Digital interactive guide method and device, electronic equipment and medium
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-05-22
- Publication Date
- 2026-08-11
AI Technical Summary
[0005]本发明的目的在于提供数字化互动导览方法及装置、电子设备和介质,以解决上述背景技术中提出“如何根据用户的移动状态进行连续导览”的问题
[0038] This invention generates playback commands, enabling adaptive playback of guided audio without user intervention, thus enhancing the user's tour experience. By creating panoramic images, it achieves high-precision location determination of the user, reducing Bluetooth positioning errors and enabling continuous guided tours, improving the integrity of the audio guide. By establishing a dynamic playback mechanism, it can control the guided audio in conjunction with the user's movement state, transitioning from "location-triggered guided tours" to "location-behavior-coordinated guided tours." This not only improves the accuracy of user location determination and enhances guided tour capabilities even when the communication link is interrupted, but also achieves continuous and personalized control of the guided audio through the dynamic playback mechanism, significantly improving the stability of the guided tour and the user experience.
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Figure CN122550316A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of interactive tour guide technology, and more particularly to digital interactive tour guide methods, devices, electronic equipment, and media. Background Technology
[0002] Interactive guided tours refer to a guided tour method that uses sensing devices to form an intelligent interactive relationship with users in scenic spots, museums, or other parks. For example, in scenic spots, tourists are equipped with intelligent guided tour terminals. When tourists enter the trigger area corresponding to the viewpoint, the corresponding scenic spot sign information is automatically matched, and the corresponding guided tour content is broadcast in voice, realizing automated voice explanation of the viewpoint.
[0003] However, in existing technologies, audio guides are typically triggered based on preset attraction locations; that is, the corresponding audio content is only played when the user arrives at a specific attraction area. This method lacks the ability to provide continuous guidance in transitional areas between viewpoints and cannot dynamically adjust the audio playback content based on the user's real-time movement.
[0004] Therefore, "how to provide continuous navigation based on the user's movement status" is the technical problem that this invention aims to solve. Summary of the Invention
[0005] The purpose of this invention is to provide a digital interactive tour guide method, device, electronic device, and medium to solve the problem of "how to provide continuous tour guide based on the user's movement status" mentioned in the background art.
[0006] To achieve the above objectives, the present invention provides the following technical solution:
[0007] A digital interactive tour guide method, the method comprising:
[0008] The tour area is defined, several scenic spots are selected, and signal receivers pre-deployed in the scenic spots are used to receive Bluetooth signals from all surrounding devices. The preset trusted signal list is queried, the Bluetooth signal of the smart tour device is identified, a communication link is established, a guide voice playback command is generated, and the command is sent to the smart tour device.
[0009] Edit the tour route in the tour area, divide the tour route into several segments with the signal receiver as the interval, define the segments that the smart tour device may appear after the communication link is disconnected as candidate segments, collect scene image data on both sides of all tour routes, and draw panoramic images.
[0010] Using video surveillance equipment pre-integrated into the smart tour device, image data during the tour is collected, and several video frames are extracted according to a preset frequency. The panoramic image is traversed to obtain the specific location, and the target segment is selected from the candidate segments.
[0011] The motion states are set, including at least: moving, standing still, and rewinding. A dynamic playback mechanism is established based on the specific location and motion states and embedded into the smart tour device.
[0012] Furthermore, the steps of receiving Bluetooth signals from all surrounding devices, querying a preset list of trusted signals, identifying the Bluetooth signal of the smart browsing device, and establishing a communication link include:
[0013] The smart tour devices are numbered, and the number values are determined. Identifiers are extracted from the Bluetooth signals of the smart tour devices.
[0014] By integrating the number values and identifiers, a list of trust signals is constructed.
[0015] Furthermore, the step of dividing the guided tour route in the editable tour area into several segments with the signal receivers as intervals includes:
[0016] Based on the specific locations, the pedestrian density of each segment is determined, and a recommended route is selected from the guided tour routes;
[0017] Using the communication link, recommended routes are sent to smart tour devices, and pre-configured interaction mechanisms are activated.
