Method for personnel supervision in a production area of third-generation compound semiconductors and related apparatus

By installing radio frequency readers and tagging systems in the third-generation compound semiconductor production area, the problem of being unable to determine the location of trapped personnel in emergencies has been solved, enabling real-time monitoring and safe rescue of production personnel.

CN113822087BActive Publication Date: 2025-12-19GALLIUM ADVANCE SEMICON TECH CO
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Patent Information

Application Number
CN202110944122.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-08-17
Publication Date
2025-12-19
Estimated Expiration
2041-08-17

AI Technical Summary

Technical Problem

In emergency situations such as fires or chemical gas leaks, third-generation compound semiconductor manufacturing plants cannot accurately determine whether there are still trapped personnel in each production workshop and their locations through monitoring equipment.

Method used

Radio frequency (RFID) readers are installed in the production area to acquire and analyze employee badge information and reading time via RFID tags. Combined with a pre-set production area map, the large-screen terminal monitoring system is updated in real time to determine the location of trapped personnel.

Benefits of technology

In emergency situations, it can accurately determine the location and number of trapped personnel, narrow the rescue area, and improve the efficiency of safety supervision for production personnel.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to the technical field of production supervision, and discloses a production area personnel supervision method for third-generation compound semiconductors and related equipment. The production area personnel supervision method comprises the following steps: obtaining reader data uploaded by a radio frequency reader installed in each production area; analyzing the reader data to obtain reader identification and reading data; determining whether the reading data is empty; if the reading data is not empty, extracting the production personnel's badge information and reading time from the reading data; and marking the badge information and reading time on a preset production area map according to the reader identification and transmitting the badge information and reading time to a large-screen terminal for board supervision. The present application can accurately determine whether there are trapped personnel and the location of the trapped personnel in each production workshop of a third-generation compound semiconductor production factory in the event of an emergency such as a fire or chemical toxic gas leakage, thereby improving the intensity of production area personnel supervision.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of production supervision, in particular to a production area personnel supervision method for third-generation compound semiconductors and related equipment. BACKGROUND

[0002] At present, third-generation compound semiconductor production plants use camera monitoring equipment to monitor personnel in each production workshop. However, when an emergency such as a fire or chemical toxic gas leakage occurs and personnel need to evacuate, it is impossible to accurately determine whether there are trapped personnel in each production workshop and the location of the trapped personnel through the monitoring equipment. Reason one: when a fire occurs, a large amount of smoke generated will block the lens of the monitoring camera, making it impossible to view. Reason two: when a fire occurs, power may be cut off at any time, and the monitoring equipment cannot work normally, making it impossible to view. Reason three: when an emergency such as a chemical toxic gas leakage occurs, the scene is chaotic, and if someone faints in a blind spot of the monitoring, it is impossible to determine the number and location of trapped personnel. At the same time, it is also impossible to estimate the number of trapped personnel by counting the number of people who have escaped. SUMMARY

[0003] The main purpose of the present application is to provide a production area personnel supervision method for third-generation compound semiconductors and related equipment, aiming to solve the technical problem of production area personnel supervision in third-generation compound semiconductor production plants, which cannot accurately determine whether there are trapped personnel in each production workshop and the location of the trapped personnel through monitoring equipment when an emergency such as a fire or chemical toxic gas leakage occurs.

[0004] The first aspect of the present application provides a production area personnel supervision method for third-generation compound semiconductors, which comprises:

[0005] Obtaining reader data uploaded by a radio frequency reader installed in each production area;

[0006] Analyzing the reader data to obtain reader identification and reading data;

[0007] Determining whether the reading data is empty;

[0008] If the reading data is not empty, extracting production personnel's ID card information and reading time from the reading data;

[0009] According to the reader identification, marking the ID card information and reading time on a pre-set production area map and transmitting it to a large screen terminal for board supervision.

[0010] Optionally, in the first implementation manner of the first aspect of the present application, before the step of obtaining reader data uploaded by a radio frequency reader installed in each production area, the method further comprises:

[0011] Obtaining a plan view of each production area;

[0012] Marking the installed radio frequency reader and its position of each production area on the plan of each production area, obtaining the production area map and transmitting to the large screen terminal for Kanban supervision.

