Animal management method and system based on locator

By monitoring the pet's location and adjacent equipment in real time and dynamically adjusting the power consumption mode of the locator, the problem of short use time in the prior art is solved, flexible prompts and extended use time are achieved, and the efficiency of pet retrieval is improved.

CN120436069AActive Publication Date: 2025-08-08ANHUI XINGTAI FINANCIAL LEASING CO LTD
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Patent Information

Application Number
CN202510588168.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-08
Publication Date
2025-08-08
Estimated Expiration
2045-05-08

AI Technical Summary

Technical Problem

The existing animal loss prevention management method based on locator is relatively fixed, and the power consumption management is not flexible enough, resulting in a shorter time for locator and affecting the efficiency of pet retrieval.

Method used

By monitoring the pet's position in real time, determining whether it is in a safe area, determining whether there is a neighboring associated device, and dynamically adjusting the power consumption mode of the positioning device according to the situation, including high power saving, low power saving and normal mode, sending loss prompt information, and providing a disengage prompt if the loss prompt is not triggered.

Benefits of technology

It extends the use time of the locator, increases the possibility of pet retrieval, and improves the anti-loss effect through a flexible prompt mechanism.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to an animal management method and system based on a locator. The method comprises the following steps: judging whether the position information of a pet is in a preset safe area or not; when the pet is not in the preset safe area, judging whether adjacent associated equipment exists or not based on the position information of the pet in the monitoring interval; judging whether to trigger a loss prompt instruction according to whether the adjacent associated equipment exists; when the loss prompt instruction is triggered, loss prompt information is sent to associated equipment, and the power consumption mode of the positioning equipment is dynamically adjusted based on the position of the pet; and when the loss prompt instruction is not triggered, determining separation prompt information based on the position information of the adjacent associated equipment and the position information of the pet. According to the invention, flexible prompt based on the positioner is realized, the power consumption mode of the positioning equipment is dynamically adjusted based on the position of the pet when the loss prompt instruction is triggered, the service time of the positioner is prolonged, and the possibility that the pet is retrieved based on the positioner is effectively improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of animal management, and in particular to a locator-based animal management method and system. Background Art

[0002] In animal management, locators are widely used, covering wildlife protection, animal husbandry, pet monitoring, scientific research and other fields. In the field of wildlife protection, locators can be used to track the migration routes of endangered animals, monitor their activity range, and prevent poaching. In the field of animal husbandry, for example, herders use locators to track the location of grazing cattle and sheep to prevent them from getting lost. In terms of pet management, especially for pet dogs and cats, many pet collars now have GPS functions, allowing owners to check the location of their pets at any time to prevent them from getting lost. They can also be used to find lost pets or monitor their activity levels. However, the existing animal anti-loss management prompt methods based on locators are relatively fixed, and the power consumption management of locators is relatively simple. Summary of the Invention

[0003] The present invention provides an animal management method and system based on a locator, which solves the technical problems mentioned in the above background technology.

[0004] To achieve the above object, the present invention provides the following technical solutions:

[0005] A locator-based animal management method, comprising:

[0006] The pet's location information is obtained in real time based on the positioning device worn by the pet, and it is determined whether the pet's location information is within the preset safe area;

[0007] When the pet is not in the preset safe area, it is determined whether there is a nearby associated device based on the pet's location information within the monitoring area;

[0008] Determine whether to trigger a lost prompt command based on whether there is a nearby associated device;

[0009] When a lost reminder instruction is triggered, a lost reminder message is sent to the associated device, and the power consumption mode of the positioning device is dynamically adjusted based on the location of the pet, and the power consumption mode includes a high power saving mode, a low power saving mode and a normal mode;

[0010] When the lost prompt instruction is not triggered, the separation prompt information is determined based on the location information of the neighboring associated device and the location information of the pet.

