A gas rapid intelligent recognition system

By designing a gas identification system including gas sensors, central processing unit modules, infrared cloud imaging modules and display modules, the problem that existing systems cannot accurately identify specific information of mixed gases and display harmful gas distribution maps is solved, and an efficient, comprehensive and safe gas identification effect is achieved.

CN114386450BActive Publication Date: 2025-06-24SHANGHAI PROSPECTIVE INNOVATION RES INST CO LTD
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Patent Information

Application Number
CN202111458827.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-12-02
Publication Date
2025-06-24
Estimated Expiration
2041-12-02

AI Technical Summary

Technical Problem

Existing gas identification systems cannot accurately identify specific information about mixed gases, especially when identifying harmful gases, and cannot display their distribution maps and concentration distribution maps, which reduces the practicality and safety of the system.

Method used

A gas rapid intelligent identification system is designed, including gas sensors, central processing unit modules, infrared cloud imaging modules and display modules. The gas sensor identifies the gas type by generating current signals. The central processor module performs signal analysis and processing. The infrared cloud imaging module is used to generate a distribution map and concentration distribution map of harmful gases. The display module displays this information.

Benefits of technology

The system can not only quickly identify the gas type, but also display specific information about the gas, improving the comprehensiveness and practicality of the system. When harmful gases are identified, distribution maps and concentration maps are generated through infrared cloud imaging modules, which improves the safety of the system.

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Abstract

The present invention discloses a gas rapid intelligent recognition system, which relates to the technical field of recognition systems; it includes a gas sensor, the gas sensor is communicatively connected to a central processor module through a communication module, the central processor module is communicatively connected to a display module through a wireless communication module, an infrared cloud imaging module is electrically connected to the central processor module and is also communicatively connected to the display module through a wireless communication module; the beneficial effects of the present invention are: the gas rapid intelligent recognition system can not only quickly identify the type of gas, but also display the specific information of the gas, improving the comprehensiveness of the system and also improving the practicality of the system; moreover, when the system recognizes harmful gas, it can detect the distribution map and concentration distribution map of the harmful gas through the infrared cloud imaging module and display the distribution map, which can not only facilitate the subsequent tracking and processing by the staff, but also further improve the safety of the system.
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Description

Technical Field

[0001] The present invention relates to the technical field of identification systems, and specifically to a gas rapid intelligent identification system. Background Art

[0002] In real life, there are many scenarios that require precise identification of mixed gases. In industrial environments, some of the emitted gases are toxic. Since some of these gases are colorless and odorless, and some are present in low concentrations, it is difficult to identify them solely by human smell. Additionally, gas identification is also used in food testing.

[0003] Most of the existing gas identification systems can only identify the type of gas, and cannot display the specific information of the gas. Moreover, when harmful gases are identified, they cannot display the distribution map and concentration distribution map of the harmful gases, which reduces the practicality and safety of the system. Summary of the Invention

[0004] The purpose of the present invention is to provide a gas rapid intelligent identification system to solve the problems raised in the above background art.

[0005] To achieve the above purpose, the present invention provides the following technical solutions:

[0006] A gas rapid intelligent identification system, the gas rapid intelligent identification system includes:

[0007] A gas sensor, the gas sensor is communicatively connected to a central processor module through a communication module; the gas sensor generates different current signals according to the sensitivity to different gases, and then transmits the current signal to the inside of the central processor module through the communication module; and

[0008] A central processor module, the central processor module is communicatively connected to a display module through a wireless communication module, and is used for performing certain analysis and processing on the received signal, analyzing the type of gas and whether it is a harmful gas, and then transmitting the processed signal to the display module through the wireless communication module. It is also used for installing and starting an infrared cloud imaging module;

[0009] An infrared cloud imaging module, the infrared cloud imaging module is electrically connected to the central processor module, and is also communicatively connected to the display module through a wireless communication module; it can perform cloud imaging on harmful gases and form a picture signal, and then can transmit the image signal to the display module through the wireless communication module;

[0010] A display module, the display module is used for receiving the information transmitted from the wireless communication module, and then displaying the specific parameters of the gas in the information.

[0011] As a further solution of the present invention: The central processing unit module includes:

[0012] A data processing unit, which is communicatively connected to the gas sensor through a communication module;

[0013] A main processor, which is communicatively connected to the display module through a wireless communication module and is electrically connected to the infrared cloud imaging module.

