A monitoring method and device based on a video ringtone and a storage medium
The monitoring method that generates and plays alarm video ringback tones through a video ringback server solves the problems of limited alarm types and low timeliness in elderly monitoring systems. It achieves efficient elderly monitoring alarms, improves alarm success rate and timeliness, and reduces costs and operational complexity.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- XINYANG BRANCH HENAN CO LTD OF CHINA MOBILE COMM CORP
- Filing Date
- 2022-04-02
- Publication Date
- 2026-04-28
AI Technical Summary
Existing elderly monitoring systems suffer from limited alarm types, low alarm success rates, and poor timeliness, failing to provide timely alerts for emergencies and thus delaying treatment.
The monitoring method based on video ringback tones establishes a monitoring relationship between the monitor and the monitored party. The video ringback tones server generates and plays alarm video ringback tones. The abnormal status type is determined based on the status information of the monitored party and an alarm call is initiated. The monitor and the monitored party can learn about the handling plan for the abnormal status through the video ringback tones before the call is connected.
It improves the success rate and timeliness of monitoring alarms, reduces implementation costs and operational barriers, and allows the guardian to understand the status of the ward in a timely manner, avoiding delays in treatment due to failure to answer the phone in time.
Smart Images

Figure CN116935573B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of wireless communication technology, and in particular to a monitoring method, device, and storage medium based on video ringback tones. Background Technology
[0002] With the deepening of urbanization in my country, changes in living patterns, and trends such as fewer children in families, an increasing elderly population, and intergenerational separation, many elderly people live alone in empty nests, leading to numerous tragedies caused by the lack of care for these seniors. Therefore, the daily home life monitoring of elderly people living alone is extremely important.
[0003] Currently, most elderly monitoring systems use cameras to collect the elderly person's movement information and issue alarms for abnormal behaviors such as falls. This approach is simplistic and lacks applicability. Different emergencies present differently; they might involve groans or expressions of pain. Judging an elderly person's health solely based on movement information is incomplete. Furthermore, most systems use traditional analysis methods that are not applicable to the diverse data types collected, and these methods fail to unlock the potential value of the data. Moreover, existing monitoring systems often provide only one-way alarms: typically, an alarm is sent to the elderly person's caregiver (such as relatives or children) after a safety incident is detected, but no corresponding alarm is provided for the elderly person experiencing an emergency, often delaying timely rescue.
[0004] Therefore, enhancing the universality and accuracy of monitoring systems, as well as improving the alarm success rate of intelligent monitoring systems, are urgent problems that need to be solved. Summary of the Invention
[0005] This application provides a monitoring method based on video ringback tones to solve the problems of existing monitoring systems having limited alarm types, low alarm success rates, and low alarm timeliness.
[0006] This application also provides a video ringback tone monitoring device to solve the problems of existing monitoring systems having a single alarm type, low alarm success rate, and low alarm timeliness.
[0007] This application also provides a video ringback tone monitoring device to solve the problems of existing monitoring systems having a single alarm type, low alarm success rate, and low alarm timeliness.
[0008] This application also provides a computer-readable storage medium to address the problems of existing monitoring systems having limited alarm types, low alarm success rates, and low alarm timeliness.
[0009] The embodiments of this application adopt the following technical solutions:
[0010] A monitoring method based on video ringback tones, applied to a monitored terminal device, includes: determining whether the monitored device is in an abnormal state based on acquired monitored device status information; when it is determined that the monitored device is currently in an abnormal state, determining the abnormal state type corresponding to the current abnormal state, and determining the monitoring number corresponding to the abnormal state type; initiating an alarm call to the monitored device based on the monitoring number, receiving an alarm video ringback tone generated based on the abnormal state type from a video ringback tone server, and playing the alarm video ringback tone before the alarm call is connected.
[0011] A monitoring method based on video ringback tones, applied to a video ringback tones server, includes: receiving an alarm call triggered by a specific monitoring number; determining the anomaly type corresponding to the alarm call based on the monitoring number; determining an alarm scheme corresponding to the anomaly type based on the anomaly type; generating anomaly alarm video ringback tones for the monitoring party and the monitored party respectively based on the alarm scheme, and sending them to the terminal devices of the monitoring party and the monitored party respectively for playback.
[0012] A monitoring device based on video ringback tones includes: an abnormal state determination unit, used to determine whether the monitored party is in an abnormal state based on the acquired state information of the monitored party; an abnormal type determination unit, used to determine the abnormal state type corresponding to the current abnormal state when it is determined that the monitored party is currently in an abnormal state, and to determine the monitoring number corresponding to the abnormal state type; and an alarm call unit, used to initiate an alarm call to the monitor based on the monitoring number, receive an alarm video ringback tone generated based on the abnormal state type from a video ringback tone server, and play the alarm video ringback tone before the alarm call is connected.
[0013] A monitoring device based on video ringback tones includes: an alarm receiving unit for receiving alarm calls triggered by a specific monitoring number; an anomaly determination unit for determining the anomaly type corresponding to the alarm call based on the monitoring number; an alarm scheme determination unit for determining an alarm scheme corresponding to the anomaly type based on the anomaly type; and a video ringback tone generation unit for generating anomaly alarm video ringback tones for the monitoring party and the monitored party respectively, based on the alarm scheme, and sending them to the terminal devices of the monitoring party and the monitored party respectively for playback.
[0014] A computer-readable storage medium stores one or more programs that, when executed by an electronic device including multiple applications, cause the electronic device to perform the following operations: determining whether the monitored party is in an abnormal state based on acquired monitored party status information; when it is determined that the monitored party is currently in an abnormal state, determining the abnormal state type corresponding to the current abnormal state and determining the monitoring number corresponding to the abnormal state type; initiating an alarm call to the monitoring party based on the monitoring number; receiving an alarm video ringback tone generated based on the abnormal state type from a video ringback tone server; and playing the alarm video ringback tone before the alarm call is connected.