[0011] As a further technical solution of the present invention, when the pet is not in the preset safe area, the step of determining whether there is a nearby associated device based on the pet's location information within the monitoring interval includes:

[0012] When the pet is not in the preset safe area, the location information of the pet and the associated device within the monitoring area is obtained respectively;

[0013] Calculate the distance between the pet and each associated device within the monitoring area, sort them by distance, and determine the associated device closest to the pet;

[0014] Determining whether the distance between the pet and the nearest associated device exceeds a first preset distance threshold;

[0015] When the distance does not exceed the first preset distance threshold, it is determined that there is a neighboring associated device, that is, the associated device closest to the pet is regarded as the neighboring associated device; when the distance exceeds the first preset distance threshold, it is determined that there is no neighboring associated device.

[0016] As a further technical solution of the present invention, when the lost prompt instruction is triggered, the steps of sending lost prompt information to the associated device and dynamically adjusting the power consumption mode of the positioning device based on the location of the pet include:

[0017] When the lost prompt command is triggered, a lost prompt message is sent to the associated device;

[0018] Get the distance between your pet and each associated device in real time;

[0019] When the distances between all associated devices and the pet reach a second preset distance threshold, the power consumption mode of the positioning device worn by the pet is adjusted to a high power saving mode. When the power consumption mode of the positioning device is in the high power saving mode, the location update frequency of the positioning device is adjusted to a first preset frequency.

[0020] When the distance between at least one associated device and the pet is less than a second preset distance threshold, and there are no adjacent associated devices, the power consumption mode of the positioning device is adjusted to a low power saving mode. When the power consumption mode of the positioning device is the low power saving mode, the pet's activity state is determined based on an analysis of changes in the pet's location information. When the pet's activity state is stationary, the location update frequency of the positioning device is adjusted to a first preset frequency. When the pet's activity state is moving, the location update frequency of the positioning device is adjusted to a second preset frequency, wherein 0 < the first preset distance threshold < the second preset distance threshold.

[0021] When there is no neighboring associated device and there is a neighboring associated device, the power consumption mode of the positioning device is adjusted to the normal mode. When the power consumption mode of the positioning device is the normal mode, the location update frequency of the positioning device is adjusted to the third preset frequency, wherein 0 < first preset frequency < second preset frequency < third preset frequency, and 0 < first preset distance threshold < second preset distance threshold.

[0022] As a further technical solution of the present invention, when the lost prompt instruction is not triggered, the step of determining the lost prompt information based on the location information of the adjacent associated device and the location information of the pet includes:

[0023] When the lost prompt instruction is not triggered, the location information of the adjacent associated device and the location information of the pet are obtained in real time, and the distance between the adjacent associated device and the pet is calculated;

[0024] When the distance between the adjacent associated device and the pet does not exceed the first preset distance threshold but is greater than a third distance threshold, determining the separation prompt information is to turn on the LED light on the positioning device;

[0025] When the distance between the adjacent associated device and the pet does not exceed a third distance threshold, it is determined that the separation prompt information is no prompt, wherein 0<third distance threshold<first preset distance threshold<second preset distance threshold.

[0026] Another object of the present invention is to provide an animal management system based on a locator, the system comprising:

[0027] A safety determination module is used to obtain the pet's location information in real time based on the positioning device worn by the pet and determine whether the pet's location information is within a preset safety zone;

[0028] A neighboring associated device determination module, configured to determine whether there is a neighboring associated device based on the pet's location information within the monitoring area when the pet is not within a preset safe area;

[0029] A loss determination module, configured to determine whether to trigger a loss prompt instruction based on whether there is a nearby associated device;

[0030] A dynamic mode adjustment module is used to send a lost prompt message to the associated device when a lost prompt command is triggered, and dynamically adjust the power consumption mode of the positioning device based on the pet's location, wherein the power consumption mode includes a high power saving mode, a low power saving mode, and a normal mode;

[0031] The separation prompt matching module is used to determine the separation prompt information based on the location information of the adjacent associated device and the location information of the pet when the loss prompt instruction is not triggered.

