Anti-freezing and moisture-proof material storage device based on remote sensing technology
Through the anti-freeze and moisture-proof material storage device with remote sensing technology, the storage environment is monitored and adjusted in real time, which solves the problem of manual inspections being unable to obtain information in a timely manner and achieves the stability and safety of material storage.
Patent Information
- Application Number
- CN202511101284.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-07
- Publication Date
- 2025-09-16
AI Technical Summary
In the prior art, antifreeze and moisture-proof materials are stored in a centralized manner, and manual inspections cannot obtain storage environment information in a timely manner, resulting in material losses.
An antifreeze and moisture-proof material storage device based on remote sensing technology is used, including a shell, a control device, a host computer and a mobile intelligent terminal. The environmental information of the storage cavity is obtained through the acquisition module, and the processor calculates the difference and sends it to the host computer to generate an adjustment signal. The adjustment module adjusts the storage environment to achieve real-time monitoring and adjustment.
Real-time monitoring and adjustment of each storage cavity is achieved to ensure that the storage environment meets the set requirements and provide stable storage of antifreeze and moisture-proof materials.
Smart Images

Figure CN120646364A_ABST
Abstract
Description
Technical Field
[0001] The present application belongs to the field of material storage, and specifically relates to an antifreeze and moisture-proof material storage device based on remote sensing technology. Background Art
[0002] Sensing technology is a multidisciplinary modern science and engineering technology that obtains information from natural sources and processes and identifies it. With the continuous development of sensing technology in recent years, sensing technology has been applied to various fields.
[0003] In the existing technology, antifreeze and moisture-proof materials are mostly stored in a centralized manner, and manual regular inspections are performed to ensure that the storage environment of the antifreeze and moisture-proof materials meets the corresponding storage conditions; however, the manual inspection method cannot obtain relevant information about the storage environment of the antifreeze and moisture-proof materials in a timely manner, which can easily cause material loss. Summary of the Invention
[0004] In order to solve the problem that manual inspection of the storage environment of antifreeze and moisture-proof materials in the existing technology easily causes material loss, a storage device for antifreeze and moisture-proof materials based on remote sensing technology is proposed;
[0005] An antifreeze and moisture-proof material storage device based on remote sensing technology includes: a housing, a control device, a host computer, and a mobile intelligent terminal; the control device is disposed inside the housing, and N storage cavities are also disposed inside the housing; the control device includes a processing module, N adjustment modules, and N acquisition modules, where N is an integer;
[0006] Each acquisition module is used to obtain environmental information of the corresponding storage cavity and send the environmental information to the processor and the mobile smart terminal;
[0007] The processor is used to perform subtraction of the received environmental information of the multiple storage cavities with the corresponding set standard values to obtain environmental information difference values of the multiple storage cavities, and send the obtained environmental information difference values of the multiple storage cavities 2 to the host computer;
[0008] The host computer is used to generate an adjustment signal corresponding to each storage cavity according to the difference in environmental information of the received multiple storage cavities, and send the adjustment signal corresponding to each storage cavity to the corresponding adjustment module;
[0009] Each adjustment module is used to adjust the storage environment of the corresponding storage cavity according to the adjustment signal corresponding to each storage cavity received;
[0010] The mobile intelligent terminal is used to display the received storage environment information of each storage cavity, and is also used to generate an adjustment signal corresponding to each storage cavity, and send the adjustment signal corresponding to each storage cavity to the adjustment module.
