Useful Microorganism unmanned discharger integrated management system and method thereof

KR103004116B1Active Publication Date: 2026-08-11KNU IND COOPERATION FOUND
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Patent Information

Application Number
KR1020240039167
Authority / Receiving Office
KR · KR
Patent Type
Patents
Current Assignee / Owner
Filing Date
2024-03-21
Publication Date
2026-08-11
Estimated Expiration
2044-03-21

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Abstract

The present invention is intended to systematically integrate and manage the production, required materials, storage tanks, and discharge (supply) of useful microorganisms by connecting a microbial dispenser to a big data server, an API relay server, and a regional dispenser management server. To this end, the present invention comprises: a microbial dispenser installed at each regional microbial management office, which recognizes user information to display microbial assignment information, executes microbial discharge within the remaining amount range of the microbial assignment information according to the user's request for microbial discharge, and transmits the discharge results to a regional dispenser management server; a regional dispenser management server installed at each regional microbial management office, which periodically communicates with a big data server via an API relay server to receive user information based on regional identification information and microbial assignment information for each user, transmits it to the microbial dispenser, or calculates the cumulative discharge amount or remaining amount by type based on the microbial discharge results of the microbial dispenser and transmits it to the big data server; an API relay server that relays the transmission and reception of information between each regional dispenser management server and the big data server; and a big data server that integrates and manages user information based on regional identification information and microbial assignment information for each user by linking with each regional dispenser management server via the API relay server, thereby enabling systematic integrated management of the production, required materials, storage tanks, and discharge (supply) of useful microorganisms.
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Description

Technology Field

[0001] The present invention relates to an integrated management system and method for useful microorganism dispensers. More specifically, it relates to a system and method that not only automatically calculates the allocation and discharge amounts of useful microorganisms according to a user's request to enable allocation requests or discharge execution, but also enables convenient business processing between the manager and the user by outputting all messages via voice during discharge execution, allows convenient use in all cities and counties by registering various types of document forms, and enables systematic integrated management of the production, required materials, storage tanks, and discharge (supply) of useful microorganisms by connecting the microorganism dispensers to a big data server, an API (Application Programming Interface) relay server, and a regional dispenser management server via a network. Background Technology

[0002] In general, beneficial microorganisms such as photosynthetic bacteria, lactic acid bacteria, Bacillus, yeast, and cyanobacteria are effective in promoting crop or livestock production, preventing plant pests and diseases, preventing livestock diseases, or improving meat quality. They can also purify water, ferment organic waste, purify various industrial wastes, and reduce the odor and pollution of excrement. Furthermore, they can have various effects such as inhibiting the growth of pathogens or harmful bacteria or helping beneficial bacteria to be active, so they are used in various fields such as agriculture, livestock farming, floriculture, and aquaculture.

[0003] Since these beneficial microorganisms are fundamentally living organisms, they must be cultured by controlling environmental conditions such as appropriate temperature, light, nutrients, and pH. Furthermore, the conditions for storing them in tanks after culture are stringent, making it difficult for general farms and others to install, operate, and manage microorganism culture and / or storage devices on a small scale in terms of manpower and cost.

[0004] Therefore, currently, microorganisms are cultured and stored at specialized microorganism centers, such as agricultural technology centers nationwide, which are equipped with culture and storage facilities for various types of microorganisms. When the general public, including farmers, requests the distribution (supply) of specific microorganisms from these centers as needed, the requested microorganisms are manually distributed either free of charge or for a fee. In particular, for microorganisms distributed for a fee or those with limited supply quantities, the distribution manager verifies the identity of the requester to check past distribution history and confirms the current remaining quantity of the microorganisms assigned to that requester. Subsequently, the manager directly operates the discharge valve of the storage tank containing the microorganisms to discharge the requested amount of the microorganism solution within the current remaining quantity, and manually registers the requester's identity, the date of discharge, the amount discharged, and the remaining quantity.