[0015] A monitoring system based on video ringback tones includes: a terminal, a video ringback tones server, and intelligent monitoring equipment; wherein, the terminal is used to determine whether the monitored party is in an abnormal state based on the acquired status information of the monitored party; when it is determined that the monitored party is currently in an abnormal state, it determines the abnormal state type corresponding to the current abnormal state and determines the monitoring number corresponding to the abnormal state type; it initiates an alarm call to the monitored party based on the monitoring number, receives an alarm video ringback tone generated based on the abnormal state type from the video ringback tones server, and plays the alarm video ringback tone before the alarm call is connected. The video ringback tone server is used to receive alarm calls triggered by a specific monitoring number; determine the abnormality type corresponding to the alarm call based on the monitoring number; determine the alarm scheme corresponding to the abnormality type based on the abnormality type; generate abnormal alarm video ringback tones for the monitoring party and the monitored party respectively based on the alarm scheme, and send them to the terminal devices of the monitoring party and the monitored party respectively for playback; the intelligent monitoring device is used to collect the status information of the monitored party user and send the status information to the monitored party terminal device through a wireless communication connection established with the terminal device.
[0016] The above-described technical solutions adopted in the embodiments of this application can achieve the following beneficial effects:
[0017] This application provides a video ringback tone-based monitoring method. The monitoring user and the monitored user can establish a monitoring relationship by dialing a specific monitoring number. This relationship is then sent to a video ringback tone server for storage. After the monitoring relationship is established, the monitored user's terminal can establish a short-range wireless communication connection with a home monitoring device (such as a smart wheelchair, smart monitoring robot, or camera) to obtain the monitored user's status information. When the monitored user's status information indicates an abnormal state, the type of abnormal state can be further determined. Based on the type of abnormal state, an alarm call is initiated to the monitoring user via the monitoring number corresponding to that abnormal state type. The monitoring user receives an alarm video ringback tone generated based on the abnormal state type from the video ringback tone server and plays the alarm video ringback tone before the alarm call is connected. This allows the monitored user to receive the video ringback tone before the call is connected. By providing a simple solution for the current abnormal situation, the ward can take emergency measures in advance before the call is connected, based on the prompts in the video ringback tone, thus avoiding delays in treatment due to the alarm call not being answered in time. Upon receiving an alarm call initiated by the ward through a specific monitoring number, the video ringback tone platform can determine the type of abnormality based on that number, retrieve the alarm scheme pre-set by the monitor corresponding to that type, and generate an abnormal alarm video ringback tone. This ringback tone is then sent to the terminals of both the ward (the calling user) and the monitor (the called user) as both a calling and a receiving video ringback tone, and played before the call is connected. This allows the monitor to understand the ward's current status before the call is connected, preventing the monitor's judgment from being affected by the ward's inability to accurately report the abnormality after the call is connected. By adopting the video ringback tone-based monitoring method provided in this solution, the guardian can view the current status information of the monitored person by calling the person being monitored through the video ringback tone. The operation is convenient. At the same time, since this solution can be directly implemented using the operator's existing video ringback tone server and video ringback tone customization logic, there is no need to develop a special APP, and users do not need to install any extra APP on their mobile phones. This greatly reduces the implementation cost of the smart monitoring solution for the elderly. Moreover, for the monitored person, there is no complicated operation required, which not only lowers the operation threshold, but also improves the success rate and real-time performance of monitoring alarms. Attached Figure Description
[0018] The accompanying drawings, which are included to provide a further understanding of this application and form part of this application, illustrate exemplary embodiments of this application and are used to explain this application, but do not constitute an undue limitation of this application. In the drawings:
[0019] Figure 1 A schematic diagram illustrating the specific process of a monitoring method based on video ringback tones, provided for an embodiment of this application;
[0020] Figure 2 A display effect diagram of an alarm notification interface based on video ringback tones provided in an embodiment of this application;
[0021] Figure 3 A schematic diagram of the specific structure of a monitoring device based on video ringback tones provided in this application embodiment;
[0022] Figure 4 A schematic diagram of the specific structure of a monitoring device based on video ringback tones provided in this application embodiment;
[0023] Figure 5 This is a schematic diagram of the specific structure of a monitoring electronic device based on video ringback tones, provided as an embodiment of this application. Detailed Implementation
[0024] To make the objectives, technical solutions, and advantages of this application clearer, the technical solutions of this application will be clearly and completely described below in conjunction with specific embodiments and corresponding drawings. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of them. Based on the embodiments in this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.
[0025] The technical solutions provided by the various embodiments of this application are described in detail below with reference to the accompanying drawings.
[0026] This application provides a monitoring method based on video ringback tones to solve the problems of existing monitoring systems having a single alarm type, low alarm success rate, and low alarm timeliness.
[0027] The execution subject of the video ringback tone-based monitoring method provided in this application embodiment can be, but is not limited to, at least one of the following: the monitoring terminal device, the monitored terminal device, or the video ringback tone server. For ease of description, the following description uses the monitored terminal device as the execution subject to illustrate the implementation of the method. It should be understood that using the monitored terminal device as the execution subject is merely an illustrative example and should not be construed as limiting the method.
