Chromatographic data monitoring management method and system

By managing chromatographic data through real-time monitoring and priority-based data transmission, and combining dual authentication with wearable devices and eye-tracking technology, the problems of data transmission interruption and insufficient authentication in traditional systems are solved, achieving efficient and secure chromatographic data management.

CN121141922BActive Publication Date: 2026-04-24SHANGHAI SHENGDI INFORMATION TECH CO LTD
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Patent Information

Application Number
CN202511533006.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-10-24
Publication Date
2026-04-24
Estimated Expiration
2045-10-24

AI Technical Summary

Technical Problem

Traditional chromatography data monitoring and management systems lack real-time sensing capabilities, leading to data transmission interruptions or delays, affecting analytical efficiency, and lacking effective authentication and data access control.

Method used

The system employs real-time monitoring of data transmission status, generates transmission order based on data priority and resource utilization, synchronously collects task flow data and generates logs, combines wearable devices and eye-tracking technology for dual authentication, dynamically generates a question database for verification, and takes corresponding measures in abnormal situations.

Benefits of technology

Ensure that critical data is transmitted with priority, improve analysis efficiency, guarantee data integrity and availability, and provide highly accurate and secure authentication to prevent identity theft and information leakage.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to a chromatographic data monitoring management method and system, and relates to the field of data management, which comprises the following steps: collecting a chromatographic data transmission state; when the chromatographic data transmission state is not a preset transmission interruption state, collecting chromatographic data transmission information; according to the chromatographic data transmission information, data priority and data resource occupation rate are retrieved; based on the data priority and the data resource occupation rate, a data transmission sequence is generated; data transmission is performed through the data transmission sequence, and a chromatographic task flow is collected; based on the chromatographic task flow, a chromatographic task log is generated, and the chromatographic task log is written into a preset task storage. The application has the effect of improving the analysis efficiency of chromatographic data.
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Description

Technical Field

[0001] This invention relates to the field of data management, and in particular to a method and system for monitoring and managing chromatographic data. Background Technology

[0002] Chromatographic data monitoring and management refers to the process of real-time acquisition, transmission, processing, and storage of massive amounts of data generated by chromatographic analysis instruments to support scientific research and industrial production decisions.

[0003] Currently, in modern scientific research and industrial production, chromatographic analysis technology, with its advantages of high sensitivity and high resolution, has become one of the core methods for analyzing the composition of substances. The large amount of data generated during chromatographic analysis contains key information such as the structure and content of substances. Efficient monitoring and management of this data is a crucial link in ensuring the accuracy of analytical results, promoting scientific research progress, and optimizing production processes.

[0004] Traditional chromatography data monitoring and management systems often employ fixed data transmission strategies, lacking the ability to monitor data transmission status in real time. When network fluctuations or equipment malfunctions cause data transmission problems, the system struggles to respond promptly, easily leading to data loss or transmission delays, which in turn reduces the efficiency of subsequent chromatographic data analysis and warrants improvement. Summary of the Invention

[0005] To improve the efficiency of chromatographic data analysis, this invention provides a method and system for monitoring and managing chromatographic data.

[0006] In a first aspect, the present invention provides a method for monitoring and managing chromatographic data, employing the following technical solution:

[0007] A method for monitoring and managing chromatographic data, comprising:

[0008] S1: Status of acquiring chromatographic data transmission;

[0009] S2: When the chromatographic data transmission status is not a preset transmission interruption status, collect the chromatographic data transmission information;

[0010] S20: Retrieve data priority and data resource utilization rate based on the chromatographic data transmission information;

[0011] S21: Generate a data transmission order based on the data priority and the data resource occupancy rate;

[0012] S22: Data transmission is performed according to the data transmission sequence, and the chromatography task flow is collected;

[0013] S23: Generate a chromatography task log based on the chromatography task process, and write the chromatography task log into a preset task repository.

[0014] By adopting the above technical solution, the system first monitors the data transmission status in real time, collecting transmission information in an uninterrupted state. By analyzing data priority and resource utilization, the data transmission order is determined, ensuring that high-priority data is transmitted first, avoiding delays in critical data due to resource congestion. During transmission, the chromatographic task flow is simultaneously collected, automatically generating and storing task logs containing operational parameters and time points for each stage, forming a complete data traceability chain. This achieves intelligent management of the entire process from data acquisition and transmission to storage, ensuring the integrity and availability of chromatographic data, thereby improving the analytical efficiency of chromatographic data.

[0015] Optionally, a data query method for the task repository may also be included:

[0016] S24: Receive data query signal;

[0017] S25: In response to the data query signal, acquire access image information and demand query information;

[0018] S26: Perform facial recognition on the access image information to obtain the current visitor;

[0019] S27: When the current visitor falls into the preset personnel database, perform personnel verification using the preset personnel verification method and collect the personnel verification results;

[0020] S28: When the personnel verification result is a preset verification pass result, control the preset task storage terminal to display the demand query information as data.

[0021] Optionally, the personnel verification method includes:

[0022] S270: Control the preset task storage terminal to prompt the device to be worn, and collect the wear signal of the preset detection device;

[0023] S271: When the wearing signal is consistent with the preset wearing completion signal, a question database is generated based on the demand query information;

[0024] S272: Generate specific questions based on the question database, and ask the current visitor the specific questions, while collecting the visitor's answers;

[0025] S273: Generate a baseline answer based on the specific question asked;

[0026] S274: When the personnel's answer is inconsistent with the baseline answer, an abnormality alert should be reported.

