A modular building moisture-proof and dehumidification method, device, electronic equipment and medium

CN117847645BActive Publication Date: 2026-08-07深圳中集建造有限公司 +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
深圳中集建造有限公司
Filing Date
2023-12-22
Publication Date
2026-08-07

AI Technical Summary

Technical Problem

[0004]但是传统的模块化建筑防潮除湿方法只能由人工进行擦拭或进行通风,不能通过模块化建筑受潮情况对模块化建筑进行防潮除湿,精准度较低

Benefits of technology

[0090]在获取到模块化建筑对应湿度信息后,将湿度信息与预设是湿度信息进行差值计算,确定出湿度差值信息;随后将湿度差值信息与预设湿度差值信息进行对比,若湿度差值信息不小于预设湿度差值信息,则说明此时模块化建筑的湿度信息已经对居住造成一定的影响,随即确定出受到潮湿影响的范围区域,即目标区域;随即基于目标区域确定出目标建筑单元,从而确定出受到潮湿影响的建筑单元;在确定出目标建筑单元后,根据目标建筑单元以及湿度差值信息,生成第一加热指令,并控制加热设备开启,以使得将收到潮湿影响的目标建筑单元降低受潮情况,同时结合湿度差值情况生成对应的第一加热指令,从而提高防潮除湿的精准度。

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Abstract

The application relates to the technical field of building moisture-proofing, and in particular to a modular building moisture-proofing and dehumidifying method and device, electronic equipment and a medium. The method comprises the following steps: acquiring humidity information corresponding to a modular building, performing difference calculation on the humidity information and preset humidity information to determine humidity difference information; comparing the humidity difference information with preset humidity difference information, and if the humidity difference information is not less than the preset humidity difference information, determining a target area, wherein the target area is a range area affected by moisture; determining a target building unit based on the target area; and generating a first heating instruction based on the target building unit and the humidity difference information, and controlling a heating device to be turned on. The application can improve the precision of moisture-proofing and dehumidifying.
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Description

Technical Field

[0001] This application relates to the field of building moisture-proofing technology, and in particular to a modular building moisture-proofing and dehumidification method, device, electronic equipment and medium. Background Technology

[0002] Modular buildings, as a novel architectural form that has emerged in recent years, offer advantages such as rapid construction, minimal susceptibility to climate changes, and the ability to be disassembled and moved. However, during use, modular buildings are susceptible to moisture, leading to damage and corrosion, which can affect their normal use and lifespan. Therefore, effective moisture-proofing and dehumidification are crucial issues that need to be addressed in the use of modular buildings.

[0003] Traditional methods for moisture control and dehumidification in modular buildings mainly involve manually wiping away moisture in damp areas or manually ventilating the interior to reduce dampness.

[0004] However, traditional methods for moisture-proofing and dehumidifying modular buildings can only be done manually by wiping or ventilating, and cannot be based on the moisture content of the modular building, resulting in low accuracy. Summary of the Invention

[0005] To improve the accuracy of moisture-proofing and dehumidification, this application provides a modular building moisture-proofing and dehumidification method, device, electronic equipment, and medium.

[0006] Firstly, this application provides a modular building moisture-proofing and dehumidification method, which adopts the following technical solution:

[0007] A modular building moisture-proofing and dehumidification method includes:

[0008] Obtain humidity information corresponding to the modular building, and calculate the difference between the humidity information and the preset humidity information to determine the humidity difference information;

[0009] The humidity difference information is compared with the preset humidity difference information. If the humidity difference information is not less than the preset humidity difference information, the target area is determined. The target area is the area affected by humidity.

[0010] Based on the target area, the target building units are determined;

[0011] Based on the target building unit and the humidity difference information, a first heating command is generated, and the heating equipment is turned on.

[0012] By adopting the above technical solution, after obtaining the humidity information corresponding to the modular building, the difference between the humidity information and the preset humidity information is calculated to determine the humidity difference information. Then, the humidity difference information is compared with the preset humidity difference information. If the humidity difference information is not less than the preset humidity difference information, it means that the humidity information of the modular building has already had a certain impact on the living conditions. The affected area, i.e., the target area, is then determined. Based on the target area, the target building unit is then determined, thereby identifying the building unit affected by the humidity. After the target building unit is determined, a first heating command is generated according to the target building unit and the humidity difference information, and the heating equipment is turned on to reduce the dampness of the target building unit affected by the humidity. At the same time, the corresponding first heating command is generated in combination with the humidity difference information, thereby improving the accuracy of moisture prevention and dehumidification.

[0013] In one possible implementation, determining the target region includes:

[0014] Obtain modular building drawing information and humidity fluctuation location information;

[0015] Based on the humidity fluctuation location information, determine the coordinate information corresponding to the humidity fluctuation location information;

[0016] Based on the coordinate information and the modular building drawings, the target area is determined.

[0017] By adopting the above technical solution, after obtaining modular building drawing information and humidity fluctuation location information, the coordinate information corresponding to the humidity fluctuation location information is determined based on the humidity fluctuation location information, thereby accurately determining the location area where the humidity information fluctuates; then, based on the coordinate information corresponding to the humidity fluctuation location information and the modular building drawing information, the target area is determined, thereby accurately determining the range area affected by humidity.

