Alarm method, device and equipment based on wearable equipment and storage medium

By setting up an alarm button and a non-volatile storage module on the wearable device, the problem of users being unable to call for help with one click in an emergency is solved, a fast and stable call for help function is achieved, and the reliability and safety of the call for help are ensured.

CN120656299APending Publication Date: 2025-09-16SOUNDAI TECH CO LTD
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Patent Information

Application Number
CN202510812939.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-17
Publication Date
2025-09-16

AI Technical Summary

Technical Problem

In the prior art, it is difficult for users to call for help with one click in an emergency in a convenient and reliable manner, especially when the wearable device is disconnected from the mobile device or the device is abnormal, the call for help function cannot be effectively activated.

Method used

A wearable device is provided with an alarm button on the outer surface and a built-in non-volatile storage module. It obtains and stores contact data from mobile devices through a wireless connection and can still be reliably saved after power failure. Users can trigger a quick call for help by pressing the button and perform an alarm operation using a cellular network or other devices.

Benefits of technology

It realizes a fast, stable and reliable one-click emergency call function in emergency situations, reduces the risk of contact data loss or tampering, and provides additional security.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an alarm method and device based on wearable equipment, equipment and a storage medium, and belongs to the technical field of Internet. According to the alarm scheme provided by the invention, one-key help calling based on the wearable device is realized. Particularly, the wearable device comprises an alarm key arranged on the outer surface of the device, and a nonvolatile storage module is arranged in the wearable device. According to the wearable equipment based on the design, a user can quickly start a help calling function through one-key operation in an emergency. According to the scheme, a quick, stable and effective one-key distress call function is provided for a user, so that the convenience and reliability of the one-key distress call function in an emergency are improved, and even if the wearable device is disconnected from the mobile device, or does not need to keep a continuous connection state with an APP installed on the mobile device, or the APP is abnormal, the one-key distress call function can be used for emergency call. And the one-key calling function can also be normally used. Therefore, a more stable safety guarantee is provided for the user. Wherein the APP is used for providing services for the wearable device.
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Description

Technical Field

[0001] The present application relates to the field of Internet technology, and in particular to an alarm method, apparatus, device and storage medium based on a wearable device. Background Art

[0002] In modern society, personal safety is receiving increasing attention. Designing a convenient and reliable one-touch emergency call solution based on everyday electronic devices (such as smartphones and wearable devices) would greatly facilitate users in quickly seeking help in emergencies, whether alone at home or out and about.

[0003] To this end, in order to provide users with additional safety protection, how to provide users with a one-click call for help function that is both convenient and reliable based on daily electronic devices, so that users can quickly and effectively report an emergency, has become a focus of attention for technicians in this field. Summary of the Invention

[0004] The embodiments of the present application provide an alarm method, apparatus, device, and storage medium based on a wearable device. The technical solution is as follows:

[0005] On the one hand, an alarm method based on a wearable device is provided, wherein the wearable device includes an alarm button provided on the outer surface of the device and the wearable device has a built-in non-volatile storage module;

[0006] The method comprises:

[0007] Receiving contact data sent by a first mobile device based on the established wireless connection; wherein the contact data is obtained by the first mobile device through a page provided by a target application; the target application is used to provide services for the wearable device;

[0008] Writing the contact data into the non-volatile storage module;

[0009] In response to a triggering operation on the alarm button, the contact data is read from the non-volatile storage module, and an alarm operation is performed based on the contact data.

[0010] In some embodiments, performing an alarm operation based on the contact data includes:

[0011] If the wearable device has a cellular network function, performing an alarm operation via the cellular network based on the contact data;

[0012] If the wearable device does not have the cellular network function, a first alarm request is sent to the first mobile device based on the established wireless connection; wherein the first alarm request is used to instruct the first mobile device to perform an alarm operation based on the contact data.

[0013] In some other embodiments, the method further comprises:

[0014] If the wearable device does not have the cellular network function, after establishing a wireless connection with the second mobile device, sending a second alarm request to the second mobile device based on the established wireless connection;

[0015] The second mobile device is a device with a wireless connection function turned on and having the cellular network function; the second alarm request is used to instruct the second mobile device to perform an alarm operation based on the currently received contact data.

[0016] In some other embodiments, performing an alarm operation based on the contact data includes:

[0017] Acquiring auxiliary decision data; wherein the auxiliary decision data includes at least one of environmental monitoring data, location data of a target object, physiological indicator data, or audio data; the target object is a subject wearing the wearable device;

[0018] An alarm operation is performed based on the contact data and the auxiliary decision data.

[0019] In some other embodiments, performing an alarm operation based on the contact data and the auxiliary decision data includes:

[0020] Determining the current danger level and danger type of the target object based on the environmental monitoring data, the physiological indicator data and the audio data of the target object;

[0021] Based on the contact data and the location data, an alarm operation matching the danger level and the danger type is performed.

[0022] In some other embodiments, performing an alarm operation that matches the danger level and the danger type based on the contact data and the location data includes:

[0023] determining a second object based on the first object and the risk type; wherein the first object is the object indicated by the contact data;

[0024] generating an alarm summary that matches the hazard level and the hazard type; wherein the alarm summary includes the location data;

[0025] The alarm summary is sent to the first object and the second object respectively.

[0026] In some other embodiments, sending the alarm summary to the first object and the second object respectively includes:

[0027] Initiate a call request to the first object and the second object respectively, and after the other party answers the call, broadcast the alarm summary in voice form; or,

[0028] Sending a text alarm message to the first object and the second object respectively; wherein the text alarm message includes the alarm summary; or,

[0029] Initiate the call request to the first object and send the text alert message to the second object; or,

[0030] The text alarm message is sent to the first object, and the call request is initiated to the second object.

[0031] In some other embodiments, the method further comprises:

[0032] Determining the type of location where the target object is currently located based on the location data of the target object;

[0033] If the determined location type is home, a control instruction is sent to the smart home device according to the danger type; wherein the control instruction is used to instruct the smart home device to enter a working state matching the danger type.

[0034] In some other embodiments, the method further comprises:

[0035] within a preset time period after the alarm button is triggered, in response to the alarm button being triggered again, canceling the alarm operation; or,

[0036] In response to the triggering operation of the alarm button, a confirmation request is sent to the first mobile device based on the established wireless connection; wherein the confirmation request is used to instruct the first mobile device to output a prompt message; the prompt message is used to prompt confirmation on whether to execute the alarm operation.

[0037] In some other embodiments, the wearable device further has a built-in microphone; and the method further comprises:

[0038] receiving a remote control instruction sent by a third mobile device; wherein the third mobile device is a device used by a first object, and the first object is the object indicated by the contact data;

[0039] In response to the remote control instruction, the microphone of the wearable device is controlled to collect audio data, and the collected audio data is sent to the third mobile device.

