Animal drinking monitoring system and drinking state recognition method based on neural network

A monitoring system and animal technology, applied in biological neural network models, neural learning methods, instruments, etc., can solve the problems of inability to implement high-frequency detection, inconvenient tracking of changes in animal drinking water status, etc., to save manpower, accurate health monitoring, Accurate recognition results

Inactive Publication Date: 2018-05-25
南京国雅信息科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] Traditional animal drinking water testing uses a single drinking water sample point, which is very inconvenient to track changes in animal drinking water status. At present, the measurement of animal drinking water is mainly done manually. The owner needs to manually observe and record the animal drinking water every day, and draw the drinking water status curve. heavy workload
Moreover, some animals, such as grazing cattle, cannot observe the specific drinking water conditions, and often need to be tracked and positioned continuously to achieve this. Fo

Method used

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  • Animal drinking monitoring system and drinking state recognition method based on neural network
  • Animal drinking monitoring system and drinking state recognition method based on neural network
  • Animal drinking monitoring system and drinking state recognition method based on neural network

Examples

Experimental program
Comparison scheme
Effect test

Example Embodiment

[0051] Example one

[0052] The animal drinking water monitoring system in this embodiment includes a collection device worn on an animal for collecting animal drinking water information, and an intelligent terminal application for monitoring animal drinking water.

[0053] Such as figure 1 As shown, the collection device includes a drinking water information collector and a strap. Both sides of the drinking information collector are fixedly connected with a strap with an adjustable length. The strap is used to fix the collection device to the animal. , The abdomen strap has a built-in battery pack, the collection device is embedded with a pressure sensor, a sound sensor, and a timer, and the pressure sensor and the sound sensor are arranged close to the animal skin. The collection device can be connected by a buckle at both ends of the strapping belt, or directly tied together, so as to be worn on an animal.

[0054] Such as figure 2 As shown, the collection device 1 includes a pr...

Example Embodiment

[0063] Example two

[0064] In the second embodiment, on the basis of the first embodiment, a human-computer interaction module 26 is also provided in the smart terminal application. The human-computer interaction module 26 is connected to the collected data buffer module 22 and the status data buffer module 24.

[0065] The human-computer interaction module 26 is used to receive instructions provided by the user through interactive methods such as touch screen, keyboard and voice, and retrieve data from the collected data buffer module 22 and status data buffer module 24 according to the instructions, and then use the screen or voice, etc. Ways to show the retrieved data to the user.

Example Embodiment

[0066] Example three

[0067] In the third embodiment, on the basis of the first or second embodiment, the smart terminal application is further provided with a state data transmission module 25. The status data transmission module 25 is connected to the local status data buffer module 24 and the remote intelligent monitoring system 3.

[0068] The status data transmission module 25 connects the smart terminal application 2 to the smart monitoring system 3 through the Internet, TD-SCDMA or WCDMA and other remote communication networks, and is used to upload the animal drinking water status information to the smart monitoring system 3 as a history Data is ready for query or for more in-depth intelligent analysis.

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Abstract

The invention discloses an animal drinking monitoring system and a drinking state recognition method based on a neural network. The animal drinking monitoring system comprises an acquisition device and an intelligent terminal application, and the acquisition device acquires contact pressure, animal drinking sound frequency and drinking duration information of monitored animals and judges whether effective contact occurs or not according to the magnitude of the contact pressure; the intelligent terminal application receives effective animal data of the acquisition device and recognizes the effective animal data into the animal drinking state. By means of the recognition method, based on a neural network model, a sample set can be trained and learned, and based on the trained model, the drinking state of the animals is recognized. By means of the system, animal drinking situations can be automatically detected and remotely monitored in real time, manual detection or recording is not needed, and a lot of manpower can be saved; by means of the method, the difference like the type, the age, the individual and the motion state of the animals can be eliminated, all monitored objects are truly customized, and the purpose of precisely and effectively detecting drinking is achieved.

Description

technical field [0001] The invention relates to the field of animal health monitoring, in particular to an animal drinking water monitoring system and a neural network-based drinking water state identification method. Background technique [0002] The amount of drinking water is an important health indicator of animals. Drinking water monitoring is one of the important ways to evaluate the health status of animals. The timeliness, accuracy and reliability of drinking water monitoring directly affect the prevention, diagnosis, treatment and postoperative recovery of diseases. [0003] Traditional animal drinking water testing uses a single drinking water sample point, which is very inconvenient to track changes in animal drinking water status. At present, the measurement of animal drinking water is mainly done manually. The owner needs to manually observe and record the animal drinking water every day, and draw the drinking water status curve. A lot of work. Moreover, some a...

Claims

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Application Information

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IPC IPC(8): A01K29/00G06Q50/02G06N3/08
CPCA01K29/005G06N3/08G06Q50/02
Inventor 龚毅光阮峰张雅男胡永国
Owner 南京国雅信息科技有限公司
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