Emergency help seeking method and device, equipment, storage medium and program product
By monitoring and responding to the trigger of operation buttons in the smart wearable device, combined with the vibration feedback mechanism, emergency help operations can be performed without complex operations in emergencies, solving the problem of insufficient operation convenience in the prior art, and significantly improving the emergency help efficiency of special groups.
Patent Information
- Application Number
- CN202510008665.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-03
- Publication Date
- 2025-05-27
AI Technical Summary
The existing emergency help method has shortcomings in terms of operational ease, especially for special users such as visually impaired, the elderly and children, who are affected in emergency situations.
By monitoring whether the operation key of the smart wearable device is triggered, including the Braille side key, and vibrating the device when the key is triggered to prompt the user for the current operation type. In response to the key operation, an emergency help operation is performed, such as calling for pre-store of emergency contacts, sending help information, collecting environmental images, etc.
It realizes that emergency help is directly executed without complex touch screen operations. Through vibration feedback, the user's operation confirmation and convenience are improved, and the help efficiency of special groups in emergency situations is significantly improved.
Smart Images

Figure CN120048068A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of emergency assistance, and particularly to an emergency assistance method, device, equipment, storage medium, and program product. Background Art
[0002] In the related art, most communication devices (such as smart watches, smart glasses, mobile phones, etc.) need to be operated through a touch screen to perform operations such as communication calls. However, for some special users (such as visually impaired people, the elderly, and children, etc.), due to unfamiliarity and inconvenience in operating the above smart devices, it will affect their help-seeking efficiency in emergency situations. Therefore, it is necessary to seek an emergency assistance method with convenient operation. Summary of the Invention
[0003] The main purpose of this application is to provide an emergency assistance method, device, equipment, storage medium, and program product, aiming to solve the technical problem of poor convenience in operating the emergency assistance method in the related art.
[0004] To achieve the above purpose, this application proposes an emergency assistance method, which includes:
[0005] Monitor whether the operation button of the smart wearable device is triggered; the operation button includes a braille side button;
[0006] When it is monitored that the operation button is triggered, vibrate the smart wearable device to prompt the user about the current type of button operation; among them, different button operation types correspond to different vibration durations;
[0007] In response to the button operation, perform an emergency assistance operation.
[0008] In one embodiment, the button operation types include long-pressing the button and short-pressing the button;
[0009] The steps of controlling the smart wearable device to perform an emergency assistance operation in response to the button operation include:
[0010] When the button operation type is long-pressing the button, call the pre-stored emergency contact and send a help-seeking message to the pre-stored emergency contact; among them, the help-seeking message includes the current location information.
[0011] In one embodiment, the emergency assistance method further includes:
[0012] When the button operation type is long-pressing the button, control the image acquisition device of the smart wearable device to collect the current environmental image information of the user;
[0013] Send the current environmental image information to the pre-stored emergency contact.
[0014] In one embodiment, the steps of controlling the smart wearable device to perform an emergency assistance operation in response to a key operation further include:
[0015] When the key operation type is a short press of the key, control the smart wearable device to display the address book information; wherein, the address book information includes at least one pre-stored emergency contact information;
[0016] In response to the user's contact selection operation, output the pre-stored emergency contact information currently selected by the user in a voice form;
[0017] When it is detected that the operation key is double-clicked, call the pre-stored emergency contact currently selected by the user.
[0018] In one embodiment, the emergency assistance method further includes:
[0019] Obtain the user's health monitoring information; wherein, the health monitoring information includes heart rate information and mood information;
[0020] When the health monitoring information is abnormal, call the pre-stored emergency contact.
[0021] In one embodiment, the emergency assistance method further includes:
[0022] Obtain the user's historical call information;
[0023] Based on the historical call information, optimize the call order of multiple pre-stored emergency contacts.
[0024] In addition, to achieve the above object, the present application also proposes an emergency assistance device, which includes:
[0025] A monitoring module, configured to monitor whether the operation key of the smart wearable device is triggered; the operation key is a Braille side key;
[0026] A vibration module, configured to vibrate the smart wearable device when it is detected that the operation key is triggered, so as to prompt the user of the current key operation type; wherein, different key operation types correspond to different vibration durations;
[0027] A help module, configured to perform an emergency assistance operation in response to a key operation.