[0027] S275: When the person's answer is consistent with the benchmark answer, output the verification result.

[0028] Optionally, it also includes a question-and-answer detection method when the current visitor answers questions:

[0029] S2720: Signal acquired by the acquisition device;

[0030] S27200: When the device wearing signal is consistent with the preset device touch signal, a device touch warning is reported and the number of touch warnings is collected;

[0031] S27201: When the number of touch warnings does not exceed the preset baseline number of warnings, update the specific questions based on the question database, and ask the current visitor the updated specific questions;

[0032] S27202: When the number of touch warnings exceeds the preset baseline number of warnings, report a query anomaly and close the task repository.

[0033] Optionally, the question-answering detection method further includes:

[0034] S2721: Collect video information from responses;

[0035] S27210: Determine from the response video information whether the current visitor is speaking;

[0036] S27211: When there is a speaking situation, generate speaking lip movements based on the response video information and preset mouth features;

[0037] S27212: Generate lip-sync content based on the spoken lip movements;

[0038] S27213: Generate content relevance based on the lip-sync content and the specific question asked;

[0039] S27214: When the content relevance exceeds the preset benchmark relevance, report an abnormal response warning.

[0040] Optionally, the question-answering detection method further includes:

[0041] S2722: Collect video information from responses;

[0042] S27220: Perform eye tracking on the current visitor from the response video information to determine whether the current visitor's eyes are shifting;

[0043] S27221: When eye displacement occurs, the displacement direction is generated based on the response video information and preset eye features, and the displacement image information is acquired;

[0044] S27222: When the offset image information contains a preset problem prompt feature, report a query anomaly prompt and close the task repository;

[0045] S27223: When the offset image information does not contain a preset problem prompt feature, report an eye offset warning.

[0046] Optional, also includes:

[0047] S3: When the chromatographic data transmission status is a preset transmission interruption status, an interruption alarm signal is collected;

[0048] S30: Generate a transmission interruption cause based on the interruption alarm signal;

[0049] S31: Determine the interruption handling method based on the stated cause of the transmission interruption;

[0050] S32: Use the interrupt handling method described above to handle interrupt exceptions.

[0051] Optionally, the interrupt handling method includes:

[0052] S320: When the transmission interruption is due to a network outage, collect the network abnormal terminal number;

[0053] S3200: Obtain the abnormal network terminal based on the abnormal network terminal number;

[0054] S3201: Obtain the network supply device number through the network abnormal terminal;

[0055] S3202: Control the network supply device corresponding to the network supply device number to start, and control the network abnormal terminal to connect to the network;

[0056] S3203: After the network connection is completed, control the network malfunction terminal to re-transmit data and update the chromatographic data transmission status;

[0057] S3204: If the updated chromatographic data transmission status is still in the transmission interruption status, report a transmission error message.

[0058] Optionally, the interrupt handling method further includes:

[0059] S321: When the transmission interruption is caused by a power outage, collect the number of terminals that are powered off.

[0060] S3210: When the number of power-off terminals is lower than the preset baseline number of power-off terminals, collect the power-off terminal numbers;

[0061] S32100: Obtain the required power supply circuit number based on the power outage terminal number;

[0062] S32101: Control the preset auxiliary power supply device to start the power supply circuit corresponding to the required power supply circuit number, so as to supply power to the power failure terminal;

[0063] S3211: When the number of power-off terminals is not less than the preset baseline number of power-off terminals, the preset auxiliary power supply device is activated to provide global power supply.

[0064] S322: After power is restored, control the power-off terminal to resume data transmission and update the chromatographic data transmission status;

[0065] S323: If the updated chromatographic data transmission status is still in the transmission interruption status, report a transmission error message.

[0066] Secondly, this application provides a chromatography data monitoring and management system, which adopts the following technical solution:

[0067] A chromatography data monitoring and management system, comprising:

[0068] The data acquisition module is used to acquire chromatographic data transmission status, chromatographic data transmission information, and chromatographic task flow.

[0069] A memory for storing programs that implement any of the above-mentioned chromatographic data monitoring and management methods;

[0070] The processor is used to load and execute programs stored in memory.

[0071] In summary, this application includes at least one of the following beneficial technical effects:

[0072] 1. The system first monitors the data transmission status in real time, collecting transmission information in an uninterrupted state. By analyzing data priority and resource utilization, the system determines the data transmission order, ensuring that high-priority data is transmitted first and avoiding delays in critical data due to resource congestion. During transmission, the system simultaneously collects the chromatographic task flow, automatically generating and storing task logs containing operational parameters and time points for each stage, forming a complete data traceability chain. This achieves intelligent management of the entire process from data acquisition and transmission to storage, ensuring the integrity and availability of chromatographic data, thereby improving the analytical efficiency of chromatographic data.

