Patents Assigned to INSTITUTE
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Patent number: 11499284Abstract: A trough plate for constructing a locked polymer anti-seepage wall includes a plate body, a guide tube, a grouting pipe and an anti-blocking head. A construction method of the locked polymer anti-seepage wall includes the steps of positioning an Nth trough plate and then pressing the Nth trough plate into ground, wherein N is a natural number larger than and equal to 1; engaging an (N+1)th trough plate with the Nth trough plate, and then pressing the (N+1)th trough plate into the ground; connecting a grouting pipe of the Nth trough plate with a grouting machine, pulling out the Nth trough plate, and simultaneously grouting through the grouting pipe of the Nth trough plate by the grouting machine; and repeating the steps (B) and (C) till the locked polymer anti-seepage wall is completed, wherein the steps (B) and (C) are repeated every time, N is automatically increased by 1.Type: GrantFiled: May 29, 2021Date of Patent: November 15, 2022Assignees: Zhengzhou University, Henan Institute of Sun Yat-sen UniversityInventors: Fuming Wang, Chengchao Guo, Chaojie Wang, Mingsheng Shi, Peng Zhao, Yanhui Pan, Xianfeng Zhao, Binghan Xue, Yanjie Hao, Xijun Zhang, Yangyang Xia, Yingli Wang
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Patent number: 11503286Abstract: Disclosed herein are a video decoding method and apparatus and a video encoding method and apparatus, and more particularly, a method and apparatus for performing filtering in video encoding and decoding. An encoding apparatus may perform filtering on a target, and may generate filtering information indicating whether filtering has been performed on the target. Further, the encoding apparatus may generate a bitstream including filtering information. A decoding apparatus may determine, based on filtering information, whether to perform filtering on a target, and may perform filtering on the target. The decoding apparatus may receive filtering information from the encoding apparatus through a bitstream or may derive filtering information using additional information.Type: GrantFiled: November 28, 2017Date of Patent: November 15, 2022Assignees: Electronics and Telecommunications Research Institute, INDUSTRY-ACADEMIA COOPERATION GROUP OF SEJONG UNIVERSITYInventors: Sung-Chang Lim, Jung-Won Kang, Hyunsuk Ko, Jin-Ho Lee, Ha-Hyun Lee, Dong-San Jun, Seung-Hyun Cho, Hui-Yong Kim, Yung-Lyul Lee, Jun-Woo Choi, Jin-Soo Choi, Nam-Uk Kim, Myung-Jun Kim
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Patent number: 11500150Abstract: Provided is a waveguide photodetector including a semiconductor substrate, a first optical waveguide and a second optical waveguide, which are sequentially laminated on the semiconductor substrate, in which each of the first optical waveguide and the second optical waveguide includes a first portion and a second portion, and the first portion extends from the second portion in a first direction parallel to a top surface of the semiconductor substrate, a refractive index matching layer disposed on the second portion of the second optical waveguide, a clad layer disposed on the refractive index matching layer, and an absorber disposed between the refractive index matching layer and the clad layer. Here, the second optical waveguide has a first conductive-type, the clad layer has a second conductive-type opposite to the first conductive-type, and the refractive index matching layer includes a first semiconductor layer that is an intrinsic semiconductor layer.Type: GrantFiled: February 11, 2021Date of Patent: November 15, 2022Assignee: ELECTRONICS AND TELECOMMUNICATIONS RESEARCH INSTITUTEInventors: Joong-Seon Choe, Duk Jun Kim, Jong-Hoi Kim, Jonghyurk Park, Won Seok Han
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Patent number: 11499920Abstract: Systems and methods here may be used for automated capturing and analyzing spectrometer data of multiple sample gemstones on a stage, including mapping digital camera image data of samples, applying a Raman Probe to a first sample gemstone under evaluation on the stage, receiving spectrometer data of the sample gemstone from the probe, automatically moving the stage to a second sample, using the image data, and analyzing the other samples.Type: GrantFiled: March 12, 2021Date of Patent: November 15, 2022Assignee: Gemological Institute of America, Inc. (GIA)Inventors: Tsung-Han Tsai, Hiroshi Takahashi
