CN113465623A - Processing method and device and electronic equipment - Google Patents

Processing method and device and electronic equipment Download PDF

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Publication number
CN113465623A
CN113465623A CN202110779692.4A CN202110779692A CN113465623A CN 113465623 A CN113465623 A CN 113465623A CN 202110779692 A CN202110779692 A CN 202110779692A CN 113465623 A CN113465623 A CN 113465623A
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China
Prior art keywords
route
electronic device
data
navigation
target navigation
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CN202110779692.4A
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Chinese (zh)
Inventor
潘汉春
方治
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Lenovo Beijing Ltd
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Lenovo Beijing Ltd
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Priority to CN202110779692.4A priority Critical patent/CN113465623A/en
Publication of CN113465623A publication Critical patent/CN113465623A/en
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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01CMEASURING DISTANCES, LEVELS OR BEARINGS; SURVEYING; NAVIGATION; GYROSCOPIC INSTRUMENTS; PHOTOGRAMMETRY OR VIDEOGRAMMETRY
    • G01C21/00Navigation; Navigational instruments not provided for in groups G01C1/00 - G01C19/00
    • G01C21/26Navigation; Navigational instruments not provided for in groups G01C1/00 - G01C19/00 specially adapted for navigation in a road network
    • G01C21/34Route searching; Route guidance
    • G01C21/3407Route searching; Route guidance specially adapted for specific applications
    • G01C21/3415Dynamic re-routing, e.g. recalculating the route when the user deviates from calculated route or after detecting real-time traffic data or accidents
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01CMEASURING DISTANCES, LEVELS OR BEARINGS; SURVEYING; NAVIGATION; GYROSCOPIC INSTRUMENTS; PHOTOGRAMMETRY OR VIDEOGRAMMETRY
    • G01C21/00Navigation; Navigational instruments not provided for in groups G01C1/00 - G01C19/00
    • G01C21/26Navigation; Navigational instruments not provided for in groups G01C1/00 - G01C19/00 specially adapted for navigation in a road network
    • G01C21/28Navigation; Navigational instruments not provided for in groups G01C1/00 - G01C19/00 specially adapted for navigation in a road network with correlation of data from several navigational instruments
    • G01C21/30Map- or contour-matching
    • G01C21/32Structuring or formatting of map data
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01CMEASURING DISTANCES, LEVELS OR BEARINGS; SURVEYING; NAVIGATION; GYROSCOPIC INSTRUMENTS; PHOTOGRAMMETRY OR VIDEOGRAMMETRY
    • G01C21/00Navigation; Navigational instruments not provided for in groups G01C1/00 - G01C19/00
    • G01C21/38Electronic maps specially adapted for navigation; Updating thereof
    • G01C21/3804Creation or updating of map data
    • G01C21/3833Creation or updating of map data characterised by the source of data
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01CMEASURING DISTANCES, LEVELS OR BEARINGS; SURVEYING; NAVIGATION; GYROSCOPIC INSTRUMENTS; PHOTOGRAMMETRY OR VIDEOGRAMMETRY
    • G01C21/00Navigation; Navigational instruments not provided for in groups G01C1/00 - G01C19/00
    • G01C21/38Electronic maps specially adapted for navigation; Updating thereof
    • G01C21/3885Transmission of map data to client devices; Reception of map data by client devices

Abstract

The application discloses a processing method, a processing device and electronic equipment, wherein the method comprises the following steps: if the first electronic equipment obtains a navigation request of the second electronic equipment, wherein the navigation request at least comprises a starting point position and an end point position, route editing data containing the starting point position and the end point position is obtained; and obtaining a first target navigation route at least according to the route editing data, so that the second electronic equipment can output corresponding navigation information according to the first target navigation route.

Description

Processing method and device and electronic equipment
Technical Field
The present application relates to the field of map navigation technologies, and in particular, to a processing method and apparatus, and an electronic device.
Background
Currently, in a map application, after a user selects a starting point and an end point, the map application may automatically generate a walkable navigation route according to information such as roads and buildings between the starting point and the end point.
Disclosure of Invention
In view of the above, the present application provides a processing method, an apparatus and an electronic device, as follows:
a method of processing, comprising:
if the first electronic equipment obtains a navigation request of the second electronic equipment, wherein the navigation request at least comprises a starting point position and an end point position, route editing data containing the starting point position and the end point position is obtained;
and obtaining a first target navigation route at least according to the route editing data, so that the second electronic equipment can output corresponding navigation information according to the first target navigation route.