[0028] It should be noted that before implementing the video-based ringback tone monitoring method provided in this application embodiment, a monitoring relationship must first be established between the monitoring party and the monitored party. In one embodiment, the monitoring settings can be configured through the following preparatory steps:
[0029] Preliminary preparation step 1: The guardian user can log in to the video ringback tone server by mobile phone number or by calling the operator's service hotline to select to activate the video ringback tone monitoring service. After activating the video ringback tone monitoring service, the guardian can establish and save the monitoring relationship through the operator's backend server by entering the mobile phone number of the person being monitored.
[0030] Specifically, the guardian can activate the video ringback tone monitoring service through a browser, WeChat official account, mini-program, or by calling the operator's customer service hotline. Additionally, to prevent other users from impersonating the user and activating the service, the video ringback tone server will require the user to enter a security verification code to authenticate the user's identity during service activation.
[0031] After the video ringback tone server verifies the identity of the guardian user, it will send a guardianship confirmation message to the ward's mobile phone. This confirmation message includes the guardian's name, guardian's phone number, and service consultation website. The ward can confirm whether to establish a guardianship relationship with the guardian by replying directly to the text message, or they can log in to the video ringback tone server through the service consultation website to handle the request.
[0032] Once the ward user confirms the establishment of a guardianship relationship with the guardian user, the video ringback tone server will save the guardianship relationship.
[0033] Preparatory Step 2: After establishing a guardianship relationship, the guardian user can further set up guardianship rules by logging into the video ringback tones server, including: guardianship reminder methods, alarm triggering mechanisms, and guardianship alarm schemes, etc., and send this information to the video ringback tones server, and then the video ringback tones server will distribute the guardianship rules to the monitored terminal device, so that the monitored terminal device can determine the alarm triggering rules and the correspondence between each abnormality type and the guardian number according to the alarm mechanism carried in the guardianship rules;
[0034] For example, the guardian can set the monitoring reminder method to "one-way reminder" or "two-way reminder." A one-way reminder refers to alerting only one party—either the guardian or the ward. For instance, for the ward's depressed mood, a one-way reminder can be used, only alerting the guardian. Conversely, for an abnormal state like a fall, a two-way reminder can be sent to both the guardian and the ward via both a calling and receiving video ringback tone. Specific alert methods are detailed below and will not be repeated here.
[0035] Secondly, the guardian can also configure the alarm triggering mechanism. In one implementation, the video ringback tones server will provide some common alarm mechanisms (such as falls, fever, coma, leaving the residence, etc.) for the guardian to choose from. At the same time, the system also supports the guardian to set the alarm triggering mechanism themselves. For example, if the monitored user is required to take medication at 2 pm every day, the guardian can set the alarm triggering mechanism to: "If the user is found to have not taken medication by 2:30 pm, an alarm will be triggered."
[0036] Finally, the guardian can also configure alarm schemes, including specific guardian numbers for different alarm scenarios and corresponding handling plans. For example, for the "fall" alarm scenario, the guardian can set the guardian number to "1" and the corresponding handling plan to "notify the guardian by phone, and simultaneously notify the neighbors and the neighborhood committee by phone, and send an opening command to the smart lock"; while for the "forgot to take medication" alarm scenario, the guardian can set the guardian number to "9" and the corresponding handling plan to "notify the guardian by phone, and simultaneously send a video ringback tone reminding the monitored user to take medication to the monitored user's terminal via a video ringback tone, and play the video ringback tone reminding the monitored user to take medication."
[0037] After completing the aforementioned preparatory steps to set up the monitoring scheme, the video-based ringback tone monitoring method provided in this solution can be used to achieve intelligent monitoring of the monitored party (such as the elderly or children). Specifically, the schematic diagram of the specific implementation process of the video-based ringback tone monitoring method provided in this application is as follows: Figure 1 As shown, the main steps include the following:
[0038] Step 11: Based on the obtained status information of the monitored party, determine whether the monitored party is in an abnormal state.
[0039] In one implementation, the monitored party's terminal device can obtain the monitored party's current status information through a wireless communication connection established with the intelligent monitoring device, and determine whether the monitored party is in an abnormal state based on the obtained status information and a preset anomaly judgment mechanism.
[0040] Specifically, the ward's terminal can establish a short-range wireless communication connection with home monitoring devices (such as smart wheelchairs, smart monitoring robots, or cameras) to monitor the ward's physical and mental state through the smart home monitoring devices, and receive the ward's status information transmitted in real time by the home monitoring devices.
[0041] In this embodiment of the application, the following modules can be used to monitor the following data of the monitored party and to conduct a health status assessment based on the monitoring data:
[0042] 1. Physiological characteristic health data monitoring module:
[0043] The physiological characteristic health data monitoring module mainly includes devices such as smart wearables and smart cameras, which can collect various health data such as the daily physiological characteristics of the monitored person (such as heart rate, body temperature, pulse and blood pressure), video and audio.
[0044] 2. Daily Behavior Data Monitoring Module:
[0045] The system monitors the daily behavior of the ward through cameras and feeds the monitoring results back to the server. By performing human body recognition and motion recognition on the video content, it obtains the ward's daily behavioral data, such as whether the ward takes medicine on time and drinks water on time.
[0046] 3. Mental state monitoring module:
[0047] The system captures facial expressions of the ward through a camera and voice recordings through a microphone. Big data analysis is used to determine the time each ward spends displaying different facial expressions daily, and this data, combined with information on the ward's daily behavior and voice recordings, is used to assess the ward's mental state.
[0048] 4. Health Status Assessment Module:
[0049] The system comprehensively analyzes and evaluates the vital signs, daily behavior, and mental state information obtained through the monitoring modules mentioned above, generates a health status assessment report, and periodically uploads the health assessment report to the video ringback tone server. This allows the health status information of the ward to be periodically broadcast to the guardian via video ringback tone.