[0011] Beneficial effects of the present invention: The antifreeze and moisture-proof material storage device based on remote sensing technology of the present application obtains the storage environment information of each storage cavity respectively through the acquisition device, thereby realizing real-time monitoring of each storage cavity; the processor makes a difference between the environmental information of multiple storage cavities received and the corresponding set standard values to obtain the environmental information difference values of multiple storage cavities, and sends the environmental information difference values of multiple storage cavities to the host computer; the host computer generates an adjustment signal corresponding to each storage cavity according to the environmental information difference values of multiple storage cavities received, and sends the adjustment signal corresponding to each storage cavity to the corresponding adjustment module; each adjustment module adjusts the storage environment of the corresponding storage cavity according to the adjustment signal corresponding to each storage cavity received, thereby realizing separate monitoring and separate adjustment of multiple storage cavities; the mobile terminal realizes remote monitoring and control of the material storage device; the device provides convenience for the storage of antifreeze and moisture-proof materials. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] Figure 1 This is a structural diagram of an antifreeze and moisture-proof material storage device based on remote sensing technology according to a specific embodiment of the present application;
[0013] Figure 2 This is a principle block diagram of an antifreeze and moisture-proof material storage device based on remote sensing technology according to a specific embodiment of the present application;
[0014] In the figure, 1 is a shell, 2 is a storage chamber, and 3 is a universal wheel. DETAILED DESCRIPTION
[0015] Specific implementation method 1: The following is combined with the attached embodiment of the present invention Figure 1 To the attached Figure 2 , illustrate this embodiment, and clearly and completely describe the technical solutions in the embodiments of the present invention:
[0016] The antifreeze and moisture-proof material storage device based on remote sensing technology includes: a housing 1, a control device, a host computer, and a mobile intelligent terminal; N storage cavities are provided inside the housing 1; the control device includes a processing module, N adjustment modules, and N acquisition modules, where N is an integer;
[0017] Each acquisition module is used to obtain environmental information of the corresponding storage cavity 2 and send the environmental information to the processor and the mobile intelligent terminal;
[0018] The processor is used to perform a subtraction between the received environmental information of the plurality of storage cavities 2 and the corresponding set standard values to obtain environmental information difference values of the plurality of storage cavities 2, and send the obtained environmental information difference values of the plurality of storage cavities 2 to the host computer;
[0019] The host computer is used to generate an adjustment signal corresponding to each storage cavity 2 according to the difference of the environmental information of the multiple storage cavities 2 received, and send the adjustment signal corresponding to each storage cavity 2 to the corresponding adjustment module;
[0020] Each adjustment module is used to adjust the storage environment of the corresponding storage cavity 2 according to the received adjustment signal corresponding to each storage cavity 2;
[0021] The mobile intelligent terminal is used to display the received storage environment information of each storage cavity 2, and is also used to generate an adjustment signal corresponding to each storage cavity 2, and send the adjustment signal corresponding to each storage cavity 2 to the adjustment module.
[0022] Specifically, in order to ensure the effective storage of antifreeze and moisture-proof materials, an appropriate storage environment needs to be created. The antifreeze and moisture-proof material storage device based on remote sensing technology of the present application realizes real-time monitoring and adjustment of the storage environment to ensure that the storage environment is maintained within the set requirements; at the same time, in order to ensure the separate storage of different materials, multiple storage chambers 2 are provided, and the standard value of each storage chamber 2 is set separately, so that the storage environment of each storage chamber 2 is different, which is convenient for storing different antifreeze and moisture-proof materials.
[0023] Furthermore, the i-th acquisition module includes an i-th temperature and humidity sensor, an i-th CO2 sensor, an i-th PM2.5 concentration sensor, an i-th CO sensor, an i-th O3 sensor and an i-th smoke detector;
[0024] The i-th temperature and humidity sensor, the i-th CO2 sensor, the i-th PM2.5 concentration sensor, the i-th CO sensor, the i-th O3 sensor, and the i-th smoke detector are respectively used to obtain the temperature of the i-th storage chamber, the humidity of the i-th storage chamber, the CO2 gas concentration of the i-th storage chamber, the PM2.5 concentration of the i-th storage chamber, the CO gas concentration of the i-th storage chamber, the O3 gas concentration of the i-th storage chamber, and the smoke concentration of the i-th storage chamber, and send the temperature of the i-th storage chamber and the humidity of the i-th storage chamber, the CO2 gas concentration of the i-th storage chamber, the PM2.5 concentration of the i-th storage chamber, the CO gas concentration of the i-th storage chamber, the O3 gas concentration of the i-th storage chamber, and the smoke concentration of the i-th storage chamber to the processor and the mobile smart terminal; .
