Integrated production management operating system using air-dome modular smart farm

The integrated production management operation system for air dome modular smart farms addresses installation and disaster vulnerabilities of conventional greenhouses by optimizing agricultural production and integrating diverse business models, enhancing efficiency and profitability while promoting eco-friendly practices.

WO2026071731A1PCT designated stage Publication Date: 2026-04-02KWON JONG - DAL
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Patent Information

Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Filing Date
2025-09-25
Publication Date
2026-04-02

AI Technical Summary

Technical Problem

Conventional vinyl greenhouses face challenges in installation complexity, vulnerability to natural disasters, and insufficient provision of optimal agricultural production environments, while air dome houses offer improved environments but are not fully optimized for agricultural production and business integration.

Method used

An integrated production management operation system utilizing an air dome modular smart farm, equipped with a central management server, sensor units, and various management units to analyze and control growth environments, manage crop production, distribution, sales, and related businesses, including accommodation and tourism, to maximize efficiency and profitability.

Benefits of technology

Maximizes agricultural production efficiency, integrates multiple business opportunities, produces high-quality pesticide-free products, and promotes rural revitalization through eco-friendly practices, achieving net-zero carbon neutrality and selling carbon credits.

✦ Generated by Eureka AI based on patent content.

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Abstract

Disclosed is an integrated production management operating system using an air-dome modular smart farm. An integrated production management operating system using an air-dome modular smart farm comprises: a central management server (100) which includes a user interface unit for inputting a control command of a user and a display unit for displaying various types of information, and analyzes and provides, to the user, information on the growth environment, type, shipping time, and shipping volume of a crop, which enable generation of optimal cultivation profit; and an air-dome house management unit (200) which manages the crop cultivated in an air-dome house (200A) and the growth environment thereof while interworking with the central management server (100).
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Description

Integrated production management operation system utilizing air dome modular smart farms

[0001] The present invention relates to an integrated production management operation system utilizing an air dome modular smart farm, and more specifically, to an integrated production management operation system utilizing an air dome modular smart farm that combines artificial intelligence of ICT with an air dome house to dominate the market through the franchising of agriculture as content for production, distribution, sales, processing, logistics, and tourism using pesticide-free, organic, and soil cultivation methods of smart farm agriculture, sells the first digital smart farm cultivation rights, and leads the global market by entering the global market in the agriculture and fisheries sectors.

[0002] Generally, ESG is evaluated based on three major factors: environment (E), society (S), and governance (G). Among the environmental factors, carbon neutrality for responding to climate change is a representative example.

[0003] ESG management refers to a management approach that incorporates environmental, social, and governance factors into all aspects of corporate operations. While none of these three are unimportant in ESG management, the most urgent challenge for companies is the environmental issue.

[0004] Globally, the goal is to transition to a carbon-neutral society where net carbon emissions become zero by 2050, and Korea aims to reduce emissions by 24.4% by 2030 compared to 2017.

[0005] In addition, the right to emit greenhouse gases is allocated to each country under the Kyoto Protocol, and countries can trade the portion they fail to reduce or exceed their allocated quotas with each other; this is called the carbon emission trading system.

[0006] Certified Emission Reductions (CERs) are the right to emit a certain amount of greenhouse gases. This system allows companies that exceed their carbon emission allowances to purchase and use CERs in the market. Conversely, it is a system that enables companies with lower carbon emissions to sell their remaining CERs.

[0007] If you register with the United Nations Framework Convention on Climate Change (UNFCCC) the achievement of reducing the six major greenhouse gases designated under the Kyoto Protocol—carbon dioxide (CO2), methane (CH4), nitrous oxide (N2O), perfluorocarbons (PFCs), hydrofluorocarbons (HFCs), and sulfur hexafluoride (SF6)—you will receive carbon emission credits equivalent to the amount reduced. In other words, if you receive confirmation from a United Nations (UN) agency that you have reduced greenhouse gases through a Clean Development Mechanism (CDM) project, you will receive Certified Emission Reductions (CERs), which can be traded on exchanges or over-the-counter like stocks or bonds through the Emissions Trading System (ET).

[0008] Meanwhile, vinyl greenhouses are widely used in the agricultural sector for cultivating, ripening, and drying crops that require a constant temperature, due to their high airtightness and excellent thermal insulation. Additionally, they can be utilized for various purposes depending on the user's intent, such as temporary shelters or warehouses. These vinyl greenhouses have the advantage of being simpler and less expensive to install, maintain, and dismantle compared to general stone structures or temporary buildings made of plywood.

[0009] Typically, vinyl greenhouses are installed by forming a frame using steel frames or steel pipes, and then covering the steel frame with vinyl made of synthetic resin, such as vinyl chloride or polyethylene film.

[0010] In addition, various ventilation windows, heating and cooling devices, and water supply systems are installed on the surface or inside the vinyl greenhouse as needed.

[0011] However, although conventional vinyl greenhouses are easier to manufacture compared to other buildings, there are difficulties in the regular arrangement and installation of steel frames that form the frame of the vinyl greenhouse, or in the work of covering the steel frames tightly and firmly with vinyl.

[0012] Furthermore, vinyl greenhouses are vulnerable to natural disasters such as typhoons and heavy snowfall, and it is reported that significant property damage occurs almost every year.

[0013] Recently, air dome houses have been developed and are receiving a positive response from consumers, and active research and development is underway.

[0014] However, air dome houses for specific purposes according to conventional technology, such as air dome houses for cultivating agricultural products, provide an excellent agricultural production environment compared to vinyl greenhouses, but they are insufficient to provide an optimal agricultural production environment.

[0015] The present invention aims to provide an integrated production management operation system utilizing an air dome modular smart farm, which analyzes the growth environment to harvest a target production quantity of agricultural products and high-quality agricultural products in a system for producing agricultural products using an air dome house, and provides the results.

[0016]

[0017] The present invention aims to provide an integrated production management operation system utilizing an air dome modular smart farm, which not only maximizes profits from various businesses in conjunction with agricultural production in air dome houses but also seeks to revitalize the valley industry as a method to save agriculture, the foundation of the national industry, by resolving the phenomenon of avoidance caused by rural devastation, aging, and population decline.

[0018]

[0019] The present invention aims to provide an integrated production management operation system utilizing an air dome modular smart farm that presents a new paradigm for agriculture, enables the realization of a cultural community where everyone participates, and possesses eco-friendly characteristics that allow for carbon neutrality and the sale of carbon emission rights.

[0020] An integrated production management operation system utilizing an air dome modular smart farm according to one embodiment of the present invention comprises: a central management server (100) equipped with a user interface unit for inputting control commands from a user and a display unit for displaying various information, which analyzes and provides information on the growth environment, type, timing, and quantity of crops capable of generating optimal cultivation profits for the user; and an air dome house management unit (200) linked with the central management server (100) to manage crops and the growth environment cultivated in an air dome house (200A).