The above method, preferably, obtaining route edit data including the start position and the end position includes:
obtaining route edit data drawn by a user of the first electronic device on an input component thereof based on the start position and the end position; or the like, or, alternatively,
obtaining the route edit data based on interaction data with the second electronic device, the interaction data relating to the start position and the end position; or the like, or, alternatively,
obtaining the route edit data based on interaction data with the first electronic device, the interaction data relating to the start position and the end position; or the like, or, alternatively,
obtaining route editing data which is sent by the first electronic equipment and contains the starting point position and the end point position; or the like, or, alternatively,
obtaining the route edit data based on interaction data between the first electronic device and the second electronic device, the interaction data relating to the start position and the end position.
The above method, preferably, obtaining a first target navigation route at least according to the route edit data, includes:
adjusting an initial navigation route generated based on the starting point position and the end point position according to the route editing data to obtain a first target navigation route;
or the like, or, alternatively,
and obtaining at least one route point between the starting point position and the end point position according to the route editing data, and obtaining a first target navigation route according to at least a route drawn among the starting point position, the end point position and the at least one route point.
Preferably, the method, according to the route editing data, of adjusting an initial navigation route generated based on the starting point position and the ending point position to obtain a first target navigation route, includes:
obtaining first marking data in the route editing data, wherein the first marking data is at least used for prompting environmental information of a passing point, and marking an initial navigation route generated based on the starting point position and the end point position at least based on the first marking data to obtain a first target navigation route;
or the like, or, alternatively,
obtaining a route point in the route editing data, and adjusting the initial navigation route at least based on the route point to obtain a first target navigation route;
or the like, or, alternatively,
and acquiring a passing point and first marking data in the route editing data, wherein the first marking data is at least used for prompting the environmental information of the passing point, and the initial navigation route is adjusted and marked based on the passing point and the first marking data to acquire a first target navigation route.
The method preferably obtains a first target navigation route according to at least the starting position, the ending position and a route drawn among the at least one passing point, and includes:
drawing a route among the starting point position, the end point position and the at least one passing point on a map to obtain a first target navigation route;
or the like, or, alternatively,
obtaining first marking data in the route editing data, wherein the first marking data is at least used for prompting the environment information of the route points, drawing the starting point position, the end point position and the route between the at least one route point on a map, and marking the drawn route to obtain a first target navigation route;
or the like, or, alternatively,
and obtaining environment data among the starting point position, the end point position and the at least one passing point, obtaining corresponding audio data and/or image data at least according to the environment data, and generating a first target navigation route capable of providing navigation prompts for demanders at least according to the audio data and/or the image data.
Preferably, the method for obtaining a first target navigation route at least according to the route editing data so that the second electronic device can output corresponding navigation information according to the first target navigation route includes:
the first electronic equipment at least obtains a first target navigation route according to the route editing data and sends the first target navigation route to the second electronic equipment, so that the second electronic equipment can output corresponding navigation information according to the first target navigation route; or the like, or, alternatively,
the method comprises the steps that a second electronic device obtains a first target navigation route at least according to a third electronic device or route editing data sent by the first electronic device, and outputs corresponding navigation information according to the first target navigation route, wherein the third electronic device is a device capable of achieving communication between the first electronic device and the second electronic device; or the like, or, alternatively,
the third electronic device obtains a first target navigation route at least according to the route editing data sent by the first electronic device, and sends the first target navigation route to the second electronic device, so that the second electronic device can output corresponding navigation information according to the first target navigation route, and the third electronic device is a device capable of realizing communication between the first electronic device and the second electronic device.
The above method, preferably, further comprises:
obtaining a route modification operation and/or road condition information for the first target navigation route, wherein the route modification operation is used for adjusting at least one track line in the first target navigation route, and the road condition information represents a road state on a path position corresponding to the first target navigation route;
and modifying the first target navigation route according to the route modification operation and/or the road condition information to obtain a second target navigation route, so that the second electronic equipment outputs the modified navigation information according to the second target navigation route.
In the method, preferably, the starting position is obtained according to device location information of the first electronic device or device location information of the second electronic device, and the ending position is obtained according to interaction data corresponding to the first electronic device and/or the second electronic device.
A processing apparatus, comprising:
an edit data obtaining unit, configured to obtain route edit data including a start position and an end position if a first electronic device obtains a navigation request of a second electronic device, where the navigation request includes at least the start position and the end position;
and the navigation route obtaining unit is used for obtaining a first target navigation route at least according to the route editing data so that the second electronic equipment can output corresponding navigation information according to the first target navigation route.
An electronic device, comprising:
the memory is used for storing an application program and data generated by the running of the application program;
a processor for executing the application to implement: if the first electronic equipment obtains a navigation request of the second electronic equipment, wherein the navigation request at least comprises a starting point position and an end point position, route editing data containing the starting point position and the end point position is obtained; and obtaining a first target navigation route at least according to the route editing data, so that the second electronic equipment can output corresponding navigation information according to the first target navigation route.