[0032] As a further technical solution of the present invention, the adjacent associated device determination module includes:

[0033] A location information acquisition unit, configured to acquire location information of the pet and associated devices within the monitoring area when the pet is not within the preset safety area;

[0034] A distance calculation unit is used to calculate the distance between the pet and each associated device within the monitoring area, sort them according to the distance, and determine the associated device closest to the pet;

[0035] a distance determination unit, configured to determine whether the distance between the pet and the nearest associated device exceeds a first preset distance threshold;

[0036] The device determination unit is used to determine that there is a neighboring associated device when the distance does not exceed the first preset distance threshold, that is, the associated device closest to the pet is regarded as the neighboring associated device; when the distance exceeds the first preset distance threshold, determine that there is no neighboring associated device.

[0037] As a further technical solution of the present invention, the mode dynamic adjustment module includes:

[0038] A prompt information sending unit, configured to send a loss prompt information to the associated device when a loss prompt instruction is triggered;

[0039] A distance acquisition unit, used to obtain the distance between the pet and each associated device in real time;

[0040] a first mode adjustment unit, configured to adjust the power consumption mode of the positioning device worn by the pet to a high power saving mode when the distances between all associated devices and the pet reach a second preset distance threshold, and to adjust the location update frequency of the positioning device to a first preset frequency when the power consumption mode of the positioning device is in the high power saving mode;

[0041] a second mode adjustment unit, configured to adjust the power consumption mode of the positioning device to a low power saving mode when the distance between at least one associated device and the pet is less than a second preset distance threshold and there are no adjacent associated devices; when the power consumption mode of the positioning device is the low power saving mode, determine the pet's activity state based on an analysis of changes in the pet's location information; when the pet's activity state is stationary, adjust the location update frequency of the positioning device to a first preset frequency; and when the pet's activity state is moving, adjust the location update frequency of the positioning device to a second preset frequency, wherein 0 < the first preset distance threshold < the second preset distance threshold;

[0042] The third mode adjustment unit is used to adjust the power consumption mode of the positioning device to the normal mode when there is no neighboring associated device and the power consumption mode of the positioning device is changed to the normal mode. When the power consumption mode of the positioning device is the normal mode, the location update frequency of the positioning device is adjusted to the third preset frequency, wherein 0 < first preset frequency < second preset frequency < third preset frequency, and 0 < first preset distance threshold < second preset distance threshold.

[0043] Compared with the prior art, the beneficial effects of the present invention are as follows: the present invention provides an animal management method and system based on a locator. In the present invention, when the pet is not in a preset safe area, it is determined whether there is a neighboring associated device among multiple associated devices based on the location information of the pet in the monitoring range, and it is determined whether to trigger a lost prompt instruction. When the lost prompt instruction is triggered, the power consumption mode of the positioning device is dynamically adjusted based on the location of the pet, which can effectively reduce the power consumption of the locator when the animal is lost, extend the use time of the locator, and effectively increase the possibility of the pet being found based on the locator; and in the present invention, when the lost prompt instruction is not triggered, the separation prompt information will also be determined based on the location information of the neighboring associated device and the location information of the pet, realizing flexible prompts based on the locator and achieving anti-loss effects. BRIEF DESCRIPTION OF THE DRAWINGS

[0044] Figure 1 The flowchart of a locator-based animal management method is shown in FIG.

[0045] Figure 2 A flowchart of the steps of determining adjacent associated devices in a locator-based animal management method is provided.

[0046] Figure 3 A flowchart illustrating the steps involved in determining disengagement cues in a locator-based animal management method.

[0047] Figure 4 This is a structural block diagram of an animal management system based on a locator. DETAILED DESCRIPTION

[0048] In order to make the technical problems, technical solutions and beneficial effects to be solved by the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.

[0049] like Figure 1 As shown, an embodiment of the present invention provides an animal management method based on a locator, the method comprising:

[0050] Step S100: obtaining the pet's location information in real time based on the positioning device worn by the pet, i.e., the location information of the positioning device, and determining whether the pet's location information is within a preset safe zone. The pet's location information is obtained by the positioning device worn by the pet, wherein the safe zone may be one or more artificially set areas, typically within a permanent residence. When the pet is within the preset safe zone, there is no need to determine whether there are any nearby associated devices.