[0021]

[0022] The above air dome house management unit (200) includes: a sensor unit (210) including a temperature sensor installed in each zone within the air dome house (200A) to measure the temperature of the zone and a humidity sensor to measure the humidity of the zone; a sensor information analysis unit (220) that analyzes the measurement results of the sensor unit (210) and outputs the measurement results; an air dome environment management unit (230) that controls the temperature and humidity to suit the environment of the crop grown in the air dome house (200A) by referring to the analysis results of the sensor information analysis unit (220); and a crop management unit (240) that controls fertilizer application information and pest and disease prevention information for the crop grown in the air dome house (200A) for the user.

[0023]

[0024] In addition, the integrated production management operation system utilizing the air dome modular smart farm of the present invention further includes a distribution management unit (300) that manages information for distributing crops harvested from the air dome house (200A).

[0025]

[0026] Additionally, the distribution management unit (300) includes a production / demand / supply management unit (310) that manages the production, demand, and supply of crops grown in an air dome house (200A); an inventory management unit (320) that manages the inventory of the crops; and a vehicle delivery and dispatch management unit (330) that manages vehicle delivery or dispatch for delivering the crops to consumers via vehicles.

[0027]

[0028] In addition, the integrated production management operation system utilizing the air dome modular smart farm of the present invention further includes a sales management unit (400) that monitors crops grown in the air dome house (200A) in real time, manages orders and orders from consumers, and manages delivery.

[0029]

[0030] Additionally, the sales management unit (400) includes a monitoring unit (410) that monitors and displays crops grown in the air dome house (200A) in real time; an order management unit (420) that manages orders from consumers of crops produced in the air dome house (200A); an orderer management unit (430) that manages consumers of the crops; and a delivery management unit (440) that manages the task of delivering the crops using a distribution network.

[0031]

[0032] In addition, the integrated production management operation system utilizing the air dome modular smart farm of the present invention further includes a fund management unit (500) that manages income generated from selling crops produced in the air dome house (200A) and the expenditure of said income, and manages a series of tasks such as depositing said income or subscribing to various financial products.

[0033]

[0034] In addition, the integrated production management operation system utilizing the air dome modular smart farm of the present invention further includes an offline store management unit (600) that manages crops produced in the air dome house (200A) in an offline store.

[0035]

[0036] In addition, the integrated production management operation system utilizing the air dome modular smart farm of the present invention further includes an online store management unit (700) for managing an online store to sell crops produced in the air dome house (200A) online.

[0037]

[0038] In addition, the integrated production management operation system utilizing the air dome modular smart farm of the present invention further includes an accommodation business management unit (800) that manages accommodation business, which is a profit business related to crops produced in the air dome house (200A).

[0039]

[0040] Additionally, the above accommodation management department (800) includes a reservation management department (810), a room usage management department (820), a collection management department (830), a hotel environment management department (840), and a promotion management department (850).

[0041]

[0042] Additionally, the reservation management department (810) manages reservation operations for the accommodation business, which is a profit-making business related to crops produced in the air dome house (200A); the room usage management department (820) manages the use of rooms for the accommodation business, which is a profit-making business related to crops produced in the air dome house (200A); the collection management department (830) manages the collection of payments for the accommodation business (hotel business), which is a profit-making business related to crops produced in the air dome house (200A); the hotel environment management department (840) manages the environment for the accommodation business (hotel business), which is a profit-making business related to crops produced in the air dome house (200A); and the promotion management department (850) manages the promotion of the accommodation business, which is a profit-making business related to crops produced in the air dome house (200A).

[0043]

[0044] In addition, the integrated production management operation system utilizing the air dome modular smart farm of the present invention further includes a power generation management unit (900) that manages the supply of power used in the air dome house (200A).

[0045]

[0046] In addition, the integrated production management operation system utilizing the air dome modular smart farm of the present invention further includes an operation planning management department that manages the operation, planning, and construction of the village to which the air dome house (200A) belongs.

[0047]

[0048] In addition, the integrated production management operation system utilizing the air dome modular smart farm of the present invention further includes a logistics management unit (1100) that manages sectoral import and export logistics for crops produced in the air dome house (200A), as well as delivery and management of members.

[0049]

[0050] In addition, the integrated production management operation system utilizing the air dome modular smart farm of the present invention further includes a sales management department that manages orders for crops produced in the air dome house (200A), manages members / non-members of the orderers, manages delivery to each ordering company, and manages collection of payments from the ordering companies.

[0051]

[0052] In addition, the integrated production management operation system utilizing the air dome modular smart farm of the present invention further includes a crop management unit (1300) that collects and analyzes sensor data measured by the sensor unit (210) and manages the crop cultivation system.

[0053]

[0054] In addition, the integrated production management operation system utilizing the air dome modular smart farm of the present invention further includes a development operation management department (1400) that manages the construction and ordering of the air dome house (200A) and manages the development and operation of the air dome house (200A) and the research institute.

[0055]

[0056] In addition, the integrated production management operation system utilizing the air dome modular smart farm of the present invention further includes a personnel management department (1500) that manages the work of each department related to crops produced in the air dome house (200A) and manages the education and work of employees.

[0057]

[0058] In addition, the monitoring unit (410) is equipped with a time-lapse camera, and the central management server (100) receives time-lapse videos of a plurality of plants captured by the time-lapse camera, analyzes the correlations of the growth rate of each leaf, the growth order of each leaf, the growth rate of the plant, the flowering speed of the flower, and the growth rate of the fruit, and predicts disease symptoms of the plant based on the growth rate of each part of the plant in the time-lapse video, and predicts the optimal harvest time based on the color change of the fruit in the time-lapse video.

[0059]

[0060] In addition, the central management server (100) encrypts the data to be transmitted, includes time information for the encryption, encrypts it once more, performs encryption using the LEA (Lightweight Encryption Algorithm) algorithm, decrypts the received encrypted data, and then decrypts the time information data for the encryption to verify the authenticity of the encrypted data.

[0061]

[0062] Additionally, the central management server (100) calculates the difference between the temperature of the corresponding zone and the expected optimal temperature to calculate the temperature difference that must be lowered to the optimal temperature, and determines whether the temperature difference is smaller than the first set temperature or larger than the second set temperature which is smaller than the first set temperature. If these conditions are satisfied, it determines that the temperature expected after the set time is in an optimal state and does not make any changes, and if the conditions are not satisfied, it determines that the temperature expected after the set time is unlikely to reach an optimal state.

[0063] According to the present invention, an integrated production management operation system utilizing an air dome modular smart farm has the following significant effects.

[0064] First, in a system for producing agricultural products using an air dome house, the production efficiency of agricultural products using the air dome house can be maximized by analyzing the growth environment to harvest the target production quantity and high-quality agricultural products, and by providing the results.

[0065] Second, profits from various businesses can be maximized by linking the air dome house with agricultural production.

[0066] Third, it is possible to implement ICT smart farms in the industry (agricultural production), produce pesticide-free, organic, and ultra-fresh agricultural products, and realize an agricultural platform based on know-how for producing differentiated products.

[0067] Fourth, by establishing a large-scale distribution network and commercializing local food facilities for production, cultivation, distribution, processing, and storage of fresh products, we can lead the market and secure a price advantage through monthly contract farming of various products.

[0068] Fifth, as a trend leader driving change in agriculture, it is possible to implement smart farms through the nationwide expansion and franchising of air dome houses, significantly improve profitability through the sale of digital cultivation rights and the cultivation of monthly customized high-income products, and commercialize air dome house complexes as national tourist destinations.

