Method for sending alarm short message by using Bluetooth and electronic equipment
Bluetooth technology automatically sends a distress signal when the phone has no signal or is turned off, solving the problem of inability to contact rescue in an emergency, and achieving fast and safe transmission of distress information, which is suitable for a variety of environments.
Patent Information
- Application Number
- CN202510406984.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-01
- Publication Date
- 2025-07-22
AI Technical Summary
In an emergency, when the mobile phone has no signal or is turned off, it is difficult to effectively contact the police or emergency rescue services, resulting in the inability to obtain timely help.
Bluetooth technology is used to automatically start the sending of distress signals when the phone has no signal or is turned off. Surrounding devices detect and send positioning information to the emergency service department through Bluetooth scanning. Built-in intelligent judgment and encryption mechanism ensure safe and reliable transmission of information.
It improves the response speed of distress signals, ensures information security, simplifies the distress process, is suitable for a variety of environments, and covers more potential users.
Smart Images

Figure CN120358460A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of Bluetooth, and in particular to a method and electronic equipment for sending alarm text messages using Bluetooth. Background Art
[0002] In an emergency situation where there is no mobile phone signal, if you need to call the police for help, it is undoubtedly a very anxious and distressing thing. Especially in some extreme environments or situations, people may encounter the dilemma of low battery or even automatic shutdown of their mobile phones, which will undoubtedly aggravate people's panic.
[0003] Under existing technical conditions, we often feel helpless in the face of such a problem. It is difficult to effectively contact the police or emergency rescue services, and thus we cannot get the necessary support and help. This situation may put the parties in great danger and unable to get rescue in time. In view of this, this paper proposes an innovative solution, that is, a method of sending alarm text messages using Bluetooth technology, in order to solve this problem that has troubled people for a long time. Summary of the invention
[0004] In view of the deficiencies in the prior art, the present invention discloses a method and electronic device for sending an alarm text message using Bluetooth, which are used to solve the above problems.
[0005] The present invention is achieved through the following technical solutions:
[0006] In a first aspect, the present invention provides a method for sending an alarm text message using Bluetooth, comprising the following steps:
[0007] Before the electronic device loses signal or is turned off, the user initiates an emergency message through the electronic device;
[0008] The Bluetooth function of the electronic device is automatically activated, sending out information including an SOS distress signal and the location of the device;
[0009] Other smart devices around detect the distress signal through Bluetooth scanning and automatically collect the sender's location information;
[0010] The collected distress information and location data are automatically sent to the police station or emergency service department via SMS or other instant messaging methods.
[0011] Furthermore, at the moment when the electronic device detects signal recovery, it will automatically stop sending the SOS distress signal; meanwhile, this intelligent electronic device will record in detail all the relevant information of the entire distress event, including the specific time and location of the distress occurrence and the number of distress signals sent. Once the distress event is declared over, the electronic device will use Bluetooth technology to securely transmit this recorded information to the device specified by the user in advance.
[0012] Furthermore, during the process of sending distress messages by the electronic devices, they will give priority to and select those networks with higher signal strength for information transmission, in order to ensure that the distress messages can be received by the emergency services at the fastest speed and with the highest accuracy, so that the emergency situation can be responded to and handled in a timely manner.
[0013] Furthermore, this system is built-in with an advanced intelligent judgment mechanism, which can monitor and analyze the status of intelligent devices in the surrounding environment in real time. When the system detects the presence of multiple intelligent devices around, it will automatically start an intelligent selection program. This program will comprehensively consider the signal strength and power status of each device, and thus intelligently select a device with the strongest signal and the most sufficient power as the information relay. In this way, the system can significantly improve the success rate of sending distress messages and ensure that the distress signals can be conveyed to the rescue personnel in a timely and effective manner in case of an emergency.
[0014] Furthermore, in the electronic device, in order to ensure that the user can accurately send a distress signal in case of an emergency, a secondary confirmation mechanism is built-in. When the user attempts to send a distress message, the system will first prompt the user for confirmation to ensure that they are indeed in an emergency state where help is needed. This mechanism helps prevent misoperations or incorrect sending of distress signals, thus ensuring that emergency service resources are not misused and at the same time providing timely assistance to users who truly need help.