[0005] However, since useful microorganisms are typically very diverse and cultivation and storage facilities are complex, there is a risk of confusion during the process of dispensing the requested amount of microorganisms after verifying the requester's identity. This requires a significant level of technical expertise and labor, and therefore, the automation of the process and systematic integrated management are urgently needed. Prior art literature

[0006] (Patent Document 0001) KR 10-1801886 B1 Published Nov. 27, 2017 (Patent Document 0002) KR 10-2273843 B1 Published July 6, 2021 The problem to be solved

[0007] Therefore, the present invention aims to solve the above-mentioned problems. The technical problem that the present invention seeks to solve is to provide an integrated management system and method for useful microorganism dispensers that enables convenient non-face-to-face business processing between a manager and a user by automatically calculating the allocation and discharge amounts of useful microorganisms according to a user's request, executing allocation applications or discharges, and outputting all messages via voice during microorganism discharge; allows for convenient use in all cities and counties by registering various document forms; and enables systematic integrated management of the production, required materials, storage tanks, and discharge (supply) of useful microorganisms by connecting the microorganism dispensers to a big data server, an API relay server, and a regional dispenser management server. means of solving the problem

[0008] One embodiment of the present invention for achieving the above objective is an integrated management system for useful microorganism dispensers in a network in which a regional dispenser management server, which manages microorganism dispensers distributed in each region, is connected to communicate with a big data server and an API relay server, and the regional dispenser management server is connected to communicate with multiple microorganism dispensers in the corresponding region. The system comprises: a microorganism dispenser distributed at least one in each regional microorganism management office, which requests user information from the regional dispenser management server to receive and display the microorganism assignment information of the user, executes microorganism discharge according to the user's request for microorganism discharge, generates microorganism discharge result information, and transmits it to the regional dispenser management server; and a regional dispenser installed in each regional microorganism management office, which periodically communicates with a big data server via an API relay server to receive and store user information based on regional identification information and microorganism assignment information of each user, or transmits it to the microorganism dispenser, calculates the user's cumulative discharge amount or remaining amount by type up to date using the microorganism discharge result information of the microorganism dispenser, updates the microorganism assignment information, and selects a portion of the user's microorganism assignment information according to the information reception items of the API relay server and transmits it to the big data server. An API relay server that transmits user information based on regional identification information from a management server and a big data server, along with microorganism assignment information for each user, to each regional dispenser management server, or receives user information based on regional identification information and microorganism assignment information for each user that is selectively transmitted from the regional dispenser management server according to information reception items, and transmits them to the big data server; and regional identification information for setting and identifying dispenser usage approval regions, and microorganism production, required materials, storage tanks, etc., through a websiteAlternatively, it is an integrated management system for useful microorganism dispensers that includes a big data server capable of receiving user information necessary for discharge (supply) management, registering it in a database, verifying microorganism allocation applications and payment status via the website to generate and store microorganism allocation information for such applications, and updating and storing user-specific microorganism allocation information uploaded from regional dispenser management servers in the database for integrated management.

[0009] Another embodiment of the present invention for achieving the above objective relates to an integrated management method for useful microorganism dispensers in a network system, wherein a microorganism dispenser that stores useful microorganisms and discharges and supplies microorganisms to a user upon user request is connected to communicate with a regional dispenser management server in the dispenser installation area, and each regional dispenser management server is connected to communicate with a big data server via an API relay server, comprising: a user registration step in which a big data server receives regional identification information for setting and identifying dispenser usage approval areas via a homepage and user information necessary for microorganism production, required materials, storage tanks, or discharge (supply) management, and registers them in a database; an allocation application step in which a big data server confirms whether a microorganism allocation application and payment have been made via the homepage, and generates and registers microorganism allocation information; an allocation information transmission step in which each regional dispenser management server periodically communicates with the big data server via an API relay server to receive user information and microorganism allocation information for each user; and a microorganism dispenser that requests user information from the regional dispenser management server, the dispenser management server receives and displays the user's microorganism allocation information, executes the discharge of microorganisms according to the user's microorganism discharge information, and then discharges the microorganisms. The method for integrated management of useful microorganism dispensers comprises: a discharge execution step of generating result information and transmitting it to a regional dispenser management server for the corresponding region; a cumulative discharge calculation and upload step in which the regional dispenser management server receives microorganism discharge result information from the microorganism dispenser, calculates the cumulative discharge amount or remaining amount up to date for each type of microorganism of the user, updates the microorganism allocation information of the user, and uploads it to a big data server; and an allocation information update step in which the big data server receives and updates the microorganism allocation information for each user that is selectively uploaded from each regional dispenser management server via an API relay server. Effects of the invention

[0010] According to the present invention, the allocation amount and discharge amount of useful microorganisms can be automatically calculated according to a user's request to apply for allocation or discharge, and all messages can be voice-outputted when discharge is executed, thereby enabling convenient work processing between the manager and the user and providing the advantage of improving usability.