According to the technical scheme, in the processing method, the processing device and the electronic equipment disclosed by the application, if the navigation request of the second electronic equipment is obtained from the first electronic equipment, route editing data including the starting position and the ending position in the navigation request is obtained, and then the corresponding navigation route is obtained according to the route editing data, so that the second electronic equipment can output corresponding navigation information according to the navigation route. Therefore, the navigation route can be drawn according to the route editing data comprising the starting point and the end point, the drawn navigation route is more matched with the navigation requirement, and the accuracy of the navigation route is improved.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings needed to be used in the description of the embodiments are briefly introduced below, and it is obvious that the drawings in the following description are only some embodiments of the present application, and it is obvious for those skilled in the art to obtain other drawings without creative efforts.
Fig. 1 is a flowchart of a processing method according to an embodiment of the present disclosure;
FIGS. 2-4 are diagrams illustrating editing of a route by a passer according to an embodiment of the present disclosure;
FIGS. 5-7 are diagrams illustrating examples of generating a first target navigation route according to embodiments of the present application;
FIG. 8 is another flow chart of a processing method according to an embodiment of the present disclosure;
FIG. 9 is an exemplary diagram illustrating adjusting a first target navigation route according to an embodiment of the present application;
fig. 10 is a schematic structural diagram of a processing apparatus according to a second embodiment of the present application;
fig. 11 is another schematic structural diagram of a processing apparatus according to a second embodiment of the present disclosure;
fig. 12 is a schematic structural diagram of an electronic device according to a third embodiment of the present application;
fig. 13 is an exemplary diagram of a walking navigation scenario according to an embodiment of the present application.
Detailed Description
The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application, and it is obvious that the described embodiments are only a part of the embodiments of the present application, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present application.
Referring to fig. 1, a flowchart of an implementation of a processing method provided in an embodiment of the present application is shown, where the method may be applied to a first electronic device capable of performing route editing, such as a mobile phone terminal held by a passer; the method can also be applied to second electronic equipment needing navigation, such as a mobile phone terminal held by a passer; the method and the device can also be applied to a third electronic device which can realize communication between the first electronic device and the second electronic device, such as a background server of a map application. The technical scheme in the embodiment is mainly used for editing the navigation route, so that the drawn navigation route is more matched with the navigation requirement, and the accuracy of the navigation route is improved.
Specifically, the method in this embodiment may include the following steps:
step 101: the first electronic device obtains a navigation request of the second electronic device.
The navigation request at least comprises a starting position and an end position.
The navigation request can be actively sent to the first electronic device by the second electronic device if the route needs to be navigated; or, the first electronic device sends a message to the second electronic device by the first electronic device in a case that the navigation route needs to be provided to the second electronic device, so that the second electronic device sends the navigation request generated by the second electronic device to the first electronic device.
For example, a passerby operates on a passerby mobile phone, generates a navigation request according to a starting position and an end position input by the passerby, or the starting position and the end position obtained by extracting keywords from interactive data of the passerby, and then sends the navigation request to a passerby mobile phone to request the passerby to provide a navigation route;
for another example, when the mobile phone of the passer needs to provide a navigation route for the passer to enable the passer to travel according to the requirement of the passer, the passer operates on the mobile phone of the passer to generate a notification message and send the notification message to the mobile phone of the passer to notify the passer to operate on the mobile phone, and according to the content in the notification message, the starting position and the ending position input by the passer are input, or the starting position and the ending position obtained by extracting keywords from the interactive data of the passer are generated to generate a navigation request, and then the navigation request is sent to the mobile phone of the passer. The notification message may include a start position and an end position obtained by inputting by a passer or by extracting keywords from interactive data of the passer.
In one implementation, the starting position and the ending position may be obtained by performing keyword extraction on interaction data related to the first electronic device and/or the second electronic device.
For example, the first electronic device may extract location-related keywords, such as "start from a near you", "go to B here", and so on, from the interaction data between the first electronic device and the other devices, whereby the first electronic device gets a start location "a" and an end location "B", based on which the first electronic device adds the start location and the end location to a notification message to notify the second electronic device to generate and return a navigation request to the first electronic device.
For another example, the second electronic device may extract keywords related to the location, such as "i am at C", "D wants to go to you see a movie", and the like, from the interaction data between the second electronic device and the other devices, so that the second electronic device obtains the starting location "C" and the ending location "D", based on which the second electronic device generates a navigation request and transmits the navigation request to the first electronic device.
In another implementation manner, the starting position may be obtained according to device location information of the first electronic device, in this case, the ending position may be obtained according to device location information of the second electronic device, or the ending position is obtained based on interaction data corresponding to the first electronic device and/or the second electronic device.