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Patent number: 11502552Abstract: An RF lens includes a multitude of radiators adapted to transmit radio frequency electromagnetic EM waves whose phases are modulated so as to concentrate the radiated power in a small volume of space in order to power an electronic device positioned in that space. Accordingly, the waves emitted by the radiators are caused to interfere constructively at that space. The multitude of radiators are optionally formed in a one-dimensional or two-dimensional array. The electromagnetic waves radiated by the radiators have the same frequency but variable amplitudes.Type: GrantFiled: March 30, 2018Date of Patent: November 15, 2022Assignee: California Institute of TechnologyInventors: Kaushik Sengupta, Seyed Ali Hajimiri
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Patent number: 11501490Abstract: The embodiments disclosed herein describe vehicles, systems and methods for multi-resolution fusion of pseudo-LiDAR features. In one aspect, a method for multi-resolution fusion of pseudo-LiDAR features includes receiving image data from one or more image sensors, generating a point cloud from the image data, generating, from the point cloud, a first bird's eye view map having a first resolution, generating, from the point cloud, a second bird's eye view map having a second resolution, and generating a combined bird's eye view map by combining features of the first bird's eye view map with features from the second bird's eye view map.Type: GrantFiled: July 28, 2020Date of Patent: November 15, 2022Assignee: TOYOTA RESEARCH INSTITUTE, INC.Inventors: Victor Vaquero Gomez, Rares A. Ambrus, Vitor Guizilini, Adrien D. Gaidon
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Patent number: 11502657Abstract: A clock driver circuit, including: an input stage, a double-ended to single-ended conversion stage and a driver output stage connected in sequence. The input stage includes two mutually loaded differential amplifiers and a common mode negative feedback loop. The differential amplifiers are connected to a differential clock signal for amplification to generate a common mode voltage. The common mode feedback circuit is connected to an output end of the differential amplifiers to stabilize the output amplitude of the common mode voltage. The double-ended to single-ended conversion stage converts a differential sine clock signal output by the double-ended common mode voltage into a single-ended square wave clock signal. The driver output stage includes a multi-stage cascaded push-pull phase inverter to improve the drive capability of the square wave clock signal.Type: GrantFiled: July 25, 2018Date of Patent: November 15, 2022Assignee: NO. 24 RESEARCH INSTITUTE OF CHINA ELECTRONICS TECHNOLOGY GROUP CORPORATIONInventors: Xiaofeng Shen, Xingfa Huang, Liang Li, Xi Chen, Mingyuan Xu, Jian'an Wang, Dongbing Fu, Guangbing Chen
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Patent number: 11500088Abstract: A millimeter-wave real-time imaging based safety inspection system and safety inspection method. The safety inspection system includes a conveying device (10), a millimeter wave transceiver module (11), an antenna array (17, 18), a switch array (16a, 16b), a switch control unit (15a, 15b), a quadrature demodulation and data acquisition module (12), and an image display unit (13). By using an Inverse Synthetic Aperture Radar (ISAR) imaging principle, the millimeter-wave real-time imaging based safety inspection system performs real-time imaging on an object to be inspected when the object moves, so that not only the imaging speed is improved, but also the field of view is enlarged. A safety inspector can determine whether an inspected person carries dangerous goods by observing a three-dimensional diagram of the inspected person, thereby eliminating the inconvenience caused by back-and-forth movement of a safety inspection device used by the safety inspector around the inspected person.Type: GrantFiled: September 4, 2017Date of Patent: November 15, 2022Assignees: SHENZHEN VICTOOTH TERAHERTZ TECHNOLOGY CO., LTD., SHENZHEN INSTITUTE OF TERAHERTZ TECHNOLOGY AND INNOVATIONInventors: Chunchao Qi, Chengyan Jia, Yupeng Li
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Patent number: 11497821Abstract: The present disclosure relates to a method for labeling a biomolecule, a fluorescent dye, or a nanoparticle compound with a radioisotope, comprising: (a) providing a cyclooctyne compound represented by the following formula (I) comprising the biomolecule, the fluorescent dye, or the nanoparticle compound which is bound to a cyclooctyne moiety of the cyclooctyne compound; and (b) reacting the cyclooctyne compound of formula (I) with a quinone compound represented by the following formula (II) to give a biomolecule, a fluorescent dye, or a nanoparticle compound labeled with the radioisotope: in formula (I), (Z is the biomolecule, the fluorescent dye, or the nanoparticle compound) in formula (II), (b is 0 or an integer from 1 to 10; L is CH2, —COO—, or —CONH—; M is the radioisotope).Type: GrantFiled: June 10, 2020Date of Patent: November 15, 2022Assignee: Korea Atomic Energy Research InstituteInventors: Sang Hyun Park, Sajid Mushtaq, Dae Seong Choi