[0073] 2. The system first prompts the user to wear the detection device via the task storage terminal and collects the wearing signal in real time to ensure the standardization of the verification process and the accuracy of the data source. After the device is worn, a targeted question bank is dynamically generated based on the requested information, with each question associated with a corresponding baseline answer. During the questioning process, the system simultaneously collects the user's answers and compares them with the baseline answer. If any discrepancies are found, an anomaly is immediately reported, effectively preventing the risk of identity theft or information leakage. This dual authentication method, which combines knowledge verification with device wear, breaks through the limitations of traditional password or token verification. It utilizes domain-specific expertise as the basis for identity verification, ensuring that only personnel with the corresponding permissions and knowledge can access critical data. This not only guarantees the accuracy of the verification results but also improves access efficiency, providing reliable security for sensitive data storage environments.

[0074] 3. The system uses real-time eye-tracking technology to accurately capture the eye movements of visitors. When eye movement is detected, the system further analyzes the environmental image corresponding to the direction of the movement to determine if there are any external cues. If an abnormal source is found, the system immediately reports the anomaly and closes the repository, effectively preventing cheating. If it is only normal eye movement, an offset warning is issued to alert the verification personnel. By capturing subtle visual behavioral anomalies, the system can identify potential cheating intentions in advance, which not only improves the credibility of identity verification but also provides more comprehensive security protection for access to sensitive data. Attached Figure Description

[0075] Figure 1 This is a flowchart of a method for monitoring and managing chromatographic data.

[0076] Figure 2 This is a flowchart of the personnel verification method;

[0077] Figure 3 This is one of the question-answering detection methods. Figure 1 ;

[0078] Figure 4 This is one of the question-answering detection methods. Figure 2 ;

[0079] Figure 5 This is a flowchart of another question-and-answer detection method. Detailed Implementation

[0080] The present invention will now be described in further detail with reference to the accompanying drawings and embodiments.

[0081] Reference Figure 1 This application discloses a method for monitoring and managing chromatographic data, comprising the following steps:

[0082] S1: Status of acquiring chromatographic data transmission.

[0083] Chromatographic data transmission status refers to the real-time connection and communication status of chromatographic data during transmission. The chromatographic data transmission status is acquired through a pre-set data transmission status monitoring module. This module is pre-configured by those skilled in the art and will not be described in detail here.

[0084] S2: When the chromatographic data transmission status is not the preset transmission interruption status, collect the chromatographic data transmission information.

[0085] Transmission interruption status refers to the state when chromatographic data transmission is interrupted. This status is pre-defined by those skilled in the art and will not be elaborated upon here. Chromatographic data transmission information refers to the real-time operating parameters and data characteristics involved in the transmission of chromatographic data. This information is acquired by combining a pre-set chromatographic data system with pre-input data from personnel. The specific chromatographic data system is pre-defined by those skilled in the art and will not be elaborated upon here.

[0086] When the chromatographic data transmission status is not in the interrupted state, it means that the chromatographic data is being transmitted normally. The chromatographic data transmission information needs to be collected first for subsequent steps.

[0087] S20: Retrieve data priority and data resource utilization based on chromatographic data transmission information.

[0088] Data priority refers to the importance level of chromatographic data. Data resource utilization rate refers to the proportion of system resources consumed during the transmission, storage, and processing of chromatographic data. Both data priority and data resource utilization rate are obtained by understanding the chromatographic data transmission information. The chromatographic data transmission information includes data priority and data resource utilization rate.

[0089] S21: Generate data transmission order based on data priority and data resource utilization.

[0090] Data transmission order refers to the execution sequence formed after sorting the chromatographic data to be transmitted. A weighted fair queue algorithm is used to calculate the weighting of each group of data based on its priority and resource utilization, thus determining the data transmission order of each group of chromatographic data. Data with higher weightings are transmitted first. The weighted fair queue algorithm is common knowledge in this field and will not be elaborated upon here.

[0091] S22: Data transmission is performed according to the data transmission sequence, and the chromatography task flow is acquired.

[0092] A chromatographic task workflow refers to the entire lifecycle of an analysis task, from its initiation to data transmission, encompassing the sequence of operations and status changes. This includes key steps such as instrument parameter settings, sample analysis, data transmission, and result processing. The chromatographic task workflow is acquired through a pre-defined workflow recording module. This module is a functional unit used to record the entire lifecycle of an analysis task, from its initiation to data transmission completion. The workflow recording module is pre-defined by those skilled in the art and will not be elaborated upon here.

[0093] The system controls the preset data transmission terminal to transmit data in the specified order, while simultaneously collecting the chromatographic task flow for subsequent steps. The data transmission terminal refers to the terminal used for transmitting chromatographic data.

[0094] S23: Generate a chromatography task log based on the chromatography task workflow and write the chromatography task log to a preset task repository.

[0095] A chromatography task log is a structured record of key operations, status changes, parameter data, and abnormal events recorded chronologically throughout the entire process of a chromatography analysis task, from initiation to completion. By understanding the chromatography task flow, one can know the events that occurred at each point in time during the chromatography analysis task. Recording the events that occurred at each point in time yields the chromatography task log.

[0096] A task repository is a database used to store task logs for each chromatographic analysis task for subsequent querying. The task repository is pre-defined by those skilled in the art and will not be elaborated upon here.

[0097] After generating the chromatography task log, it needs to be written to the task repository for later querying.

[0098] The data query method for the task repository includes the following steps:

[0099] S24: Receive data query signal.

