A pig house disinfecting, deodorizing and epidemic prevention breeding system

By introducing a breeding system with data collection, analysis, and output modules into the pigsty, the status of the pigsty can be monitored and adjusted in real time, solving the problem of disease spread in the pigsty and improving the intelligence and safety of the breeding system.

CN120827090BActive Publication Date: 2025-12-09WEIFANG UNIVERSITY
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Patent Information

Application Number
CN202511318166.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-09-16
Publication Date
2025-12-09
Estimated Expiration
2045-09-16

AI Technical Summary

Technical Problem

The existing pig farming system lacks intelligent equipment, making it difficult to monitor and adjust abnormal conditions in pens in real time, resulting in a high risk of disease spread.

Method used

The pigsty disinfection, deodorization, and disease prevention system employs a data acquisition module, an analysis module, a storage module, and an output module. It monitors environmental information in real time through gas and image acquisition components, analyzes the data, and outputs disinfectant spraying components to disinfect abnormal pens.

Benefits of technology

It enables real-time monitoring of the status of each pen in the pigsty and timely adjustment of abnormal conditions, preventing the spread of diseases and improving breeding efficiency and safety.

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Abstract

The present application relates to pig house breeding system technical field, especially to a kind of pig house disinfection, deodorization, epidemic prevention breeding system, including collection module, it is used to the current pig house in environmental information collection, analysis module, it is connected with collection module, for according to the current pig house in environmental information analysis, and generate analysis result, storage module, it is connected with collection module and analysis module, for the pig house information and the data of analysis module derived are stored, output module, it is connected with analysis module, it is used to the analysis result of analysis module is collected, and analysis result is output. Therefore, the present application can view the real-time state of each stall in pig house in real time, facilitate the adjustment of stall in abnormal state by technical personnel, and the stall in warning state can be killed in time, prevent epidemic spread.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of pig house breeding system, and in particular to a pig house disinfection, deodorization and epidemic prevention breeding system. BACKGROUND

[0002] The main pork production areas in China are concentrated in North China, Central China and South China. Hunan, Sichuan and Henan are among the top pork producing provinces in China. Traditional pig breeding mode has the disadvantages of environmental pollution and susceptibility to swine fever. With the rapid development of China's economy and the strong demand for pork, the breeding mode is developing towards intensification, and the pig farm construction is gradually becoming large-scale.

[0003] At present, most large-scale pig farms still adopt traditional manual breeding management and semi-mechanized breeding management mode, the equipment is simple, the overall level of modern breeding technology and reliable mechanical equipment is not high, the pollution treatment investment of large-scale breeding is large, the demand for labor is more, the labor cost is high, and the management process depends on the experience of breeding management personnel, which restricts the further development of large-scale breeding, and some diseases have a great impact on breeding. At the same time of epidemic disease monitoring and normal epidemic situation investigation, the increased investment in epidemic prevention management aggravates the imbalance and insufficiency of corresponding disinfection, deodorization and epidemic prevention in the management process, and the research and development of intelligent equipment are still in the initial stage, and mature and reliable intelligent integrated equipment are not common. Intelligent breeding equipment is the basis for realizing intensive breeding of live pigs and improving breeding efficiency, so intelligent breeding machinery is of great significance for improving the level of live pig breeding and realizing the modernization of live pig breeding.

[0004] How to realize real-time viewing of the real-time state of each stall in the pig house, facilitate the adjustment of the stall in the abnormal state by the technical personnel, and timely disinfection and killing of the stall in the warning state to prevent the spread of epidemic diseases has become a technical problem to be solved.

[0005] From the above, it is obvious that the prior art has disadvantages in actual use, so it is necessary to improve. SUMMARY

[0006] In view of the above defects, the purpose of the present application is to provide a pig house disinfection, deodorization and epidemic prevention breeding system, which can realize real-time viewing of the real-time state of each stall in the pig house, facilitate the adjustment of the stall in the abnormal state by the technical personnel, and timely disinfection and killing of the stall in the warning state to prevent the spread of epidemic diseases.

