Remote monitoring alarm method and device, storage medium and computer equipment

By collecting physiological and activity data in wearable electronic devices to determine the monitoring status and utilizing the storage advantages of mobile terminals, the problem of poor remote monitoring and alarm effects in existing technologies has been solved, enabling wider dissemination of alarm information and improving monitoring efficiency.

CN120877458APending Publication Date: 2025-10-31SHENZHEN CHINO E COMM CO LTD
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Patent Information

Application Number
CN202510901181.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-01
Publication Date
2025-10-31

AI Technical Summary

Technical Problem

Existing wearable electronic devices have limited data storage capacity, resulting in poor remote monitoring and alarm performance, and a small number of communication devices receive alarm information.

Method used

Physiological and activity data are collected by the target wearable electronic device to determine the real-time monitoring status and send alarm information to the first communication device when an abnormality is detected. If no feedback is received, the alarm information is forwarded to several second communication devices via a mobile terminal, thus increasing the range of alarm information dissemination by utilizing the large storage capacity of the mobile terminal.

Benefits of technology

It enhances the effectiveness of remote monitoring and alarms, increases the number of communication devices receiving alarm information, and improves the coverage and efficiency of monitoring.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a remote monitoring alarm method and device, a storage medium and computer equipment, the remote monitoring alarm method and device are applied to target electronic wearable equipment, the target electronic wearable equipment is in Bluetooth connection with at least one mobile terminal, and the method comprises the following steps: collecting physiological data and activity data of a wearer; acquiring a real-time monitoring state of the wearer according to the physiological data and the activity data; if the real-time monitoring state is an abnormal state, alarm information is sent to first communication equipment according to pre-stored first communication information; and if the reading feedback transmitted by the first communication device is not received within a preset time, sending the alarm information to the mobile terminal, so that the mobile terminal forwards the alarm information to a plurality of second communication devices according to a plurality of pieces of pre-stored second communication information. According to the invention, the number of communication devices receiving the alarm information is increased, and the remote monitoring alarm effect can be enhanced.
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Description

Technical Field

[0001] This application relates to the technical field of security monitoring, specifically to a remote monitoring and alarm method, device, storage medium, and computer equipment. Background Technology

[0002] The elderly are a group prone to accidents; however, due to many adults being busy with work or social activities, many elderly people lack adult care. Since the physical functions of the elderly are already declining, a fall without timely assistance can endanger their lives. Currently, with advancements in science and technology, many people purchase wearable electronic devices to monitor the elderly for abnormalities. However, due to the limited size and data storage capacity of wearable devices, existing devices often can only store a small amount of communication information from other devices. Therefore, the number of communication devices that can receive alarm messages from wearable devices is limited, resulting in poor remote monitoring and alarm effectiveness. Summary of the Invention

[0003] The purpose of this application is to overcome the shortcomings and deficiencies in the prior art and provide a remote monitoring and alarm method, device, storage medium and computer equipment. It can send alarm information to a first communication device according to pre-stored first communication information, or send the alarm information to the mobile terminal. The mobile terminal increases the number of communication devices receiving alarm information according to a number of pre-stored second communication information, which can enhance the remote monitoring and alarm effect.

[0004] A first aspect of this application provides a remote monitoring and alarm method applied to a target electronic wearable device, the target electronic wearable device being connected to at least one mobile terminal via Bluetooth, the method comprising:

[0005] Collect physiological and activity data from the wearer;

[0006] Based on the physiological data and the activity data, the wearer's real-time monitoring status is obtained;

[0007] If the real-time monitoring status is abnormal, an alarm message is sent to the first communication device according to the pre-stored first communication information;

[0008] If no reading feedback is received from the first communication device within a preset time, the alarm information is sent to the mobile terminal, causing the mobile terminal to forward the alarm information to several second communication devices based on several pre-stored second communication information.

