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公开(公告)号:US20230273932A1
公开(公告)日:2023-08-31
申请号:US17947659
申请日:2022-09-19
Inventor: Xu LI , Yunfeng CAI , Mingming SUN , Ping LI
IPC: G06F16/2458 , G06F16/22
CPC classification number: G06F16/2465 , G06F16/2237
Abstract: A method for discovering causality from data includes acquiring to-be-processed data, and obtaining a covariance matrix of the to-be-processed data; determining a first target column in the covariance matrix, taking the number of columns of the first target column as a first place in a rearrangement sequence, and obtaining a first upper triangular matrix according to the first target column; determining a position of the number of columns of the covariance matrix other than the first target column except the first place in the rearrangement sequence according to the first target column and the first upper triangular matrix, and obtaining an upper triangular matrix in each position determination; obtaining an adjacency matrix according to an upper triangular matrix and a rearrangement sequence obtained in final position determination; and generating directed acyclic graph (DAG) by using the adjacency matrix, and taking the DAG as causality discovery result of the to-be-processed data.
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公开(公告)号:US20230130399A1
公开(公告)日:2023-04-27
申请号:US17915465
申请日:2021-05-07
Inventor: Xu LI , Zeming CHEN
Abstract: The present application discloses a wakeup indicator monitoring method, apparatus and electronic device. The present disclosure includes: acquiring M pieces of audio data of a device to be monitored; determining a first wakeup confidence of each piece of M pieces of audio data, wherein the first wakeup confidence indicates a probability that the audio data contains a first wakeup word for waking up the device to be monitored; acquiring a first audio data with a first wakeup confidence in a target zone in M pieces of audio data, wherein the wakeup confidence in the target zone indicates that the audio data contains a wakeup word for waking up an audio device; and determining the ratio of the first audio data to M pieces of audio data as a wakeup rate of a device to be monitored, where the wakeup indicator of the device to be monitored includes the wakeup rate.
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公开(公告)号:US20210073973A1
公开(公告)日:2021-03-11
申请号:US16871633
申请日:2020-05-11
Inventor: Jianfa ZOU , Ye SU , Minghao LIU , Lei NIE , Jiabing LENG , Yawei WEN , Tehui HUANG , Yulin XU , Jiangliang GUO , Xu LI
Abstract: Provided are a method and an apparatus for component fault detection based on an image, and a specific implementation is: when it is determined that an image shot by an image pickup apparatus for a component to be tested with a first shooting parameter does not meet a preset condition, adjusting the first shooting parameter to a second shooting parameter; controlling the image pickup apparatus to shoot for the component to be tested with the second shooting parameter to obtain a first image that meets the preset condition; and performing fault detection on the component to be tested according to the first image. The image pickup apparatus can be adjusted in real time, so that the image can be used for fault detection only when meeting the preset condition, thereby the image is kept stable, and the accuracy rate of component fault identification based on an image is improved.
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公开(公告)号:US20210012777A1
公开(公告)日:2021-01-14
申请号:US16936967
申请日:2020-07-23
Inventor: Yang LIANG , Kun LIU , Shuangshuang QIAO , Xiangyue LIN , Chao HAN , Mingfa ZHU , Jiangliang GUO , Xu LI , Jun LIU , Shuo LI , Shiming YIN
Abstract: Embodiments of the present disclosure provide a context acquiring method based on voice interaction and a device, the method comprising: acquiring a scene image collected by an image collection device at a voice start point of a current conversation, and extracting a face feature of each user in the scene image; if it is determined that there is a second face feature matching a first face feature according to the face feature of each user and a face database, acquiring a first user identifier corresponding to the second face feature from the face database; if it is determined that a stored conversation corresponding to the first user identifier is stored in a voice database, determine a context of a voice interaction according to the current conversation and the stored conversation, and after the voice end point of the current conversation is obtained, storing the current conversation into the voice database.
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公开(公告)号:US20200349875A1
公开(公告)日:2020-11-05
申请号:US16936806
申请日:2020-07-23
Inventor: Yawei WEN , Jiabing LENG , Minghao LIU , Yulin XU , Jiangliang GUO , Xu LI
IPC: G09G3/00 , G01N21/956
Abstract: The present disclosure provides a display screen quality detection method, an apparatus, an electronic device and a storage medium, where the method comprises: receiving a quality detection request sent by a console deployed on a display screen production line, where the quality detection request includes a display screen image captured by an image capturing device on the display screen production line, performing image preprocessing on the display screen image, and inputting the preprocessed display screen image into a defect detection model to obtain a defect detection result, where the defect detection model is obtained by training with a historical defect display screen image using a deep convolutional neural network structure and an instance segmentation algorithm, determining, according to the defect detection result, quality of a display screen corresponding to the display screen image. The technical solution has high defect detection accuracy, good system performance, and high business expansion capability.
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6.
公开(公告)号:US20200380899A1
公开(公告)日:2020-12-03
申请号:US16995898
申请日:2020-08-18
Inventor: Yawei WEN , Jiabing LENG , Minghao LIU , Yulin XU , Jiangliang GUO , Xu LI
IPC: G09G3/00 , G01N21/956 , G06N3/02 , G06T7/00
Abstract: The method and apparatus for detecting a peripheral circuit of a display screen provided by the present disclosure receive a quality detection request sent by a console deployed on a production line of the peripheral circuit of the display screen, where the quality detection request includes a peripheral circuit image of the display screen captured by an image capturing device on the production line of the peripheral circuit of the display screen; zoom in or out on the peripheral circuit image of the display screen to obtain an image to be detected a size of which is consistent with an input size requirement of a defect detection model; input the image to be detected into the defect detection model to obtain a defect detection result; and determine quality of the peripheral circuit of the display screen according to the defect detection result.
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