Intelligent voice prompting method and intelligent voice robot
Intelligent voice robots detect environmental triggers, play warning messages, and display QR codes to achieve automated safety management. This solves the problem of high human resource consumption in traditional methods and improves the efficiency and service quality of safety management in public places.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- LEBO XINRUI BEIJING CULTURE MEDIA CO LTD
- Filing Date
- 2022-04-08
- Publication Date
- 2026-05-05
AI Technical Summary
Traditional information prompts and data collection in public places require a lot of manpower and resources, are inefficient and put a lot of pressure on management, and lack methods to reduce labor costs while ensuring safety management.
An intelligent voice robot is used to detect environmental triggering conditions, play warning messages, display local QR codes, and collect security management information simultaneously. By using sensing components and a virtual host to optimize voice broadcasting, automated security control is achieved.
Automated safety management processes reduce the repetitive workload of manual supervision, improve the efficiency and humanized services of safety management in public places, and reduce the consumption of human resources.
Smart Images

Figure CN116052333B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of intelligent robot technology, and in particular to an intelligent voice prompt method and an intelligent voice robot. Background Technology
[0002] A QR code is a black and white graphic that uses specific geometric shapes arranged in a certain pattern on a plane (two-dimensional direction) to record data symbols. It also has certain verification functions, automatic recognition of information in different rows, and the ability to handle graphic rotation changes.
[0003] Traditional information prompts and data collection not only require a lot of manpower and resources but are also inefficient, thus bringing certain management pressure. There is an urgent need for a method that can simultaneously meet security management requirements and reduce labor costs. Summary of the Invention
[0004] In view of the above problems, the present invention is proposed to provide an intelligent voice prompt method and an intelligent voice robot that overcome or at least partially solve the above problems.
[0005] According to a first aspect of the present invention, an intelligent voice prompt method is provided, applied to at least one intelligent voice robot deployed in various types of public places, the method comprising:
[0006] When the current environment is detected to meet the preset triggering conditions of the intelligent voice robot, the security management process of the intelligent voice robot is started;
[0007] Obtain basic warning text from a pre-established warning information database, and synthesize warning information prompts using the basic warning text;
[0008] Play the aforementioned warning message audio;
[0009] A local QR code is displayed for scanning and identification by people entering and exiting the public place; the local QR code is uniformly matched and dynamically managed by the security management requirements of the deployment location of the intelligent voice robot;
[0010] The system synchronously collects security management information for any person entering or exiting the public place; the security management information includes information about the person entering or exiting.
[0011] Optionally, the intelligent voice robot is equipped with at least one sensing element. When the current environment is detected to meet the preset triggering conditions of the intelligent voice robot, the safety management process of the intelligent voice robot is initiated, including:
[0012] Detecting at least one environmental element in the current environment triggers the sensing element installed in the intelligent voice robot, which in turn triggers the start of the intelligent voice robot's safety management process.
[0013] Optionally, the sensing components include at least one of the following: infrared sensor, ultrasonic sensor, weight sensor, video camera, timer, counter, temperature and humidity sensor, carbon dioxide sensor, microphone for recording sound, and MINIPAD display for interaction between the user and the intelligent voice robot.
[0014] Optionally, the detection of at least one environmental element in the current environment triggers the sensing element installed in the intelligent voice robot, and the sensing element triggers the initiation of the intelligent voice robot's safety management process, including:
[0015] The intelligent voice robot is equipped with two or more sensing elements. Different environmental elements trigger different sensing elements, which in turn trigger different safety control processes of the intelligent voice robot.
[0016] Optionally, the synchronous collection of security management information corresponding to any person entering or exiting the public place includes:
[0017] Identify the target environmental element that triggers the start of the security control process, and the element category corresponding to the target environmental element;
[0018] The information collection method is determined based on the element category corresponding to the target environmental element, so as to simultaneously collect the security management information of any person entering or leaving the public place using the information collection method.
[0019] Optionally, the step of determining the information collection method based on the element category corresponding to the target environmental element, so as to synchronously collect the security management information corresponding to any person entering or exiting the public place using the information collection method, includes:
[0020] If the people entering and exiting include adult users, the local QR code is used to synchronously collect the security management information corresponding to any person entering or exiting the public place;
[0021] If the people entering and exiting include elderly users, teenagers and / or children, then an information collection window is opened to collect the basic information of the people entering and exiting, so as to simultaneously collect the security management information of any person entering or exiting the public place.
[0022] Optionally, before obtaining basic warning text from a pre-established warning information database and synthesizing warning information prompts using the basic warning text, the method further includes:
[0023] Collect safety management requirements from multiple levels of administrative regions, and generate basic warning texts for various public places for warning voice broadcasts based on the safety management requirements of each administrative region, so as to establish a matching system between the safety publicity and implementation work database and the existing administrative division jurisdiction;
[0024] Language and intonation data corresponding to each region are collected in advance, and the language and intonation data is used to train at least one virtual host for voice broadcasting. The voice structure of the virtual host can be optimized for multilingual playback as the technology is upgraded.
[0025] Optionally, the step of obtaining basic warning text from a pre-established warning information database and synthesizing warning information prompts using the basic warning text includes:
[0026] The location of the intelligent voice robot is obtained by the positioning device installed in the intelligent voice robot, and the type of place corresponding to the location of the intelligent voice robot is identified. A basic warning text matching the administrative region and place type to which the intelligent voice robot belongs is selected from the warning information database.
[0027] The basic warning text is synthesized into a warning message voice using text-to-speech (TTS) technology, which is then broadcast by a virtual host matched with the administrative region; or,
[0028] In response to an operation command from the operating terminal, any virtual host is designated to record the basic warning text.
[0029] Optionally, after playing the warning message prompt, the method further includes:
[0030] Obtain the new security management requirements updated in real time for the administrative region, and update the basic warning text in the warning information database according to the new security requirements;
[0031] Generate new warning message audio using the updated base warning text.
[0032] Optionally, after synchronously collecting the security management information corresponding to any person entering or exiting the public place, the method further includes:
[0033] The system acquires the collection results of the security management information and generates collection result prompt information based on the collection results; the collection result prompt information includes a first prompt information indicating successful information collection and a second prompt information indicating failed information collection.
[0034] Record the successfully acquired security management information and transmit the security management information to the control terminal of the intelligent voice robot.
[0035] Optionally, after recording the successfully acquired security management information and transmitting the security management information to the control terminal of the intelligent voice robot, the method further includes:
[0036] Analyze the security management information to identify the group categories corresponding to the personnel entering and exiting;
[0037] Trigger matching alert measures based on the group category.