Specifically, the starting position, that is, the device position information of the first electronic device, may be obtained by collecting the current position using a device such as a positioning instrument in the first electronic device, and the ending position, that is, the device position information of the second electronic device, may be obtained by collecting the current position using a device such as a positioning instrument in the second electronic device; or the end position may be obtained by performing keyword extraction on the interaction data of the first electronic device and the other device or the interaction data of the second electronic device and the other device. For example, the mobile phone of the passer locates itself to obtain the starting position, at this time, the passer may be in the same position as the passer, that is, both the position of the starting position and the position of the passer, and at the same time, the mobile phone of the passer may extract "D" as the destination position from the interactive data between the mobile phone of the passer and the passer, such as "we are in C" or "want to see a movie" or "want to see D", that is, the passer may be in the same position as the passer and the passer needs to obtain a route from the current position to the destination position together with the passer. For another example, the cell phone of the passerby locates itself to obtain the starting position, and the cell phone of the passerby inquires locates itself to obtain the end position and sends the end position to the cell phone of the passerby, i.e. the passerby and the passerby are not at the same position and the passerby needs to obtain the route from the position of the passerby to the position of the passerby.
In another implementation manner, the starting position may be obtained according to device location information of the second electronic device, in this case, the ending position may be obtained according to device location information of the first electronic device, or the ending position may be obtained based on interaction data corresponding to the first electronic device and/or the second electronic device.
Specifically, the starting position, that is, the device position information of the second electronic device, may be obtained by collecting the current position using a device such as a locator in the second electronic device, and the ending position, that is, the device position information of the first electronic device, may be obtained by collecting the current position using a device such as a locator in the first electronic device, or the ending position may be obtained by extracting a keyword from interaction data between the first electronic device and another device or interaction data between the second electronic device and another device. For example, the cell phone of the passerby positions itself to obtain a starting position and sends the starting position to the cell phone of the passerby, the cell phone of the passerby positions itself to obtain an end position, and at this time, the passerby is not at the same position as the passerby and the passerby needs to obtain a route from the current position to the position of the passerby. For another example, the robot of the person asking for road locates itself to obtain the starting point position and sends the starting point position to the mobile phone of the person guiding for road, and meanwhile, the mobile phone of the person guiding for road can extract the 'D' as the end point position from the interactive data 'I is in C' and 'wants to go to D building to watch movies' of the person asking for road.
Step 102: route edit data including a start point position and an end point position is obtained.
The route editing data can be obtained according to input operation of a user of the first electronic device on an input component of the first electronic device, data extraction can be carried out according to interaction data related to the starting position and the ending position to obtain route editing data, and route editing data sent to other devices can be directly obtained.
Specifically, the method comprises the following steps:
in one implementation, at least the start point position and the end point are output on the output component of the first electronic device, so that the user of the first electronic device can edit and draw the route on the input component of the first electronic device based on the start point position and the end point position, and further obtain the drawn route editing data.
For example, the first electronic device outputs a start position and an end position on the output component, the user of the first electronic device selects at least one passing point between the start position and the end position, the user of the first electronic device adds at least one passing point between the start position and the end position, or the user of the first electronic device adds environmental information such as buildings, shops, scenic spots, and the like on the passing point, based on which, the first electronic device, the second electronic device, or the third electronic device obtains route edit data drawn by the user of the first electronic device based on the start position and the end position, and the route edit data may include content such as first mark data and/or at least one passing point. For example, the mobile phone of the lead outputs a starting point position a and an end point position B on the touch screen, the lead may add a route point E and a route point F between a and B on the touch screen, and add mark data on the route point E to characterize a landmark building "× building" on the route point E, as shown in fig. 2, based on which the mobile phone of the lead, the mobile phone of the lead or the map backend server obtains route editing data including the route points E and F and the "× building".
For another example, the first electronic device outputs a start position and an end position on the output component, and outputs an initial navigation route between the start position and the end position, where the initial navigation route may have a plurality of pieces, and the user of the first electronic device performs selection and adjustment operations on the initial navigation route, such as selecting a passing point on the initial navigation route, and further, for example, sets first marker data, such as buildings near the passing point, on the passing point on the initial navigation route, based on which the first electronic device, the second electronic device, or the third electronic device obtains route edit data drawn by the user of the first electronic device based on the start position and the end position, and the route edit data may include content, such as the first marker data and/or at least one passing point, for the initial navigation route. For example, the mobile phone of the lead man outputs a starting position a and an ending position B and an initial navigation route between a and B on the touch screen, the lead man may add a route point E on the initial navigation route between a and B on the touch screen, add mark data on the route point E, and characterize a landmark building ". about. a building" on the route point E, as shown in fig. 3, based on which the mobile phone of the lead man, the mobile phone of the question man, or the map background server obtains route edit data including the route point E and ". about. the building".
