Disinfection monitoring system

By monitoring the entire process of disinfection operations through a disinfection monitoring system, the problems of non-standard use of chemicals and supervision in existing technologies have been solved, and the disinfection operations have achieved visualized management and safety assurance.

CN121763880APending Publication Date: 2026-03-31SHENZHEN BEIKANG TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-12-24
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

Existing disinfection services suffer from violations such as substandard dosage of pesticides, failure to cover designated areas with work routes, and insufficient work time at single locations. Furthermore, regulatory authorities have difficulty verifying the authenticity and standardization of the operations, making it difficult to guarantee the quality and safety of disinfection.

Method used

A disinfection monitoring system was designed, including an integrated disinfection monitoring platform, an information input module, a pharmacy terminal, a disinfection personnel terminal, and a disinfection equipment terminal. Through data collection, transmission, and visualization, the system enables full-process monitoring and management of disinfection operations.

Benefits of technology

It enables full-process visual monitoring of disinfection operations, timely detection of abnormalities, improvement of disinfection service quality, and protection of public health and environmental safety.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The invention discloses a disinfection and sterilization monitoring system, and the system comprises a disinfection and sterilization monitoring integrated platform which is used for information receiving, information processing, data storage and instruction scheduling; the information input module is used for transmitting ecological environment parameters of a to-be-killed area to the killing and monitoring integrated platform so that the killing and monitoring integrated platform can generate a killing parameter information instruction according to the ecological environment parameters; the dispensing room terminal comprises a first receiving module and a first data return module, the first receiving module is used for receiving a dispensing instruction sent by the sterilizing and monitoring integrated platform, and the first data return module is used for returning dispensing state data to the sterilizing and monitoring integrated platform; the disinfection and killing personnel terminal is used for receiving the disinfection and killing instruction; the disinfecting and killing equipment terminal is used for executing disinfecting and killing operation; and the display terminal is used for visually displaying the related disinfection state and the disinfection data information in real time. According to the invention, full-process visual monitoring can be carried out on disinfection work.
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Description

Technical Field

[0001] This invention relates to the field of disinfection and monitoring technology, and in particular to a disinfection and monitoring system. Background Technology

[0002] Disinfection is closely related to daily life. It is not only a "basic line of defense" to ensure health and safety, but also an important part of maintaining a clean and comfortable living environment.

[0003] However, the current regulatory system in the field of disinfection services and related operations has many shortcomings, making it difficult to effectively control the entire disinfection process. For example, disinfection personnel may violate regulations by using the wrong dosage of disinfectants, failing to cover designated areas with their work routes, or not performing sufficient work at a single site. Furthermore, the reliance on manual record-keeping makes data falsification and omissions easy to occur. Regulatory departments cannot verify the authenticity and compliance of operations, failing to establish a closed-loop regulatory chain. This makes it difficult for regulatory departments to promptly detect anomalies in disinfection operations, affecting the overall quality of disinfection services and failing to guarantee public health and environmental safety. Therefore, an intelligent regulatory system is urgently needed to fill these regulatory gaps. Summary of the Invention

[0004] In order to overcome the shortcomings of existing technologies, this invention proposes a disinfection monitoring system, which aims to provide full-process visual monitoring of disinfection operations.

[0005] To solve the above-mentioned technical problems, the basic technical solution proposed by this invention is as follows:

[0006] A disinfection and monitoring system, comprising:

[0007] The integrated disinfection and monitoring platform is used for receiving information, processing information, storing data, and scheduling instructions.

[0008] The information input module is connected to the integrated disinfection and monitoring platform. It is used to input the ecological environment parameters of the area to be disinfected and transmit them to the integrated disinfection and monitoring platform so that the integrated disinfection and monitoring platform can generate disinfection parameter information instructions based on the ecological environment parameters.

[0009] The pharmacy terminal includes a first receiving module and a first data feedback module. The first receiving module is used to receive the dispensing instructions sent by the integrated disinfection and monitoring platform. The first data feedback module is used to send the dispensing status data back to the integrated disinfection and monitoring platform. When the first receiving module receives the dispensing instructions from the integrated disinfection and monitoring platform, the dispensing personnel take out the relevant medicines according to the dispensing instructions sent by the integrated disinfection and monitoring platform and then send back the dispensing status information through the first data feedback module.

[0010] The disinfection personnel terminal is used to receive disinfection instructions. After receiving the medication status information returned by the pharmacy terminal, the integrated disinfection and monitoring platform automatically generates disinfection instructions and sends them to the disinfection personnel terminal.

[0011] The disinfection equipment terminal is used to perform disinfection operations. Disinfection personnel receive the corresponding disinfectant according to the disinfection instruction information, and then use the disinfection equipment terminal to carry out disinfection operations.

[0012] The disinfection equipment terminal includes a first data acquisition module and a second data feedback module. The first data acquisition module is used to collect information related to the disinfection operation, and the second data feedback module is used to send the data collected by the first data acquisition module back to the integrated disinfection monitoring platform.

[0013] The display terminal is connected to the integrated disinfection and monitoring platform to provide real-time visual display of relevant disinfection status and data information.