[0013] Optionally, in the second implementation manner of the first aspect of the present application, the extracting the badge information and reading time of the production personnel from the reading data if the reading data is not empty comprises:

[0014] judging whether the reading data is one reading record corresponding to one badge information and reading time;

[0015] if the reading data is one reading record corresponding to one badge information and reading time, extracting the badge information and reading time of one production personnel from the reading record;

[0016] if the reading data is one reading record corresponding to multiple badge information and reading time, extracting the badge information and reading time of multiple production personnel from the reading record according to the arrangement order from less to more.

[0017] Optionally, in the third implementation manner of the first aspect of the present application, the marking the badge information and reading time on the preset production area map according to the reader identifier and transmitting to the large screen terminal for Kanban supervision comprises:

[0018] sequentially matching the reader identifier with the radio frequency reader on the production area map;

[0019] if matching, marking the badge information and reading time corresponding to the reader identifier at the corresponding position on the production area map;

[0020] transmitting the production area map marked with the badge information and reading time to the large screen terminal for Kanban supervision.

[0021] Optionally, in the fourth implementation manner of the first aspect of the present application, after the judging whether the reading data is empty, further comprising:

[0022] if the reading data is empty, marking the preset production area map as empty and transmitting to the large screen terminal for Kanban supervision.

[0023] Optionally, in the fifth implementation manner of the first aspect of the present application, after the extracting the badge information and reading time of the production personnel from the reading data if the reading data is not empty, further comprising:

[0024] According to a preset attendance time, the reading time is matched with the attendance time, if the matching is successful, the badge information corresponding to the attendance time is extracted and transmitted to a large screen terminal for board supervision;

[0025] According to a preset on-duty time, the reading time is matched with the on-duty time, if the matching is successful, the badge information corresponding to the on-duty time is extracted and transmitted to a large screen terminal for board supervision.

[0026] Optionally, in the sixth implementation manner of the first aspect of the present application, after the badge information of the production personnel and the reading time are extracted from the reading data if the reading data is not empty, the method further includes:

[0027] According to a preset leaving station time, the reading time is matched with the leaving station time;

[0028] If the matching is successful, the badge information corresponding to the leaving station time is extracted and transmitted to a large screen terminal for board supervision.

[0029] The second aspect of the present application provides a production area personnel supervision device for a third-generation compound semiconductor, the device including:

[0030] A first acquisition module is configured to acquire reader data uploaded by a radio frequency reader installed in each production area;

[0031] An analysis module is configured to analyze the reader data to obtain a reader identifier and reading data;

[0032] A judgment module is configured to judge whether the reading data is empty;

[0033] An extraction module is configured to extract badge information of production personnel and reading time from the reading data if the reading data is not empty;

[0034] A first marking module is configured to mark the badge information and reading time on a preset production area map according to the reader identifier and transmit the map to a large screen terminal for board supervision.

[0035] Optionally, in the first implementation manner of the second aspect of the present application, the production area personnel supervision device further includes:

[0036] A second acquisition module is configured to acquire a plan view of each production area;

[0037] A second marking module is configured to mark a radio frequency reader and its position installed in each production area on a plan view of each production area to obtain the production area map and transmit the map to a large screen terminal for board supervision.

[0038] Optionally, in the second implementation of the second aspect of the present application, the extraction module is specifically configured to:

[0039] determine whether the reading data corresponds to one badge information and reading time of one reading record;

[0040] if the reading data corresponds to one badge information and reading time of one reading record, extract the badge information and reading time of one production personnel from the reading record;

[0041] if the reading data corresponds to multiple badge information and reading time of multiple reading records, extract the badge information and reading time of multiple production personnel from the reading records according to the order from less to more.

[0042] Optionally, in the third implementation of the second aspect of the present application, the first marking module is specifically configured to:

[0043] match the reader identifier with the radio frequency reader on the production area map in sequence;

[0044] if matched, mark the corresponding badge information and reading time of the reader identifier at the corresponding position in the production area map;

[0045] transmit the production area map marked with the badge information and reading time to the large-screen terminal for board supervision.

[0046] Optionally, in the fourth implementation of the second aspect of the present application, the device further comprises:

[0047] a transmission module configured to, if the reading data is empty, mark the preset production area map as empty and transmit it to the large-screen terminal for board supervision.