[0025] Specifically, the i-th acquisition module is used to collect storage environment information of the i-th storage chamber, and each acquisition module corresponds to a storage chamber; the i-th acquisition module collects the temperature of the i-th storage chamber, the humidity of the i-th storage chamber, the CO2 gas concentration of the i-th storage chamber, the PM2.5 concentration of the i-th storage chamber, the CO gas concentration of the i-th storage chamber, the O3 gas concentration of the i-th storage chamber and the smoke concentration of the i-th storage chamber through multiple sensors, thereby realizing the collection of multi-dimensional data of the i-th storage chamber and performing multi-dimensional monitoring of the i-th storage chamber.
[0026] Further, the processor performs subtraction of the received environmental information of the plurality of storage chambers from the corresponding set standard values to obtain environmental information difference values of the plurality of storage chambers, and sends the obtained environmental information difference values of the plurality of storage chambers to the host computer. The method includes:
[0027] The processor receives the temperature of the i-th storage chamber , humidity of the i-th storage chamber , CO2 gas concentration in the i-th storage chamber , PM2.5 concentration in the i-th storage chamber , CO gas concentration in the i-th storage chamber , O3 gas concentration in the i-th storage chamber and the smoke concentration of the i-th storage chamber , respectively, with the set temperature standard value of the i-th storage chamber , the wet standard value of the i-th storage chamber , CO2 gas concentration standard value , PM2.5 concentration standard value of the i-th storage chamber , CO gas concentration standard value of the i-th storage chamber , O3 gas concentration standard value of the i-th storage chamber and the standard value of smoke concentration in the i-th storage chamber Difference is made to obtain the temperature difference of the i-th storage chamber , humidity difference of the i-th storage chamber , CO2 gas concentration difference of the i-th storage chamber , PM2.5 concentration difference of the i-th storage chamber , CO gas concentration difference of the i-th storage chamber , O3 gas concentration difference of the i-th storage chamber The difference between the smoke concentration in the i-th storage chamber and and the temperature difference of the i-th storage chamber , humidity difference of the i-th storage chamber , CO2 gas concentration difference of the i-th storage chamber , PM2.5 concentration difference of the i-th storage chamber , CO gas concentration difference of the i-th storage chamber , O3 gas concentration difference of the i-th storage chamber The difference between the smoke concentration in the i-th storage chamber and Send to the host computer.
[0028] Furthermore, the host computer is used to generate an adjustment signal corresponding to each storage cavity according to the difference in environmental information of the received multiple storage cavities, and send the adjustment signal corresponding to each storage cavity to the corresponding adjustment module, and the method includes:
[0029] The host computer receives the temperature difference of the i-th storage chamber , humidity difference of the i-th storage chamber , CO2 gas concentration difference in the i-th storage chamber , PM2.5 concentration difference in the i-th storage chamber , CO gas concentration difference in the i-th storage chamber , O3 gas concentration difference in the i-th storage chamber The difference between the smoke concentration in the i-th storage chamber Generate the temperature adjustment signal of the i-th storage chamber, the humidity adjustment signal of the i-th storage chamber, the CO2 gas concentration adjustment signal of the i-th storage chamber, the PM2.5 concentration adjustment signal of the i-th storage chamber, the CO gas concentration adjustment signal of the i-th storage chamber, the O3 gas concentration adjustment signal of the i-th storage chamber and the smoke concentration adjustment signal of the i-th storage chamber respectively, and calculate the temperature difference of the i-th storage chamber , humidity difference , CO2 gas concentration difference , PM2.5 concentration difference , CO gas concentration difference , O3 gas concentration difference Difference in smoke concentration The temperature adjustment signal of the i-th storage chamber, the humidity adjustment signal of the i-th storage chamber, the CO2 gas concentration adjustment signal of the i-th storage chamber, the PM2.5 concentration adjustment signal of the i-th storage chamber, the CO gas concentration adjustment signal of the i-th storage chamber, the O3 gas concentration adjustment signal of the i-th storage chamber and the smoke concentration adjustment signal of the i-th storage chamber are generated respectively and sent to the adjustment module.
[0030] Specifically, the host computer adjusts each storage cavity by adjusting the signal.