[0100] A data query signal is a command signal sent by a staff member to a pre-set task storage terminal, requesting to retrieve data related to a chromatography task. When a staff member needs to query data related to a chromatography task, the pre-set transceiver on the task storage terminal will receive the data query signal, thus initiating subsequent steps.

[0101] A task storage terminal refers to a terminal that stores the chromatographic task log for each chromatographic analysis task. The task storage terminal is pre-configured by those skilled in the art and will not be described in detail here.

[0102] S25: In response to a data query signal, collect access image information and request query information.

[0103] Accessing image information refers to the image presented in front of the task storage terminal. Querying information refers to the specific content that the staff needs to query. Accessing image information is captured by a camera pre-installed on the task storage terminal. Querying information is obtained by the staff clicking on the information query bar on the task storage terminal. Extracting specific query requests by analyzing user interactions on the terminal interface (such as clicking the query bar, selecting conditions, etc.) is common knowledge in the field and will not be elaborated upon here.

[0104] S26: Perform facial recognition on the accessed image information to obtain the current visitor.

[0105] The current visitor refers to the staff member currently performing a chromatographic information query. This can be identified by facial recognition of the accessed image information. Facial recognition technology is common knowledge in this field and will not be elaborated upon here.

[0106] S27: When the current visitor falls into the preset personnel database, perform personnel verification using the preset personnel verification method and collect the personnel verification results.

[0107] The personnel database refers to a database storing all personnel involved in this chromatographic analysis task. The personnel database is pre-set by those skilled in the art and will not be elaborated upon here. The personnel verification method refers to the method used to further verify the current visitors. Specific personnel verification methods are detailed in subsequent sections S270 to S275 and will not be elaborated upon here.

[0108] Personnel verification result refers to the verification result obtained after further verification of the current visitor using personnel verification methods. The personnel verification result is collected by the task storage terminal after completing the further verification of the current visitor. The task storage terminal will output the personnel verification result after completing the further verification of the current visitor.

[0109] When the current visitor falls into the personnel database, it means that the personnel database includes the staff member. However, in order to further prevent data leakage, it is necessary to verify the personnel using personnel verification methods and collect the personnel verification results for subsequent steps.

[0110] S28: When the personnel verification result is the preset verification pass result, the preset task storage terminal is controlled to display the required query information.

[0111] A successful verification result means that the employee has passed further personnel verification. The successful verification result is predetermined by those skilled in the art and will not be elaborated upon here.

[0112] When the personnel verification result is "verification passed", it means that the staff member has passed further personnel verification. The task storage terminal can then be controlled to display the query information for the staff member to view.

[0113] Reference Figure 2 The personnel verification method includes the following steps:

[0114] S270: Control the preset task storage terminal to prompt device wearing and collect the preset detection device wearing signal.

[0115] Device donning prompts refer to prompts that encourage the current visitor to don the detection device. The detection device refers to the equipment used for further personnel verification of the current visitor.

[0116] In this embodiment, the detection device is a headset.

[0117] Wearable signals are signals used to determine whether a visitor has completed wearing the detection equipment. Wearable signals are acquired through a pre-installed transceiver on the detection equipment.

[0118] The control task storage terminal prompts the user to wear the detection device, and simultaneously collects the device's wearing signal for subsequent steps.

[0119] S271: When the wear signal is consistent with the preset wear completion signal, generate a question database based on the demand query information.

[0120] The "wearing complete signal" refers to the signal emitted when the current visitor has successfully donned the detection device. This signal is pre-set by those skilled in the art and will not be elaborated upon here. The question bank refers to the set of questions used to further verify the current visitor's identity. A pre-defined query-question lookup table can be used to match the query information with the corresponding question bank. This table records different question banks corresponding to different query information. The query-question lookup table is formed by those skilled in the art sequentially recording the different question banks corresponding to different query information; this will not be elaborated upon here.

[0121] S272: Generate specific questions based on the question database, ask the current visitor the specific questions, and collect the visitor's answers.

[0122] The specific question to be asked refers to the specific question posed to the current visitor. This specific question is obtained by randomly selecting from a question database. The random selection technique is common knowledge in this field and will not be elaborated upon here.

[0123] The content of the visitor's response refers to the content of the visitor's answer to a specific question. The visitor needs to input the content of their response into the task storage terminal, which is then used to collect the content of the visitor's response.

[0124] Once a specific question is generated, the detection device needs to be controlled to ask the current visitor a question via voice, while simultaneously collecting the visitor's response for subsequent steps.

[0125] S273: Generate a baseline answer based on the specific question asked.

[0126] The benchmark answer refers to the standard answer corresponding to a specific question. A pre-set answer lookup table can be used to find the benchmark answer for a specific question. This table records the different benchmark answers for different specific questions. The answer lookup table is formed by those skilled in the art recording the different benchmark answers for different specific questions sequentially, and will not be elaborated upon here.

[0127] S274: When the content of the personnel's answer is inconsistent with the content of the benchmark answer, report the problem anomaly.

[0128] When a person's answer does not match the baseline answer, it indicates that the person's answer is incorrect, which means the verification fails and an error message needs to be reported.

[0129] S275: When the person's answer matches the benchmark answer, output a verification result.