[0050] At the same time, the home monitoring device will also transmit the collected status information of the ward to the ward's mobile phone in real time, so that the ward's mobile phone can determine whether the current status is abnormal according to the pre-set abnormal judgment mechanism. If the judgment result is yes, then step 12 is executed; if the judgment result is no, then the monitoring of the ward's status continues.
[0051] Step 12: When it is determined through step 11 that the monitored party is currently in an abnormal state, determine the abnormal state type corresponding to the current abnormal state, and determine the monitoring number corresponding to the abnormal state type.
[0052] When it is determined through step 11 that the current status of the ward is in an abnormal state, the ward's terminal will call the guardian through the guardian number corresponding to the current abnormal state type.
[0053] Suppose that by executing step 11, the current state of the ward is determined to be "falling down", and the guardian's pre-set guardianship number corresponding to the abnormal state "falling down" is "1", then the ward's user terminal can automatically call the guardian by using "1 + guardian's mobile phone number".
[0054] In another real-time mode, if the ward's terminal fails to automatically dial the guardian's number in a timely manner due to a malfunction, the ward can also manually trigger the terminal to call the guardian by long-pressing the guardian's number.
[0055] Step 13: Initiate an alarm call to the guardian based on the guardian number determined by executing step 12, receive the alarm video ringback tone generated according to the abnormal status type issued by the video ringback tone server, and play the alarm video ringback tone before the alarm call is connected.
[0056] In one implementation, after receiving an alarm call initiated by the monitored party through a specific monitoring number, the video ringback tone server can determine the anomaly type corresponding to the alarm call based on the monitoring number, and obtain the alarm scheme pre-set by the monitor corresponding to the anomaly type based on the anomaly type. Based on the alarm scheme, it generates anomaly alarm video ringback tones for the monitor and the monitored party respectively, and sends them to the monitored party's terminal device (i.e., the calling user at this time) and the monitor's terminal device (i.e., the called user at this time) in the form of calling video ringback tones and called video ringback tones respectively, and plays them before the call is connected.
[0057] For example, suppose the video ringback tone server receives an alarm call from the ward's terminal, initiated by the guardian using the guardian's number "9". The video ringback tone server determines that the anomaly type corresponding to guardian number 9 is "forgot to take medication", and further determines that the corresponding alarm scheme is to notify the ward to take medication via video ringback tone. The video ringback tone server will then generate a video ringback tone reminding the ward to take medication based on the pre-set required medication type and quantity. This reminder video ringback tone will be displayed to the ward during the call from the ward to the guardian, thus reminding the ward to take their medication. For example, the ward's terminal might display the following: Figure 2 The video ringback tone information shown.
[0058] In addition, when a ward experiences an abnormal situation and triggers an alarm call, to ensure the guardian can continuously monitor the ward's latest status, in one implementation, the ward's terminal can further monitor the ward's behavior through a smart home monitoring device. If the monitoring shows that the ward has executed the alarm response plan after receiving the alarm information (e.g., taking medication), the terminal will notify the guardian of the abnormal response result via a video ringback tone server, such as informing the guardian that the ward has taken medication. Alternatively, the ward's terminal device can directly capture emergency response footage and upload it to the video ringback tone server. The server can then generate a video ringback tone based on the captured footage and send it to the guardian's terminal, allowing the guardian to promptly and accurately understand the ward's emergency response to the abnormal situation.
[0059] Additionally, it should be noted that after a connection is established between the guardian and the ward, in addition to using the methods described above to alert both the guardian and the ward via video ringback tones when an abnormal state is detected in the ward, the guardian can also proactively query the current status of the ward by calling a specific guardian number, so that the guardian can proactively obtain the ward's status information at any time.
[0060] In one implementation, the guardian's proactive query of the ward's status can be achieved through the following method: receiving a status query request from the video ringback tone server, wherein the status query request is uploaded to the video ringback tone server by the guardian who has established a guardianship relationship with the ward by calling a specific number; responding to the status query request, obtaining the ward's current status information and uploading it to the video ringback tone server, so that the video ringback tone server generates a video ringback tone based on the current status information and sends it to the guardian's terminal device in the form of a calling video ringback tone.
[0061] Specifically, when configuring the alarm scheme, the guardian can also set a status query number. Assuming the status query number is "202", when the guardian user wants to query the current status of the monitored user, they can initiate a call using "202 + the monitored user's mobile phone number". After receiving the query call initiated by the guardian terminal based on the status query number "202", the video ringback tone server can send a status query request to the monitored terminal device. This allows the monitored terminal device to respond to the status query request, obtain the monitored user's current status information, and upload it to the video ringback tone server. The video ringback tone server can then generate a video ringback tone based on the received status information and send it to the guardian terminal for playback as a calling video ringback tone, so that the guardian user can understand the monitored user's current status information through the video ringback tone.
[0062] Additionally, it's worth noting that to avoid the monitored terminal needing to retrieve all status data every time it responds to a query request, leading to low data acquisition efficiency, one implementation allows the monitoring user to set different status query numbers for different types of statuses (e.g., heart rate, sleep, medication status). When the monitoring user needs to query a specific status of the monitored user, they only need to initiate a call using the format "specific query number + monitored user's mobile phone number." The video ringback tone server can then determine the query type corresponding to that specific query number and send a query request to the monitored terminal that is only for that type of status.