[0028] In addition, to achieve the above object, the present application also proposes a smart wearable device, which includes:
[0029] A controller, the controller includes a memory, a processor, and a computer program stored on the memory and executable on the processor, and the computer program is configured to implement the steps of the emergency assistance method as described above;
[0030] A Braille side key, the Braille side key is connected to the controller;
[0031] A vibration motor, connected to a controller, for generating vibrations to prompt the user of the current type of key operation being performed;
[0032] An image acquisition device, connected to the controller, for acquiring the current environmental image information of the user;
[0033] An electroacoustic device, connected to the controller;
[0034] A physiological sensor, connected to the controller, for acquiring the health monitoring information of the user.
[0035] In addition, to achieve the above object, the present application also proposes a storage medium, which is a computer-readable storage medium, and a computer program is stored on the storage medium. When the computer program is executed by a processor, the steps of the emergency assistance method as described above are implemented.
[0036] In addition, to achieve the above object, the present application also proposes a computer program product, which includes a computer program. When the computer program is executed by a processor, the steps of the emergency assistance method as described above are implemented.
[0037] One or more technical solutions proposed by the present application have at least the following technical effects:
[0038] The emergency assistance method provided by the present application can monitor in real time whether the operation keys of the smart wearable device are triggered; among them, the operation keys include braille side keys; and when it is detected that the operation keys are triggered, the smart wearable device is vibrated to prompt the user of the current type of key operation being performed; among them, different key operation types correspond to different vibration durations; the smart wearable device can execute an emergency assistance operation in response to the key operation. In the present application, the corresponding emergency assistance operation can be directly executed by triggering the operation keys, without performing complex touch screen operations; and when the operation keys are triggered, vibrations can be generated to prompt the user of the current key operation being performed, helping the user confirm whether the current operation is correct, so that the convenience of emergency assistance for special populations (such as visually impaired people, the elderly, and children, etc.) in critical situations can be effectively improved. BRIEF DESCRIPTION OF THE DRAWINGS
[0039] The accompanying drawings herein are incorporated into the specification and form a part of the specification, showing embodiments consistent with the present application, and are used together with the specification to explain the principles of the present application.
[0040] To more clearly illustrate the technical solutions in the embodiments of the present application or related technologies, the following will briefly introduce the accompanying drawings required for the description of the embodiments or related technologies. Obviously, for those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0041] Figure 1 It is a schematic flowchart provided for the first embodiment of the emergency assistance method of the present application;
[0042] Figure 2 It is a schematic module structure diagram of the emergency assistance device in the embodiment of the present application;
[0043] Figure 3 It is a schematic structure diagram of the intelligent wearable device in the embodiment of the present application;
[0044] Figure 4 It is a schematic structure diagram of the controller of the hardware operating environment involved in the emergency assistance method in the embodiment of the present application.
[0045] The realization of the purpose of the present application, functional features and advantages will be further described in conjunction with the embodiments and with reference to the accompanying drawings. Specific Embodiments
[0046] It should be understood that the specific embodiments described herein are only used to explain the technical solutions of the present application and are not used to limit the present application.
[0047] To better understand the technical solutions of the present application, the following will be described in detail in conjunction with the accompanying drawings of the specification and specific embodiments.
[0048] The main solution of the embodiment of the present application is: monitoring whether the operation button of the intelligent wearable device is triggered; the operation button includes a braille side button; when it is monitored that the operation button is triggered, vibrating the intelligent wearable device to prompt the user of the current type of button operation; wherein, different types of button operations correspond to different vibration durations; in response to the button operation, an emergency assistance operation is executed.
[0049] Since in related technologies, most communication devices (such as smart watches, smart glasses, mobile phones, etc.) need to be operated through a touch screen for operations such as communication calls. However, for some special users (such as visually impaired people, the elderly and children, etc.), due to unfamiliarity and inconvenience in operating the above intelligent devices, it will affect their help-seeking efficiency in case of emergency. Therefore, it is necessary to seek an emergency assistance method with convenient operation.