[0051] Step S200: When the pet is not in the preset safety zone, determining whether there is a nearby associated device based on the pet's location information within the monitoring area;

[0052] Step S300, determining whether to trigger a lost prompt instruction based on whether there is a nearby associated device; when there is a nearby associated device, determining not to trigger a lost prompt instruction; when there is no nearby associated device, determining to trigger a lost prompt instruction;

[0053] Step S400: When a lost reminder instruction is triggered, a lost reminder message is sent to the associated device, and the power consumption mode of the positioning device is dynamically adjusted based on the location of the pet, wherein the power consumption mode includes a high power saving mode, a low power saving mode, and a normal mode;

[0054] Step S500: When the lost prompt instruction is not triggered, determining the separation prompt information based on the location information of the adjacent associated device and the location information of the pet.

[0055] In the present invention, when the pet is not in the preset safe area, it is determined whether there is a neighboring associated device among the multiple associated devices based on the location information of the pet in the monitoring range, and it is determined whether to trigger the lost prompt instruction. When the lost prompt instruction is triggered, the power consumption mode of the positioning device is dynamically adjusted based on the location of the pet, which can effectively reduce the power consumption of the locator when the animal is lost, extend the use time of the locator, and effectively increase the possibility of the pet being found based on the locator; and in the present invention, when the lost prompt instruction is not triggered, the separation prompt information will also be determined based on the location information of the neighboring associated devices and the location information of the pet, realizing flexible prompts to the pet based on the locator to achieve anti-loss effect.

[0056] See also Figure 2 As an embodiment of the present invention, when the pet is not in the preset safety zone, the step of determining whether there is a nearby associated device based on the pet's location information within the monitoring interval includes:

[0057] Step S201: When the pet is not in the preset safe zone, the location information of the pet and its associated devices within the monitoring interval is obtained. The associated devices can be portable electronic devices such as mobile phones or smart watches. The number of associated devices is at least one, and usually multiple. The monitoring interval is a time interval with the current time as the end point and a preset duration as the interval length. The monitoring interval can be the previous 1 second or 10 seconds.

[0058] Step S202: Calculate the distance between the pet and each associated device within the monitoring interval, sort them by distance, and determine the associated device closest to the pet;

[0059] Step S203, determining whether the distance between the pet and the nearest associated device exceeds a first preset distance threshold;

[0060] Step S204: when the distance does not exceed the first preset distance threshold, it is determined that there is a neighboring associated device, that is, the associated device closest to the pet is regarded as the neighboring associated device; when the distance exceeds the first preset distance threshold, it is determined that there is no neighboring associated device.

[0061] As an embodiment of the present invention, when a lost prompt instruction is triggered, the steps of sending lost prompt information to an associated device and dynamically adjusting the power consumption mode of the positioning device based on the location of the pet include:

[0062] When the lost notification command is triggered, a lost notification message (including the pet's real-time location information) is sent to the associated device;

[0063] Get the distance between your pet and each associated device in real time;

[0064] When the distances between all associated devices and the pet reach a second preset distance threshold, the power consumption mode of the positioning device worn by the pet is adjusted to a high power saving mode. When the power consumption mode of the positioning device is in the high power saving mode, the location update frequency of the positioning device is adjusted to a first preset frequency.

[0065] When the distance between at least one associated device and the pet is less than a second preset distance threshold, and there are no adjacent associated devices, the power consumption mode of the positioning device is adjusted to a low power saving mode. When the power consumption mode of the positioning device is in the low power saving mode, the pet's activity state is determined based on an analysis of changes in the pet's location information (calculating the displacement distance (ΔD): the amplitude of the position change per unit time (such as the coordinate offset within 30 seconds); when ΔD ≤ 2 meters and the location point distribution radius ≤ 1 meter (no linear movement) within 30 consecutive seconds, the pet's activity state is determined to be stationary; when ΔD > 2 meters, the pet's activity state is determined to be active). When the pet's activity state is stationary, the location update frequency of the positioning device is adjusted to a first preset frequency. When the pet's activity state is moving, the location update frequency of the positioning device is adjusted to a second preset frequency, wherein 0 < the first preset distance threshold < the second preset distance threshold.