[0130] When a person's answer does not match the baseline answer, it means that the current person's answer is correct, and the verification is successful. The verification result should then be output.

[0131] Reference Figure 3 The question-and-answer detection method used by visitors includes the following steps:

[0132] S2720: Signal acquired by the acquisition device.

[0133] The device wearing status signal refers to the signal used to monitor whether the device has been touched or moved after it has been worn. The device wearing signal is acquired by the signal transceiver on the detection device.

[0134] The detection device has a built-in pressure sensor. When the device is in contact with the human body, the pressure sensor continuously senses the pressure value. If the device is touched, causing a change in position or being removed from the human body, the change in pressure value triggers signal transmission, which is then transmitted to the signal transceiver.

[0135] S27200: When the device wearing signal is consistent with the preset device touch signal, report the device touch warning and collect the number of touch warnings.

[0136] A device touch signal refers to a signal indicating that the detection device has been touched after it has been put into use. Device touch signals are preset by those skilled in the art and will not be elaborated upon here.

[0137] The touch warning count refers to the number of times a visitor has triggered a device touch warning. The touch warning count is obtained by counting using a preset electronic counter.

[0138] When the device wearing signal and the device touch signal are consistent, it means that the detection device has been touched after being worn. A device touch warning needs to be reported to warn the current visitors not to touch the detection device. At the same time, the number of touch warnings is collected for subsequent steps.

[0139] S27201: When the number of trigger warnings does not exceed the preset baseline number of warnings, update the specific questions based on the question database, and ask the current visitor the updated specific questions.

[0140] The baseline number of warnings refers to the threshold number of times a warning has been triggered. This baseline number of warnings is preset by those skilled in the art and will not be elaborated upon here.

[0141] If the number of warnings triggered does not exceed the baseline number of warnings, it means that the number of warnings triggered is not excessive, and the current visitor can be given a chance to answer. The specific question should be updated first, and the current visitor should be asked the question with the updated specific question before proceeding to steps S272 to S275.

[0142] S27202: When the number of trigger warnings exceeds the preset baseline number of warnings, report a query exception and close the task repository.

[0143] When the number of warnings triggered exceeds the baseline number, it indicates that too many warnings have been triggered. An error message should be reported and the task repository should be closed to stop the query task.

[0144] Reference Figure 4 The question-and-answer detection method also includes the following steps:

[0145] S2721: Collect video information of the answers.

[0146] Video responses refer to the video of the visitor answering questions. These video responses are recorded via webcam.

[0147] S27210: Determine whether the current visitor is speaking based on the video response information.

[0148] By analyzing the video footage, we can determine whether the interviewee's mouth is open or closed, thus indicating whether they are speaking, for subsequent steps. Analyzing video footage to determine if someone is speaking is common knowledge in this field and will not be elaborated upon here.

[0149] S27211: When there is a speaking situation, generate speaking lip movements based on the response video information and preset mouth features.

[0150] Mouth features refer to the external shape of a person's mouth. Mouth features are predetermined by those skilled in the art and will not be elaborated upon here.

[0151] If the interviewee's mouth is opening and closing, it indicates that the interviewee is speaking. The movement of the mouth features needs to be identified from the video feed to determine the lip-syncing for subsequent steps. Identifying mouth movement features from video is common knowledge in this field and will not be elaborated upon here.

[0152] S27212: Generate lip-sync content based on speaking lip movements.

[0153] Lip-sync content refers to the content spoken by the current visitor. A pre-defined lip-sync-speech algorithm model can generate corresponding lip-sync content from the received lip movements. The lip-sync-speech algorithm model is common knowledge in this field and will not be elaborated upon here.

[0154] S27213: Generate content relevance based on lip movements and the specific question asked.

[0155] Content relevance refers to the degree of semantic matching between lip-sync content and the specific question asked. A pre-defined similarity calculation algorithm can be used to calculate the content relevance between lip-sync content and the specific question asked. This similarity calculation algorithm is common knowledge in the field and will not be elaborated upon here.

[0156] S27214: When the content relevance exceeds the preset baseline relevance, report an abnormal response warning.

[0157] The benchmark relevance refers to the relevance threshold used to compare whether the content relevance is too high. The benchmark relevance is set in advance by those skilled in the art and will not be elaborated here.

[0158] When the content relevance exceeds the baseline relevance, it indicates that the content relevance is too high. An abnormal response warning needs to be reported. At the same time, the number of subsequent collection touch warnings can be executed from S27200 to S27202.

[0159] Reference Figure 5 The question-and-answer detection method also includes the following steps:

[0160] S2722: Collect video information of the answers.

[0161] This step is the same as S2721 above, and will not be repeated here.

[0162] S27220: Perform eye tracking on the current visitor from the video response information to determine if the current visitor's eyes are shifting.

[0163] This method uses eye tracking of the interviewee's eyes during video responses to determine whether their eyes shift while answering questions. Eye tracking technology is common knowledge in the field and will not be elaborated upon here.

[0164] S27221: When eye shift occurs, generate the shift direction based on the response video information and preset eye features, and acquire the shift image information.

[0165] Eyeball characteristics refer to the external features of the eyeball. These characteristics are predetermined by those skilled in the art and will not be elaborated upon here.