[0018] Furthermore, the step of traversing the panoramic image to obtain the specific location includes:
[0019] Collect multi-source data of users corresponding to smart tour devices, wherein the multi-source data includes at least: location information and behavioral feature data, and correct the specific location;
[0020] Several relay devices are selected from the user's mobile terminal, and the intelligent tour device is transmitted via multiple hops.
[0021] Furthermore, the setting of the motion state, wherein the motion state includes at least: moving, stationary, and reversing, and the steps via the specific location and motion state include:
[0022] Create several navigation rules and establish a mapping between the navigation rules and the motion state;
[0023] Grant users access to take photos using their smart tour devices and store the captured data.
[0024] Furthermore, the method also includes:
[0025] Using image acquisition devices pre-deployed in the tour area, the serial numbers of smart tour devices during the tour are read;
[0026] The specific location is corrected using the number.
[0027] The present invention also provides a digital interactive tour guide device, the device comprising:
[0028] The distribution module is used to delineate the tour area, select several scenic spots, use signal receivers pre-deployed in the scenic spots to receive Bluetooth signals from all surrounding devices, query a pre-set trusted signal list, identify the Bluetooth signal of the smart tour device, establish a communication link, generate a playback command for the tour guide voice, and distribute it to the smart tour device.
[0029] The drawing module is used to edit the tour route in the tour area. It divides the tour route into several segments with the signal receiver as the interval. The segments that may appear in the smart tour device after the communication link is disconnected are defined as candidate segments. It collects scene image data on both sides of all tour routes and draws panoramic images.
[0030] The selection module is used to collect image data during the tour using video monitoring equipment pre-integrated in the smart tour device, extract several video frames according to a preset frequency, traverse the panoramic image to obtain the specific location, and select the target segment from the candidate segments;
[0031] An embedded module is used to set the motion state, wherein the motion state includes at least: moving, standing still and rewinding. A dynamic playback mechanism is established based on the specific location and motion state and embedded into the smart tour device.
[0032] Furthermore, the distribution module includes:
[0033] The traversal unit is used to number the smart tour device, determine the number value, and traverse the identifier from the Bluetooth signal of the smart tour device.
[0034] A building unit is used to integrate the number values and identifiers to build a list of trust signals.
[0035] The present invention also provides an electronic device, which includes one or more processors and one or more memories. The one or more memories store at least one piece of program code. When the program code is loaded and executed by the one or more processors, it implements the digital interactive tour guide method.
[0036] The present invention also provides a medium storing at least one line of program code, which, when loaded and executed by a processor, implements the digital interactive tour guide method.
[0037] Compared with the prior art, the beneficial effects of the present invention are:
[0038] This invention generates playback commands, enabling adaptive playback of guided audio without user intervention, thus enhancing the user's tour experience. By creating panoramic images, it achieves high-precision location determination of the user, reducing Bluetooth positioning errors and enabling continuous guided tours, improving the integrity of the audio guide. By establishing a dynamic playback mechanism, it can control the guided audio in conjunction with the user's movement state, transitioning from "location-triggered guided tours" to "location-behavior-coordinated guided tours." This not only improves the accuracy of user location determination and enhances guided tour capabilities even when the communication link is interrupted, but also achieves continuous and personalized control of the guided audio through the dynamic playback mechanism, significantly improving the stability of the guided tour and the user experience. Attached Figure Description
[0039] To more clearly illustrate the technical solutions in the embodiments of the present invention, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of the present invention.
