Dwelling and music industry double-control system for reconstruction of tail-rotted building

By combining the dual control system for safe and comfortable living with the AI-powered livable module and the automatic control of agricultural facilities, the problem of integrating the needs for safe and comfortable living with the needs for a better life in the renovation of unfinished buildings has been solved. This has enabled efficient use of space and cost control, and improved the quality of life and system adaptability for low-income groups.

CN121352103APending Publication Date: 2026-01-16BEIJING JUJIN DESIGN CO LTD
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Patent Information

Application Number
CN202511461621.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-10-14
Publication Date
2026-01-16

AI Technical Summary

Technical Problem

Existing renovation plans for unfinished buildings fail to effectively combine the needs of comfortable living and prosperous life, resulting in low space utilization, functional deficiencies, and prominent safety hazards. Furthermore, renovation costs are high and promotion is difficult. Existing building environment control systems cannot meet the dual needs of human comfort and precise control of plant growth, lacking adaptability and cost control.

Method used

Design a dual-control system for comfortable living and productive work, including an AI-powered livable module, an automatic control module for artificial environment agricultural facilities, and a two-way control system. Through an integrated intelligent control scheme, achieve coordinated control of the living environment and the agricultural production environment. Employ soilless cultivation technology, clean energy access, and AI optimization algorithms to reduce costs and improve system adaptability.

Benefits of technology

It achieves efficient utilization of unfinished building spaces, provides integrated solutions for living and employment, reduces renovation and operation costs, increases acceptance among low-income groups, conforms to green building concepts, and enhances the economic and social value of the space.

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Abstract

The invention provides a residence and music industry double-control system for reconstruction of a tail building, and relates to the field of environment reconstruction systems. The settlement and music industry double-control system for reconstruction of the tail building comprises an artificial intelligence livable module, an artificial environment agricultural facility automatic control module and a two-way control system, and the occupied area of the artificial intelligence livable module is 40-50 square meters. The occupied area of the artificial environment agricultural facility automatic control module ranges from 80 square meters to 150 square meters, and the bidirectional control system is connected with the artificial intelligence livable module and the artificial environment agricultural facility automatic control module. According to the system, functions are fused, the idle space of the tail building is fully activated, the living demand is met through the 40-50 square meter livable module, employment and income sources are provided through the 80-150 square meter agricultural production module, the utilization value of the idle space of the tail building is greatly improved, and a living and employment integrated solution is provided for low-income groups.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of environmental transformation systems, in particular to a double-control system for the reconstruction of a half-finished building. BACKGROUND

[0002] As idle assets in urban construction, half-finished buildings generally have low space utilization, missing functions, and prominent safety hazards, which not only wastes land resources but also affects the cityscape. At the same time, with the acceleration of urbanization, low-income groups face the dual dilemma of high housing costs and limited employment channels. Existing reconstruction schemes for half-finished buildings focus only on the repair of residential functions and fail to combine housing needs with employment needs. The economic value and social value of the reconstructed space are difficult to fully realize. Existing building environmental control systems are designed for single environments and cannot meet the dual needs of human comfort and precise control of plant growth. Moreover, they lack adaptability to half-finished building reconstruction scenarios and do not consider the original structural characteristics of half-finished buildings, energy supply limitations, and the affordability of low-income groups, resulting in long investment return periods and difficulty in popularization.

[0003] Therefore, there is an urgent need for a double-control system that can balance housing and employment functions, adapt to half-finished building reconstruction scenarios, be cost-effective, and have high intelligence, to revitalize idle space and help low-income groups achieve the dual goals of housing and employment. SUMMARY

[0004] To overcome the shortcomings of the prior art, the present application provides a double-control system for the reconstruction of a half-finished building, which achieves coordinated control of the living environment and agricultural production environment within the half-finished building space through an integrated intelligent control scheme, balances comfort and production efficiency, reduces reconstruction and operation costs, and improves the acceptance and stickiness of low-income groups.

