Patents by Inventor Haoming WANG
Haoming WANG 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).
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Publication number: 20260212653Abstract: Embodiments of the disclosure relate to a method, an apparatus, a device and a computer readable storage medium for information processing. The method provided by the disclosure includes: generating, in response to receiving an input message, a first instruction associated with a target interface with a model and based on the input message and the first image of the target interface; triggering execution of the first instruction in the target interface to determine a second image of the target interface; generating at least one subsequent instruction associated with the target interface with the model and based on the second image and the input message; and triggering execution of at least one subsequent instruction in the target interface.Type: ApplicationFiled: January 16, 2026Publication date: July 23, 2026Inventors: Yujia QIN, Haoming WANG, Junjie FANG, Yining YE, Shihao LIANG, Shizuo TIAN, Junda ZHANG, Jiahao LI, Qianli MA, Longxiang LIU, Yunxin LI, Shijue HUANG, Wanjun ZHONG
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Publication number: 20250389189Abstract: A top-down sequential-building construction method for deep and large vertical shaft cavern groups is provided. The construction method includes the following steps. A preparation is made for a construction. A vertical shaft locking beam is constructed. A vertical shaft is constructed. A post-construction maintenance is performed. The vertical shaft is constructed through a staged construction, which includes the following steps: S1, constructing from a vertical shaft surface to a contact air channel elevation; S2, constructing a contact air channel; S3, constructing from the contact air channel elevation to a vertical shaft bottom. Both constructing from the vertical shaft surface to the contact air channel elevation and from the contact air channel elevation to the vertical shaft bottom include constructing a lining structure from bottom to top.Type: ApplicationFiled: March 27, 2025Publication date: December 25, 2025Applicants: CHINA TIESIJU CIVIL ENGINEERING GROUP CO., LTD., THE SEVENTH ENGINEERING CO.LTD OF CHINA TIESIJU CIVIL ENGINEERING GROUP, Southwest Jiaotong UniversityInventors: Aiwu LIU, Keyi WANG, Yong Wang, Huasheng XU, Pengtao CHEN, Junru ZHANG, Xiaoxiao LV, Haoming Wang, Guang CHEN, Xianming Lin, Dachuang YAO, Wenyin CHEN, Shengtao WANG, Wei ZHANG
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Patent number: 12385966Abstract: The present disclosure provides a defect detection method and apparatus for a cushion layer of a cable, a device, and a storage medium. The method includes: obtaining specification parameters of a corrugated sheath of a to-be-detected cable, calculating a first volume of a cushion layer without deformation and a second volume of a deformed portion of the cushion layer when the cushion layer is deformed under stress, and calculating a stressed-state deformation ratio of the cushion layer based on the first volume and the second volume; obtaining a voltage, a current, an electrode area, an electrode distance, and an initial electrode distance of the cushion layer when the stressed-state deformation ratio is reached, and calculating volume resistivity of the cushion layer; and comparing the volume resistivity with a preset evaluation parameter to obtain a defect detection result of the cushion layer.Type: GrantFiled: August 9, 2022Date of Patent: August 12, 2025Assignees: Electric Power Science & Research Institute of State Grid Tianjin Electric Power Company, State Grid Tianjin Electric Power CompanyInventors: Shengchen Fang, Yang Yu, Weibo Li, Pengxian Song, Chun He, Chi Zhang, Qinghua Tang, Longji Li, Chunhui Zhang, Songyuan Li, Fei Lu, Lin Li, Lei Yang, Xiaoguang Wang, Xuliang Zhu, Minghui Duan, Haoming Wang, Wei Fan