[0014] As a further solution of the present invention: The data processing unit includes:

[0015] A data conversion unit, which is communicatively connected to the gas sensor through a communication module;

[0016] A data analysis unit, which is used to analyze the type of gas;

[0017] A data comparison unit, which is used to compare the data information with the gas information in the database, and then judge whether the identified gas is harmful.

[0018] As a further solution of the present invention: The infrared cloud imaging module includes:

[0019] An infrared emission unit, which is electrically connected to the main processor and communicatively connected to the infrared cloud imaging unit through an infrared communication unit;

[0020] An infrared cloud imaging unit, which is used to convert the distribution and concentration of harmful gases into image information;

[0021] An image processing unit, which is communicatively connected to the display module through a wireless communication module and is used to further refine and clarify the image information.

[0022] As a further solution of the present invention: The display module includes:

[0023] A display control unit, which is communicatively connected to both the main processor and the image processing unit through a wireless communication module;

[0024] A display unit, which can display the specific information of the gas and the image of the distribution and concentration of harmful gases.

[0025] As a further solution of the present invention: The display unit includes a first display unit and a second display unit.

[0026] As a further solution of the present invention: The gas sensor is an electrochemical gas sensor.

[0027] Compared with the prior art, the beneficial effects of the present invention are as follows: In the gas rapid intelligent recognition system, different current signals generated by the gas sensor are transmitted to the inside of the data conversion unit through the communication module to convert the current signals into data signals, and then transmitted to the data analysis unit to analyze the type of gas. Then, the signals are transmitted to the data comparison unit to be compared with the specific information of the gas in the database, so as to judge whether the gas is harmful, and the compared signals are transmitted to the inside of the main processor. When the gas is not harmful, the first display unit displays the specific information of the recognized gas. If the gas is harmful, the first display unit displays the specific information of the harmful gas, and the second display unit displays the distribution map and concentration distribution map of the harmful gas. It can not only quickly identify the type of gas, but also display the specific information of the gas, improving the comprehensiveness and practicality of the system. Moreover, when the system recognizes harmful gas, it can detect the distribution map and concentration distribution map of the harmful gas through the infrared cloud imaging module and display the distribution map, which is not only convenient for the staff to carry out subsequent tracking and processing, but also further improves the safety of the system. BRIEF DESCRIPTION OF THE DRAWINGS

[0028] Figure 1 It is a schematic diagram of the module structure of the gas rapid intelligent recognition system.

[0029] In the figure: gas sensor - 1, communication module - 2, central processor module - 3, data processing unit - 31, data conversion unit - 311, data analysis unit - 312, data comparison unit - 313, main processor - 32, infrared cloud imaging module - 4, infrared emission unit - 41, infrared communication unit - 42, infrared cloud imaging unit - 43, image processing unit - 44, wireless communication module - 5, display module - 6, display control unit - 61, display unit - 62, first display unit - 621, second display unit - 622. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0030] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0031] Please refer to Figure 1 , a gas rapid intelligent recognition system provided by an embodiment of the present invention, the gas rapid intelligent recognition system includes:

[0032] A gas sensor 1, which is communicatively connected to a central processing unit module 3 through a communication module 2; the gas sensor 1 interacts with the gas to generate a response to the gas, the current inside the gas sensor 1 changes, and the gas sensor 1 will generate different current signals for different gases, and then send the current signal to the inside of the central processing unit module 3 through the communication module 2; and

[0033] The central processing unit module 3, which is communicatively connected to a display module 6 through a wireless communication module 5, is used for performing certain analysis and processing on the received signal, analyzing the type of gas and whether it is a harmful gas, and then transmitting the processed signal to the display module 6 through the wireless communication module 5, and is also used for installing and starting an infrared cloud imaging module 4;

[0034] The infrared cloud imaging module 4, which is electrically connected to the central processing unit module 3 and is also communicatively connected to the display module 6 through the wireless communication module 5; the infrared cloud imaging module 4 can perform cloud imaging on harmful gases under the action of the central processing unit module 3 and form a picture signal, and then can transmit the image signal to the display module 6 through the wireless communication module 5;

[0035] The display module 6, which is used for receiving the information transmitted from the wireless communication module 5 and then displaying the specific parameters of the gas in the information.

[0036] Please refer to Figure 1 , in an embodiment of the present invention, the central processing unit module 3 includes:

[0037] A data processing unit 31, which is communicatively connected to the gas sensor 1 through the communication module 2, is used for receiving the information transmitted by the gas sensor 1 through the communication module 2, analyzing and processing the data of the information, and then sending the signal to the main processor 32;

[0038] The main processor 32, which is communicatively connected to the display module 6 through the wireless communication module 5 and is electrically connected to the infrared cloud imaging module 4; is used for receiving the signal transmitted from the data processing unit 31, then sending the signal to the inside of the display module 6 through the wireless communication module 5, and can judge according to the signal and then start the infrared cloud imaging module 4.