[0040] On the other hand, an alarm method based on a wearable device is also provided, the method comprising:

[0041] Acquiring contact data based on a page provided by a target application; wherein the target application is used to provide services for the wearable device;

[0042] Sending the contact data to the wearable device based on the established wireless connection;

[0043] Among them, the contact data is written into the non-volatile storage module after being received by the wearable device; the wearable device is used to read the contact data from the non-volatile storage module in response to the triggering operation of the alarm button, and perform an alarm operation based on the contact data.

[0044] In another aspect, an alarm device based on a wearable device is provided, the device comprising:

[0045] a receiving unit configured to receive contact data sent by a first mobile device based on the established wireless connection; wherein the contact data is obtained by the first mobile device through a page provided by a target application; and the target application is used to provide services for the wearable device;

[0046] a writing unit, configured to write the contact data into a non-volatile storage module of the wearable device;

[0047] The execution unit is configured to read the contact data from the non-volatile storage module in response to a trigger operation on the alarm button set on the outer surface, and execute an alarm operation based on the contact data.

[0048] In some embodiments, the execution unit is configured to:

[0049] If the wearable device has a cellular network function, performing an alarm operation via the cellular network based on the contact data;

[0050] If the wearable device does not have the cellular network function, a first alarm request is sent to the first mobile device based on the established wireless connection; wherein the first alarm request is used to instruct the first mobile device to perform an alarm operation based on the contact data.

[0051] In some other embodiments, the execution unit is further configured to:

[0052] If the wearable device does not have the cellular network function, after establishing a wireless connection with the second mobile device, sending a second alarm request to the second mobile device based on the established wireless connection;

[0053] The second mobile device is a device with a wireless connection function turned on and having the cellular network function; the second alarm request is used to instruct the second mobile device to perform an alarm operation based on the currently received contact data.

[0054] In some other embodiments, the execution unit is configured to:

[0055] Acquiring auxiliary decision data; wherein the auxiliary decision data includes at least one of environmental monitoring data, location data of a target object, physiological indicator data, or audio data; the target object is a subject wearing the wearable device;

[0056] An alarm operation is performed based on the contact data and the auxiliary decision data.

[0057] In some other embodiments, the execution unit is configured to:

[0058] Determining the current danger level and danger type of the target object based on the environmental monitoring data, the physiological indicator data and the audio data of the target object;

[0059] Based on the contact data and the location data, an alarm operation matching the danger level and the danger type is performed.

[0060] In some other embodiments, the execution unit is configured to:

[0061] determining a second object based on the first object and the risk type; wherein the first object is the object indicated by the contact data;

[0062] generating an alarm summary that matches the hazard level and the hazard type; wherein the alarm summary includes the location data;

[0063] The alarm summary is sent to the first object and the second object respectively.

[0064] In some other embodiments, the execution unit is configured to:

[0065] Initiate a call request to the first object and the second object respectively, and after the other party answers the call, broadcast the alarm summary in voice form; or,

[0066] Sending a text alarm message to the first object and the second object respectively; wherein the text alarm message includes the alarm summary; or,

[0067] Initiate the call request to the first object and send the text alert message to the second object; or,

[0068] The text alarm message is sent to the first object, and the call request is initiated to the second object.

[0069] In some other embodiments, the apparatus further comprises:

[0070] a determining unit configured to determine a type of place where the target object is currently located based on the location data of the target object;

[0071] The first sending unit is configured to send a control instruction to the smart home device according to the danger type if the determined place type is home; wherein the control instruction is used to instruct the smart home device to enter a working state matching the danger type.

[0072] In some other embodiments, the execution unit is further configured to:

[0073] within a preset time period after the alarm button is triggered, in response to the alarm button being triggered again, canceling the alarm operation; or,

[0074] In response to the triggering operation of the alarm button, a confirmation request is sent to the first mobile device based on the established wireless connection; wherein the confirmation request is used to instruct the first mobile device to output a prompt message; the prompt message is used to prompt confirmation on whether to execute the alarm operation.

[0075] In some other embodiments, the wearable device further includes a built-in microphone; the apparatus further includes:

[0076] The receiving unit is further configured to receive a remote control instruction sent by a third mobile device; wherein the third mobile device is a device used by the first object, and the first object is the object indicated by the contact data;

[0077] a control unit, configured to control a microphone of the wearable device to collect audio data in response to the remote control instruction;

[0078] The first sending unit is further configured to send the collected audio data to the third mobile device.

[0079] In another aspect, an alarm device based on a wearable device is provided, the device comprising:

[0080] an acquisition unit configured to acquire contact data based on a page provided by a target application; wherein the target application is used to provide services for the wearable device;

[0081] a second sending unit, configured to send the contact data to the wearable device based on the established wireless connection;

[0082] Among them, the contact data is written into the non-volatile storage module after being received by the wearable device; the wearable device is used to read the contact data from the non-volatile storage module in response to the triggering operation of the alarm button, and perform an alarm operation based on the contact data.

[0083] On the other hand, a wearable device is provided, comprising a processor and a memory, wherein the memory stores at least one program code, and the at least one program code is loaded and executed by the processor to implement the above-mentioned alarm method based on the wearable device.

[0084] On the other hand, a computer-readable storage medium is provided, in which at least one program code is stored. The at least one program code is loaded and executed by a processor to implement the above-mentioned alarm method based on a wearable device.

[0085] On the other hand, a computer program product or computer program is provided, which includes a computer program code, which is stored in a computer-readable storage medium. The processor of the wearable device reads the computer program code from the computer-readable storage medium, and the processor executes the computer program code, so that the wearable device executes the above-mentioned alarm method based on the wearable device.

[0086] The alarm solution provided by the embodiments of the present application implements a one-click call for help feature based on a wearable device. In particular, the wearable device includes an alarm button located on the outer surface of the device and a built-in non-volatile storage module. Based on this design of the wearable device, users can quickly activate the call for help function with a single click in an emergency. Specifically, through the physical button located on the outer surface of the device, when it is inconvenient for the user to operate a mobile device (such as a smartphone), the user can still use the one-click call function normally even if the wearable device is disconnected from the mobile device, or there is no need for the wearable device and the app installed on the mobile device to maintain a continuous connection, or if the app encounters an abnormality, providing users with more stable security. The app is used to provide services for the wearable device. In addition, after the user enters contact information on the mobile device, the mobile device will transmit the acquired contact data to the wearable device via a wireless connection. Accordingly, after receiving the contact data, the wearable device will write it to the non-volatile storage module. Since the non-volatile storage module has high reliability in data storage, for example, data storage does not require continuous power supply and can be saved after power outages, the risk of contact data loss or tampering is reduced, thereby ensuring the reliability of the one-click call for help feature.