[0050] The present application provides a solution, which can directly execute the corresponding emergency assistance operation by triggering an operation button, without the need for complex touch screen operations. Moreover, when the operation button is triggered, it can generate vibrations to prompt the user about the current button operation being performed, helping the user confirm whether the current operation is correct. In this way, the convenience of emergency assistance for special groups (such as visually impaired people, the elderly, and children, etc.) in critical situations can be effectively improved.
[0051] It should be noted that the execution subject of this embodiment can be a computing service device with data processing, network communication, and program running functions, such as a tablet computer, a mobile phone, etc., or an electronic device capable of implementing the above functions. Hereinafter, taking a smart wearable device as an example, this embodiment and the following embodiments will be described.
[0052] Based on this, an embodiment of the present application provides an emergency assistance method, referring to Figure 1 , Figure 1 which is a schematic flowchart of the first embodiment of the emergency assistance method of the present application.
[0053] In this embodiment, the emergency assistance method includes steps S100 to S300:
[0054] Step S100, monitor whether the operation button of the smart wearable device is triggered.
[0055] Among them, the operation button includes a braille side button.
[0056] Step S200, when it is monitored that the operation button is triggered, vibrate the smart wearable device to prompt the user about the type of the current button operation being performed.
[0057] Among them, different button operation types correspond to different vibration durations.
[0058] Step S300, in response to the button operation, execute the emergency assistance operation.
[0059] Specifically, the smart wearable device can continuously monitor the user's button operation. The above operation button can be a conventional button on the smart wearable device, or it can also be a specially designed braille side button for the convenience of visually impaired people. The smart wearable device can detect in real time whether the operation button is triggered through built-in sensors (such as touch sensors or button sensors).
[0060] When the smart wearable device detects that an operation button is triggered, the smart wearable device will provide feedback to the user in the form of vibration to indicate the type of button operation being performed. Different button operation types can correspond to different vibration durations, so that the user can identify different operations based on the length of the vibration. For example, the button operation types can include long-pressing the button and short-pressing the button; the vibration duration of the smart wearable device can be consistent with the duration of the button press, that is, when the button is short-pressed, the smart wearable device performs a short vibration; when the button is long-pressed, the smart wearable device performs a long vibration. A short vibration may indicate a simple confirmation operation, while a long vibration may indicate the sending of an emergency SOS signal; through this vibration feedback mechanism, the interaction experience between the user and the smart wearable device can be enhanced, and additional operation confirmation is provided for special users who are not familiar with smart devices, such as visually impaired people, the elderly, and children, reducing the barriers to using the device.
[0061] When the user triggers the operation button, the smart wearable device will perform an emergency SOS operation; for example, sending a distress message (such as a text message, voice message, email, etc.) to a pre-stored emergency contact to inform them of the user's current location and status; activating the location tracking function to locate the user's current location through GPS (Global Positioning System) to facilitate the rescue personnel to quickly find the user; or opening a connection to the public rescue service, such as dialing an emergency call (such as 120, 110, etc.) or contacting a specific emergency response platform. By simply pressing a button, the emergency SOS operation can be performed, which can effectively shorten the user's response time in an emergency and ensure the convenience and timeliness of help for specific users (such as children, the elderly, and visually impaired people, etc.).
[0062] To provide a more intelligent emergency response function and ensure that the smart wearable device can respond accordingly according to the user's needs in different situations, that is, different emergency SOS operations can be performed according to different button operations. In a feasible implementation manner, step S300 may specifically include: when the button operation type is long-pressing the button, calling the pre-stored emergency contact and sending a distress message to the pre-stored emergency contact; wherein, the distress message includes the current location information. When the user encounters an emergency, they can long-press the braille side key on the smart wearable device. After detecting the user's long-press operation, the device can directly call and send a distress message to the pre-stored emergency contact; the long-press operation generally needs to last for a certain period of time to avoid accidental operations by the user. The distress message can be a text message such as a distress SMS, which contains the user's current location information, so that the emergency contact can provide timely assistance to the user based on this.