[0015] Furthermore, in the electronic device, when the user needs to send a distress signal to seek help, these devices have intelligent functions and can automatically record the user's physiological parameter information. These physiological parameters include but are not limited to key vital signs such as heart rate, blood pressure, and body temperature. Through such an automatic recording mechanism, the emergency services can quickly obtain more detailed information about the user's current condition after receiving the distress signal. This information is crucial for emergency rescue personnel as it can help them better assess the user's situation and thus formulate a more accurate and effective rescue plan. In addition, the recording of these physiological parameters can also provide important reference data for subsequent medical treatment to ensure that the user can receive continuous and appropriate medical attention after initial rescue.
[0016] Furthermore, it includes an emergency contact notification mechanism, which can play an important role in emergency situations. Specifically, when the user sends a distress signal through the electronic device, the system will automatically trigger a preset program, which will immediately send an emergency notification to the emergency contacts preset by the user in advance. This notification not only contains the user's current location information, but also details the user's distress status, so as to ensure that the user can obtain the necessary help and support in the shortest possible time.
[0017] Furthermore, after the electronic device sends a distress signal, it will immediately activate its built-in positioning system, which will continuously monitor and record the user's location changes. Subsequently, these continuously updated location data will be transmitted by the electronic device to nearby relay devices through Bluetooth technology. As a bridge for information transmission, the relay device will further forward this location information to the emergency service department, so as to ensure that these departments can understand and master the user's exact location in real time, so as to quickly take corresponding rescue measures.
[0018] Furthermore, it includes the encryption processing of the distress signal to ensure the security and privacy of the information during transmission, and prevent it from being intercepted or tampered with by unauthorized third parties.
[0019] In a second aspect, the present invention provides an electronic device, including a processor, a Bluetooth device, a memory, and a program stored in the memory and configured to be executed by the processor. The memory is coupled to the processor, and when the processor executes the program, it implements the method for sending an alarm text message using Bluetooth described in the first aspect.
[0020] The beneficial effects of the present invention are as follows:
[0021] The present invention improves the response speed of the distress signal, enabling the rescue operation to be launched faster. Through encryption technology, the security of user data is enhanced, effectively protecting the privacy of users. The distress process is simplified, and users do not need to manually enter location information, reducing the operation complexity. It is applicable to a variety of environments. Whether in the city or remote areas, it can ensure the stable transmission of signals. The popularity of electronic devices makes this method widely applicable and can cover more potential users. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0023] Figure 1 It is a flowchart of the method steps for sending alarm text messages using Bluetooth;
[0024] Figure 2 It is a flow chart of a method for sending alarm text messages using Bluetooth;
[0025] Figure 3 It is a schematic diagram of an electronic device. DETAILED DESCRIPTION
[0026] In order to make the purpose, technical solution and advantages of the embodiments of the present invention clearer, the technical solution in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0027] In one embodiment, referring to Figure 1 and Figure 2 As shown, a method for sending an alarm text message using Bluetooth is provided, comprising the following steps:
[0028] Before the electronic device loses signal or is turned off, the user initiates an emergency message through the electronic device;
[0029] The Bluetooth function of the electronic device is automatically activated, sending out information including an SOS distress signal and the location of the device;
[0030] Other smart devices around detect the distress signal through Bluetooth scanning and automatically collect the sender's location information;
[0031] The collected distress information and location data are automatically sent to the police station or emergency service department via SMS or other instant messaging methods.
[0032] In this embodiment, when the electronic device detects that the signal is restored, it will automatically stop sending the SOS distress signal. At the same time, the intelligent electronic device will record the relevant information of the entire distress event in detail, including the exact time and location of the distress and the number of times the distress signal was sent. Once the distress event is over, the electronic device will use Bluetooth technology to securely transmit the recorded information to the device pre-set by the user.
[0033] In this embodiment, during the process of sending a distress message by the electronic device, it will prioritize and select those networks with higher signal strength for message transmission. This process is crucial because it directly relates to whether the distress message can be received by the emergency service department at the fastest speed and with the highest accuracy. To achieve this goal, the intelligent algorithm built into the electronic device will continuously scan the available network signals and evaluate their strength and stability. Once a network with higher signal strength is detected, the device will automatically switch to that network to ensure the efficiency and reliability of information transmission. This is done to ensure that the distress message can be received by the emergency service department at the fastest speed and with the highest accuracy, so that the emergency situation can be responded to and handled in a timely manner. In this way, the electronic device not only improves the success rate of information transmission, but also greatly shortens the emergency response time, gaining a valuable head start for the rescue operation.