[0031] Furthermore, each adjustment module adjusts the storage environment of the corresponding storage cavity according to the received adjustment signal corresponding to each storage cavity, and the method is:
[0032] The i-th regulating module includes an i-th temperature regulating unit, an i-th humidity regulating unit, an i-th CO2 gas concentration regulating unit, an i-th PM2.5 concentration regulating unit, an i-th CO gas concentration regulating unit, an i-th O3 gas concentration regulating unit and an i-th smoke concentration regulating unit;
[0033] The i-th temperature adjustment unit, the i-th humidity adjustment unit, the i-th CO2 gas concentration adjustment unit, the i-th PM2.5 concentration adjustment unit, the i-th CO gas concentration adjustment unit, the i-th O3 gas concentration adjustment unit and the i-th smoke concentration adjustment unit are used to adjust the temperature of the i-th storage chamber, the humidity of the i-th storage chamber, the CO2 gas concentration of the i-th storage chamber, the PM2.5 concentration of the i-th storage chamber, the CO gas concentration adjustment signal of the i-th storage chamber, the O3 gas concentration adjustment signal of the i-th storage chamber and the smoke concentration adjustment signal of the i-th storage chamber, respectively.
[0034] Specifically, the regulating unit regulates the storage environment of the storage cavity so that the storage environment of each storage cavity is maintained within a stable range, thereby achieving stable storage of antifreeze and moisture-proof materials.
[0035] Furthermore, the processor model is STM32F103ZET6 processor.
[0036] Specifically, the STM32F103ZET6 processor has a fast execution speed, adopts a Harvard architecture, stores programs and data separately, can achieve parallel processing, and has a main frequency of up to 72MHz; it has a large storage capacity, with 512KB of FLASH memory and 64KB of SRAM memory on the chip; it has a variety of external interfaces, with up to 80 I / O ports, a large number of communication interfaces, including 5 USART serial ports, 3 SPI interfaces, 2 IIC interfaces, and 12-channel DMA; it integrates 3 12-bit ADC converters and 2 12-bit DAC converters internally, with fast conversion speed; the chip has low power consumption and an operating temperature range of -40℃ to 85℃, making it suitable for most environments.
[0037] Furthermore, the N acquisition modules and the N adjustment modules are simultaneously connected to the mobile intelligent terminal for communication.
[0038] Specifically, N acquisition modules are connected to the mobile intelligent terminal for communication, and remote sensing technology is used to remotely monitor the antifreeze and moisture-proof material storage device; N adjustment modules are connected to the mobile intelligent terminal for communication, and remote sensing technology is used to remotely control the antifreeze and moisture-proof material storage device.
[0039] Furthermore, the mobile intelligent terminal is a smart phone, a tablet computer, a smart watch, a smart bracelet or a portable laptop computer.
[0040] Specifically, the mobile intelligent terminal can make a selection according to actual conditions.
[0041] Furthermore, a plurality of universal wheels 3 are provided at the bottom of the housing 1 to facilitate the movement of the housing 1 .
[0042] Furthermore, the shell 1 is a shell 1 made of a composite plate, and each storage cavity is a storage cavity formed by enclosing a composite plate; the composite plate is pressed by a metal plate, a waterproof plate, and an insulation plate placed in sequence; the outer surface of the shell 1 is a metal plate, and the inner surface of the shell 1 is an insulation plate; the outer surface of each storage cavity is a metal plate, and the inner surface of the shell 1 is an insulation plate.
[0043] Specifically, the provision of a multi-layer composite board is conducive to maintaining the stability of the storage environment of the storage cavity.
[0044] Although the present invention is described herein with reference to specific embodiments, it should be understood that these embodiments are merely illustrative of the principles and applications of the invention. It should be understood that many modifications may be made to the illustrative embodiments, and that other arrangements may be devised, without departing from the spirit and scope of the invention as defined by the appended claims. It should be understood that the various dependent claims and features described herein may be combined in ways other than those described in the original claims. It should also be understood that features described in conjunction with individual embodiments may be employed in conjunction with other described embodiments.