[0063] In addition, to ensure that pre-stored contacts can obtain more comprehensive information to provide accurate assistance, when the key operation type is a long press of the key, the image acquisition device of the smart wearable device can also be controlled to collect the current environmental image information of the user; the current environmental image information is sent to the pre-stored emergency contacts. Generally, an image acquisition device (such as a front camera, a rear camera, etc.) is provided on the smart wearable device, and the camera can be controlled to turn on to record the user's on-site environment, and the recorded video information is pushed to the pre-stored emergency contacts in real time, so that the emergency contacts can understand the user's on-site situation.
[0064] To ensure more convenient daily communication for special users such as children, the elderly, and visually impaired persons, step S300 may further include steps S310 to S330:
[0065] Step S310, when the key operation type is a short press of the key, control the smart wearable device to display the address book information.
[0066] Among them, the address book information includes at least one pre-stored emergency contact information.
[0067] Step S320, in response to the user's contact selection operation, output the pre-stored emergency contact information currently selected by the user in a voice form.
[0068] Step S330, when it is detected that the operation key is double-clicked, call the pre-stored emergency contact currently selected by the user.
[0069] Specifically, when the user short presses the operation key, the smart wearable device can display the address book information, and the address book information includes at least one pre-stored emergency contact information (including contact name, contact phone number, address, etc.). To facilitate the elderly and children to more simply and directly select contacts based on the address book information, the above address book information can be displayed in a simplified form; for example, only the contact name can be displayed, and the user can select the emergency contact to be contacted according to the name. The user can slide the screen or select the emergency contact to be contacted through the up and down keys.
[0070] Considering special groups such as visually impaired people, the elderly, and children who may have difficulties in text recognition, when the user performs a contact selection operation, the smart wearable device can output the pre-stored emergency contact information currently selected by the user in the form of voice (e.g., voice broadcast the note name of the current emergency contact), confirm and feedback the currently selected contact information to the user through voice, ensuring that the user can also confirm the information of the emergency contact they have selected when their vision is inconvenient or they cannot directly view the screen. When it is detected that the user performs a double-click operation (i.e., quickly presses the operation button twice in succession), the smart wearable device immediately automatically calls the emergency contact currently selected by the user to achieve convenient calling. In addition, when calling the emergency contact, the smart wearable device can also provide confirmation information through voice; e.g., "Calling Zhang San, father, contact number 123-456-7890", to ensure that the user can know the contact being called and avoid misdialing. Through the above operations, special users such as the elderly, children, and visually impaired people can complete dialing and contacting without the assistance of others, which also helps to enhance their independence and confidence.
[0071] It is worth mentioning that the smart wearable device can also monitor the user's health status in real time to obtain the user's health monitoring information; among them, the health monitoring information can include but is not limited to heart rate information and emotion information; in the case of abnormal health monitoring information, it can call the pre-stored emergency contact to provide more comprehensive health protection and safety warning for the user.
[0072] For example, the physiological information of the user (such as heart rate, etc.) can be measured in real time through the physiological sensor built in the smart wearable device, and the user's emotion can be judged through technologies such as heart rate variability (HRV), galvanic skin response, or voice analysis; among them, the judgment of the heart rate can be based on the user's historical heart rate data, set a heart rate health threshold (such as a maximum of 120 beats per minute and a minimum of 50 beats per minute), and when the heart rate exceeds this range, it is determined that the user's current heart rate is abnormal; while the judgment of the user's emotion can be to compare the user's normal emotional state through an emotion analysis algorithm to judge whether they currently have abnormal emotions such as anxiety, depression, or extreme stress, and if the emotion deviates from the normal range, it is marked as an abnormal emotion; when the user has an abnormal health state such as an abnormal heart rate or an abnormal emotion, the smart wearable device will automatically call the emergency contact's phone number, or it can also notify the emergency contact through a message push, facilitating the emergency contact to take timely action and reducing potential risks.