[0038] Optionally, analyzing the security management information to identify the group categories corresponding to the personnel entering and exiting includes:
[0039] The security management information is analyzed, and the group category corresponding to the personnel entering and exiting is identified based on their historical activity information within a preset time period.
[0040] Optionally, the grouping categories include a first grouping category, a second grouping category, and a third grouping category; the early warning measure triggered based on the grouping category includes:
[0041] If the grouping category is the first grouping category, then only the security management information corresponding to the personnel entering and exiting will be recorded;
[0042] If the group category is the second group category, then the security management information corresponding to the personnel entering and exiting is recorded, and an early warning message is sent to the control terminal;
[0043] If the grouping category is the third grouping category, a reminder message will be automatically sent to the security management center of the target administrative region to which the intelligent voice robot belongs; the reminder message carries the security management information of the people entering and exiting and the geographical location information of the intelligent voice robot.
[0044] Optionally, after recording the successfully acquired security management information and transmitting the security management information to the control terminal of the intelligent voice robot, the method further includes:
[0045] The system collects pedestrian traffic data for the public place within a fixed time period. When the pedestrian traffic data indicates that the pedestrian traffic in the public place exceeds a set limit, a notification message is sent to the control terminal to instruct pedestrian traffic control measures to be implemented.
[0046] Optionally, after collecting the pedestrian traffic data of the public place within a fixed time period, the method further includes:
[0047] The security management information and / or the pedestrian flow data are uploaded to the cloud of the deployed public place, so that the general management department can access the cloud background system through the management interface corresponding to the control terminal, report and analyze the data of the equipment under its jurisdiction, and share the data with the superior unit.
[0048] According to another aspect of the present invention, an intelligent voice robot is provided, which can be deployed in various types of public places, the intelligent voice robot comprising:
[0049] The detection module is used to initiate the safety management process of the intelligent voice robot when the current environment meets the preset triggering conditions of the intelligent voice robot.
[0050] The speech synthesis module is used to obtain basic warning text from a pre-established warning information database and synthesize warning information prompts using the basic warning text;
[0051] The playback module is used to play the warning message audio.
[0052] The display module is used to display a local QR code for scanning and identification by people entering and exiting the public place; the local QR code is uniformly matched and dynamically managed by the security management requirements of the deployment location of the intelligent voice robot;
[0053] The information collection module is used to synchronously collect security management information corresponding to any person entering or exiting the public place; the security management information includes the information of the person entering or exiting.
[0054] Optionally, the intelligent voice robot is equipped with at least one sensing element;
[0055] The detection module is also used to detect at least one environmental element in the current environment to trigger the sensing element set in the intelligent voice robot, and the sensing element triggers the start of the intelligent voice robot's safety management process.
[0056] Optionally, the sensing components include at least one of the following: infrared sensor, ultrasonic sensor, weight sensor, video camera, timer, counter, temperature and humidity sensor, carbon dioxide sensor, microphone for recording sound, and MINIPAD display for interaction between the user and the intelligent voice robot.
[0057] Optionally, the intelligent voice robot is equipped with two or more sensing elements. Different environmental elements trigger different sensing elements, which in turn trigger different safety control processes of the intelligent voice robot.
[0058] Optionally, the information collection module is further used for:
[0059] Identify the target environmental element that triggers the start of the security control process, and the element category corresponding to the target environmental element;
[0060] The information collection method is determined based on the element category corresponding to the target environmental element, so as to simultaneously collect the security management information of any person entering or leaving the public place using the information collection method.
[0061] Optionally, the information collection module is further used for:
[0062] If the people entering and exiting include adult users, the local QR code is used to synchronously collect the security management information corresponding to any person entering or exiting the public place;
[0063] If the people entering and exiting include elderly users, teenagers and / or children, then an information collection window is opened to collect the basic information of the people entering and exiting, so as to simultaneously collect the security management information of any person entering or exiting the public place.
[0064] Optionally, the speech synthesis module is further configured to:
[0065] Before synthesizing warning message prompts using the pre-established warning information database, basic warning texts are obtained from the database. Before the basic warning texts are used to synthesize warning message prompts, safety management requirements of multi-level administrative regions are collected. Based on the safety management requirements of each administrative region, basic warning texts for warning message broadcasts for various public places are generated to establish a matching system between the safety publicity and implementation work database and the existing administrative division jurisdiction.
[0066] Language and intonation data corresponding to each region are collected in advance, and the language and intonation data is used to train at least one virtual host for voice broadcasting. The voice structure of the virtual host can be optimized for multilingual playback as the technology is upgraded.
[0067] Optionally, the speech synthesis module is further configured to:
[0068] The location of the intelligent voice robot is obtained by the positioning device installed in the intelligent voice robot, and the type of place corresponding to the location of the intelligent voice robot is identified. A basic warning text matching the administrative region and place type to which the intelligent voice robot belongs is selected from the warning information database.
[0069] The basic warning text is synthesized into a warning message voice using text-to-speech (TTS) technology, which is then broadcast by a virtual host matched with the administrative region; or,
[0070] In response to an operation command from the operating terminal, any virtual host is designated to record the basic warning text.
[0071] Optionally, the speech synthesis module is further configured to:
[0072] Obtain the new security management requirements updated in real time for the administrative region, and update the basic warning text in the warning information database according to the new security requirements;
[0073] Generate new warning message audio using the updated base warning text.
[0074] Optionally, the intelligent voice robot further includes:
[0075] The prompting module is used to obtain the collection results of the security management information and generate collection result prompt information based on the collection results; the collection result prompt information includes a first prompt information indicating successful information collection and a second prompt information indicating failed information collection.
[0076] The recording module is used to record the successfully acquired security management information and transmit the security management information to the control terminal of the intelligent voice robot.
[0077] Optionally, the intelligent voice robot further includes:
[0078] The early warning module is used to analyze the security management information to identify the group categories corresponding to the personnel entering and exiting;
[0079] Trigger matching alert measures based on the group category.
[0080] Optionally, the early warning module is further used for:
[0081] The security management information is analyzed, and the group category corresponding to the personnel entering and exiting is identified based on their historical activity information within a preset time period.
[0082] Optionally, the grouping categories include a first grouping category, a second grouping category, and a third grouping category; the early warning module is further configured to:
[0083] If the grouping category is the first grouping category, then only the security management information corresponding to the personnel entering and exiting will be recorded;
[0084] If the group category is the second group category, then the security management information corresponding to the personnel entering and exiting is recorded, and an early warning message is sent to the control terminal;
[0085] If the grouping category is the third grouping category, a reminder message will be automatically sent to the security management center of the target administrative region to which the intelligent voice robot belongs; the reminder message carries the security management information of the people entering and exiting and the geographical location information of the intelligent voice robot.
