Intelligent Saika antelope grouping system
By installing signal transmission components and electric shock drive modules on the edge of the breeding plot, the problem of antelope crossing the fence is solved, the accurate grouping and movement control of antelope is achieved, and the accuracy of breeding management is improved.
Patent Information
- Application Number
- CN202510183731.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-19
- Publication Date
- 2025-07-11
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing breeding and grouping system cannot accurately group and control the movement direction of the antelope, causing the antelope to easily cross the fence and enter other breeding areas.
By installing a signal transmitting component on the edge of the breeding plot, the signal reception device and comparison module are used to determine the location of the antelope plot, and combined with the forced driving module, the electric shock component is used to drive the antelope back to the correct plot.
Accurate grouping and effective control of antelope is achieved, preventing antelope from entering the wrong plot, and improving the accuracy and efficiency of breeding management.
Smart Images

Figure CN120283680A_ABST
Abstract
Description
Technical Field
[0001] The present invention discloses a saiga antelope intelligent grouping system, belonging to the field of antelope breeding. Background Art
[0002] Grouped breeding is a breeding method that classifies and manages animals according to characteristics such as growth stage, breed, gender, weight, and health status. Through grouping, individualized management and feeding plans can be provided for different groups of animals, thereby improving the growth rate, milk production, or reproductive efficiency. Separating healthy animals from sick and weak animals for grouped breeding can effectively reduce the spread of diseases and improve the health level of the overall breeding population.
[0003] Existing breeding grouping systems only separate livestock for breeding by fences. The fences can have a sufficient restraining effect on animals. However, saiga antelopes have a strong stress response. During the process of grouped breeding, it is impossible to accurately form a breeding group for saiga antelopes manually. Saiga antelopes will randomly enter other breeding areas, so it is impossible to accurately group saiga antelopes. Moreover, saiga antelopes run relatively fast, and it is impossible to effectively control the moving direction of the herd when driving them, and it is impossible to effectively control the herd. Summary of the Invention
[0004] The technical problem to be solved by the present invention is the problem that saiga antelopes will jump over the fence into other breeding areas during the existing breeding process.
[0005] To achieve the above object, the present invention provides the following technical solutions: A method for using a saiga antelope intelligent grouping system, characterized by comprising the following steps: S1. Plan multiple breeding plots through the antelope grouping module, and then divide the saiga antelopes into multiple plots according to individual information. Fences and channels are set between the multiple plots; S2. Install signal transmitting components at the edges of the multiple plots through the plot separation module. The signals transmitted from the four sides of the same plot are also different, and the signals between adjacent plots are different; S3. Install signal receiving devices on each saiga antelope through the plot judgment module. After the signal receiving device receives the signal, it will be compared with that inside the device. When the signals are different, it is judged that the plot entered by the saiga antelope is incorrect. When the comparison results of the two groups of signals are the same, it is judged that the plot entered by the saiga antelope is correct, and then the process stops. When the comparison results of the two groups of signals are different, it is judged that the plot entered by the saiga antelope is incorrect, and the received original signal is input to the forced driving module; S4. The forced driving module receives the original signal, distinguishes the direction of the original signal, and then activates the corresponding electric shock component to drive the saiga antelope out of the incorrect plot.
[0006] As a preferred technical solution of the present invention, in the step S1, the saiga antelope grouping module includes a plot planning component and an antelope planning component. The breeding ground is planned into multiple breeding plots according to requirements through the plot planning component, and multiple saiga antelopes are respectively divided into multiple set plots according to the differences in individual information through the antelope planning component.
[0007] As a preferred technical solution of the present invention, in the step S2, the plot separation module includes a signal transmitting module and a signal simulation module. A basic landmark signal is established for each plot through the signal simulation module, and then four direction signals are established based on the basic landmark signal. The four direction signals are established by adding a section of signal to the basic landmark signal. The signals added to the direction signals in the same orientation of all plots are the same. The four groups of signals of each plot are sent out through the signal transmitting module.
[0008] As a preferred technical solution of the present invention, in the step S3, the plot judgment module includes a signal receiving module and a signal comparison module. Each saiga antelope wears a signal receiving module and a signal comparison module. The signal sent by the plot is received through the signal receiving module, and then the signal is input into the signal comparison module. The signal is compared through the signal comparison module, and it is judged whether the saiga antelope is in the corresponding plot according to the comparison result.