[0048] Optionally, in the fifth implementation of the second aspect of the present application, the device further comprises:

[0049] a first matching module configured to perform attendance time matching on the reading time according to a preset attendance time, and if the matching is successful, extract the badge information corresponding to the attendance time and transmit it to the large-screen terminal for board supervision;

[0050] a second matching module configured to perform on-duty working time matching on the reading time according to a preset on-duty working time, and if the matching is successful, extract the badge information corresponding to the on-duty working time and transmit it to the large-screen terminal for board supervision.

[0051] Optionally, in the sixth implementation of the second aspect of the present application, the device further comprises:

[0052] A third matching module is configured to perform departure station time matching on the reading time according to a preset departure station time.

[0053] An extraction module is configured to extract the card information corresponding to the departure station time and transmit the card information to a large-screen terminal for supervision by the card.

[0054] The third aspect of the present application provides an electronic device, comprising a memory and at least one processor, the memory storing instructions; the at least one processor invokes the instructions in the memory to enable the electronic device to perform the production area personnel supervision method described above.

[0055] The fourth aspect of the present application provides a computer-readable storage medium, the computer-readable storage medium storing instructions, when the instructions are run on a computer, enabling the computer to perform the production area personnel supervision method described above.

[0056] In the technical solution provided by the present application, a third-generation compound semiconductor production factory is provided with radio frequency readers at different positions in each production area, the radio frequency readers emit radio frequency signals periodically through built-in antennas, when each production personnel wearing a card with a radio frequency tag passes through the radio frequency reader, the card with the radio frequency tag is activated through the antenna in the built-in radio frequency tag to sense the radio frequency signals emitted by the radio frequency reader, and the tag information stored in the chip is sent out by the energy obtained by the sensing current, the radio frequency reader decodes the tag information after reading the tag information, and transmits the tag information to a central information system for relevant data processing and transmission to a card. BRIEF DESCRIPTION OF DRAWINGS

[0057] Figure 1 The first embodiment of the production area personnel supervision method for the third-generation compound semiconductor in the embodiments of the present application is shown in the figure.

[0058] Figure 2 The second embodiment of the production area personnel supervision method for the third-generation compound semiconductor in the embodiments of the present application is shown in the figure.

[0059] Figure 3 The first embodiment of the production area personnel supervision device for the third-generation compound semiconductor in the embodiments of the present application is shown in the figure.

[0060] Figure 4 Figure 2 is a schematic diagram of a second embodiment of the production area personnel supervision device for third-generation compound semiconductors in the embodiments of the present application;

[0061] Figure 5 Figure 3 is a schematic diagram of an embodiment of the electronic device in the embodiments of the present application. DETAILED DESCRIPTION

[0062] The embodiments of the present application provide a production area personnel supervision method and related device for third-generation compound semiconductors, and solve the technical problem of production area personnel supervision that the production plant for third-generation compound semiconductors cannot accurately determine whether there are trapped personnel and the location of the trapped personnel in each production workshop through monitoring devices in the event of an emergency such as a fire or chemical toxic gas leakage.

[0063] The terms "first", "second", "third", "fourth" and the like in the description, claims, and drawings of the present application, if any, are used for distinguishing between similar objects, not necessarily for describing a particular sequential or chronological order. It is to be understood that the use of these terms in the description is solely for the purpose of distinctiveness and that these terms have the same meaning as when used in the description without regard to the order in which they are used. It is also to be understood that the use of the terms first, second, third, etc., are merely used to differentiate one element from another and are not to be construed as indicating a particular order or sequence. Furthermore, the terms "comprise" or "have" and any variations thereof are intended to cover a non-exclusive inclusion, such that a process, method, system, product, or apparatus that comprises a list of steps or units not necessarily limited to those listed and can include additional not clearly recited or inherent to these processes, methods, products, or apparatuses.