[0166] The offset direction refers to the direction in which the visitor's eyes are shifting. This offset direction can be obtained by tracking eye features from the video feed. Eye-tracking technology is common knowledge in this field and will not be elaborated upon here.

[0167] Offset image information refers to the image along the offset direction. Offset image information is obtained by capturing images with a camera.

[0168] If the current visitor's eyes are shifted, the direction of the shift must be generated first, and then the shift image information must be collected for subsequent steps.

[0169] S27222: When the offset image information contains preset problem prompt features, report the query anomaly prompt and close the task repository.

[0170] Question prompting features refer to features that provide suggestions for the current visitor's answer to a question. In this embodiment, question prompting features include teleprompters and other personnel. Specific question prompting features are preset by those skilled in the art and will not be elaborated here.

[0171] When the offset image information contains problem indication features, the query error message must be reported and the task repository must be closed.

[0172] S27223: When the offset image information does not contain the preset problem prompt feature, report an eye offset warning.

[0173] When the offset image information does not contain the problem prompt feature, an eye offset warning must be reported, and the subsequent number of acquisition touch warnings can be executed from S27200 to S27202.

[0174] It also includes the following steps:

[0175] S3: When the chromatographic data transmission status is in the preset transmission interruption state, collect the interruption alarm signal.

[0176] An interruption alarm signal is a signal issued by the data transmission terminal when the transmission of chromatographic data is interrupted. The interruption alarm signal is acquired after being sent by the transceiver on the data transmission terminal.

[0177] When the chromatographic data transmission status is interrupted, it indicates that the transmission of chromatographic data has been interrupted. An interruption alarm signal needs to be collected for subsequent steps.

[0178] S30: Generate a transmission interruption reason based on the interruption alarm signal.

[0179] The cause of transmission interruption refers to the specific reason for the interruption in the transmission of chromatographic data. A pre-defined interruption signal lookup table can be used to find the corresponding transmission interruption cause for each interruption alarm signal. This lookup table records the different transmission interruption causes corresponding to different interruption alarm signals. The interruption signal lookup table was created by those skilled in the art through sequential recording of the different transmission interruption causes corresponding to different interruption alarm signals, and will not be elaborated upon here.

[0180] S31: Determine the interruption handling method based on the cause of the transmission interruption.

[0181] Interrupt handling methods refer to methods used to handle transmission interruptions. Specific interrupt handling methods will be described in detail in subsequent sections S320 to S3204, S321, and S323, and will not be repeated here.

[0182] The interrupt handling alignment table can be used to find the interrupt handling method corresponding to the transmission interruption cause. The table records different interrupt handling methods corresponding to different transmission interruption causes. The interrupt handling alignment table is formed by those skilled in the art recording the different interrupt handling methods corresponding to different transmission interruption causes in sequence, which will not be elaborated here.

[0183] S32: Use interrupt handling methods to handle interrupt exceptions.

[0184] Once an interrupt handling method is generated, it must be used to handle interrupt exceptions in order to restore data transmission.

[0185] The interrupt handling method includes the following steps:

[0186] S320: When the transmission interruption is due to network outage, collect the abnormal terminal number.

[0187] The network anomaly terminal number refers to the number of the data transmission terminal that experienced a network anomaly. In this embodiment, each data transmission terminal has a corresponding number. The specific numbering is predetermined by those skilled in the art and will not be elaborated here.

[0188] By querying the IP address of currently offline devices using the ARP protocol, the abnormal terminal number can be obtained. The ARP protocol is common knowledge in this field and will not be elaborated upon here.

[0189] When the transmission interruption is due to network outage, it indicates that the network of the data transmission terminal is abnormal. The terminal number of the abnormal network needs to be collected first for subsequent steps.

[0190] S3200: Obtain the network abnormal terminal based on the network abnormal terminal number.

[0191] Since each data transmission terminal is assigned a corresponding number, by knowing the number of the network-abnormal terminal, we can identify the specific data transmission terminal that is experiencing network problems, and thus determine the network-abnormal terminal.

[0192] S3201: Obtain the network supply device number through a network malfunction terminal.

[0193] The network supply device number refers to the number of the network supply device used to provide network services to terminals experiencing network malfunctions. The network supply device is a device used to provide network services to terminals experiencing network malfunctions.

[0194] The network supply device number corresponding to the abnormal network terminal can be found by using the preset network supply comparison table. The table records the different network supply device numbers corresponding to different abnormal network terminals. The network supply comparison table is formed by those skilled in the art recording the different network supply device numbers corresponding to different abnormal network terminals in sequence, which will not be elaborated here.

[0195] S3202: Controls the start of the network supply device corresponding to the network supply device number, and controls the network abnormal terminal to connect to the network.

[0196] The system controls the activation of the network supply device corresponding to the network supply device number, and controls the network-abnormal terminal to connect to the network, thereby restoring the network of the network-abnormal terminal.

[0197] S3203: After the network connection is completed, control the terminal with network malfunction to re-transmit data and update the chromatographic data transmission status.

[0198] Once the network connection is established, the terminal that experienced a network malfunction will re-initiate data transmission and re-collect the chromatographic data transmission status to update the chromatographic data transmission status.

[0199] S3204: When the updated chromatographic data transmission status is still in the transmission interruption state, report a transmission error message.