[0014] Preferably, the integrated disinfection and monitoring platform includes a data storage module, an instruction scheduling module, a data processing module, and a second receiving module. The data storage module is used to store data information; the instruction scheduling module is used to issue instructions to the pharmacy terminal and the disinfection personnel terminal; the data processing module is used to process the information collected by the first data acquisition module; and the second receiving module is used to receive information from the information input module, the first data feedback module, and the second data feedback module.

[0015] Preferably, the first data acquisition module includes a geographic location unit, a disinfection duration statistics unit, and a disinfection image / video acquisition unit. The geographic location unit is used to acquire the geographic location information of the disinfection equipment terminal; the disinfection duration statistics unit is used to detect and count the working time of the disinfection equipment terminal; and the disinfection image / video acquisition unit is used to acquire relevant images or videos of the disinfection equipment terminal during its working process.

[0016] Preferably, the first data acquisition module (61) is further provided with a drug dosage monitoring unit, which includes a flow sensor for real-time recording of the dosage and spraying amount of disinfectant in the disinfection equipment terminal (6).

[0017] Preferably, the first data acquisition module is equipped with an identity verification unit for verifying the identity information of disinfection personnel.

[0018] Preferably, the integrated pest management and monitoring platform is connected to several second data acquisition modules for monitoring and collecting pest quantity data at the target location. When the number of pests exceeds the warning value, the relevant data is transmitted back to the integrated pest management and monitoring platform. After receiving the data transmitted back by the second data acquisition modules, the integrated pest management and monitoring platform sends a dispensing instruction to the dispensing room terminal.

[0019] Preferably, the second data acquisition module includes an image recognition counting unit / infrared sensing counting unit / ultrasonic detection counting unit, used to monitor the number of pests at the target location.

[0020] Preferably, it also includes a monitoring terminal, which is connected to the integrated disinfection and monitoring platform for viewing relevant disinfection data and monitoring whether the disinfection is in place.

[0021] Preferably, the integrated disinfection and monitoring platform is equipped with an access control module for managing data viewing permissions. The monitoring terminal can only view relevant data after obtaining the necessary permissions.

[0022] Preferably, the pharmacy terminal (4) is equipped with a QR code generation module and a QR code scanning module. After the medicine is prepared, the QR code generation module generates a corresponding medicine retrieval QR code and transmits it back to the integrated disinfection and monitoring platform (1) through the first data feedback module. The QR code scanning module is used to scan the QR code to read information. When the integrated disinfection and monitoring platform (1) issues a disinfection instruction, it sends the medicine retrieval QR code to the disinfection personnel terminal (5) so that the disinfection personnel can retrieve the corresponding medicine by using the QR code.

[0023] Preferably, the disinfection equipment terminal is also equipped with the QR code scanning module, which is used to scan the QR code to obtain the agent information, so that the disinfection equipment terminal is bound to the corresponding agent information, and the second data feedback module sends the disinfection equipment terminal information and agent information back to the integrated disinfection monitoring platform.

[0024] The beneficial effects of this invention are:

[0025] The technical solution of this invention involves inputting disinfection parameter information, such as disinfection location, target, and related environmental conditions, through an information input module. This information is then sent to an integrated disinfection monitoring platform. Upon receiving the parameter information, the platform automatically generates a corresponding pesticide formulation and sends a dispensing instruction to the dispensing room terminal. After receiving the dispensing instruction, personnel at the dispensing room terminal prepare the disinfection pesticide according to the formulation information. The first data feedback module at the dispensing room terminal then transmits information such as dispensing time, dispensing completion status, and dispensing completion time back to the integrated disinfection monitoring platform. The platform records and stores the data returned from the pharmacy terminal and sends disinfection instructions to the disinfection personnel's terminals. The disinfection instructions may include information such as the disinfection location, time, and agent collection. Then, the disinfection personnel collect the corresponding prepared agents according to the received disinfection instructions and use the disinfection equipment terminal to carry out disinfection. During the disinfection process, the disinfection agent terminal collects local status information of the disinfection agent terminal through the first data acquisition module, such as geographical location information, movement trajectory information, disinfection duration information, and relevant disinfection operation photos or videos, and then transmits it back to the integrated disinfection monitoring platform for recording and storage through the second data feedback module.

[0026] The disinfection monitoring system records and monitors information entered by the information entry module, drug information from the dispensing terminal, and local information from the disinfection equipment terminal, achieving full-process monitoring. This information is then displayed on a display terminal for visualization and easy viewing. Furthermore, the drugs are pre-prepared at the dispensing terminal, allowing disinfection personnel to directly collect and use them without needing to prepare them themselves. This prevents personnel from altering the drug formula, which could lead to unsatisfactory disinfection results. Additionally, the first data acquisition module on the disinfection equipment terminal can detect data such as drug usage, disinfection duration, and the equipment's movement trajectory, enabling monitoring of situations such as insufficient drug usage, inadequate disinfection duration, and deviation from the target disinfection location. Attached Figure Description

[0027] Figure 1 This is a schematic diagram of a disinfection and monitoring system according to the present invention;

[0028] Figure 2 This is a schematic diagram of an integrated disinfection and monitoring platform for a disinfection and monitoring system according to the present invention.

[0029] Figure 3 This is a schematic diagram of the first data acquisition module of a disinfection and monitoring system according to the present invention;

[0030] Figure 4 This is a schematic diagram of the second data acquisition module of a disinfection and monitoring system according to the present invention;

[0031] Figure 5This is a schematic diagram of the permission management module of a disinfection and monitoring system according to the present invention.