[0086] Optionally, the intelligent voice robot further includes: a statistics module;
[0087] The statistics module is used to collect pedestrian traffic data of the public place within a fixed time period. When it is determined from the pedestrian traffic data that the pedestrian traffic of the public place exceeds the set pedestrian traffic limit, a notification message is sent to the control terminal to instruct pedestrian traffic control.
[0088] Optionally, the statistics module is further configured to:
[0089] The security management information is uploaded to the local area network of the same public place for data sharing;
[0090] Identify at least one other intelligent voice robot that is in the same public place as the intelligent voice robot or belongs to the same unified management group;
[0091] Obtain the safety management information of the corresponding records of other robots, filter out duplicate information, and then obtain the pedestrian flow data of the public place.
[0092] This invention provides an intelligent voice prompt method and an intelligent voice robot. When the environment where the intelligent voice robot is deployed meets pre-set triggering conditions, it can automatically initiate a security control process. It synthesizes a warning message based on acquired basic warning text and plays it. Simultaneously, it can display a local QR code for people entering and exiting public places to scan and identify, thereby collecting relevant information about those entering and exiting the public area, effectively monitoring public security. The method provided by this invention transforms the information transmission through QR code scanning into a human-auditory process, minimizing the overhead of repetitive prompts during manual supervision. Supervisory personnel only need to observe the on-site QR code scanning, eliminating the need for frequent manual prompts, thus improving security control while reducing the workload of supervisory personnel.
[0093] The above description is merely an overview of the technical solution of the present invention. In order to better understand the technical means of the present invention and to implement it in accordance with the contents of the specification, and in order to make the above and other objects, features and advantages of the present invention more apparent and understandable, specific embodiments of the present invention are described below.
[0094] The above and other objects, advantages and features of the present invention will become more apparent to those skilled in the art from the following detailed description of specific embodiments of the invention in conjunction with the accompanying drawings. Attached Figure Description
[0095] Various other advantages and benefits will become apparent to those skilled in the art upon reading the following detailed description of preferred embodiments. The accompanying drawings are for illustrative purposes only and are not intended to limit the invention. Furthermore, the same reference numerals denote the same parts throughout the drawings. In the drawings:
[0096] Figure 1 A schematic flowchart of an intelligent voice prompt method according to an embodiment of the present invention is shown;
[0097] Figure 2 A schematic flowchart of an intelligent voice prompt method according to another embodiment of the present invention is shown;
[0098] Figure 3 A schematic diagram of an application scenario of an intelligent voice robot according to an embodiment of the present invention is shown;
[0099] Figure 4 A schematic diagram of an intelligent voice robot structure according to an embodiment of the present invention is shown;
[0100] Figure 5 A schematic diagram of the structure of an intelligent voice robot according to another embodiment of the present invention is shown. Detailed Implementation
[0101] Exemplary embodiments of the invention will now be described in more detail with reference to the accompanying drawings. While exemplary embodiments of the invention are shown in the drawings, it should be understood that the invention may be implemented in various forms and should not be limited to the embodiments set forth herein. Rather, these embodiments are provided so that this invention will be thorough and complete, and will fully convey the scope of the invention to those skilled in the art.
[0102] This invention provides an intelligent voice prompt method that can be applied to at least one intelligent voice robot deployed in various types of public places. The intelligent voice robot mentioned in this embodiment is an intelligent robot device with functions such as intelligent voice broadcasting and intelligent remote control.
[0103] Figure 1 A schematic flowchart of an intelligent voice prompt method according to an embodiment of the present invention is shown. See below. Figure 1 It is understood that the intelligent voice prompt method provided in the embodiments of the present invention may include at least the following steps S101 to S104.
[0104] S101, when the current environment is detected to meet the preset triggering conditions of the intelligent voice robot, the intelligent voice robot safety management process is initiated. The current environment is the deployment environment of the intelligent voice robot, which can be an indoor or outdoor environment. The intelligent voice robot can have a pre-set safety management process that can automatically start and stop according to the deployment environment. That is, when the current environment meets the preset triggering conditions, the intelligent voice robot can automatically start the safety management process to perform relevant safety management actions, such as playing warning prompts or displaying a safety management QR code. The preset triggering conditions are pre-set conditions for automatically triggering the start of the safety management process in the intelligent voice robot, such as environmental change conditions, crowd change conditions, etc. These conditions can be specifically set according to different safety management needs, and this embodiment of the invention does not limit the specific settings.
[0105] S102: Obtain basic warning text from a pre-established warning information database, and use the basic warning text to synthesize warning information prompt voice.
[0106] In this embodiment, the warning information database is a pre-created database for storing basic warning texts. These basic warning texts are pre-organized and customized according to the safety management requirements of various regions. The acquired basic warning texts can be synthesized into warning message audio using speech synthesis technology. The safety management requirements are set based on public events related to natural and / or man-made disasters. Public events include natural disasters, accidents, public health emergencies, and social security incidents.
[0107] S103, plays a warning message prompt.
[0108] The intelligent voice robot can be equipped with playback components such as speakers and loudspeakers. For the warning message prompts synthesized in step S102 above, the intelligent voice robot can directly play them through the playback components.
[0109] S104 displays a local QR code for people entering and exiting public places to scan and identify; the local QR code is uniformly matched and dynamically managed by the security management requirements of the location where the intelligent voice robot is deployed.
[0110] The intelligent voice robot can display a local QR code while playing warning messages. Once the QR code is scanned, the scanner's information can be displayed on a scanning device such as a mobile phone.
[0111] In this embodiment, the local QR codes of each intelligent voice robot are uniformly matched and dynamically managed according to the security management requirements of the deployment location of the intelligent voice robot.
[0112] S105, synchronously collects security management information corresponding to any person entering or exiting a public place; the security management information includes information about the person entering or exiting.
[0113] While displaying warning messages via voice prompts and showing local QR codes, the system can also collect security management information on individuals entering and exiting the designated area. This includes basic personal information, entry and exit times, and other security management information. In addition to the above, other information can be collected based on different security control needs.
[0114] This invention provides an intelligent voice prompt method and an intelligent voice robot. When the environment where the intelligent voice robot is deployed meets pre-set triggering conditions, it can automatically initiate a security control process. It synthesizes a warning message based on acquired basic warning text and plays it. Simultaneously, it can display a local QR code for people entering and exiting public places to scan and identify, thereby collecting relevant information about people entering and exiting the public area, effectively monitoring public security. The method provided by this invention transforms the information transmission through QR code scanning into a human-auditory process, minimizing the overhead of repetitive prompts during manual supervision. Supervisory personnel only need to observe the on-site QR code scanning, eliminating the need for frequent manual prompts, thus improving security management while reducing the workload of supervisory personnel.