[0063] This application provides a video ringback tone-based monitoring method. The monitoring user and the monitored user can establish a monitoring relationship by dialing a specific monitoring number. This relationship is then sent to a video ringback tone server for storage. After the monitoring relationship is established, the monitored user's terminal can establish a short-range wireless communication connection with a home monitoring device (such as a smart wheelchair, smart monitoring robot, or camera) to obtain the monitored user's status information. When the monitored user's status information indicates an abnormal state, the type of abnormal state can be further determined. Based on the type of abnormal state, an alarm call is initiated to the monitoring user via the monitoring number corresponding to that abnormal state type. The monitoring user receives an alarm video ringback tone generated based on the abnormal state type from the video ringback tone server and plays the alarm video ringback tone before the alarm call is connected. This allows the monitored user to receive the video ringback tone before the call is connected. By providing a simple solution for the current abnormal situation, the ward can take emergency measures in advance before the call is connected, based on the prompts in the video ringback tone, thus avoiding delays in treatment due to the alarm call not being answered in time. Upon receiving an alarm call initiated by the ward through a specific monitoring number, the video ringback tone platform can determine the type of abnormality based on that number, retrieve the alarm scheme pre-set by the monitor corresponding to that type, and generate an abnormal alarm video ringback tone. This ringback tone is then sent to the terminals of both the ward (the current caller) and the monitor (the current callee) as both a calling and a receiving video ringback tone, and played before the call is connected. This allows the monitor to understand the ward's current status before the call is connected, preventing the monitor's judgment from being affected by the ward's inability to accurately report the abnormality after the call is connected. By adopting the video ringback tone-based monitoring method provided in this solution, the guardian can view the current status information of the monitored person by calling the person being monitored through the video ringback tone. The operation is convenient. At the same time, since this solution can be directly implemented using the operator's existing video ringback tone server and video ringback tone customization logic, there is no need to develop a special APP, and users do not need to install any extra APP on their mobile phones. This greatly reduces the implementation cost of the smart monitoring solution for the elderly. Moreover, for the monitored person, there is no complicated operation required, which not only lowers the operation threshold, but also improves the success rate and real-time performance of monitoring alarms.
[0064] In one embodiment, this application also provides a monitoring device based on video ringback tones to solve the problems of existing monitoring systems having limited alarm types, low alarm success rates, and low alarm timeliness. A schematic diagram of the specific structure of this video ringback tone monitoring device is shown below. Figure 3As shown, it includes: an abnormal state determination unit 31, an abnormal type determination unit 32, and an alarm call unit 33.
[0065] The abnormal state determination unit 31 is used to determine whether the monitored party is in an abnormal state based on the acquired monitored party status information.
[0066] The abnormality type determination unit 32 is used to determine the abnormality type corresponding to the current abnormality when it is determined that the monitored party is currently in an abnormal state, and to determine the monitoring number corresponding to the abnormality type.
[0067] The alarm call unit 33 is used to initiate an alarm call to the guardian based on the guardian number, receive an alarm video ringback tone generated based on the abnormal state type from the video ringback tone server, and play the alarm video ringback tone before the alarm call is connected.
[0068] In one embodiment, the abnormal state determination unit 31 is specifically used to: obtain the current state information of the monitored party based on the wireless communication connection established with the intelligent monitoring device; and determine whether the monitored party is in an abnormal state based on the current state information of the monitored party and according to a preset abnormal judgment mechanism.
[0069] In one embodiment, a guardianship relationship establishment unit is further included, specifically configured to: receive a guardianship relationship establishment request issued by the video ringback tone server, wherein the guardianship relationship establishment request carries the identity authentication information of the guardian; after completing the identity authentication of the guardian based on the identity authentication information, send confirmation information to the video ringback tone server, so that the video ringback tone server responds to the confirmation information and establishes a guardianship relationship between the guardian and the ward.
[0070] In one embodiment, the guardianship relationship establishment unit is further configured to: receive guardianship rules issued by the video ringback tone server, wherein the guardianship rules are set by the guardian who has established a guardianship relationship with the ward and uploaded to the video ringback tone server, and the guardianship rules carry an anomaly judgment mechanism and an alarm mechanism; and determine alarm triggering rules and the correspondence between each anomaly type and the guardianship number according to the alarm mechanism carried in the guardianship rules.
[0071] In one embodiment, a query unit is further included, specifically configured to: receive a status query request sent by the video ringback tone server, wherein the status query request is uploaded to the video ringback tone server by a guardian who has established a guardianship relationship with the ward by calling a specific number; in response to the status query request, obtain the current status information of the ward and upload it to the video ringback tone server, so that the video ringback tone server generates a video ringback tone based on the current status information and sends it to the guardian's terminal device in the form of a calling video ringback tone.
[0072] This application provides a video ringback tone-based monitoring device where the guardian and the ward establish a guardianship relationship by dialing a specific monitoring number. This relationship is then sent to a video ringback tone server for storage. After the guardianship relationship is established, the ward's terminal can establish a short-range wireless communication connection with a home monitoring device (such as a smart wheelchair, smart monitoring robot, or camera) to obtain the ward's status information. When the ward's status information indicates an abnormal state, the type of abnormal state can be further determined. Based on this abnormal state type, an alarm call is initiated to the guardian via the corresponding monitoring number. The device receives an alarm video ringback tone generated based on the abnormal state type from the video ringback tone server and plays the alarm video ringback tone before the alarm call is connected. This allows the ward to receive the video ringback tone before the call is connected. By providing a simple solution for the current abnormal situation, the ward can take emergency measures in advance before the call is connected, based on the prompts in the video ringback tone, thus avoiding delays in treatment due to the alarm call not being answered in time. Upon receiving an alarm call initiated by the ward through a specific monitoring number, the video ringback tone platform can determine the type of abnormality based on that number, retrieve the alarm scheme pre-set by the monitor corresponding to that type, and generate an abnormal alarm video ringback tone. This ringback tone is then sent to the terminals of both the ward (the calling user) and the monitor (the called user) as both a calling and a receiving video ringback tone, and played before the call is connected. This allows the monitor to understand the ward's current status before the call is connected, preventing the monitor's judgment from being affected by the ward's inability to accurately report the abnormality after the call is connected. By using the video ringback tone-based monitoring device provided in this solution, the guardian can view the current status information of the monitored person by calling the person being monitored. The operation is convenient. At the same time, since this solution can be implemented directly using the operator's existing video ringback tone server and video ringback tone customization logic, there is no need to develop a special APP or install an extra APP on the user's mobile phone, which greatly reduces the implementation cost of the smart monitoring solution for the elderly. Moreover, for the monitored person, there is no complicated operation required, which not only lowers the operation threshold but also improves the success rate and real-time performance of monitoring alarms.