[0032] Explanation of reference numerals in the attached figures:

[0033] 1. Integrated disinfection and monitoring platform; 2. Information input module; 3. Display terminal; 4. Pharmacy terminal; 5. Disinfection personnel terminal; 6. Disinfection equipment terminal; 7. Second data acquisition module; 11. Data storage module; 12. Command scheduling module; 13. Data processing module; 14. Second receiving module; 41. First receiving module; 42. First data feedback module; 61. First data acquisition module; 62. Second data feedback module; 611. Geographic location unit; 612. Disinfection duration statistics unit; 613. Disinfection image / video acquisition unit. Detailed Implementation

[0034] The following will be combined with the appendix Figure 1 To be continued Figure 5 The technical solutions in the embodiments of the present invention have been clearly and completely described. Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of them. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present invention.

[0035] The present invention aims to build a system that can visualize and monitor the entire process of disinfection operations, promptly detect abnormalities in disinfection operations, improve the overall quality of disinfection services, and safeguard public health and environmental safety.

[0036] Therefore, this embodiment proposes a disinfection monitoring system, such as... Figure 1 As shown, it includes:

[0037] The integrated disinfection and monitoring platform 1 is used for receiving information, processing information, storing data, and scheduling instructions.

[0038] Information input module 2 is connected to the integrated disinfection and monitoring platform 1. It is used to input ecological environment parameters of the area to be disinfected and transmit them to the integrated disinfection and monitoring platform 1 so that the integrated disinfection and monitoring platform 1 can generate disinfection parameter information instructions based on the ecological environment parameters.

[0039] The pharmacy terminal 4 includes a first receiving module 41 and a first data feedback module 42. The first receiving module 41 is used to receive the dispensing instruction sent by the integrated disinfection and monitoring platform 1. The first data feedback module 42 is used to send the dispensing status data back to the integrated disinfection and monitoring platform 1. When the first receiving module 41 receives the dispensing instruction from the integrated disinfection and monitoring platform 1, the dispensing personnel take out the relevant medicine according to the dispensing instruction sent by the integrated disinfection and monitoring platform 1 and then send back the dispensing status information through the first data feedback module 42.

[0040] The disinfection personnel terminal 5 is used to receive disinfection instructions. After receiving the medication status information returned by the pharmacy terminal 4, the integrated disinfection and monitoring platform 1 automatically generates a disinfection instruction and sends it to the disinfection personnel terminal 5.

[0041] The disinfection equipment terminal 6 is used to perform disinfection operations. Disinfection personnel receive the corresponding disinfectant according to the disinfection instruction information, and then use the disinfection equipment terminal 6 to carry out disinfection operations.

[0042] The disinfection equipment terminal 6 includes a first data acquisition module 61 and a second data feedback module 62. The first data acquisition module 61 is used to collect information related to the disinfection operation, and the second data feedback module 62 is used to send the data collected by the first data acquisition module 61 back to the integrated disinfection monitoring platform 1.

[0043] Display terminal 3 is connected to the integrated disinfection and monitoring platform 1 and is used to display relevant disinfection status and disinfection data information in real time.

[0044] In detail, the integrated disinfection and monitoring platform 1 can utilize a high-performance server as its hardware platform, running a Linux operating system to ensure system stability and compatibility. The platform deploys specially developed disinfection and monitoring software, employing a B / S (Browser / Server) architecture, allowing users to access it via browsers on various terminal devices. The software uses a MySQL database for data storage, enabling efficient processing and storage of massive amounts of disinfection-related information. Simultaneously, the platform possesses an intelligent command scheduling algorithm, rationally allocating commands based on different task priorities and resource availability.

[0045] Information entry module 2 is integrated into the information registration device and can be used on a computer, mobile phone, or tablet. The integrated disinfection and monitoring platform has a dedicated information entry interface, which is integrated into the web page of the integrated disinfection and monitoring platform. After logging into the integrated disinfection and monitoring platform, the information registration device enters the information login interface to enter information. The data entry personnel use input devices such as keyboard and mouse to accurately enter disinfection parameter information, such as disinfection area, disinfection time, disinfection agent formula and dosage, and disinfection environment (indoor or outdoor).

[0046] After receiving the information entered by the information entry module, the integrated disinfection and monitoring platform automatically generates a suitable drug formula and issues a drug dispensing instruction to the dispensing room terminal.

[0047] This can be achieved by building a database and then matching the entered information against the database. Specifically: A database is built using the relational database management system MySQL 8.0. The database contains several key data tables:

[0048] Disinfection Environment Table: Records detailed information about different disinfection environments, such as environment type (indoor / outdoor, warehouse / office area, etc.), area, temperature, humidity, and other fields.

[0049] Pest Information Sheet: Stores relevant data on various pests, including pest species, habits, and sensitivity to different pesticides.

[0050] Pesticide formulation table: Saves different pesticide formulations and their applicable conditions, including pesticide ingredients, proportions of each ingredient, applicable pest species, applicable environment, and other information.

[0051] Historical pest control record sheet: Records detailed data of past pest control tasks, such as pest control environment, pest density, pesticide formulation used, and pest control effect, for data analysis and model optimization.