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Patent number: 11497829Abstract: The present invention relates to a method for manufacturing a support for regenerating core-shell structured hard tissue and a support for regenerating core-shell structured hard tissue manufactured thereby, wherein the support may further comprise bio-functional materials, such as cells, in a core-shell structure. The method for manufacturing a support for regenerating core-shell structured hard tissue according to the present invention has an effect of manufacturing a support for regenerating core-shell structured hard tissue by a method by which a 3-dimensional structure is prepared by a layer manufacturing process through an extrusion container having a double nozzle. In addition, the support can be manufactured at room temperature, thereby having an effect of containing cells or various bio-functional materials.Type: GrantFiled: April 25, 2016Date of Patent: November 15, 2022Assignee: KOREA INSTITUTE OF MACHINERY AND MATERIALSInventors: Hui Suk Yun, Naren Raja, Jong Man Lee
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Patent number: 11499234Abstract: In some embodiments, a method of forming a structure includes: forming a liquid oxide material at a low temperature by dissolving fumed nanoparticles in a liquid hydrate of a silicate or an aluminate; applying the liquid oxide material on a substrate; and at a low temperature, curing the liquid oxide material to evolve gaseous water, leaving structural silicate glass.Type: GrantFiled: March 11, 2020Date of Patent: November 15, 2022Assignee: Massachusetts Institute of TechnologyInventors: Melissa A. Smith, Bradley P. Duncan
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Patent number: 11498250Abstract: A method for the design, manufacture, and assembly of modular lattice structures composed of cuboctahedron unit cells.Type: GrantFiled: November 19, 2020Date of Patent: November 15, 2022Assignees: Massachusetts Institute of Technology, United States Government as represented by The Administrator of NASAInventors: Benjamin Jenett, Neil Gershenfeld, Kenneth Cheung, Christine Gregg
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Patent number: 11499638Abstract: A longitudinal translatable seal includes a first compartment extending in a longitudinal direction; a second compartment extending in the longitudinal direction forming a sealing surface with the first compartment; and a carriage translatable longitudinally with respect to the sealing surface, and a port in the carriage to fluidly connect a first side of the seal with a second side of the seal.Type: GrantFiled: December 20, 2019Date of Patent: November 15, 2022Assignee: Southwest Research InstituteInventors: Glynn R. Bartlett, Cody E. Bressler
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Patent number: 11502928Abstract: A fuzz testing apparatus transmits a plurality of packets to the device under test (DUT), and calculates a probability of abnormal state, a normal response time and an abnormal-state-processing time of the DUT for the packets. Then, the fuzz testing apparatus estimates a maximum quantity of packets that can be sent to the DUT according to the probability of abnormal state the normal response time and the abnormal-state-processing time corresponding to the standby time of the DUT. Finally, the fuzz testing apparatus determines a plurality of test packets from a plurality of candidate test packets according to the maximum quantity of packets.Type: GrantFiled: December 8, 2020Date of Patent: November 15, 2022Assignee: INSTITUTE FOR INFORMATION INDUSTRYInventors: Pei-Yi Lin, Chih-Wei Chen, Chia-Wei Tien, Chin-Wei Tien
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Patent number: 11498962Abstract: The present invention relates to mouse antibodies that bind to angiopoietin-2 (Ang2), humanized anti-Ang2 antibodies derived therefrom, and the use thereof. The anti-Ang2 antibodies have a dual function of activating the Tie2 receptor together with neutralizing Ang2. The anti-Ang2 antibodies show the property of normalizing abnormal and pathological blood vessels, and thus exhibits therapeutic efficacy against various diseases and disorders associated with abnormal blood vessels. The present invention further provides an angiogenesis inhibitor and a composition for treatment of diseases associated with abnormal Ang2 expression and Tie2 dysregulation, which comprise the antibody as an active ingredient, and a composition for diagnosing diseases associated with Ang2 inhibition and Tie2 activation, which comprises the antibody.Type: GrantFiled: August 17, 2020Date of Patent: November 15, 2022Assignees: Institute for Basic Science, Korea Advanced Institute of Science and TechnologyInventors: Gou Young Koh, Jeomil Bae, Mi Jeong Kim, Jin-Sung Park, Su Jin Seo, Jaeryung Kim, Jang Ryul Park, Pilhan Kim, Wangyuhl Oh