[0011] In addition, according to the present invention, by registering various types of document forms on a server, users can receive user information based on regional identification information, microorganism allocation application information for each user, and microorganism allocation information in the form of a desired document form according to the selection of the regional dispensing management server, thereby providing the advantage of being conveniently applicable in all cities and counties.

[0012] In addition, according to the present invention, by connecting the microbial dispenser to a big data server, an API relay server, and a regional dispenser management server through a network, the production of useful microorganisms, required materials, storage tanks, and discharge (supply) are managed, thereby providing the advantage of enabling systematic integrated management. Brief explanation of the drawing

[0013] Figure 1 is a conceptual diagram illustrating the state in which the integrated management system for useful microorganism dispensers according to the present invention is applied to existing agricultural machinery rental servers in each city and county. Figure 2 is a schematic flowchart of the integrated management method for useful microorganism dispensers according to the present invention. Specific details for implementing the invention

[0014] Hereinafter, the configuration, operation, and effects of an integrated management system and method for dispensing useful microorganisms according to a preferred embodiment of the present invention will be described in detail with reference to the attached drawings.

[0015] Terms and words used in this specification and claims are not limited to their ordinary or dictionary meanings, and must be interpreted in a meaning and concept consistent with the technical spirit of the invention, based on the principle that the inventor can appropriately define the concept of the terms to best describe his invention. Accordingly, since the embodiments described in this specification and the configurations illustrated in the drawings are merely the most preferred embodiments of the invention, it should be understood that various equivalents and modifications capable of replacing them may exist at the time of filing this application.

[0016] FIG. 1 is a conceptual diagram of a useful microorganism dispenser integrated management system according to one embodiment of the present invention. The useful microorganism dispenser integrated management system of the present invention may be configured to include a microorganism dispenser (100), a regional dispenser management server (200), an API relay server (300), and a big data server (400) as illustrated in FIG. 1. The useful microorganism dispenser integrated management system of the present invention may be implemented by applying it to a network system in which a regional dispenser management server, which manages microorganism dispensers distributed in each region, is connected to communicate with a big data server and an API relay server, and a multiple microorganism dispensers in the corresponding region are connected to communicate with each regional dispenser management server.

[0017] A microbial dispenser (100) is a conventional dispenser equipped with at least one microbial storage tank to store microorganisms produced or supplied by regional microbial management offices and to supply microorganisms according to a user's request. It is installed in a distributed manner at least one location in each regional microbial management office and is equipped with an NFC reader or a QR code reader to identify user information upon login via recognition of an RFID card tag or QR code through the reader or key input. The identified user information is used to request a query from a regional dispenser management server based on regional identification information to receive the user's microbial assignment information based on regional identification information and to display it through a display means (LCD). At this time, the microbial assignment information displayed through the display means (LCD) may include the type of microorganism assigned to the user, the discharge period for each type, the total allocated amount for each type, and information on the cumulative discharge amount or remaining amount for each type up to the present.

[0018] Additionally, when a request for microorganism discharge is made by a user while the user's microorganism assignment information is displayed through a display means as described above, the microorganism dispenser (100) receives microorganism discharge information including the type of microorganism and the discharge amount, opens the microorganism discharge valve to measure the flow rate, and performs microorganism discharge within the remaining amount range of the microorganism assignment information. When microorganism discharge is completed, it generates microorganism discharge result information based on the microorganism discharge execution and transmits it to the regional dispenser management server (200). At this time, the microorganism discharge result information may include the user ID, the type of discharged microorganism, the discharge date and time, and the discharge amount information.

