Patents by Inventor Zehua Huang

Zehua Huang 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).

  • Publication number: 20230174005
    Abstract: A power management system is disclosed for managing power in a vehicle. The system may include a power distribution unit (PDU) communicably coupled to a power controller unit located in the vehicle. The power controller unit comprises a microcontroller configured to: receive, from the PDU, a temperature value that indicates a temperature of the PDU, one or more voltage values from the one or more voltage sensors, or one or more current values from the one or more current sensors, perform a determination that the temperature value, the one or more voltage values, or the one or more current values are below one or more of their respective pre-determined threshold values, and send, after the determination, a health status message to a computer located in the vehicle, where the health status message indicates that the PDU is operating in a safe operating condition.
    Type: Application
    Filed: January 30, 2023
    Publication date: June 8, 2023
    Inventors: Kaixin ZHENG, Xiaoling Han, Zehua Huang, Yue Pan, Zhaohan Jia
  • Publication number: 20230159057
    Abstract: Devices, systems, and methods for a vehicular safety system in autonomous vehicles are described. An example method for safely controlling a vehicle includes selecting, based on a first control command from a first vehicle control unit, an operating mode of the vehicle, and transmitting, based on the selecting, the operating mode to an autonomous driving system, wherein the first control command is generated based on input from a first plurality of sensors, and wherein the operating mode corresponds to one of (a) a default operating mode, (b) a minimal risk condition mode of a first type that configures the vehicle to pull over to a nearest pre-designated safety location, (c) a minimal risk condition mode of a second type that configures the vehicle to immediately stop in a current lane, or (d) a minimal risk condition mode of a third type that configures the vehicle to come to a gentle stop.
    Type: Application
    Filed: January 8, 2023
    Publication date: May 25, 2023
    Inventors: Xiaoling HAN, Yu-Ju HSU, Mohamed Hassan Ahmed Hassan WAHBA, Kun ZHANG, Zehua HUANG, Qiong XU, Zhujia SHI, Yicai JIANG, Junjun XIN
  • Publication number: 20230150572
    Abstract: Techniques are described for managing redundant steering system for a vehicle. A method includes sending a first control command that instructs a first motor coupled to a steering wheel in a steering system to steer a vehicle, receiving, after sending the first control command, a speed of the vehicle, a yaw rate of the vehicle, and a steering position of the steering wheel, determining, based at least on the speed and the yaw rate, an expected range of steering angles that describes values within which the first motor is expected to steer the vehicle based on the first control command, and upon determining that the steering position of a steering wheel is outside the expected range of steering angles, sending a second control command that instructs a second motor coupled to the steering wheel in the steering system to steer the vehicle.
    Type: Application
    Filed: January 20, 2023
    Publication date: May 18, 2023
    Inventors: Kaixin ZHENG, Xiaoling HAN, Zehua HUANG
  • Patent number: 11639177
    Abstract: Techniques are described for estimating road friction between a road and tires of a vehicle. A method includes receiving, from a temperature sensor on a vehicle, a temperature value that indicates a temperature of an environment in which a vehicle is operated, determining a first range of friction values that quantify a friction between a road and tires of a vehicle based on a function of the temperature value and an extent of precipitation in a region that indicate a hazardous driving condition, obtaining, from the first range of friction values, a value that quantifies the friction between the road and the tires of the vehicle, where the value is obtained based on a driving related behavior of the vehicle, and causing the vehicle to operate on the road based on the value obtained from the first range of friction values.
    Type: Grant
    Filed: September 16, 2020
    Date of Patent: May 2, 2023
    Assignee: TUSIMPLE, INC.
    Inventors: Kun Zhang, Xiaoling Han, Weina Mao, Zehua Huang, Charles A. Price
  • Publication number: 20230113208
    Abstract: Disclosed are devices, systems and methods for using a rotating camera for vehicular operation. One example of a method for improving driving includes determining, by a processor in the vehicle, that a trigger has activated, orienting, based on the determining, a single rotating camera towards a direction of interest, and activating a recording functionality of the single rotating camera, where the vehicle comprises the single rotating camera and one or more fixed cameras, and where the single rotating camera provides a redundant functionality for, and consumes less power than, the one or more fixed cameras.