[0115] In this embodiment of the invention, the intelligent voice robot is equipped with at least one sensing element, which includes at least one of the following: an infrared sensor, an ultrasonic sensor, a weight sensor, a video camera, a timer, a counter, a temperature and humidity sensor, a carbon dioxide sensor, a microphone for recording sound, and a MINIPAD display screen for interaction between the user and the intelligent voice robot.
[0116] Optionally, when step S101 detects that the current environment meets the preset triggering conditions of the intelligent voice robot, starting the intelligent voice robot safety management process may include: detecting at least one environmental element in the current environment triggering the sensing element set in the intelligent voice robot, and the sensing element triggering the start of the intelligent voice robot safety management process.
[0117] In other words, information about the environment in which the intelligent voice robot is currently located can trigger the sensors installed within the robot. Different sensors may have different trigger conditions. Once a sensor is triggered, the corresponding safety control process of the intelligent voice robot can be initiated. For example, when the sensor is an infrared sensor, if it detects the presence of someone nearby, the preset trigger condition is met, and the safety control process can be initiated. When the sensor is a carbon dioxide sensor, if it detects a change in the surrounding carbon dioxide concentration, it indicates a change in the number of people in the vicinity. For example, if the carbon dioxide concentration was zero at a previous moment, and the sensor detects an increase in the carbon dioxide concentration, it indicates that someone has entered or exited, and the safety control process can also be initiated. Simply put, when the sensor detects the entry or exit of someone, it can automatically trigger the safety control process to broadcast warning messages and display a local QR code.
[0118] Optionally, the intelligent voice robot is equipped with two or more sensing elements. Different environmental elements trigger different sensing elements, which in turn trigger different safety control processes of the intelligent voice robot. In other words, the intelligent voice robot can be pre-programmed with multiple different safety control processes. The safety control measures corresponding to different safety control processes may differ, such as playing different warning message prompts or playing warning message prompts a different number of times. When the intelligent voice robot is equipped with two or more sensing elements, different types of sensing elements can be matched with different safety control measures, thereby triggering different safety control processes.
[0119] As mentioned in step S102 above, after initiating the intelligent voice robot safety management process, basic warning text will be retrieved from the pre-established warning information database. Before this, the basic warning text and the corresponding stored database need to be created first. That is, before step S102 above, the following steps A1 to A2 can also be performed first.
[0120] A1 collects safety management requirements from multiple levels of administrative regions, and generates basic warning texts for various public places for warning voice broadcasts based on the safety management requirements of each administrative region, so as to establish a matching system between the safety publicity and implementation work database and the existing administrative division jurisdiction.
[0121] In other words, when creating basic warning texts, it is necessary to collect the safety management requirements of multi-level administrative regions, such as the safety management requirements of each village / community, township, town / street office, county / district, city, and province. Then, based on the safety management requirements of each administrative region, basic warning texts for warning voice broadcasts in various public places are generated, thereby establishing a complete database for the implementation of safety publicity work.
[0122] A2: Collect language and intonation data for each region in advance, and use the language and intonation data to train at least one virtual host for voice broadcasting. The virtual host's corresponding voice structure can be optimized for multilingual playback as the technology is upgraded.
[0123] Different regions have different language systems. Therefore, while collecting security management requirements from multiple levels of administrative regions, it is also possible to collect corresponding language and intonation data for each region. This data can be used to train multiple virtual hosts who can use different intonations to broadcast messages. When the intelligent voice robot plays warning messages, it can adapt to different regions and match the virtual hosts with the corresponding intonations, making the broadcast of warning messages more humanized and personalized. This encourages people entering and leaving public places to actively cooperate with security control measures.
[0124] Based on this, step S102 above, which obtains basic warning text from a pre-established warning information database and synthesizes warning information prompt voice using the basic warning text, may further include:
[0125] S102-1, Based on the positioning device installed in the intelligent voice robot, obtain the geographical location of the intelligent voice robot and identify the type of place corresponding to the geographical location of the intelligent voice robot, and select the basic warning text that matches the administrative management area and place type to which the intelligent voice robot belongs from the warning information database.
[0126] S102-2 utilizes Text-to-Speech (TTS) technology to synthesize basic warning text into warning message audio, which is then broadcast by a virtual host matched with the administrative region.
[0127] S102-3, responding to operation commands from the control terminal, designates any virtual host to record basic warning text. The control terminal can be any device associated with the intelligent voice robot. Users can select a professional-grade human host provided by the backend to record the specified warning content through the control terminal's interface, establishing a multi-level voice production service structure to meet the diverse needs of control terminal users.
[0128] In the method provided in this embodiment, multiple virtual hosts using TTS (Text-to-Speech) are embedded within the intelligent voice robot system. The virtual hosts' voices and intonations can be trained and upgraded to meet the needs of multilingual and multi-dialect calls. TTS technology simulates the human understanding process of natural language, including text normalization, word segmentation, grammatical analysis, and semantic analysis, enabling the computer to fully understand the input text and provide various pronunciation prompts required for the latter two parts. Basic warning texts, such as safety warning guidance introductions, are stored in the warning information database. After the safety control process is initiated, a specific basic warning text in the warning information database can be quickly activated to synthesize the corresponding warning information prompt voice, thereby improving the efficiency of voice broadcasting. In addition, the solution in this embodiment can also achieve atmosphere-based voice broadcasting based on different regional population profiles, effectively reducing potential interpersonal friction in the safety control execution process and improving control efficiency. In practical applications, while converting basic warning text into warning information prompt voice, background music can also be provided simultaneously to enrich the content of the warning information prompt voice broadcast.
[0129] In addition, this embodiment can also acquire new security management requirements updated in real time for administrative regions, update the basic warning text in the warning information database according to the new security management requirements, and generate new warning information prompts using the updated basic warning text. In other words, the basic warning text stored in the warning information database can also be iteratively upgraded to ensure that warning prompts are updated in a timely manner, allowing users to understand the latest security management solutions.
[0130] As mentioned in step S104 above, when the intelligent voice robot plays the warning message prompt, it can also simultaneously display a local QR code. This local QR code is generated based on the security management requirements corresponding to the geographical location where the intelligent voice robot is deployed. The local QR code can be scanned and recognized by mobile phones or other terminals, and information corresponding to the personnel entering and exiting the scanning device can be generated on the scanning device. The method provided in this embodiment, based on a security management-established protection system, allows each intelligent voice robot to uniformly execute local security control processes. By placing intelligent voice robots in public places and prompting each person entering and exiting the public place to scan the code, and automatically displaying remote, real-time travel and security control QR codes, a system and device that establishes a correspondence between the local QR code and the prompt message content can effectively improve the security control effect of public places.