[0005] To achieve the above objectives, the present application is implemented through the following technical solutions: A double-control system for the reconstruction of a half-finished building, comprising an artificial intelligence livable module, an artificial environment agricultural facility automatic control module, and a two-way control system. The artificial intelligence livable module has an area of 40-50 square meters. The artificial environment agricultural facility automatic control module has an area of 80-150 square meters. The two-way control system is connected to the artificial intelligence livable module and the artificial environment agricultural facility automatic control module for independent and coordinated automatic control of the living environment and plant growth environment. The artificial intelligence livable module includes an air conditioning fresh air subsystem, an alarm subsystem, a remote control subsystem, a common air conditioning outdoor unit subsystem, and a door and window control subsystem, the air conditioning fresh air subsystem is used for adjusting the temperature, humidity and air quality in the human living environment, the alarm subsystem is used for monitoring the safety hazards in the human living environment and issuing an alarm, the remote control subsystem is used for the user to remotely control various devices in the artificial intelligence livable module, the common air conditioning outdoor unit subsystem is used to provide outdoor heat dissipation support for the air conditioning fresh air subsystem, and the door and window control subsystem is used to automatically control the opening and closing of doors and windows. The artificial environment agricultural facility automatic control module is matched with a small GAP production unit using soilless cultivation or hydroponic planting technology, the artificial environment agricultural facility automatic control module includes an environment parameter monitoring subsystem and a planting regulation and control subsystem, the environment parameter monitoring subsystem is used to collect the temperature, humidity, light intensity, CO2 concentration and nutrient solution parameters in the plant growth environment in real time, and the planting regulation and control subsystem is used to automatically adjust the temperature and humidity, light, CO2 supply and nutrient solution ratio in the plant growth environment according to the data collected by the environment parameter monitoring subsystem. The bidirectional control system includes a central control unit, a data transmission subsystem and a man-machine interaction subsystem, the central control unit is used to receive and analyze the operation data of the artificial intelligence livable module and the artificial environment agricultural facility automatic control module, and generate control instructions, the data transmission subsystem is used to realize data interaction between the central control unit and each module and each subsystem, and the man-machine interaction subsystem is used for the user to view the system operation state, set the control parameters and manually intervene in the control process.

[0006] Further, the bidirectional control system further includes an outdoor auxiliary equipment interface unit, the outdoor auxiliary equipment interface unit is provided with a solar power supply equipment interface, an outer wall power generation equipment interface, a road surface concrete power generation equipment interface and a natural ecology introduction system interface, the solar power supply equipment interface is used to access a solar photovoltaic power supply system to provide auxiliary power for the double control system, the outer wall power generation equipment interface is used to access an outer wall photovoltaic panel or a temperature difference power generation device, the road surface concrete power generation equipment interface is used to access a road surface piezoelectric power generation system, and the natural ecology introduction system interface is used to access a rainwater recycling system, a vertical greening irrigation system or a natural ventilation guiding system.

[0007] Further, the alarm subsystem of the artificial intelligence livable module comprises a fire detector, a gas leakage detector, a human body sensing detector and an emergency call button, the fire detector is used for monitoring smoke or temperature anomaly, the gas leakage detector is used for monitoring combustible gas concentration, the human body sensing detector is used for preventing illegal intrusion, and the emergency call button is used for sending a help signal when a user encounters an emergency, after the alarm subsystem triggers an alarm, alarm information can be sent to a user mobile terminal through the remote control subsystem, and the door and window control subsystem is linked to close doors and windows or open emergency passages.

[0008] Further, the small GAP production unit of the artificial environment agricultural facility automatic control module is provided with a product quality traceability subsystem, the product quality traceability subsystem is used for recording environmental parameters in the planting process, nutrient solution use, pest control measures and harvesting time, and a queryable product quality traceability code is generated.

[0009] Further, the outdoor auxiliary equipment interface unit of the two-way control system is also provided with a power allocation subsystem, the power allocation subsystem is used for preferentially supplying the high energy consumption equipment in the two-way control system with the electric energy generated by the outdoor auxiliary power generation equipment, and storing the excess electric energy to the energy storage equipment or into the power grid.

[0010] Further, a soundproof, heatproof partition is arranged between the artificial intelligence livable module and the artificial environment agricultural facility automatic control module, the partition is made of light thermal insulation material, and an equipment maintenance channel and a pipeline interface are reserved, so that the two modules are physically separated and functionally coordinated.