[0087] In summary, this solution provides users with a fast, stable and effective one-click emergency call function, improves the convenience and reliability of the one-click emergency call function in an emergency, and provides users with additional safety protection. BRIEF DESCRIPTION OF THE DRAWINGS

[0088] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following briefly introduces the drawings required for use in the description of the embodiments. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.

[0089] Figure 1 Schematic diagram of an implementation environment of an alarm method based on a wearable device provided in an embodiment of the present application;

[0090] Figure 2 This is a flow chart of an alarm method based on a wearable device provided in an embodiment of the present application;

[0091] Figure 3 This is a flow chart of another alarm method based on a wearable device provided in an embodiment of the present application;

[0092] Figure 4 This is a flow chart of another alarm method based on a wearable device provided in an embodiment of the present application;

[0093] Figure 5This is a schematic diagram of an alarm process based on a wearable device provided in an embodiment of the present application;

[0094] Figure 6 This is a schematic structural diagram of an alarm device based on a wearable device provided in an embodiment of the present application;

[0095] Figure 7 This is a schematic structural diagram of another alarm device based on a wearable device provided in an embodiment of the present application;

[0096] Figure 8 This is a structural diagram of a wearable device provided in an embodiment of the present application. DETAILED DESCRIPTION

[0097] In order to make the objectives, technical solutions and advantages of this application clearer, the implementation methods of this application will be further described in detail below with reference to the accompanying drawings.

[0098] In this application, the terms "first," "second," and the like are used to distinguish identical or similar items having substantially the same role and function. It should be understood that "first," "second," and "nth" do not have a logical or temporal dependency, nor do they limit the quantity or execution order. It should also be understood that although the following description uses the terms "first," "second," and the like to describe various elements, these elements should not be limited by these terms.

[0099] These terms are simply used to distinguish one element from another. For example, a first element can be referred to as a second element, and similarly, a second element can be referred to as a first element, without departing from the scope of various examples. Both the first element and the second element can be elements, and in some cases, can be separate and different elements.

[0100] Here, at least one refers to one or more than one. For example, at least one element can be one element, two elements, three elements, or any other integer greater than or equal to one. And multiple refers to two or more than two. For example, multiple elements can be two elements, three elements, or any other integer greater than or equal to two.

[0101] The term "and / or" used in this document indicates that three possible relationships exist. For example, "A and / or B" can mean: A exists alone, A and B exist simultaneously, or B exists alone. The character " / " generally indicates that the related objects are in an "or" relationship.

[0102] It should be noted that the information (including but not limited to user device information, user personal information, etc.), data (including but not limited to data used for analysis, stored data, displayed data, etc.) and signals involved in this application are all authorized by the user or fully authorized by all parties, and the collection, use and processing of relevant data must comply with the relevant laws, regulations and standards of the relevant regions. For example, the initial text and interest tags involved in this application are obtained with full authorization.

[0103] Figure 1 This is a schematic diagram of the implementation environment of an alarm method based on a wearable device provided in an embodiment of the present application. Figure 1 , the implementation environment includes: a mobile device 101 and a wearable device 102.

[0104] In the embodiment of the present application, the types of mobile devices 101 include, but are not limited to, smartphones, tablet computers, etc. In addition, a specific APP is running on the mobile device 101. This APP is used to provide services for the wearable device 102, such as managing the connection of the wearable device 102, configuring functions, and providing value-added services. This APP is also referred to as the target application in this article.

[0105] In some embodiments, the wearable device 102 is a Bluetooth headset. Accordingly, data is transmitted between the mobile device 101 and the wearable device 102 via a Bluetooth connection.

[0106] The first point that needs to be explained is that Figure 1 The mobile device is a smart phone and the wearable device is a Bluetooth phone. In actual applications, the mobile device and the wearable device can also be of other types, which is not limited in this application.

[0107] The second point to be explained is that, in addition to conventional components, the wearable device 102 also includes an alarm button (also known as a one-touch emergency button) disposed on the outer surface of the device. In addition, the wearable device 102 also has a built-in non-volatile storage module.

[0108] In summary, the wearable device based on the above structure can realize one-touch call for help in an emergency. The following implementation method will be used to introduce the one-touch call for help solution based on the wearable device in detail.

[0109] Figure 2 This is a flowchart of an alarm method based on a wearable device provided in an embodiment of the present application. The execution subject of this method is a wearable device. Figure 2 , the method comprises the following steps:

[0110] 201. The wearable device receives contact data sent by a first mobile device based on an established wireless connection, and writes the received contact data into a built-in non-volatile storage module.

[0111] A wearable device refers to a portable electronic device that is worn directly on the body or integrated into clothing or accessories. Examples of wearable devices include, but are not limited to, smartwatches, smart glasses, or Bluetooth headsets, though this application does not limit these devices.

[0112] In this embodiment of the present application, the contact data is obtained by the first mobile device via a page provided by the target application. Specifically, the mobile device displays a page for the user to enter contact data via the target application. This page includes multiple settings for entering contact information. After the user completes entering information for these settings, the mobile device obtains the contact data entered by the user.

[0113] In some embodiments, the non-volatile storage module is a Flash storage. Flash storage is a non-volatile memory (NVM) based on semiconductor technology, and data will not be lost even after a power outage. Based on the structure and application scenario of the storage unit, Flash is mainly divided into two categories: NOR Flash and NAND Flash. For example, the Flash storage built into the wearable device is NAND Flash, which is not limited in this application.

[0114] 202. In response to a triggering operation on an alarm button disposed on an outer surface of the device, the wearable device reads contact data from a non-volatile storage module and performs an alarm operation based on the read contact data.

[0115] In the embodiment of the present application, the alarm button for triggering the one-touch emergency call function is a physical button provided on the outer surface of the device. Of course, if the wearable device has a display screen, the alarm button can also be a virtual button displayed on the display screen of the wearable device, and this application does not limit this.

[0116] It should be noted that the alarm operation based on the read contact data can be either a direct call to the emergency contact or a non-voice message to the emergency contact, depending on the level and type of emergency encountered by the user. See the following description for details.

[0117] In summary, the alarm solution provided by the embodiments of the present application implements a one-touch emergency call function based on a wearable device. Specifically, the wearable device includes an alarm button located on the device's outer surface and a built-in non-volatile storage module. With this design, users of wearable devices can quickly activate the emergency call function with a single click in an emergency. Specifically, the physical button located on the device's outer surface allows the user to use the one-touch emergency call function even when the wearable device is disconnected from the mobile device, when the wearable device and the target application do not need to maintain a continuous connection, or when the target application experiences an abnormality, providing users with more stable security. Furthermore, after the user enters contact information on the mobile device, the mobile device transmits the acquired contact data to the wearable device via a wireless connection. Accordingly, the wearable device writes the contact data to the non-volatile storage module after receiving it. Because the non-volatile storage module offers high data reliability, for example, data storage does not require continuous power supply and remains stored even after a power outage, the risk of contact data loss or tampering is reduced, thereby ensuring the reliability of the one-touch emergency call function.

