Patents by Inventor Yunpeng Zhang
Yunpeng Zhang 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: 20230350456Abstract: A display panel includes an array substrate, a composite functional layer, a first adhesive layer and a cover plate. The composite functional layer is located on a side of the light-emitting layer away from the base substrate. A through hole penetrating through the composite functional layer and the array substrate is formed on the array substrate and the composite functional layer. The array substrate includes a non-display area surrounding the through hole. The composite functional layer includes a first shading layer, and the orthographic projection of the first shading layer on the array substrate is located in the non-display area of the array substrate. The first adhesive layer is located on a side of the composite functional layer away from the base substrate. The cover plate is located on a side of the first adhesive layer away from the base substrate.Type: ApplicationFiled: November 17, 2021Publication date: November 2, 2023Applicants: Chengdu BOE Optoelectronics Technology Co., Ltd., BOE Technology Group Co., Ltd.Inventors: Zuojia WANG, Liqiang CHEN, Yongchun JIANG, Jiafan SHI, Qingsong WANG, Chao ZHOU, Xin LAI, Yunpeng ZHANG, Xingjian XU
-
Publication number: 20230261989Abstract: According to an embodiment, a node comprises one or more processors operable to execute instructions to cause the node to perform operations that comprise receiving a packet from a first node associated with an SD-WAN domain. The packet comprises a header indicating a TLOC associated with a second node to send the packet, the second node associated with an SR domain. The operations comprise determining that the TLOC corresponds to a virtual TLOC used in the SD-WAN domain to identify the second node that is in the SR domain and, in response, determining a second node identifier used in the SR domain to identify the second node. The operations further comprise preparing the packet to be communicated via the SR domain. Preparing the packet comprises including the second node identifier in the packet. The operations further comprise sending the packet comprising the second node identifier to the second node.Type: ApplicationFiled: February 17, 2022Publication date: August 17, 2023Inventors: Lianxiang Wang, Zhiyong Fang, Xiaorong Wang, Bin Shi, Jianda Liu, Yunpeng Zhang
-
Publication number: 20220393085Abstract: The present disclosure provides a display panel, a manufacturing method thereof and a display device. The display panel includes: a base substrate including a display region, a wiring region surrounding the display region and a bonding region located at a side of the display region; a light-emitting element arranged in the display region and including a cathode; and a first line and at least one second line in the wiring region, the first line being coupled to the cathode of the light-emitting element, two ends of the second line being coupled to the first line in the bonding region, and the first line and the second line being coupled through at least two via holes at an opposite side of the bonding region.Type: ApplicationFiled: June 10, 2021Publication date: December 8, 2022Inventors: Rui CHENG, Yunpeng ZHANG, Lele SUN
-
Patent number: 11402511Abstract: A spectrally-resolved Raman water lidar, including: a transmitter unit, a receiver unit, and a data acquisition and control unit. The transmitter unit includes a seeder, a solid Neodymium-doped Yttrium Aluminum Garnet (Nd:YAG) laser, a beam expander, and a first reflecting mirror to emit a 354.8-nm laser beam. The receiver unit includes a telescope, an iris, a collimator, a second reflecting mirror, a first bandpass filter, a beam splitter, a narrow-band interference filter, a third lens, a first detector, a second bandpass filter, a coupler and a home-made dual-grating polychromator to enable simultaneous profiling of backscattered Raman spectrum signals from water vapor, water droplets and ice crystals as well as aerosol fluorescence in the atmosphere. The data acquisition and control unit includes a computer to store the acquired data and guarantee an automatic operation of the lidar system through a time-sequence circuit.Type: GrantFiled: October 11, 2018Date of Patent: August 2, 2022Assignee: WUHAN UNIVERSITYInventors: Fuchao Liu, Fan Yi, Yunpeng Zhang, Changming Yu, Ying Tan, Yujin He, Miao Weng, Yang Yi
-