[0131] In this embodiment, the intelligent voice robot can also perform the above step S105 to synchronously collect security management information corresponding to any person entering or exiting a public place. Optionally, the above step S105 may further include:
[0132] S105-1, Identify the target environmental element that triggers the start of the security control process, and the element category corresponding to the target environmental element. As mentioned above, the security control process is initiated when the current environment in which the intelligent voice robot is deployed meets preset triggering conditions. Optionally, it can be initiated by different environmental elements in the current environment. The environmental element can include a single person entering or exiting, or two or more people entering or exiting. In practical applications, people entering or exiting can be divided into different types such as adults, the elderly, and children. Therefore, in this embodiment, each person entering or exiting can be used as the target environmental element that triggers the start of the security control process, and different age groups can be used as the element categories corresponding to the target environmental element.
[0133] S105-2, determine the information collection method according to the element category corresponding to the target environmental element, so as to use the information collection method to simultaneously collect the safety management information corresponding to any person entering or leaving the public place.
[0134] Furthermore, different target environmental elements can be configured with different information collection methods, thereby utilizing the appropriate information collection method to collect security management information from people entering and exiting. For example, if the people entering and exiting include adult users, the security management information corresponding to any person entering or exiting the public place can be collected simultaneously using a local QR code. Due to the widespread use of smartphones and other smart terminals, adults are proficient in operating smart terminals and can scan and recognize local QR codes through their mobile phones. Therefore, in this embodiment, the security management information corresponding to adult users can be collected simultaneously using local QR codes.
[0135] On the other hand, if the people entering and exiting include elderly users, teenagers, and / or children, an information collection window is activated to collect basic information about these individuals. This allows for the simultaneous collection of safety management information for any person entering or exiting the public area. In practical applications, elderly users, teenagers, and / or children may not have their own smart terminals or may not be proficient in operating them, making it impossible to collect their personal safety management information by scanning local QR codes. Therefore, the intelligent voice robot in this embodiment can also be equipped with an information collection window to simultaneously collect safety management information for any person entering or exiting the public area.
[0136] In this embodiment, the information collection window of the intelligent voice robot can be a human-computer interaction window, such as an image interaction window, a voice interaction window, or a human-computer operation window. People entering and exiting public places can input their personal safety management information through the information collection window via text, voice, or manual operation. For example, when the information collection window is a voice interaction window, people can actively input their personal safety management information by voice, or engage in voice dialogue with the intelligent voice robot. The safety management information is then collected based on the people's responses to pre-set prompts during the interaction. For example, the prompts might be questions like "Please state your name," and the corresponding safety management information can be extracted from the people's answers to these questions. Of course, the responses from people can also be verified online in the background and recorded after verification.
[0137] When the information collection window is a human-machine interface (HMI) window, personnel entering and exiting can collect security management information by inputting questions and answers or selecting existing information through the HMI interface. The information collection window is an image-interactive window.
[0138] The intelligent voice robot device in this embodiment can have an OLED or LCD display screen on the front for displaying local QR codes. The device's power source is addressed in two ways: firstly, by embedding a battery of a certain capacity to support mobile applications; secondly, by using an active power supply (charger), which allows for charging upon plugging in and provides continuous power after the device is fixed in place. The network supports IoT SIM cards, Wi-Fi, and Bluetooth, satisfying various network access methods. The device has a positioning function, allowing users to view the device's geographical location at any time through the operating terminal and the overall backend; it supports remote power on / off; each device has a unique identification code and supports client-side naming, grouping, or hierarchical management, maximizing the support for managers at all levels in various public places to log in to the backend and monitor the device's operational status at any time.
[0139] Furthermore, such as Figure 2 As shown, after synchronously collecting the security management information corresponding to any person entering or exiting a public place in step S105 above, the method of this embodiment may further include:
[0140] S106, Obtain the collection results of security management information, and generate collection result prompt information based on the collection results; the collection result prompt information includes a first prompt information indicating successful information collection and a second prompt information indicating failed information collection.
[0141] After the intelligent voice robot collects the safety management information of people entering and exiting, it can obtain the collection results of successful or unsuccessful collection and generate collection result prompt information based on the collection results.
[0142] S107: Record the successfully collected safety management information and transmit it to the control terminal of the intelligent voice robot. The successfully collected safety management information can also be recorded, stored, and synchronously transmitted to the control terminal of the intelligent voice robot. The control terminal can be a PC associated with various intelligent voice robots in the public place, allowing for unified operation and management of all intelligent voice robots.
[0143] The operation and management of intelligent voice robots are divided into three modes: First, PC login, which satisfies comprehensive data presentation management (statistics of people scanning QR codes within any time period, security of personal information, retention period management, and analysis and statistics of repeat users); Second, mobile login (WeChat mini-program, Alipay mini-program), which allows mobile users to conveniently operate and manage within their existing apps without needing to download additional applications; Third, embedded login via apps or third-party platforms, which ensures timely access (compared to the features of mini-programs), especially avoiding the time wastage caused by multiple platform logins. The app program structure has better stability and can meet the stable needs of operators who use the device and services for extended periods. In addition to displaying the entry and exit records of each intelligent voice robot, the control terminal can also manage the multi-dimensional display of device status data for each intelligent voice robot, such as: power on / off, voice playback content, QR code generation, geographical location, management structure, battery level, power consumption method, daily, weekly, monthly, random time selection statistics, user profiles, and other multi-dimensional device data.
[0144] Taking a large shopping mall as an example, before using the intelligent voice robot of this embodiment, manual verification and announcements were required. The content of these announcements was essentially the same throughout the day, resulting in high workload and frequent repetition. However, with the intelligent voice robot of this embodiment, the shopping mall staff can use their mobile phones to set up and broadcast the announcements via a virtual host. Figure 3 As shown, multiple passageways can be set up at the mall's entrances and exits. Each of the three passageways has a corresponding intelligent voice robot at its entrance area. Each intelligent voice robot can be connected to a PC control terminal and the cloud. Each intelligent voice robot can provide voice prompts, which staff can view via PC. This enables "listening" interaction between mall visitors and the intelligent voice robots, saving manpower needed for security management and significantly improving work efficiency.
[0145] Furthermore, after the above step S107 records the successfully collected security management information and transmits the security management information to the control terminal of the intelligent voice robot, the security management information can be analyzed to identify the group categories corresponding to the personnel entering and exiting, and then trigger matching early warning measures based on the group categories.