[0052] Based on the entered pest control environment information (such as prioritizing pesticides with no volatile residues for indoor environments) and pest species information (different pests are sensitive to specific pesticides), the platform filters out a set of potentially applicable pesticide formulations from the pesticide formulation table. For example, if the entered pest is a cockroach and the environment is a kitchen, the platform will filter out pesticide formulations that are effective against cockroaches and suitable for kitchen environments.

[0053] Then, using historical pest control records, a prediction model is constructed using the Gradient Boosting Decision Tree (GBDT) algorithm. The model's input includes environmental characteristics (such as area, temperature, and humidity), pest density, and the characteristics of preliminarily selected pesticide formulations (components, proportions, etc.). The output is the predicted pest control effectiveness score. Through training on historical data, the model learns the patterns of pest control effectiveness for various pesticide formulations under different conditions. For the current input pest control environment and pest density information, the model scores each preliminarily selected pesticide formulation and selects the formulation with the highest score as the final generated formulation.

[0054] Taking into account real-time environmental changes and the characteristics of newly emerging pests, the platform has a real-time adjustment mechanism. If the actual pest control effect deviates significantly from the predicted effect within a certain period (e.g., one week), the platform will automatically collect relevant data and retrain the machine learning model to improve the accuracy of formula generation.

[0055] Once the final pesticide formula is determined, the platform generates detailed preparation instructions. These instructions include the pesticide name, the specific dosage of each ingredient, and the preparation steps. For example, the instructions might state, "To prepare a pesticide named 'High-Efficiency Cockroach Killer,' take 500 grams of ingredient A and 300 grams of ingredient B. First, pour ingredient A into a mixing container, then slowly add ingredient B and continue stirring for 10 minutes."

[0056] Optionally, during information entry, an automatic formula production button and a manual formula input button can be set. When the automatic formula production button is clicked, the platform automatically produces the corresponding formula. When the manual formula input button is clicked, the integrated disinfection and monitoring platform directly sends the input information and dispensing instructions to the pharmacy terminal.

[0057] The dispensing terminal 4 uses an industrial panel PC or desktop computer as its hardware and installs customized dispensing terminal 4 software. The first receiving module 41 connects to the integrated disinfection and monitoring platform based on a network communication protocol (such as TCP / IP) and listens for dispensing instructions sent by the platform in real time. The first data feedback module 42 also uses network communication to encapsulate dispensing status data, such as dispensing start time, completed dispensing, and completion time, in JSON format and send it back to the integrated disinfection and monitoring platform.

[0058] The disinfection personnel terminal 5 is a mobile smart device with network communication capabilities, such as a smartphone or tablet. A customized app for disinfection personnel is installed, which communicates with the integrated disinfection and monitoring platform via a wireless network. Once the pharmacy terminal 4 uploads the dispensing completion status, the integrated disinfection and monitoring platform sends disinfection instructions to the app on the disinfection personnel terminal 5 via a push notification mechanism. Disinfection personnel can view detailed disinfection instruction information on the app interface.

[0059] The disinfection equipment terminal 6 can select various types of disinfection equipment, such as backpack sprayers and vehicle-mounted disinfection equipment, according to different disinfection scenarios and needs, and is equipped with customized intelligent control modules. The first data acquisition module 61 uses various sensors, such as temperature sensors, humidity sensors, and spray volume sensors, to collect relevant information about the disinfection operation in real time, such as the temperature and humidity of the disinfection environment and the actual amount of pesticide sprayed. The second data transmission module 62 connects to the integrated disinfection monitoring platform via wireless communication methods such as Bluetooth or Wi-Fi, and uploads the collected data to the platform after encryption.

[0060] Display terminal 3 can be equipped with devices such as LCD screens or LED screens, and the corresponding display driver software is installed. Display terminal 3 is connected to the integrated disinfection and monitoring platform via network, displaying the disinfection status and data information sent by the platform, and visually displaying it in intuitive forms such as charts and reports, so that managers can easily grasp the progress of disinfection work in real time.

[0061] The specific system workflow in this embodiment is as follows:

[0062] Before the disinfection work begins, relevant staff log in to the information entry interface of the integrated disinfection and monitoring platform and enter detailed information in the information entry module 2 according to the actual situation, such as disinfection location, area, pest name, environment (indoor or outdoor) and other disinfection parameters. After the information is entered, it is uploaded to the integrated disinfection and monitoring platform and automatically stored in the platform's database.

[0063] After receiving the disinfection parameter information from the information input module 2, the integrated disinfection and monitoring platform automatically generates drug formula information based on preset drug dispensing rules and algorithms. Simultaneously, it generates a dispensing instruction and sends it via the network to the first receiving module 41 of the dispensing terminal 4. Upon receiving the dispensing instruction, the dispensing terminal 4 displays detailed dispensing tasks on its screen, including the type of drug required, dosage, and preparation steps. Dispensing personnel then prepare the drug according to the information. Once the dispensing terminal 4 has completed the drug preparation, the dispensing personnel upload the completion status to the integrated disinfection and monitoring platform through the dispensing terminal 4.