[0019] Additionally, the microorganism dispenser (100) may separately be equipped with an internal or external voice output means to output all messages as voice, including user information logged in through recognition of an RFID card tag or QR code or key input during the above operation, microorganism assignment information of the corresponding user retrieved and received through a regional dispenser management server, microorganism discharge information entered according to the user's request for microorganism discharge, execution of microorganism discharge, and microorganism discharge result information generated according to the execution of microorganism discharge.

[0020] In addition, this microorganism dispenser (100) is programmed so that its internal control board controls operation by distinguishing between standby, operation, and sleep modes to reduce power consumption. For example, the operation mode is initiated by the recognition of an RFID card tag or QR code, or by ID login via key input, to drive the display means (LCD). When microorganisms to be supplied to the storage tank are being charged or when the transmission of microorganism discharge result information is completed after discharge execution, the data is initialized, and after a preset time (for example, a time sufficient for the user to check and recognize the microorganism discharge result information displayed on the LCD, which may be initially set as a design value or variablely set by the manager), the display via the LCD is stopped and the device enters standby mode. In the standby mode, if there is no key input or no recognition of an RFID card tag or QR code, or no login of a new ID via key input for a preset time (for example, a time sufficient for waiting for a new login of the next user ID, which may be initially set as a design value or variablely set by the manager), the device enters sleep mode, thereby reducing power consumption.

[0021] The regional dispensing device management server (200) is installed at each regional microorganism management office of a city or county and periodically communicates with the API relay server (300) to receive information reception items, or communicates with the big data server (400) through the API relay server (300) to receive and store user information based on regional identification information and microorganism assignment information for each user, and in response to a request from the microorganism dispensing device (100), it queries the user information based on regional identification information and microorganism assignment information for each user and transmits it to the microorganism dispensing device (100), or calculates the cumulative discharge amount or remaining amount by type of user based on regional identification information up to now using the microorganism discharge result information transmitted from the microorganism dispensing device (100), thereby updating and storing the microorganism assignment information of the user, and selects a portion of the microorganism assignment information of the user according to the information reception items of the API relay server (300) and transmits it to the API relay server (300).

[0022] The API relay server (300) transmits user information based on regional identification information and microorganism assignment information for each user to each regional dispensing server (200) or transmits information reception items to each regional dispensing server (200) periodically in response to a request from each regional dispensing server (200), and receives selection information of user information based on regional identification information and microorganism assignment information for each user that is selected and transmitted from the regional dispensing server (200) according to the information reception items, and transmits it to the big data server (400).

[0023] The big data server (400) is accessible via a mobile terminal (11) or an administrator terminal (12) and operates and manages a website that displays information on microorganisms available for supply at each regional microorganism management office, receives applications for microorganism allocation, pays for costs, and displays allocation results.

[0024] This big data server (400) receives user information necessary for the production, required materials, storage tanks, or discharge (supply) management of microorganisms, regional identification information (e.g., a regional ID that can distinguish between cities and counties) for setting and identifying the dispensing device usage approval area in response to a user or manager's request for user information registration, classifies user information based on the regional identification information and registers it in a database, issues a user-specific RFID card or QR code required for dispensing device usage in response to a user or manager's request, and links the issued RFID card or QR code identification information with user information and registers them together in the database.

[0025] In addition, the big data server (400) receives microorganism allocation application information based on the microorganism allocation application of an authenticated user logged in through the homepage, and checks whether payment has been made for the entered microorganism allocation application. At this time, the microorganism allocation application information may include the type of microorganism, the discharge period for each type, and the total allocation amount for each type, and may store the usage amount setting value for each type of microorganism per farmland area in advance for the liter (ℓ) calculation function. Therefore, the big data server (400) may, for example, receive the total allocation amount directly from the user, or receive the farmland area to be used for microorganisms from the user and calculate the total allocation amount for the entered farmland area based on the pre-set usage amount for each type of microorganism per farmland area using the liter (ℓ) calculation function.

[0026] Additionally, the big data server (400) checks whether payment has been made for the application for microorganism allocation, and upon completion of payment, generates microorganism allocation information that confirms the allocation of microorganisms for the corresponding application and stores it in a database linked with user information. At this time, the microorganism allocation information may include the type of microorganism, the discharge period for each type, the total allocation amount for each type, and information on the cumulative discharge amount or remaining amount for each type up to date. Here, the information on the cumulative discharge amount or remaining amount for each type up to date may be information that is updated by reflecting the user's cumulative discharge amount or remaining amount for each type up to date based on regional identification information received from the regional dispensing management server (200).