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Publication number: 20240404654Abstract: A dynamic monitoring method for a rebound rate of wet spraying shotcrete includes converting a set of laser points obtained from scanning to a rock wall scanning surface relative coordinate system to form an initial geometric model of the rock face, calculating the initial rock wall volume, coarse spraying and fine spraying the shotcrete and performing the three-dimensional modeling calculations, and calculating the coarse spray rebound rate and the fine spray rebound rate, thereby solving the problem that at present, the estimated idealized data does not match the actual usage data, not only it is insufficient in quantification, but also the dynamic rebound rate of the wet spraying process is not understood, in which the rebound rate is inaccurately estimated, making it difficult to guide the adjustment of the shotcrete formula and the adjustment of the spray posture and speed, and thus the goal of process optimization cannot be achieved.Type: ApplicationFiled: February 1, 2024Publication date: December 5, 2024Applicants: CHINA TIESIJU CIVIL ENGINEERING GROUP CO., LTD., THE SEVENTH ENGINEERING CO.LTD OF CHINA TIESIJU CIVIL ENGINEERING GROUP, Wuhan Institute of Geotechnical Mechanics, Chinese Academy of SciencesInventors: Haoming Wang, Chengyuan Zhang, Yanwei Yang, Yong Wang, Jun Wang, Jianbin Yan, Haibo Wang, Xinghuo XU, Feng Ling, Zhipeng Li, Xianming Lin, Wei Liu, Yuanyuan Yang
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Publication number: 20240241168Abstract: The present disclosure provides a defect detection method and apparatus for a cushion layer of a cable, a device, and a storage medium. The method includes: obtaining specification parameters of a corrugated sheath of a to-be-detected cable, calculating a first volume of a cushion layer without deformation and a second volume of a deformed portion of the cushion layer when the cushion layer is deformed under stress, and calculating a stressed-state deformation ratio of the cushion layer based on the first volume and the second volume; obtaining a voltage, a current, an electrode area, an electrode distance, and an initial electrode distance of the cushion layer when the stressed-state deformation ratio is reached, and calculating volume resistivity of the cushion layer; and comparing the volume resistivity with a preset evaluation parameter to obtain a defect detection result of the cushion layer.Type: ApplicationFiled: August 9, 2022Publication date: July 18, 2024Inventors: Shengchen Fang, Yang Yu, Weibo Li, Pengxian Song, Chun He, Chi Zhang, Qinghua Tang, Longji Li, Chunhui Zhang, Songyuan Li, Fei Lu, Lin Li, Lei Yang, Xiaoguang Wang, Xuliang Zhu, Minghui Duan, Haoming Wang, Wei Fan
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Patent number: 12019044Abstract: Defect detection method for a semi-conducting bedding layer of a power cable includes: obtaining a length parameter, a corrugation pitch parameter, radius parameters, and a thickness parameter of a power cable; obtaining a first resistance value between a shield and a corrugated sheath, and calculating a second resistance value of the shield based on the length parameter and the corrugation pitch parameter; calculating a radial resistance value of the semi-conducting bedding layer based on the first resistance value and the second resistance value; determining a contact angle of a critical point of contact between the corrugated sheath and the semi-conducting bedding layer based on the radius parameters and the thickness parameter; calculating volume resistivity of the semi-conducting bedding layer based on the radial resistance value and the contact angle; and comparing the volume resistivity with a preset evaluation parameter to obtain a defect detection result of the semi-conducting bedding layer.Type: GrantFiled: January 21, 2022Date of Patent: June 25, 2024Assignees: Electric Power Science & Research Institute of State Grid Tianjin Electric Power Company, State Grid Tianjin Electric Power CompanyInventors: Shengchen Fang, Pengxian Song, Xu Li, Yang Yu, Mingzheng Zhu, Zhengzheng Meng, Fengzheng Zhou, Xiaohui Zhu, Lei Yang, Jun Zhang, Chun He, Nan Wang, Ke Xu, Qinghua Tang, Chi Zhang, Haoming Wang, Longji Li, Cheng Sun, Wei Fan