For another example, the first electronic device outputs the starting position and the ending position on the output component, and outputs the initial navigation route between the starting position and the ending position and the road condition information of the route position on the initial navigation route, where the road condition information represents the road state at the corresponding route position, such as congestion or smoothness of the road, and different colors may be used to represent different road states. The user of the first electronic device may select and adjust the initial navigation route by referring to the output road condition information, for example, select a route point on the initial navigation route with a clear road, and then, for example, set first marker data, such as a building near the route point, on the route point on the initial navigation route with the clear road, based on this, the first electronic device, the second electronic device, or the third electronic device obtains route edit data drawn by the user of the first electronic device based on the starting point position and the ending point position, and the route edit data may include the first marker data and/or at least one route point and other contents for the initial navigation route. For example, the mobile phone of the lead man outputs a starting position a, an ending position B and two initial navigation routes between a and B on the touch screen, and green or red represents road condition information on the initial navigation routes, where green represents that roads are clear, and red represents that roads are congested, and the lead man can add a route point H on the touch screen on the initial navigation route corresponding to the green road condition information between a and B, and add mark data on the route point E to represent a landmark building "× restaurant" on the route point H, as shown in fig. 4.
In another implementation manner, in the present embodiment, the route edit data is obtained based on interaction data with the second electronic device, where the interaction data is interaction data related to the starting point position and the ending point position. Specifically, the first electronic device, the second electronic device, or the third electronic device screens interactive data related to a starting position and an ending position from interactive data between the second electronic device and other devices, and performs keyword extraction from the screened interactive data, so that the first electronic device, the second electronic device, or the third electronic device obtains route editing data including the first marking data and/or at least one route point. For example, chat records including voice, text, pictures and the like of a starting point position a and an ending point position B are screened out from the chat application of the question man-machine, and then contents related to a question path or a finger path, such as 'path H', 'right turn to the restaurant' and the like, are screened out from the chat records, so that route editing data including path points 'H' and 'restaurant' are obtained.
In another implementation manner, in the present embodiment, the route edit data is obtained based on interaction data with the first electronic device, where the interaction data is interaction data related to the starting point position and the ending point position. Specifically, the first electronic device, the second electronic device, or the third electronic device screens interactive data related to a starting position and an ending position from interactive data between the first electronic device and other devices, and then performs keyword extraction from the screened interactive data, so that the first electronic device, the second electronic device, or the third electronic device obtains route editing data including the first marking data and/or at least one route point. For example, chat records including voice, text, pictures and the like of a starting point position A and an ending point position B are screened out from the chat application of the mobile phone of the road seeker, and then contents related to a road asking or guiding, such as 'route J', 'left turn to the building' and the like, are screened out from the chat records, so that route editing data including the route points 'J' and 'building' are obtained.
In another implementation manner, in the present embodiment, the route edit data is obtained based on interaction data between the first electronic device and the second electronic device, where the interaction data is interaction data related to the starting point position and the ending point position. Specifically, the first electronic device, the second electronic device, or the third electronic device screens interactive data related to a starting position and an ending position from interactive data between the first electronic device and the second electronic device, and extracts keywords from the screened interactive data, so that the first electronic device, the second electronic device, or the third electronic device obtains route editing data including the first marking data and/or the at least one route point. For example, chat records between the route seeker and the route seeker are screened out in the chat application of the mobile phone of the route leader, wherein the chat records comprise the chat records of voice, characters, pictures and the like of the starting point position A and the ending point position B, and then contents related to the route asking or the route directing, such as 'route J', 'left turn to the building' and the like, are screened out from the chat records, so that route editing data comprising the route points 'J' and 'building' are obtained.
In another implementation, the second electronic device or the third electronic device may obtain route edit data sent by the first electronic device and including at least a start position and an end position. For example, after route editing data is obtained on a cell phone of a passer, the route editing data is sent to a cell phone of a passer or a map background server.
Step 103: and obtaining a first target navigation route at least according to the route editing data, so that the second electronic equipment can output corresponding navigation information according to the first target navigation route.
In one implementation, after the first electronic device obtains the route editing data, the first electronic device obtains a first target navigation route at least according to the route editing data, and sends the first target navigation route to the second electronic device, so that the second electronic device can output corresponding navigation information according to the first target navigation route. For example, after route editing data including route points E and F and a building is obtained on a lead mobile phone, a first target navigation route is obtained at least according to the route editing data, the lead mobile phone sends the first target navigation route to a passerby asking mobile phone, and the passerby asking mobile phone outputs corresponding navigation information to the passerby, for example, the navigation information reaching the E from the a is firstly executed, the building is arranged near the E, and then the navigation information reaching the B can be left-turned by turning right.
In another implementation manner, after the first electronic device or the third electronic device obtains the route editing data, the route editing data is sent to the second electronic device, and the second electronic device obtains the first target navigation route at least according to the received route editing data and outputs corresponding navigation information according to the first target navigation route. For example, the mobile phone of the person who walks the road or the map backend server sends the obtained route editing data to the mobile phone of the person who walks the road, generates a first target navigation route on the mobile phone of the person who walks the road, and outputs the first target navigation route to the person who walks the road, and the person who walks the road can travel according to the output navigation information.