[0039] Please refer to Figure 1 , in an embodiment of the present invention, the data processing unit 31 includes:

[0040] A data conversion unit 311, the data conversion unit 311 is communicatively connected to the gas sensor 1 through the communication module 2; it is used to receive the current signal conveyed by the communication module 2, convert the current signal into a data signal, and then convey it to the inside of the data analysis unit 312;

[0041] A data analysis unit 312, the data analysis unit 312 is used to receive the data signal conveyed from the data conversion unit 311, and perform further analysis and processing on the data, thereby analyzing the type of gas to achieve the purpose of gas identification;

[0042] A data comparison unit 313, the data comparison unit 313 is used to receive the information conveyed from the data analysis unit 312, compare the data information identified by the data analysis unit 312 with the gas information in the database, thereby judging whether the identified gas is harmful, and transmitting the compared signal to the inside of the main processor 32.

[0043] Please refer to Figure 1 , in an embodiment of the present invention, the infrared cloud imaging module 4 includes:

[0044] An infrared emission unit 41, the infrared emission unit 41 is electrically connected to the main processor 32 and communicatively connected to the infrared cloud imaging unit 43 through the infrared communication unit 42; the main processor 32 activates the infrared emission unit 41 to emit infrared rays to detect the gas, and transmits the feedback signal to the inside of the infrared cloud imaging unit 43 through the infrared communication unit 42;

[0045] An infrared cloud imaging unit 43, the infrared cloud imaging unit 43 is used to receive the signal conveyed by the infrared communication unit 42, convert the signal into image information, and can convert the distribution and concentration of harmful gases into image information, and transmit the information to the inside of the image processing unit 44;

[0046] An image processing unit 44, the image processing unit 44 is communicatively connected to the display module 6 through the wireless communication module 5, and is used to receive the image information conveyed from the infrared cloud imaging unit 43, perform further refinement and clarity processing on the image information, and transmit the processed information to the inside of the display module 6 through the wireless communication module 5.

[0047] Please refer to Figure 1 , in an embodiment of the present invention, the display module 6 includes:

[0048] A display control unit 61, the display control unit 61 is communicatively connected to both the main processor 32 and the image processing unit 44 through the wireless communication module 5; it is used to receive the information conveyed by the wireless communication module 5, and then transmit different signals to the inside of the display unit 62;

[0049] A display unit 62, which is configured to receive information transmitted by the display control unit 61 and can display the specific information of the gas and the images of the distribution and concentration of the harmful gas.

[0050] Please refer to Figure 1 , in an embodiment of the present invention, the display unit 62 includes:

[0051] A first display unit 621, which is configured to receive information transmitted by the display control unit 61 and can display the specific information of the gas;

[0052] A second display unit 622, which is configured to receive information transmitted by the display control unit 61 and can display the images of the distribution and concentration of the harmful gas.

[0053] The working principle of the present invention is:

[0054] First, it responds to the gas and interacts with it. The current inside the gas sensor 1 changes. The gas sensor 1 will generate different current signals for different gases. Then, this current signal is transmitted to the inside of the data conversion unit 311 through the communication module 2. After a certain data conversion by the data conversion unit 311, the current signal is converted into a data signal, and then it is transmitted to the data analysis unit 312. The converted signal is analyzed and processed, and then the type of the gas is analyzed. Then, the signal is transmitted to the data comparison unit 313, where the category of the gas is compared with the specific information of the gas in the database, so as to determine whether the identified gas is harmful. The compared signal is transmitted to the inside of the main processor 32. When the gas is not harmful, at this time, the main processor 32 only transmits the signal to the inside of the display control unit 61 through the wireless communication module 5. At this time, the display control unit 61 transmits the signal to the inside of the first display unit 621 to display the specific information of the identified gas. If the gas is harmful, the main processor 32 transmits the signal to the display control unit 61 through the wireless communication module 5. The display control unit 61 transmits the signal to the inside of the first display unit 621 to display the specific information of the harmful gas. The main processor 32 also activates the infrared emission unit 41 to emit infrared rays to detect the gas, and transmits the feedback signal to the inside of the infrared cloud imaging unit 43 through the infrared communication unit 42. The infrared cloud imaging unit 43 converts the distribution and concentration of the harmful gas into image information, and transmits the image information to the inside of the image processing unit 44 for further refinement and clarity processing. The image processing unit 44 transmits the information to the inside of the display control unit 61 through the wireless communication module 5. The display control unit 61 transmits the signal to the inside of the second display unit 622, and the second display unit 622 displays the distribution map and concentration distribution map of the harmful gas.