[0146] The collected security management information can also be intelligently analyzed to identify the group categories of people entering and exiting, thereby taking corresponding early warning measures. Specifically, security management information can be analyzed to identify the group categories of people entering and exiting based on their historical activity information within a preset time period. In this embodiment, the group categories include a first group category, a second group category, and a third group category, ranging from low to high. Different measures correspond to different group categories, and the number and attributes of the group categories can be set according to different requirements. The different group categories and their corresponding measures are described in detail below.
[0147] I. First Group Category
[0148] The intelligent voice robot can record only the security management information corresponding to the first group of people entering and exiting.
[0149] II. Second Group Category
[0150] When recording the security management information of personnel entering and exiting at the second level, the intelligent voice robot can also send early warning messages to the control terminal.
[0151] III. Third Group Category
[0152] For personnel entering and exiting from the third group category, the intelligent voice robot needs to automatically send a notification message to the security management center of the area to which it belongs. This notification message carries the security management information of the personnel and the geographical location information of the intelligent voice robot. In other words, the intelligent voice robot provided in this embodiment can directly connect to the local security management center. When the intelligent voice robot detects the arrival of personnel from the third group category, it can directly send a notification message to the local security management center, which can also include the intelligent voice robot's specific geographical location.
[0153] In practical applications, the classification methods, discrimination methods, and security control measures corresponding to different group categories can be set according to the security control requirements of different regions. This embodiment of the invention does not limit this.
[0154] In addition to the above, after recording the successfully collected safety management information in step S107 and transmitting the safety management information to the control terminal of the intelligent voice robot, it is also possible to count the flow of people in public places within a fixed time period. When it is determined from the flow of people data that the flow of people in public places exceeds the set flow of people, a notification message is sent to the control terminal to instruct the flow of people to be controlled.
[0155] In other words, the intelligent voice robot in this embodiment can also statistically analyze pedestrian traffic data in public places, thereby enabling management personnel to control the flow of people when there is a large flow of people in public places. In this embodiment of the invention, statistically analyzing pedestrian traffic data in public places within a fixed time period may include the following steps B1 to B3.
[0156] B1 uploads security management information within a fixed time period to the local area network of the same public place for data sharing.
[0157] Each intelligent voice robot in a public place can upload the security management information it collects within a fixed time period to the local area network of the public place, thereby achieving data sharing with other intelligent voice robots in the same public place.
[0158] B2, identify at least one other intelligent voice robot that is in the same public place as the intelligent voice robot or belongs to a unified management group.
[0159] B3 retrieves the safety management information of other robots' corresponding records, filters out duplicate information, and obtains the pedestrian flow data of public places.
[0160] For any intelligent voice robot in the same public place, it can communicate with other intelligent voice robots in the same public place or belonging to a unified management group through the local area network of the public place. Furthermore, it can obtain security management information collected and recorded by other intelligent voice robots. After analyzing the security management information collected and recorded by other intelligent voice robots in conjunction with its own data, duplicate information is filtered to obtain the public place's pedestrian flow data. The method provided in this embodiment, through information sharing among all intelligent voice robots in a public place, achieves the filtering of duplicate entry and exit records, thereby accurately calculating the pedestrian flow data of the public place within a fixed time period, providing an accurate data foundation for pedestrian flow management and the implementation of management measures in public places.
[0161] In this embodiment of the invention, the intelligent voice robot can also upload the collected safety management information and / or traffic data to the cloud of the public place where it is deployed, so that the general management department can access the background system of the cloud through the management interface corresponding to the control terminal, report and analyze the data of the equipment under its jurisdiction, and share the data with the superior unit.
[0162] In other words, intelligent voice robots deployed in the same public place can also upload the security management information of each person entering and exiting the public place to the cloud for unified management. Through the management interface corresponding to the control terminal of all intelligent voice robots in the public place, they can access the back-end system in the cloud, thereby realizing the reporting and analysis of data of the public place or the equipment under the unified management area of the general control department.
[0163] In this embodiment, the intelligent voice robot and its corresponding PC control terminal support real-time remote access to pedestrian flow data obtained through QR code scanning, which is beneficial for relevant departments to conduct timely management of passenger flow statistics and safety management in various public places. Furthermore, this embodiment enables data structure integration and access with control platforms in other administrative regions through cloud-based data structures, meeting the needs of various regions for statistical analysis and retrieval of multi-scenario travel information for a specific group of people under safety control conditions.
[0164] Furthermore, in this embodiment, cloud-based query services can be implemented for single or multiple intelligent voice robots, as well as different data under different administrative region hierarchical permissions. That is, each intelligent voice robot has a unique identifier and a corresponding management group, which can be set in multiple levels according to administrative level. For example, hierarchical control groups can be matched with different administrative levels such as county / district, city, prefecture-level city, state, and province. Each control group can be equipped with a unified management PC control terminal at its respective administrative level, enabling real-time remote access to the pedestrian flow data collected by each intelligent voice robot within its jurisdiction through the PC terminal. For example, assuming the intelligent voice robot devices of this embodiment are fully deployed in a street, the street office can remotely view the implementation status of safety control measures and pedestrian flow scanning data within its jurisdiction. A clear and real-time application and service structure will be presented for both implementation personnel and service personnel. Expanding to a county / district, city, prefecture-level city, state, or province, matching data models can be established. Based on the data model, the regularity of pedestrian flow fluctuations over a period can be determined, providing social benefits for safety management through scenario-based simulations. The widespread application of the intelligent voice robot device in this invention will greatly reduce the burden of filling out information and alleviate problems such as congestion and overcrowding during peak hours. Various departments, units, villages, and communities need to establish a digital end-to-end structure for their operations. The intelligent voice robot provided in this invention can significantly improve safety management while reducing costs.
[0165] This invention also provides an intelligent voice robot, which can be deployed in various types of public places, such as... Figure 4 As shown, the intelligent voice robot may include: a detection module 410, a speech synthesis module 420, a playback module 430, a display module 440, and an information acquisition module 450.
[0166] The detection module 410 is used to start the safety management process of the intelligent voice robot when the current environment meets the preset triggering conditions of the intelligent voice robot.
[0167] The speech synthesis module 420 is used to obtain basic warning text from a pre-established warning information database and synthesize warning information prompts using the basic warning text.
[0168] The playback module 430 is used to play the warning message prompt voice; the playback module 440 can be a speaker, loudspeaker or other playback components.
[0169] Display module 440 is used to display a local QR code for scanning and identification by people entering and exiting the public place; wherein, the local QR code is uniformly matched and dynamically managed by the security management requirements of the deployment location of the intelligent voice robot; in practical applications, display module 440 can be a display screen such as OLED or LCD.
[0170] The information collection module 450 is used to synchronously collect security management information corresponding to any person entering or exiting the public place; the security management information includes the information of the person entering or exiting.