In another implementation, after the first electronic device obtains the route editing data, the route editing data may be sent to a third electronic device, and the third electronic device obtains the first target navigation route at least according to the route editing data sent by the first electronic device, and sends the first target navigation route to the second electronic device, so that the second electronic device can output corresponding navigation information according to the first target navigation route. For example, after the mobile phone of the passer obtains the route editing data drawn by the passer, the route editing data is sent to the map backend server, the map backend server generates a first target navigation route according to the route editing data, the first target navigation route is sent to the mobile phone of the passer-by, and the mobile phone of the passer-by outputs corresponding navigation information for the passer-by to indicate the passer-by to go.
It should be noted that, if there are multiple initial navigation routes between the starting position and the ending position, the initial navigation route to which the route point or the route point adds the mark information is retained, and other initial navigation routes may be deleted, so as to adjust the retained initial navigation route in the following, and obtain the first target navigation route.
As can be seen from the foregoing solution, in the processing method provided in the first embodiment of the present application, if the first electronic device obtains the navigation request to the second electronic device, route edit data including the start position and the end position in the navigation request is obtained, and then the corresponding navigation route is obtained according to the route edit data, so that the second electronic device can output corresponding navigation information according to the navigation route. Therefore, the navigation route can be drawn according to the route editing data comprising the starting point and the end point, the drawn navigation route is more matched with the navigation requirement, and the accuracy of the navigation route is improved.
Based on the above implementation, when the first target navigation route is obtained according to the route editing data in step 103, the following steps can be implemented:
and adjusting the initial navigation route generated based on the starting point position and the end point position according to the route editing data to obtain a first target navigation route.
That is, the route edit data is data obtained by performing an editing operation on an initial navigation route formed by the start point position and the end point position, and based on this, the initial navigation route is adjusted according to the route edit data, thereby obtaining the first target navigation route.
In one implementation, in step 103, first marking data in the route editing data may be obtained, where the first marking data is at least used for prompting environmental information of an approach point, such as information of a landmark building, e.g., a restaurant, a building, etc., and then, based on at least these first marking data, the initial navigation route is marked to obtain a first target navigation route. For example, a marker such as a landmark building is set at a passing point on the initial navigation route, thereby obtaining an adjusted first target navigation route.
In another implementation manner, in step 103, route points, such as the route point "E", in the route editing data may be obtained first, and then the initial navigation route is adjusted based on at least the route points, so as to obtain the first target navigation route. For example, according to the added route point, the route on the initial navigation route is modified, so that the initial navigation route which does not pass through the route point "E" is adjusted to pass through the route point "E", and the first target navigation route is obtained.
In another implementation manner, in step 103, the route points and the first marking data in the route editing data may be obtained first, and then the initial navigation route is adjusted and marked based on the route points and the first marking data, so as to obtain the first target navigation route. For example, a marker such as a landmark building is set for a route point on the initial navigation route, and the route on the initial navigation route is modified according to the added route point, so that the initial navigation route which does not pass through the route point "E" is adjusted to pass through the route point "E", and the first target navigation route is obtained.
Based on the above implementation, when the first target navigation route is obtained according to the route editing data in step 103, the following method may also be implemented:
and obtaining at least one passing point between the starting position and the end position according to the route editing data, and then obtaining a first target navigation route according to the starting position, the end position and a route drawn by the passing points.
That is, the route edit data is data obtained by performing route point edit for a position between the start point position and the end point position, based on which the first target navigation route is obtained from the route drawn by the route point and the start point position and the end point position in the route edit data.
In one implementation, the obtaining of the first target navigation route according to at least the starting point position, the ending point position, and the route drawn by the route points may specifically be:
a route between the starting location, the ending location, and at least one waypoint in the route edit data is plotted on the map to obtain a first target navigation route.
For example, the start point position a, the end point position B, and the approach points E and F are sequentially connected in a direction from the start point position a to the end point position B to obtain a first target navigation route, as shown in fig. 5.
In another implementation manner, the obtaining of the first target navigation route according to at least the starting position, the ending position, and the route drawn by the route points may specifically be:
first marking data, such as a landmark building mark and the like, in the route editing data is obtained, then, a route between the starting point position, the end point position and at least one path point in the route editing data is drawn on the map, and the drawn route is marked according to the first marking data to obtain a first target navigation route.
For example, based on the route drawn in fig. 5, a mark of ". x. building" is placed on the route to obtain a first target navigation route, as shown in fig. 6.