[0007] In order to achieve the above purpose, the present application provides a pig house disinfection, deodorization and epidemic prevention breeding system, comprising:

[0008] The acquisition module is used for acquiring the current pig house environment information.

[0009] an analysis module connected with the acquisition module, for analyzing according to the current pig house environment information, and generating analysis results.

[0010] a storage module connected with the acquisition module and the analysis module, for storing the pig house information and data obtained by the analysis module.

[0011] an output module connected with the analysis module, for collecting the analysis results of the analysis module, and outputting the analysis results.

[0012] According to the pig house disinfection, deodorization and epidemic prevention breeding system, the acquisition module comprises a gas acquisition assembly for acquiring current pig house gas information and an image acquisition assembly for acquiring real-time image information in the pig house, the information acquired by the gas acquisition assembly is gas composition Gac, and the information acquired by the image acquisition assembly comprises feed intake Foi, water intake Wai and standing-to-lying ratio Salr.

[0013] According to the pig house disinfection, deodorization and epidemic prevention breeding system, the output module comprises a manual input unit for inputting standard values and a background query unit for being queried by technicians, the technicians input standard gas composition Sgac, standard feed intake Sfoi, standard water intake Swai and standard standing-to-lying ratio Ssalr through the manual input unit, and the analysis module compares the information acquired by the acquisition module in real time with the standard information input by the background technicians, and divides the current pig house state into four levels of good, general, poor and warning.

[0014] According to the pig house disinfection, deodorization and epidemic prevention breeding system, the output module further comprises a spraying assembly for spraying disinfectant, the spraying assembly, the gas acquisition assembly and the image acquisition assembly are all installed on a mobile chassis, the spraying assembly comprises a spraying port arranged on the mobile chassis, and the mobile chassis is internally provided with a medicine storage tank for storing disinfectant and a pump.

[0015] According to the pig house disinfection, deodorization and epidemic prevention breeding system, the adjustment between the analysis module and the output module comprises the following steps:

[0016] S1: The analysis module judges and analyzes the gas composition Gac acquired by the acquisition module and the standard gas composition Sgac, and divides the current pig house state into general and poor.

[0017] S2: The analysis module judges and analyzes the feed intake Foi and the water intake Wai of the pig house divided into general in S1 and the standard feed intake Sfoi and the standard water intake Swai, divides the pig house meeting the standard into good, and keeps the pig house not meeting the standard in general.

[0018] S3: The analysis module analyzes the standing and lying ratio Salr of the stalls classified as poor in S1 and the standard standing and lying ratio Ssalr, and the stalls meeting the standard are kept in poor, and the stalls not meeting the standard are classified as warning.

[0019] S4: The analysis module analyzes the standing and lying ratio Salr of the pigs in the stalls kept in general in S2 and the standard standing and lying ratio Ssalr, and the stalls meeting the standard are kept in general, and the stalls not meeting the standard are classified as warning.

[0020] S5: The analysis module feeds back the classification result to the output module, and the output module publicizes the result and adjusts the stalls in warning.

[0021] According to the pig house disinfection, deodorization and epidemic prevention breeding system, in S1, when the stalls are classified for the first time:

[0022] When the gas component Gac of the stall is within the range of the standard gas component Sgac, the stall is classified as general.

[0023] When the gas component Gac of the stall is not within the range of the standard gas component Sgac, the stall is classified as poor.

[0024] According to the pig house disinfection, deodorization and epidemic prevention breeding system, in S2, when the stalls are classified for the first time:

[0025] When the feed intake Foi of the stall is ≥ the standard feed intake Sfoi, and the drinking water amount Wai is within the range of the standard drinking water amount Swai, the stall is classified as good.