[0118] In summary, this solution provides users with a fast, stable and effective one-click emergency call function, improves the convenience and reliability of the one-click emergency call function in an emergency, and provides users with additional safety protection.

[0119] Figure 3 This is a flowchart of another alarm method based on a wearable device provided by an embodiment of the present application. The execution subject of this method is a mobile device. Figure 3 , the method comprises the following steps:

[0120] 301. The mobile device obtains contact data based on the page provided by the target application.

[0121] In the embodiments of this application, the target application can be either a standalone application or a lightweight application running within a host application, such as a mini-program, and this application does not limit this. Furthermore, the contact data mentioned above includes, but is not limited to, contact names and contact numbers, and this application does not limit this. This may depend on the settings included on the page provided by the target application.

[0122] Taking the wearable device as a Bluetooth headset as an example, after the user launches the target application on the mobile device, a Bluetooth connection is established between the mobile device and the Bluetooth headset by performing a Bluetooth connection operation.

[0123] 302. The mobile device sends the acquired contact data to the wearable device based on the established wireless connection; wherein the contact data is written to the non-volatile storage module after being received by the wearable device; the wearable device is configured to read the contact data from the non-volatile storage module in response to a triggering operation of an alarm button provided on an outer surface of the device, and perform an alarm operation based on the contact data.

[0124] For example, in order to ensure that personal privacy information is not leaked, contact data is transmitted in an encrypted manner, which is not limited in this application.

[0125] Furthermore, because the non-volatile storage module offers reliable data storage—for example, data does not require continuous power and remains stored even after a power outage—after successfully sending the acquired contact data to the wearable device, the device can be disconnected. Even then, the contact data written to the non-volatile storage module will not be lost. Furthermore, even if the wearable device loses power after writing the contact data, the contact data written to the non-volatile storage module will not be lost.

[0126] The above-mentioned disconnection can be either the mobile device automatically disconnecting the established wireless connection with the wearable device, or the user disconnecting the connection manually, which is not limited in this application.

[0127] In summary, the alarm solution provided by the embodiments of the present application implements a one-touch emergency call function based on a wearable device. Specifically, the wearable device includes an alarm button located on the outer surface of the device and a built-in non-volatile storage module. With this design, users of wearable devices can quickly activate the emergency call function with a single click in an emergency. Specifically, the physical button located on the outer surface of the device allows the user to use the one-touch emergency call function even when the wearable device is disconnected from the mobile device, when the wearable device and the target application do not need to maintain a continuous connection, or when the target application experiences an abnormality, providing users with more stable security. Furthermore, after the user enters contact information on the mobile device, the mobile device transmits the acquired contact data to the wearable device via a wireless connection. Accordingly, the wearable device writes the contact data to the non-volatile storage module after receiving it. Due to the high reliability of the non-volatile storage module in data storage, the risk of contact data loss or tampering is reduced, thereby ensuring the reliability of the one-touch emergency call function.

[0128] In summary, this solution provides users with a fast, stable and effective one-click emergency call function, improves the convenience and reliability of the one-click emergency call function in an emergency, and provides users with additional safety protection.

[0129] above Figure 2-3 The following is only a basic process of the embodiment of the present application. The solution provided by the present application is further explained based on a specific implementation method. Figure 4 This is a flowchart of another alarm method based on a wearable device provided by an embodiment of the present application. Take the wearable device as a Bluetooth headset as an example. Figure 4 As shown, the method flow includes the following steps:

[0130] 401. When the target application is in a running state, in response to a Bluetooth connection operation, the first mobile device establishes a Bluetooth connection with the Bluetooth headset.

[0131] This step corresponds to Figure 5 The user connects the first mobile device and the Bluetooth headset through the APP.

[0132] As mentioned above, the first mobile device runs a target application that provides services for the Bluetooth headset. When the target application is in the running state, the user can perform a Bluetooth connection operation through the page provided by the target application, thereby establishing a Bluetooth connection between the first mobile device and the Bluetooth headset.

[0133] It should be noted that if the Bluetooth connection between the first mobile device and the Bluetooth headset is successful, the Figure 5 The next step shown is that the first mobile device obtains contact data based on the page provided by the APP, such as obtaining the contact name or contact number input by the user. If the Bluetooth connection fails, the user is prompted that the connection fails and needs to be reconnected.

[0134] 402. After establishing a Bluetooth connection with the Bluetooth headset, the first mobile device obtains contact data based on a page provided by the target application.

[0135] This step is similar to the above step 301 and will not be described again here.

[0136] 403. The first mobile device sends the acquired contact data to the Bluetooth headset based on the established Bluetooth connection.

[0137] This step is similar to the above step 302 and will not be described again here.

[0138] 404. After receiving the contact data sent by the first mobile device, the Bluetooth headset writes the received contact data into a built-in non-volatile storage module.

[0139] As an example, the non-volatile storage module is the flash storage of the earphone chip, which is not limited in this application. The above step 403 and this step 404 correspond to Figure 5The first mobile device sends the acquired contact data to the Bluetooth headset, and the Bluetooth headset writes the contact data into the flash storage.

[0140] The first point to note is that, because flash storage offers reliability in data storage, for example, data storage does not require continuous power supply and can be preserved even after a power outage, after successfully sending the acquired contact data to the Bluetooth headset, the Bluetooth headset can be disconnected. Alternatively, after successfully writing the received contact data to the flash storage, the Bluetooth headset can be disconnected from the first mobile device. Even if the two are disconnected, the contact data written to the flash storage will not be lost. Furthermore, after the contact data is written, even if the Bluetooth headset loses power, the contact data written to the flash storage will not be lost.

[0141] The second point that needs to be explained is that after completing the writing of the contact data, when encountering an emergency situation later, the user only needs to trigger the alarm button set on the outer surface of the Bluetooth headset, and the Bluetooth headset will automatically read the pre-written contact data from the flash storage and perform the alarm operation through the built-in communication module. See the following step 405 for details.

[0142] 405. In response to a triggering operation on an alarm button disposed on an outer surface of the device, the Bluetooth headset reads contact data from a non-volatile storage module and performs an alarm operation based on the read contact data.

[0143] In some embodiments, based on whether the communication module built into the Bluetooth headset supports the cellular network, the Bluetooth headset performs an alarm operation based on the read contact data, including but not limited to the following methods:

[0144] Method 1: If the Bluetooth headset has a cellular network function, the Bluetooth headset performs an alarm operation through the cellular network based on the contact data read.