[0027] In addition, this big data server (400) periodically transmits user information based on regional identification information and microorganism allocation information for each user in response to a request from each regional dispensing device management server (200) via the API relay server (300), or updates and stores user information and microorganism allocation information for each user in the database using user information based on regional identification information received from each regional dispensing device management server (200) via the API relay server (300) for integrated management. This big data server (400) is equipped with multiple forms of document templates that support input / output or display of user information based on regional identification information, microorganism allocation application information, and allocation information, and provides user information based on regional identification information, microorganism allocation application information for each user, and microorganism allocation information through at least one document template selected by the regional dispensing device management server (200), thereby enabling easy application and convenient use in all cities and counties.

[0028] FIG. 2 is a flowchart of the operation of a useful microorganism dispenser integrated management method according to another embodiment of the present invention. The useful microorganism dispenser integrated management method of the present invention may be implemented by including a user registration step (S110), an assignment application step (S120), an assignment information transmission step (S130), an output execution step (S140), a cumulative output calculation and upload step (S150), and an assignment information update step (S160), as illustrated in FIG. 2. The useful microorganism dispenser integrated management method of the present invention may be applied to and implemented in a network system in which a microorganism dispenser (100) that stores useful microorganisms and supplies them to a user by discharging microorganisms upon user request is connected to a regional dispenser management server (200) in the dispenser installation area to communicate with each regional dispenser management server (200) to communicate with a big data server (400) through an API relay server (300).

[0029] The user registration step (S110) is a step executed by the big data server (400) upon a request from a user or administrator. Upon a request for user information registration by a user or administrator who accessed the website operated for managing microorganism dispensers, the server receives regional identification information (e.g., a regional ID that can distinguish cities and counties) for setting and identifying the approved area for dispenser use, and user information required for the production, required materials, storage tanks, or discharge (supply) management of microorganisms, and registers it in the database. In this step, the big data server (400) classifies user information by region based on the regional identification information and registers it in the database. If there is a request from the user or administrator to issue a user-specific RFID card or QR code required for dispenser use, the server issues the user-specific RFID card or QR code and links the issued RFID card or QR code identification information with the user information based on the regional identification information, registering them together in the database.

[0030] In addition, during this user registration step (S110), the big data server (400) may also be equipped with multiple forms of document formats that support input / output or display of user information based on regional identification information, and the multiple forms of document formats may be various formats applicable to each city and county, and may provide user information based on regional identification information as document formats required by the regional distribution management server (200) of each city and county.

[0031] The allocation application step (S120) is a step executed by the big data server (400) in response to a request from a user or administrator. The big data server (400) receives microorganism allocation application information based on the microorganism allocation application of a user accessed through the homepage, checks whether payment has been made for the entered microorganism allocation application, and generates microorganism allocation information that confirms the allocation of microorganisms for the corresponding microorganism allocation application upon completion of payment, and stores it in conjunction with user information. At this time, the microorganism allocation application information includes information on the type of microorganism, the discharge period for each type, and the total allocation amount for each type. The microorganism allocation information may include information on the type of microorganism, the discharge period for each type, the total allocation amount for each type, and the cumulative discharge amount or remaining amount for each type up to the present. In this step, the big data server (400) may, for example, set the allocation amount directly entered by the user as the total allocation amount, or receive the farmland area of ​​the farm from the user and calculate the total allocation amount by converting the total microorganism usage amount for the farmland area based on the usage amount of each type of microorganism per farmland area using a liter (ℓ) calculation function.

[0032] Even in this allocation application stage (S120), the big data server (400) is equipped with various document forms that support input / output or display of user-specific microorganism allocation application information and microorganism allocation information based on regional identification information, so that the regional dispensing management server (200) of each city and county can provide user information based on regional identification information and user-specific microorganism allocation application information and microorganism allocation information in document forms required by the server.