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Patent number: 11498965Abstract: The present invention relates to an anti-CD3 antibody and a pharmaceutical composition for cancer treatment comprising same. The antibody according to the present invention has high affinity and specificity for CD3 and thus can be effectively used in cancer prevention or treatment.Type: GrantFiled: October 22, 2018Date of Patent: November 15, 2022Assignees: GREEN CROSS CORPORATION, MOGAM INSTITUTE FOR BIOMEDICAL RESEARCHInventors: Ki Su Kim, Jun Hong Jeong, Ae Rin Yoon, Eun Jung Song, Hye Ji Choi, Ok Jae Lim, Yun Jung Lee, Hyung Kwon Lim, Jong Wha Won
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Patent number: 11498982Abstract: A method for concentrating rubber emulsion and a product prepared by the method are provided, the method includes: a concentrated latex is obtained by separating a superabsorbent resin added in advance into a rubber emulsion with a solid content of 0.01-70% after stirring and concentrating the resin-added rubber emulsion. The method requires simple equipment and consumes less energy, and the prepared polymer emulsion has a solid content up to 76%; the superabsorbent resin adopted herein is reusable after drying, which therefore effectively reduces the production cost; natural latex concentrated by the method has rather high yields of dry rubber and little wastewater production; products prepared from the concentrated natural latex have excellent mechanical property, aging resistance and adhesive property; and concentrating natural latex according to this method does not require advance agglomeration, which reduces the production procedures and improves the production efficiency significantly.Type: GrantFiled: December 15, 2021Date of Patent: November 15, 2022Assignee: AGRICULTURAL PRODUCT PROCESSING RESEARCH INSTITUTE, CHINESE ACADEMY OF TROPICAL AGRICULTURAL SCIENCESInventors: Jinlong Tao, Na Kong, Jizhen Zhang, Zhifeng Li, Jihua Li, Zirong Luo, Mingzhe Lv, Pengfei Zhao
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Patent number: 11502232Abstract: A pixel structure including a substrate, a first conductor, a second conductor, and a plurality of dies is provided. The first conductor is disposed on the substrate and includes a plurality of first body portions extending along a first direction, a plurality of first branch portions extending along a second direction, and a plurality of second branch portions extending along the first direction. The second conductor is disposed on the substrate and includes a plurality of second body portions extending along the second direction and a plurality of third branch portions extending along the first direction. The die includes two electrodes, wherein the first branch portions are connected between the first body portions and the second branch portions, and the two electrodes are respectively connected to the first branch portions and the second body portions or respectively connected to the second branch portions and the third branch portions.Type: GrantFiled: July 14, 2020Date of Patent: November 15, 2022Assignee: Industrial Technology Research InstituteInventors: Ming-Hsien Wu, Yao-Jun Tsai
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Patent number: 11501211Abstract: The present disclosure describes methods, devices, and non-transitory computer readable storage medium for managing lifecycle of a knowledge base (KB) in chatbot systems. The method includes receiving an update request and updating a current-version KB as a new current-version KB. The method also includes receiving a first test request from a knowledge point (KP) operator and determining whether the new current-version KB passes a first test; and in response to the determination that the new current-version KB passes the first test, submitting the new current-version KB as a new submit-version KB. The method further includes receiving a second test request from a KP manager and determining whether the new submit-version KB passes a second test; and in response to the determination that the new submit-version KB passes the second test, storing an original production-version KB as a pervious-version KB and submitting the new submit-version KB as a new production-version KB.Type: GrantFiled: March 13, 2020Date of Patent: November 15, 2022Assignee: HONG KONG APPLIED SCIENCE AND TECHNOLOGY RESEARCH INSTITUTE CO., LTDInventors: Chi Kong Wu, Ka Wing Ho
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Patent number: 11501429Abstract: Disclosed herein are methods of utilizing machine learning methods to analyze microscope images of populations of cells.Type: GrantFiled: July 19, 2018Date of Patent: November 15, 2022Assignee: Altius Institute for Biomedical SciencesInventors: John A. Stamatoyannopoulos, Shreeram Akilesh, Alexander Muratov, Wouter Meuleman, William Kerwin