[0073] In addition, the smart wearable device can also perform intelligent learning based on the user's daily usage habits. It can obtain the user's historical call information and optimize the call order of multiple pre-stored emergency contacts based on the historical call information. The historical call information can include the emergency contacts in the historical calls and information such as the call success rate, answer time, response time, and call frequency corresponding to the emergency contacts. Based on the above information, the dialing order can be intelligently optimized to ensure that the user can find the required contacts faster in case of emergency. For example, frequently contacted contacts first: A priority can be assigned to each contact according to the user's historical call frequency (the more times contacted within a certain period, the higher the priority), and the contacts with higher priorities will be arranged in the front of the dialing order to ensure that they can be contacted fastest. Or, the contacts with the fastest response time and high call success rate can be called first, and for the contacts with longer response times (i.e., they usually take longer to answer the phone or have a higher average delay in answering), they can be placed at the back of the call sequence.
[0074] It can be understood that the emergency assistance method provided by the embodiments of the present application can directly execute the corresponding emergency assistance operation by triggering the operation button without performing complex touch screen operations. And when the operation button is triggered, it can generate vibrations to prompt the user of the current button operation being performed, helping the user confirm whether the current operation is correct. In this way, the convenience of emergency assistance for special groups (such as visually impaired people, the elderly, and children, etc.) in critical situations can be effectively improved.
[0075] The present application also provides an emergency assistance device. Please refer to Figure 2 , and the emergency assistance device includes:
[0076] A monitoring module 10 for monitoring whether the operation button of the smart wearable device is triggered; the operation button is a braille side button;
[0077] A vibration module 20 for vibrating the smart wearable device when it is detected that the operation button is triggered to prompt the user of the type of button operation being performed; wherein, different button operation types correspond to different vibration durations;
[0078] A help module 30 for performing an emergency assistance operation in response to the button operation.
[0079] The emergency assistance device provided by the present application adopts the emergency assistance method in the above embodiments and can solve the technical problem of poor operation convenience of the emergency assistance method in the related art. Compared with the related art, the beneficial effects of the emergency assistance device provided by the present application are the same as those of the emergency assistance method provided by the above embodiments, and the other technical features in the above emergency assistance device are the same as those disclosed in the method of the above embodiments and will not be elaborated here.
[0080] The present application also provides an intelligent wearable device. Figure 3 It is a schematic structural diagram of the intelligent wearable device provided by an embodiment of the present application. As Figure 3 shown, the intelligent wearable device may include a controller, a Braille side key, a vibration motor, an image acquisition device, an electroacoustic device, and a physiological sensor; wherein, the Braille side key, the vibration motor, the image acquisition device, the electroacoustic device, and the physiological sensor are all connected to the controller.
[0081] Specifically, the intelligent wearable device in the embodiment of the present application may include but is not limited to devices such as smart watches, smart bracelets, etc.; wherein, the Braille side key is an intelligent programmable Braille side key, which can be set on the side of the main structure of the intelligent wearable device. Both the Braille side key and the vibration motor are connected to the controller. When the controller obtains a signal that the Braille side key is triggered, it can control the vibration motor to vibrate, generating corresponding short vibrations or long vibrations to prompt the user about the type of key operation currently being performed; or the Braille side key can also be directly connected to the vibration motor, and the vibration motor can generate vibrations simultaneously when the Braille side key is triggered; the key design of the Braille side key needs to conform to ergonomics, be easy to operate, and facilitate distinguishing from other function keys. The Braille side key is set as a shortcut key for triggering emergency communication, which is easy for special users such as visually impaired people to identify.
[0082] The image acquisition device can be a device such as a camera that can obtain on-site images. After the image acquisition device acquires the current environmental image information of the user, it can send it to the controller, and after being processed by the controller, it is pushed to the guardianship end (such as the terminal corresponding to the emergency contact, the emergency rescue platform, etc.), so that the emergency contact and the relevant rescue platform can timely understand the current state of the user.