[0145] In this case, if the Bluetooth headset has a built-in eSIM card or independent cellular module, it indicates that the Bluetooth headset supports cellular networks, so the Bluetooth headset can independently perform alarm operations without the help of the first mobile device. The above-mentioned alarm operations include but are not limited to dialing a contact number or sending a text message, such as an SMS, to a contact, which is not limited in this application.

[0146] Method 2: If the Bluetooth headset does not have a cellular network function, the Bluetooth headset sends a first alarm request to the first mobile device based on the established Bluetooth connection.

[0147] In this method, if the Bluetooth headset does not support cellular networks, the Bluetooth headset needs to rely on the first mobile device to complete the alarm operation. If the Bluetooth connection between the two is disconnected at this time, a Bluetooth connection must be established first so that the Bluetooth headset can send the first alarm request to the first mobile device, thereby triggering the first mobile device to execute the alarm operation based on the pre-acquired contact data.

[0148] The first point that needs to be explained is that if the Bluetooth headset does not support cellular networks but supports WiFi (Wireless Fidelity) networks, then the Bluetooth headset can also perform alarm operations through the WiFi network, and this application does not limit this.

[0149] It should be noted that the second point is that the first mobile device can perform the alarm operation through the cellular network or the WiFi network, and this application does not limit this.

[0150] A third point worth noting is that if the Bluetooth headset doesn't support cellular networks, in addition to Method 2, the headset can also utilize a nearby Bluetooth-enabled second mobile device to perform an emergency call. For example, if the user's first mobile device is in a weak signal area and the cellular network signal is poor, the headset can establish a Bluetooth connection with a nearby second mobile device and use the other mobile device with better network conditions to complete the emergency call. See Method 3 below for details.

[0151] Method 3: If the Bluetooth headset does not have a cellular network function, after establishing a Bluetooth connection with the second mobile device, the Bluetooth headset sends a second alarm request to the second mobile device based on the established Bluetooth connection.

[0152] The second mobile device is a device with Bluetooth enabled and cellular network capability. The second alarm request is used to instruct the second mobile device to perform an alarm operation based on the currently received contact data. In other words, the second alarm request carries the contact data.

[0153] In other embodiments, in addition to regular alarms such as making a call or sending a text message based on contact data, embodiments of the present application also support the acquisition of additional data to assist in determining the level and type of emergency situation the user is currently facing, thereby improving the efficiency of rescue decision-making. That is, in response to a trigger operation on a physical button located on the outer surface of the device, in addition to reading contact data from the flash memory, the Bluetooth headset also acquires additional decision-making assistance data, and then executes an alarm operation based on the read contact data and the acquired decision-making assistance data.

[0154] As an example, the auxiliary decision data includes, but is not limited to, at least one of: environmental monitoring data (such as air pressure, temperature, or smoke concentration), location data of the target object, physiological indicator data, or audio data, which is not limited in this application. The target object is a person wearing a Bluetooth headset.

[0155] As another example, the environmental monitoring data can be obtained by the Bluetooth headset itself, or sent by a smart home device or vehicle linked to it, and this application does not limit this.

[0156] In other embodiments, the present application also provides a method for removing the emergency call function to avoid initiating the alarm process when the user accidentally presses a button. That is, the method provided by the present application also includes:

[0157] Within a preset time period after the alarm button is triggered, in response to the alarm button being triggered again, the alarm operation is canceled; or, in response to the alarm button being triggered, a confirmation request is sent to the first mobile device based on the established Bluetooth connection. The confirmation request is used to instruct the first mobile device to output a prompt message, which is used to prompt confirmation of whether to execute the alarm operation.

[0158] Exemplarily, the preset duration is 2 seconds, which is not limited in this application.

[0159] In other embodiments, the Bluetooth headset also has a built-in microphone. After the user triggers a one-click call for help, the emergency contact can also remotely control the Bluetooth headset to turn on the microphone to collect audio data, so that the emergency contact can grasp the on-site situation in a timely manner and facilitate rescue. That is, the method provided in the embodiment of the present application also includes:

[0160] Receive a remote control instruction sent by a third mobile device; wherein the third mobile device is a device used by the first object, and the first object is the object indicated by the contact data; in response to the remote control instruction, the Bluetooth headset controls the microphone to collect audio data and sends the collected audio data to the third mobile device.

[0161] Exemplarily, in response to a remote control instruction, the Bluetooth headset controls the microphone to collect audio data of a target duration, such as 30 seconds of audio data, which is not limited in this application.

[0162] In other embodiments, based on the read contact data and the acquired auxiliary decision data, an alarm operation is performed, including but not limited to the following methods:

[0163] Step 1: Based on the acquired environmental monitoring data, physiological indicator data and audio data of the target object, determine the current danger level and danger type of the target object.

[0164] For example, a Bluetooth headset can use a pre-trained deep learning model to classify and determine the risk level and risk type, which is not limited in this application. In addition, the risk types include but are not limited to: sudden illness, personal safety risks, natural disasters, accidental injuries, gas leaks or carbon monoxide poisoning, etc., which are not limited in this application.

[0165] Step 2: Based on the read contact data and the location data of the target object, an alarm operation matching the determined danger level and danger type is executed.

[0166] As an example, based on the read contact data and the location data of the target object, an alarm operation matching the determined danger level and danger type is performed, including but not limited to the following methods:

[0167] Based on the first object, a second object is determined based on the determined danger type; an alarm summary matching the determined danger level and danger type is generated; wherein the alarm summary includes location data of the target object; and the alarm summary is sent to the first object and the second object respectively.

[0168] For example, if the determined danger type is a sudden illness, the second object can be a medical emergency platform, which is not limited in this application. In addition, the embodiment of the present application supports sending the alarm summary in the form of voice or text message, which is not limited in this application. That is, sending the alarm summary to the first object and the second object respectively includes:

[0169] Initiate call requests to the first object and the second object respectively, and broadcast the alarm summary in voice form after the other party answers the call; or, send a text alarm message to the first object and the second object respectively; wherein the text alarm message includes the alarm summary; or, initiate a call request to the first object and send a text alarm message to the second object; or, send a text alarm message to the first object and initiate a call request to the second object.

[0170] In other embodiments, if the user triggers a one-touch call for help at home, smart home devices can also be linked. That is, the method provided in the embodiment of the present application also includes:

[0171] Based on the location data of the target object, the type of place where the target object is currently located is determined; if the determined place type is home, a control instruction is sent to the smart home device according to the determined danger type; wherein the control instruction is used to instruct the smart home device to enter a working state that matches the determined danger type.

[0172] For example, if the determined danger type is sudden illness, a control instruction for unlocking can be sent to the smart door lock to achieve synchronous unlocking of the home door, thereby facilitating the entry of rescue personnel.