[0064] Upon receiving this information, the platform automatically generates a disinfection instruction, which includes detailed information such as the disinfection location, scope, chemicals to be used, dosage, and disinfection time. The instruction is then sent to the corresponding disinfection personnel's mobile app via push notification. Upon receiving the notification, the personnel open the app to view the instruction and proceed to the pharmacy to collect the appropriate chemicals.

[0065] After receiving the disinfectant, the disinfection personnel carry the disinfection equipment terminal 6 to the designated disinfection area to carry out the disinfection work. During the operation, the first data acquisition module 61 of the disinfection equipment terminal 6 collects relevant information about the disinfection operation in real time. For example, the spray volume sensor on the backpack sprayer monitors the sprayed volume of the disinfectant in real time, and the temperature and humidity sensors collect temperature and humidity data of the disinfection environment. This data is uploaded to the integrated disinfection monitoring platform through the second data feedback module 62. The platform stores this data in a database for subsequent analysis and management.

[0066] Display terminal 3 obtains real-time disinfection status and data information from the integrated disinfection and monitoring platform. For example, on the large screen in the monitoring center, the location of each disinfection area is displayed in the form of an electronic map, and the disinfection progress of each area is indicated by different colored icons: green indicates completed, yellow indicates in progress, and red indicates not yet started. Simultaneously, detailed data on the disinfection operation is displayed in report form, such as the total amount of pesticide used in each area and the disinfection time. Managers can intuitively understand the progress of the entire disinfection work through display terminal 3, promptly identify problems, and make scheduling and decision-making actions.

[0067] This embodiment uses a disinfection monitoring system to record and monitor the information entered by the information entry module 2, the drug information from the dispensing terminal 4, and the local information from the disinfection equipment terminal 6, achieving full-process monitoring for easy traceability. The data is then displayed on the display terminal 3 for easy viewing and visualized monitoring. The integrated disinfection monitoring platform automatically generates appropriate drug formulas based on the entered information, eliminating the need for dispensing personnel and preventing inconsistent disinfection effects due to varying experience levels among dispensing personnel. Furthermore, the pre-prepared drugs from the pharmacy terminal allow disinfection personnel to directly collect and use them, preventing them from altering the drug formula and causing suboptimal disinfection results. The first data acquisition module of the disinfection equipment terminal collects various disinfection data, such as drug usage, operation time, and operation trajectory, enabling monitoring of whether disinfection personnel have performed their disinfection duties effectively.

[0068] In one implementation, such as Figure 2 As shown, the integrated disinfection and monitoring platform includes a data storage module 11, an instruction scheduling module 12, a data processing module 13, and a second receiving module 14. The data storage module 11 is used to store data information; the instruction scheduling module 12 is used to issue instructions to the pharmacy terminal 4 and the disinfection personnel terminal 5; the data processing module 13 is used to process the information collected by the first data acquisition module 61; and the second receiving module 14 is used to receive information from the information input module 2, the first data feedback module 42, and the second data feedback module 62.

[0069] Specifically, a Dell PowerEdge R740xd server was selected to meet the needs of large-scale data processing and multi-tasking concurrency. Meanwhile, the server's data storage module 11 has a large-capacity high-speed hard drive (such as a 10TB SAS hard drive), providing ample storage space for data storage. The server is connected to the enterprise's internal LAN via a high-speed fiber optic network and has a public IP address to ensure stable and high-speed data communication with external devices such as the pharmacy terminal 4, disinfection personnel terminal 5, disinfection equipment terminal 6, and display terminal 3.

[0070] The instruction scheduling module 12 generates dispensing instructions and disinfection instructions based on preset business logic and rules. For example, after the information entry module 2 enters disinfection task information, the instruction scheduling module 12 organizes the information into a preset format according to the formula information generated by the platform and generates dispensing instructions. The instruction scheduling module 12 communicates with the pharmacy terminal 4 and the disinfection personnel terminal 5 through a network communication protocol (such as TCP / IP). For the pharmacy terminal 4, the instructions are encapsulated and sent to the first receiving module 41; for the disinfection personnel terminal 5, the instructions are sent to its APP through a message push platform.

[0071] After the information collected by the first data acquisition module 61 of the disinfection equipment terminal 6 is transmitted to the data processing module 13, the data is cleaned. Since the data collected by the sensor may contain noise, outliers, etc., the data processing module 13 uses algorithms such as median filtering and outlier detection to preprocess the data, remove invalid data, and improve data quality.

[0072] The second receiving module 14 employs multi-threading technology to achieve concurrent communication with the information entry module 2, the first data return module 42, and the second data return module 62. Each thread is responsible for listening to data transmission requests from a specific source, ensuring that the system can receive information from different terminals in real time and efficiently.

[0073] To further enhance the effectiveness of supervision and facilitate the verification of whether disinfection personnel have carried out disinfection effectively, preferably, in one embodiment, as follows: Figure 3 As shown, the first data acquisition module 61 includes a geographic location unit 611, a disinfection duration statistics unit 612, and a disinfection image / video acquisition unit 613. The geographic location unit 611 is used to acquire the geographic location information of the disinfection equipment terminal 6; the disinfection duration statistics unit 612 is used to detect and count the working time of the disinfection equipment terminal 6; and the disinfection image / video acquisition unit 613 is used to acquire relevant images or videos of the disinfection equipment terminal 6 during its working process.