[0018] In one possible implementation, determining the target building unit based on the target area includes:

[0019] The target area is divided into multiple sub-target areas;

[0020] Feature extraction is performed on the multiple sub-target regions to determine temperature feature points and water droplet feature points;

[0021] The number of temperature feature points and the number of water droplet feature points corresponding to the multiple sub-target regions are compared to determine the feature ratio information.

[0022] If the feature ratio information is greater than the preset ratio information, then the building units contained in the sub-target area corresponding to the greater than preset ratio information are determined as target building units.

[0023] By adopting the above technical solution, since the degree of dampness in the target area is inconsistent, the target area is divided into multiple sub-target areas. After determining the multiple sub-target areas, regional features are extracted from each sub-target area to identify temperature feature points and water droplet feature points, making the target area more accurate. The number of temperature feature points and water droplet feature points corresponding to the multiple sub-target areas are compared with the number of temperature feature points to obtain feature ratio information. If the feature ratio information is greater than a preset ratio information, the building units contained in the sub-target area with the greater than preset ratio information are identified as target building units, thereby achieving accurate positioning of the damp area.

[0024] In one possible implementation, generating the first heating command based on the target building unit and the humidity difference information includes:

[0025] Based on the humidity difference information, humidity level information is determined;

[0026] Based on the humidity level information, determine the temperature information;

[0027] Based on the target building unit and the temperature information, the first heating command is generated.

[0028] By adopting the above technical solution, after determining the target building unit and temperature difference information, the humidity level information is then determined based on the humidity difference information, thereby determining the affected situation; then, the temperature information is determined based on the humidity level information corresponding to each humidity difference information; based on the target building unit and temperature information, a corresponding first heating command is generated, thereby determining the corresponding first heating command according to different damp conditions.

[0029] In one possible implementation, the generation of the first heating command is further included before:

[0030] Obtain material information for modular buildings;

[0031] Based on the material information, moisture-proof information is determined, which is the maximum humidity that the building materials of the modular building can withstand.

[0032] Based on the moisture-proof information, the heating temperature is determined;

[0033] A first heating command is generated based on the heating temperature.

[0034] By adopting the above technical solution, after obtaining the material information of the modular building, since different building materials have different moisture resistance capabilities, the moisture resistance information corresponding to the material information is determined based on the material information of the modular building, thereby determining the maximum humidity that the building material can withstand; then, based on the moisture resistance information, the heating temperature is determined; then, according to the heating temperature, a first heating command is generated, thereby determining the first heating command corresponding to the building material of the modular building.

[0035] In one possible implementation, the control of the heating device to turn on further includes:

[0036] Get weather information;

[0037] Based on the weather information, determine the air humidity information;

[0038] The air humidity information is matched with preset air humidity information;

[0039] If the air humidity information is not less than the preset air humidity information, a ventilation command is generated and displayed.

[0040] By adopting the above technical solution, after obtaining weather information, the air humidity information is determined based on the obtained weather information; then the air humidity information is matched with the preset air humidity information; if the air humidity information is not less than the preset air humidity information, it indicates that the humidity in the air at this time may have a certain impact on the modular building, and then a ventilation command is generated and displayed, thereby reducing the impact of humid weather on the modular building.

[0041] In one possible implementation, the process of determining the target region further includes:

[0042] Obtain environmental information and, based on that information, determine the trend of humidity development;

[0043] Based on the aforementioned humidity development trend, determine the humid area corresponding to the end of a preset unit time period;

[0044] The damp area is compared with the target area to determine the dampness deviation area;

[0045] When the preset unit time period ends, a second heating command is generated based on the moisture deviation area.

[0046] By adopting the above technical solution, after determining the target area, since the humid area will spread due to the influence of environmental factors, the humid area is predicted based on the acquired environmental information to determine the humid development trend. Based on the humid development trend, the area to which the humid area will spread after the end of the preset unit time period is determined, that is, the humid area corresponding to the end of the preset unit time period. In order to achieve accurate prediction, the humid area is compared with the target area to determine the area where the humid area deviates from the target area, and the area with deviation is designated as the humid deviation area. After the end of the preset unit time period, a second heating command is generated based on the humid deviation area. Thus, the subsequent humid development is predicted, and preparations are made in advance.

[0047] Secondly, this application provides a modular building moisture-proof and dehumidification device, which adopts the following technical solution:

[0048] A modular building moisture-proof and dehumidification device includes: a humidity difference information determination module, a target area determination module, a target building unit determination module, and a first heating command generation module, wherein...

[0049] The humidity difference information determination module is used to obtain the humidity information corresponding to the modular building, and calculate the difference between the humidity information and the preset humidity information to determine the humidity difference information;

[0050] The target area determination module is used to compare the humidity difference information with the preset temperature difference information. If the humidity difference information is not less than the preset humidity difference information, then the target area is determined. The target area is the area affected by humidity.

[0051] The target building unit determination module is used to determine target building units based on the target area;

[0052] The first heating command generation module is used to generate a first heating command based on the target building unit and the humidity difference information, and control the heating equipment to turn on.