[0033] In the assignment information transmission step (S130), each regional dispensing device management server (200) of each city and county periodically communicates with the big data server (400) through the API relay server (300) to receive user information based on regional identification information and microorganism assignment information for each user. In this assignment information transmission step (S130), the big data server (400) is equipped with various document forms that support input / output or display of microorganism assignment information for each user based on regional identification information, and can provide user information based on regional identification information and microorganism assignment information for each user in at least one document form required by each regional dispensing device management server (200) of each city and county.

[0034] The discharge execution step (S140) is a step executed by the microorganism dispenser (100). In this step, user information is identified upon login via recognition of an RFID card tag or QR code, or key input, and a request for inquiry is made to the regional dispenser management server (200) of the corresponding region. The regional dispenser management server (200) receives user information based on the retrieved regional identification information and microorganism allocation information of the user, and provides them through a display means. When a request for microorganism discharge is made by the user, microorganism discharge information is received, and microorganism discharge is executed within the remaining amount range of the microorganism allocation information. Upon completion of discharge, microorganism discharge result information is generated and transmitted to the regional dispenser management server (200) of the corresponding region. At this time, the microorganism discharge information may include the type of microorganism and discharge amount information, and the microorganism discharge result information may include the user ID, the type of discharged microorganism, the discharge date and time, and the discharge amount information.

[0035] In addition, in this discharge execution step (S140), the microorganism dispenser (100) outputs all messages as voice, including user information logged in through recognition of an RFID card tag or QR code or key input, microorganism assignment information of the corresponding user retrieved and received through a regional dispenser management server, microorganism discharge information entered according to the user's request for microorganism discharge, microorganism discharge execution, and microorganism discharge result information generated according to the microorganism discharge execution, thereby enabling the user or manager to use it conveniently.

[0036] The cumulative discharge amount calculation and upload step (S150) is a step in which each regional dispensing device management server (200) calculates the cumulative discharge amount by reflecting the microbial discharge results of the microbial dispensing device (100) and uploads it to the big data server (400). In this step, the regional dispensing device management server (200) receives the microbial discharge result information transmitted from the microbial dispensing device (100), calculates the cumulative discharge amount or remaining amount up to date for each type of microbial of the user, and updates the user information based on regional identification information and the microbial assignment information of the user by reflecting the calculation results, while periodically selecting some of the microbial assignment information of the user according to the received information items received from the API relay server (300) and uploading it to the big data server (400).

[0037] The allocation information update step (S160) is a step in which the big data server (400) receives microorganism allocation information for each user from each regional dispensing device management server (200) of all cities and counties and updates the database. In this step, the big data server (400) receives microorganism allocation information for each user based on regional identification information that is selectively uploaded from each regional dispensing device management server (200) of all cities and counties through the API relay server (300), and by updating the user information based on regional identification information and the microorganism allocation information of the corresponding user that is stored in the database by reflecting the received information, integrated management of microorganism dispensing devices of all cities and counties distributed to each regional dispensing device management server (200) of all cities and counties becomes possible.

[0038] According to the present invention, the allocation amount and discharge amount of useful microorganisms can be automatically calculated according to the user's request to apply for allocation or discharge, and all messages can be voice-outputted when discharge is executed, thereby enabling convenient work processing between the manager and the user and improving usability.

[0039] In addition, according to the present invention, various types of document forms are registered on a server, and depending on the selection of the regional dispensing management server, user information based on regional identification information, application information for microbial allocation for each user, and microbial allocation information can be provided in the desired document form, so that it can be conveniently applied and used in all cities and counties.

[0040] In addition, according to the present invention, by connecting the microbial dispenser to a big data server, an API relay server, and a regional dispenser management server through a network, the production of useful microorganisms, required materials, storage tanks, and discharge (supply) are managed, thereby enabling systematic integrated management of microbial dispensers distributed in each region.