[0173] In summary, the alarm solution provided by the embodiments of the present application implements a one-touch emergency call function using a Bluetooth headset. Specifically, the Bluetooth headset includes an alarm button located on the outer surface of the device and a built-in non-volatile storage module. With this design, users can quickly activate the emergency call function with a single click in an emergency. Specifically, the physical button located on the outer surface of the device allows users to use the one-touch emergency call function even when it is inconvenient to operate their mobile device, even if the wearable device is disconnected from the mobile device, or if the wearable device and the target application do not need to maintain a continuous connection, or if the target application experiences an abnormality, thereby providing users with more stable security. Furthermore, after the user enters contact information on the mobile device, the mobile device transmits the acquired contact data to the Bluetooth headset via a Bluetooth connection. Accordingly, the Bluetooth headset writes the contact data to the non-volatile storage module after receiving it. Because the non-volatile storage module offers high data storage reliability, for example, data storage does not require continuous power supply and remains stored even after a power outage, the risk of contact data loss or tampering is reduced, thereby ensuring the reliability of the one-touch emergency call function.

[0174] In summary, this solution provides users with a fast, stable and effective one-click emergency call function, improves the convenience and reliability of the one-click emergency call function in an emergency, and provides users with additional safety protection.

[0175] Figure 6 This is a structural diagram of an alarm device based on a wearable device provided in an embodiment of the present application. Figure 6 , the device comprises:

[0176] The receiving unit 601 is configured to receive contact data sent by the first mobile device based on the established wireless connection; wherein the contact data is obtained by the first mobile device through a page provided by a target application; and the target application is used to provide services for the wearable device.

[0177] A writing unit 602 is configured to write the contact data into a non-volatile storage module of the wearable device;

[0178] The execution unit 603 is configured to read the contact data from the non-volatile storage module in response to a trigger operation on the alarm button provided on the outer surface, and perform an alarm operation based on the contact data.

[0179] In summary, the alarm solution provided by the embodiments of the present application implements a one-touch emergency call function based on a wearable device. Specifically, the wearable device includes an alarm button located on the device's outer surface and a built-in non-volatile storage module. With this design, users of wearable devices can quickly activate the emergency call function with a single click in an emergency. Specifically, the physical button located on the device's outer surface allows the user to use the one-touch emergency call function even when the wearable device is disconnected from the mobile device, when the wearable device and the target application do not need to maintain a continuous connection, or when the target application experiences an abnormality, providing users with more stable security. Furthermore, after the user enters contact information on the mobile device, the mobile device transmits the acquired contact data to the wearable device via a wireless connection. Accordingly, the wearable device writes the contact data to the non-volatile storage module after receiving it. Because the non-volatile storage module offers high data reliability, for example, data storage does not require continuous power supply and remains stored even after a power outage, the risk of contact data loss or tampering is reduced, thereby ensuring the reliability of the one-touch emergency call function.

[0180] In summary, this solution provides users with a fast, stable and effective one-click emergency call function, improves the convenience and reliability of the one-click emergency call function in an emergency, and provides users with additional safety protection.

[0181] In some embodiments, the execution unit is configured to:

[0182] If the wearable device has a cellular network function, performing an alarm operation via the cellular network based on the contact data;

[0183] If the wearable device does not have the cellular network function, a first alarm request is sent to the first mobile device based on the established wireless connection; wherein the first alarm request is used to instruct the first mobile device to perform an alarm operation based on the contact data.

[0184] In some other embodiments, the execution unit is further configured to:

[0185] If the wearable device does not have the cellular network function, after establishing a wireless connection with the second mobile device, sending a second alarm request to the second mobile device based on the established wireless connection;

[0186] The second mobile device is a device with a wireless connection function turned on and having the cellular network function; the second alarm request is used to instruct the second mobile device to perform an alarm operation based on the currently received contact data.

[0187] In some other embodiments, the execution unit is configured to:

[0188] Acquiring auxiliary decision data; wherein the auxiliary decision data includes at least one of environmental monitoring data, location data of a target object, physiological indicator data, or audio data; the target object is a subject wearing the wearable device;

[0189] An alarm operation is performed based on the contact data and the auxiliary decision data.

[0190] In some other embodiments, the execution unit is configured to:

[0191] Determining the current danger level and danger type of the target object based on the environmental monitoring data, the physiological indicator data and the audio data of the target object;

[0192] Based on the contact data and the location data, an alarm operation matching the danger level and the danger type is performed.

[0193] In some other embodiments, the execution unit is configured to:

[0194] determining a second object based on the first object and the risk type; wherein the first object is the object indicated by the contact data;

[0195] generating an alarm summary that matches the hazard level and the hazard type; wherein the alarm summary includes the location data;

[0196] The alarm summary is sent to the first object and the second object respectively.

[0197] In some other embodiments, the execution unit is configured to:

[0198] Initiate a call request to the first object and the second object respectively, and after the other party answers the call, broadcast the alarm summary in voice form; or,

[0199] Sending a text alarm message to the first object and the second object respectively; wherein the text alarm message includes the alarm summary; or,

[0200] Initiate the call request to the first object and send the text alert message to the second object; or,

[0201] The text alarm message is sent to the first object, and the call request is initiated to the second object.

[0202] In some other embodiments, the apparatus further comprises:

[0203] a determining unit configured to determine a type of place where the target object is currently located based on the location data of the target object;

[0204] The first sending unit is configured to send a control instruction to the smart home device according to the danger type if the determined place type is home; wherein the control instruction is used to instruct the smart home device to enter a working state matching the danger type.

[0205] In some other embodiments, the execution unit is further configured to:

[0206] within a preset time period after the alarm button is triggered, in response to the alarm button being triggered again, canceling the alarm operation; or,

[0207] In response to the triggering operation of the alarm button, a confirmation request is sent to the first mobile device based on the established wireless connection; wherein the confirmation request is used to instruct the first mobile device to output a prompt message; the prompt message is used to prompt confirmation on whether to execute the alarm operation.

[0208] In some other embodiments, the wearable device further includes a built-in microphone; the apparatus further includes:

[0209] The receiving unit is further configured to receive a remote control instruction sent by a third mobile device; wherein the third mobile device is a device used by the first object, and the first object is the object indicated by the contact data;

[0210] a control unit, configured to control a microphone of the wearable device to collect audio data in response to the remote control instruction;

[0211] The first sending unit is further configured to send the collected audio data to the third mobile device.

[0212] All of the above optional technical solutions can be combined in any way to form optional embodiments of the present application, and will not be described in detail here.

[0213] Figure 7 This is a structural diagram of another alarm device based on a wearable device provided in an embodiment of the present application. Figure 7 , the device comprises:

[0214] The acquisition unit 701 is configured to acquire contact data based on a page provided by a target application; wherein the target application is used to provide services for the wearable device;

[0215] The second sending unit 702 is configured to send the contact data to the wearable device based on the established wireless connection;

[0216] Among them, the contact data is written into the non-volatile storage module after being received by the wearable device; the wearable device is used to read the contact data from the non-volatile storage module in response to the triggering operation of the alarm button, and perform an alarm operation based on the contact data.