[0040] Figure 1 A flowchart illustrating the digital interactive tour guide method provided in an embodiment of the present invention;
[0041] Figure 2 This is a first sub-flowchart of the digital interactive tour guide method provided in an embodiment of the present invention;
[0042] Figure 3 This is a second sub-flowchart of the digital interactive tour guide method provided in an embodiment of the present invention;
[0043] Figure 4 This is a third sub-flowchart of the digital interactive tour guide method provided in an embodiment of the present invention;
[0044] Figure 5 This is a fourth sub-flowchart of the digital interactive tour guide method provided in this embodiment of the invention;
[0045] Figure 6 A block diagram illustrating the components of the digital interactive tour guide device provided in this embodiment of the invention;
[0046] Figure 7 A block diagram showing the composition of the distribution module in the digital interactive guide device provided in this embodiment of the invention;
[0047] Figure 8 A block diagram showing the composition of the drawing module in the digital interactive guide device provided in this embodiment of the invention;
[0048] Figure 9 A block diagram showing the composition of selected modules in the digital interactive tour guide device provided in the embodiments of the present invention;
[0049] Figure 10 This is a block diagram of the embedded modules in the digital interactive tour guide device provided in an embodiment of the present invention. Detailed Implementation
[0050] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the invention.
[0051] In Example 1, Figure 1 The implementation flow of the digital interactive tour guide method provided in the embodiment of the present invention is illustrated below, and is described in detail below:
[0052] S100: Define the tour area, select several scenic spots, use signal receivers pre-deployed in the scenic spots to receive Bluetooth signals from all surrounding devices, query the preset trusted signal list, identify the Bluetooth signal of the smart tour device, establish a communication link, generate a guide voice playback command, and send it to the smart tour device.
[0053] A designated tourist area is established, which can be a scenic spot or museum. Based on factors such as spatial popularity, dwell time, and landscape distribution within the area, several scenic spots are selected. These scenic spots are locations that attract tourists' attention and linger, such as viewing platforms in mountainous areas or animal exhibits in zoos. Signal receivers are installed at these scenic spots. These receivers continuously receive Bluetooth broadcast signals from all surrounding smart devices, including smart navigation devices worn by tourists, mobile phones, or wearable devices. The signal receivers perform deduplication and timestamp alignment on the collected multi-source Bluetooth signals and extract unique identification information. Each smart device corresponds to a unique identifier, and a trusted signal list is constructed. This list contains the unique identifier information of registered smart tour devices and their corresponding Bluetooth characteristic parameters. The system matches and compares the real-time collected Bluetooth signals with a list of trusted signals. When a unique identifier identical to the Bluetooth signal is detected in the list of trusted signals, the corresponding Bluetooth signal source is defined as a trusted device. A communication link is established between the signal receiver and the smart tour device, generating a guide voice playback command containing playback control parameters (such as playback content identifier and playback duration). The playback command is then sent to the smart tour device, enabling it to automatically execute the voice playback. The guide voice is pre-stored in the smart tour device. Each signal receiver contains unique scenic spot identifier information, enabling it to call up and play the guide voice for the scenic spot where the signal receiver is located. The smart tour device is a portable smart tour terminal in the prior art, capable of automatically playing guide voice and interacting with the signal receiver via Bluetooth.
[0054] S200: Edit the tour route in the tour area, divide the tour route into several segments with the signal receiver as the interval, define the segments that the intelligent tour device may appear after the communication link is disconnected as candidate segments, collect scene image data on both sides of all tour routes, and draw a panoramic image.
[0055] Using the nearest neighbor algorithm, all scenic spots are sequentially connected to generate multiple guided tour routes. The routes are divided into segments based on the spatial location of the signal receiver. When a user approaches the signal receiver, their smart tour device establishes a communication link with it. However, if the user continues to move, the communication link is broken. Following the normal travel direction, the segments the user might enter are defined as candidate segments, with at least one candidate segment. The user refers to a tourist carrying a smart tour device within the tour area. A mobile data acquisition device continuously scans the environment on both sides of the guided tour routes, collecting image data including road boundaries, landscape buildings, vegetation, landscape objects, and spatial landmarks—i.e., scene image data. Feature point extraction and overlapping area matching are performed on all collected scene image data. Image stitching and fusion algorithms are then used to integrate these into a continuous panoramic image. This panoramic image comprehensively represents the spatial environment data on both sides of the guided tour routes.