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Publication number: 20240175839Abstract: Defect detection method for a semi-conducting bedding layer of a power cable includes: obtaining a length parameter, a corrugation pitch parameter, radius parameters, and a thickness parameter of a power cable; obtaining a first resistance value between a shield and a corrugated sheath, and calculating a second resistance value of the shield based on the length parameter and the corrugation pitch parameter; calculating a radial resistance value of the semi-conducting bedding layer based on the first resistance value and the second resistance value; determining a contact angle of a critical point of contact between the corrugated sheath and the semi-conducting bedding layer based on the radius parameters and the thickness parameter; calculating volume resistivity of the semi-conducting bedding layer based on the radial resistance value and the contact angle; and comparing the volume resistivity with a preset evaluation parameter to obtain a defect detection result of the semi-conducting bedding layer.Type: ApplicationFiled: January 21, 2022Publication date: May 30, 2024Inventors: Shengchen Fang, Pengxian Song, Xu Li, Yang Yu, Mingzheng Zhu, Zhengzheng Meng, Fengzheng Zhou, Xiaohui Zhu, Lei Yang, Jun Zhang, Chun He, Nan Wang, Ke Xu, Qinghua Tang, Chi Zhang, Haoming Wang, Longji Li, Cheng Sun, Wei Fan
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Patent number: 9243725Abstract: A glass-fiber reinforced plastic pipe comprises a pipe body and an inner core fixedly provided on an inner wall of the pipe body, wherein an upper end of the inner core is lower than an upper end of the pipe body, so that a first heat-insulating space is formed between the upper ends of the inner core and the pipe body, and a lower end of the inner core is higher than a lower end of the pipe body, so that a second heat-insulating space is formed between the lower ends of the inner core and the pipe body. Due to the inner core as a reinforce structure, the shear resistance strength of the glass-fiber reinforced plastic pipe is improved without increasing the thickness of the pipe wall, and furthermore the mechanical performance of a supporting device of the cryogenic pressure vessel is improved.Type: GrantFiled: January 10, 2013Date of Patent: January 26, 2016Assignees: ZHANGJIAGANG CIMC SANCTUM CRYOGENIX EQUIPMENT CO., LTD., CHINA INTERNATIONAL MARINE CONTAINERS (GROUP) LTD., CIMC ENRIC INVESTMENT HOLDINGS (SHENZHEN) CO., LTD.Inventors: Jia Lu, Gencang Liu, Haoming Wang, Jie Gao, Dongjin Liu, Xiaofang Wu
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Patent number: 8800805Abstract: A high vacuum container includes an inner container body, an outer container body, a first group of supporting devices and a second group of supporting devices. Each group of supporting devices includes four supporting assemblies, and two supporting assemblies are disposed at the upper portion of the high vacuum container, and the other two are disposed at the lower portion of the high vacuum container. Each supporting assembly includes a base plate welded at outer surface of the inner container body and a heat insulating pipe extending along a radial direction of the high vacuum container, one end of the heat insulating pipe abutting against the base plate. Each supporting assembly at the lower portion further includes a fixing element, and each fixing element partly is partly inserted into the outer container body through the opening on the outer container body.Type: GrantFiled: January 8, 2013Date of Patent: August 12, 2014Assignees: China International Marine Containers (Group) Ltd., Zhangjiagang CIMC Sanctum Cryogenic Equipment Co., Ltd.Inventors: Jie Gao, Wei Wei, Hongwei Liu, Haoming Wang, Jia Lu, Si Wang, Sen Yao
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Publication number: 20130228489Abstract: A high vacuum container includes an inner container body, an outer container body, a first group of supporting devices and a second group of supporting devices. Each group of supporting devices includes four supporting assemblies, and two supporting assemblies are disposed at the upper portion of the high vacuum container, and the other two are disposed at the lower portion of the high vacuum container. Each supporting assembly includes a base plate welded at outer surface of the inner container body and a heat insulating pipe extending along a radial direction of the high vacuum container, one end of the heat insulating pipe abutting against the base plate. Each supporting assembly at the lower portion further includes a fixing element, and each fixing element partly is partly inserted into the outer container body through the opening on the outer container body.Type: ApplicationFiled: January 8, 2013Publication date: September 5, 2013Applicants: CHINA INTERNATIONAL MARINE CONTAINERS (GROUP) LTD., Zhangjiagang CIMC Sanctum Cryogenic Equipment Co., Ltd.Inventors: Jie GAO, Wei WEI, Hongwei LIU, Haoming WANG, Jia LU, Si WANG, Sen YAO