[0034] In this embodiment, an advanced intelligent judgment mechanism is adopted, which has the ability to monitor and analyze the status of intelligent devices in the surrounding environment in real time. When the system detects the presence of multiple intelligent devices in the surrounding environment, it will automatically trigger an intelligent selection program. This program will comprehensively consider the signal strength, battery status and other relevant parameters of each device, and intelligently select a device with the strongest signal and the most sufficient battery as the information relay. Through this intelligent selection mechanism, the system can significantly improve the success rate of sending distress messages, ensuring that in an emergency, the distress signal can be conveyed to the rescue personnel in a timely and effective manner, thus greatly enhancing the communication reliability in an emergency.
[0035] In this embodiment, to ensure that users can accurately send a distress signal in case of an emergency, a secondary confirmation mechanism is built in. When a user attempts to send a distress message, the system will first prompt the user for confirmation to ensure that they are indeed in an emergency state where help is needed. This mechanism helps prevent misoperations or the accidental sending of distress signals, thus ensuring that emergency service resources are not misused, and at the same time can provide timely assistance to users who truly need help.
[0036] In this embodiment, when a user needs to send a distress signal to seek assistance, the device with intelligent functions can automatically record the user's physiological parameter information. These physiological parameters cover key vital signs such as heart rate, blood pressure, and body temperature. Through the automatic recording mechanism, after receiving the distress signal, the emergency service department can quickly obtain detailed information about the user's current condition. This information is crucial for emergency rescue personnel because it helps them more accurately assess the user's condition, and then formulate a more precise and effective rescue plan. In addition, the recording of physiological parameters can also provide important reference data for subsequent medical treatment, ensuring that the user can receive continuous and appropriate medical attention after the initial rescue.
[0037] In this embodiment, an emergency contact notification mechanism is included, which can play an important role in emergency situations. Specifically, when the user sends a distress signal through the electronic device, the system will automatically trigger a preset program, which will immediately send an emergency notification to the emergency contacts preset by the user in advance. This notification not only contains the user's current location information, but also details the user's distress status, so as to ensure that the user can obtain the necessary help and support in the shortest possible time.
[0038] In this embodiment, after the electronic device sends a distress signal, it will immediately activate its built-in positioning system, which will continuously monitor and record the user's location changes. Subsequently, these continuously updated location data will be transmitted by the electronic device to nearby relay devices via Bluetooth technology. As a bridge for information transfer, the relay device will further forward this location information to the emergency service department, so as to ensure that these departments can understand and master the user's exact location in real time, so as to quickly take corresponding rescue measures.
[0039] This embodiment includes a function of encrypting the distress signal. This measure aims to ensure that the security and privacy of information during transmission are fully guaranteed. Through such encryption means, it can effectively prevent information from being intercepted, eavesdropped on or tampered with by any unauthorized third party, thus providing a more secure and reliable communication environment for users.
[0040] In this embodiment, the secondary confirmation mechanism of the electronic device is further optimized to ensure that the user can send a distress signal quickly and accurately in an emergency. When the user presses the distress button, the system will immediately start a short countdown. If the user does not cancel the operation before the countdown ends, the system will automatically confirm the distress signal and execute the sending. This design reduces the user's operation steps in an emergency and avoids misoperations caused by nervousness or panic.
[0041] In addition, this embodiment also introduces an environmental adaptability function, enabling the electronic device to adjust the sending strategy of the distress signal according to the actual situation of the surrounding environment. For example, in an area with weak signals, the device will automatically increase the frequency of sending distress signals to increase the probability of being received. In an area with strong signals, the sending frequency will be reduced to save power and reduce interference to surrounding devices.
[0042] This embodiment also considers the power management of the device to ensure that the electronic device can continue to work in an emergency. When the battery power is insufficient, the system will automatically switch to the low-power mode to give priority to ensuring the normal operation of the distress function. At the same time, the system will also remind the user to charge in time to avoid being unable to use the distress function due to power exhaustion.