[0041] As described above, although the present invention has been explained by limited embodiments and drawings, the present invention is not limited to the above embodiments, and various modifications and variations are possible from this description by those skilled in the art to which the present invention belongs. Accordingly, the concept of the present invention should be understood only by the claims set forth below, and all equivalent or analogous variations thereof shall be considered to fall within the scope of the concept of the present invention. Explanation of the symbols

[0042] 100 : Microorganism dispenser 200 : Regional management server 300 API Relay Server 400 : Big Data Server

Claims

Claim 1 In a useful microbial dispensing integrated management system in a network in which a regional dispensing management server for managing microbial dispensing devices distributed in each region is connected to communicate with a big data server and an API relay server, and the regional dispensing management server and multiple microbial dispensing devices in the corresponding region are connected to communicate with each regional dispensing management server, the system comprises: a microbial dispensing device (100) distributed and installed at least one per regional microbial management office, which requests user information from the regional dispensing management server to receive and display the microbial assignment information of the user, executes microbial dispensing within the remaining amount range of the microbial assignment information upon the user's request for microbial discharge, generates microbial discharge information, and transmits it to the regional dispensing management server (200); and a microbial dispensing device (100) installed at each regional microbial management office, which periodically communicates with a big data server (400) through an API relay server (300) to receive and store user information based on regional identification information and each user's microbial assignment information, or transmits it to the microbial dispensing device (100), and calculates the cumulative discharge amount or remaining amount by type of user based on regional identification information up to now using the microbial discharge result information of the microbial dispensing device (100) to determine the microbial A regional dispensing machine management server (200) that updates the assignment information and, according to the information reception item of the API relay server (300), selects some of the microorganism assignment information of the corresponding user and transmits it to the API relay server (300); an API relay server (300) that transmits user information based on regional identification information of the big data server and microorganism assignment information for each user to each regional dispensing machine management server (200) according to the request of each regional dispensing machine management server (200) or periodically, or receives user information based on regional identification information and microorganism assignment information for each user that is selected and transmitted from the regional dispensing machine management server (200) and transmits it to the big data server (400);The system includes a big data server (400) that receives regional identification information for setting and identifying the dispensing device usage approval area and user information necessary for managing the production, required materials, storage tanks, or discharge (supply) of microorganisms through a website and registers it in a database, verifies whether a microorganism allocation application and payment of costs have been made through the website, generates and stores microorganism allocation information for the microorganism allocation application, and updates and stores user-specific microorganism allocation information uploaded from each regional dispensing device management server in the database for integrated management; wherein the microorganism dispensing device (100) is programmed so that its internal control board controls operation by distinguishing between standby / operation / sleep modes to reduce power consumption, and the operation mode is initiated by ID login via recognition of an RFID card tag or QR code or key input to drive a display means (LCD), and when microorganisms to be supplied to the storage tank are being charged or the transmission of microorganism discharge result information is completed, the data is initialized and the display is stopped after a preset time and the device enters standby mode, and in the standby mode, if there is no key input for a preset time or a new one via recognition of an RFID card tag or QR code or key input An integrated management system for useful microorganism dispensers characterized by entering sleep mode when there is no ID login. Claim 2 An integrated management system for useful microorganism dispensers, characterized in that, in claim 1, the microorganism allocation application information includes information on the type of microorganism, the discharge period for each type, and the total allocation amount for each type. Claim 3 A useful microorganism dispenser integrated management system according to claim 1, characterized in that the microorganism allocation information includes the type of microorganism, the discharge period for each type, the total allocation amount for each type, and the cumulative discharge amount or remaining amount for each type up to the present. Claim 4 A useful microorganism dispenser integrated management system according to claim 1, characterized in that the microorganism discharge information includes information on the type of microorganism and the discharge amount. Claim 5 A useful microorganism dispenser integrated management system according to claim 1, wherein the microorganism discharge result information includes a user ID, the type of discharged microorganism, the discharge date and time, and the discharge amount information. Claim 6 In claim 1, the microorganism dispenser (100) is characterized by having a voice output means to output all messages including user information, microorganism assignment information, microorganism discharge information, microorganism discharge execution, and microorganism discharge result information as voice, in a useful microorganism dispenser integrated management system. Claim 7 delete Claim 8 In claim 1, the big data server (400) is provided with multiple forms of document formats that support input / output or display of user information based on regional identification information, microorganism allocation application information, and allocation information, and provides