[0074] The local geographic location of the disinfection equipment terminal 6 is obtained through the geographic location positioning unit 611, and the geographic location information is transmitted back to the integrated disinfection monitoring platform to verify whether the disinfection personnel are disinfecting the correct location. Alternatively, the target location to be disinfected can be entered into the disinfection equipment terminal 6, and the processor in the disinfection terminal device can directly compare the location information of the device obtained by the geographic location positioning unit 611 with the entered target location. If they do not match, an alarm is sent to the integrated disinfection monitoring platform. The disinfection duration statistics unit 612 detects the working time of the disinfection equipment terminal 6 for reference and as a basis for judging whether the disinfection personnel have disinfected the area thoroughly. The disinfection image / video recording unit 613 takes photos of the work at irregular intervals as evidence of the disinfection personnel's work, or records the entire process for later inspection.

[0075] Understandably, the geolocation unit 611 uses a high-precision GPS (Global Positioning System) module, such as the u-blox NEO-6M module. It is connected to the main control board of the disinfection equipment terminal 6 via serial communication, with the main control board providing power and data transmission channels.

[0076] The disinfection time statistics unit 612 includes a current sensor, such as an ACS712 current sensor, which is connected in series in the power circuit of the disinfection equipment. This sensor detects current changes in the circuit in real time. When the detected current exceeds a certain threshold, the disinfection equipment is determined to be operating, and a timer is started on the main control board. When the current falls below the threshold, the disinfection equipment is determined to be stopping, the timer stops, and the timing result is stored in the main control board's memory, thus achieving accurate statistics on the operating time of the disinfection equipment.

[0077] The disinfection image / video capture unit uses a high-definition camera module, such as the OV2640 camera module. It should be fixed in a suitable position on the disinfection equipment to ensure clear imaging of the disinfection area. The camera module connects to the main control board via SPI (Serial Peripheral Interface) or I2C (Integrated Circuit Bus), and the main control board controls the camera's shooting actions. If video recording is required, a camera module supporting video recording can be selected, and a memory card with sufficient capacity (such as a MicroSD card) should be provided on the main control board to store the recorded video files.

[0078] In one embodiment, the first data acquisition module 61 is further provided with a pesticide dosage monitoring unit, which includes a flow sensor. The flow sensor records the dosage and spray volume of the pesticide in the disinfection equipment terminal 6 in real time, and uploads the data to the integrated disinfection monitoring platform to monitor the dosage of the pesticide and prevent inadequate disinfection due to insufficient dosage.

[0079] Among them, electromagnetic flow sensors can be selected, such as the Krohne OPTIFLUX 1300 series. Its measurement principle is based on Faraday's law of electromagnetic induction. When a conductive liquid medium flows perpendicular to the direction of magnetic field lines, an induced electromotive force is generated on the electrode that is perpendicular to both the flow direction and the direction of magnetic field lines. The flow rate of the liquid can be calculated by detecting this electromotive force.

[0080] Specifically, the electromagnetic flow sensor is installed on the pesticide delivery pipeline of the disinfection equipment. The installation location of the sensor must meet its operational requirements, meaning there must be sufficient straight pipe sections before and after it (generally, the upstream straight pipe section should be no less than 5 times the pipe diameter, and the downstream straight pipe section no less than 2 times the pipe diameter) to ensure measurement accuracy. The sensor and pipeline are connected via flanges to ensure a tight connection and prevent pesticide leakage. Simultaneously, the sensor is equipped with a dedicated signal amplifier and converter to convert its weak electrical output signal into a standard current or voltage signal, facilitating connection with the main control board of the disinfection equipment terminal 6.

[0081] In another implementation, preferably, such as Figure 4As shown, the integrated pest management and monitoring platform 1 is connected to several second data acquisition modules 7. These modules 7 are installed at the target locations requiring monitoring and are used to collect pest count data. Each second data acquisition module 7 includes an image recognition counting unit, an infrared sensor counting unit, and an ultrasonic detection counting unit. The second data acquisition modules 7 detect the number of pests at the target locations in real time. When the number of pests exceeds a warning threshold, relevant data is transmitted back to the integrated pest management and monitoring platform 1. Upon receiving the data from the second data acquisition modules 7, the integrated pest management and monitoring platform 1 sends a pesticide dispensing instruction to the pesticide dispensing terminal 4.

[0082] Preferably, such as Figure 5 As shown, the disinfection and monitoring system also includes a monitoring terminal, which is connected to the integrated disinfection and monitoring platform 1. This allows customers or regulatory authorities to view relevant disinfection data and monitor whether the disinfection is in place.

[0083] Once the integrated disinfection and monitoring platform 1 receives the information returned by the disinfection terminal, it sends a URL connection to the monitoring terminal. The monitoring personnel can log in to the integrated disinfection and monitoring platform 1 via the URL to view the relevant disinfection data and monitor whether the disinfection has been carried out effectively.

[0084] Furthermore, the integrated disinfection and monitoring platform 1 is equipped with an access control module, which manages the data viewing permissions of the integrated disinfection and monitoring platform 1. The monitoring terminal can only view the relevant data after obtaining the permissions.