[0064] For the sake of understanding, the specific flow of the embodiments of the present application is described below, please refer to Figure 1 The first embodiment of the production area personnel supervision method for third-generation compound semiconductors in the embodiments of the present application includes:

[0065] 101, acquiring the reader data uploaded by the radio frequency reader installed in each production area;

[0066] In this embodiment, radio frequency readers are installed at different positions in each production area of the production plant for third-generation compound semiconductors, the radio frequency readers emit radio frequency signals periodically through the built-in antenna, when each production personnel wears a badge with a radio frequency tag through the radio frequency reader, the badge with the radio frequency tag is activated by the radio frequency signal emitted by the radio frequency reader through the antenna in the built-in radio frequency tag, and the energy obtained by the induced current is used to send the tag information stored in the chip, the radio frequency reader decodes the tag information after reading and transmits it to the central information system for relevant data processing, of course, the central information system can also be a server or a data processing center.

[0067] 102, parsing the reader data to obtain reader identification and reading data;

[0068] In this embodiment, the central information system receives the reader data and processes the reading data to obtain the reading identification and reading data, wherein the reading data is also called card reading data.

[0069] 103, judging whether the reading data is empty or not;

[0070] In this embodiment, the central information system judges whether the reading data is empty or not according to the processed reading data, so as to prepare for the next step.

[0071] 104, if the reading data is not empty, extracting the badge information of the production personnel and the reading time from the reading data;

[0072] In this embodiment, when the central information system judges that the reading data is not empty according to the processed reading data, the central information system extracts the badge information of the production personnel and the reading time from the reading data, wherein the badge information includes the name information of the production personnel, the position information of the production personnel, the type information of the production personnel, the work schedule information of the production personnel, the work activity area information, and the badge information is pre-input into the radio frequency tag, and the reading time is also called card reading time.

[0073] Optionally, if the reading data is empty, the pre-set production area map is marked as empty and transmitted to the large screen terminal for board supervision.

[0074] In this embodiment, when the central information system judges that the reading data is empty, the pre-set production area map is not marked, and the unmarked result is transmitted to the board, which is beneficial for managers to check and understand the personnel status of the production area in real time.

[0075] Optionally, in an embodiment, the step 104 further includes:

[0076] judging whether the reading data is one reading record corresponding to one badge information and reading time;

[0077] if the reading data is one reading record corresponding to one badge information and reading time, extracting the badge information of one production personnel and the reading time from the reading record;

[0078] if the reading data is one reading record corresponding to multiple badge information and reading time, extracting the badge information of multiple production personnel and the reading time from the reading record according to the arrangement order from less to more.

[0079] In the embodiment, the central information system determines whether the reading book data is a reading record corresponding to a worker card information and a reading time. If yes, the worker card information and the reading time are extracted from all reading records corresponding to a worker card information and a reading time. If not, the worker card information is extracted according to the arrangement order from less to more, which is beneficial to marking on the preset production area map quickly and accurately.

[0080] 105. According to the reader identification, the worker card information and the reading time are marked on the preset production area map and transmitted to a large screen terminal for board supervision.

[0081] In the embodiment, the central information system compares the reader identification with the acquired reader identification of the worker card information and the reading time. If the comparison is successful, the worker card information and the reading time are marked on the corresponding position of the preset production area map, and the marked result is transmitted to the large screen terminal for board supervision. The board can be a computer display screen, a notebook display screen, a mobile phone display screen, or a professional monitoring display screen.

[0082] In the embodiment, the worker card information and the reading time are marked on the preset production area map. When a fire occurs, it is beneficial for the manager to determine whether there is a trapped person in each production area through the board. If there is a trapped person, the specific position of the trapped person can be informed to the fire fighter for effective rescue, which greatly improves the safety supervision of the production personnel.

[0083] Optionally, in an embodiment, the step 105 further includes:

[0084] The reader identification is matched with the radio frequency reader on the production area map in sequence.

[0085] If the matching is successful, the worker card information and the reading time corresponding to the reader identification are marked on the corresponding position of the production area map.

[0086] The production area map marked with the worker card information and the reading time is transmitted to the large screen terminal for board supervision.

[0087] In the embodiment, the central information system compares and matches the reader identification with the radio frequency reader on the production area map in sequence. If the matching is successful, the corresponding worker card information and reading time are marked on the corresponding position of the production area map. Then, the marked production area map is transmitted to the board large screen, which is beneficial to the user to effectively supervise the personnel in each production area.