[0056] S300: Using video surveillance equipment pre-integrated into the smart tour device, image data during the tour is collected, several video frames are extracted according to a preset frequency, the panoramic image is traversed to obtain the specific location, and the target segment is selected from the candidate segments.
[0057] Using video surveillance equipment pre-integrated into smart tour devices, continuous video capture is taken of the environment in front of or to the sides of tourists during their tour, obtaining real-time image data. The smart tour devices should be wearable, and the video surveillance equipment can be a wide-angle camera, action camera, or low-power visual acquisition device integrated into the smart tour terminal. At a preset frequency, such as once every 30 seconds, video frames at corresponding moments are extracted from the real-time image data as images to be analyzed. Feature extraction is performed on the video frames, including environmental contour features, building edge features, road texture features, and scenic spot marker features. The images to be analyzed are then compared with a panoramic image to find the part in the panoramic image with the highest similarity to the image to be analyzed, and this part is defined as a specific location. It is important to note that the similarity matching process is performed within the smart tour device. The segment corresponding to the specific location is determined, and it is judged whether this segment is a candidate segment. If it is, the candidate segment containing the specific location is defined as the target segment; otherwise, if the segment is not a candidate segment, video frames are re-extracted.
[0058] S400: Set the motion state, wherein the motion state includes at least: moving, standing still and rewinding, and establish a dynamic playback mechanism based on the specific location and motion state, and embed it into the smart tour device.
[0059] Multiple movement states are set up, including moving, stationary, and rewinding. A dynamic playback mechanism is established, which refers to executing different playback modes based on the movement state and adaptively controlling the playback logic of the guide audio. The dynamic playback mechanism can also incorporate factors such as visitor dwell time, movement speed, orientation changes, and scenic spot priority. For example, when continuously acquired specific locations show a continuous change along the preset tour direction, it is determined that the user is in a moving state, and the guide audio for the corresponding specific location is played directly. If the specific location does not change, it means that the user is not moving, possibly taking photos or resting, and the guide audio playback stops. The dynamic playback mechanism is embedded into the smart tour device, and adaptive audio guidance is provided based on the user's movement state.
[0060] In Example 2, Figure 2 The first sub-flowchart of the digital interactive tour guide method provided in this embodiment of the invention is shown. The following details the steps of receiving Bluetooth signals from all surrounding devices, querying a preset trusted signal list, identifying the Bluetooth signal of the smart tour device, and establishing a communication link:
[0061] S101: Number the smart tour device, determine the number value, and traverse the identifier from the Bluetooth signal of the smart tour device.
[0062] Using a preset numbering rule, the smart tour devices are numbered. The numbering is determined by the management personnel of the tour area. The identifier is then extracted from the Bluetooth signal of the smart tour device.
[0063] S102: Integrate the number values and identifiers to construct a trust signal list.
[0064] Determine the corresponding ID value and identifier for each smart tour device, and build a trust signal list, which consists of ID value items and identifier items.
[0065] In Example 3, Figure 3 The second sub-flowchart of the digital interactive tour guide method provided in this embodiment of the invention is shown. The following details the step of dividing the tour route in the editable tour area into several segments with the signal receivers as intervals:
[0066] S201: Determine the crowd density of each segment based on the specific location, and select a recommended route from the guided tour routes.
[0067] Determine the specific location of each user and the pedestrian density of the segment where that location is located. Divide the pedestrian density into multiple levels such as high, medium, and low. Select the tour route with low pedestrian density and define the corresponding tour route as the recommended route.
[0068] S202: Using the communication link, the recommended route is sent to the smart tour device, and the pre-configured interaction mechanism is activated.
[0069] The recommended route is sent to the smart tour device via a communication link, activating a pre-configured interactive mechanism. This mechanism primarily gathers user feedback during the tour and adjusts the audio. For example, if a user uses a microphone integrated into the smart tour device to provide voice commands such as "less explanation," it indicates that the user believes the frequency of the tour information is too high or the level of voice intervention is too strong. In such cases, the triggering frequency of tour content should be reduced, and the broadcast duration of non-critical explanatory content should be shortened.