[0011] Further, the central control unit of the two-way control system is built-in with an AI optimization algorithm module, the AI optimization algorithm module is used for dynamically optimizing the livable environment control parameters and the plant growth environment control parameters according to historical operation data, user usage habits and plant growth cycle requirements, preferentially guaranteeing the basic needs of the living environment in the power consumption peak period, reducing unnecessary energy consumption of the agricultural production module, optimizing light and nutrient solution supply in the rapid growth period of crops, and improving yield.

[0012] Further, the man-machine interaction subsystem of the two-way control system supports mobile phone APP or web page operation, which is convenient for users to remotely adjust indoor temperature and humidity and check safety status.

[0013] The application provides a double-control system for reconstruction of a dilapidated building, which has the following beneficial effects: 1. This invention provides a dual-control system for housing and employment in the renovation of unfinished buildings. It integrates functions, fully revitalizes the idle space of unfinished buildings, meets the living needs through 40-50 square meter livable modules, and provides employment and income sources through 80-150 square meter agricultural production modules, greatly improving the utilization value of idle space in unfinished buildings and providing an integrated solution for housing and employment for low-income groups.

[0014] 2. This invention provides a dual-control system for the renovation of unfinished buildings, enabling automatic control of both the living and production environments through a two-way control system. This reduces redundant equipment investment. The combination of AI optimization algorithms and outdoor auxiliary energy systems lowers system operating costs. Furthermore, the system fully considers the original structural characteristics of the unfinished buildings, using shared air conditioning units and outdoor auxiliary equipment interfaces to reduce the amount of modification required to the main building structure, thus lowering construction difficulty and costs. The small-scale GAP production unit utilizes mature hydroponics technology, is simple to operate, and is easy for low-income groups to master, enhancing the system's feasibility for widespread adoption.

[0015] 3. This invention provides a dual-control system for safe living and prosperous life in the renovation of unfinished buildings. By setting up access to clean energy sources such as solar energy and concrete road surface power generation, as well as designing a rainwater recycling system, it conforms to the concept of green building development, reduces the system's dependence on traditional energy and water resources, and achieves a balance between economic and environmental benefits. Attached Figure Description

[0016] Figure 1 This is a system structure framework diagram of the dual control system for safe living and prosperous life used in the renovation of unfinished buildings according to the present invention. Detailed Implementation

[0017] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention. Example 1

[0018] like Figure 1 As shown, this embodiment of the invention provides a dual-control system for safe and comfortable living and working in the renovation of unfinished buildings, including an artificial intelligence-based livable module, an artificial environment agricultural facility automatic control module, a two-way control system, and an outdoor auxiliary equipment interface unit; Artificial intelligence livable module: 40-50 square meters, suitable for small and medium-sized housing reconstruction needs in abandoned buildings, can meet the needs of 1-3 people living in families, and the module integrates air conditioning fresh air subsystem, alarm subsystem, remote control subsystem, shared air conditioning external unit subsystem and door and window control subsystem. The shared air conditioning external unit subsystem adopts centralized installation design, reduces the amount of reconstruction of the outer facade of the abandoned building, and reduces the construction cost. The remote control subsystem supports mobile phone APP or web page operation, which is convenient for users to remotely adjust indoor temperature and humidity and check safety status. Artificial environment agricultural facility automatic control module: 80-150 square meters, supporting small GAP production units, using soilless cultivation or water culture technology, can plant economic crops such as leafy vegetables and fruits. The environmental parameter monitoring subsystem in the module collects key parameters required for plant growth in real time by deploying various sensors. The planting and control subsystem automatically adjusts light, such as LED plant growth lamp brightness and spectrum, CO2 concentration, through CO2 generator precise supply, nutrient solution circulation timed and quantitative irrigation and nutrient supplement to ensure stable high yield of crops. The core of the two-way control system is the central control unit, which uses wired + wireless redundant design through the data transmission subsystem to ensure data transmission stability, connects the two functional modules, and realizes data interaction and instruction issuance. The AI optimization algorithm module built-in the central control unit can dynamically adjust the control strategy according to seasonal changes, crop growth stages and user usage habits, such as prioritizing basic needs of living environment during peak electricity consumption period to reduce unnecessary energy consumption of agricultural production module; during the rapid growth period of crops, optimize light and nutrient solution supply to improve yield. The man-machine interaction subsystem supports touch screen, voice control and mobile phone APP multi-end operation, with simple and easy-to-understand interface, suitable for the usage habits of low-income groups. The outdoor auxiliary equipment interface unit is designed for the characteristics of unstable energy supply and weak infrastructure of abandoned buildings, and reserves multiple outdoor auxiliary equipment interfaces. The connection of solar power supply equipment and external wall and road power generation equipment can reduce the dependence of the system on the municipal power grid and reduce operating costs. Natural ecological introduction system, such as rainwater recycling system, can use collected rainwater for agricultural irrigation, further reducing water resource consumption, in line with the concept of green and low-carbon reconstruction.