[0171] The intelligent voice robot of this embodiment is a hardware and software integrated smart device. It can have an embedded battery of a certain capacity, supports mobile applications, and can also be equipped with a rechargeable power source for charging via plugging in a power source. The intelligent voice robot supports IoT SIM cards, Wi-Fi, and Bluetooth, satisfying various network access methods. The device has a positioning function, allowing users to view its geographical location at any time through the operating terminal and the overall backend. The intelligent voice robot can have a controller for unified management of the entire device. The aforementioned detection module 410, voice synthesis module 420, playback module 430, display module 440, and information acquisition module 450 can all be connected to the controller and managed by the controller to execute actions related to the security control process.
[0172] In an optional embodiment of the present invention, the intelligent voice robot is provided with at least one sensing element; the sensing element is connected to the detection module 410.
[0173] The detection module 410 is also used to detect at least one environmental element in the current environment to trigger the sensing element set in the intelligent voice robot, and the sensing element triggers the start of the intelligent voice robot safety management process.
[0174] In an optional embodiment of the present invention, the types of sensing components include at least one of the following: infrared sensor, ultrasonic sensor, weight sensor, video camera, timer, counter, temperature and humidity sensor, carbon dioxide sensor, microphone for recording sound, and MINIPAD display for interaction between the user and the intelligent voice robot.
[0175] In an optional embodiment of the present invention, the intelligent voice robot is equipped with two or more sensing elements. Different environmental elements trigger different sensing elements, and then different sensing elements trigger the initiation of different safety control processes of the intelligent voice robot.
[0176] In an optional embodiment of the present invention, the information acquisition module 450 is further configured to:
[0177] Identify the target environmental element that triggers the start of the security control process, and the element category corresponding to the target environmental element;
[0178] The information collection method is determined based on the element category corresponding to the target environmental element, so as to simultaneously collect the security management information of any person entering or leaving the public place using the information collection method.
[0179] In an optional embodiment of the present invention, the information acquisition module 450 is further configured to:
[0180] If the people entering and exiting include adult users, the local QR code is used to synchronously collect the security management information corresponding to any person entering or exiting the public place;
[0181] If the people entering and exiting include elderly users, teenagers and / or children, then an information collection window is opened to collect the basic information of the people entering and exiting, so as to simultaneously collect the security management information of any person entering or exiting the public place.
[0182] In an optional embodiment of the present invention, the speech synthesis module 420 is further configured to:
[0183] Before synthesizing warning message prompts using the pre-established warning information database, basic warning texts are obtained from the database. Before the basic warning texts are used to synthesize warning message prompts, safety management requirements of multi-level administrative regions are collected. Based on the safety management requirements of each administrative region, basic warning texts for warning message broadcasts for various public places are generated to establish a matching system between the safety publicity and implementation work database and the existing administrative division jurisdiction.
[0184] Language and intonation data corresponding to each region are collected in advance, and the language and intonation data is used to train at least one virtual host for voice broadcasting. The voice structure of the virtual host can be optimized for multilingual playback as the technology is upgraded.
[0185] In an optional embodiment of the present invention, the speech synthesis module 420 is further configured to:
[0186] The location of the intelligent voice robot is obtained by the positioning device installed in the intelligent voice robot, and the type of place corresponding to the location of the intelligent voice robot is identified. A basic warning text matching the administrative region and place type to which the intelligent voice robot belongs is selected from the warning information database.
[0187] The basic warning text is synthesized into a warning message voice using text-to-speech (TTS) technology, which is then broadcast by a virtual host matched with the administrative region; or,
[0188] In response to an operation command from the operating terminal, any virtual host is designated to record the basic warning text.
[0189] In an optional embodiment of the present invention, the speech synthesis module 420 is further configured to:
[0190] Obtain the new security management requirements updated in real time for the administrative region, and update the basic warning text in the warning information database according to the new security requirements;
[0191] Generate new warning message audio using the updated base warning text.
[0192] In an optional embodiment of the present invention, such as Figure 5 As shown, the intelligent voice robot may further include:
[0193] The prompting module 460 is used to obtain the collection result of the security management information and generate collection result prompt information based on the collection result; the collection result prompt information includes a first prompt information indicating successful information collection and a second prompt information indicating failed information collection.
[0194] The recording module 470 is used to record the successfully acquired security management information and transmit the security management information to the control terminal of the intelligent voice robot.
[0195] In an optional embodiment of the present invention, the intelligent voice robot may further include:
[0196] The early warning module 480 is used to analyze the security management information to identify the group category corresponding to the personnel entering and exiting;
[0197] Trigger matching alert measures based on the group category.
[0198] In an optional embodiment of the present invention, the early warning module 480 can also be used for:
[0199] The security management information is analyzed, and the group category corresponding to the personnel entering and exiting is identified based on their historical activity information within a preset time period.
[0200] In an optional embodiment of the present invention, the grouping categories include a first grouping category, a second grouping category, and a third grouping category; the early warning module 480 can also be used for:
[0201] If the grouping category is the first grouping category, then only the security management information corresponding to the personnel entering and exiting will be recorded;
[0202] If the group category is the second group category, then the security management information corresponding to the personnel entering and exiting is recorded, and an early warning message is sent to the control terminal;
[0203] If the grouping category is the third grouping category, a reminder message will be automatically sent to the security management center of the target administrative region to which the intelligent voice robot belongs; the reminder message carries the security management information of the people entering and exiting and the geographical location information of the intelligent voice robot.
[0204] In an optional embodiment of the present invention, such as Figure 5 As shown, the intelligent voice robot also includes: a statistics module 490;
[0205] The statistics module 490 is used to collect the pedestrian flow data of the public place within a fixed time period. When it is determined from the pedestrian flow data that the pedestrian flow of the public place exceeds the set pedestrian flow, a notification message is sent to the control terminal to instruct pedestrian flow control.
[0206] In an optional embodiment of the present invention, the statistics module 390 may also be used to: upload the safety management information and / or the pedestrian flow data to the cloud of the deployed public place, so that the general management department can access the background system of the cloud through the management interface corresponding to the control terminal, report and analyze the data of the equipment under its jurisdiction, and share the data with the superior unit.
[0207] It should be noted that other corresponding descriptions of the functional units involved in the apparatus provided in this application embodiment can be found in the corresponding descriptions of the above method embodiments, and will not be repeated here.
[0208] This invention also provides a computing device, which includes a communication bus, a processor, a memory, and a communication interface. It may also include an input / output interface and a display device, wherein the various functional units can communicate with each other via the bus. The memory stores a computer program, and the processor executes the program stored in the memory to perform the methods described in the above embodiments.