[0217] In summary, the alarm solution provided by the embodiments of the present application implements a one-touch emergency call function based on a wearable device. Specifically, the wearable device includes an alarm button located on the device's outer surface and a built-in non-volatile storage module. With this design, users of wearable devices can quickly activate the emergency call function with a single click in an emergency. Specifically, the physical button located on the device's outer surface allows the user to use the one-touch emergency call function even when the wearable device is disconnected from the mobile device, when the wearable device and the target application do not need to maintain a continuous connection, or when the target application experiences an abnormality, providing users with more stable security. Furthermore, after the user enters contact information on the mobile device, the mobile device transmits the acquired contact data to the wearable device via a wireless connection. Accordingly, the wearable device writes the contact data to the non-volatile storage module after receiving it. Because the non-volatile storage module offers high data reliability, for example, data storage does not require continuous power supply and remains stored even after a power outage, the risk of contact data loss or tampering is reduced, thereby ensuring the reliability of the one-touch emergency call function.

[0218] In summary, this solution provides users with a fast, stable and effective one-click emergency call function, improves the convenience and reliability of the one-click emergency call function in an emergency, and provides users with additional safety protection.

[0219] It should be noted that the alarm device provided in the above embodiment only uses the division of the above functional modules as an example to illustrate when performing an alarm operation. In actual application, 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 wearable device-based alarm device provided in the above embodiment and the wearable device-based alarm method embodiment are based on the same concept. The specific implementation process is detailed in the method embodiment and will not be repeated here.

[0220] Figure 8 8 is a structural diagram of a wearable device 800 provided in an embodiment of the present application.

[0221] Typically, the wearable device 800 includes a processor 801 and a memory 802 .

[0222] The processor 801 includes one or more processing cores, such as a 4-core processor, an 8-core processor, etc. The processor 801 is implemented in at least one hardware form of DSP (Digital Signal Processing), FPGA (Field-Programmable Gate Array), and PLA (Programmable Logic Array). Alternatively, the processor 801 includes a main processor and a coprocessor. The main processor is a processor for processing data in the awake state, also known as a CPU (Central Processing Unit); the coprocessor is a low-power processor for processing data in the standby state. In one possible implementation, the processor 801 also includes an AI (Artificial Intelligence) processor, which is used to process computing operations related to machine learning.

[0223] The memory 802 includes one or more computer-readable storage media, which are non-transitory, and also includes high-speed random access memory and non-volatile memory, such as one or more magnetic disk storage devices and flash memory storage devices.

[0224] In one possible implementation, the non-transitory computer-readable storage medium in the memory 802 is used to store at least one program code, and the at least one program code is used to be executed by the processor 801 to implement the alarm method based on the wearable device provided in the embodiment of the present application.

[0225] In one possible implementation, wearable device 800 further includes a peripheral device interface 803 and at least one peripheral device. Processor 801, memory 802, and peripheral device interface 803 are connected via a bus or signal lines. Each peripheral device is connected to peripheral device interface 803 via a bus, signal lines, or circuit boards. The peripheral device includes at least one of a radio frequency circuit 804, a camera assembly 805, an audio circuit 806, a positioning assembly 807, and a power supply 808.

[0226] The peripheral device interface 803 is used to connect at least one I / O (Input / Output)-related peripheral device to the processor 801 and the memory 802. In one possible implementation, the processor 801, the memory 802, and the peripheral device interface 803 are integrated on the same chip or circuit board. In another possible implementation, any one or two of the processor 801, the memory 802, and the peripheral device interface 803 are implemented on separate chips or circuit boards, which is not limited in this application.

[0227] The RF circuit 804 is used to receive and transmit RF (Radio Frequency) signals, also known as electromagnetic signals. The RF circuit 804 communicates with communication networks and other communication devices via electromagnetic signals. The RF circuit 804 converts electrical signals into electromagnetic signals for transmission, or converts received electromagnetic signals into electrical signals. In one possible implementation, the RF circuit 804 includes: an antenna system, an RF transceiver, one or more amplifiers, a tuner, an oscillator, a digital signal processor, a codec chipset, a user identity module card, and the like. The RF circuit 804 communicates with other terminals via at least one wireless communication protocol. Such wireless communication protocols include, but are not limited to, the World Wide Web, metropolitan area networks, intranets, various generations of mobile communication networks (2G, 3G, 4G, and 5G), wireless local area networks, and / or WiFi networks. In one possible implementation, the RF circuit 804 also includes circuits related to Bluetooth or NFC (Near Field Communication), which is not limited in this application.

[0228] The camera assembly 805 is used to capture images or videos. In one possible implementation, the camera assembly 805 also includes a flash. The flash can be a single-color temperature flash or a dual-color temperature flash. A dual-color temperature flash is a combination of a warm light flash and a cool light flash, used to compensate for light at different color temperatures.

[0229] Audio circuit 806 includes a microphone and a speaker. The microphone is used to collect sound waves from the user and the environment, and converts the sound waves into electrical signals for input to processor 801 for processing, or input to RF circuit 804 for voice communication. The speaker is used to convert electrical signals from processor 801 or RF circuit 804 into sound waves. The speaker is a traditional thin film speaker or a piezoelectric ceramic speaker. In the case of a piezoelectric ceramic speaker, the speaker can not only convert electrical signals into sound waves audible to humans, but also convert electrical signals into sound waves inaudible to humans for purposes such as distance measurement.

[0230] Positioning component 807 is used to locate the current geographic location of wearable device 800 to implement navigation or LBS (Location Based Service). Positioning component 807 can be based on the US GPS (Global Positioning System), China's Beidou system, Russia's Greninja system, or the European Union's Galileo system.

[0231] Power supply 808 is used to power the various components of wearable device 800. Power supply 808 can be AC ​​power, DC power, a disposable battery, or a rechargeable battery. If power supply 808 includes a rechargeable battery, the rechargeable battery can be a wired rechargeable battery or a wireless rechargeable battery. A wired rechargeable battery is charged via a wired line, while a wireless rechargeable battery is charged via a wireless coil. The rechargeable battery is also configured to support fast charging technology.

[0232] Those skilled in the art will understand that Figure 8 The structure shown in the figure does not constitute a limitation on the wearable device 800, and may include more or fewer components than shown in the figure, or combine certain components, or adopt a different component arrangement.

[0233] In an exemplary embodiment, a computer-readable storage medium is further provided, such as a memory including program code, wherein the program code can be executed by a processor in a wearable device to perform the above-mentioned wearable device-based alarm method. For example, the computer-readable storage medium can be a read-only memory (ROM), a random access memory (RAM), a compact disc read-only memory (CD-ROM), a magnetic tape, a floppy disk, an optical data storage device, etc.