[0069] Sixth, it is possible to realize a global eco-friendly smart farm incorporating air dome house technology and secure source cultivation techniques for various agricultural products as well as monthly customized techniques for cultivating high-income crops.

[0070] Seventh, by constructing an eco-friendly, accident-free, and automated agricultural complex city using ICT technology to improve the relatively poor agricultural sector, we can strengthen competitiveness across the entire agricultural sector—including production, distribution, processing, and export—thereby contributing to the creation of a livable and happy rural community, as well as achieving net-zero carbon neutrality and selling carbon credits.

[0071] Eighth, regarding the structure of the air dome house, it is bound by a circular design without supports and tight external fixing nets and ropes, and is not damaged due to the advantage of reed-like elasticity that can move rhythmically even in strong typhoon currents.

[0072] Ninth, experimental results show that by controlling air pressure without pillars, it causes only slight subsidence even during heavy snowfall and does not collapse; due to its excellent safety and elasticity, it is undamaged by natural disasters.

[0073] FIG. 1 is a block diagram of an integrated production management operation system utilizing an air dome modular smart farm according to one embodiment of the present invention.

[0074] Figures 2 to 5 are detailed block diagrams of each part of the productivity improvement system.

[0075] FIG. 6 is an aerial view of an integrated production management operation system utilizing an air dome modular smart farm according to one embodiment of the present invention.

[0076] FIG. 7 is a drawing illustrating an air dome house experience facility in an integrated production management operation system utilizing an air dome modular smart farm according to one embodiment of the present invention.

[0077] FIG. 8 is a drawing illustrating a cultural space in an integrated production management operation system utilizing an air dome modular smart farm according to one embodiment of the present invention.

[0078] FIG. 9 is a conceptual diagram illustrating franchise operation in an integrated production management operation system utilizing an air dome modular smart farm according to one embodiment of the present invention.

[0079] FIG. 10 is a conceptual diagram illustrating franchising and export in an integrated production management operation system utilizing an air dome modular smart farm according to one embodiment of the present invention.

[0080] FIG. 11 is a conceptual diagram of a visiting local food in an integrated production management operation system utilizing an air dome modular smart farm according to one embodiment of the present invention.

[0081] FIG. 12 is a drawing showing a processing and storage facility in an integrated production management operation system utilizing an air dome modular smart farm according to one embodiment of the present invention.

[0082] FIG. 13 is a photograph of an actual air dome house in an integrated production management operation system utilizing an air dome modular smart farm according to one embodiment of the present invention.

[0083] FIG. 14 is a conceptual diagram of an air dome house in an integrated production management operation system utilizing an air dome modular smart farm according to one embodiment of the present invention.

[0084] FIG. 15 illustrates a semi-cylindrical air dome house, a drawing showing a structure in which compressed air is injected between a double structure with a special vinyl sheet placed under a net.

[0085] FIG. 16 is a drawing illustrating an automatic control air conditioning system in an integrated production management operation system utilizing an air dome modular smart farm according to one embodiment of the present invention.

[0086] FIG. 17 is a diagram illustrating a simulation of the air circulation structure inside an air dome house in an integrated production management operation system utilizing an air dome modular smart farm according to one embodiment of the present invention.

[0087] Hereinafter, an embodiment of the present invention will be described in detail with reference to the attached drawings.

[0088] FIG. 1 is a block diagram of an integrated production management operation system utilizing an air dome modular smart farm according to one embodiment of the present invention, and FIG. 2 to 5 are detailed block diagrams of each part of a productivity improvement system.

[0089] Currently, regarding trends in agriculture, not only are local regions facing a sustainability crisis due to the demographic cliff and decline (regional extinction), but they are also facing a crisis of regional extinction where future sustainability is a concern, accompanied by a decline in vitality caused by village hollowing out due to continuous population outflow, population aging, and a shortage of human resources.

[0090] The integrated production management operation system utilizing an air dome modular smart farm according to one embodiment of the present invention aims to revitalize the valley industry as a method to resolve the phenomenon of avoidance caused by rural devastation, aging, and population decline, and to revive agriculture, which is the foundation of the national industry. Furthermore, as a representative model comprehensive from the primary to the sixth industry of the rural convergence industry pursued by the government, it is a cutting-edge new concept rural industry that develops both urban and rural areas together with specialized technology, and it can realize a cultural community where everyone participates by presenting a new paradigm for agriculture.

[0091] Referring to FIG. 1, an integrated production management operation system (10000) utilizing an air dome modular smart farm according to one embodiment of the present invention may include an air dome house (200A), a central management server (100), an air dome house management unit (200), a distribution management unit (300), a sales management unit (400), a fund management unit (500), an offline store management unit (600), an online store management unit (700), an accommodation business management unit (800), a power generation management unit (900), an operation planning management unit (1000), a logistics management unit (1100), a sales management unit (1200), a crop management unit (1300), a development operation management unit (1400), and a personnel management unit (1500).

[0092] The interior of the air dome house (200A) maintains a constant temperature and humidity to maintain an optimal growing environment for plant cultivation, blocks the source of viruses by blocking external air inflow, maintains a fresh environment by continuously injecting clean air, uses air pressure to inject moisture and oxygen into the soil, and improves soil quality to maintain the best growing environment.

[0093]

[0094] An integrated production management operation system utilizing an air dome modular smart farm according to one embodiment of the present invention will be described as follows with reference to FIGS. 2 to 5.

[0095]

[0096] (1) Central management server (100)

[0097] The central management server (100) controls the operation of each part (200-1500) of the integrated production management operation system (10000) utilizing an air dome modular smart farm according to an already established application.

[0098] The central management server (100) may be equipped with a user interface unit (keyboard, mouse, etc.) for inputting user control commands and a display unit (e.g., LCD) for displaying various information.

[0099] The central management server (100) can provide the user with information on crops to be cultivated in the air dome house (200A), and can analyze and provide information such as the growth environment, type, timing of shipment, and quantity of crops that can generate optimal cultivation profits. To this end, the central management server (100) can use the database of a public institution (e.g., Ministry of Agriculture, Food and Rural Affairs) or a media organization.

[0100] Here, the central management server (100) can be implemented in the form of a web server, a database server, a proxy server, etc.

[0101] One or more of a network load balancing mechanism or various software (applications) that enable the server (100) to operate on the Internet or another network may be installed on the central management server (100), and through this, it may be implemented as a computerized system.

[0102] The central management server (100) encrypts the data to be transmitted, includes time information for the encryption, encrypts it once more, performs encryption using the LEA (Lightweight Encryption Algorithm) algorithm, decrypts the received encrypted data, and then decrypts the time information data for the encryption to verify the authenticity of the encrypted data.

[0103] For the central management server (100) to communicate with the sensor unit (100) and the administrator terminal (200), encryption is essential, and there are symmetric key methods and asymmetric key (public key) methods.

[0104] Symmetric-key encryption is a method where the same key is used for both encryption and decryption. Therefore, anyone who knows the key can decrypt the encrypted data. On the other hand, asymmetric-key (public-key) encryption is a method where the key used for encryption and the key used for decryption are different.