[0026] When the feed intake Foi of the stall is < the standard feed intake Sfoi, and the drinking water amount Wai is not within the range of the standard drinking water amount Swai, the stall is kept in general.

[0027] According to the pig house disinfection, deodorization and epidemic prevention breeding system, in S3, when the stalls are classified for the first time:

[0028] When the standing and lying ratio Salr of the pigs in the stall is within the range of the standard standing and lying ratio Ssalr, the stall is kept in poor.

[0029] When the standing and lying ratio Salr of the pigs in the stall is not within the range of the standard standing and lying ratio Ssalr, the stall is classified as warning.

[0030] According to the pig house disinfection, deodorization and epidemic prevention breeding system, in S4, when the stalls are classified for the first time:

[0031] When the standing and lying ratio Salr of the pigs in the stall is within the range of the standard standing and lying ratio Ssalr, the stall is kept in general.

[0032] When the standing and lying ratio of the pigs in the stall is not within the range of the standard standing and lying ratio Ssalr, the stall is divided into a warning.

[0033] The pig house disinfection, deodorization and epidemic prevention breeding system comprises a collection module, an analysis module, a storage module and an output module. The collection module is used for collecting current pig house environment information. The analysis module is connected with the collection module and is used for analyzing the current pig house environment information and generating an analysis result. The real-time state of each stall in the pig house can be viewed in real time, and the stall in an abnormal state can be adjusted by a technician. The storage module is connected with the collection module and the analysis module and is used for storing pig house information and data obtained by the analysis module. The output module is connected with the analysis module and is used for collecting the analysis result of the analysis module and outputting the analysis result. The output module further comprises a spraying assembly for spraying disinfectant. The spraying assembly is used for spraying disinfectant on the stall in a warning state by moving to the position of the stall in the warning state by using a mobile chassis. The pig house disinfection, deodorization and epidemic prevention breeding system can view the real-time state of each stall in the pig house in real time, adjust the stall in an abnormal state by a technician, disinfect and kill the stall in a warning state in time and prevent the spread of epidemic diseases. BRIEF DESCRIPTION OF DRAWINGS

[0034] Figure 1 The figure of the spraying assembly of the present application is shown in the figure;

[0035] In the figure: 1 - mobile chassis, 2 - medicine spraying port, 3 - image collection assembly, 4 - gas collection assembly. DETAILED DESCRIPTION

[0036] In order to make the purpose, technical solution and advantages of the present application more clear, the present application is further described in detail below with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are only used to explain the present application and do not limit the present application.

[0037] Referring to Figure 1 The pig house disinfection, deodorization and epidemic prevention breeding system is applied to a pig house having multiple independent stalls and comprises:

[0038] The collection module is used for collecting current pig house environment information.

[0039] The analysis module is connected with the collection module and is used for analyzing the current pig house environment information and generating an analysis result.

[0040] A storage module is connected with the acquisition module and the analysis module, and is used for storing the pig house information and data obtained by the analysis module.

[0041] An output module is connected with the analysis module, and is used for collecting the analysis result of the analysis module and outputting the analysis result.

[0042] Referring to Figure 1 The acquisition module includes a gas acquisition component 4 for acquiring current gas information in the pig house and an image acquisition component 3 for acquiring real-time image information in the pig house. The information acquired by the gas acquisition component 4 is gas composition Gac, and the information acquired by the image acquisition component 3 includes feed intake Foi, water intake Wai and standing-to-lying ratio Salr. The gas composition Gac is the content of waste gas odor gases such as CO2, H2S and NH3 in the current air (a sensor module for collecting the gas can be added according to the actual situation, and real-time analysis of the gas composition in the air is a mature existing technology in the art, and the specific structure and working principle are not described here). The feed intake Foi = single feeding amount - current remaining feed amount, and the water intake Wai = initial total water amount - current remaining water amount. The above-mentioned feed intake Foi and water intake Wai are data formed by comparing the initial photo with the real-time photo by the image acquisition component 3. Since too accurate data is not required, only the risk assessment of the current situation is required, and therefore the less accurate data obtained by image analysis can be used. The standing-to-lying ratio Salr is the ratio of the number of standing pigs to the number of lying pigs in the current single pen.