[0009] Compared to existing technologies, this application obtains the wearer's real-time monitoring status through the wearer's physiological and activity data. Then, when the real-time monitoring status is abnormal, an alarm message is sent to a first communication device based on pre-stored first communication information. If no reading feedback is received from the first communication device within a preset time, the alarm message is sent to the mobile terminal. The mobile terminal then forwards the alarm message to several second communication devices based on several pre-stored second communication information. Since the data storage capacity of the mobile terminal is much larger than that of the target electronic wearable device, the mobile terminal can increase the number of communication devices receiving alarm messages and enhance the remote monitoring alarm effect by forwarding alarm messages to several second communication devices based on several stored second communication information.

[0010] In one implementation, the activity data includes acceleration data and angular velocity data; the physiological data includes heart rate data;

[0011] The step of obtaining the wearer's real-time monitoring status based on the physiological data and the activity data includes:

[0012] If the acceleration data is greater than a preset fall acceleration threshold and the angular velocity data is greater than a preset fall angular velocity threshold, it is determined that the wearer has fallen.

[0013] If the wearer's heart rate data is within an abnormal range after a fall, the real-time monitoring status is determined to be abnormal.

[0014] In this embodiment, the wearer's fall behavior is determined based on acceleration and angular velocity data. Combined with heart rate data after the fall, the wearer's real-time monitoring status can be accurately determined to be abnormal.

[0015] As one implementation, the step of sending the alarm information to the mobile terminal, causing the mobile terminal to forward the alarm information to several second communication devices according to several pre-stored second communication information, includes:

[0016] The alarm information and information forwarding instruction are transmitted to the mobile terminal, causing the mobile terminal to respond to the information forwarding instruction by calling the plurality of second communication information to forward the alarm information to the plurality of second communication devices.

[0017] In this embodiment, transmitting the information forwarding instruction to the mobile terminal can drive the mobile terminal to call several second communication information, thereby accurately forwarding the alarm information to several second communication devices.

[0018] In one implementation, the target wearable electronic device includes an audible alarm component;

[0019] After the step of obtaining the wearer's real-time monitoring status, the method further includes:

[0020] If the real-time monitoring status is abnormal, the sound alarm component is driven to emit an alarm audio with increasing volume.

[0021] In this embodiment, the sound alarm component emits an alarm audio signal, which can attract the attention of nearby people so that they can seek help from nearby people.

[0022] As one implementation, after the step of sending alarm information to the first communication device, the method further includes:

[0023] If no reading feedback is received from the first communication device within a preset time, a distress signal is broadcast, causing the sound alarm components of other wearable electronic devices that receive the distress signal to emit distress audio at a preset frequency; wherein, the stronger the received distress signal, the higher the frequency of the sound.

[0024] In this embodiment, by broadcasting a distress signal, the sound alarm components of other wearable electronic devices that receive the distress signal can emit distress audio, which can attract the attention of wearers of other wearable electronic devices within the broadcast range, so that wearers can help each other.

[0025] In one implementation, the target wearable electronic device includes a light-emitting alarm component;

[0026] After the step of obtaining the wearer's real-time monitoring status, the method further includes:

[0027] If the real-time monitoring status is abnormal, the luminous alarm component will be driven to emit an alarm light.

[0028] In this embodiment, the alarm light emitted by the light-emitting alarm component can attract the attention of nearby people so that they can seek help from nearby people.

[0029] As one implementation, after the step of sending alarm information to the first communication device, the method further includes:

[0030] If no reading feedback is received from the first communication device within a preset time, a distress signal is broadcast, causing other wearable electronic devices that receive the distress signal to emit distress lights at a preset flashing frequency; wherein, the stronger the received distress signal, the higher the flashing frequency.

[0031] In this embodiment, by broadcasting a distress signal, the light-emitting alarm components of other wearable electronic devices that receive the distress signal will emit distress lights, which can attract the attention of wearers of other wearable electronic devices within the broadcast range, so that wearers can help each other.

[0032] A second aspect of this application provides a remote monitoring and alarm device applied to a target wearable electronic device, the target wearable electronic device being connected to at least one mobile terminal via Bluetooth, the device comprising:

[0033] The data acquisition module is used to collect the wearer's physiological and activity data;

[0034] The real-time monitoring status acquisition module is used to acquire the real-time monitoring status of the wearer based on the physiological data and the activity data.