[0066] When there is no neighboring associated device and there is a neighboring associated device, the power consumption mode of the positioning device is adjusted to the normal mode. When the power consumption mode of the positioning device is the normal mode, the location update frequency of the positioning device is adjusted to the third preset frequency, wherein 0 < first preset frequency < second preset frequency < third preset frequency, and 0 < first preset distance threshold < second preset distance threshold.

[0067] See also Figure 3 As an embodiment of the present invention, when the lost prompt instruction is not triggered, the step of determining the lost prompt information based on the location information of the adjacent associated device and the location information of the pet includes:

[0068] Step S501, when the lost prompt instruction is not triggered, obtaining the location information of the adjacent associated device and the location information of the pet in real time, and calculating the distance between the adjacent associated device and the pet;

[0069] Step S502: When the distance between the adjacent associated device and the pet does not exceed the first preset distance threshold but is greater than a third distance threshold, determining that the separation prompt information is such that an LED light on the positioning device is turned on, and the LED light is fixedly mounted on the positioning device;

[0070] Step S503 : When the distance between the adjacent associated device and the pet does not exceed a third distance threshold, determining that the separation prompt information is no prompt, wherein 0<third distance threshold<first preset distance threshold<second preset distance threshold.

[0071] See also Figure 4 Another object of the present invention is to provide an animal management system based on a locator, the system comprising:

[0072] The safety determination module 100 is used to obtain the pet's location information in real time based on the positioning device worn by the pet, and determine whether the pet's location information is within a preset safety area;

[0073] The neighboring associated device determination module 200 is used to determine whether there is a neighboring associated device based on the location information of the pet within the monitoring interval when the pet is not in the preset safe area;

[0074] A loss determination module 300 is configured to determine whether to trigger a loss prompt instruction based on whether there is a nearby associated device;

[0075] A dynamic mode adjustment module 400 is configured to send a lost notification message to an associated device when a lost notification instruction is triggered, and dynamically adjust the power consumption mode of the positioning device based on the pet's location, wherein the power consumption mode includes a high power saving mode, a low power saving mode, and a normal mode;

[0076] The separation prompt matching module 500 is used to determine separation prompt information based on the location information of the neighboring associated device and the location information of the pet when the lost prompt instruction is not triggered.

[0077] In this embodiment, the neighboring associated device determination module 200 includes:

[0078] A location information acquisition unit is used to obtain the location information of the pet and associated devices within a monitoring interval when the pet is not in a preset safe area. The associated devices can be portable electronic devices such as mobile phones or smart watches. The monitoring interval is a time interval with the current time as the end point and a preset duration as the interval length. The monitoring interval can be the previous 1 second or 10 seconds.

[0079] A distance calculation unit is used to calculate the distance between the pet and each associated device within the monitoring area, sort them according to the distance, and determine the associated device closest to the pet;

[0080] a distance determination unit, configured to determine whether the distance between the pet and the nearest associated device exceeds a first preset distance threshold;

[0081] The device determination unit is used to determine that there is a neighboring associated device when the distance does not exceed the first preset distance threshold, that is, the associated device closest to the pet is regarded as the neighboring associated device; when the distance exceeds the first preset distance threshold, determine that there is no neighboring associated device.

[0082] In this embodiment, the mode dynamic adjustment module 400 includes:

[0083] A prompt information sending unit, configured to send lost prompt information (including the pet's real-time location information) to the associated device when a lost prompt instruction is triggered;

[0084] A distance acquisition unit, used to obtain the distance between the pet and each associated device in real time;

[0085] a first mode adjustment unit, configured to adjust the power consumption mode of the positioning device worn by the pet to a high power saving mode when the distances between all associated devices and the pet reach a second preset distance threshold, and to adjust the location update frequency of the positioning device to a first preset frequency when the power consumption mode of the positioning device is in the high power saving mode;