    Type: Application
    Filed: December 2, 2022
    Publication date: April 13, 2023
    Inventors: Zhujia Shi, Charles A. Price, Zehua Huang, Xiaodi Hou, Xiaoling Han, Todd Skinner
  • Patent number: 11608087
    Abstract: Techniques are described for transitioning control of a steering system from an autonomous mode in a vehicle to a driver-controlled mode where the driver can control the steering wheel of the steering system. A method includes receiving values that describe an amount of torque and a direction of torque in response to a torque applied to a steering wheel of a steering system operated in an autonomous mode, determining that the values are either greater than or equal to a threshold value or are less than or equal to a negative of the threshold value, determining that the values are measured over a period of time greater than or equal to a pre-determined amount of time, and transitioning the steering system from being operated in the autonomous mode to being operated in a driver-controlled mode in which the steering system is under manual control.
    Type: Grant
    Filed: May 8, 2020
    Date of Patent: March 21, 2023
    Assignee: TUSIMPLE, INC.
    Inventors: Kaixin Zheng, Xiaoling Han, Zehua Huang, Charles A. Price
  • Publication number: 20230074491
    Abstract: Disclosed are devices, systems and methods for capturing an image. In one aspect an electronic camera apparatus includes an image sensor with a plurality of pixel regions. The apparatus further includes an exposure controller. The exposure controller determines, for each of the plurality of pixel regions, a corresponding exposure duration and a corresponding exposure start time. Each pixel region begins to integrate incident light starting at the corresponding exposure start time and continues to integrate light for the corresponding exposure duration. In some example embodiments, at least two of the corresponding exposure durations or at least two of the corresponding exposure start times are different in the image.
    Type: Application
    Filed: November 14, 2022
    Publication date: March 9, 2023
    Inventors: Ke XU, Xue MEI, Zehua HUANG
  • Patent number: 11597337
    Abstract: A power management system is disclosed for managing power in a vehicle. The system may include a power distribution unit (PDU) communicably coupled to a power controller unit located in the vehicle. The power controller unit comprises a microcontroller configured to: receive, from the PDU, a temperature value that indicates a temperature of the PDU, one or more voltage values from the one or more voltage sensors, or one or more current values from the one or more current sensors, perform a determination that the temperature value, the one or more voltage values, or the one or more current values are below one or more of their respective pre-determined threshold values, and send, after the determination, a health status message to a computer located in the vehicle, where the health status message indicates that the PDU is operating in a safe operating condition.
    Type: Grant
    Filed: February 4, 2020
    Date of Patent: March 7, 2023
    Assignee: TUSIMPLE, INC.
    Inventors: Kaixin Zheng, Xiaoling Han, Zehua Huang, Yue Pan, Zhaohan Jia
  • Patent number: 11587304
    Abstract: A system and method for occluding contour detection using a fully convolutional neural network is disclosed. A particular embodiment includes: receiving an input image; producing a feature map from the input image by semantic segmentation; learning an array of upscaling filters to upscale the feature map into a final dense feature map of a desired size; applying the array of upscaling filters to the feature map to produce contour information of objects and object instances detected in the input image; and applying the contour information onto the input image.
    Type: Grant
    Filed: October 12, 2018
    Date of Patent: February 21, 2023
    Assignee: TUSIMPLE, INC.
    Inventors: Panqu Wang, Pengfei Chen, Zehua Huang
  • Patent number: 11577776
    Abstract: Techniques are described for managing redundant steering system for a vehicle. A method includes sending a first control command that instructs a first motor coupled to a steering wheel in a steering system to steer a vehicle, receiving, after sending the first control command, a speed of the vehicle, a yaw rate of the vehicle, and a steering position of the steering wheel, determining, based at least on the speed and the yaw rate, an expected range of steering angles that describes values within which the first motor is expected to steer the vehicle based on the first control command, and upon determining that the steering position of a steering wheel is outside the expected range of steering angles, sending a second control command that instructs a second motor coupled to the steering wheel in the steering system to steer the vehicle.
    Type: Grant
    Filed: March 5, 2020
    Date of Patent: February 14, 2023
    Assignee: TUSIMPLE, INC.