[0083] The electroacoustic device may include a microphone for picking up sound and a speaker for playing sound. The microphone can collect the audio information of the user, and the user can thus control the intelligent wearable device to make a call through voice; for example, the microphone collects the audio information of the user saying "Call Zhang San" and uploads it to the controller. After the controller recognizes the audio information, it can call the corresponding emergency contact Zhang San; the microphone can also collect the surrounding environmental sounds and send them to the controller when the user encounters an emergency. The controller can package the graphic information collected by the image acquisition device and the above-mentioned surrounding environmental sounds and send them to the guardianship end, so that the emergency contact and the relevant rescue platform can obtain more comprehensive help information. The speaker can then perform voice broadcast; for example, when the user selects a contact, the controller can control the speaker to voice broadcast the note information of the currently selected contact, etc., so that special users such as visually impaired people can know whether they have selected the correct contact.
[0084] A physiological sensor can be used to collect health monitoring information of a user. The physiological sensor includes, but is not limited to, biosensor for collecting biological characteristics such as heart rate, blood pressure, body temperature, pulse, etc. After the physiological sensor collects the health monitoring information of the user, it can send the information to the controller for further processing (such as abnormal heart rate judgment, emotion analysis, etc.). The controller can push the relevant health monitoring information to the emergency contact and send an abnormal prompt message to the emergency contact of the user when it determines that there is an abnormality in the health monitoring information of the user, ensuring that the emergency contact can track the change of the user's health status and take corresponding measures.
[0085] The above-mentioned controller includes: at least one processor; and a memory communicatively connected to the at least one processor; wherein, the memory stores instructions executable by the at least one processor, and the instructions are executed by the at least one processor so that the at least one processor can execute the emergency assistance method in the first embodiment above.
[0086] The following refers to Figure 4 , which shows a schematic structural diagram of a controller suitable for implementing the embodiments of the present application. As Figure 4 shown, the controller may include a processing device 1001 (such as a central processing unit, a graphics processing unit, etc.), which can perform various appropriate actions and processes according to a program stored in a read-only memory (ROM: Read Only Memory) 1002 or a program loaded from a storage device 1003 into a random access memory (RAM: Random Access Memory) 1004. In the RAM 1004, various programs and data required for the operation of the controller are also stored. The processing device 1001, the ROM 1002, and the RAM 1004 are connected to each other through a bus 1005. An input / output (I / O) interface 1006 is also connected to the bus. Generally, the following systems can be connected to the I / O interface 1006: an input device 1007 including, for example, a touch screen, a touchpad, a keyboard, a mouse, an image sensor, a microphone, an accelerometer, a gyroscope, etc.; an output device 1008 including, for example, a liquid crystal display (LCD: Liquid Crystal Display), a speaker, a vibrator, etc.; a storage device 1003 including, for example, a magnetic tape, a hard disk, etc.; and a communication device 1009. The communication device 1009 can allow the controller to communicate with other devices wirelessly or wiredly to exchange data. Although the figure shows a controller with various systems, it should be understood that it is not required to implement or have all the systems shown. Instead, more or fewer systems can be implemented or had.
[0087] In particular, according to the embodiments disclosed in the present application, the processes described above with reference to the flowcharts can be implemented as computer software programs. For example, the embodiments disclosed in the present application include a computer program product that includes a computer program carried on a computer-readable medium, and the computer program includes program code for executing the methods shown in the flowcharts. In such an embodiment, the computer program can be downloaded and installed from a network via a communication device, or installed from a storage device 1003, or installed from a ROM 1002. When the computer program is executed by a processing device 1001, the above-mentioned functions defined in the methods of the embodiments disclosed in the present application are executed. It should be noted that Figure 4 The controller shown is merely an example and should not impose any limitations on the functions and scope of use of the embodiments of the present application.
[0088] The smart wearable device provided by the present application adopts the emergency assistance method in the above-mentioned embodiment, and can solve the technical problem of poor operation convenience of the emergency assistance method in the related art. Compared with the related art, the beneficial effects of the smart wearable device provided by the present application are the same as those of the emergency assistance method provided by the above-mentioned embodiment, and other technical features in the smart wearable device are the same as those disclosed in the method of the previous embodiment, which will not be elaborated here.