[0043] Specifically, if the ventilation in the current pig house is poor, the concentration of harmful gases such as ammonia or carbon dioxide is increased, and the pig will exhibit a series of obvious “rescue actions” (for example, when the ammonia, hydrogen sulfide and odor are too heavy, the pig likes to lie down, piles up or moves away from the manure area, in order to reduce the inhalation of harmful gases, it will crowd at the ventilation opening or the corner of the pen, and the nostrils will be directed towards the airflow direction; when the pig house is hot and lacks cooling facilities, the pig rolls in the manure and urine, and uses the wet body to evaporate heat, indicating that the temperature and air quality are both poor; under high temperature or high CO2, the pig will reduce appetite and exhibit “polydipsia and oligophagia” stress performance; if the pig in the pig house has symptoms, the pig will significantly reduce the food and water intake, and lie on the ground in the pigsty for a long time), these actions can be regarded as warning information of the on-site air quality, and the problem can be found at the first time.

[0044] The output module includes a manual input unit for inputting standard values and a background query unit for technicians to query, the background query unit is an interactive platform (such as a public number), and the technicians can query real-time data, and the technicians can input standard gas components Sgac, standard forage intake Sfoi, standard water intake Swai and standard lying ratio Ssalr through the manual input unit (the technicians can calibrate the above standard values according to experience or local actual conditions, and the standard values should be set as a value range), and the analysis module compares the information collected by the collection module in real time with the standard information input by the background technicians, and divides the current stall state into four levels of good, general, poor and warning.

[0045] Referring to Figure 1 Preferably, the output module further comprises a spraying assembly for spraying disinfectant, if there are many stalls in the pig house, multiple spraying assemblies can be arranged to work in the same pig house, the spraying assembly is arranged on the mobile chassis 1, the spraying assembly comprises a spraying port 2 arranged on the mobile chassis 1, the mobile chassis 1 is internally provided with a medicine storage tank and a pump for storing disinfectant (a disinfectant that can directly contact pigs should be selected), and the disinfectant can be sprayed out from the spraying port 2 after being pressurized, the gas collection assembly 4 and the image collection assembly 3 are both mounted on the mobile chassis 1, and with the movement of the mobile chassis 1, the gas collection assembly 4 and the image collection assembly 3 successively collect and detect the feed condition, water condition, surrounding gas information and pig condition in each stall.

[0046] Referring to Figure 1 Preferably, the image collection assembly 3 can use a visual sensor with analysis function to collect and analyze real-time images, the gas collection assembly 4 can use a modular multi-gas sensor, and the mobile chassis 1 can use a tracked power chassis, and the mobile chassis 1 should be provided with a matching laser radar, an IMU and other components to realize stable and efficient autonomous movement, and the specific structure and working principle of the above are mature existing technologies, which will not be described here.

[0047] Specifically, the adjustment between the analysis module and the output module includes the following steps:

[0048] S1: The analysis module judges and analyzes the gas components Gac collected by the collection module and the standard gas components Sgac, and divides the current stall state into general and poor.

[0049] S2: The analysis module judges and analyzes the forage intake Foi and the water intake Wai of the stall divided into general in S1 and the standard forage intake Sfoi and the standard water intake Swai, divides the stall meeting the standard into good, and keeps the stall not meeting the standard in general.

[0050] S3: The analysis module analyzes the stationing and lying ratio Salr of the stalls divided into the poor in S1 and the standard stationing and lying ratio Ssalr, and the stalls meeting the standard are kept in the poor, and the stalls not meeting the standard are divided into the warning.