[0200] If the updated chromatographic data transmission status is still in the interrupted state, it means that the data transmission terminal is still unable to complete the data transmission. A transmission error message needs to be reported to prompt staff to carry out further inspection.

[0201] The interrupt handling method also includes the following steps:

[0202] S321: When the transmission interruption is caused by a power outage, collect the number of terminals that are powered off.

[0203] The number of power outage terminals refers to the number of data transmission terminals that experienced a power outage. The number of power outage terminals can be obtained by counting the data transmission terminals that experienced power outages.

[0204] When the transmission interruption is due to a power outage, it indicates a power failure at the data transmission terminal. The number of power outages needs to be collected for subsequent steps.

[0205] S3210: When the number of power outage terminals is lower than the preset baseline number of power outage terminals, collect the power outage terminal numbers.

[0206] The baseline power outage quantity refers to the threshold number used to determine whether the number of power outage terminals is excessive. The number of power outage terminals is preset by those skilled in the art and will not be elaborated here.

[0207] The power outage terminal number refers to the serial number of the power outage terminal. A power outage terminal is a data transmission terminal that has experienced a power outage. The intelligent PDU can identify the port experiencing the power outage, and a preset port-to-number lookup table can be used to find the corresponding power outage terminal number. This table records the different terminal numbers corresponding to different ports. The port-to-number lookup table was created by those skilled in the art through sequential recording of the different terminal numbers corresponding to different ports, and will not be elaborated upon here.

[0208] When the number of power outage terminals is lower than the baseline number of power outage terminals, it indicates that the number of power outage terminals is not excessive. It is necessary to collect the power outage terminal numbers first for subsequent steps.

[0209] S32100: Obtain the required power supply circuit number based on the power failure terminal number.

[0210] The demand power supply circuit number refers to the circuit number on the auxiliary power supply device used to provide power to the power outage terminal. The auxiliary power supply device refers to the device used to provide supplementary power to the power outage terminal.

[0211] The power supply reference table can be used to look up the required power supply circuit number corresponding to the power outage terminal number. The table records the different required power supply circuit numbers corresponding to different power outage terminal numbers. The power supply reference table is formed by those skilled in the art recording the different required power supply circuit numbers corresponding to different power outage terminal numbers in sequence, which will not be elaborated here.

[0212] The power outage terminal number corresponding to the port with the power outage can be found by using the preset port-number lookup table. The table records the different terminal numbers corresponding to different ports. The port-number lookup table is formed by those skilled in the art recording the different terminal numbers corresponding to different ports in sequence, which will not be elaborated here.

[0213] S32101: Controls the preset auxiliary power supply device to start the power supply circuit corresponding to the required power supply circuit number, thereby supplying power to the power-off terminal.

[0214] The auxiliary power supply device is controlled to start the power supply circuit corresponding to the required power supply circuit number, thereby supplying power to the power-off terminal and enabling the data transmission terminal to resume data transmission.

[0215] S3211: When the number of power-off terminals is not less than the preset baseline number of power-off terminals, the preset auxiliary power supply device is activated to provide global power supply.

[0216] When the number of power outage terminals is not less than the baseline number of power outage terminals, it indicates that the number of power outage terminals is too large, and the auxiliary power supply device needs to be directly started to provide global power supply.

[0217] S322: After power is restored, control the power-off terminal to resume data transmission and update the chromatographic data transmission status.

[0218] Once power is restored, the control terminal resumes data transmission and re-acquires the chromatographic data transmission status to update the chromatographic data transmission status.

[0219] S323: When the updated chromatographic data transmission status is still in the transmission interruption state, report a transmission error message.

[0220] If the updated chromatographic data transmission status is still in the interrupted state, it means that the data transmission terminal is still unable to complete the data transmission. A transmission error message needs to be reported to prompt staff to carry out further inspection.

[0221] Based on the same inventive concept, embodiments of the present invention provide a chromatography data monitoring and management system, including:

[0222] The data acquisition module is used to collect data on chromatographic data transmission status, chromatographic data transmission information, chromatographic task flow, access image information, demand query information, personnel verification results, wear signals, personnel response content, equipment wear signals, number of touch warnings, response video information, offset image information, interruption alarm signals, network abnormal terminal number, number of power-off terminals, and power-off terminal number.

[0223] A memory for storing a program that implements a method for monitoring and managing chromatographic data;

[0224] The processor is used to load and execute programs stored in memory.

[0225] Those skilled in the art will clearly understand that, for the sake of convenience and brevity, the above-described division of functional modules is used as an example. In practical applications, the above functions can be assigned to different functional modules as needed, that is, the internal structure of the device can be divided into different functional modules to complete all or part of the functions described above. The specific working process of the system, device, and unit described above can be referred to the corresponding process in the foregoing method embodiments, and will not be repeated here.

[0226] The above description is merely a preferred embodiment of the present invention. The scope of protection of the present invention is not limited to the above embodiments. All technical solutions falling within the scope of the present invention's concept are within the scope of protection of the present invention. It should be noted that for those skilled in the art, any improvements and modifications made without departing from the principle of the present invention should also be considered within the scope of protection of the present invention.