[0105] The key used for encryption is a public key because it is disclosed to everyone, and the key used for decryption is a private key unique to each user.

[0106] Compared to asymmetric key methods, symmetric key methods have security vulnerabilities because both encryption and decryption are possible if even a single key is leaked. However, because symmetric key methods are faster and have relatively simpler algorithms, they are widely used as security algorithms for smart farms.

[0107] Among these symmetric key algorithms, the Lightweight Encryption Algorithm (LEA) encryption method is a Korean national standard (KS X 3246) algorithm that can be used in lightweight environments such as IoT or mobile devices.

[0108] The LEA method demonstrates excellent performance in general-purpose computing environments and is widely used in smart farm environments because it enables encryption that is 1.5 to 2 times faster than AES block encryption.

[0109] The protocol between devices for smart farms can be configured as shown in Table 1.

[0110]

[0111] Data 12345 Purpose Start Device Slave Purpose End

[0112] Since these protocols have security issues when used without encryption, they can be used after being encrypted using algorithms such as LEA. However, using the LEA algorithm has the problems shown in Table 2.

[0113]

[0114] Original 12345 Encrypted 1112131415

[0115] For example, assuming that the original data 1, 2, 3, 4, 5 is encrypted into 11, 12, 13, 14, 15 through LEA (though in reality, it is not encrypted in this way through LEA), a hacker without the key cannot deduce the original data 1, 2, 3, 4, 5 from the encrypted 11, 12, 13, 14, 15. However, if the hacker discovers that a device within the smart farm is operating based on the encrypted 11, 12, 13, 14, 15 (for example, if they discover that a thermostat, etc., is operating based on 11, 12, 13, 14, 15), it becomes a problem that the thermostat can be operated by transmitting the 11, 12, 13, 14, 15 data, even if the original data cannot be determined through the symmetric key.

[0116] To solve these problems, the air dome modular smart farm control system uses a communication protocol that complements the LEA algorithm.

[0117]

[0118] Additionally, the central management server (100) calculates the difference between the temperature of the corresponding area measured by the temperature and humidity sensor and the expected optimal temperature, and calculates the temperature difference that must be lowered to the optimal temperature, and determines whether the temperature difference is smaller than the first set temperature or larger than the second set temperature which is smaller than the first set temperature, and if these conditions are satisfied, it determines that the temperature expected after the set time is in an optimal state and does not make changes, and if the above conditions are not satisfied, it determines that the temperature expected after the set time is difficult to reach an optimal state.

[0119] For example, the first set temperature may be 0.5℃ and the second set temperature may be -0.5℃, but is not limited to cases where the first set temperature is greater than the second set temperature. Also, the set time may be 1 hour, but is not limited to this.

[0120] As such, the reason for calculating the temperature difference is to adjust to the optimal temperature required for the smart farm.

[0121]

[0122] (2) Air Dome House Management Department (200)

[0123] The air dome house management unit (200) is linked with the central management server (100) and performs the role of managing crops and the growth environment cultivated in the air dome house (200A). To this end, the air dome house management unit (200) may include a sensor unit (210), a sensor information analysis unit (220), an air dome environment management unit (230), and a crop management unit (240).

[0124] The sensor unit (210) is equipped with one or more temperature sensors, humidity sensors, etc., installed in each zone within the air dome house (200A). The temperature sensor measures the temperature of the corresponding zone and outputs the measurement result, and the humidity sensor measures the humidity of the corresponding zone and outputs the measurement result.

[0125] The sensor information analysis unit (220) analyzes the measurement results of the sensor unit (210) and outputs the measurement results. To do this, the sensor information analysis unit (220) may use an application provided by the central management server (100).

[0126] The air dome environment management unit (230) controls the temperature and humidity, etc., to suit the environment of the crop grown in the air dome house (200A) by referring to the analysis results of the sensor information analysis unit (220).

[0127] The crop management department (240) provides the user with information on fertilizer application for crops grown in the air dome house (200A), such as the type of fertilizer, amount of fertilizer, and timing of application.

[0128] The crop management department (240) provides information on pest control for crops, such as the type, amount, and timing of pest control agents (e.g., pesticides).

[0129]

[0130] (3) Distribution Management Department (300)

[0131] The distribution management department (300) is responsible for managing information for distributing crops harvested from the air dome house (200A). To this end, the distribution management department (300) may include a production / demand / supply management department (310), an inventory management department (320), and a vehicle delivery and dispatch management department (330).

[0132] The production / demand / supply management department (310) manages the production, demand, and supply of crops grown in the air dome house (200A). To this end, the production / demand / supply management department (310) may use the database of a public institution (e.g., Ministry of Agriculture and Fisheries) or a related institution.

[0133] The inventory management department (320) manages the inventory of crops produced in the air dome house (200A).

[0134] The vehicle delivery and dispatch management unit (330) manages vehicle delivery or dispatch for delivering crops produced in the air dome house (200A) to consumers via vehicles. Specifically, the vehicle delivery and dispatch management unit (330) manages delivery items, vehicle movement, delivery personnel, and orderers.

[0135]

[0136] (4) Sales Management Department (400)

[0137] The sales management department (400) monitors crops grown in the air dome house (200A) in real time, manages orders and orders from consumers, and manages delivery. To this end, the sales management department (400) may include a monitoring department (410), an order management department (420), an orderer management department (430), a delivery management department (440), an import / export management department (450), and a sales management department (460).

[0138] The monitoring unit (410) monitors crops grown in the air dome house (200A) in real time and displays them on a display device such as an LCD. Here, the monitoring unit (410) can output a warning sound if an abnormal phenomenon (e.g., malfunction, fire, etc.) is detected as a result of the monitoring.

[0139] And, the monitoring unit (410) is equipped with a time-lapse camera capable of capturing images of plants at intervals selected from 0.3 to 60 seconds. The central management server (100) receives time-lapse images of multiple plants captured by the time-lapse camera, analyzes the growth rate of each leaf, the growth order of each leaf, the growth rate of the plant, the flowering rate of the flower, and the quality of the fruit according to the growth rate of the fruit, predicts disease symptoms of the plant based on the growth rate of each part of the plant in the time-lapse image, and predicts the optimal harvest time based on the color change of the fruit in the time-lapse image.

[0140] The order management department (420) manages orders from consumers of crops produced in the air dome house (200A).

[0141] And, the orderer management department (430) manages consumers who demand crops produced in the air dome house (200A). Here, consumers can be managed by classifying them into members and non-members. Members can be consumers whose demand for crops is above a certain amount.

[0142] The delivery management department (440) manages the task of delivering crops produced in the air dome house (200A) using a distribution network (e.g., courier, quick service, etc.).

[0143] The export and import management department (450) manages the export and import of produced crops. The management of exports and imports involves customs clearance, customs duties, tax processing, and domestic and international logistics systems.

[0144] The sales management department (460) is related to 1) participation in cooperative operations by farm type, household unit, and branch, 2) formation of operating entities and purchasing contracts, 3) technical guidance on fabric cultivation and management system for delivery and shipping, 4) neighborhood-oriented franchises, 5) franchises specializing in vegetables that live with meat, and 6) the role of local stores by attracting natural farming agricultural products.