[0035] The first alarm module is used to send alarm information to the first communication device according to the pre-stored first communication information if the real-time monitoring status is abnormal.

[0036] The second alarm module is used to send the alarm information to the mobile terminal if no reading feedback is received from the first communication device within a preset time, so that the mobile terminal forwards the alarm information to several second communication devices according to several pre-stored second communication information.

[0037] A third aspect of this application provides a computer-readable storage medium storing a computer program that, when executed by a processor, implements the steps of the remote monitoring and alarm method described above.

[0038] A fourth aspect of this application provides a computer device including a storage device, a processor, and a computer program stored in the storage device and executable by the processor, wherein the processor executes the computer program to implement the steps of the remote monitoring and alarm method described above.

[0039] To provide a clearer understanding of this application, the specific embodiments of this application will be described below in conjunction with the accompanying drawings. Attached Figure Description

[0040] Figure 1 This is a flowchart of a remote monitoring and alarm method according to an embodiment of this application.

[0041] Figure 2 This is a flowchart illustrating the process of obtaining real-time monitoring status in a remote monitoring and alarm method according to an embodiment of this application.

[0042] Figure 3 This is a schematic diagram of the module connection of a remote monitoring and alarm device according to an embodiment of this application.

[0043] 200. Remote monitoring and alarm device; 201. Data acquisition module; 202. Real-time monitoring status acquisition module; 203. First alarm module; 204. Second alarm module. Detailed Implementation

[0044] To make the objectives, technical solutions, and advantages of this application clearer, the embodiments of this application will be described in further detail below with reference to the accompanying drawings.

[0045] It should be understood that the described embodiments are merely some, not all, of the embodiments of this application. All other embodiments obtained by those skilled in the art based on the embodiments of this application without creative effort are within the scope of protection of the embodiments of this application.

[0046] In the following description, when referring to the accompanying drawings, unless otherwise indicated, the same numbers in different drawings represent the same or similar elements. In the description of this application, it should be understood that the terms "first," "second," "third," etc., are used only to distinguish similar objects and are not necessarily used to describe a specific order or sequence, nor should they be construed as indicating or implying relative importance. Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances. The singular forms "a," "the," and "the" used in this application and the appended claims are also intended to include the plural forms, unless the context clearly indicates otherwise. The word "if" as used herein can be interpreted as "when," "when," or "in response to determination."

[0047] Furthermore, in the description of this application, unless otherwise stated, "multiple" means two or more. "And / or" describes the relationship between related objects, indicating that three relationships can exist. For example, A and / or B can represent: A alone, A and B simultaneously, or B alone. The character " / " generally indicates that the preceding and following related objects have an "or" relationship.

[0048] Please see Figure 1 This is a flowchart of a remote monitoring and alarm method according to the first embodiment of this application. The method is applied to a target electronic wearable device, which is connected to at least one mobile terminal via Bluetooth.

[0049] The target wearable electronic device can be an electronic device such as a smart bracelet or smartwatch that has physiological and activity data collection functions. The mobile terminal refers to a smart terminal device, such as a smartphone or tablet, that is connected to the target wearable electronic device via Bluetooth.

[0050] Remote monitoring and alarm methods include:

[0051] S1: Collect physiological and activity data of the wearer.

[0052] Physiological data reflects whether the wearer's physical condition is normal or abnormal, such as heart rate and body temperature. Activity data reflects the wearable device's data on the wearer's activity, such as acceleration and angular velocity.

[0053] S2: Based on the physiological data and the activity data, obtain the wearer's real-time monitoring status.

[0054] The wearer's real-time monitoring status can be obtained by comparing the activity data and physiological data with corresponding data thresholds or data ranges.

[0055] S3: If the real-time monitoring status is abnormal, send alarm information to the first communication device according to the pre-stored first communication information.

[0056] An abnormal state refers to a state in which the wearer falls or intentionally falls, and the fall affects the physiological data, causing the physiological data to fall within an abnormal range.