[0053] By adopting the above technical solution, after obtaining the humidity information corresponding to the modular building, the humidity difference information determination module calculates the difference between the humidity information and the preset humidity information to determine the humidity difference information. Subsequently, the target area determination module compares the humidity difference information with the preset humidity difference information. If the humidity difference information is not less than the preset humidity difference information, it indicates that the humidity information of the modular building has already had a certain impact on the living conditions, and the affected area, i.e., the target area, is then determined. Subsequently, the target building unit determination module determines the target building unit based on the target area, thereby determining the building unit affected by the humidity. After determining the target building unit, the first heating command generation module generates a first heating command based on the target building unit and the humidity difference information, and controls the heating equipment to turn on, so as to reduce the dampness of the target building unit affected by the humidity. At the same time, the corresponding first heating command is generated in combination with the humidity difference information, thereby improving the accuracy of moisture prevention and dehumidification.

[0054] In one possible implementation, the target region determination module includes: a first information acquisition unit, a coordinate information determination unit, and a target region determination unit, wherein,

[0055] The first information acquisition unit is used to acquire modular building drawing information and humidity fluctuation location information;

[0056] The coordinate information determination unit is used to determine the coordinate information corresponding to the humidity fluctuation location information based on the humidity fluctuation location information.

[0057] The target area determination unit is used to determine the target area based on the coordinate information and the modular building drawing information.

[0058] In one possible implementation, the target building unit determination module includes: a sub-target region determination unit, a feature point determination unit, a feature ratio information determination unit, and a target building unit determination unit, wherein,

[0059] The sub-target region determination unit is used to divide the target region into multiple sub-target regions.

[0060] The feature point determination unit is used to extract features from the multiple sub-target regions and determine temperature feature points and water droplet feature points;

[0061] The feature ratio information determination unit is used to compare the number of temperature feature points and the number of water droplet feature points corresponding to the multiple sub-target regions to determine the feature ratio information.

[0062] The target building unit is used to determine the building units contained in the sub-target area corresponding to the feature ratio information as target building units if the feature ratio information is greater than the preset ratio information.

[0063] In one possible implementation, the first heating command generation module includes: a humidity level information determination unit, a temperature information determination unit, and a first heating command determination unit, wherein...

[0064] A humidity level information determination unit is used to determine humidity level information based on the humidity difference information;

[0065] A temperature information determination unit is used to determine temperature information based on the humidity level information;

[0066] The first heating command determining unit is used to generate the first heating command based on the target building unit and the temperature information.

[0067] In one possible implementation, the modular building moisture-proof and dehumidification device further includes: a material information acquisition module, a moisture-proof information determination module, a heating temperature determination module, and a first heating command determination module, wherein...

[0068] The material information acquisition module is used to acquire material information for modular buildings;

[0069] A moisture-proof information determination module is used to determine moisture-proof information based on the material information, wherein the moisture-proof information is the maximum humidity that the building materials of the modular building can withstand;

[0070] A heating temperature determination module is used to determine the heating temperature based on the moisture-proof information;

[0071] The first heating command determination module is used to generate the first heating command based on the heating temperature.

[0072] In one possible implementation, the modular building moisture-proof and dehumidification device further includes: a weather information acquisition module, an air humidity information determination module, a matching module, and a display module, wherein...

[0073] The weather information acquisition module is used to acquire weather information;

[0074] An air humidity information determination module is used to determine air humidity information based on the weather information.

[0075] A matching module is used to match the air humidity information with preset air humidity information;

[0076] The display module is used to generate a ventilation command and display the result if the air humidity information is not less than the preset air humidity information.

[0077] In one possible implementation, the modular building moisture-proof and dehumidification device further includes: a moisture development trend determination module, a moisture area determination module, a moisture deviation area determination module, and a second heating command determination module, wherein...

[0078] The humidity development trend determination module is used to acquire environmental information and determine the humidity development trend based on the environmental information.

[0079] The humid area determination module is used to determine the humid area corresponding to the end of a preset unit time period based on the humid development trend.

[0080] The moisture deviation area determination module is used to compare the moisture area with the target area to determine the moisture deviation area;

[0081] The second heating command determination module is used to determine a second heating command based on the humidity deviation area when the preset unit time period ends.

[0082] Thirdly, this application provides an electronic device that adopts the following technical solution:

[0083] An electronic device comprising:

[0084] At least one processor;

[0085] Memory;

[0086] At least one application, wherein the at least one application is stored in memory and configured to be executed by at least one processor, the at least one application being configured to: perform the above-described modular building moisture-proofing and dehumidification method.

[0087] Fourthly, this application provides a computer-readable storage medium, which adopts the following technical solution:

[0088] A computer-readable storage medium includes: a computer program stored thereon that can be loaded by a processor and execute the above-described modular building moisture-proofing and dehumidification method.