[0209] Those skilled in the art will clearly understand that the specific working process of the systems, devices, modules and units described above can be referred to the corresponding process in the foregoing method embodiments. For the sake of brevity, it will not be repeated here.
[0210] Furthermore, the functional units in the various embodiments of the present invention can be physically independent of each other, or two or more functional units can be integrated together, or all functional units can be integrated into one processing unit. The integrated functional units described above can be implemented in hardware, or in software or firmware.
[0211] Those skilled in the art will understand that if the integrated functional unit is implemented in software and sold or used as an independent product, it can be stored in a computer-readable storage medium. Based on this understanding, the technical solution of the present invention, or all or part of it, can be embodied in the form of a software product. This computer software product is stored in a storage medium and includes several instructions to cause a computing device (e.g., a personal computer, server, or network device) to execute all or part of the steps of the methods described in the embodiments of the present invention when running the instructions. The aforementioned storage medium includes various media capable of storing program code, such as USB flash drives, portable hard drives, read-only memory (ROM), random access memory (RAM), magnetic disks, or optical disks.
[0212] Alternatively, all or part of the steps of the foregoing method embodiments can be implemented by hardware (such as a computing device, personal computer, server, or network device) related to program instructions. The program instructions can be stored in a computer-readable storage medium. When the program instructions are executed by the processor of the computing device, the computing device executes all or part of the steps of the methods described in the various embodiments of the present invention.
[0213] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, and not to limit them. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that within the spirit and principles of the present invention, modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features therein; and these modifications or substitutions do not cause the corresponding technical solutions to depart from the protection scope of the present invention.
Claims
1. A method for intelligent voice prompts, applied to at least one intelligent voice robot, said intelligent voice robot being deployed in various types of public places, the method comprising: When the current environment is detected to meet the preset triggering conditions of the intelligent voice robot, the security management process of the intelligent voice robot is started; The intelligent voice robot is equipped with two or more sensing components. Different environmental elements trigger different sensing components, which in turn trigger different safety control processes of the intelligent voice robot. The types of sensing components include at least infrared sensors and carbon dioxide sensors. When the infrared sensor detects the presence of people in the vicinity, it triggers the corresponding safety control process. When the carbon dioxide sensor senses a change in the surrounding carbon dioxide concentration, it indicates a change in the number of people in the vicinity and triggers the corresponding safety control process. Basic warning text is obtained from a warning information database established in advance based on the safety management requirements of multi-level administrative regions, and warning information prompts are synthesized using the basic warning text; Play the aforementioned warning message audio; Display a local QR code for scanning and identification by people entering and exiting the public place; the local QR code is uniformly matched and dynamically managed according to the security management requirements of the deployment location of the intelligent voice robot; The system synchronously collects security management information for any person entering or exiting the public place; this includes: identifying the target environmental element that triggers the security control process, and the element category corresponding to the target environmental element; determining the information collection method based on the element category corresponding to the target environmental element, so as to synchronously collect security management information for any person entering or exiting the public place using the information collection method; if the person entering or exiting includes elderly users, teenagers, and / or children, an information collection window that can collect basic information corresponding to the person entering or exiting is opened, so as to synchronously collect security management information for any person entering or exiting the public place using the information collection window; the information collection window of the intelligent voice robot is an image interaction window, a voice interaction window, or a human-computer operation window; if the person entering or exiting includes adult users, the system synchronously collects security management information for any person entering or exiting the public place using a local QR code by scanning a QR code.
2. The method according to claim 1, characterized in that, The types of sensing components also include at least one of the following: ultrasonic sensor, weight sensor, video camera, timer, counter, temperature and humidity sensor, microphone for recording sound, and MINIPAD display for interaction between the user and the intelligent voice robot.
3. The method according to claim 1, characterized in that, The step of determining the information collection method based on the element category corresponding to the target environmental element, and using the information collection method to simultaneously collect the security management information corresponding to any person entering or exiting the public place, includes: If the people entering and exiting include adult users, the local QR code is used to simultaneously collect the security management information corresponding to any person entering or exiting the public place.
4. The method according to claim 1, characterized in that, Before obtaining basic warning text from a warning information database pre-established based on the security management requirements of multi-level administrative regions, and synthesizing warning information prompts using the basic warning text, the method further includes: Collect safety management requirements from multiple levels of administrative regions, and generate basic warning texts for various public places for warning voice broadcasts based on the safety management requirements of each administrative region, so as to establish a matching system between the safety publicity and implementation work database and the existing administrative division jurisdiction; Language and intonation data corresponding to each of the aforementioned administrative regions are collected in advance. The language and intonation data is used to train at least one virtual host for voice broadcasting. The voice structure of the virtual host can be optimized for multilingual playback as the technology is upgraded.
5. The method according to claim 4, characterized in that, The process of obtaining basic warning text from a pre-established warning information database based on the security management requirements of multi-level administrative regions, and synthesizing warning information prompts using the basic warning text, includes: The location of the intelligent voice robot is obtained by the positioning device installed in the intelligent voice robot, and the type of place corresponding to the location of the intelligent voice robot is identified. A basic warning text matching the administrative region and place type to which the intelligent voice robot belongs is selected from the warning information database. The basic warning text is synthesized into a warning message voice using text-to-speech (TTS) technology, which is then broadcast by a virtual host matched with the administrative region; or, In response to an operation command from the operating terminal, any virtual host is designated to record the basic warning text.
6. The method according to claim 5, characterized in that, After playing the warning message audio, the method further includes: Obtain the new security management requirements updated in real time for the administrative region, and update the basic warning text in the warning information database according to the new security requirements; Generate new warning message audio using the updated base warning text.
7. An intelligent voice robot for executing the intelligent voice prompt method according to any one of claims 1-6, wherein the intelligent voice robot is deployed in various types of public places, and the intelligent voice robot comprises: The detection module is used to initiate the safety management process of the intelligent voice robot when the current environment meets the preset triggering conditions of the intelligent voice robot. The speech synthesis module is used to obtain basic warning text from a pre-established warning information database and synthesize warning information prompts using the basic warning text; The playback module is used to play the warning message audio. The display module is used to display a local QR code for scanning and identification by people entering and exiting the public place; the local QR code is uniformly matched and dynamically managed by the security management requirements of the deployment location of the intelligent voice robot; The information collection module is used to synchronously collect security management information for any person entering or exiting the public place.
Citation Information
Patent Citations
Intelligent interaction doll and system
CN105126349A
Unmanned visitor reception system of front desk
CN110033532A
Personnel passage detection system based on smart brain
CN112507315A
Voice broadcast method, device, equipment and medium
CN113066474A