[0089] It should be understood that the various parts disclosed in the present application can be implemented by hardware, software, firmware, or a combination thereof. In the description of the above embodiments, specific features, structures, materials, or characteristics can be combined in a suitable manner in any one or more embodiments or examples.
[0090] The above is only the specific implementation manner of the present application, but the protection scope of the present application is not limited thereto. Any person skilled in the art within the technical scope disclosed in the present application can easily think of changes or substitutions, which should all be covered by the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.
[0091] The present application provides a computer-readable storage medium having computer-readable program instructions (i.e., computer programs) stored thereon, and the computer-readable program instructions are used to execute the emergency assistance method in the above-mentioned embodiment.
[0092] The computer-readable storage medium provided by this application can be, for example, a USB flash drive, but is not limited to electrical, magnetic, optical, electromagnetic, infrared, or semiconductor systems or devices, or any combination of the above. More specific examples of computer-readable storage media can include, but are not limited to: electrical connections with one or more wires, portable computer disks, hard disks, random access memory (RAM), read-only memory (ROM), erasable programmable read-only memory (EPROM) or flash memory, optical fibers, portable compact disk read-only memory (CD-ROM), optical storage devices, magnetic storage devices, or any suitable combination of the above. In this embodiment, the computer-readable storage medium can be any tangible medium that contains or stores a program, and this program can be used by or in combination with an instruction execution system or device. The program code contained on the computer-readable storage medium can be transmitted by any appropriate medium, including but not limited to: wires, optical cables, RF (Radio Frequency), etc., or any suitable combination of the above.
[0093] The above computer-readable storage medium can be included in a smart wearable device; or it can exist separately without being assembled into the smart wearable device.
[0094] The above computer-readable storage medium carries one or more programs. When the above one or more programs are executed by a smart wearable device, the smart wearable device is enabled to: monitor whether an operation button of the smart wearable device is triggered; the operation button includes a braille side button; in the case where it is monitored that the operation button is triggered, vibrate the smart wearable device to prompt the user about the type of button operation currently being performed; wherein, different button operation types correspond to different vibration durations; in response to the button operation, perform an emergency assistance operation.
[0095] Computer program code for performing the operations of this application can be written in one or more programming languages or combinations thereof. The above-mentioned programming languages include object-oriented programming languages such as Java, Smalltalk, C++, and also include conventional procedural programming languages such as the "C" language or similar programming languages. The program code can be executed entirely on the user's computer, partially on the user's computer, executed as an independent software package, partially on the user's computer and partially on a remote computer, or entirely on a remote computer or server. In the case of a remote computer, the remote computer can be connected to the user's computer through any kind of network, including a local area network (LAN) or a wide area network (WAN), or it can be connected to an external computer (for example, by using an Internet service provider to connect through the Internet).
[0096] The flowcharts and block diagrams in the accompanying drawings illustrate the possible architectures, functions, and operations of systems, methods, and computer program products according to various embodiments of this application. In this regard, each block in the flowchart or block diagram can represent a module, a program segment, or a part of the code, and this module, program segment, or part of the code contains one or more executable instructions for implementing the specified logical function. It should also be noted that in some alternative implementations, the functions marked in the blocks can occur in a different order from that marked in the accompanying drawings. For example, two consecutively represented blocks can actually be executed substantially in parallel, and they can sometimes be executed in the reverse order, depending on the functions involved. It should also be noted that each block in the block diagram and / or flowchart, as well as the combination of blocks in the block diagram and / or flowchart, can be implemented by a dedicated hardware-based system for performing the specified functions or operations, or can be implemented by a combination of dedicated hardware and computer instructions.
[0097] The modules described in the embodiments of this application can be implemented in software or in hardware. Among them, the name of the module does not constitute a limitation on the unit itself in some cases.
[0098] The readable storage medium provided by this application is a computer-readable storage medium. The computer-readable storage medium stores computer-readable program instructions (i.e., computer programs) for performing the above-mentioned emergency assistance method, and can solve the technical problem of poor operational convenience of the emergency assistance method in the related art. Compared with the related art, the beneficial effects of the computer-readable storage medium provided by this application are the same as those of the emergency assistance method provided by the above embodiments, and will not be elaborated here.