Claims
1. Antifreeze and moisture-proof material storage device based on remote sensing technology, characterized in that: include: A housing, a control device, a host computer and a mobile intelligent terminal; N storage cavities are provided inside the housing; the control device includes a processing module, N adjustment modules and N acquisition modules, where N is an integer; Each acquisition module is used to obtain environmental information of the corresponding storage cavity and send the environmental information to the processor and the mobile smart terminal; The processor is used to perform subtraction of the received environmental information of the multiple storage cavities and the corresponding set standard values to obtain environmental information difference values of the multiple storage cavities, and send the obtained environmental information difference values of the multiple storage cavities to the host computer; The host computer is used to generate an adjustment signal corresponding to each storage cavity according to the difference in environmental information of the received multiple storage cavities, and send the adjustment signal corresponding to each storage cavity to the corresponding adjustment module; Each adjustment module is used to adjust the storage environment of the corresponding storage cavity according to the adjustment signal corresponding to each storage cavity received; The mobile intelligent terminal is used to display the received storage environment information of each storage cavity, and is also used to generate an adjustment signal corresponding to each storage cavity, and send the adjustment signal corresponding to each storage cavity to the adjustment module.
2. The antifreeze and moisture-proof material storage device based on remote sensing technology according to claim 1 is characterized in that: The i-th acquisition module includes the i-th temperature and humidity sensor, the i-th CO2 sensor, the i-th PM2.5 concentration sensor, the i-th CO sensor, the i-th O3 sensor and the i-th smoke detector; The i-th temperature and humidity sensor, the i-th CO2 sensor, the i-th PM2.5 concentration sensor, the i-th CO sensor, the i-th O3 sensor, and the i-th smoke detector are respectively used to obtain the temperature of the i-th storage chamber, the humidity of the i-th storage chamber, the CO2 gas concentration of the i-th storage chamber, the PM2.5 concentration of the i-th storage chamber, the CO gas concentration of the i-th storage chamber, the O3 gas concentration of the i-th storage chamber, and the smoke concentration of the i-th storage chamber, and send the temperature of the i-th storage chamber and the humidity of the i-th storage chamber, the CO2 gas concentration of the i-th storage chamber, the PM2.5 concentration of the i-th storage chamber, the CO gas concentration of the i-th storage chamber, the O3 gas concentration of the i-th storage chamber, and the smoke concentration of the i-th storage chamber to the processor and the mobile smart terminal; .
3. The antifreeze and moisture-proof material storage device based on remote sensing technology according to claim 2 is characterized in that: The processor performs subtraction of the received environmental information of the plurality of storage cavities from the corresponding set standard values to obtain environmental information difference values of the plurality of storage cavities, and sends the obtained environmental information difference values of the plurality of storage cavities to the host computer, wherein the method includes: The processor receives the temperature of the i-th storage chamber , humidity of the i-th storage chamber , CO2 gas concentration in the i-th storage chamber , PM2.5 concentration in the i-th storage chamber , CO gas concentration in the i-th storage chamber , O3 gas concentration in the i-th storage chamber and the smoke concentration in the i-th storage chamber , respectively, with the set temperature standard value of the i-th storage chamber , the wet standard value of the i-th storage chamber , CO2 gas concentration standard value , PM2.5 concentration standard value of the i-th storage chamber , CO gas concentration standard value of the i-th storage chamber , O3 gas concentration standard value of the i-th storage chamber and the standard value of smoke concentration in the i-th storage chamber Difference is made to obtain the temperature difference of the i-th storage chamber , humidity difference of the i-th storage chamber , CO2 gas concentration difference of the i-th storage chamber , PM2.5 concentration difference of the i-th storage chamber , CO gas concentration difference of the i-th storage chamber , O3 gas concentration difference of the i-th storage chamber The difference between the smoke concentration in the i-th storage chamber and and the temperature difference of the i-th storage chamber , humidity difference of the i-th storage chamber , CO2 gas concentration difference of the i-th storage chamber , PM2.5 concentration difference of the i-th storage chamber , CO gas concentration difference of the i-th storage chamber , O3 gas concentration difference of the i-th storage chamber The difference between the smoke concentration in the i-th storage chamber and Send to the host computer.