[0089] In summary, this application includes the following beneficial technical effects:

[0090] After obtaining the humidity information corresponding to the modular building, the difference between the humidity information and the preset humidity information is calculated to determine the humidity difference information. Then, the humidity difference information is compared with the preset humidity difference information. If the humidity difference information is not less than the preset humidity difference information, it means that the humidity information of the modular building has already had a certain impact on the living. Then, the area affected by dampness is determined, that is, the target area. Then, the target building unit is determined based on the target area, thereby determining the building unit affected by dampness. After the target building unit is determined, a first heating command is generated according to the target building unit and the humidity difference information, and the heating equipment is turned on to reduce the dampness of the target building unit affected by dampness. At the same time, the corresponding first heating command is generated in combination with the humidity difference information to improve the accuracy of moisture prevention and dehumidification. Attached Figure Description

[0091] Figure 1 This is a flowchart illustrating the modular building moisture-proofing and dehumidification method of this application;

[0092] Figure 2 This is a block diagram of the modular building moisture-proof and dehumidification device of this application;

[0093] Figure 3 This is a schematic diagram of an electronic device according to an embodiment of this application. Detailed Implementation

[0094] The following is in conjunction with the appendix Figure 1-3 This application will be described in further detail.

[0095] To make the objectives, technical solutions, and advantages of the embodiments of this application clearer, the technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0096] This application provides a modular building moisture-proofing and dehumidification method, executed by an electronic device. This electronic device can be a server or a terminal device. The server can be a standalone physical server, a server cluster composed of multiple physical servers, a distributed device, or a cloud server providing cloud computing services. The terminal device can be a smartphone, tablet, laptop, desktop computer, etc., but is not limited to these. The terminal device and the server can be directly or indirectly connected via wired or wireless communication, and this application does not impose any limitations on this.

[0097] Reference Figure 1The method includes steps S101, S102, S103, and S104, wherein:

[0098] Step S101: Obtain the humidity information corresponding to the modular building, and calculate the difference between the humidity information and the preset humidity information to determine the humidity difference information.

[0099] In the application embodiment, the humidity information is the humidity information of the modular building surface.

[0100] Specifically, each modular building unit is equipped with monitoring equipment. When there is no dampness, the monitoring equipment monitors each building unit in real time. When the humidity information fluctuates, the monitoring equipment transmits the humidity information corresponding to the modular building to the electronic device and continuously monitors the location where the fluctuation occurs. After receiving the humidity information, the electronic device calculates the difference between the humidity information and the preset humidity information to determine the humidity difference information corresponding to the modular building.

[0101] Step S102: Compare the humidity difference information with the preset humidity difference information. If the humidity difference information is not less than the preset humidity difference information, then determine the target area.

[0102] In the application embodiment, the target area is the area affected by moisture.

[0103] Specifically, after determining the humidity difference information, the electronic device compares it with a preset humidity difference information. If the humidity difference information is not less than the preset humidity difference information, it indicates that the humidity has already had a certain impact on the modular building. Subsequently, after comparing the humidity difference information with the preset humidity difference information, the electronic device sets the location where the humidity difference information is not less than the preset humidity difference information as the center point. Based on this center point, the electronic device sends a monitoring command to the monitoring device. After receiving the monitoring command, the monitoring device focuses on monitoring the center point and the surrounding area, and sends the monitored humidity information to the electronic device. The electronic device uses the magnitude of the humidity difference information as the basis for judging the damp area. If the humidity difference information is much greater than the preset humidity difference information, the area may be the initial area affected by humidity. If the humidity difference information is greater than the preset humidity difference information, but the difference is not large, it indicates that the area may be an area that has been affected by humidity for a shorter period of time. Then, the electronic device counts all areas affected by humidity and sets these multiple areas as target areas.

[0104] Step S103: Based on the target area, determine the target building unit.

[0105] In the application embodiment, each building unit is equipped with a positioning device. When the humidity information fluctuates, the locator sends all building units in the target area to the electronic device. The electronic device divides the target area into multiple sub-target areas for easy feature extraction. The monitoring device transmits the image information of multiple sub-target areas to the electronic device. After acquiring the image information of each sub-target area, the electronic device uses an image feature extraction algorithm to extract features from the sub-target areas, extracting temperature feature points and water droplet feature points. After feature extraction, the electronic device counts the temperature feature points and water droplet feature points corresponding to each sub-target area and compares the number of temperature feature points and water droplet feature points corresponding to multiple sub-target areas to determine the feature ratio information. If the feature ratio information is greater than a preset ratio information, the building units contained in the sub-target area corresponding to the preset ratio information are determined as target building units.

[0106] Step S104: Based on the target building unit and humidity difference information, generate a first heating command and control the heating equipment to turn on.

[0107] Specifically, after identifying the target building unit and the humidity difference information, the electronic device determines the humidity level information based on the temperature difference information. After determining the humidity level information, the electronic device generates a corresponding first heating command based on the identified target building unit and sends it to the corresponding heating equipment controller. After receiving the first heating command, the controller controls the heating equipment to start.