[0019] Working principle: When the system is running, the central control unit of the bidirectional control system receives the indoor temperature and humidity, safety state and other data of the artificial intelligence livable module and the crop growth environment parameters of the artificial environment agricultural facility automatic control module in real time. When the temperature in the artificial intelligence livable module is higher than the preset threshold, the central control unit issues an instruction to the air conditioning fresh air subsystem to start the refrigeration mode. When the alarm subsystem detects gas leakage, it immediately triggers an alarm and simultaneously closes the gas valve and opens the door and window ventilation, and sends an alarm message to the user's mobile phone. For the artificial environment agricultural facility automatic control module, when the light intensity collected by the environment parameter monitoring subsystem is lower than the crop requirement, the central control unit instructs the planting regulation subsystem to turn on the plant growth lamp and adjust to the corresponding spectrum. When the nutrient solution value deviates from the standard range, the automatic nutrient supplement or dilution program is started to ensure the stability of the crop growth environment. The solar power supply system connected to the outdoor auxiliary equipment interface unit gives priority to supplying power to the system when the sunlight is sufficient, and the excess energy is stored in the energy storage battery. At night or on cloudy days, the energy storage battery and the municipal power grid cooperate to supply power, ensuring the continuous operation of the system. The AI optimization algorithm module can predict the energy supply situation and crop growth demand in the next week by analyzing historical data, and adjust the control parameters in advance to achieve optimal allocation of energy and resources.

[0020] In this paper, the following points need attention: 1. The drawings of the embodiments of the present disclosure only involve the structures involved in the embodiments of the present disclosure, and other structures can refer to the general design.

[0021] 2. In the case of no conflict, the embodiments of the present disclosure and the features in the embodiments can be combined with each other to obtain new embodiments.

[0022] Although the embodiments of the present application have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and spirits of the present application, and the scope of the present application is defined by the appended claims and their equivalents. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor are within the scope of protection of the present application.

Claims

1. A dual-control system for loft reconstruction, comprising an artificial intelligence livable module, an artificial environment agricultural facility automatic control module, and a two-way control system, characterized in that: The artificial intelligence inhabitable module has an area of 40-50 square meters, the artificial environment agricultural facility automatic control module has an area of 80-150 square meters, and the bidirectional control system is connected with the artificial intelligence inhabitable module and the artificial environment agricultural facility automatic control module to independently and cooperatively automatically control the human inhabitable environment and the plant growth environment. The artificial intelligence inhabitable module comprises an air conditioner fresh air subsystem, an alarm subsystem, a remote control subsystem, a common air conditioner outdoor unit subsystem and a door and window control subsystem, the air conditioner fresh air subsystem is used to adjust the temperature, humidity and air quality in the human inhabitable environment, the alarm subsystem is used to monitor the safety hazards in the human inhabitable environment and send an alarm, the remote control subsystem is used to remotely control various devices in the artificial intelligence inhabitable module, the common air conditioner outdoor unit subsystem is used to provide outdoor heat dissipation support for the air conditioner fresh air subsystem, and the door and window control subsystem is used to automatically control the opening and closing of doors and windows. The artificial environment agricultural facility automatic control module is equipped with a small GAP production unit using soilless culture or hydroponic planting technology, and comprises an environment parameter monitoring subsystem and a planting regulation and control subsystem, the environment parameter monitoring subsystem is used to collect the temperature, humidity, light intensity, CO2 concentration and nutrient solution parameters in the plant growth environment in real time, and the planting regulation and control subsystem is used to automatically adjust the temperature and humidity, light, CO2 supply and nutrient solution ratio in the plant growth environment according to the data collected by the environment parameter monitoring subsystem. The bidirectional control system comprises a central control unit, a data transmission subsystem and a man-machine interaction subsystem, the central control unit is used to receive and analyze the operation data of the artificial intelligence inhabitable module and the artificial environment agricultural facility automatic control module, and generate control instructions, the data transmission subsystem is used to realize data interaction between the central control unit and each module and each subsystem, and the man-machine interaction subsystem is used for users to view the system operation state, set control parameters and manually intervene in the control process.