[0009] A saiga antelope intelligent grouping system, characterized in that it includes the following modules: An antelope classification module, which plans multiple breeding plots through the antelope grouping module, and then divides the saiga antelopes into multiple plots according to individual information. Fences and channels are arranged between the multiple plots; A plot separation module, which installs signal transmitting components at the edges of multiple plots through the plot separation module. The signals transmitted from the four sides of the same plot also have differences, and the signals between adjacent plots have differences; A plot judgment module, which installs signal receiving devices on each saiga antelope through the plot judgment module. After the signal receiving devices receive the signals, they will be compared with those inside the devices. When the signals are different, it is judged that the plot entered by the saiga antelope is incorrect; A forced driving module, which receives the original signal through the forced driving module, distinguishes the direction of the original signal, and then starts the corresponding electric shock component to drive the saiga antelope out of the incorrect plot.
[0010] The beneficial effects achieved by the present invention are as follows: An intelligent grouping system for saiga antelopes according to the present invention installs signal transmitting components at the edges of multiple plots through a plot separation module. There are also differences in the signals transmitted on the four sides of the same plot, and there are differences in the signals between adjacent plots. The plot judgment module judges whether the plot entered by the antelopes corresponds, and inputs the received original signal to the forced driving module. The forced driving module receives the original signal, distinguishes the direction of the original signal, and then activates the corresponding electric shock component to drive the antelopes out of the wrong plot. BRIEF DESCRIPTION OF THE DRAWINGS
[0011] Figure 1 It is a module diagram of the present invention; Figure 2 It is a flow chart of the present invention. DETAILED DESCRIPTION OF THE INVENTION
[0012] The technical solutions in the embodiments of the present invention will be clearly and completely described below. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0013] Please refer to Figure 1-2 , the present invention provides a technical solution: A method for using an intelligent grouping system for saiga antelopes, which is characterized by including the following steps: S1. Plan multiple breeding plots through the antelope grouping module, and then divide the antelopes into multiple plots according to individual information. Fences and passages are set between the multiple plots; S2. Install signal transmitting components at the edges of multiple plots through the plot separation module. There are also differences in the signals transmitted on the four sides of the same plot, and there are differences in the signals between adjacent plots; The signal transmitted by the same plot consists of a plot signal and a direction signal. The plot signal is the number of the current plot, and the direction signal is set according to the four directions of east, south, west, and north. The direction signal is added to the back end of each plot signal according to the transmission direction. The finally emitted signal is the overall signal of the plot signal plus the direction signal. S3. Install signal receiving devices on each antelope through the plot judgment module. After the signal receiving devices receive the signals, they will compare with the inside of the devices. When there are differences in the signals, it is judged that the plot entered by the antelopes is incorrect. When the comparison results of the two groups of signals are the same, it is judged that the plot entered by the antelopes is correct, and the process stops. When the comparison results of the two groups of signals are different, it is judged that the plot entered by the antelopes is incorrect, and the received original signal is input to the forced driving module; S4. The forced driving module receives the original signal, distinguishes the direction of the original signal, and then activates the corresponding electric shock component to drive the antelopes out of the wrong plot; The forced driving module drives the antelopes through a micro-electroshocker. Four micro-electroshockers are installed on each antelope. The four micro-electroshockers are arranged according to directions. According to the received signal, the corresponding micro-electroshocker is activated according to the direction, so that the antelope moves away from the direction of being shocked, and then the moving direction of the antelope can be controlled, and the antelope can be flexibly controlled.
[0014] As a preferred technical solution of the present invention, in the step S1, the antelope grouping module includes a plot planning component and an antelope planning component. The breeding ground is planned into multiple breeding plots according to requirements through the plot planning component, and multiple antelopes are respectively divided into multiple set plots according to the differences in individual information through the antelope planning component.
[0015] As a preferred technical solution of the present invention, in the step S2, the plot separation module includes a signal transmitting module and a signal simulation module. A basic landmark signal is established for each plot through the signal simulation module, and then four direction signals are established according to the basic landmark signal. The four direction signals are established by adding a section of signal to the basic landmark signal. The signals added to the direction signals in the same orientation of all plots are the same. The four groups of signals of each plot are sent out through the signal transmitting module.
[0016] As a preferred technical solution of the present invention, in the step S3, the plot judgment module includes a signal receiving module and a signal comparison module. Each antelope wears a signal receiving module and a signal comparison module. The signal sent by the plot is received through the signal receiving module, and then the signal is input into the signal comparison module. The signal is compared through the signal comparison module, and it is judged whether the antelope is located in the corresponding plot according to the comparison result.