[0057] The first communication information refers to the communication method of the first communication device, such as the phone number, WeChat ID, QQ number, email account, or communication account of the first communication device. The first communication device is the communication device associated with the first communication information, such as a mobile phone, or a computer or tablet computer logged into the WeChat ID, QQ number, email account, or communication account of the first communication information.

[0058] S4: If no reading feedback is received from the first communication device within a preset time, the alarm information is sent to the mobile terminal, so that the mobile terminal forwards the alarm information to several second communication devices according to several pre-stored second communication information.

[0059] When a user reads the alarm information through the first communication device, the first communication device will transmit reading feedback to the target electronic wearable device. Therefore, the target electronic wearable device can determine whether it needs to forward the alarm information to several second communication devices through the mobile terminal based on whether it has received the reading feedback transmitted by the first communication device and the time when it received the reading feedback.

[0060] The second communication information refers to the communication method of the second communication device, such as the second communication device's phone number, WeChat ID, QQ number, email address, or communication account. The second communication device is the communication device associated with the second communication information.

[0061] Since the data storage capacity of the mobile terminal is much larger than that of the target electronic wearable device, the amount of second communication information pre-stored in the mobile terminal is greater than the amount of second communication information stored in the target electronic wearable device.

[0062] Compared to existing technologies, this application obtains the wearer's real-time monitoring status through the wearer's physiological and activity data. Then, when the real-time monitoring status is abnormal, an alarm message is sent to a first communication device based on pre-stored first communication information. If no reading feedback is received from the first communication device within a preset time, the alarm message is sent to the mobile terminal. The mobile terminal then forwards the alarm message to several second communication devices based on several pre-stored second communication information. Since the data storage capacity of the mobile terminal is much larger than that of the target electronic wearable device, the mobile terminal can increase the number of communication devices receiving alarm messages and enhance the remote monitoring alarm effect by forwarding alarm messages to several second communication devices based on several stored second communication information.

[0063] In one feasible embodiment, the activity data includes acceleration data and angular velocity data; the physiological data includes heart rate data;

[0064] Please see Figure 2 S2: The step of obtaining the wearer's real-time monitoring status based on the physiological data and the activity data includes:

[0065] S21: If the acceleration data is greater than a preset fall acceleration threshold and the angular velocity data is greater than a preset fall angular velocity threshold, it is determined that the wearer has fallen.

[0066] In this embodiment, the wearer is a person with weak mobility, such as the elderly or patients. Therefore, the wearer lacks the ability to engage in strenuous exercise. Only when the wearer falls will the acceleration data exceed the preset fall acceleration threshold and the angular velocity data exceed the preset fall angular velocity threshold.

[0067] S22: If the heart rate data of the wearer after a fall is in an abnormal range, the real-time monitoring status is determined to be abnormal.

[0068] Even if the wearer falls, it does not necessarily mean that the fall has caused serious harm to the wearer. Therefore, the heart rate data after the wearer falls is used to make a judgment. If the heart rate data after the wearer falls is in an abnormal range, it is determined that the fall has caused serious harm to the wearer, and the real-time monitoring status is abnormal.

[0069] In this embodiment, the wearer's fall behavior is determined based on acceleration and angular velocity data, and combined with heart rate data after the fall, the wearer's real-time monitoring status can be accurately determined to be abnormal.

[0070] In a feasible embodiment, step S4: sending the alarm information to the mobile terminal, causing the mobile terminal to forward the alarm information to several second communication devices according to several pre-stored second communication information, includes:

[0071] The alarm information and information forwarding instruction are transmitted to the mobile terminal, causing the mobile terminal to respond to the information forwarding instruction by calling the plurality of second communication information to forward the alarm information to the plurality of second communication devices.

[0072] Among them, the information forwarding instruction is an instruction that obtains permission from the mobile terminal. Based on the permission granted by the mobile terminal, the information forwarding instruction can drive the mobile terminal to call the plurality of second communication information to forward the alarm information to the plurality of second communication devices.

[0073] In this embodiment, transmitting the information forwarding instruction to the mobile terminal can drive the mobile terminal to call several second communication information, thereby accurately forwarding the alarm information to several second communication devices.