[0051] S4: The analysis module analyzes the stationing and lying ratio Salr of the pigs in the stalls kept in the general in S2 and the standard stationing and lying ratio Ssalr, and the stalls meeting the standard are kept in the general, and the stalls not meeting the standard are divided into the warning.

[0052] S5: The analysis module feeds back the division result to the output module, the output module publicizes the result, and adjusts the stalls in the warning.

[0053] Specifically, in S1 of the application, when the stalls are divided for the first time:

[0054] When the gas component Gac of the stall is within the range of the standard gas component Sgac, the stall is divided into the general.

[0055] When the gas component Gac of the stall is not within the range of the standard gas component Sgac, the stall is divided into the poor.

[0056] Specifically, in S2 of the application, when the stalls are divided for the first time:

[0057] When the feed intake Foi of the stall is greater than or equal to the standard feed intake Sfoi, and the drinking water amount Wai is within the range of the standard drinking water amount Swai, the stall is divided into the good.

[0058] When the feed intake Foi of the stall is less than the standard feed intake Sfoi, and the drinking water amount Wai is not within the range of the standard drinking water amount Swai, the stall is kept in the general.

[0059] Specifically, in S3 of the application, when the stalls are divided for the first time:

[0060] When the stationing and lying ratio Salr of the pigs in the stall is within the range of the standard stationing and lying ratio Ssalr, the stall is kept in the poor.

[0061] When the stationing and lying ratio Salr of the pigs in the stall is not within the range of the standard stationing and lying ratio Ssalr, the stall is divided into the warning.

[0062] Specifically, in S4 of the application, when the stalls are divided for the first time:

[0063] When the stationing and lying ratio Salr of the pigs in the stall is within the range of the standard stationing and lying ratio Ssalr, the stall is kept in the general.

[0064] When the standing and lying ratio of the pigs in the stall is not within the range of the standard standing and lying ratio Ssalr, the stall is divided into a warning.

[0065] When the technical personnel observe that the stall state is in poor and warning, the ventilation equipment of the stall should be started in time to accelerate the air circulation of the stall, the output module moves to the position of the stall in warning by using the mobile chassis 1, and the output module sprays the disinfectant on the stall in warning by using the spraying assembly to kill in time, if the stall is in poor and warning for a period of time, the technical personnel should enter the pig house to observe in place to exclude interference factors and adjust the stall in time.

[0066] The application provides a pig house disinfection, deodorization and epidemic prevention breeding system, which comprises a collection module, an analysis module, a storage module and an output module, the collection module is used for collecting current pig house environment information, the analysis module is connected with the collection module and is used for analyzing the current pig house environment information and generating analysis results, the real-time state of each stall in the pig house can be viewed in real time, and technical personnel can adjust the stall in an abnormal state; the storage module is connected with the collection module and the analysis module and is used for storing pig house information and data obtained by the analysis module; the output module is connected with the analysis module and is used for collecting analysis results of the analysis module and outputting the analysis results; the output module further comprises a spraying assembly for spraying disinfectant, the output module moves to the position of the stall in warning by using the mobile chassis, and the output module sprays the disinfectant on the stall in warning by using the spraying assembly to prevent epidemic diseases from spreading.

[0067] Of course, the present application can have other various embodiments, and those skilled in the art can make various corresponding changes and modifications according to the present application without departing from the spirit and essence of the present application, but these corresponding changes and modifications should belong to the protection scope of the claims attached to the present application.