In another implementation manner, the obtaining of the first target navigation route according to at least the starting position, the ending position, and the route drawn by the route points may specifically be:
the method comprises the steps of obtaining environment data among at least one route point in starting point position, ending point position and route editing data, such as road signs, buildings and the like, then obtaining corresponding audio data and/or image data according to the environment data, wherein the audio data and/or the image data can express a traveling mode from the starting point position to the route point and then to the ending point position, such as voice 'left turn when the user walks to a building' data, and image data with a right turn arrow corresponding to the route point 'E', and the like.
For example, after the starting point position, the end point position and at least one route point are obtained, audio data and/or image data capable of expressing a traveling mode from the starting point position to the route point to the end point position are obtained according to data such as buildings, road signs and directions among the positions, the audio data and/or the image data are combined according to a sequence from the starting point position, each route point and the end point position to form a data set, the data set is a first target navigation route capable of providing navigation prompts for a demander, based on the data, when the demander, namely the demander travels to a certain position, the road questioning mobile phone can output corresponding audio data and/or image data for the demander according to the first target navigation route, such as voice 'left turn' data when the demander travels to a building, and image data corresponding to a route point 'E' and having a right turn arrow, as shown in fig. 7, to facilitate the walk-by person's travel.
In one implementation manner, after obtaining the first target navigation route in this embodiment, the following steps may be further included, as shown in fig. 8:
step 104: route modification operation and/or road condition information for the first target navigation route is obtained.
Wherein the route modification operation is for adjusting at least one trajectory line in the first target navigation route. May comprise: the marking input operation aiming at the first target navigation route can also comprise a track line modification operation aiming at the first target navigation route, the marking input operation comprises at least one piece of second marking data, and the user of the first electronic device can input the marking by referring to the real-time device position of the second electronic device sent by the second electronic device. The trajectory line modification operation includes a starting position of the adjusted trajectory line. The route modification operation may be specifically obtained by receiving a modification input operation of a user of the first electronic device at an input part thereof.
And the road condition information table indicates the road state at the path position corresponding to the first target navigation route. The traffic information can be obtained by accessing the real-time traffic corresponding to the route location in the traffic server.
Step 105: and modifying the first target navigation route according to the route modification operation and/or the road condition information to obtain a second target navigation route, so that the second electronic equipment outputs the modified navigation information according to the second target navigation route.
For example, according to a marker input operation in the route modification operation, adding or modifying marker data to the first target navigation route so that after the second electronic device outputs corresponding navigation information, a user of the second electronic device can refer to the newly added or modified marker for traveling;
for another example, the trajectory line in the first target navigation route is redrawn according to the trajectory line modification operation in the route modification operations to obtain a second target navigation route, so that after the second electronic device outputs the corresponding navigation information, the user of the second electronic device can refer to the modified navigation information to travel or modify the travel route by himself/herself. For example, the guiders perform detailed drawing on the trajectory line of the last short distance in the first target navigation route on the mobile phone, as shown in fig. 9, there is an obstacle on the straight trajectory line of the last short distance, the detailed drawn navigation route bypasses the obstacle, and after the regenerated second target navigation route is sent to the road questioner, the road questioner can refer to the modified navigation information of the last kilometer to travel to safely and effectively reach the destination.
For another example, according to the road condition information, a road condition mark is added to the first target navigation route, so that after the second electronic device outputs the corresponding navigation information, a user of the second electronic device can refer to the road condition mark to determine whether to continue to travel according to the second target navigation route or modify the travel route by himself or herself.
For another example, the track line in the first target navigation route is redrawn according to the road condition information, so that the road condition information on the path position in the second target navigation route meets the smooth traveling condition, and if the path positions in the redrawn second target navigation route are all in a state of smooth roads, after the second electronic device outputs the corresponding navigation information, the user of the second electronic device can smoothly pass according to the navigation information.
It should be noted that the technical solution in the present application may be applicable to an application scenario of walking navigation, may also be applicable to an application scenario of bicycle navigation, and of course, may also use other application scenarios that need navigation guidance.
Referring to fig. 10, a schematic structural diagram of a processing apparatus provided in the second embodiment of the present application is shown, where the processing apparatus may be configured in a first electronic device, a second electronic device, or a third electronic device. The technical scheme in the embodiment is mainly used for editing the navigation route, so that the drawn navigation route is more matched with the navigation requirement, and the accuracy of the navigation route is improved.
Specifically, the apparatus in this embodiment may include the following units:
an edit data obtaining unit 1001 configured to obtain route edit data including a start position and an end position if a first electronic device obtains a navigation request of a second electronic device, the navigation request including at least the start position and the end position;
a navigation route obtaining unit 1002, configured to obtain a first target navigation route at least according to the route editing data, so that the second electronic device can output corresponding navigation information according to the first target navigation route.