[0145]

[0146] (5) Fund Management Department (500)

[0147] The fund management department (500) manages income and expenditures generated from the sale of crops produced in the air dome house (200A), and manages tasks such as depositing income or subscribing to various financial products (e.g., virtual currency, products linked to virtual currency, etc.). The fund management department (500) manages tasks related to investment attraction management, income management, expenditure management, deposit trust management, real estate attraction management, and tax and legal advice. Investment attraction management is related to investments by part regarding crop production and purchasing, and income management is related to income management by distribution channel, the composition of personnel in charge for each part, and comprehensive management audits. Expenditure management is related to personnel composition, labor costs, and research and development management, as well as facility and construction home accounting expenditure management. Deposit trust management is related to deposit liquidity and maintenance management, and deposit management related to trustors, investment, and M&A. Real estate attraction management is related to land acquisition (permission for use, management by joint development). Tax and legal advice is related to various taxes and legal advice related thereto.

[0148]

[0149] (6) Offline store management department (600)

[0150] The offline store management department (600) manages tasks such as store management, sales management, warehouse management, and import management for selling crops produced in the air dome house (200A) offline.

[0151]

[0152] (7) Online Store Management Department (700)

[0153] The online store management department (700) manages online store management, such as orders, delivery, and collection, for the purpose of selling crops produced in the air dome house (200A) online.

[0154] And the online store management department (700) manages members, promotion, and finance in relation to crops. Examples of financial management may include fund management and e-commerce payment management.

[0155]

[0156] (8) Accommodation Management Department (800)

[0157] The accommodation business management department (800) manages the accommodation business, which is a profit-making business related to crops produced in the air dome house (200A). To this end, the accommodation business management department (800) may include a reservation management department (810), a room usage management department (820), a collection management department (830), a hotel environment management department (840), and a promotion management department (850).

[0158] The reservation management department (810) manages reservation operations for accommodation businesses, which are profit-making businesses related to crops produced in the air dome house (200A). Examples of reservation operations include member and non-member management, room (reservation) management, and reservation information management.

[0159] The Room Usage Management Department (820) manages the use of rooms in the accommodation business, which is a profit-making business related to crops produced in the air dome house (200A). Examples of room usage include user check-in and check-out, and user management.

[0160] The collection management department (830) manages the collection of funds from the accommodation business (hotel business), which is a profit business related to crops produced in the air dome house (200A). Examples of collection management include credit card management and cash management.

[0161] The Hotel Environment Management Department (840) manages the environment of the accommodation business (hotel business), which is a profit-making business related to crops produced in the air dome house (200A). Examples of environmental management include electrical, air conditioning, facility, and communication management.

[0162] The promotion management department (850) manages the promotion of the accommodation business, which is a profit-making business related to crops produced in the air dome house (200A). Examples of promotion management include promotion management on the internet and promotion management offline.

[0163]

[0164] (9) Power Generation Management Department (900)

[0165] The power generation management department (900) manages the supply of power used in the air dome house (200A). To this end, the power generation management department (900) can manage solar power generation, wind power generation, and wave power generation for power supply management. Alternatively, the power generation management department (900) can manage electricity demand for infrastructure such as streetlights and landscaping, and electricity demand for each of the four seasons.

[0166]

[0167] (10) Operations Planning Management Department (1000)

[0168] The Operation Planning Management Department (1000) manages the operation, planning, and construction of the village to which the air dome house (200A) belongs.

[0169] Village construction involves 1) the formation of members by agricultural, fisheries, livestock, and forestry cooperatives and construction by part, 2) the operation of specialized housing and profitability enhancement programs, 3) the procurement of natural farming products such as insects and fish, and 4) financial, tax, and legal support systems.

[0170] Plant and research and development are related to 1) construction of air dome houses, 2) research on solar power and self-sufficient energy, 3) development of crop cultivation plants, and 4) development of specialized SOC within housing and village construction.

[0171] The cooperative operation plan is related to 1) management, education, and improvement of the operation plan for constituent cooperatives, 2) preparation of response plans and welfare areas for each cooperative sector, 3) management and operation of purchasing and delivery, 4) contract maintenance and management team, and 5) inducing organic cooperation with the relevant local government.

[0172] The theme park composition and sectoral operation are related to 1) convention and sports facilities, 2) theme park composition and operation, 3) guesthouse housing and 4) condominium construction and operation.

[0173]

[0174] (11) Logistics Management Department (1100)

[0175] The logistics management department (1100) manages sectoral import and export logistics for crops produced in the air dome house (200A), as well as delivery and member management. Sectoral import and export logistics management involves attracting cooperative customs broker partners and domestic and international logistics systems, and domestic and international logistics systems involve computer management, dispatching, and personnel management.

[0176]

[0177] (12) Sales Management Department (1200)

[0178] The sales management department (1200) manages orders for crops produced in the air dome house (200A), manages members / non-members of the orderers, handles delivery to each ordering company, and manages collection from the ordering companies. The sales management department (1200) manages both online and offline stores. In the online store, it manages 1) the central headquarters website, 2) online promotion linked with central media, 3) websites of each exporting country, and logistics system construction (customs, quarantine, packaging preparation plans). In the offline store, through the franchise, it manages 1) lifestyle-oriented franchises linked with 'Donking', 2) creation of creative economy-type jobs, 3) consulting on startup support financial programs, 4) consulting on commercial areas, stores, and sales growth, and 5) sales of greenhouse products and membership sales systems. The actual management company manages planning, training, collection, and various management related to the franchise. And, the sales management department (1200) manages food ingredients, franchise recruitment and operation teams, and stores through the venture operation team.

[0179]

[0180] (13) Crop Management Department (1300)

[0181] The Crop Management Department (1300) collects and analyzes sensor data, manages the crop cultivation system, and stores, packages, and transports crops. The Crop Management Department (1300) acquires sensor data to respond to temperature, humidity, carbon dioxide concentration, and fine dust, and performs control to create an optimized environment for each crop. Additionally, the Crop Management Department (1300) comprehensively manages the water supply device, temperature control, and fertilizer system through the management of the crop cultivation system, and manages and purchases seeds and seedlings of main varieties. Furthermore, the Crop Management Department (300) manages the operation of the cold storage, the description of eco-friendly packaging materials and packaging segmentation, and transportation management (management of courier, delivery, and supply) through storage, packaging, and transportation.

[0182]

[0183] (14) Development Operations Management Department (1400)

[0184] The Development and Operation Management Department (1400) manages the construction and ordering of the air dome house (200A) and manages the development and operation of the air dome house and the research institute. The construction and ordering management involves 1) evaluation of the target site and maintenance of feasibility, 2) determination of crops selected for the target site and management of crop number contracts, 3) determination of the target site operator and contract, 4) preparation of equipment and materials required for construction, and 5) organization and training of construction and operation management personnel. In addition, the development and operation of the air dome house and the research institute involves research and development by air dome house operators and development engineers, and maintenance of the specialization of crops cultivated within the air dome house (research on growth data and functional characteristics by crop and establishment of operation strategies). Furthermore, the Operation Management Department (1400) manages power, water, delivery, central control, after-sales service, real-time monitoring, safety management, deployment of operation personnel, and training of operation personnel through the operation management system. In addition, the Operation Management Department (1400) provides training on ordering and construction through the export team.