[0099] The present application also provides a computer program product, including a computer program which, when executed by a processor, implements the steps of the emergency assistance method as described above.
[0100] The computer program product provided by the present application can solve the technical problem of poor operability of the emergency assistance method in the related art. Compared with the related art, the beneficial effects of the computer program product provided by the present application are the same as those of the emergency assistance method provided by the above embodiments, and will not be elaborated here.
[0101] The above are only partial embodiments of the present application, and thus do not limit the patent scope of the present application. Any equivalent structural transformation made by using the content of the specification and drawings of the present application under the technical concept of the present application, or any direct / indirect application in other related technical fields, is included in the patent protection scope of the present application.
Claims
1. An emergency assistance method, characterized in that: The emergency assistance method includes: Monitoring whether an operation button of the smart wearable device is triggered; the operation button includes a Braille side button; When the operation button is detected to be triggered, the smart wearable device is vibrated to prompt the user of the type of button operation currently being performed; wherein different types of button operations correspond to different vibration durations; In response to the key operation, an emergency assistance operation is performed.
2. The emergency assistance method according to claim 1, characterized in that: The key operation types include long press key and short press key; The step of controlling the smart wearable device to perform an emergency assistance operation in response to the key operation includes: In case the button operation type is long pressing the button, a pre-stored emergency contact is called and a help message is sent to the pre-stored emergency contact; wherein the help message includes current location information.
3. The emergency assistance method according to claim 2, characterized in that: The emergency assistance method also includes: When the key operation type is long pressing the key, controlling the image acquisition device of the smart wearable device to acquire the current environment image information of the user; The current environment image information is sent to the pre-stored emergency contact.
4. The emergency assistance method according to claim 2, characterized in that: The step of controlling the smart wearable device to perform an emergency assistance operation in response to the key operation also includes: When the key operation type is a short press, the smart wearable device is controlled to display address book information; wherein the address book information includes at least one pre-stored emergency contact information; In response to the contact selection operation of the user, outputting the pre-stored emergency contact information currently selected by the user in the form of voice; When it is detected that the operation button is double-clicked, a call is made to the pre-stored emergency contact currently selected by the user.
5. The emergency assistance method according to claim 1, characterized in that: The emergency assistance method also includes: Acquire health monitoring information of the user; wherein the health monitoring information includes heart rate information and emotion information; When there is an abnormality in the health monitoring information, a pre-stored emergency contact is called.
6. The emergency assistance method according to any one of claims 1 to 5, characterized in that: The emergency assistance method also includes: Obtaining historical call information of the user; Based on the historical call information, the calling sequence of multiple pre-stored emergency contacts is optimized.
7. An emergency assistance device, characterized in that: The emergency assistance device comprises: A monitoring module, used to monitor whether an operation button of the smart wearable device is triggered; the operation button is a Braille side button; A vibration module, used to vibrate the smart wearable device when it is detected that the operation button is triggered, so as to prompt the user of the type of button operation currently being performed; wherein different button operation types correspond to different vibration durations; The help-seeking module is used to execute an emergency help-seeking operation in response to the key operation.
8. A smart wearable device, characterized in that: The smart wearable device comprises: A controller, the controller comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, the computer program being configured to implement the steps of the emergency assistance method according to any one of claims 1 to 6; A braille side key connected to the controller; A vibration motor, connected to the controller, for generating vibration to prompt the user the type of key operation currently being performed; An image acquisition device, connected to the controller, for acquiring image information of the user's current environment; an electroacoustic device, the electroacoustic device being connected to the controller; A physiological sensor is connected to the controller and is used to collect health monitoring information of the user.
9. A storage medium, characterized in that: The storage medium is a computer-readable storage medium, and a computer program is stored on the storage medium. When the computer program is executed by a processor, the steps of the emergency assistance method according to any one of claims 1 to 6 are implemented.
10. A computer program product, characterized in that The computer program product comprises a computer program, and when the computer program is executed by a processor, the steps of the emergency assistance method according to any one of claims 1 to 6 are implemented.