling a power steering system of a road vehicle includes: after the road vehicle is started, activating only an EPS subsystem; afterward, activating an EHPS subsystem when a speed of the road vehicle is not higher than a predetermined speed threshold; once the EHPS subsystem is activated, controlling the hydraulic motor of the EHPS subsystem to rotate at a rotational speed lower than a pre-set rotational speed when a torque applied to a steering column is smaller than a predetermined torque threshold.
    Type: Grant
    Filed: December 27, 2017
    Date of Patent: December 31, 2019
    Assignee: Automotive Research & Testing Center
    Inventors: Zong-Li Wang, Jin-Yan Hsu
  • Patent number: 10421492
    Abstract: An assisted steering system with vibrational function for vehicles is applied to a steering system of a vehicle. The steering system has a first steering column and a second steering column, and the assisted steering system includes a speed-adjustable steering device and an electronic control unit. The speed-adjustable steering device is connected between the first steering column and the second steering column and has a motor. The electronic control unit is electrically connected to the motor, generates a vibration driving current when receiving a warning command, combines a steering driving current with the vibration driving current to generate a motor control current, and outputs the motor control current to the motor of the speed-adjustable steering device to excite windings of the motor with the vibration driving current in generation of a vibrational effect.
    Type: Grant
    Filed: December 29, 2016
    Date of Patent: September 24, 2019
    Assignee: Automotive Research & Testing Center
    Inventors: Jin-Yan Hsu, Tong-Kai Jhang, Chih-Jung Yeh
  • Publication number: 20190202462
    Abstract: A method of lane change and path planning that receives sensed signals from multiple sensors through a car computer on a vehicle to generate multiple traveling speed time-sorted information and multiple surrounding circumstance time-sorted information, and to further generate a 3×3 grid corresponding to the surroundings of the vehicle; when receiving a signal to switch on the turn signals, the car computer selects data within a time interval from those traveling speed time-sorted information and surrounding circumstance time-sorted information, respectively; and then the selected data is to be processed together with the 3×3 grid to generate a lane change space, and through a decision strategy to determine whether the lane change space complies with a safety movement strategy, and then the car computer generates a planned path of movement, such that a safest space for assisting lane change is provided for improving convenience and safety.
    Type: Application
    Filed: December 28, 2017
    Publication date: July 4, 2019
    Applicant: AUTOMOTIVE RESEARCH & TESTING CENTER
    Inventors: Tzu-Sung WU, Wei-Jen WANG, Jin-Yan HSU
  • Publication number: 20190193779
    Abstract: A method for controlling a power steering system of a road vehicle includes: after the road vehicle is started, activating only an EPS subsystem; afterward, activating an EHPS subsystem when a speed of the road vehicle is not higher than a predetermined speed threshold; once the EHPS subsystem is activated, controlling the hydraulic motor of the EHPS subsystem to rotate at a rotational speed lower than a pre-set rotational speed when a torque applied to a steering column is smaller than a predetermined torque threshold.
    Type: Application
    Filed: December 27, 2017
    Publication date: June 27, 2019
    Applicant: Automotive Research & Testing Center
    Inventors: Zong-Li WANG, Jin-Yan HSU
  • Publication number: 20190193785
    Abstract: A vehicle lateral control system having a lane model with modulation weighting for controlling a vehicle includes a camera, an image processing device, a controller and a steering device. The camera is configured to capture a front image of the vehicle to generate a front image dataset. The front image dataset is analyzed by the image processing device to obtain a plurality of lane markers, and the image processing device establishes a lane fitting curve according to the lane markers and a target weighting. The controller has a plurality of vehicle dynamic parameters and a target distance. The target weighting is changeable according to the target distance. The controller generates a steering control weighting according to the lane fitting curve and the vehicle dynamic parameters. The steering device is configured to control a turning direction of the vehicle according to the steering control weighting.
    Type: Application
    Filed: December 27, 2017
    Publication date: June 27, 2019
    Inventors: Kun-Lung KU, Jin-Yan HSU, Hung-Pang LIN, Tong-Kai JHANG
  • Patent number: 10139830
    Abstract: An automatic land following control system is provided and includes an image sensor, a steering angle sensor, an inertial measurement unit, a vehicle speed sensor and a controller. The image sensor senses a vehicle lane to generate a land data. The steering angle sensor senses a steering angle to generate a steering angle data. The IMU senses an acceleration, a yaw rate and a roll angle of the vehicle to generate an acceleration data, a yaw rate data and a roll angle data. The vehicle speed sensor senses a speed of the vehicle to generate a vehicle speed data. The controller receives a digital map data, the lane data, the steering angle data, the acceleration data, the yaw rate data, the roll angle data and the vehicle speed data to calculate a compensation angle data of the wheel.
    Type: Grant
    Filed: December 29, 2016
    Date of Patent: November 27, 2018
    Assignee: Automotive Research & Testing Center
    Inventors: Po-Kai Tseng, Jin-Yan Hsu, Shih-Chieh Huang
  • Publication number: 20180188739
    Abstract: An automatic land following control system is provided and includes an image sensor, a steering angle sensor, an inertial measurement unit, a vehicle speed sensor and a controller. The image sensor senses a vehicle lane to generate a land data. The steering angle sensor senses a steering angle to generate a steering angle data. The IMU senses an acceleration, a yaw rate and a roll angle of the vehicle to generate an acceleration data, a yaw rate data and a roll angle data. The vehicle speed sensor senses a speed of the vehicle to generate a vehicle speed data. The controller receives a digital map data, the lane data, the steering angle data, the acceleration data, the yaw rate data, the roll angle data and the vehicle speed data to calculate a compensation angle data of the wheel.
    Type: Application
    Filed: December 29, 2016
    Publication date: July 5, 2018
    Applicant: AUTOMOTIVE RESEARCH & TESTING CENTER
    Inventors: Po-Kai TSENG, Jin-Yan HSU, Shih-Chieh HUANG