[0073] In one embodiment, this application also provides a monitoring device based on video ringback tones to solve the problems of existing monitoring systems having limited alarm types, low alarm success rates, and low alarm timeliness. A schematic diagram of the specific structure of this video ringback tone monitoring device is shown below. Figure 4As shown, it includes: an alarm receiving unit 41, an anomaly determination unit 42, an alarm scheme determination unit 43, and a video ringback tone generation unit 44.
[0074] Among them, the alarm receiving unit 41 is used to receive alarm calls triggered based on a specific monitoring number;
[0075] The anomaly determination unit 42 is used to determine the anomaly type corresponding to the alarm call based on the monitoring number;
[0076] Alarm scheme determination unit 43 is used to determine an alarm scheme corresponding to the anomaly type based on the anomaly type.
[0077] The video ringback tone generation unit 44 is used to generate abnormal alarm video ringback tones for the guardian and the monitored party respectively according to the alarm scheme, and send them to the terminal devices of the guardian and the monitored party respectively for playback.
[0078] In one embodiment, the video ringback tone generation unit 44 is further configured to receive a status query call triggered by a guardian based on a specific number; determine the status type to be queried corresponding to the specific number, and generate a status query request for the status type to be queried; send the status query request to the device of the ward that has established a guardianship relationship with the guardian, and receive status information uploaded by the device of the ward; generate a video ringback tone according to the status information, and send it to the guardian's terminal device in the form of a calling video ringback tone.
[0079] The monitoring system device based on video ringback tones provided in this application embodiment allows the guardian and the ward to establish a guardianship relationship by dialing a specific guardianship number. This guardianship relationship is then sent to a video ringback tone server for storage. After the guardianship relationship is established, the ward's terminal can establish a short-range wireless communication connection with home monitoring devices (such as smart wheelchairs, smart monitoring robots, or cameras) to obtain the ward's status information. When the ward's status information indicates an abnormal state, the type of abnormal state can be further determined. Based on the type of abnormal state, an alarm call is initiated to the guardian via the corresponding guardianship number. The system receives an alarm video ringback tone generated based on the abnormal state type from the video ringback tone server and plays the alarm video ringback tone before the alarm call is connected, allowing the ward to receive the alarm video ringback tone before the call is connected. The system provides a simple solution for handling the current abnormal situation, allowing the ward to take emergency measures before the call is connected, based on the prompts in the video ringback tone. This avoids delays in treatment due to the alarm call not being answered in time. Upon receiving an alarm call from the ward via a specific monitoring number, the video ringback tone platform can determine the type of abnormality and retrieve the corresponding alarm plan pre-set by the monitor. Based on this plan, it generates an abnormality alarm video ringback tone, which is then sent to both the ward (the calling user) and the monitor (the called user) terminals as both a calling and a receiving video ringback tone. This ringback tone is played before the call is connected, allowing the monitor to understand the ward's current status before the call is connected, preventing the monitor's judgment from being affected by the ward's inability to accurately report the abnormality after the call is connected. By using the video ringback tone-based monitoring device provided in this solution, the guardian can view the current status information of the monitored person by calling the person being monitored. The operation is convenient. At the same time, since this solution can be implemented directly using the operator's existing video ringback tone server and video ringback tone customization logic, there is no need to develop a special APP or install an extra APP on the user's mobile phone, which greatly reduces the implementation cost of the smart monitoring solution for the elderly. Moreover, for the monitored person, there is no complicated operation required, which not only lowers the operation threshold but also improves the success rate and real-time performance of monitoring alarms.
[0080] Figure 5 This is a schematic diagram of the structure of an electronic device according to an embodiment of this application. Please refer to it. Figure 5At the hardware level, the electronic device includes a processor, and optionally also includes an internal bus, a network interface, and memory. The memory may include main memory, such as high-speed random-access memory (RAM), or non-volatile memory, such as at least one disk drive. Of course, the electronic device may also include other hardware required for other business operations.
[0081] The processor, network interface, and memory can be interconnected via an internal bus, which can be an ISA (Industry Standard Architecture) bus, a PCI (Peripheral Component Interconnect) bus, or an EISA (Extended Industry Standard Architecture) bus, etc. This bus can be divided into address bus, data bus, control bus, etc. For ease of representation, Figure 5 The symbol is represented by a single double-headed arrow, but this does not mean that there is only one bus or one type of bus.
[0082] Memory is used to store programs. Specifically, programs may include program code, which includes computer operation instructions. Memory may include main memory and non-volatile memory, and provides instructions and data to the processor.
[0083] The processor reads the corresponding computer program from non-volatile memory into main memory and then executes it, forming a video-based ringback tone monitoring device at the logical level. The processor executes the program stored in memory and specifically performs the following operations:
[0084] Based on the obtained status information of the monitored party, determine whether the monitored party is in an abnormal state;
[0085] When it is determined that the monitored party is currently in an abnormal state, the abnormal state type corresponding to the current abnormal state is determined, and the monitoring number corresponding to the abnormal state type is determined; an alarm call is initiated to the monitored party based on the monitoring number, the alarm video ringback tone generated according to the abnormal state type is received from the video ringback tone server, and the alarm video ringback tone is played before the alarm call is connected.
