Patents by Inventor Xinbin Li

Xinbin Li 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: 20260259153
    Abstract: A calibration method and apparatus for an imaging device, and an imaging device are provided. The method includes: calculating a first theoretical intersection line according to a theoretical target point position of a radiation source of the imaging device, a theoretical detection position of a detector, and a phantom position of a calibration phantom; determining first detection projection information for the calibration phantom based on the first theoretical intersection line, an attenuation coefficient of a radiation emitted by the radiation source in the calibration phantom, and a radiation energy spectrum distribution of the radiation source in the imaging device; and adjusting a parameter of the imaging device by using difference information between the first detection projection information and second detection projection information obtained by scanning the calibration phantom with the imaging device, so as to calibrate the imaging device and obtain a calibrated target parameter.
    Type: Application
    Filed: July 26, 2023
    Publication date: September 3, 2026
    Inventors: Li ZHANG, Zhiqiang CHEN, Yunda SUN, Xinbin LI, Le SHEN, Zhenhua ZHAO, Hongkai YANG
  • Publication number: 20250045984
    Abstract: A calibration assembly, including: a base; and a plurality of calibration wires dispersedly connected to the base. An absorption capacity of the calibration wire for X rays is greater than that of the base for X rays. Through a specific structure design of a plurality of calibration wires in the calibration assembly, the calibration wires are dispersedly connected to the base, and taking advantage of the characteristics that the absorption capacity of the calibration wire for X rays is greater than that of the base for X rays, the calibration wires are applied to the calibration phantom, and the calibration phantom is scanned in the scanning system. By continuously adjusting the geometric parameter values in the imaging method, the optimal geometric parameter values that are closest to the real scanning system structure may be obtained, thereby improving the imaging effect of the scanning system.
    Type: Application
    Filed: October 24, 2022
    Publication date: February 6, 2025
    Inventors: Li ZHANG, Zhiqiang CHEN, Yunda SUN, Xinbin LI, Zhenhua ZHAO, Tiao ZHAO, Xin JIN
  • Patent number: 9291053
    Abstract: A self-moving tunnel support canopy includes front arch frame, rear arch frame, forward jack, and support jack disposed under the front arch frame. The front arch frame has front arch beams and front longitudinal beams longitudinally disposed along arch upper surfaces of front arch beams and coupled to all the front arch beams. The rear arch frame has rear arch beams and rear longitudinal beams longitudinally disposed along arch upper surfaces of the rear arch beams and coupled to all the rear arch beams. The front longitudinal beams and the rear arch beams are spacedly disposed, and a spacing is configured between the front arch beam and a front-adjacent rear arch beam. One end is coupled to the front arch frame, and the other end of the forward jack is coupled to the rear arch frame. The front arch beam and the rear arch beam are both arch-shaped beams.
    Type: Grant
    Filed: June 26, 2012
    Date of Patent: March 22, 2016
    Inventor: Xinbin Li
  • Publication number: 20150086272
    Abstract: A self-moving tunnel support canopy includes front arch frame, rear arch frame, forward jack, and support jack disposed under the front arch frame. The front arch frame has front arch beams and front longitudinal beams longitudinally disposed along arch upper surfaces of front arch beams and coupled to all the front arch beams. The rear arch frame has rear arch beams and rear longitudinal beams longitudinally disposed along arch upper surfaces of the rear arch beams and coupled to all the rear arch beams. The front longitudinal beams and the rear arch beams are spacedly disposed, and a spacing is configured between the front arch beam and a front-adjacent rear arch beam. One end is coupled to the front arch frame, and the other end of the forward jack is coupled to the rear arch frame. The front arch beam and the rear arch beam are both arch-shaped beams.
    Type: Application
    Filed: June 26, 2012
    Publication date: March 26, 2015
    Inventor: Xinbin Li