[0085] The specific process is as follows: after the disinfection personnel complete the disinfection operation, the disinfection equipment terminal 6 will send the relevant disinfection data back to the integrated disinfection monitoring platform 1. Then, the integrated disinfection monitoring platform 1 will send a notification message to the supervision terminal. After receiving the information that the disinfection is completed, the supervision personnel can log in to the platform, and then obtain permissions through the permission management module to enter the integrated effect supervision platform to view the relevant data and check whether the supervision is in place.

[0086] Preferably, the pharmacy terminal is equipped with a QR code generation module and a QR code scanning module. After the medicine is prepared, the QR code generation module generates a corresponding medicine retrieval QR code and transmits it back to the integrated disinfection and monitoring platform through the first data feedback module. The QR code scanning module is used to scan the QR code to read information. When the integrated disinfection and monitoring platform issues a disinfection command, it also sends the medicine retrieval QR code to the disinfection personnel's terminal, so that the disinfection personnel can retrieve the corresponding medicine by using the QR code.

[0087] In detail, the QR code generation module employs a professional QR code generation engine, such as the QR code generation technology module used in the Zebra ZT230 printer. Connected to the main control chip via an SPI interface, it can quickly generate standard-compliant QR code image data. This module supports multiple QR code encoding formats, such as QR Code and Data Matrix, allowing for flexible selection based on actual needs.

[0088] The QR code scanning module uses Honeywell's N6603 2D scanning engine. Connected to the main control chip via a USB interface, it can quickly and accurately scan various types of QR codes and transmit the scanned information to the main control chip for processing.

[0089] After the disinfectant is prepared, the dispensing personnel package it and bind the prepared disinfectant information to the QR code production module. The information, along with the preparation status and completion time, is then transmitted back to the integrated disinfection and monitoring platform. The platform then issues instructions to the disinfection personnel's terminals. The personnel scan the QR code using the QR code scanning module to collect the corresponding disinfectant. Simultaneously, the dispensing terminal automatically acquires the QR code scan information and transmits the collection status information back to the integrated disinfection and monitoring platform. This facilitates the collection of disinfection disinfectants by the personnel and records the collection information for future traceability.

[0090] Before receiving medication, it is preferable to verify the information of the disinfection personnel to prevent unauthorized collection. Facial recognition can be used to verify the information of the disinfection personnel. The facial recognition module can be integrated into the pharmacy terminal, and facial recognition verification should be performed before scanning the QR code.

[0091] Furthermore, the disinfection equipment terminal is also equipped with a QR code scanning module and a facial recognition module. The QR code scanning module is used to scan the QR code to obtain the agent information, so that the disinfection equipment terminal is bound to the corresponding agent information. The facial recognition module verifies the disinfection personnel information to prevent the disinfection personnel from being switched privately, which would affect the disinfection effect. Finally, the second data feedback module transmits the disinfection equipment terminal information, disinfection personnel and agent information back to the integrated disinfection monitoring platform for better supervision and tracking.

[0092] The technical solution of this invention involves inputting disinfection parameter information, such as disinfection location, target, and related environmental conditions, into the information input module 2. This information is then sent to the integrated disinfection monitoring platform. Upon receiving the disinfection parameter information, the integrated disinfection monitoring platform automatically generates the corresponding formula and sends a dispensing instruction to the dispensing terminal 4. After receiving the dispensing instruction, the dispensing terminal 4, according to the formula information, has relevant personnel prepare the disinfectant. The first data feedback module 42 of the dispensing terminal 4 then transmits the dispensing time, dispensing completion status, etc., back to the integrated disinfection monitoring platform. The integrated disinfection monitoring platform records and stores the data returned by the dispensing terminal 4 and sends disinfection instructions to the disinfection personnel. On the personnel terminal 5, the disinfection instruction can include information such as disinfection location, time, and agent collection. Then, the disinfection personnel collect the corresponding prepared agent according to the received disinfection instruction and use the disinfection equipment terminal 6 to carry out disinfection. During the disinfection process, the disinfection agent terminal collects local status information of the disinfection agent terminal through the first data acquisition module 61, such as geographical location information, movement trajectory information, disinfection duration information, and relevant disinfection operation photos or videos, and then transmits it back to the integrated disinfection monitoring platform for recording and storage through the second data feedback module 62. Through the display terminal 3, the disinfection data and disinfection status can be visually monitored, thereby realizing full-process visual monitoring of the disinfection operation.

[0093] The disinfection monitoring system records and monitors the information entered by the information entry module 2, the drug information from the dispensing terminal 4, and the local information from the disinfection equipment terminal 6, achieving full-process monitoring for easy traceability. This information is then displayed on the display terminal 3 for easy viewing and visualized monitoring. Furthermore, the drugs are pre-prepared at the dispensing terminal, allowing disinfection personnel to directly collect and use them without needing to prepare them themselves, preventing unauthorized alterations to the drug formula and ensuring effective disinfection. The system also uses the first data acquisition module of the disinfection equipment terminal to detect drug usage, disinfection duration, and the equipment's movement trajectory, enabling monitoring of situations such as insufficient drug usage, inadequate disinfection duration, and deviation from the target disinfection location.

[0094] Based on the disclosure and teachings of the foregoing specification, those skilled in the art can make changes and modifications to the above embodiments. Therefore, the present invention is not limited to the specific embodiments disclosed and described above, and some modifications and changes to the present invention should also fall within the protection scope of the claims of the present invention. Furthermore, although some specific terms are used in this specification, these terms are only for convenience of explanation and do not constitute any limitation on the present invention.