[0185]

[0186] (15) Personnel Management Department (1500)

[0187] The personnel management department (1500) manages the work of each department related to crops produced in the air dome house (200A), and manages the training and work of employees.

[0188] The department's operational management relates to the work of the Cooperative Participation Operations Team, the Air Dome House Operations Team (including the Crop Cultivation Research Institute), the General Affairs / Personnel / Accounting / Legal / Planning Teams, and the Marketing Team (business related to sales, franchises, and import / export management). Furthermore, employee training management concerns the configuration and establishment of the central HR system and relates to 1) general and general affairs personnel, 2) engineers and research institute personnel, 3) monthly, quarterly, and departmental training systems, and 4) the composition and training system of the Shopping Mall Operations Team. Training management for the Shopping Mall Operations Team relates to the feasibility of shopping mall operations, the review of qualification for shopping mall operations, shopping mall recommendations, and operational plans for employee performance evaluation.

[0189]

[0190] Meanwhile, FIG. 6 is an aerial view of an integrated production management operation system utilizing an air dome modular smart farm according to one embodiment of the present invention. The integrated production management operation system utilizing an air dome modular smart farm according to one embodiment of the present invention is configured to include all of the following: an air dome house cultivation facility, a tourism facility, an energy facility, a product processing facility, a production and processed product distribution facility, and a cultural convenience facility.

[0191] In one embodiment of the present invention, an air dome house cultivation facility, a tourism facility, an energy facility, a product processing facility, a production and processed product distribution facility, and a cultural facility are illustrated, but are not limited thereto and include more than those.

[0192]

[0193] FIG. 7 is a drawing illustrating an air dome house experience facility in an integrated production management operation system utilizing an air dome modular smart farm according to one embodiment of the present invention, and can provide a new cultural space that combines the advantages of the city and the countryside with tourism and education through a flea market, a rooftop sky garden, a farm stay, food operation, vegetable garden cultivation, farm experience learning, etc.

[0194]

[0195] FIG. 8 is a drawing illustrating a cultural space in an integrated production management operation system utilizing an air dome modular smart farm according to one embodiment of the present invention. It can be created by operating more than 150 guest rooms and a campsite as a tourism trend business, operating tourist facilities such as a swimming pool and a playground, creating an agricultural culture street, and selling purchased crops at a weekend market.

[0196] Tourism trend businesses include: 1) operation of 150 guest rooms (combining farmstay and condo types) and a campsite; 2) operation of tourism facilities such as swimming pools, performance halls, and playgrounds; 3) operation of 'growing your own food' through weekend farms and the Internet of Things; 4) education for future farmers through field experiences for children and youth (linked with schools of all levels); 5) securing tourism resources through agreements with organizations of all levels; and 6) promotion of projects linked with tourism complexes within the local government (operation of shuttle buses, bicycle tours, etc.).

[0197] A weekend market is held within the industry on Fridays, Saturdays, and Sundays, featuring products from the industry and crops purchased from surrounding farms.

[0198] At the street market of the Agricultural Culture Street, various products produced in the valley are displayed according to their cultivation categories. Furthermore, the same products are supplied at the same price throughout all four seasons of the year, and for foreign buyers, the Industry Street Market operates 24 hours a day, enabling smooth transactions without time constraints.

[0199]

[0200] FIG. 9 is a conceptual diagram illustrating franchise operation in an integrated production management operation system utilizing an air dome modular smart farm according to an embodiment of the present invention, in which crops produced in an air dome house can be processed into food and various menus developed and sold through franchising.

[0201] Specialty restaurants for local products (offline) include: 1) restaurants specializing in water parsley and pork belly, 2) restaurants specializing in fresh ginseng, vegetable wraps, and meat, and 3) restaurants specializing in red pepper wraps and meat.

[0202] The reverse-thinking chain operation features 1) a vegetable specialty store rather than a meat specialty store, 2) the sale of meat and vegetables at the butcher shop, 3) the sale of vegetables rather than meat, 4) the opening of a butcher shop within the store, and 5) an interior-air dome house type.

[0203] Unique desserts include 1) roasted chestnuts, sweet potatoes, and potatoes, 2) local juice, 3) black bean juice, and 4) persimmon shakes.

[0204] The sales area of ​​the experience facility within the complex sells 1) minari pork belly, 2) whole barbecue minari pork belly, 3) minari pancake makgeolli, grilled eel, shepherd's purse soybean paste stew, etc.

[0205] These franchises supply chain stores with the same quality at the same price year-round without any gaps.

[0206]

[0207] FIG. 10 is a conceptual diagram illustrating franchising and export in an integrated production management operation system utilizing an air dome modular smart farm according to one embodiment of the present invention, enabling the nationwide franchising of the air dome project industry and the realization of global export of the platform.

[0208] Currently, the Anseong ICT Air Dome Industry is underway, and through the franchising of the Air Dome Project Industry in Korea, it is possible to export the Air Dome Project Industry platform globally.

[0209]

[0210] FIG. 11 is a conceptual diagram of a mobile local food system utilizing an air dome modular smart farm according to one embodiment of the present invention, which can realize a one-stop system for cultivating, producing, manufacturing, distributing, and selling the freshest food desired by consumers, reduce logistics costs and achieve carbon neutrality, and also allow for the sale of carbon credits.

[0211] Mobile local food distribution (apartment event venues, direct sales markets) is a one-stop system that cultivates, produces, manufactures, distributes, and sells the freshest food desired by consumers.

[0212] The Visiting Super Truck (Farms, Villages, Cities) is a purchasing system that visits producers to buy the freshest food they sell.

[0213]

[0214] FIG. 12 is a drawing showing processing and storage facilities, etc., in an integrated production management operation system utilizing an air dome modular smart farm according to one embodiment of the present invention. It enables the distribution of high-quality and safe agricultural products through an automated washing / drying system for agricultural and fishery products, and enables integrated production management operation through an automatic electronic sorting line / automatic sorting and weighing line, non-destructive inspection / variety data informatization, and general / aged / low temperature / frozen storage lines by classification.

[0215]

[0216] FIG. 13 is a photograph of an actual site of an air dome house in an integrated production management operation system utilizing an air dome modular smart farm according to an embodiment of the present invention. FIG. 14 is a conceptual diagram of an air dome house in an integrated production management operation system utilizing an air dome modular smart farm according to an embodiment of the present invention. FIG. 15 illustrates a semi-cylindrical air dome house, showing a structure in which compressed air is injected between a double structure with a special vinyl sheet placed under a net.

[0217] Referring to FIGS. 13 to 15, in one embodiment of the present invention, all growth processes and post-harvest stages of agricultural and livestock products are monitored in real time to provide high-quality, safe food to consumers and a basis for increasing income to producers, thereby realizing ubiquitous, eco-friendly precision agriculture.