2. The system according to claim 1, wherein the system is used for reconstruction of a dilapidated building. The bidirectional control system further comprises an outdoor auxiliary equipment interface unit, the outdoor auxiliary equipment interface unit is provided with a solar power supply equipment interface, an outer wall power generation equipment interface, a road surface concrete power generation equipment interface and a natural ecology introduction system interface, the solar power supply equipment interface is used to connect a solar photovoltaic power supply system to provide auxiliary power for the bidirectional control system, the outer wall power generation equipment interface is used to connect an outer wall photovoltaic panel or a temperature difference power generation device, the road surface concrete power generation equipment interface is used to connect a road surface piezoelectric power generation system, and the natural ecology introduction system interface is used to connect a rainwater recycling system, a vertical greening irrigation system or a natural ventilation guiding system.

3. The system according to claim 1, wherein the system is characterized in that: The alarm subsystem of the artificial intelligence livable module includes a fire detector, a gas leakage detector, a human body sensing detector, and an emergency call button. The fire detector is used to monitor smoke or temperature anomalies. The gas leakage detector is used to monitor the concentration of flammable gas. The human body sensing detector is used to prevent illegal intrusion. The emergency call button is used to send a help signal when the user encounters an emergency. After the alarm subsystem triggers an alarm, it can send alarm information to the user's mobile terminal through the remote control subsystem and link the door and window control subsystem to close the doors and windows or open the emergency passage.

4. The dual-control system for the reconstruction of a tenement according to claim 1, characterized in that: The small GAP production unit of the artificial environment agricultural facility automatic control module is equipped with a product quality traceability subsystem. The product quality traceability subsystem is used to record environmental parameters, nutrient solution usage, pest control measures, and harvesting time during planting, and generate a queryable product quality traceability code.

5. The dual-control system for loft conversion according to claim 2, wherein: The outdoor auxiliary equipment interface unit of the two-way control system is also provided with a power allocation subsystem. The power allocation subsystem is used to prioritize the supply of electrical energy generated by outdoor auxiliary power generation equipment to high-energy-consuming equipment in the two-way control system, and store excess electrical energy in energy storage equipment or into the power grid.

6. The dual-control system for loft conversion according to claim 1, wherein: A soundproof, heat-insulating partition is provided between the artificial intelligence livable module and the artificial environment agricultural facility automatic control module. The partition is made of lightweight thermal insulation material and has a device maintenance access and pipeline interface, achieving physical separation and functional coordination of the two modules.

7. The dual-control system for loft conversion according to claim 1, wherein: The central control unit of the two-way control system is built-in with an AI optimization algorithm module. The AI optimization algorithm module is used to dynamically optimize the livable environment control parameters and plant growth environment control parameters based on historical operation data, user usage habits, and plant growth cycle requirements. During the peak electricity consumption period, it prioritizes the basic needs of the living environment, reduces unnecessary energy consumption of the agricultural production module, optimizes light and nutrient solution supply during the rapid growth period of crops, and improves yield.

8. The dual control system for housing and business reconstruction of a dilapidated building according to claim 1, wherein: The human-computer interaction subsystem of the two-way control system supports mobile phone APP or web page operation, making it convenient for users to remotely adjust indoor temperature and humidity and check safety status.