[0108] This application provides a method for moisture-proofing and dehumidification of modular buildings. After acquiring the humidity information corresponding to the modular building, the electronic device calculates the difference between the humidity information and the preset humidity information to determine the humidity difference information. Then, the electronic device compares the humidity difference information with the preset humidity difference information. If the humidity difference information is not less than the preset humidity difference information, it indicates that the humidity information of the modular building has already had a certain impact on the living conditions. The electronic device then determines the area affected by the dampness, i.e., the target area. Based on the target area, the electronic device determines the target building unit, thereby identifying the building unit affected by the dampness. After the electronic device determines the target building unit, it generates a first heating command based on the target building unit and the humidity difference information, and controls the heating equipment to turn on, so as to reduce the dampness of the target building unit affected by the dampness. At the same time, the electronic device generates the corresponding first heating command based on the humidity difference information to improve the accuracy of moisture-proofing and dehumidification.

[0109] In step S102, determining the target area specifically includes: acquiring modular building drawing information and humidity fluctuation location information; determining the coordinate information corresponding to the humidity fluctuation location information based on the humidity fluctuation location information; and determining the target area based on the coordinate information and the modular building drawing information.

[0110] Specifically, after determining that the humidity information is not less than the preset humidity information, the electronic device immediately generates a modular building drawing information acquisition instruction and transmits it to the monitoring device; after receiving the modular building drawing information acquisition instruction, the monitoring device transmits the humidity fluctuation location information to the electronic device at the same time as transmitting the modular building drawing information to the electronic device.

[0111] Furthermore, after receiving the humidity fluctuation location information, the electronic device immediately converts the humidity fluctuation location information into coordinate data and determines the coordinate information corresponding to the humidity fluctuation location information; the coordinate system is established with the ground as the X-axis and the edge of the modular building perpendicular to the ground as the Y-axis; then the electronic device marks the coordinate information into the modular building drawing information to determine the target area.

[0112] In step S103, the target building unit is determined based on the target area, specifically including: dividing the target area into multiple sub-target areas; extracting features from the multiple sub-target areas to determine temperature feature points and water droplet feature points; comparing the number of temperature feature points and the number of water droplet feature points corresponding to the multiple sub-target areas to determine feature ratio information; if the feature ratio information is greater than a preset ratio information, then the building unit contained in the sub-target area corresponding to the preset ratio information is determined as the target building unit.

[0113] Specifically, upon detecting dampness, the monitor transmits the captured image of the target area to the electronic device. The electronic device then divides the target area image into multiple sub-target areas for easy identification. Using appropriate feature extraction methods, the electronic device extracts features from the sub-target area images, identifying temperature and water droplet feature points. All identified temperature and water droplet feature points are stored in the electronic device, determining their quantity. During feature recognition, interfering factors, such as trees or utility poles, may appear in the sub-target areas. Since these trees or poles are not relevant, the electronic device removes these interfering factors, retaining only the temperature and water droplet feature points.

[0114] Furthermore, staff set preset feature ratio information that meets the requirements of the scheme, and technicians input the preset feature ratio into the electronic device. The electronic device compares the number of each temperature feature point and the number of water droplet feature points to obtain the feature ratio information. After obtaining the feature ratio, the electronic device compares the feature ratio information with the preset feature ratio information. If the feature ratio information is greater than the preset ratio information, the building unit contained in the sub-target area is determined through the image information of the sub-target area. The building unit determined at this time is the target building unit.

[0115] It should be noted that the feature extraction method can be SIFT algorithm, SURF algorithm, neural network, anchor-based algorithm, anchor-free algorithm and ORB algorithm, etc., and this application does not make specific limitations.

[0116] In step S104, a first heating command is generated based on the target building unit and the humidity difference information. Specifically, this includes: determining humidity level information based on the humidity difference information; determining temperature information based on the humidity level; and generating a first heating command based on the target building unit and the temperature information.

[0117] Specifically, after identifying the target building unit and the temperature difference information, the electronic device matches the temperature difference information with the humidity level. Based on the humidity difference information, it determines the humidity difference range, which corresponds one-to-one with the humidity level. Then, according to the humidity level corresponding to the current humidity difference range, for example, the humidity difference range can be in increments of 10% humidity. When the humidity difference exceeds 10%, it enters the next increment. When the humidity difference is 10%, the humidity level is 1; when the humidity difference is 20%, the humidity level is 2, and so on. When the electronic device determines that the humidity difference is 50%, it indicates that the humidity difference has reached a humidity level of 5.

[0118] Furthermore, the electronic device determines the temperature information based on the humidity level information; based on the target building unit and the temperature information, it generates a corresponding first heating command and sends the first heating command to the heating equipment controller of the corresponding target building unit, thereby determining the corresponding first heating command according to different humidity conditions.

[0119] It should be noted that there are two methods for displaying humidity level information in the device: Method 1: Staff use a preset humidity difference as a baseline, and each 10% increase from the preset humidity difference constitutes a humidity level. The staff then inputs the set humidity level into the electronic device. Method 2: Staff input the preset humidity difference into the electronic device, and the electronic device uses the humidity range where the preset humidity difference is increased by 10% as the first humidity level. This process is repeated to determine multiple humidity levels.