[0088] In the third generation compound semiconductor production plant, radio frequency readers are installed at different positions in each production area. When each production personnel wears a radio frequency tag card and passes through the radio frequency reader, the radio frequency tag card receives the radio frequency signal emitted by the radio frequency reader, and sends out the tag information stored in the chip by means of the energy obtained by the induced current. The radio frequency reader decodes the tag information and transmits it to the central information system for relevant data processing and transmission to the board. The position marker information of the production personnel is displayed on the board, so that the management personnel can effectively supervise the personnel in each production area in real time.

[0089] Please refer to Figure 2 The second embodiment of the third generation compound semiconductor production area personnel supervision method in the embodiment of the application comprises the following steps:

[0090] 201. Obtain the plan of each production area;

[0091] In the embodiment, in order to ensure that the resolution of the image does not change when it is continuously enlarged and reduced, the plan of each production area of the third generation compound semiconductor production plant is drawn according to a certain proportion, and the drawn plan of each production area is input into the central information system.

[0092] 202. Mark the radio frequency readers installed in each production area and their positions on the plan of each production area, obtain the production area map, and transmit it to the large screen terminal for board supervision;

[0093] In the embodiment, according to the position information of the radio frequency readers installed in the third semiconductor production plant, the corresponding positions are marked on the plan of each production area to form the preset production area map, and the map is transmitted to the board for visualization and reality, which is beneficial for the management personnel to understand the production status in real time. The board comprises a display map area, a display attendance time icon area, and a display production personnel on-duty time chart area.

[0094] 203. Obtain the reader data uploaded by the radio frequency readers installed in each production area;

[0095] 204. Analyze the reader data to obtain reader identification and reading data;

[0096] 205. Determine whether the reading data is empty;

[0097] 206. If the reading data is not empty, extract the production personnel's tag card information and reading time from the reading data;

[0098] In the embodiment, the above steps 203, 204, 205 and 206 are described with reference to the first embodiment, and will not be described again in the embodiment.

[0099] Optionally, in an embodiment, after step 206, it further comprises:

[0100] (1) According to the preset attendance time, the reading time is matched with the attendance time, if the matching is successful, the badge information corresponding to the attendance time is extracted and transmitted to the large screen terminal for board supervision;

[0101] (2) According to the preset on-duty working time, the reading time is matched with the on-duty working time, if the matching is successful, the badge information corresponding to the on-duty working time is extracted and transmitted to the large screen terminal for board supervision;

[0102] (3) According to the preset leaving station time, the reading time is matched with the leaving station time, if the matching is successful, the badge information corresponding to the leaving station time is extracted and transmitted to the large screen terminal for board supervision.

[0103] In this embodiment, the production personnel attendance time is recorded in the central information system in advance, the central information system first counts the working attendance time and the off-duty attendance time of the reading time respectively, and matches the statistical results with the preset production personnel attendance time, if the matching is successful, the badge information corresponding to the attendance time is extracted and data conversion is performed, and the data is displayed in the form of a chart on the board. At the same time, the total on-duty working time of the production personnel is recorded in the central information system in advance, the central information system first counts all the time of the same person in the same working range, and matches the statistical results with the preset on-duty working time of the production personnel, if the matching is successful, the badge information corresponding to the on-duty working time is extracted and data conversion is performed, and the data is displayed in the form of a chart on the board.

[0104] In this example, it is beneficial for the enterprise to conduct attendance and analyze the work efficiency of the employees.

[0105] 207、According to the reader identification, mark the badge information and reading time on the preset production area map and transmit to the large screen terminal for board supervision.

[0106] In this embodiment, according to the position information of the radio frequency reader installed in the third semiconductor production factory, the corresponding position is marked on the each production area plan, the preset production area map is formed, and the map is transmitted to the board for visual display, which is beneficial for the manager to understand the production status in real time, wherein the board includes a display map area, a display attendance time chart area, a display station abnormal area, and a display on-duty time chart of the production personnel.

[0107] The attendance chart displayed on the board in the embodiment is further expanded, and the on-duty time chart of the production personnel is beneficial to work efficiency analysis, and the long-time leaving station chart of the production personnel is beneficial to station abnormality detection analysis and position information of the production personnel, so that the user can effectively supervise the personnel in each production area in real time.