[0086] The above is as stated in this application. Figure 4The method for monitoring electronic devices based on video ringback tones disclosed in the illustrated embodiments can be applied to a processor or implemented by a processor. The processor may be an integrated circuit chip with signal processing capabilities. During implementation, each step of the above method can be completed by integrated logic circuits in the processor's hardware or by instructions in software form. The processor can be a general-purpose processor, including a Central Processing Unit (CPU), a Network Processor (NP), etc.; it can also be a Digital Signal Processor (DSP), an Application Specific Integrated Circuit (ASIC), a Field-Programmable Gate Array (FPGA), or other programmable logic devices, discrete gate or transistor logic devices, or discrete hardware components. It can implement or execute the methods, steps, and logic block diagrams disclosed in the embodiments of this application. The general-purpose processor can be a microprocessor or any conventional processor. The steps of the method disclosed in the embodiments of this application can be directly manifested as execution by a hardware decoding processor, or execution by a combination of hardware and software modules in the decoding processor. The software module can reside in a mature storage medium in the field, such as random access memory, flash memory, read-only memory, programmable read-only memory, electrically erasable programmable memory, or registers. This storage medium is located in memory, and the processor reads information from the memory and, in conjunction with its hardware, completes the steps of the above method.
[0087] Of course, in addition to software implementation, the electronic device of this application does not exclude other implementation methods, such as logic devices or a combination of hardware and software, etc. In other words, the execution subject of the following processing flow is not limited to each logic unit, but can also be hardware or logic devices.
[0088] This application also proposes a computer-readable storage medium that stores one or more programs, the programs including instructions that, when executed by a portable electronic device including multiple applications, enable the portable electronic device to perform... Figure 1 The method of the illustrated embodiment is specifically used to perform the following operations:
[0089] Based on the obtained status information of the monitored party, it is determined whether the monitored party is in an abnormal state; when it is determined that the monitored party is currently in an abnormal state, the abnormal state type corresponding to the current abnormal state is determined, and the monitoring number corresponding to the abnormal state type is determined; an alarm call is initiated to the monitoring party based on the monitoring number, and an alarm video ringback tone generated according to the abnormal state type is received from the video ringback tone server, and the alarm video ringback tone is played before the alarm call is connected.
[0090] Those skilled in the art will understand that embodiments of the present invention can be provided as methods, systems, or computer program products. Therefore, the present invention can take the form of a completely hardware embodiment, a completely software embodiment, or an embodiment combining software and hardware aspects. Furthermore, the present invention can take the form of a computer program product embodied on one or more computer-usable storage media (including, but not limited to, disk storage, CD-ROM, optical storage, etc.) containing computer-usable program code.
[0091] This invention is described with reference to flowchart illustrations and / or block diagrams of methods, apparatus (systems), and computer program products according to embodiments of the invention. It will be understood that each block of the flowchart illustrations and / or block diagrams, and combinations of blocks in the flowchart illustrations and / or block diagrams, can be implemented by computer program instructions. These computer program instructions can be provided to a processor of a general-purpose computer, special-purpose computer, embedded processor, or other programmable data processing apparatus to produce a machine, such that the instructions, which execute via the processor of the computer or other programmable data processing apparatus, generate instructions for implementing the flowchart illustrations and / or block diagrams. Figure 1 One or more processes and / or boxes Figure 1 A device that provides the functions specified in one or more boxes.
[0092] These computer program instructions may also be stored in a computer-readable storage medium that can direct a computer or other programmable data processing device to function in a particular manner, such that the instructions stored in the computer-readable storage medium produce an article of manufacture including instruction means, which are implemented in a process Figure 1 One or more processes and / or boxes Figure 1 The function specified in one or more boxes.
[0093] These computer program instructions may also be loaded onto a computer or other programmable data processing equipment to cause a series of operational steps to be performed on the computer or other programmable equipment to produce a computer-implemented process, thereby providing instructions that execute on the computer or other programmable equipment for implementing the process. Figure 1 One or more processes and / or boxes Figure 1 The steps of the function specified in one or more boxes.
[0094] In a typical configuration, a computing device includes one or more processors (CPU), input / output interfaces, network interfaces, and memory.
[0095] Memory may include non-persistent storage in computer-readable media, such as random access memory (RAM) and / or non-volatile memory, such as read-only memory (ROM) or flash RAM. Memory is an example of computer-readable media.
[0096] Computer-readable media includes both permanent and non-permanent, removable and non-removable media that can store information using any method or technology. Information can be computer-readable instructions, data structures, modules of programs, or other data. Examples of computer storage media include, but are not limited to, phase-change memory (PRAM), static random access memory (SRAM), dynamic random access memory (DRAM), other types of random access memory (RAM), read-only memory (ROM), electrically erasable programmable read-only memory (EEPROM), flash memory or other memory technologies, CD-ROM, digital versatile optical disc (DVD) or other optical storage, magnetic tape, magnetic magnetic disk storage or other magnetic storage devices, or any other non-transferable medium that can be used to store information accessible by a computing device. As defined herein, computer-readable media does not include transient computer-readable media, such as modulated data signals and carrier waves.
[0097] It should also be noted that the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitation, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.
[0098] Those skilled in the art will understand that embodiments of this application can be provided as methods, systems, or computer program products. Therefore, this application can take the form of a completely hardware embodiment, a completely software embodiment, or an embodiment combining software and hardware aspects. Furthermore, this application can take the form of a computer program product embodied on one or more computer-usable storage media (including, but not limited to, disk storage, CD-ROM, optical storage, etc.) containing computer-usable program code.