[0074] In one feasible embodiment, the target wearable electronic device includes an audible alarm component;

[0075] After the step of obtaining the wearer's real-time monitoring status, the method further includes:

[0076] If the real-time monitoring status is abnormal, the sound alarm component is driven to emit an alarm audio with increasing volume.

[0077] In this embodiment, the sound alarm component emits an alarm audio signal, which can attract the attention of nearby people so that they can seek help from nearby people.

[0078] In one feasible embodiment, after the step of sending the alarm information to the first communication device, the method further includes:

[0079] If no reading feedback is received from the first communication device within a preset time, a distress signal is broadcast, causing the sound alarm components of other wearable electronic devices that receive the distress signal to emit distress audio at a preset frequency; wherein, the stronger the received distress signal, the higher the frequency of the sound.

[0080] Among them, the audio content of the distress call audio and the alarm audio are different. When other wearers of electronic wearable devices hear the distress call audio, they can know that there is a wearer of a target electronic wearable device nearby who is asking for help. Based on the playback volume of the distress call audio, other wearers of electronic wearable devices can know their distance from the person asking for help, which improves the efficiency of other wearers of electronic wearable devices in finding the person asking for help, so that other wearers of electronic wearable devices can take action to ask for help.

[0081] In this embodiment, by broadcasting a distress signal, the sound alarm components of other wearable electronic devices that receive the distress signal can emit distress audio, which can attract the attention of wearers of other wearable electronic devices within the broadcast range, so that wearers can help each other.

[0082] In one feasible embodiment, the target wearable electronic device includes an luminous alarm component;

[0083] After the step of obtaining the wearer's real-time monitoring status, the method further includes:

[0084] If the real-time monitoring status is abnormal, the luminous alarm component will be driven to emit an alarm light.

[0085] The color of the alarm light is preset by the manufacturer, for example, it can be set to red. Optionally, to increase the attractiveness of the alarm light, the luminous alarm component can be driven to emit the alarm light by flashing.

[0086] In this embodiment, the alarm light emitted by the light-emitting alarm component can attract the attention of nearby people so that they can seek help from nearby people.

[0087] In one feasible embodiment, after the step of sending the alarm information to the first communication device, the method further includes:

[0088] If no reading feedback is received from the first communication device within a preset time, a distress signal is broadcast, causing other wearable electronic devices that receive the distress signal to emit distress lights at a preset flashing frequency; wherein, the stronger the received distress signal, the higher the flashing frequency.

[0089] The distress light and the alarm light are different colors; for example, the alarm light is red, and the distress light is yellow. When other wearers of electronic devices see the distress light, they can know that there is a wearer of a target electronic device nearby who is in need of help. Based on the flashing frequency of the distress light, other wearers can understand their distance from the person in need of help, improving the efficiency of finding the person and enabling them to request assistance. Assistance includes direct physical assistance as well as indirect assistance such as calling for help, finding helpers, or making emergency calls.

[0090] In this embodiment, by broadcasting a distress signal, the light-emitting alarm components of other wearable electronic devices that receive the distress signal will emit distress lights, which can attract the attention of wearers of other wearable electronic devices within the broadcast range, so that wearers can help each other.

[0091] A second aspect of this application provides a remote monitoring and alarm device 200, applied to a target electronic wearable device, the target electronic wearable device being connected to at least one mobile terminal via Bluetooth, the device comprising:

[0092] Data acquisition module 201 is used to collect physiological and activity data of the wearer;

[0093] The real-time monitoring status acquisition module 202 is used to acquire the real-time monitoring status of the wearer based on the physiological data and the activity data;

[0094] The first alarm module 203 is used to send alarm information to the first communication device according to the pre-stored first communication information if the real-time monitoring status is abnormal.

[0095] The second alarm module 204 is used to send the alarm information to the mobile terminal if no reading feedback is received from the first communication device within a preset time, so that the mobile terminal forwards the alarm information to several second communication devices according to several pre-stored second communication information.