[0108] The production area personnel supervision method in the embodiment of the application is described above, and the production area personnel supervision device of the third generation compound semiconductor in the embodiment of the application is described below, please refer to Figure 3 The production area personnel supervision device of the third generation compound semiconductor in the embodiment of the application comprises the following:

[0109] The first acquisition module 301 is configured to acquire reader data uploaded by a radio frequency reader installed in each production area;

[0110] The analysis module 302 is configured to analyze the reader data to obtain reader identification and reading data;

[0111] The judgment module 303 is configured to judge whether the reading data is empty;

[0112] The extraction module 304 is configured to extract worker card information and reading time of the production personnel from the reading data if the reading data is not empty;

[0113] The first marking module 305 is configured to mark the worker card information and reading time on a preset production area map according to the reader identification, and transmit the production area map to a large-screen terminal for board supervision.

[0114] In the embodiment, the third generation compound semiconductor production factory is installed with radio frequency readers at different positions in each production area, when each production personnel wears a worker card with a radio frequency tag and passes through the radio frequency reader, the worker card with the radio frequency tag is activated by inducting the radio frequency signal emitted by the radio frequency reader through the antenna in the built-in radio frequency tag, and sends out the tag information stored in the chip by means of the energy obtained by the inductive current, the radio frequency reader decodes the tag information after reading, and transmits to the central information system for relevant data processing and transmission to the board, displays the marking information of the position of the production personnel on the preset production area map on the board, so that the management personnel can effectively supervise the personnel in each production area in real time, and at the same time, when a fire occurs, whether there is a trapped personnel in each production area can also be checked according to the board, and because the radio frequency tag and the radio frequency reader obtain signals through radio frequency signals, as long as the power is not disconnected and the production personnel wears the worker card with the radio frequency tag in the radio frequency reader readable signal range, the radio frequency reader can read the signal and display it on the board, so that the trapped personnel can be rescued in time.

[0115] Please refer to Figure 4The second embodiment of the production area personnel supervision device for third-generation compound semiconductors in the embodiment of the application comprises:

[0116] The first acquisition module 301 is configured to acquire reader data uploaded by a radio frequency reader installed in each production area.

[0117] The analysis module 302 is configured to analyze the reader data to obtain a reader identifier and reading data.

[0118] The judgment module 303 is configured to judge whether the reading data is empty.

[0119] The extraction module 304 is configured to extract worker badge information and reading time of a production worker from the reading data if the reading data is not empty.

[0120] The first marking module 305 is configured to mark the worker badge information and reading time on a preset production area map according to the reader identifier and transmit the production area map to a large-screen terminal for board supervision.

[0121] Optionally, in an embodiment, the production area personnel supervision further comprises:

[0122] The second acquisition module 306 is configured to acquire a plan view of each production area.

[0123] The second marking module 307 is configured to mark a radio frequency reader and its position installed in each production area on a plan view of each production area to obtain the production area map and transmit the production area map to the large-screen terminal for board supervision.

[0124] Optionally, in an embodiment, the extraction module 304 is specifically configured to:

[0125] judge whether the reading data is one reading record corresponding to one worker badge information and reading time.

[0126] if the reading data is one reading record corresponding to one worker badge information and reading time, extract worker badge information and reading time of one production worker from the reading record.

[0127] if the reading data is one reading record corresponding to multiple worker badge information and reading time, extract worker badge information and reading time of multiple production workers from the reading record according to a sequence from less to more.

[0128] Optionally, in an embodiment, the first marking module 305 is specifically configured to:

[0129] match the reader identifier with a radio frequency reader on the production area map in sequence.

[0130] If matched, the reader identification corresponding badge information and reading time are marked at the corresponding position in the production area map;

[0131] The production area map marked with badge information and reading time is transmitted to a large screen terminal for Kanban supervision.

[0132] Optionally, in an embodiment, the device further comprises:

[0133] The transmission module 308 is configured to mark and transmit the preset production area map to the large screen terminal for Kanban supervision if the reading data is empty.

[0134] Optionally, in an embodiment, the device further comprises:

[0135] The first matching module 309 is configured to perform attendance time matching on the reading time according to a preset attendance time, and if matching is successful, extract badge information corresponding to the attendance time and transmit the badge information to the large screen terminal for Kanban supervision.

[0136] The second matching module 310 is configured to perform on-duty working time matching on the reading time according to a preset on-duty working time, and if matching is successful, extract badge information corresponding to the on-duty working time and transmit the badge information to the large screen terminal for Kanban supervision.