user information based on regional identification information, microorganism allocation application information for each user, and microorganism allocation information through at least one document format selected by the regional dispensing machine management server (200), thereby forming a useful microorganism dispensing machine integrated management system. Claim 9 In a method for integrated management of useful microorganism dispensers in a network system in which a microorganism dispenser (100) that stores useful microorganisms and discharges microorganisms upon user request to supply them to the user is connected to a regional dispenser management server (200) in the area where the dispenser is installed, and each regional dispenser management server (200) is connected to a big data server (400) in a manner that allows communication, the method comprises: (a) a user registration step (S110) in which the big data server (400) receives regional identification information for setting and identifying the area for approving the use of the dispenser, and user information necessary for managing the production, required materials, storage tank, or discharge (supply) of microorganisms through a homepage, and classifies user information based on the regional identification information and registers it in a database; (b) an allocation application step (S120) in which the big data server (400) generates and stores microorganism allocation information to confirm the allocation of microorganisms by verifying whether the cost of the microorganism allocation application through the homepage has been paid. (c) A distribution information transmission step (S130) in which each regional distribution management server (200) periodically communicates with a big data server (400) through an API relay server (300) to receive user information based on regional identification information and microorganism distribution information for each user; (d) A discharge execution step (S140) in which a microorganism distribution device (100) requests user information from the regional distribution management server (200) of the corresponding region, the distribution management server (200) receives and displays the microorganism distribution information of the corresponding user, executes the discharge of microorganisms within the remaining amount range of the microorganism distribution information according to the user's microorganism distribution information, generates microorganism discharge information, and transmits it to the regional distribution management server (200) of the corresponding region; (e) A cumulative discharge amount calculation and upload step (S150) in which the regional distribution management server (200) receives microorganism discharge result information from the microorganism distribution device (100), calculates the cumulative discharge amount or remaining amount up to date for each type of microorganism of the user, updates the microorganism distribution information of the corresponding user, and uploads it to the big data server (400);and (f) an assignment information update step (S160) in which a big data server (400) receives user-specific microorganism assignment information selected and uploaded from each regional dispensing device management server (200) through an API relay server (300) and updates the database; wherein in the discharge execution step (S140), the microorganism dispensing device (100) is characterized in that, for power saving, the internal control board operates in standby / operation / sleep mode, the operation mode is initiated by ID login via recognition of an RFID card tag or QR code or key input, and the display means (LCD) is driven, and when microorganisms to be supplied to the storage tank are being charged or the transmission of microorganism discharge result information is completed, the data is initialized and the display is stopped after a preset time and the device enters standby mode, and if there is no key input for a preset time while in standby mode, or if there is no login of a new ID via recognition of an RFID card tag or QR code or key input, the device enters sleep mode. Claim 10 In claim 9, the microorganism allocation application information of the allocation application step (S120) is characterized by including information on the type of microorganism, the discharge period for each type, and the total allocation amount for each type. Claim 11 In claim 9, the microbial allocation information of the allocation application step (S120), allocation information transmission step (S130), discharge execution step (S140), cumulative discharge amount calculation and upload step (S150), or allocation information update step (S160) is characterized by including information on the type of microbial organism, the discharge period by type, the total allocation amount by type, and the cumulative discharge amount or remaining amount by type up to date. Claim 12 A method for managing an integrated useful microorganism dispenser, characterized in that, in claim 9, the microorganism discharge information of the discharge execution step (S140) includes information on the type of microorganism and the discharge amount. Claim 13 In claim 9, the microbial discharge result information of the discharge execution step (S140) or the cumulative discharge calculation and upload step (S150) is characterized by including a user ID, the type of discharged microorganism, the discharge date and time, and the discharge amount information. Claim 14 In claim 9, the discharge execution step (S140) is characterized by all messages including user information, microorganism assignment information, microorganism discharge information, microorganism discharge execution, and microorganism discharge result information being output as voice, in an integrated management method for useful microorganism dispensers. Claim 15 delete Claim 16 In claim 9, the big data server (400) in the user registration step (S110), the assignment application step (S120), or the assignment information transmission step (S130) has a plurality of document forms that support input / output or display of user information based on region identification information, microorganism assignment application information, and microorganism assignment information, and provides user information based on region identification information, microorganism assignment application information for each user, and microorganism assignment information in at least one document form selected by the regional dispensing device management server (200), characterized by an integrated management method for useful microorganism dispensing devices.

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