    Inventors: Kaixin Zheng, Xiaoling Han, Zehua Huang
  • Publication number: 20230027572
    Abstract: Techniques are described to enable a vehicle, such as an autonomous vehicle, to steer and/or apply brakes on a road when a failure condition occurs. An example method for autonomous driving operation includes receiving a reduced set of location information that describes a location of the autonomous vehicle on a road; receiving a reduced set of trajectory information where the autonomous vehicle is expected to be driven; determining a driving path information where the autonomous vehicle is expected to be driven; and in response to determining an occurrence of a fault condition: sending a first instruction to cause the autonomous vehicle to steer the autonomous vehicle using at least the driving path information and the reduced set of location information, and sending a second instruction to cause the autonomous vehicle to apply brakes.
    Type: Application
    Filed: July 22, 2021
    Publication date: January 26, 2023
    Inventors: Mohamed Hassan Ahmed Hassan WAHBA, Yu-Ju HSU, Zehua HUANG, Xiaoling HAN
  • Patent number: 11554793
    Abstract: Devices, systems, and methods for a vehicular safety system in autonomous vehicles are described. An example method for safely controlling a vehicle includes selecting, based on a first control command from a first vehicle control unit, an operating mode of the vehicle, and transmitting, based on the selecting, the operating mode to an autonomous driving system, wherein the first control command is generated based on input from a first plurality of sensors, and wherein the operating mode corresponds to one of (a) a default operating mode, (b) a minimal risk condition mode of a first type that configures the vehicle to pull over to a nearest pre-designated safety location, (c) a minimal risk condition mode of a second type that configures the vehicle to immediately stop in a current lane, or (d) a minimal risk condition mode of a third type that configures the vehicle to come to a gentle stop.
    Type: Grant
    Filed: October 26, 2020
    Date of Patent: January 17, 2023
    Assignee: TUSIMPLE, INC.
    Inventors: Xiaoling Han, Yu-Ju Hsu, Mohamed Hassan Ahmed Hassan Wahba, Kun Zhang, Zehua Huang, Qiong Xu, Zhujia Shi, Yicai Jiang, Junjun Xin
  • Patent number: 11521489
    Abstract: Disclosed are devices, systems and methods for using a rotating camera for vehicular operation. One example of a method for improving driving includes determining, by a processor in the vehicle, that a trigger has activated, orienting, based on the determining, a single rotating camera towards a direction of interest, and activating a recording functionality of the single rotating camera, where the vehicle comprises the single rotating camera and one or more fixed cameras, and where the single rotating camera provides a redundant functionality for, and consumes less power than, the one or more fixed cameras.
    Type: Grant
    Filed: February 11, 2020
    Date of Patent: December 6, 2022
    Assignee: TUSIMPLE, INC.
    Inventors: Zhujia Shi, Charles A. Price, Zehua Huang, Xiaodi Hou, Xiaoling Han, Todd Skinner
  • Patent number: 11523067
    Abstract: Disclosed are devices, systems and methods for capturing an image. In one aspect an electronic camera apparatus includes an image sensor with a plurality of pixel regions. The apparatus further includes an exposure controller. The exposure controller determines, for each of the plurality of pixel regions, a corresponding exposure duration and a corresponding exposure start time. Each pixel region begins to integrate incident light starting at the corresponding exposure start time and continues to integrate light for the corresponding exposure duration. In some example embodiments, at least two of the corresponding exposure durations or at least two of the corresponding exposure start times are different in the image.
    Type: Grant
    Filed: May 19, 2021
    Date of Patent: December 6, 2022
    Assignee: TUSIMPLE, INC.
    Inventors: Ke Xu, Xue Mei, Zehua Huang
  • Publication number: 20220381602
    Abstract: Techniques are described for determining weight distribution of a vehicle. A method of performing autonomous driving operation includes determining a vehicle weight distribution that values for each axle of the vehicle that describe weight or pressure applied on a respective axle. The values of the vehicle weight distribution are determined by removing at least one value that is outside a range of pre-determined values from a set of sensor values. The method further includes determining a driving-related operation of the vehicle weight distribution. For example, the driving-related operation may include determining a braking amount for each axle and/or determining a maximum steering angle to operate the vehicle. The method further includes controlling one or more subsystems in the vehicle via an instruction related to the driving-related operation. For example, transmitting the instruction to the one or more subsystems causes the vehicle to perform the driving-related operation.