[0137] Optionally, in an embodiment, the device further comprises:

[0138] The third matching module 311 is configured to perform leaving workstation time matching on the reading time according to a preset leaving workstation time.

[0139] The extraction module 312 is configured to extract badge information corresponding to the leaving workstation time and transmit the badge information to the large screen terminal for Kanban supervision if matching is successful.

[0140] In the embodiment, the attendance chart displayed on the Kanban is further expanded, and the on-duty time chart of the production personnel is beneficial to work efficiency analysis, and the long-time leaving workstation chart of the production personnel is beneficial to workstation abnormality detection analysis and position information of the production personnel, so that the management personnel can supervise the personnel in the production area not only within the working activity range of the production personnel, but also in the aspects of personnel attendance, work efficiency analysis and workstation abnormality detection.

[0141] The above Figure 3 and Figure 4 The production area personnel supervision device of the third-generation compound semiconductor in the embodiment of the application is described in detail from the perspective of modular functional entities, and the electronic device in the embodiment of the application is described in detail from the perspective of hardware processing.

[0142] Figure 5is a structural schematic diagram of an electronic device provided by an embodiment of the present application. The electronic device 500 can be quite different in configuration or performance, and can include one or more processors (central processing units, CPUs) 510 (for example, one or more processors) and a memory 520, and one or more storage media 530 (for example, one or more mass storage devices) storing application programs 533 or data 532. The memory 520 and the storage media 530 can be temporary storage or persistent storage. The programs stored in the storage media 530 can include one or more modules (not shown in the figure), each of which can include a series of instruction operations in the electronic device 500. Furthermore, the processor 510 can be configured to communicate with the storage media 530 and execute a series of instruction operations in the storage media 530 on the electronic device 500.

[0143] The electronic device 500 can also include one or more power supplies 540, one or more wired or wireless network interfaces 550, one or more input / output interfaces 560, and / or one or more operating systems 531, such as Windows Server, Mac OS X, Unix, Linux, FreeBSD, etc. Those skilled in the art can understand that the electronic device 500 can include more or fewer components than those shown in the figure, or some components can be combined, or different components can be arranged. Figure 5 The electronic device structure shown does not constitute a limitation on the electronic device, and the electronic device can include more or fewer components than those shown in the figure, or some components can be combined, or different components can be arranged.

[0144] The present application also provides an electronic device including a memory and a processor, the memory storing computer readable instructions, and the computer readable instructions being executed by the processor to cause the processor to perform the steps of the production area personnel supervision method in each of the embodiments described above.

[0145] The present application also provides a computer readable storage medium, which can be a non-volatile computer readable storage medium or a volatile computer readable storage medium, and the computer readable storage medium stores instructions, and the instructions, when executed on a computer, cause the computer to perform the steps of the production area personnel supervision method.

[0146] Those skilled in the art can clearly understand that, for the convenience and brevity of description, the specific working processes of the system, device and unit described above can refer to the corresponding processes in the foregoing method embodiments, which will not be described herein.

[0147] The integrated unit, if implemented in the form of a software function unit and sold or used as an independent product, can be stored in a computer readable storage medium. Based on such understanding, the technical solutions of the present application or the entire or part of the technical solutions that essentially contribute to the prior art can be embodied in the form of a software product. The computer software product is stored in a storage medium and includes a plurality of instructions for causing a computer device (which can be a personal computer, a server, or a network device, etc.) to execute all or part of the steps of the method described in the various embodiments of the present application. The aforementioned storage medium includes: a U disk, a mobile hard disk, a read-only memory (ROM), a random access memory (RAM), a magnetic disk or an optical disk, and various media that can store program codes.

[0148] The above-described embodiments are merely used to illustrate the technical solutions of the present application, rather than limit them; although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that they can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacements for some of the technical features; and these modifications or replacements do not cause the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present application.