[0086] a second mode adjustment unit, configured to adjust the power consumption mode of the positioning device to a low power saving mode when the distance between at least one associated device and the pet is less than a second preset distance threshold and there are no adjacent associated devices; and when the power consumption mode of the positioning device is the low power saving mode, determine the pet's activity state based on analysis of changes in the pet's position information (calculate displacement distance (ΔD): the amplitude of position change per unit time (e.g., coordinate offset within 30 seconds); when ΔD ≤ 2 meters and the location point distribution radius ≤ 1 meter (no linear movement) for 30 consecutive seconds, determine the pet's activity state to be stationary; when ΔD > 2 meters, determine the pet's activity state to be active); and when the pet's activity state is stationary, adjust the location update frequency of the positioning device to a first preset frequency; and when the pet's activity state is moving, adjust the location update frequency of the positioning device to a second preset frequency, wherein 0 < the first preset distance threshold < the second preset distance threshold;

[0087] The third mode adjustment unit is used to adjust the power consumption mode of the positioning device to the normal mode when there is no neighboring associated device and the power consumption mode of the positioning device is changed to the normal mode. When the power consumption mode of the positioning device is the normal mode, the location update frequency of the positioning device is adjusted to the third preset frequency, wherein 0 < first preset frequency < second preset frequency < third preset frequency, and 0 < first preset distance threshold < second preset distance threshold.

[0088] It should be noted that, in this document, the term "comprises" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article, or apparatus that includes a series of elements includes not only those elements, but also includes other elements not explicitly listed, or also includes elements inherent to such process, method, article, or apparatus. In the absence of further limitations, an element defined by the phrase "comprises a ..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes the element.

[0089] The above are only preferred embodiments of the present invention and are not intended to limit the patent scope of the present invention. Any equivalent structure or equivalent process transformation made using the contents of the present invention description and drawings, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present invention.

Claims

1. A locator-based animal management method, characterized in that: The method comprises: The pet's location information is obtained in real time based on the positioning device worn by the pet, and it is determined whether the pet's location information is within the preset safe area; When the pet is not in the preset safe area, it is determined whether there is a nearby associated device based on the pet's location information within the monitoring area; Determine whether to trigger a lost prompt command based on whether there is a nearby associated device; When a lost reminder instruction is triggered, a lost reminder message is sent to the associated device, and the power consumption mode of the positioning device is dynamically adjusted based on the location of the pet, and the power consumption mode includes a high power saving mode, a low power saving mode and a normal mode; When the lost prompt instruction is not triggered, the separation prompt information is determined based on the location information of the neighboring associated device and the location information of the pet.

2. The animal management method based on a locator according to claim 1, characterized in that: The step of determining whether there is a nearby associated device based on the location information of the pet within the monitoring interval when the pet is not in the preset safe area includes: When the pet is not in the preset safe area, the location information of the pet and the associated device within the monitoring area is obtained respectively; Calculate the distance between the pet and each associated device within the monitoring area, sort them by distance, and determine the associated device closest to the pet; Determining whether the distance between the pet and the nearest associated device exceeds a first preset distance threshold; When the distance does not exceed the first preset distance threshold, it is determined that there is a neighboring associated device, that is, the associated device closest to the pet is regarded as the neighboring associated device; when the distance exceeds the first preset distance threshold, it is determined that there is no neighboring associated device.

3. The animal management method based on a locator according to claim 2, characterized in that: The steps of sending lost prompt information to the associated device when the lost prompt instruction is triggered and dynamically adjusting the power consumption mode of the positioning device based on the location of the pet include: When the lost prompt command is triggered, a lost prompt message is sent to the associated device; Get the distance between your pet and each associated device in real time; When the distances between all associated devices and the pet reach a second preset distance threshold, the power consumption mode of the positioning device worn by the pet is adjusted to a high power saving mode. When the power consumption mode of the positioning device is in the high power saving mode, the location update frequency of the positioning device is adjusted to a first preset frequency. When the distance between at least one associated device and the pet is less than a second preset distance threshold, and there are no adjacent associated devices, the power consumption mode of the positioning device is adjusted to a low power saving mode. When the power consumption mode of the positioning device is the low power saving mode, the pet's activity state is determined based on an analysis of changes in the pet's location information. When the pet's activity state is stationary, the location update frequency of the positioning device is adjusted to a first preset frequency. When the pet's activity state is moving, the location update frequency of the positioning device is adjusted to a second preset frequency, wherein 0 < the first preset distance threshold < the second preset distance threshold. When there is no neighboring associated device and there is a neighboring associated device, the power consumption mode of the positioning device is adjusted to the normal mode. When the power consumption mode of the positioning device is the normal mode, the location update frequency of the positioning device is adjusted to the third preset frequency, where 0 < first preset frequency < second preset frequency < third preset frequency.