[0096] It should be noted that the remote monitoring and alarm device provided in the second embodiment of this application is only illustrated by the above-described division of functional modules when executing the remote monitoring and alarm method. In practical applications, the above functions can be assigned to different functional modules as needed, that is, the internal structure of the device can be divided into different functional modules to complete all or part of the functions described above. In addition, the remote monitoring and alarm device provided in the second embodiment of this application and the remote monitoring and alarm method in the first embodiment of this application belong to the same concept, and its implementation process is detailed in the method embodiment, which will not be repeated here.

[0097] A third aspect of this application provides a computer-readable storage medium storing a computer program that, when executed by a processor, implements the steps of the remote monitoring and alarm method described above.

[0098] A fourth aspect of this application provides a computer device including a storage device, a processor, and a computer program stored in the storage device and executable by the processor, wherein the processor executes the computer program to implement the steps of the remote monitoring and alarm method described above.

[0099] The device embodiments described above are merely illustrative. The components described as separate parts may or may not be physically separate, and the components shown as units may or may not be physical units; that is, they may be located in one place or distributed across multiple network units. Some or all of the modules can be selected to achieve the purpose of this application according to actual needs. Those skilled in the art can understand and implement this without any inventive effort.

[0100] Those skilled in the art will understand that embodiments of this application can be provided as methods, systems, or computer program products. Therefore, this application can take the form of a completely hardware embodiment, a completely software embodiment, or an embodiment combining software and hardware aspects. Furthermore, this application can take the form of a computer program product embodied on one or more computer-usable storage media (including but not limited to disk storage, CD-ROM, optical storage, etc.) containing computer-usable program code.

[0101] This application is described with reference to flowchart illustrations and / or block diagrams of methods, apparatus (systems), and computer program products according to embodiments of this application. It will be understood that each block of the flowchart illustrations and / or block diagrams, and combinations of blocks in the flowchart illustrations and / or block diagrams, can be implemented by computer program instructions. These computer program instructions can be provided to a processor of a general-purpose computer, special-purpose computer, embedded processor, or other programmable data processing apparatus to produce a machine, such that the instructions, which execute via the processor of the computer or other programmable data processing apparatus, generate instructions for implementing the flowchart... Figure 1 One or more processes and / or boxes Figure 1 The computer program instructions may also be stored in a computer-readable storage medium that can direct a computer or other programmable data processing device to function in a particular manner, such that the instructions stored in the computer-readable storage medium produce an article of manufacture including instruction means, which are implemented in a process Figure 1 One or more processes and / or boxes Figure 1 The function selected in one or more boxes.

[0102] These computer program instructions may also be loaded onto a computer or other programmable data processing equipment to cause a series of operational steps to be performed on the computer or other programmable equipment to produce a computer-implemented process, thereby providing instructions that execute on the computer or other programmable equipment for implementing the process. Figure 1 One or more processes and / or boxes Figure 1 The steps of the function selected in one or more boxes.

[0103] In a typical configuration, a computing device includes one or more processors (CPU), input / output interfaces, network interfaces, and memory.

[0104] Memory may include non-persistent memory in computer-readable media, such as random access memory (RAM) and / or non-volatile memory, such as read-only memory (ROM) or flash RAM. Memory is an example of computer-readable media.

[0105] Computer-readable media includes both permanent and non-permanent, removable and non-removable media that can store information using any method or technology. Information can be computer-readable instructions, data structures, modules of programs, or other data. Examples of computer storage media include, but are not limited to, phase-change memory (PRAM), static random access memory (SRAM), dynamic random access memory (DRAM), other types of random access memory (RAM), read-only memory (ROM), electrically erasable programmable read-only memory (EEPROM), flash memory or other memory technologies, CD-ROM, digital versatile optical disc (DVD) or other optical storage, magnetic tape, magnetic disk storage or other magnetic storage devices, or any other non-transferable medium that can be used to store information accessible by a computing device. As defined herein, computer-readable media does not include transient computer-readable media, such as modulated data signals and carrier waves.

[0106] It should also be noted that the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus. Unless otherwise specified, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes that element.