[0120] Before generating the first heating command, the process includes: obtaining material information of the modular building; determining moisture-proof information based on the material information, where the moisture-proof information is the maximum humidity that the building materials of the modular building can withstand; determining the heating temperature based on the moisture-proof information; and generating the first heating command based on the heating temperature.

[0121] Specifically, since different modular building materials have different moisture-proof capabilities, the electronic device generates a material information acquisition instruction for the modular building and transmits it to the monitoring device. Upon receiving the material information acquisition instruction, the monitoring device immediately transmits the corresponding material information of the modular building to the electronic device. The electronic device then identifies and analyzes the material information to determine the moisture-proof information corresponding to each type of material, thereby obtaining the maximum humidity that each building material can withstand. Based on the moisture-proof information, the electronic device determines the heating temperature. The higher the humidity that the building material can withstand, the lower the corresponding heating temperature. The moisture-proof information and the heating temperature are in a one-to-one correspondence. After determining the first heating instruction, the electronic device immediately transmits the first heating instruction to the controller corresponding to the heating device. The controller then controls the heating device to start according to the corresponding first heating instruction, thereby determining the first heating instruction corresponding to the building material of the modular building.

[0122] The process of controlling the heating equipment to turn on also includes: acquiring weather information; determining air humidity information based on the weather information; matching the air humidity information with preset air humidity information; and generating a ventilation command if the air humidity information is not less than the preset air humidity information and displaying the result.

[0123] In this embodiment of the application, the weather information includes air humidity.

[0124] Specifically, since different weather conditions affect building humidity differently, after acquiring weather information, the electronic device analyzes and extracts the corresponding air humidity information. It then matches this air humidity information with preset air humidity information. If the weather humidity information is lower than the preset air humidity information, it indicates that the total air humidity at this time will not affect the modular building or has a minimal impact. The electronic device then stores this air humidity information in the database and generates a monitoring command, which is transmitted to the monitoring device. Upon receiving the monitoring command, the monitoring device immediately activates the corresponding building unit. If the air humidity information is not lower than the preset air humidity information, it indicates that the humidity in the air may have a certain impact on the modular building. The device then generates a ventilation command and displays the result, thereby reducing the impact of damp weather on the modular building.

[0125] The process of determining the target area includes: acquiring environmental information and determining the humidity development trend based on the environmental information; determining the humid area corresponding to the end of the preset unit time period based on the humidity development trend; comparing the humid area with the target area to determine the humidity deviation area; and generating a second heating command based on the humidity deviation area when the preset unit time period ends.

[0126] In the embodiments of this application, after receiving environmental information, the electronic device predicts the trend of humidity development based on the environmental information, since moisture usually diffuses from high humidity areas to low humidity areas. After determining the trend of humidity development, the electronic device predicts the corresponding humid area after the end of a preset unit time period based on the trend of humidity development.

[0127] Furthermore, the monitoring equipment transmits images of the target area and the humid area to the electronic device. The electronic device scales all the acquired images to a certain size, converts the scaled-down images into grayscale images, calculates the average grayscale value of all pixels in the image, and compares the grayscale value of each pixel in the image with the average value. The electronic device combines the results of the comparison with the average value to form an image fingerprint. The target image fingerprint is compared with the modular building image fingerprint to obtain different image areas, namely the humidity deviation areas. Based on historical data analysis, the electronic device determines a preset unit time period through analysis and calculation according to the historical humidity spread time. When the preset unit time period ends, a second heating command is generated based on the humidity deviation areas.

[0128] Furthermore, the storage method for historical data can include at least one of the following: Method 1, historical data can be stored in the storage space of the electronic device itself; Method 2, historical data can be stored in a hardware storage device connected to the electronic device; Method 3, historical data can be stored in cloud storage space for easy retrieval at any time.

[0129] Reference Figure 2 The modular building moisture-proof and dehumidification device 20 may specifically include: a humidity difference information determination module 201, a target area determination module 202, a target building unit determination module 203, and a heating command determination module 204, wherein...

[0130] The humidity difference information determination module 201 is used to obtain the humidity information corresponding to the modular building, and calculate the difference between the humidity information and the preset humidity information to determine the humidity difference information.

[0131] The target area determination module 202 is used to compare the humidity difference information with the preset temperature difference information. If the humidity difference information is not less than the preset humidity difference information, the target area is determined. The target area is the area affected by humidity.

[0132] The target building unit determination module 203 is used to determine target building units based on the target area;

[0133] The heating command determination module 204 is used to generate a first heating command based on the target building unit and humidity difference information, and control the heating equipment to turn on.

[0134] In one possible implementation of this application embodiment, the target region determination module 202 includes: a first information acquisition unit, a coordinate information determination unit, and a target region determination unit, wherein...

[0135] The first information acquisition unit is used to acquire modular building drawing information and humidity fluctuation location information;

[0136] The coordinate information determination unit is used to determine the coordinate information corresponding to the humidity fluctuation location information based on the humidity fluctuation location information.

[0137] The target area determination unit is used to determine the target area based on coordinate information and modular architectural drawing information.

[0138] In one possible implementation of this application embodiment, the target building unit determination module 203 includes: a sub-target region determination unit, a feature point determination unit, a feature ratio information determination unit, and a target building unit determination unit, wherein...