Patent number: 11269706Abstract: A system for alarm correlation and aggregation. The system includes a computing device. The computing device has a process and a storage device storing computer executable code. The computer executable code, when executed at the processor, is configured to: provide a plurality of alarms triggered by components of the system; provide aggregation patterns; perform iteratively until a criterion is met: generating itemsets from the alarms using the aggregation patterns, computing a new aggregation pattern from the generated itemsets using frequent itemset mining, and updating the aggregation pattern using the new aggregation pattern to obtain updated aggregation patterns; and aggregate the alarms using the updated aggregation patterns to obtain aggregated alarms.Type: GrantFiled: July 15, 2020Date of Patent: March 8, 2022Assignees: Beijing Wodong Tianjun Information Technology Co., Ltd., JD.com American Technologies CorporationInventors: Min Li, Huasong Shan, Yuan Chen, Yunpeng Zhang, Haifeng Liu, Xiaofeng He
-
Publication number: 20220019497Abstract: A system for alarm correlation and aggregation. The system includes a computing device. The computing device has a process and a storage device storing computer executable code. The computer executable code, when executed at the processor, is configured to: provide a plurality of alarms triggered by components of the system; provide aggregation patterns; perform iteratively until a criterion is met: generating itemsets from the alarms using the aggregation patterns, computing a new aggregation pattern from the generated itemsets using frequent itemset mining, and updating the aggregation pattern using the new aggregation pattern to obtain updated aggregation patterns; and aggregate the alarms using the updated aggregation patterns to obtain aggregated alarms.Type: ApplicationFiled: July 15, 2020Publication date: January 20, 2022Inventors: Min Li, Huasong Shan, Yuan Chen, Yunpeng Zhang, Haifeng Liu, Xiaofeng He
-
Patent number: 11093550Abstract: Yield criteria of a material are estimated by obtaining test data representing anisotropic material properties of the material and performing an iterative evolutionary search to identify parameters of a function descriptive of the yield criteria of the material. The evolutionary search includes determining an error value based on a first data point of a first population, where the first data point representing potential values of the parameters. The evolutionary search also includes performing an evolutionary process to generate a second data point as a candidate for replacing the first data point in a second population and determining a second error value based on the second data point. Either the first data point or the second data point is selected for inclusion in the second population. Output data is generated based on estimated values of the parameters that are identified by the evolutionary search.Type: GrantFiled: July 1, 2019Date of Patent: August 17, 2021Assignee: THE BOEING COMPANYInventors: Yunpeng Zhang, Dorival de Moraes Pedroso, Andrew Jon Eugene Stephan, Michael Charles Elford
-
Publication number: 20210004412Abstract: Yield criteria of a material are estimated by obtaining test data representing anisotropic material properties of the material and performing an iterative evolutionary search to identify parameters of a function descriptive of the yield criteria of the material. The evolutionary search includes determining an error value based on a first data point of a first population, where the first data point representing potential values of the parameters. The evolutionary search also includes performing an evolutionary process to generate a second data point as a candidate for replacing the first data point in a second population and determining a second error value based on the second data point. Either the first data point or the second data point is selected for inclusion in the second population. Output data is generated based on estimated values of the parameters that are identified by the evolutionary search.Type: ApplicationFiled: July 1, 2019Publication date: January 7, 2021Inventors: Yunpeng Zhang, Dorival de Moraes Pedroso, Andrew Jon Eugene Stephan, Michael Charles Elford
-
Patent number: 10620318Abstract: A single-line-extracted pure rotational Raman lidar system, including: a transmitter unit configured to emit extremely narrow-band laser light that is guided into atmosphere zenithward; a receiver unit configured to collect backscattered signals from the atmosphere; and a data acquisition and control unit configured to deliver data and guarantee automatic operation of the lidar system orderly. The transmitter unit employs a powerful injection-seeded Nd: YAG laser to emit 532.23 nm laser beam with a pulse energy of approximately 800 mJ, a repetition rate of 30 Hz and linewidth of <0.006 cm?1. The lidar system has an optical bandwidth of approximately 30 pm for the two Raman channels and an optical bandwidth of 0.3 nm for an elastic channel, as well as a field of view of approximately 0.4 mrad. The two Raman channels extract the N2 anti-Stokes pure rotational Raman line signals with J=6 and 16, respectively.Type: GrantFiled: May 21, 2017Date of Patent: April 14, 2020Assignee: WUHAN UNIVERSITYInventors: Fan Yi, Miao Weng, Fuchao Liu, Yunpeng Zhang, Changming Yu, Yujin He, Ying Tan, Yang Yi, Xiangliang Pan