    Type: Application
    Filed: August 11, 2022
    Publication date: December 1, 2022
    Inventors: Kun ZHANG, Xiaoling HAN, Zehua HUANG, Charles A. PRICE
  • Patent number: 11461922
    Abstract: Image processing techniques are described to receive bounding box information that describes a bounding box located around a detected object in an image, determine one or more positions of one or more reference points on the bounding box, determine, for each reference point, 3D world coordinates of a point of intersection of the reference point and the road surface, and assign the 3D world coordinates of the one or more reference points to a location of the detected object.
    Type: Grant
    Filed: June 23, 2020
    Date of Patent: October 4, 2022
    Assignee: TUSIMPLE, INC.
    Inventors: Lingting Ge, Siyuan Liu, Zehua Huang, Yijie Wang
  • Patent number: 11441937
    Abstract: Techniques are described for determining weight distribution of a vehicle. A method of performing autonomous driving operation includes receiving two sets of values from two sets of sensors, where a first set of sensors measure weights or pressures applied on axles of a vehicle, and where a second set of sensors measure pressures in tires of the vehicle. The method performs an error detection and removal operation to remove or filter out any erroneous values from the two sets of values to obtain two sets of filtered values. The method determines one or more values that describe a weight or pressure applied on the axle to obtain the weight distribution of the vehicle based on the first set of filtered values or the second set of filtered values. Based on the obtained weight distribution of the vehicle, the method can determine a driving operation of the vehicle.
    Type: Grant
    Filed: August 10, 2020
    Date of Patent: September 13, 2022
    Assignee: TUSIMPLE, INC.
    Inventors: Kun Zhang, Xiaoling Han, Zehua Huang, Charles A. Price
  • Patent number: 11373389
    Abstract: Image processing techniques are described to select and crop a region of interest from an image obtained from a camera located on or in a vehicle, such as an autonomous semi-trailer truck. The region of interest can be identified by selecting one or more reference points and determining one or more positions of the one or more reference points on the image obtained from the camera. As an example, a location of two reference points may be 500 meters and 1000 meters in front of a location of autonomous vehicle, where the front of the autonomous vehicle is an area towards which the autonomous vehicle is being driven.
    Type: Grant
    Filed: June 23, 2020
    Date of Patent: June 28, 2022
    Assignee: TUSIMPLE, INC.
    Inventors: Lingting Ge, Siyuan Liu, Chenzhe Qian, Yijie Wang, Zehua Huang, Xiaodi Hou
  • Patent number: 11359932
    Abstract: Technique for performing camera calibration on a vehicle is disclosed. A method of performing camera calibration includes emitting, by a laser emitter located on a vehicle and pointed towards a road, a first laser pulse group towards a first location on a road and a second laser pulse group towards a second location on the road, where each laser pulse group includes one or more laser spots. For each laser pulse group: a first set of distances are calculated from a location of a laser receiver to the one or more laser spots, and a second set of distances are determined from an image obtained from a camera, where the second set of distances are from a location of the camera to the one or more laser spots. The method also includes determining two camera calibration parameters of the camera by solving two equations.
    Type: Grant
    Filed: October 28, 2020
    Date of Patent: June 14, 2022
    Assignee: TUSIMPLE, INC.
    Inventors: Xiaoling Han, Zehua Huang
  • Publication number: 20220182213
    Abstract: Devices, systems, and methods for hardware-based time synchronization for heterogenous sensors are described. An example method includes generating a plurality of input trigger pulses having a nominal pulse-per-second (PPS) rate, generating, based on timing information derived from the plurality of input trigger pulses, a plurality of output trigger pulses, and transmitting the plurality of output trigger pulses to a sensor of a plurality of sensors, wherein a frequency of the plurality of output trigger pulses corresponds to a target operating frequency of the sensor, wherein, in a case that a navigation system coupled to the synchronization unit is functioning correctly, the plurality of input trigger pulses is generated based on a nominal PPS signal from the navigation unit, and wherein, in a case that the navigation system is not functioning correctly, the plurality of input trigger pulses is generated based on a simulated clock source of the synchronization unit.
    Type: Application
    Filed: February 26, 2021
    Publication date: June 9, 2022
    Inventors: Xiaoling HAN, Junjun XIN, Lei NIE, Yue PAN, Yu ZHANG, Jade E. DAY, Zehua HUANG, Esayas NAIZGHI, Pingyuan JI, Zhiqi GONG