[0218] An air dome house (200A) according to one embodiment of the present invention is a semi-cylindrical structure in which compressed air is injected between a double structure with a special vinyl sheet placed under a net. By controlling the air pressure, it prevents typhoons and snow damage, improves soil quality (soil strength) by forcibly injecting air deep into the ground, saves energy by circulating the heated air from the top to an external drying facility, solves cooling and heating using a heat pump system capable of saving more than 70% of energy, completely blocks pests and diseases using an AIR antibacterial filter and ultrasonic room temperature atomization technology, and produces eco-friendly products by sterilizing the supply water, hydroponic culture solution, and production products with ozone (O3).

[0219] Pests and diseases are prevented through pest-prevention ventilation and atomization technologies, and automation can be achieved by scaling up the size and height of the air dome structure to suit the purpose.

[0220] With a state-of-the-art ICT remote control and facility management system, theft, fire, and flood damage are prevented, and the farm can be automatically controlled via external computers and smartphones.

[0221] The exterior of the air dome house is streamlined, and due to the flexibility of the structure, it maintains its original shape even when the building shakes slightly, making it safe even in strong winds or typhoons.

[0222] Air dome houses feature a self-balancing function that stabilizes the structure using internal air pressure without the need for columns. Since the air dome body is a flexible, ductile structure with inherent seismic performance, it is completely unaffected by earthquakes, provided only the foundation is seismically designed.

[0223] Air dome houses are resistant to heavy snow loads, and since the area where snow can accumulate is 4% to 15% of the total surface area, they are hardly affected by heavy snow loads and are not affected by heavy rain.

[0224] Due to the external structure of the air dome house, snow and rain are mostly swept away to the sides, and light transmittance allows the internal temperature to be monitored and adjusted according to the internal and external environments.

[0225] In particular, in the case of sports domes, light transmission is possible up to 16%. Light transmission is possible up to 90%, making it advantageous for plant cultivation.

[0226]

[0227] FIG. 16 is a drawing illustrating an automatic control air conditioning system in an integrated production management operation system utilizing an air dome modular smart farm according to one embodiment of the present invention, and FIG. 17 is a drawing illustrating a simulation of an air circulation structure inside an air dome house in an integrated production management operation system utilizing an air dome modular smart farm according to one embodiment of the present invention.

[0228] Referring to FIGS. 16 and 17, in an integrated production management operating system utilizing an air dome modular smart farm according to one embodiment of the present invention, a constant temperature and humidity are always maintained inside the air dome house (200A) to maintain an optimal plant cultivation environment, virus source containment is maintained by blocking external air inflow, and a fresh environment is maintained by continuously injecting clean air. Moisture and oxygen are injected into the soil using air pressure to improve soil quality, thereby maintaining the best cultivation environment.

[0229] It blocks 99% of ultrafine dust and has a sterilization effect, maintains clean air, and can circulate and supply clean air from the outside through an internal air circulation system.

[0230] An automatic control system for an air dome house according to one embodiment of the present invention automatically detects hourly wind speed, snowfall, etc., and operates, and even in the event of a power outage, backup power is automatically activated to safely maintain the air dome house.

[0231] The special film forming the air dome house can be used for more than 10 years, and the 120 mm × 120 mm mesh is fixed at 1.5 m intervals with ropes (160 mm / θ to 190 mm / θ) to maintain great stability. It solves heating and cooling issues with a self-developed system that saves more than 70% of energy, prevents pests and diseases at the source by applying an AIR antibacterial filter and ultrasonic room temperature atomization technology, and produces eco-friendly products by sterilizing the supply water, hydroponic culture solution, and products with ozone (O3).

[0232] With a state-of-the-art ICT remote control and facility management system, theft, fire, and flood damage are prevented, and the farm can be automatically controlled via external computers and smartphones.

[0233] The air dome house (200A) of the present invention has a streamlined structure, which has the advantage of making air circulation much easier than that of conventional buildings, and by applying an air circulation system that creates laminar flow, the internal air circulation efficiency is increased and the air sterilization power is improved.

[0234] The dome structure and automatic circulation system of the air dome house offer high economic efficiency in controlling internal temperature and humidity, and through the application of an intelligent automatic control system, comfortable indoor air quality can be efficiently managed in real time via sensors installed inside and outside the air dome house.

[0235] In the air dome house (200A), the internal air pressure is 0.8% to 2.5% higher than the external air pressure and is automatically adjusted according to the external environment. Normally, the internal air pressure of the air dome house is 15 mmHg, and it can reach up to 25 mmHg. For example, in the case of a 1,652 m² (500 pyeong) model, mechanical cultivation is possible with dimensions of width (27 m) × length (61.2 m) × height (13 m), and the facility area can be expanded to over 6,600 m² (2,000 pyeong) without steel support columns.

[0236]

[0237] As explained above, the integrated production management operation system utilizing an air dome modular smart farm according to one embodiment of the present invention has the following effects.

[0238] First, in a system for producing agricultural products using air dome houses, analyzing the growth environment to harvest the target production quantity and high-quality produce, and providing the results, has the effect of maximizing the efficiency of agricultural production using air dome houses.

[0239] Second, by linking the air dome house with agricultural production, it has the effect of maximizing profits from various businesses.

[0240] Third, it is possible to implement ICT smart farms in the industry (agricultural production), produce pesticide-free, organic, and ultra-fresh agricultural products, and realize an agricultural platform based on know-how for producing differentiated products.

[0241] Fourth, by establishing a large-scale distribution network and commercializing local food facilities for production, cultivation, distribution, processing, and storage of fresh products, we can lead the market and secure a price advantage through monthly contract farming of various products.

[0242] Fifth, as a trend leader driving change in agriculture, it is possible to implement smart farms by expanding air dome houses into nationwide branches and franchises, secure a profit margin of over 45% through the sale of digital cultivation rights and the cultivation of monthly customized high-income products, and commercialize air dome house complexes into nationwide tourist complexes.

[0243] Sixth, it is possible to realize a global eco-friendly smart farm incorporating air dome house technology and secure source cultivation techniques for various agricultural products as well as monthly customized techniques for cultivating high-income crops.

[0244] Seventh, by constructing an eco-friendly, accident-free, and automated agricultural complex city using ICT technology to improve the relatively poor agricultural sector, we can strengthen competitiveness across the entire agricultural sector—including production, distribution, processing, and export—thereby contributing to the creation of a livable and happy rural community, as well as achieving net-zero carbon neutrality and selling carbon credits.

[0245] Eighth, regarding the structure of the air dome house, it is bound by a circular design without supports and tight external fixing nets and ropes, and is not damaged due to the advantage of reed-like elasticity that can move rhythmically even in strong typhoon currents.

[0246] Ninth, experimental results show that by controlling air pressure without pillars, it causes only slight subsidence even during heavy snowfall and does not collapse; due to its excellent safety and elasticity, it is undamaged even by natural disasters.

[0247]

[0248] The embodiments of the present invention described above have been explained with reference to the embodiments illustrated in the drawings for the sake of understanding, but this is merely illustrative and those skilled in the art will understand that various modifications and equivalent alternative embodiments are possible therefrom. Accordingly, the true technical scope of protection of the present invention should be determined by the appended claims.