Claims

1. A pig house disinfection, deodorization and epidemic prevention breeding system, characterized in that, The utility model relates to a pig house environment information analysis system, including: a collection module for collecting current pig house environment information; an analysis module connected with the collection module for analyzing according to the current pig house environment information and generating analysis results; a storage module connected with the collection module and the analysis module for storing pig house information and data obtained by the analysis module; an output module connected with the analysis module for collecting analysis results of the analysis module and outputting the analysis results; the collection module includes a gas collection assembly for collecting current pig house gas information and an image collection assembly for collecting real-time image information in the pig house, the information collected by the gas collection assembly is gas composition Gac, and the information collected by the image collection assembly includes feed intake Foi, water intake Wai and standing and lying ratio Salr, the standing and lying ratio Salr is the ratio of the number of standing pigs to the number of lying pigs in the current single pen; the output module includes a manual input unit for inputting standard values and a background query unit for technicians to query, the technicians input standard gas composition Sgac, standard feed intake Sfoi, standard water intake Swai and standard standing and lying ratio Ssalr through the manual input unit, the analysis module compares the information collected by the collection module in real time with the standard information input by the background technicians, and divides the current pen state into four levels of good, general, poor and warning; the output module further includes a spraying assembly for spraying disinfectant, the spraying assembly, the gas collection assembly and the image collection assembly are all installed on a mobile chassis, the spraying assembly includes a pesticide spraying port arranged on the mobile chassis, and the mobile chassis is internally provided with a pesticide storage tank for storing disinfectant and a pump; the adjustment between the analysis module and the output module includes the following steps: S1: the analysis module judges and analyzes the gas composition Gac collected by the collection module and the standard gas composition Sgac, and divides the current pen state into general and poor; S2: the analysis module judges and analyzes the feed intake Foi and the water intake Wai of the pen divided into general in S1 and the standard feed intake Sfoi and the standard water intake Swai, divides the pen meeting the standard into good, and keeps the pen not meeting the standard in general; S3: the analysis module judges and analyzes the standing and lying ratio Salr of the pen divided into poor in S1 and the standard standing and lying ratio Ssalr, keeps the pen meeting the standard in poor, and divides the pen not meeting the standard into warning; S4: the analysis module judges and analyzes the standing and lying ratio Salr of the pigs in the pen kept in general in S2 and the standard standing and lying ratio Ssalr, keeps the pen meeting the standard in general, and divides the pen not meeting the standard into warning; S5: the analysis module feeds back the result of the division to the output module, the output module publicizes the result and adjusts the stall in the warning, after receiving the signal of the analysis module, the output module moves to the position of the stall in the warning by using the mobile chassis, and sprays the disinfectant on the stall in the warning by using the spraying assembly of the output module to kill in time.

2. The pig house disinfecting, deodorizing and epidemic prevention breeding system according to claim 1, characterized in that, In S1, when dividing the stall state for the first time: when the gas component Gac of the stall is within the range of the standard gas component Sgac, the stall is divided into general; when the gas component Gac of the stall is not within the range of the standard gas component Sgac, the stall is divided into poor.

3. The pig house disinfecting, deodorizing and epidemic prevention breeding system according to claim 1, characterized in that, In S2, when dividing the stall state for the first time: when the feed intake Foi of the stall is greater than or equal to the standard feed intake Sfoi, and the drinking water Wai is within the range of the standard drinking water Swai, the stall is divided into good; when the feed intake Foi of the stall is less than the standard feed intake Sfoi, and the drinking water Wai is not within the range of the standard drinking water Swai, the stall remains in general.

4. The pig house disinfecting, deodorizing and epidemic prevention breeding system according to claim 1, characterized in that, In S3, when dividing the stall state for the first time: when the standing and lying ratio Salr of the pigs in the stall is within the range of the standard standing and lying ratio Ssalr, the stall remains in poor; when the standing and lying ratio Salr of the pigs in the stall is not within the range of the standard standing and lying ratio Ssalr, the stall is divided into warning.

5. The pig house disinfecting, deodorizing, and epidemic-preventing breeding system according to claim 1, characterized in that, In S4, when dividing the stall state for the first time: when the standing and lying ratio Salr of the pigs in the stall is within the range of the standard standing and lying ratio Ssalr, the stall remains in general; when the standing and lying ratio Salr of the pigs in the stall is not within the range of the standard standing and lying ratio Ssalr, the stall is divided into warning.

Citation Information

Patent Citations

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    CN111210915A

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