Claims

1. A disinfection and monitoring system, characterized in that, include: The integrated disinfection and monitoring platform is used for receiving information, processing information, storing data, and scheduling instructions. The information input module (2) is connected to the integrated disinfection and monitoring platform. It is used to input ecological environment parameters of the area to be disinfected and transmit them to the integrated disinfection and monitoring platform so that the integrated disinfection and monitoring platform can generate disinfection parameter information instructions based on the ecological environment parameters. The pharmacy terminal (4) includes a first receiving module (41) and a first data feedback module (42). The first receiving module (41) is used to receive the dispensing instructions sent by the integrated disinfection and monitoring platform. The first data feedback module (42) is used to send the dispensing status data back to the integrated disinfection and monitoring platform. When the first receiving module (41) receives the dispensing instructions from the integrated disinfection and monitoring platform, the dispensing personnel take out the relevant medicines according to the dispensing instructions sent by the integrated disinfection and monitoring platform and then send back the dispensing status information through the first data feedback module. The disinfection personnel terminal (5) is used to receive disinfection instructions. After receiving the medication status information returned by the pharmacy terminal (4), the integrated disinfection monitoring platform automatically generates a disinfection instruction and sends it to the disinfection personnel terminal (5). The disinfection equipment terminal (6) is used to perform disinfection operations. Disinfection personnel receive the corresponding agents according to the disinfection instruction information, and then use the disinfection equipment terminal (6) to perform disinfection operations. The disinfection equipment terminal (6) includes a first data acquisition module (61) and a second data feedback module (62). The first data acquisition module (61) is used to collect information related to disinfection operations, and the second data feedback module (62) is used to send the data collected by the first data acquisition module (61) back to the integrated disinfection monitoring platform. The display terminal (3) is connected to the integrated disinfection and monitoring platform and is used to display the relevant disinfection status and disinfection data information in real time.

2. The disinfection and monitoring system according to claim 1, characterized in that, The integrated disinfection and monitoring platform includes a data storage module (11), an instruction scheduling module (12), a data processing module (13), and a second receiving module (14). The data storage module (11) is used to store data information; the instruction scheduling module (12) is used to send instruction information to the pharmacy terminal (4) and the disinfection personnel terminal (5); the data processing module (13) is used to process the information collected by the first data acquisition module (61); and the second receiving module (14) is used to receive information from the information input module (2), the first data feedback module (42), and the second data feedback module (62).

3. The disinfection and monitoring system according to claim 1, characterized in that, The first data acquisition module (61) includes a geographic location unit (611), a disinfection duration statistics unit (612), and a disinfection image / video acquisition unit (613). The geographic location unit (611) is used to acquire the geographic location information of the disinfection equipment terminal (6); the disinfection duration statistics unit (612) is used to detect and count the working time of the disinfection equipment terminal (6). The disinfection image / video acquisition unit (613) is used to acquire relevant images or videos of the disinfection equipment terminal (6) during its operation.

4. The disinfection and monitoring system according to claim 3, characterized in that, The first data acquisition module (61) is also equipped with a drug dosage monitoring unit, which includes a flow sensor; used to record the dosage and spraying amount of disinfectant in the disinfection equipment terminal (6) in real time.

5. The disinfection and monitoring system according to claim 3, characterized in that, The first data acquisition module (61) is equipped with an identity information verification unit for verifying the identity information of disinfection personnel.

6. The disinfection and monitoring system according to claim 1, characterized in that, The integrated pest management and monitoring platform (1) is connected to several second data acquisition modules (7) for monitoring and collecting pest data at the target location. When the number of pests exceeds the warning value, relevant data is sent back to the integrated pest management and monitoring platform (1). After receiving the data sent back by the second data acquisition modules (7), the integrated pest management and monitoring platform (1) sends a medicine dispensing instruction to the medicine dispensing terminal (4).

7. The disinfection and monitoring system according to claim 6, characterized in that, The second data acquisition module (7) includes an image recognition counting unit / infrared sensing counting unit / ultrasonic detection counting unit, used to monitor the number of pests at the target location.

8. The disinfection and monitoring system according to claim 1, characterized in that, It also includes a monitoring terminal, which is connected to the integrated disinfection and monitoring platform (1) and is used to view relevant disinfection data and monitor whether the disinfection is in place.

9. A disinfection and monitoring system according to claim 8, characterized in that, The integrated disinfection and monitoring platform (1) is equipped with an access control module, which is used to manage the data viewing permissions of the integrated disinfection and monitoring platform (1). The monitoring terminal can only view the relevant data after obtaining the permissions.

10. A disinfection and monitoring system according to any one of claims 1 to 9, characterized in that, The pharmacy terminal (4) is equipped with a QR code generation module and a QR code scanning module. After the medicine is prepared, the QR code generation module generates a corresponding medicine retrieval QR code and transmits it back to the integrated disinfection and monitoring platform (1) through the first data feedback module. The QR code scanning module is used to scan the QR code to read information. When the integrated disinfection and monitoring platform (1) issues a disinfection instruction, it sends the medicine retrieval QR code to the disinfection personnel terminal (5) so that the disinfection personnel can retrieve the corresponding medicine by using the QR code.