[0055] In the gas rapid intelligent recognition system, the gas sensor 1 generates different current signals, which are transmitted to the inside of the data conversion unit 311 through the communication module 2 to convert the current signals into data signals, and then transmitted to the data analysis unit 312 to analyze the type of gas. Then, the signals are transmitted to the data comparison unit 313 to be compared with the specific information of the gas in the database, so as to judge whether the gas is harmful, and the compared signals are transmitted to the inside of the main processor 32. When the gas is not harmful, the first display unit 621 displays the specific information of the recognized gas. If the gas is harmful, the first display unit 621 displays the specific information of the harmful gas, and the second display unit 622 displays the distribution map and concentration distribution map of the harmful gas. It can not only quickly identify the type of gas, but also display the specific information of the gas, improving the comprehensiveness of the system and the practicality of the system. Moreover, when the system recognizes harmful gas, it can detect the distribution map and concentration distribution map of the harmful gas through the infrared cloud imaging module 4 and display the distribution map, which is not only convenient for the staff to carry out subsequent tracking processing, but also further improves the safety of the system.

[0056] For those skilled in the art, it is obvious that the present invention is not limited to the details of the above exemplary embodiments, and can be implemented in other specific forms without departing from the spirit or basic characteristics of the present invention. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting. The scope of the present invention is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present invention. Any reference signs in the claims should not be regarded as limiting the claims involved.

Claims

1. A gas rapid intelligent recognition system, characterized in that The gas rapid intelligent recognition system includes: A gas sensor, which is communicatively connected to a central processor module through a communication module; the gas sensor generates different current signals according to the sensitivity to different gases, and then transmits the current signals to the inside of the central processor module through the communication module; and A central processor module, which is communicatively connected to a display module through a wireless communication module, and is used for performing certain analysis and processing on the received signals, analyzing the type of gas and whether it is a harmful gas, and then transmitting the processed signals to the display module through the wireless communication module. It is also used for installing and starting an infrared cloud imaging module; An infrared cloud imaging module, which is electrically connected to the central processor module and is also communicatively connected to the display module through a wireless communication module; the infrared cloud imaging module performs cloud imaging on harmful gases and forms a picture signal, and then can transmit the image signal to the display module through the wireless communication module; A display module, which is used for receiving the information transmitted from the wireless communication module and then displaying the specific parameters of the gas in the information.

2. The gas rapid intelligent recognition system according to claim 1, characterized in that The central processor module includes: A data processing unit, which is communicatively connected to the gas sensor through a communication module; A main processor, which is communicatively connected to the display module through a wireless communication module and is electrically connected to the infrared cloud imaging module.

3. The gas rapid intelligent recognition system according to claim 2, characterized in that, The data processing unit includes: A data conversion unit, which is communicatively connected to the gas sensor through a communication module; A data analysis unit, which is used for analyzing and processing data to analyze the type of gas and achieve the purpose of gas recognition; the data is the digital signal converted by the data conversion unit from the current signal in the gas sensor; A data comparison unit, which is used for comparing the data information with the gas information in the database to judge whether the recognized gas is harmful; the data information is the gas information recognized by the data analysis unit.

4. The gas rapid intelligent recognition system according to claim 1, characterized in that, The infrared cloud imaging module includes: An infrared emission unit, which is electrically connected to the main processor and communicatively connected to the infrared cloud imaging unit through an infrared communication unit; An infrared cloud imaging unit, which converts the signal into image information and can convert the distribution and concentration of harmful gases into image information; An image processing unit, which is communicatively connected to the display module through a wireless communication module and is used for further refining and clarifying the image information.

5. The gas rapid intelligent recognition system according to claim 1, characterized in that The display module includes: A display control unit, which is communicatively connected to both the main processor and the image processing unit through a wireless communication module; A display unit, which is used for displaying the specific information of the gas and the distribution and concentration images of harmful gases.

6. The gas rapid intelligent recognition system according to claim 5, wherein The display unit includes a first display unit and a second display unit.

7. The gas rapid intelligent recognition system according to any one of claims 1 or 2, characterized in that The gas sensor is an electrochemical gas sensor.

Citation Information

Patent Citations

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