Claims

1. A central management server (100) equipped with a user interface unit for inputting control commands from a user and a display unit for displaying various information, and which analyzes and provides information on the growth environment, type, timing of shipment, and quantity of crops capable of generating optimal cultivation profits for the user; and An integrated production management operation system utilizing an air dome modular smart farm, comprising: an air dome house management unit (200) that is linked with the above central management server (100) and manages crops and growth environment grown in an air dome house (200A).

2. In Paragraph 1, The above air dome house management department (200) is A sensor unit (210) including a temperature sensor installed in each zone within the air dome house (200A) to measure the temperature of the zone and a humidity sensor to measure the humidity of the zone; A sensor information analysis unit (220) that analyzes the measurement results of the sensor unit (210) and outputs the measurement results; An air dome environment management unit (230) that controls temperature and humidity to suit the environment of the crop grown in the air dome house (200A) by referring to the analysis results of the sensor information analysis unit (220); and An integrated production management operation system utilizing an air dome modular smart farm, comprising: a crop management unit (240) that controls fertilizer application information and pest and disease prevention information for crops grown in the air dome house (200A) for the user.

3. In Paragraph 1, An integrated production management operation system utilizing an air dome modular smart farm, further comprising a distribution management unit (300) for managing information for distributing crops harvested from the above air dome house (200A).

4. In Paragraph 3, The above distribution management department (300) is A production / demand / supply management unit (310) that manages the production, demand, and supply of crops grown in the above air dome house (200A); Inventory management unit (320) for managing the inventory of the above crops; and An integrated production management operation system utilizing an air dome modular smart farm, comprising: a vehicle delivery and dispatch management unit (330) for managing vehicle delivery or dispatch for delivering the above crops to consumers via a vehicle.

5. In Paragraph 1, An integrated production management operation system utilizing an air dome modular smart farm, characterized by further including a sales management unit (400) that monitors crops grown in the above air dome house (200A) in real time, manages orders and orders from consumers, and manages delivery.

6. In Paragraph 5, The above sales management department (400) is, A monitoring unit (410) that monitors and displays crops grown in the above air dome house (200A) in real time; An order management unit (420) that manages orders from consumers of crops produced in the above air dome house (200A); Order management department (430) for managing consumers of the above crops; and An integrated production management operation system utilizing an air dome modular smart farm, comprising: a delivery management unit (440) that manages the task of delivering the above crops using a distribution network.

7. In Paragraph 1, An integrated production management operation system utilizing an air dome modular smart farm, characterized by further including a fund management unit (500) that manages income generated from selling crops produced in the air dome house (200A) and the expenditure of said income, and manages a series of tasks such as depositing said income or subscribing to various financial products.

8. In Paragraph 1, An integrated production management operation system utilizing an air dome modular smart farm, further comprising an offline store management unit (600) that manages crops produced in the above air dome house (200A).

9. In Paragraph 1, An integrated production management operation system utilizing an air dome modular smart farm, further comprising an online store management unit (700) for managing an online store to sell crops produced in the above air dome house (200A) online.

10. In Paragraph 1, An integrated production management operation system utilizing an air dome modular smart farm, further comprising a lodging business management department (800) that manages lodging business, which is a profit business related to crops produced in the above air dome house (200A).

11. In Paragraph 1, The above accommodation management department (800) is an integrated production management operation system utilizing an air dome modular smart farm, comprising a reservation management department (810), a room usage management department (820), a collection management department (830), a hotel environment management department (840), and a promotion management department (850).

12. In Paragraph 11, An integrated production management operation system utilizing an air dome modular smart farm, characterized in that the reservation management department (810) manages reservation business for accommodation business, which is a profit business related to crops produced in the air dome house (200A); the room usage management department (820) manages room usage for accommodation business, which is a profit business related to crops produced in the air dome house (200A); the collection management department (830) manages collection for accommodation business (hotel business), which is a profit business related to crops produced in the air dome house (200A); the hotel environment management department (840) manages the environment for accommodation business (hotel business), which is a profit business related to crops produced in the air dome house (200A); and the promotion management department (850) manages promotion for accommodation business, which is a profit business related to crops produced in the air dome house (200A).

13. In Paragraph 1, An integrated production management operation system utilizing an air dome modular smart farm, characterized by further including a power generation management unit (900) that manages the supply of power used in the air dome house (200A).

14. In Paragraph 1, An integrated production management operation system utilizing an air dome modular smart farm, characterized by further including an operation planning management department that manages the operation, planning, and construction of the village to which the above air dome house (200A) belongs.

15. In Paragraph 1, An integrated production management operation system utilizing an air dome modular smart farm, characterized by further including a logistics management department (1100) that manages sectoral import and export logistics management for crops produced in the above air dome house (200A), delivery and shipping, and members.

16. In Paragraph 1, An integrated production management operation system utilizing an air dome modular smart farm, characterized by further including a sales management department that manages orders for crops produced in the above air dome house (200A), manages members / non-members of orders, manages delivery to each ordering company, and manages collection of payments from ordering companies.

17. In Paragraph 2, An integrated production management operation system utilizing an air dome modular smart farm, characterized by further including a crop management unit (1300) that collects and analyzes sensor data measured by the sensor unit (210) and manages the crop cultivation system.

18. In Paragraph 2, An integrated production management operation system utilizing an air dome modular smart farm, characterized by further including a development operation management department (1400) that manages the construction and ordering of the above air dome house (200A) and manages the development and operation of the air dome house (200A) and the research institute.

19. In Paragraph 1, An integrated production management operation system utilizing an air dome modular smart farm, characterized by further including a personnel management department (1500) that manages the work of each department related to crops produced in the above air dome house (200A) and manages the education and work of employees.

20. In Paragraph 6, An integrated production management operation system utilizing an air dome modular smart farm, characterized in that the monitoring unit (410) is equipped with a time-lapse camera, and the central management server (100) receives time-lapse videos of a plurality of plants captured by the time-lapse camera, analyzes the correlations of the quality of the fruit according to the growth rate of each leaf, the growth order of each leaf, the growth rate of the plant, the blooming speed of the flower, and the growth rate of the fruit, predicts disease symptoms of the plant based on the growth rate of each part of the plant in the time-lapse video, and predicts the optimal harvest time based on the color change of the fruit in the time-lapse video.

21. In Paragraph 1, An integrated production management operation system utilizing an air dome modular smart farm, characterized in that the central management server (100) encrypts data to be transmitted, includes time information for the encryption, encrypts it once more, performs encryption using the LEA (Lightweight Encryption Algorithm) algorithm, decrypts the received encrypted data, and decrypts the time information data for the encryption to verify the authenticity of the encrypted data.

22. In Paragraph 2, The central management server (100) calculates the difference between the temperature of the area and the expected optimal temperature and calculates the temperature difference that must be lowered to the optimal temperature, and determines whether the temperature difference is smaller than a first set temperature or larger than a second set temperature that is smaller than the first set temperature. If these conditions are satisfied, it determines that the temperature expected after a set time is in an optimal state and does not make changes, and if the conditions are not satisfied, it determines that the temperature expected after a set time is difficult to reach an optimal state. This characterizes an integrated production management operation system utilizing an air dome modular smart farm.

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