[0139] The sub-target region determination unit is used to divide the target region into multiple sub-target regions.

[0140] The feature point determination unit is used to extract features from multiple sub-target regions and determine temperature feature points and water droplet feature points.

[0141] The feature ratio information determination unit is used to compare the number of temperature feature points and the number of water droplet feature points corresponding to multiple sub-target regions to determine the feature ratio information.

[0142] The target building unit is used to determine the building units contained in the sub-target area corresponding to the feature ratio information as target building units if the feature ratio information is greater than the preset ratio information.

[0143] In one possible implementation of this application embodiment, the first heating command generation module 204 includes: a humidity level information determination unit, a temperature information determination unit, and a first heating command determination unit, wherein...

[0144] The humidity level information determination unit is used to determine humidity level information based on humidity difference information.

[0145] Temperature information determination unit, used to determine temperature information based on humidity level information;

[0146] The first heating command determination unit is used to generate a first heating command based on the target building unit and temperature information.

[0147] One possible implementation of this application embodiment, the modular building moisture-proof and dehumidification device 20, further includes: a material information acquisition module, a moisture-proof information determination module, a heating temperature determination module, and a first heating command determination module, wherein...

[0148] The material information acquisition module is used to acquire material information for modular buildings;

[0149] The moisture-proof information determination module is used to determine moisture-proof information based on material information. The moisture-proof information is the maximum humidity that the building materials of the modular building can withstand.

[0150] The heating temperature determination module is used to determine the heating temperature based on moisture protection information.

[0151] The first heating command determination module is used to generate a first heating command based on the heating temperature.

[0152] One possible implementation of this application embodiment, the modular building moisture-proof and dehumidification device 20, further includes: a weather information acquisition module, an air humidity information determination module, a matching module, and a display module, wherein...

[0153] The weather information acquisition module is used to acquire weather information;

[0154] The air humidity information determination module is used to determine air humidity information based on weather information.

[0155] The matching module is used to match air humidity information with preset air humidity information;

[0156] The display module is used to generate a ventilation command and display the result if the air humidity information is not less than the preset air humidity information.

[0157] One possible implementation of this application embodiment, the modular building moisture-proof and dehumidification device 20, further includes: a moisture development trend determination module, a moisture area determination module, a moisture deviation area determination module, and a second heating command determination module, wherein...

[0158] The humidity development trend determination module is used to acquire environmental information and determine the humidity development trend based on the environmental information.

[0159] The humid area determination module is used to determine the humid area at the end of a preset unit time period based on the humid development trend.

[0160] The moisture deviation area determination module is used to compare the moisture area with the target area to determine the moisture deviation area;

[0161] The second heating command determination module is used to determine the second heating command based on the humidity deviation area when the preset unit time period ends.

[0162] Those skilled in the art will clearly understand that, for the sake of convenience and brevity, the specific working processes of the systems, devices, and units described above can be referred to the corresponding processes in the foregoing method embodiments, and will not be repeated here.

[0163] This application also describes an electronic device from the perspective of a physical device, such as... Figure 3 As shown, Figure 3 The illustrated electronic device 30 includes a processor 301 and a memory 303. The processor 301 and the memory 303 are connected, for example, via a bus 302. Optionally, the electronic device 30 may also include a transceiver 304. It should be noted that in practical applications, the transceiver 304 is not limited to one type, and the structure of this electronic device 30 does not constitute a limitation on the embodiments of this application.

[0164] Processor 301 may be a CPU (Central Processing Unit), a general-purpose processor, a DSP (Digital Signal Processor), an ASIC (Application Specific Integrated Circuit), an FPGA (Field Programmable Gate Array), or other programmable logic devices, transistor logic devices, hardware components, or any combination thereof. It can implement or execute the various exemplary logic blocks, modules, and circuits described in conjunction with the disclosure of this application. Processor 301 may also be a combination that implements computational functions, such as including one or more microprocessor combinations, a combination of a DSP and a microprocessor, etc.

[0165] Bus 302 may include a pathway for transmitting information between the aforementioned components. Bus 302 may be a PCI (Peripheral Component Interconnect) bus or an EISA (Extended Industry Standard Architecture) bus, etc. Bus 302 can be divided into address bus, data bus, control bus, etc. For ease of representation, Figure 3 The bus is represented by a single thick line, but this does not mean that there is only one bus or one type of bus.

[0166] The memory 303 may be a ROM (Read Only Memory) or other type of static storage device capable of storing static information and instructions, RAM (Random Access Memory) or other type of dynamic storage device capable of storing information and instructions, or an EEPROM (Electrically Erasable Programmable Read Only Memory), CD-ROM (Compact Disc Read Only Memory) or other optical disc storage, optical disc storage (including compressed optical discs, laser discs, optical discs, digital universal optical discs, Blu-ray discs, etc.), magnetic disk storage media or other magnetic storage devices, or any other medium capable of carrying or storing desired program code in the form of instructions or data structures and accessible by a computer, but not limited thereto.