[0234] In an exemplary embodiment, a computer program product or computer program is also provided, which includes a computer program code, which is stored in a computer-readable storage medium. The processor of the wearable device reads the computer program code from the computer-readable storage medium, and the processor executes the computer program code, so that the wearable device executes the above-mentioned alarm method based on the wearable device.

[0235] Those skilled in the art will understand that all or part of the steps to implement the above embodiments may be accomplished by hardware, or by a program to instruct the relevant hardware, and the program may be stored in a computer-readable storage medium, which may be a read-only memory, a disk, or an optical disk, etc.

[0236] The above description is merely an optional embodiment of the present application and is not intended to limit the present application. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present application shall be included in the scope of protection of the present application.

Claims

1. An alarm method based on a wearable device, characterized in that: The wearable device includes an alarm button arranged on an outer surface of the device and the wearable device has a built-in non-volatile storage module; The method comprises: Receiving contact data sent by a first mobile device based on the established wireless connection; wherein the contact data is obtained by the first mobile device through a page provided by a target application; the target application is used to provide services for the wearable device; Writing the contact data into the non-volatile storage module; In response to a triggering operation on the alarm button, the contact data is read from the non-volatile storage module, and an alarm operation is performed based on the contact data.

2. The method according to claim 1, characterized in that The performing an alarm operation based on the contact data includes: If the wearable device has a cellular network function, performing an alarm operation via the cellular network based on the contact data; If the wearable device does not have the cellular network function, a first alarm request is sent to the first mobile device based on the established wireless connection; wherein the first alarm request is used to instruct the first mobile device to perform an alarm operation based on the contact data.

3. The method according to claim 2, characterized in that The method further comprises: If the wearable device does not have the cellular network function, after establishing a wireless connection with the second mobile device, sending a second alarm request to the second mobile device based on the established wireless connection; The second mobile device is a device with a wireless connection function turned on and having the cellular network function; the second alarm request is used to instruct the second mobile device to perform an alarm operation based on the currently received contact data.

4. The method according to claim 1, wherein The performing an alarm operation based on the contact data includes: Acquiring auxiliary decision data; wherein the auxiliary decision data includes at least one of environmental monitoring data, location data of a target object, physiological indicator data, or audio data; the target object is a subject wearing the wearable device; An alarm operation is performed based on the contact data and the auxiliary decision data.

5. The method according to claim 4, characterized in that The performing of an alarm operation based on the contact data and the auxiliary decision data includes: Determining the current danger level and danger type of the target object based on the environmental monitoring data, the physiological indicator data and the audio data of the target object; Based on the contact data and the location data, an alarm operation matching the danger level and the danger type is performed.

6. The method according to claim 5, characterized in that The performing an alarm operation that matches the danger level and the danger type based on the contact data and the location data includes: determining a second object based on the first object and the risk type; wherein the first object is the object indicated by the contact data; generating an alarm summary that matches the hazard level and the hazard type; wherein the alarm summary includes the location data; The alarm summary is sent to the first object and the second object respectively.

7. The method according to claim 6, characterized in that The sending the alarm summary to the first object and the second object respectively includes: Initiate a call request to the first object and the second object respectively, and after the other party answers the call, broadcast the alarm summary in voice form; or, Sending a text alarm message to the first object and the second object respectively; wherein the text alarm message includes the alarm summary; or, Initiate the call request to the first object and send the text alert message to the second object; or, The text alarm message is sent to the first object, and the call request is initiated to the second object.

8. The method according to claim 5, characterized in that The method further comprises: Determining the type of location where the target object is currently located based on the location data of the target object; If the determined location type is home, a control instruction is sent to the smart home device according to the danger type; wherein the control instruction is used to instruct the smart home device to enter a working state matching the danger type.

9. The method according to claim 1, characterized in that The method further comprises: within a preset time period after the alarm button is triggered, in response to the alarm button being triggered again, canceling the alarm operation; or, In response to the triggering operation of the alarm button, a confirmation request is sent to the first mobile device based on the established wireless connection; wherein the confirmation request is used to instruct the first mobile device to output a prompt message; the prompt message is used to prompt confirmation on whether to execute the alarm operation.

10. The method according to claim 1, characterized in that The wearable device also has a built-in microphone; the method further includes: receiving a remote control instruction sent by a third mobile device; wherein the third mobile device is a device used by a first object, and the first object is the object indicated by the contact data; In response to the remote control instruction, the microphone of the wearable device is controlled to collect audio data, and the collected audio data is sent to the third mobile device.

11. An alarm method based on a wearable device, characterized in that: The wearable device includes an alarm button arranged on an outer surface of the device and the wearable device has a built-in non-volatile storage module; The method comprises: Acquiring contact data based on a page provided by a target application; wherein the target application is used to provide services for the wearable device; Sending the contact data to the wearable device based on the established wireless connection; Among them, the contact data is written into the non-volatile storage module after being received by the wearable device; the wearable device is used to read the contact data from the non-volatile storage module in response to the triggering operation of the alarm button, and perform an alarm operation based on the contact data.

12. An alarm device based on a wearable device, characterized in that: The device comprises: a receiving unit configured to receive contact data sent by a first mobile device based on the established wireless connection; wherein the contact data is obtained by the first mobile device through a page provided by a target application; and the target application is used to provide services for the wearable device; a writing unit, configured to write the contact data into a non-volatile storage module of the wearable device; The execution unit is configured to read the contact data from the non-volatile storage module in response to a trigger operation on the alarm button set on the outer surface, and execute an alarm operation based on the contact data.

13. An alarm device based on a wearable device, characterized in that: The wearable device includes an alarm button arranged on an outer surface of the device and the wearable device has a built-in non-volatile storage module; The device comprises: an acquisition unit configured to acquire contact data based on a page provided by a target application; wherein the target application is used to provide services for the wearable device; a second sending unit, configured to send the contact data to the wearable device based on the established wireless connection; Among them, the contact data is written into the non-volatile storage module after being received by the wearable device; the wearable device is used to read the contact data from the non-volatile storage module in response to the triggering operation of the alarm button, and perform an alarm operation based on the contact data.

14. A wearable device, characterized in that: The device includes a processor and a memory, wherein the memory stores at least one program code, and the at least one program code is loaded and executed by the processor to implement the alarm method based on the wearable device according to any one of claims 1 to 10; Or, the alarm method based on a wearable device as described in claim 11.

15. A computer-readable storage medium, characterized in that The storage medium stores at least one program code, and the at least one program code is loaded and executed by the processor to implement the alarm method based on the wearable device as described in any one of claims 1 to 10; or the alarm method based on the wearable device as described in claim 11.