4. The animal management method based on a locator according to claim 3, characterized in that: When the lost prompt instruction is not triggered, the step of determining the lost prompt information based on the location information of the adjacent associated device and the location information of the pet includes: When the lost prompt instruction is not triggered, the location information of the adjacent associated device and the location information of the pet are obtained in real time, and the distance between the adjacent associated device and the pet is calculated; When the distance between the adjacent associated device and the pet does not exceed the first preset distance threshold but is greater than a third distance threshold, determining the separation prompt information is to turn on the LED light on the positioning device; When the distance between the adjacent associated device and the pet does not exceed a third distance threshold, it is determined that the separation prompt information is no prompt, wherein 0<third distance threshold<first preset distance threshold<second preset distance threshold.

5. An animal management system based on a locator, characterized in that: The system comprises: A safety determination module is used to obtain the pet's location information in real time based on the positioning device worn by the pet and determine whether the pet's location information is within a preset safety zone; A neighboring associated device determination module, configured to determine whether there is a neighboring associated device based on the pet's location information within the monitoring area when the pet is not within a preset safe area; A loss determination module, configured to determine whether to trigger a loss prompt instruction based on whether there is a nearby associated device; A dynamic mode adjustment module is used to send a lost prompt message to the associated device when a lost prompt command is triggered, and dynamically adjust the power consumption mode of the positioning device based on the pet's location, wherein the power consumption mode includes a high power saving mode, a low power saving mode, and a normal mode; The separation prompt matching module is used to determine the separation prompt information based on the location information of the adjacent associated device and the location information of the pet when the loss prompt instruction is not triggered.

6. The animal management system based on a locator according to claim 5, characterized in that: The adjacent associated device determination module includes: A location information acquisition unit, configured to acquire location information of the pet and associated devices within the monitoring area when the pet is not within the preset safety area; A distance calculation unit is used to calculate the distance between the pet and each associated device within the monitoring area, sort them according to the distance, and determine the associated device closest to the pet; a distance determination unit, configured to determine whether the distance between the pet and the nearest associated device exceeds a first preset distance threshold; The device determination unit is used to determine that there is a neighboring associated device when the distance does not exceed the first preset distance threshold, that is, the associated device closest to the pet is regarded as the neighboring associated device; when the distance exceeds the first preset distance threshold, determine that there is no neighboring associated device.

7. The animal management system based on a locator according to claim 5, characterized in that: The mode dynamic adjustment module includes: A prompt information sending unit, configured to send a loss prompt information to the associated device when a loss prompt instruction is triggered; A distance acquisition unit, used to obtain the distance between the pet and each associated device in real time; a first mode adjustment unit, configured to adjust the power consumption mode of the positioning device worn by the pet to a high power saving mode when the distances between all associated devices and the pet reach a second preset distance threshold, and to adjust the location update frequency of the positioning device to a first preset frequency when the power consumption mode of the positioning device is in the high power saving mode; a second mode adjustment unit, configured to adjust the power consumption mode of the positioning device to a low power saving mode when the distance between at least one associated device and the pet is less than a second preset distance threshold and there are no adjacent associated devices; when the power consumption mode of the positioning device is the low power saving mode, determine the pet's activity state based on an analysis of changes in the pet's location information; when the pet's activity state is stationary, adjust the location update frequency of the positioning device to a first preset frequency; and when the pet's activity state is moving, adjust the location update frequency of the positioning device to a second preset frequency, wherein 0 < the first preset distance threshold < the second preset distance threshold; The third mode adjustment unit is used to adjust the power consumption mode of the positioning device to a normal mode when there is no neighboring associated device and to adjust the location update frequency of the positioning device to a third preset frequency when the power consumption mode of the positioning device is normal mode, wherein 0 < first preset frequency < second preset frequency < third preset frequency.

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