[0043] Finally, the electronic device in this embodiment also has the ability to learn the user's behavior pattern. By analyzing the user's daily usage habits, the system can predict possible emergencies that the user may encounter and make preparations in advance. For example, if the system detects that the user often goes out alone at night, it will automatically adjust the sending strategy of the distress signal to ensure that the user can get timely rescue when encountering an emergency at night.
[0044] In one embodiment, as shown in Figure 3 a kind of electronic device is provided, which includes a processor, a Bluetooth device, a memory, and a program stored in the memory and configured to be executed by the processor. The memory is coupled to the processor, and when the processor executes the program, it realizes the method of using Bluetooth to send an alarm text message described in the first aspect.
[0045] In summary, the present invention improves the response speed of the distress signal, enabling the rescue operation to be launched faster. Through encryption technology, the security of user data is enhanced, effectively protecting the user's privacy. The distress process is simplified, and the user does not need to manually input location information, reducing the operation complexity. It is applicable to various environments. Whether in the city or remote areas, it can ensure stable signal transmission. The popularity of electronic devices makes this method widely applicable and can cover more potential users.
[0046] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that: they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements on some of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims
1. A method for sending alarm text messages using Bluetooth, characterized in that, Including the following steps: Before the electronic device has no signal or shuts down, the user initiates an emergency SOS message through the electronic device; The Bluetooth function of the electronic device is automatically activated to send out information containing the SOS distress signal and the device's location; Other surrounding smart devices detect the distress signal through Bluetooth scanning and automatically collect the sender's location information; The collected distress information and location data are automatically sent to the police station or emergency service department via text message or other instant messaging methods.
2. The method for implementing sending an alarm text message using Bluetooth according to claim 1, wherein In the described method, when the electronic device detects that the signal has been restored, it automatically stops sending the SOS distress signal; at the same time, the electronic device records the detailed time, location of the distress event, and the number of times the distress signal was sent; after the distress event ends, the electronic device sends the recorded information of the distress event to the user's designated device via Bluetooth.
3. The method for sending an alarm text message using Bluetooth according to claim 1, wherein In the described method, when sending the distress message, the electronic device preferentially selects a network with a higher signal strength for transmission to ensure that the information can be conveyed to the emergency service department in a timely and accurate manner.
4. The method for implementing the sending of an alarm text message using Bluetooth according to claim 1, wherein In the described method, it includes an intelligent judgment mechanism. When multiple smart devices are detected in the vicinity, it will automatically select the device with the strongest signal and the most sufficient battery power as a relay to improve the success rate of sending the distress message.
5. The method for implementing sending an alarm text message using Bluetooth according to claim 1, wherein, In the described method, the electronic device will perform a secondary confirmation before sending the distress message to ensure that the user is indeed in an emergency situation.
6. The method for sending an alarm text message using Bluetooth according to claim 1, wherein In the described method, when sending the distress message, the electronic device automatically records the user's physiological parameters so that the emergency service department can obtain more information about the user's condition.
7. The method for sending an alarm text message using Bluetooth according to claim 1, characterized in that, The described method is equipped with an emergency contact notification mechanism. When the distress signal is sent, the electronic device automatically sends a notification containing the user's location and distress status to the user's preset emergency contacts to ensure getting help in the shortest possible time.
8. The method for implementing sending an alarm text message using Bluetooth according to claim 1, wherein In the described method, after sending the distress message, the electronic device activates the location function to continuously track the user's location changes and sends the updated location information to the relay device via Bluetooth to ensure that the emergency service department can real-time monitor the user's specific location.
9. The method for sending an alarm text message using Bluetooth according to claim 1, wherein In the described method, it includes encryption processing of the distress signal to ensure the security and privacy of the information during transmission and prevent it from being intercepted or tampered with by unauthorized third parties.
10. An electronic device, characterized in that, Including a processor, a Bluetooth device, a memory, and a program stored in the memory and configured to be executed by the processor. The memory is coupled to the processor, and when the processor executes the program, it implements the method for using Bluetooth to send an alarm text message as described in any one of claims 1 to 9.