ARTIFICIAL INTELLIGENCE FEEDBACK SYSTEM AND METHOD

    公开(公告)号:US20240320522A1

    公开(公告)日:2024-09-26

    申请号:US18579006

    申请日:2022-07-18

    发明人: Seung Chan LEE

    IPC分类号: G06N5/022

    CPC分类号: G06N5/022

    摘要: An artificial intelligence (AI) feedback system is provided. The AI feedback system includes: a script extractor/executor receiving input 1, which includes basic materials for learning, and input 2, which includes key contents for learning, and generating initial conditions for popularity frequency values or ranking values of information related to input 2 from input 1; an AI connected to the script extractor/executor, the AI generating a two-dimensional (2D) information table in a matrix form with both axes for keywords and key information, respectively, based on popularity frequency values or ranking values derived from the initial conditions, adding the popularity frequency values or ranking values to corresponding coordinates of the 2D information table, and matching acquired knowledge to the corresponding coordinates; an output unit connected to the AI and outputting deep truth values derived by the AI from the 2D information table; and a repository connected to the AI, organizing and storing, by category, the context of knowledge formed by linking the deep truth values derived by the AI.

    OPERATION PREDICTION SYSTEM FOR MULTIPLE DEVICES

    公开(公告)号:US20240094686A1

    公开(公告)日:2024-03-21

    申请号:US18257077

    申请日:2022-01-19

    发明人: Dae Seung PARK

    IPC分类号: G05B13/04 G05B23/02

    CPC分类号: G05B13/048 G05B23/0283

    摘要: An operation prediction system for multiple devices, according to one embodiment of the present invention, comprises: a control unit; a first device of which the operation state is changed by being controlled by the control unit; a second device which is linked to the first device; a prediction input unit which receives a prediction input which is an input for predicting the operation state to be changed of the first device; and a state prediction unit which predicts operation prediction information including information on the operation state of the first device, which is to be changed by the controlling of the control unit, and information on the impact on the second device as a result of the operation state to be changed of the first device.

    Method for dismantling nuclear facility underwater

    公开(公告)号:US11848114B2

    公开(公告)日:2023-12-19

    申请号:US17429031

    申请日:2020-02-14

    IPC分类号: G21D1/00 G21C13/024 G21C19/00

    摘要: An underwater decommissioning method of a nuclear facility including a nuclear reactor pressure vessel and bio-protective concrete comprising a cavity in which the nuclear reactor pressure vessel is positioned is disclosed. The method includes: (a) lifting the nuclear reactor pressure vessel above the cavity; (b) forming an insertion part in the bio-protective concrete adjacent to the cavity, filling the insertion part with water, and installing a support part on a bottom surface of the insertion part; (c) inserting the nuclear reactor pressure vessel in the insertion part and mounting a lower portion of the nuclear reactor pressure vessel on the support part; and (d) repeatedly cutting portions of the nuclear reactor pressure vessel mounted on the support part by using a cutting device in an underwater position. The method allows performing cutting operations in the water, and thus, it is possible to prevent radiation exposure due to occurrence of dust.

    METHOD OF DYNAMIC CONTROL ROD REACTIVITY MEASUREMENT

    公开(公告)号:US20230298774A1

    公开(公告)日:2023-09-21

    申请号:US18019129

    申请日:2021-08-03

    发明人: Eun-ki LEE

    IPC分类号: G21C17/104

    CPC分类号: G21C17/104

    摘要: A method of dynamic control rod reactivity measurement for a reactor using a fission chamber as an out-of-reactor measuring instrument includes: maintaining the reactor in a critical state having a set output by inserting a reference control bank into a reactor core to a first depth; completely inserting the reference control bank into the reactor core from the first depth at a maximum allowable speed and immediately completely withdrawing the reference control bank from the reactor core at the maximum allowable speed, and measuring a first signal of the out-of-reactor measuring instrument from before the insertion of the reference control bank to after the withdrawal of the reference control bank; and determining static controllability of the reference control bank by adding residual controllability measurement value of the reactor to a first static reactivity of the reactor calculated using the first signal of the out-of-reactor measuring instrument.