[0070] In Example 4, Figure 4 The diagram shows the third sub-flowchart of the digital interactive tour guide method provided in this embodiment of the invention. The step of traversing the panoramic image to obtain the specific location is described in detail below:
[0071] S301: Collect multi-source data of the user corresponding to the smart tour device, wherein the multi-source data includes at least: location information and behavioral feature data, and correct the specific location.
[0072] The system collects multi-source data from users, including location information and behavioral characteristic data of users' mobile terminals. Based on this multi-source information, the system corrects the user's specific location. For example, when the user's movement speed is detected to exceed 2 meters per second, it can be determined that the user is currently on a road segment with relatively stable traffic conditions and that there are no complex terrain structures such as mountain roads, steps, or high slopes in the segment. Based on this, the system corrects the specific location according to the terrain of each candidate segment.
[0073] S302: Select several relay devices from the user's mobile terminal and perform multi-hop transmission to the smart tour device.
[0074] When the communication link is interrupted, the cloud node is located. This cloud node is primarily used for user location and voice navigation management, establishing a short-range communication connection between the smart tour device and the user's mobile terminal. The user's mobile terminal serves as the network access point, establishing a data interaction link with the cloud node. The advantage of this method is that it allows for unified scheduling and remote control of the smart tour device's voice navigation content, playback timing, playback strategies, and interactive control commands through the cloud node.
[0075] In Example 5, Figure 5The fourth sub-flowchart of the digital interactive tour guide method provided in this embodiment of the invention is shown. The following details the steps of setting the motion state, which includes at least three states: moving, standing still, and reversing, via the specific location and motion state, as follows:
[0076] S401: Create several navigation rules and establish a mapping between the navigation rules and the motion state.
[0077] Create several navigation rules. These rules refer to different methods of voice guidance based on the user's different movement states, such as navigation rules for moving states and navigation rules for stationary states. Each movement state corresponds to one navigation rule, and the rules should also include the timbre and tone of the guiding voice.
[0078] S402: Grant users access to the camera on their smart tour devices and store the captured data.
[0079] Grant users access to the camera on their smart tour devices, enabling them to capture images or videos of the current tour scene, store the captured data, and make it available for download.
[0080] In Example 6, unlike Example 1, the method further includes:
[0081] Using image acquisition devices pre-deployed in the tour area, the serial numbers of smart tour devices during the tour are read;
[0082] The specific location is corrected using the number.
[0083] Using image acquisition devices installed in the tour area, image data of users during their tour is collected, frontal images of the smart tour devices are obtained, and their serial numbers are extracted. Based on the installation location of the image acquisition devices, the specific locations that have been determined are corrected.
[0084] Figure 6 This diagram illustrates the structural composition of a digital interactive tour guide device provided in an embodiment of the present invention. The digital interactive tour guide device 1 includes:
[0085] The distribution module 11 is used to delineate the tour area, select several scenic spots, use signal receivers pre-deployed in the scenic spots to receive Bluetooth signals from all surrounding devices, query a pre-set trusted signal list, identify the Bluetooth signal of the smart tour device, establish a communication link, generate a playback command for the tour guide voice, and distribute it to the smart tour device.
[0086] The drawing module 12 is used to edit the tour route in the tour area. It divides the tour route into several segments with the signal receiver as the interval, defines the segments that the smart tour device may appear after the communication link is disconnected as candidate segments, collects scene image data on both sides of all tour routes, and draws panoramic images.
[0087] The selection module 13 is used to collect image data during the tour using video monitoring equipment pre-integrated in the smart tour device, extract several video frames according to a preset frequency, traverse the panoramic image to obtain the specific location, and select the target segment from the candidate segments;
[0088] The embedded module 14 is used to set the motion state, wherein the motion state includes at least: moving, standing still and rewinding. A dynamic playback mechanism is established based on the specific position and motion state and embedded into the smart tour device.