[0017] A saiga antelope intelligent grouping system, characterized in that it includes the following modules: The antelope classification module plans multiple breeding plots through the antelope grouping module, and then divides the antelopes into multiple plots according to individual information. Fences and passages are arranged between the multiple plots; The plot separation module installs signal transmitting components at the edges of multiple plots through the plot separation module. There are also differences in the signals transmitted from the four sides of the same plot, and there are differences in the signals between adjacent plots; The plot judgment module installs signal receiving devices on each antelope through the plot judgment module. After the signal receiving device receives the signal, it will compare it with the inside of the device. When the signals are different, it is judged that the plot entered by the antelope is incorrect; The forced driving module receives the original signal through the forced driving module, distinguishes the direction of the original signal, and then activates the corresponding electric shock component to drive the antelope out of the incorrect plot.
[0018] Specifically, this method first plans multiple breeding plots through the antelope grouping module, and then divides the antelopes into multiple plots according to their individual information. Fences and passages are set between the multiple plots. The signal transmitting components are installed at the edges of the multiple plots through the plot separation module. There are also differences in the signals emitted from the four sides of the same plot, and there are differences in the signals between adjacent plots. The signal receiving devices are installed on each antelope through the plot judgment module. After the signal receiving devices receive the signals, they will be compared with those inside the devices. When there are differences in the signals, it is judged that the plot entered by the antelope is incorrect. When the comparison results of the two groups of signals are the same, it is judged that the plot entered by the antelope is correct, and the process stops. When the comparison results of the two groups of signals are different, it is judged that the plot entered by the antelope is incorrect, and the received original signal is input to the forced driving module. The forced driving module receives the original signal, distinguishes the direction of the original signal, and then activates the corresponding electric shock component to drive the antelope out of the incorrect plot.
[0019] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A method for using a Saiga antelope intelligent grouping system, characterized in that, It includes the following steps: S1. Plan multiple breeding plots through the antelope grouping module, and then divide the antelopes into multiple plots according to their individual information. Fences and passages are set between the multiple plots; S2. Install signal transmitting components at the edges of multiple plots through the plot separation module. There are also differences in the signals transmitted from the four sides of the same plot, and there are differences in the signals between adjacent plots; S3. Install signal receiving devices on each antelope through the plot judgment module. After the signal receiving devices receive the signals, they will be compared with those inside the devices. When the signals are different, it is judged that the plot entered by the antelope is incorrect. When the comparison results of the two groups of signals are the same, it is judged that the plot entered by the antelope is correct, and then the process stops. When the comparison results of the two groups of signals are different, it is judged that the plot entered by the antelope is incorrect, and the original received signal is input into the forced driving module; S4. The forced driving module receives the original signal, distinguishes the direction of the original signal, and then activates the corresponding electric shock component to drive the antelope out of the incorrect plot.
2. The intelligent grouping system for saiga antelopes according to claim 1, characterized in that: In step S1, the antelope grouping module includes a plot planning component and an antelope planning component. The breeding ground is planned into multiple breeding plots according to requirements through the plot planning component, and multiple antelopes are divided into multiple set plots respectively according to the differences in their individual information through the antelope planning component.
3. The intelligent grouping system for saiga antelopes according to claim 1, wherein: In step S2, the plot separation module includes a signal transmitting module and a signal simulation module. A basic landmark signal is established for each plot through the signal simulation module, and then four direction signals are established based on the basic landmark signal. The four direction signals are established by adding a section of signal to the basic landmark signal. The signals added to the direction signals in the same orientation of all plots are the same. The four groups of signals of each plot are sent out through the signal transmitting module.
4. The intelligent grouping system for saiga antelopes according to claim 1, characterized in that: In step S3, the plot judgment module includes a signal receiving module and a signal comparison module. Each antelope wears a signal receiving module and a signal comparison module. The signals sent out by the plot are received through the signal receiving module, and then the signals are input into the signal comparison module. The signals are compared through the signal comparison module, and it is judged whether the antelope is in the corresponding plot according to the comparison result.
5. A Saiga antelope intelligent grouping system according to any one of claims 1-4, characterized in that: It includes the following modules: Antelope classification module. Plan multiple breeding plots through the antelope grouping module, and then divide the antelopes into multiple plots according to their individual information. Fences and passages are set between the multiple plots; Plot separation module. Install signal transmitting components at the edges of multiple plots through the plot separation module. There are also differences in the signals transmitted from the four sides of the same plot, and there are differences in the signals between adjacent plots; Plot judgment module. Install signal receiving devices on each antelope through the plot judgment module. After the signal receiving devices receive the signals, they will be compared with those inside the devices. When the signals are different, it is judged that the plot entered by the antelope is incorrect; Forced driving module. The forced driving module receives the original signal, distinguishes the direction of the original signal, and then activates the corresponding electric shock component to drive the antelope out of the incorrect plot.