Claims

1. A production area personnel supervision method of a third-generation compound semiconductor, applied to a third-generation compound semiconductor production plant including a plurality of production areas, characterized by, Radio frequency readers are installed at different positions of each production area, and each production personnel wears a work card with a radio frequency tag, and the production area personnel supervision method comprises the following steps: Reader data uploaded by the radio frequency readers installed in each production area is acquired; The reader data is analyzed to obtain reader identification and reading data; It is judged whether the reading data is empty or not; If the reading data is not empty, the work card information and reading time of the production personnel are extracted from the reading data; According to the reader identification, the work card information and reading time are marked on the preset production area map and transmitted to the large screen terminal for board supervision; According to the preset attendance time, the reading time is matched with the attendance time, if the matching is successful, the work card information corresponding to the attendance time is extracted and transmitted to the large screen terminal for board supervision; According to the preset on-duty working time, the reading time is matched with the on-duty working time, if the matching is successful, the work card information corresponding to the on-duty working time is extracted and transmitted to the large screen terminal for board supervision; According to the preset leaving station time, the reading time is matched with the leaving station time, if the matching is successful, the work card information corresponding to the leaving station time is extracted and transmitted to the large screen terminal for board supervision; The board comprises a display map area, a display attendance time chart area, a display station abnormality area and a display on-duty time chart of the production personnel.

2. The production area personnel supervising method according to claim 1, characterized by, Before the reader data uploaded by the radio frequency readers installed in each production area is acquired, the following steps are further included: The plan view of each production area is acquired; On the plan view of each production area, the radio frequency readers installed in each production area and their positions are marked to obtain the production area map and transmit it to the large screen terminal for board supervision.

3. The method for producing a regional personnel supervision according to claim 1, characterized by, If the reading data is not empty, the work card information and reading time of the production personnel are extracted from the reading data, which comprises the following steps: It is judged whether one reading record corresponds to one work card information and reading time; If one reading record corresponds to one work card information and reading time, the work card information and reading time of one production personnel are extracted from the reading record; If one reading record corresponds to multiple work card information and reading time, multiple production personnel's work card information and reading time are extracted from the reading record in the order from less to more.

4. The method of claim 3, wherein, According to the reader identification, the work card information and reading time are marked on the preset production area map and transmitted to the large screen terminal for board supervision, which comprises the following steps: The reader identification is matched with the radio frequency readers on the production area map in sequence; If the matching is successful, the work card information and reading time corresponding to the reader identification are marked at the corresponding position in the production area map; The production area map marked with the work card information and reading time is transmitted to the large screen terminal for board supervision.

5. The method for producing a regional personnel supervision according to claim 1, characterized by, After it is judged whether the reading data is empty or not, the following steps are further included: If the reading data is empty, the preset production area map is marked as empty and transmitted to the large screen terminal for board supervision.

6. A production area human resource management device for a third-generation compound semiconductor, which is applied to a third-generation compound semiconductor production plant, characterized by The production area personnel supervision device comprises: A first obtaining module is configured to obtain reader data uploaded by a radio frequency reader installed in each production area; An analyzing module is configured to analyze the reader data to obtain a reader identifier and reading data; A judging module is configured to judge whether the reading data is empty; An extracting module is configured to extract badge information of a production staff and reading time from the reading data if the reading data is not empty; A first marking module is configured to mark the badge information and reading time on a preset production area map according to the reader identifier and transmit the badge information and reading time to a large-screen terminal for board supervision; An attendance management module is configured to perform attendance time matching on the reading time according to a preset attendance time, extract badge information corresponding to the attendance time, and transmit the badge information to the large-screen terminal for board supervision if the attendance time matching is successful; A working time management module is configured to perform on-duty working time matching on the reading time according to a preset on-duty working time, extract badge information corresponding to the on-duty working time, and transmit the badge information to the large-screen terminal for board supervision if the on-duty working time matching is successful; perform off-station time matching on the reading time according to a preset off-station time, extract badge information corresponding to the off-station time, and transmit the badge information to the large-screen terminal for board supervision if the off-station time matching is successful; wherein the board comprises a display map area, a display attendance time chart area, a display station abnormality area, and a display production staff on-duty time chart.

7. An electronic device, comprising: The electronic device comprises a memory and at least one processor, and the memory stores instructions; The at least one processor invokes the instructions in the memory to enable the electronic device to perform the production area staff supervision method according to any one of claims 1-5.

8. A computer-readable storage medium having stored thereon instructions, the computer-readable storage medium comprising: The instructions are executed by the processor to implement the production area staff supervision method according to any one of claims 1-5.

Citation Information

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