[0089] Figure 7 This diagram illustrates the composition of the distribution module 11 in the digital interactive guide device provided in an embodiment of the present invention. The distribution module 11 includes:
[0090] Traversal unit 111 is used to number the smart tour device, determine the number value, and traverse the identifier from the Bluetooth signal of the smart tour device;
[0091] Construction unit 112 is used to integrate the number value and identifier to construct a trust signal list.
[0092] Figure 8 This diagram illustrates the structural composition of the drawing module 12 in the digital interactive guide device provided in an embodiment of the present invention. The drawing module 12 includes:
[0093] Selection unit 121 is used to determine the crowd density of each segment via the specific location and select a recommended route from the guide routes;
[0094] The activation unit 122 is used to send the recommended route to the smart tour device using the communication link and activate the pre-configured interaction mechanism.
[0095] Figure 9 This diagram illustrates the structural composition of the selection module 13 in the digital interactive tour guide device provided in an embodiment of the present invention. The selection module 13 includes:
[0096] The correction unit 131 is used to collect multi-source data of the user corresponding to the smart tour device, wherein the multi-source data includes at least: location information and behavioral feature data, and to correct the specific location;
[0097] The multi-hop unit 132 is used to select several relay devices from the user's mobile terminal and perform multi-hop transmission to the smart tour device.
[0098] Figure 10 This diagram illustrates the structural composition of the embedded module 14 in the digital interactive tour guide device provided in an embodiment of the present invention. The embedded module 14 includes:
[0099] The mapping unit 141 is used to create several navigation rules and establish a mapping between the navigation rules and the motion state;
[0100] Storage unit 142 is used to grant users access to the camera on the smart tour device and to store the captured data.
[0101] The distribution module 11 is mainly used to complete step S100, the drawing module 12 is mainly used to complete step S200, the selection module 13 is mainly used to complete step S300, and the embedding module 14 is mainly used to complete step S400.
[0102] The traversal unit 111 is mainly used to complete step S101, and the construction unit 112 is mainly used to complete step S102.
[0103] The selection unit 121 is mainly used to complete step S201, and the activation unit 122 is mainly used to complete step S202;
[0104] The correction unit 131 is mainly used to complete step S301, and the multi-hop unit 132 is mainly used to complete step S302.
[0105] The mapping unit 141 is mainly used to complete step S401, and the storage unit 142 is mainly used to complete step S402.
[0106] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
[0107] The embodiments described above are merely illustrative of several implementations of the present invention, and while the descriptions are specific and detailed, they should not be construed as limiting the scope of the present invention. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of the present invention, and these modifications and improvements all fall within the scope of protection of the present invention. Therefore, the scope of protection of this patent should be determined by the appended claims.
[0108] The functions of the digital interactive tour guide method are all performed by computer equipment, which includes one or more processors and one or more memories. The one or more memories store at least one piece of program code, which is loaded and executed by the one or more processors to realize the functions of the digital interactive tour guide method.
[0109] The processor fetches instructions from memory one by one, analyzes the instructions, and then performs the corresponding operations according to the instructions, generating a series of control commands to enable the various parts of the computer to act automatically, continuously and in coordination, forming an organic whole. This enables the input of programs and data, as well as the calculation and output of results. The arithmetic or logical operations generated in this process are all performed by the arithmetic unit. The memory includes a read-only memory, which is used to store computer programs. The memory is protected by an external protection device.
[0110] For example, a computer program can be divided into one or more modules, one or more of which are stored in memory and executed by a processor to perform the present invention. The one or more modules can be a series of computer program instruction segments capable of performing a specific function, which describe the execution process of the computer program in a terminal device.