-
Publication number: 20190041525Abstract: A spectrally-resolved Raman water lidar, including: a transmitter unit, a receiver unit, and a data acquisition and control unit. The transmitter unit includes a seeder, a solid Neodymium-doped Yttrium Aluminum Garnet (Nd: YAG) laser, a beam expander, and a first reflecting mirror to emit a 354.8-nm laser beam. The receiver unit includes a telescope, an iris, a collimator, a second reflecting mirror, a first bandpass filter, a beam splitter, a narrow-band interference filter, a third lens, a first detector, a second bandpass filter, a coupler and a home-made dual-grating polychromator to enable simultaneous profiling of backscattered Raman spectrum signals from water vapor, water droplets and ice crystals as well as aerosol fluorescence in the atmosphere. The data acquisition and control unit includes a computer to store the acquired data and guarantee an automatic operation of the lidar system through a time-sequence circuit.Type: ApplicationFiled: October 11, 2018Publication date: February 7, 2019Inventors: Fuchao LIU, Fan YI, Yunpeng ZHANG, Changming YU, Ying TAN, Yujin HE, Miao WENG, Yang YI
-
Publication number: 20180188376Abstract: A single-line-extracted pure rotational Raman lidar system, including: a transmitter unit configured to emit extremely narrow-band laser light that is guided into atmosphere zenithward; a receiver unit configured to collect backscattered signals from the atmosphere; and a data acquisition and control unit configured to deliver data and guarantee automatic operation of the lidar system orderly. The transmitter unit employs a powerful injection-seeded Nd: YAG laser to emit 532.23 nm laser beam with a pulse energy of approximately 800 mJ, a repetition rate of 30 Hz and linewidth of <0.006 cm?1. The lidar system has an optical bandwidth of approximately 30 pm for the two Raman channels and an optical bandwidth of 0.3 nm for an elastic channel, as well as a field of view of approximately 0.4 mrad. The two Raman channels extract the N2 anti-Stokes pure rotational Raman line signals with J=6 and 16, respectively.Type: ApplicationFiled: May 21, 2017Publication date: July 5, 2018Inventors: Fan YI, Miao WENG, Fuchao LIU, Yunpeng ZHANG, Changming YU, Yujin HE, Ying TAN, Yang YI, Xiangliang PAN
-
Patent number: 9912598Abstract: A method is provided in one embodiment and includes receiving at a network element an encapsulated packet and determining whether both an ECMP/LAG Existing (“ele”) flag and an Entropy Label Capability (“elc”) flag are set for an egress node of the packet in a Label Distribution Protocol (“LDP”) database of the network element. If both the ele and elc flags are set for the egress node of the packet in the LDP database, the method further includes determining whether the network element is an ingress node for the packet and, if the network element is the ingress node for the packet, pushing an Entropy Label (“EL”) and an Entropy Label Indicator (“ELI”) onto an MPLS stack of the packet.Type: GrantFiled: June 16, 2016Date of Patent: March 6, 2018Assignee: Cisco Technology, Inc.Inventors: Danmu Wu, Jianda Liu, Yunpeng Zhang, Feng Cai
-
Publication number: 20170366461Abstract: A method is provided in one embodiment and includes receiving at a network element an encapsulated packet and determining whether both an ECMP/LAG Existing (“ele”) flag and an Entropy Label Capability (“elc”) flag are set for an egress node of the packet in a Label Distribution Protocol (“LDP”) database of the network element. If both the ele and elc flags are set for the egress node of the packet in the LDP database, the method further includes determining whether the network element is an ingress node for the packet and, if the network element is the ingress node for the packet, pushing an Entropy Label (“EL”) and an Entropy Label Indicator (“ELI”) onto an MPLS stack of the packet.Type: ApplicationFiled: June 16, 2016Publication date: December 21, 2017Applicant: CISCO TECHNOLOGY, INC.Inventors: Danmu Wu, Jianda Liu, Yunpeng Zhang, Feng Cai
-
Patent number: D740840Type: GrantFiled: December 7, 2012Date of Patent: October 13, 2015Assignee: Eaton CorporationInventors: Yunpeng Zhang, Bin Zhou, Lei Lei, Bin Gao
-
Patent number: D801357Type: GrantFiled: October 12, 2015Date of Patent: October 31, 2017Assignee: Eaton CorporationInventors: Yunpeng Zhang, Zhou Bin, Lei Lei, Gao Bin
-
Patent number: D853421Type: GrantFiled: October 30, 2017Date of Patent: July 9, 2019Assignee: EATON INTELLIGENT POWER LIMITEDInventors: Yunpeng Zhang, Zhou Bin, Lei Lei, Gao Bin
-
Patent number: D920358Type: GrantFiled: July 8, 2019Date of Patent: May 25, 2021Assignee: Eaton Intelligent Power LimitedInventors: Yunpeng Zhang, Zhou Bin, Lei Lei, Gao Bin