4. The antifreeze and moisture-proof material storage device based on remote sensing technology according to claim 3 is characterized in that: The host computer is used to generate an adjustment signal corresponding to each storage cavity according to the difference of the environmental information of the multiple storage cavities received, and send the adjustment signal corresponding to each storage cavity to the corresponding adjustment module, and the method includes: The host computer receives the temperature difference of the i-th storage chamber , humidity difference of the i-th storage chamber , CO2 gas concentration difference in the i-th storage chamber , PM2.5 concentration difference in the i-th storage chamber , CO gas concentration difference in the i-th storage chamber , O3 gas concentration difference in the i-th storage chamber The difference between the smoke concentration in the i-th storage chamber Generate the temperature adjustment signal of the i-th storage chamber, the humidity adjustment signal of the i-th storage chamber, the CO2 gas concentration adjustment signal of the i-th storage chamber, the PM2.5 concentration adjustment signal of the i-th storage chamber, the CO gas concentration adjustment signal of the i-th storage chamber, the O3 gas concentration adjustment signal of the i-th storage chamber and the smoke concentration adjustment signal of the i-th storage chamber respectively, and calculate the temperature difference of the i-th storage chamber , humidity difference , CO2 gas concentration difference , PM2.5 concentration difference , CO gas concentration difference , O3 gas concentration difference Difference in smoke concentration The temperature adjustment signal of the i-th storage chamber, the humidity adjustment signal of the i-th storage chamber, the CO2 gas concentration adjustment signal of the i-th storage chamber, the PM2.5 concentration adjustment signal of the i-th storage chamber, the CO gas concentration adjustment signal of the i-th storage chamber, the O3 gas concentration adjustment signal of the i-th storage chamber and the smoke concentration adjustment signal of the i-th storage chamber are generated respectively and sent to the adjustment module.
5. The antifreeze and moisture-proof material storage device based on remote sensing technology according to claim 4 is characterized in that: Each adjustment module adjusts the storage environment of the corresponding storage cavity according to the adjustment signal corresponding to each storage cavity received, and the method is as follows: The i-th regulating module includes an i-th temperature regulating unit, an i-th humidity regulating unit, an i-th CO2 gas concentration regulating unit, an i-th PM2.5 concentration regulating unit, an i-th CO gas concentration regulating unit, an i-th O3 gas concentration regulating unit and an i-th smoke concentration regulating unit; The i-th temperature adjustment unit, the i-th humidity adjustment unit, the i-th CO2 gas concentration adjustment unit, the i-th PM2.5 concentration adjustment unit, the i-th CO gas concentration adjustment unit, the i-th O3 gas concentration adjustment unit and the i-th smoke concentration adjustment unit are used to adjust the temperature of the i-th storage chamber, the humidity of the i-th storage chamber, the CO2 gas concentration of the i-th storage chamber, the PM2.5 concentration of the i-th storage chamber, the CO gas concentration adjustment signal of the i-th storage chamber, the O3 gas concentration adjustment signal of the i-th storage chamber and the smoke concentration adjustment signal of the i-th storage chamber, respectively.
6. The antifreeze and moisture-proof material storage device based on remote sensing technology according to claim 1 is characterized in that: The processor model is STM32F103ZET6 processor.
7. The antifreeze and moisture-proof material storage device based on remote sensing technology according to claim 1 is characterized in that: N acquisition modules and N adjustment modules are simultaneously connected to the mobile intelligent terminal for communication.
8. The antifreeze and moisture-proof material storage device based on remote sensing technology according to claim 1 is characterized in that: The mobile intelligent terminal is a smart phone, tablet computer, smart watch, smart bracelet or portable laptop computer.
9. The antifreeze and moisture-proof material storage device based on remote sensing technology according to claim 1 is characterized in that: A plurality of universal wheels are arranged at the bottom of the shell.
10. The antifreeze and moisture-proof material storage device based on remote sensing technology according to claim 1 is characterized in that: The shell is made of composite plates, and each storage cavity is formed by the composite plates; the composite plates are pressed together by metal plates, waterproof plates, and insulation plates placed in sequence; the outer surface of the shell is a metal plate, and the inner surface of the shell is an insulation plate; the outer surface of each storage cavity is a metal plate, and the inner surface of the shell is an insulation plate.