Claims

1. A method for monitoring and managing chromatographic data, characterized in that, include: S1: Status of acquiring chromatographic data transmission; S2: When the chromatographic data transmission status is not a preset transmission interruption status, collect the chromatographic data transmission information; S20: Retrieve data priority and data resource utilization rate based on the chromatographic data transmission information; S21: Generate a data transmission order based on the data priority and the data resource occupancy rate; S22: Data transmission is performed according to the data transmission sequence, and the chromatography task flow is collected; S23: Generate a chromatography task log based on the chromatography task process, and write the chromatography task log into a preset task repository; It also includes data query methods for the task repository: S24: Receive data query signal; S25: In response to the data query signal, acquire access image information and demand query information; S26: Perform facial recognition on the access image information to obtain the current visitor; S27: When the current visitor falls into the preset personnel database, perform personnel verification using the preset personnel verification method and collect the personnel verification results; S28: When the personnel verification result is a preset verification pass result, control the preset task storage terminal to display the demand query information as data; The personnel verification method includes: S270: Control the preset task storage terminal to prompt the device to be worn, and collect the wear signal of the preset detection device; S271: When the wearing signal is consistent with the preset wearing completion signal, a question database is generated based on the demand query information; S272: Generate specific questions based on the question database, and ask the current visitor the specific questions, while collecting the visitor's answers; S273: Generate a baseline answer based on the specific question asked; S274: When the personnel's answer is inconsistent with the baseline answer, an abnormality alert should be reported. S275: When the person's answer matches the baseline answer, output a verification pass result; It also includes a question-and-answer detection method when the current visitor answers questions: S2720: Signal acquired by the acquisition device; S27200: When the device wearing signal is consistent with the preset device touch signal, a device touch warning is reported and the number of touch warnings is collected; S27201: When the number of touch warnings does not exceed the preset baseline number of warnings, update the specific questions based on the question database, and ask the current visitor the updated specific questions; S27202: When the number of touch warnings exceeds the preset baseline number of warnings, report a query anomaly and close the task repository.

2. The method for monitoring and managing chromatographic data according to claim 1, characterized in that, The question-and-answer detection method also includes: S2721: Collect video information from responses; S27210: Determine from the response video information whether the current visitor is speaking; S27211: When there is a speaking situation, generate speaking lip movements based on the response video information and preset mouth features; S27212: Generate lip-sync content based on the spoken lip movements; S27213: Generate content relevance based on the lip-sync content and the specific question asked; S27214: When the content relevance exceeds the preset benchmark relevance, report an abnormal response warning.

3. The method for monitoring and managing chromatographic data according to claim 1, characterized in that, The question-and-answer detection method also includes: S2722: Collect video information from responses; S27220: Perform eye tracking on the current visitor from the response video information to determine whether the current visitor's eyes are shifting; S27221: When eye displacement occurs, the displacement direction is generated based on the response video information and preset eye features, and the displacement image information is acquired; S27222: When the offset image information contains a preset problem prompt feature, report a query anomaly prompt and close the task repository; S27223: When the offset image information does not contain a preset problem prompt feature, report an eye offset warning.

4. The method for monitoring and managing chromatographic data according to claim 1, characterized in that, Also includes: S3: When the chromatographic data transmission status is a preset transmission interruption status, an interruption alarm signal is collected; S30: Generate a transmission interruption cause based on the interruption alarm signal; S31: Determine the interruption handling method based on the stated cause of the transmission interruption; S32: Use the interrupt handling method described above to handle interrupt exceptions.

5. The method for monitoring and managing chromatographic data according to claim 4, characterized in that, The interrupt handling method includes: S320: When the transmission interruption is due to a network outage, collect the network abnormal terminal number; S3200: Obtain the abnormal network terminal based on the abnormal network terminal number; S3201: Obtain the network supply device number through the network abnormal terminal; S3202: Control the network supply device corresponding to the network supply device number to start, and control the network abnormal terminal to connect to the network; S3203: After the network connection is completed, control the network malfunction terminal to re-transmit data and update the chromatographic data transmission status; S3204: If the updated chromatographic data transmission status is still in the transmission interruption status, report a transmission error message.

6. The method for monitoring and managing chromatographic data according to claim 4, characterized in that, The interrupt handling method further includes: S321: When the transmission interruption is caused by a power outage, collect the number of terminals that are powered off. S3210: When the number of power-off terminals is lower than the preset baseline number of power-off terminals, collect the power-off terminal numbers; S32100: Obtain the required power supply circuit number based on the power outage terminal number; S32101: Control the preset auxiliary power supply device to start the power supply circuit corresponding to the required power supply circuit number, so as to supply power to the power failure terminal; S3211: When the number of power-off terminals is not less than the preset baseline number of power-off terminals, the preset auxiliary power supply device is activated to provide global power supply. S322: After power is restored, control the power-off terminal to resume data transmission and update the chromatographic data transmission status; S323: If the updated chromatographic data transmission status is still in the transmission interruption status, report a transmission error message.

7. A chromatography data monitoring and management system, characterized in that, include: The data acquisition module is used to acquire chromatographic data transmission status, chromatographic data transmission information, and chromatographic task flow. A memory for storing a program that implements a chromatographic data monitoring and management method as described in any one of claims 1 to 6; The processor is used to load and execute programs stored in memory.

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