[0099] The above description is merely an embodiment of this application and is not intended to limit this application. Various modifications and variations can be made to this application by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principle of this application should be included within the scope of the claims of this application.
Claims
1. A monitoring method based on video ringback tones, applied to the terminal device of the monitored party, characterized in that, include: Based on the obtained status information of the monitored party, determine whether the monitored party is in an abnormal state; When it is determined that the monitored party is currently in an abnormal state, the abnormal state type corresponding to the current abnormal state is determined, and the monitoring number corresponding to the abnormal state type is determined; The system sends the corresponding monitoring number to the video ringback tone server and initiates an alarm call to the monitoring party based on the monitoring number. It receives the alarm video ringback tone sent by the video ringback tone server and plays the alarm video ringback tone before the alarm call is connected. The alarm video ringback tone is generated by the video ringback tone server based on the abnormal status type determined by the monitoring number, and based on the abnormal status type, it obtains the alarm scheme corresponding to the abnormal status type preset by the monitoring party and generates it based on the alarm scheme.
2. The method according to claim 1, characterized in that, Based on the obtained status information of the monitored party, determine whether the monitored party is in an abnormal state, specifically including: Based on the wireless communication connection established with the intelligent monitoring equipment, the current status information of the monitored party is obtained; Based on the current status information of the monitored party, and according to the preset anomaly judgment mechanism, it is determined whether the monitored party is in an abnormal state.
3. The method according to claim 1, characterized in that, Also includes: Receive a guardianship relationship establishment request sent by the video ringback tone server, wherein the guardianship relationship establishment request carries the identity authentication information of the guardian; After verifying the identity of the guardian based on the identity authentication information, a confirmation message is sent to the video ringback tone server so that the video ringback tone server responds to the confirmation message and establishes a guardianship relationship between the guardian and the ward.
4. The method according to claim 3, characterized in that, The method further includes: The system receives the monitoring rules issued by the video ringback tone server. The monitoring rules are set by the guardian who has established a guardianship relationship with the ward and uploaded to the video ringback tone server. The monitoring rules include an anomaly judgment mechanism and an alarm mechanism. Based on the alarm mechanism carried in the monitoring rules, determine the alarm triggering rules and the correspondence between each abnormal status type and the monitoring number.
5. The method according to claim 1, characterized in that, Also includes: Receive a status query request sent by the video ringback tone server, wherein the status query request is uploaded to the video ringback tone server by the guardian who has established a guardianship relationship with the ward by calling a specific number; In response to the status query request, the current status information of the monitored party is obtained and uploaded to the video ringback tone server, so that the video ringback tone server can generate a video ringback tone based on the current status information and send it to the monitored party's terminal device in the form of a calling video ringback tone.
6. A monitoring method based on video ringback tones, applied to a video ringback tones server, characterized in that, include: Receive alarm calls triggered by a specific monitoring number; Based on the monitoring number, determine the abnormal status type corresponding to the alarm call; Based on the abnormal state type, determine the alarm scheme corresponding to the abnormal state type; According to the alarm scheme, alarm video ringback tones are generated for the guardian and the ward respectively, and sent to the terminal devices of the guardian and the ward respectively for playback.
7. The method according to claim 6, characterized in that, Also includes: Receive status query calls triggered by a guardian based on a specific number; Determine the query status type corresponding to the specific number, and generate a status query request for the query status type; The status query request is sent to the device of the ward that has established a guardianship relationship with the guardian, and the status information uploaded by the ward device is received. A video ringback tone is generated based on the status information and sent to the guardian's terminal device in the form of a calling video ringback tone.
8. A monitoring device based on video ringback tones, characterized in that, include: An abnormal state determination unit is used to determine whether the monitored party is in an abnormal state based on the acquired monitored party status information. An abnormality type determination unit is used to determine the abnormality type corresponding to the current abnormality when it is determined that the monitored party is currently in an abnormal state, and to determine the monitoring number corresponding to the abnormality type. The alarm call unit is used to send the corresponding monitoring number to the video ringback tone server, and initiate an alarm call to the monitoring party based on the monitoring number. It also receives the alarm video ringback tone sent by the video ringback tone server and plays the alarm video ringback tone before the alarm call is connected. The alarm video ringback tone is generated by the video ringback tone server based on the abnormal state type determined by the monitoring number, and based on the abnormal state type, obtains the alarm scheme corresponding to the abnormal state type preset by the monitoring party, and generates the alarm scheme.
9. A monitoring device based on video ringback tones, characterized in that, include: An alarm receiving unit is used to receive alarm calls triggered based on a specific monitoring number; An anomaly determination unit is used to determine the anomaly status type corresponding to the alarm call based on the monitoring number; An alarm scheme determination unit is used to determine an alarm scheme corresponding to the abnormal state type based on the abnormal state type. The video ringback tone generation unit is used to generate alarm video ringback tones for the guardian and the ward respectively according to the alarm scheme, and send them to the terminal devices of the guardian and the ward respectively for playback.
10. A computer-readable storage medium storing one or more programs that, when executed by an electronic device including a plurality of applications, cause the electronic device to perform the method as claimed in any one of claims 1-7.
Citation Information
Patent Citations
Method and switchboard of implementing color bell control
CN101179627A
Mobile terminal, call reminding system of mobile terminal and method for call reminding
CN102387480A
Ringtone realization method, ringtone realization device and server
CN105704336A
Method for continuously monitoring and processing human body vital signs in real time and monitoring device used by method
CN108420415A