[0107] The above are merely embodiments of this application and are not intended to limit the scope of this application. Various modifications and variations can be made to this application by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the scope of the claims of this application.

Claims

1. A remote monitoring and alarm method, characterized in that, Applied to a target wearable electronic device, the target wearable electronic device being connected to at least one mobile terminal via Bluetooth, the method includes: Collect physiological and activity data from the wearer; Based on the physiological data and the activity data, the wearer's real-time monitoring status is obtained; If the real-time monitoring status is abnormal, an alarm message is sent to the first communication device according to the pre-stored first communication information; If no reading feedback is received from the first communication device within a preset time, the alarm information is sent to the mobile terminal, causing the mobile terminal to forward the alarm information to several second communication devices based on several pre-stored second communication information.

2. The remote monitoring and alarm method according to claim 1, characterized in that, The activity data includes acceleration data and angular velocity data; the physiological data includes heart rate data; The step of obtaining the wearer's real-time monitoring status based on the physiological data and the activity data includes: If the acceleration data is greater than a preset fall acceleration threshold and the angular velocity data is greater than a preset fall angular velocity threshold, it is determined that the wearer has fallen. If the wearer's heart rate data is within an abnormal range after a fall, the real-time monitoring status is determined to be abnormal.

3. The remote monitoring and alarm method according to claim 1, characterized in that, The step of sending the alarm information to the mobile terminal, causing the mobile terminal to forward the alarm information to several second communication devices according to several pre-stored second communication information, includes: The alarm information and information forwarding instruction are transmitted to the mobile terminal, causing the mobile terminal to respond to the information forwarding instruction by calling the plurality of second communication information to forward the alarm information to the plurality of second communication devices.

4. The remote monitoring and alarm method according to claim 1, characterized in that, The target wearable electronic device includes an audible alarm component; After the step of obtaining the wearer's real-time monitoring status, the method further includes: If the real-time monitoring status is abnormal, the sound alarm component is driven to emit an alarm audio with increasing volume.

5. The remote monitoring and alarm method according to claim 4, characterized in that, After the step of sending alarm information to the first communication device, the method further includes: If no reading feedback is received from the first communication device within a preset time, a distress signal is broadcast, causing the sound alarm components of other wearable electronic devices that receive the distress signal to emit distress audio at a preset frequency; wherein, the stronger the received distress signal, the higher the frequency of the sound.

6. The remote monitoring and alarm method according to claim 1, characterized in that, The target wearable electronic device includes an luminous alarm component; After the step of obtaining the wearer's real-time monitoring status, the method further includes: If the real-time monitoring status is abnormal, the luminous alarm component will be driven to emit an alarm light.

7. The remote monitoring and alarm method according to claim 6, characterized in that, After the step of sending alarm information to the first communication device, the method further includes: If no reading feedback is received from the first communication device within a preset time, a distress signal is broadcast, causing other wearable electronic devices that receive the distress signal to emit distress lights at a preset flashing frequency; wherein, the stronger the received distress signal, the higher the flashing frequency.

8. A remote monitoring and alarm device, characterized in that, Applied to a target wearable electronic device, the target wearable electronic device being connected to at least one mobile terminal via Bluetooth, the device includes: The data acquisition module is used to collect the wearer's physiological and activity data; The real-time monitoring status acquisition module is used to acquire the real-time monitoring status of the wearer based on the physiological data and the activity data. The first alarm module is used to send alarm information to the first communication device according to the pre-stored first communication information if the real-time monitoring status is abnormal. The second alarm module is used to send the alarm information to the mobile terminal if no reading feedback is received from the first communication device within a preset time, so that the mobile terminal forwards the alarm information to several second communication devices according to several pre-stored second communication information.

9. A computer-readable storage medium storing a computer program, characterized in that: When the computer program is executed by a processor, it implements the steps of the remote monitoring and alarm method as described in any one of claims 1 to 7.

10. A computer device, characterized in that: It includes a storage device, a processor, and a computer program stored in the storage device and executable by the processor, wherein the processor executes the computer program to implement the steps of the remote monitoring alarm method as described in any one of claims 1 to 7.