[0167] The memory 303 is used to store application code that executes the solution of this application, and its execution is controlled by the processor 301. The processor 301 is used to execute the application code stored in the memory 303 to implement the content shown in the foregoing method embodiments.

[0168] Electronic devices include, but are not limited to: mobile terminals such as mobile phones, laptops, digital radio receivers, PDAs (personal digital assistants), PADs (tablet computers), PMPs (portable multimedia players), and in-vehicle terminals (such as in-vehicle navigation terminals), as well as fixed terminals such as digital TVs and desktop computers. Servers can also be included. Figure 3 The electronic device shown is merely an example and should not impose any limitation on the functionality and scope of use of the embodiments of this application.

[0169] It should be understood that although the steps in the flowcharts of the accompanying figures are shown sequentially as indicated by the arrows, these steps are not necessarily executed in the order indicated by the arrows. Unless explicitly stated herein, there is no strict order restriction on the execution of these steps, and they can be executed in other orders. Moreover, at least some steps in the flowcharts of the accompanying figures may include multiple sub-steps or multiple stages. These sub-steps or stages are not necessarily completed at the same time, but can be executed at different times, and their execution order is not necessarily sequential, but can be performed alternately or in turn with other steps or at least some of the sub-steps or stages of other steps.

[0170] The above are only some embodiments of this application. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the principle of this application, and these improvements and modifications should also be considered within the scope of protection of this application.

Claims

1. A method for moisture-proofing and dehumidification in modular buildings, characterized in that, include: Obtain humidity information corresponding to the modular building, and calculate the difference between the humidity information and the preset humidity information to determine the humidity difference information; The humidity difference information is compared with the preset humidity difference information. If the humidity difference information is not less than the preset humidity difference information, the target area is determined. The target area is the area affected by humidity. Based on the target area, the target building units are determined; Based on the target building unit and the humidity difference information, a first heating command is generated, and the heating equipment is turned on. The step of determining the target building unit based on the target area includes: The target area is divided into multiple sub-target areas; Feature extraction is performed on the multiple sub-target regions to determine temperature feature points and water droplet feature points; The number of temperature feature points and the number of water droplet feature points corresponding to the multiple sub-target regions are compared to determine the feature ratio information. If the feature ratio information is greater than the preset ratio information, then the building units contained in the sub-target area corresponding to the greater than preset ratio information are determined to be target building units; After determining the target area, the process also includes: Obtain environmental information and, based on that information, determine the trend of humidity development; Based on the aforementioned humidity development trend, determine the humid area corresponding to the end of a preset unit time period; The damp area is compared with the target area to determine the dampness deviation area; When the preset unit time period ends, a second heating command is generated based on the moisture deviation area.

2. The method for moisture-proofing and dehumidification of modular buildings according to claim 1, characterized in that, The determination of the target area includes: Obtain modular building drawing information and humidity fluctuation location information; Based on the humidity fluctuation location information, determine the coordinate information corresponding to the humidity fluctuation location information; Based on the coordinate information and the modular building drawings, the target area is determined.

3. The method for moisture-proofing and dehumidification of modular buildings according to claim 1, characterized in that, The step of generating a first heating command based on the target building unit and the humidity difference information includes: Based on the humidity difference information, humidity level information is determined; Based on the humidity level information, determine the temperature information; Based on the target building unit and the temperature information, the first heating command is generated.

4. The modular building moisture-proofing and dehumidification method according to claim 1, characterized in that, The process of generating the first heating command further includes, prior to: Obtain material information for modular buildings; Based on the material information, moisture-proof information is determined, which is the maximum humidity that the building materials of the modular building can withstand. Based on the moisture-proof information, the heating temperature is determined; The first heating command is generated based on the heating temperature.

5. A method for moisture-proofing and dehumidification of modular buildings according to claim 1, characterized in that, The process of turning on the heating device includes: Get weather information; Based on the weather information, determine the air humidity information; The air humidity information is matched with preset air humidity information; If the air humidity information is not less than the preset air humidity information, a ventilation command is generated and displayed.

6. A modular building moisture-proof and dehumidification device, characterized in that, A method for implementing a modular building moisture-proofing and dehumidification method according to any one of claims 1 to 5 includes: The humidity difference information determination module is used to obtain the humidity information corresponding to the modular building, and calculate the difference between the humidity information and the preset humidity information to determine the humidity difference information; The target area determination module is used to compare the humidity difference information with the preset humidity difference information. If the humidity difference information is not less than the preset humidity difference information, then the target area is determined. The target area is the area affected by humidity. The target building unit determination module is used to determine target building units based on the target area; The first heating command generation module is used to generate a first heating command based on the target building unit and the humidity difference information, and control the heating equipment to turn on.

7. An electronic device, characterized in that, include: At least one processor; Memory; At least one application, wherein the at least one application is stored in memory and configured to be executed by at least one processor, said at least one application being configured to: perform a modular building moisture-proofing and dehumidification method according to any one of claims 1 to 5.

8. A computer-readable storage medium having a computer program stored thereon, characterized in that, When the computer program is executed in the computer, the computer is instructed to perform a modular building moisture-proofing and dehumidification method according to any one of claims 1 to 5.

Citation Information

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