[0111] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A method for digitized interactive tour guiding, characterized by, The method includes: The tour area is defined, several scenic spots are selected, and signal receivers pre-deployed in the scenic spots are used to receive Bluetooth signals from all surrounding devices. The preset trusted signal list is queried, the Bluetooth signal of the smart tour device is identified, a communication link is established, a guide voice playback command is generated, and the command is sent to the smart tour device. Edit the tour route in the tour area, divide the tour route into several segments with the signal receiver as the interval, define the segments that the smart tour device may appear after the communication link is disconnected as candidate segments, collect scene image data on both sides of all tour routes, and draw panoramic images. Using video surveillance equipment pre-integrated into the smart tour device, image data during the tour is collected, and several video frames are extracted according to a preset frequency. The panoramic image is traversed to obtain the specific location, and the target segment is selected from the candidate segments. The motion states are set, including at least: moving, standing still, and rewinding. A dynamic playback mechanism is established based on the specific location and motion states and embedded into the smart tour device.
2. The method of claim 1, wherein, The steps of receiving Bluetooth signals from all surrounding devices, querying a preset list of trusted signals, identifying the Bluetooth signal of the smart browsing device, and establishing a communication link include: The smart tour devices are numbered, and the number values are determined. Identifiers are extracted from the Bluetooth signals of the smart tour devices. By integrating the number values and identifiers, a list of trust signals is constructed.
3. The method of claim 1, wherein, The step of dividing the guided tour route in the editable tour area into several segments with the signal receivers as intervals includes: Based on the specific locations, the pedestrian density of each segment is determined, and a recommended route is selected from the guided tour routes; Using the communication link, recommended routes are sent to smart tour devices, and pre-configured interaction mechanisms are activated.
4. The digital interactive tour guide method according to claim 3, characterized in that, The step of traversing the panoramic image to obtain the specific location includes: Collect multi-source data of users corresponding to smart tour devices, wherein the multi-source data includes at least: location information and behavioral feature data, and correct the specific location; Several relay devices are selected from the user's mobile terminal, and the intelligent tour device is transmitted via multiple hops.
5. The method of claim 1, wherein, The setting of the motion state, wherein the motion state includes at least: moving, stationary, and reversing, and the steps via the specific location and motion state include: Create several navigation rules and establish a mapping between the navigation rules and the motion state; Grant users access to take photos using their smart tour devices and store the captured data.
6. The method of claim 2, wherein, The method further includes: Using image acquisition devices pre-deployed in the tour area, the serial numbers of smart tour devices during the tour are read; The specific location is corrected using the number.
7. A digitized interactive guide device, characterized by, The device includes: The distribution module is used to delineate the tour area, select several scenic spots, use signal receivers pre-deployed in the scenic spots to receive Bluetooth signals from all surrounding devices, query a pre-set trusted signal list, identify the Bluetooth signal of the smart tour device, establish a communication link, generate a playback command for the tour guide voice, and distribute it to the smart tour device. The drawing module is used to edit the tour route in the tour area. It divides the tour route into several segments with the signal receiver as the interval. The segments that may appear in the smart tour device after the communication link is disconnected are defined as candidate segments. It collects scene image data on both sides of all tour routes and draws panoramic images. The selection module is used to collect image data during the tour using video monitoring equipment pre-integrated in the smart tour device, extract several video frames according to a preset frequency, traverse the panoramic image to obtain the specific location, and select the target segment from the candidate segments; An embedded module is used to set the motion state, wherein the motion state includes at least: moving, standing still and rewinding. A dynamic playback mechanism is established based on the specific location and motion state and embedded into the smart tour device.
8. The digital interactive tour guide device according to claim 7, wherein the distribution module comprises: The traversal unit is used to number the smart tour device, determine the number value, and traverse the identifier from the Bluetooth signal of the smart tour device. A building unit is used to integrate the number values and identifiers to build a list of trust signals.
9. An electronic device, comprising: The electronic device includes one or more processors and one or more memories, wherein at least one piece of program code is stored in the one or more memories, and when the program code is loaded and executed by the one or more processors, it implements the digital interactive tour guide method as described in any one of claims 1 to 6.
10. A medium characterized by, The medium stores at least one piece of program code, which, when loaded and executed by a processor, implements the digital interactive tour guide method as described in any one of claims 1 to 6.