As can be seen from the above solution, in the processing apparatus provided in the second embodiment of the present application, if the first electronic device obtains the navigation request to the second electronic device, the route edit data including the start position and the end position in the navigation request is obtained, and then the corresponding navigation route is obtained according to the route edit data, so that the second electronic device can output the corresponding navigation information according to the navigation route. Therefore, the navigation route can be drawn according to the route editing data comprising the starting point and the end point, the drawn navigation route is more matched with the navigation requirement, and the accuracy of the navigation route is improved.
In one implementation, the edit data obtaining unit 1001 is specifically configured to: obtaining route edit data drawn by a user of the first electronic device on an input component thereof based on the start position and the end position; or, obtaining the route edit data based on interaction data with the second electronic device, the interaction data being related to the start position and the end position; or, obtaining the route edit data based on interaction data with the first electronic device, the interaction data being related to the start position and the end position; or obtaining route editing data which is sent by the first electronic equipment and contains the starting position and the ending position; or, obtaining the route edit data based on interaction data between the first electronic device and the second electronic device, the interaction data being related to the start position and the end position.
In one implementation, the navigation route obtaining unit 1002 is specifically configured to: adjusting an initial navigation route generated based on the starting point position and the end point position according to the route editing data to obtain a first target navigation route; or obtaining at least one route point between the starting point position and the end point position according to the route editing data, and obtaining a first target navigation route at least according to the starting point position, the end point position and a route drawn among the at least one route point.
Preferably, when the initial navigation route generated based on the starting point position and the ending point position is adjusted according to the route editing data to obtain the first target navigation route, the navigation route obtaining unit 1002 is specifically configured to: obtaining first marking data in the route editing data, wherein the first marking data is at least used for prompting environmental information of a passing point, and marking an initial navigation route generated based on the starting point position and the end point position at least based on the first marking data to obtain a first target navigation route; or obtaining a route point in the route editing data, and adjusting the initial navigation route at least based on the route point to obtain a first target navigation route; or obtaining a route point and first mark data in the route editing data, wherein the first mark data is at least used for prompting the environment information of the route point, and the initial navigation route is adjusted and marked based on the route point and the first mark data to obtain a first target navigation route.
Preferably, when the navigation route obtaining unit 1002 obtains the first target navigation route at least according to the starting point position, the ending point position, and the route drawn between the at least one passing point, it is specifically configured to: drawing a route among the starting point position, the end point position and the at least one passing point on a map to obtain a first target navigation route; or obtaining first marking data in the route editing data, wherein the first marking data is at least used for prompting the environment information of the route points, drawing the starting point position, the end point position and the route between the at least one route point on a map, and marking the drawn route to obtain a first target navigation route; or obtaining environment data among the starting point position, the end point position and the at least one passing point, obtaining corresponding audio data and/or image data at least according to the environment data, and generating a first target navigation route capable of providing navigation prompts for a demander at least according to the audio data and/or the image data.
In a specific implementation, there are several possible implementations in obtaining the first target navigation route:
the first electronic equipment at least obtains a first target navigation route according to the route editing data and sends the first target navigation route to the second electronic equipment, so that the second electronic equipment can output corresponding navigation information according to the first target navigation route; or the like, or, alternatively,
the method comprises the steps that a second electronic device obtains a first target navigation route at least according to a third electronic device or route editing data sent by the first electronic device, and outputs corresponding navigation information according to the first target navigation route, wherein the third electronic device is a device capable of achieving communication between the first electronic device and the second electronic device; or the like, or, alternatively,
the third electronic device obtains a first target navigation route at least according to the route editing data sent by the first electronic device, and sends the first target navigation route to the second electronic device, so that the second electronic device can output corresponding navigation information according to the first target navigation route, and the third electronic device is a device capable of realizing communication between the first electronic device and the second electronic device.
In one implementation, the apparatus in this embodiment may further include the following units, as shown in fig. 11:
a navigation route adjusting unit 1003 for: obtaining a route modification operation and/or road condition information for the first target navigation route, wherein the route modification operation is used for adjusting at least one track line in the first target navigation route, and the road condition information represents a road state on a path position corresponding to the first target navigation route; and modifying the first target navigation route according to the route modification operation and/or the road condition information to obtain a second target navigation route, so that the second electronic equipment outputs the modified navigation information according to the second target navigation route.
In one implementation, the starting position is obtained according to the device location information of the first electronic device, and the ending position is obtained according to the device location information of the second electronic device;
the device location information of the first electronic device is obtained by positioning the first electronic device, or the device location information of the first electronic device is obtained based on the interactive data corresponding to the first electronic device and/or the second electronic device;
the device location information of the second electronic device is obtained by locating the second electronic device, or the device location information of the second electronic device is obtained based on the interactive data corresponding to the first electronic device and/or the second electronic device.
It should be noted that, for the specific implementation of each unit in the present embodiment, reference may be made to the corresponding content in the foregoing, and details are not described here.
Referring to fig. 12, a schematic structural diagram of an electronic device provided in the third embodiment of the present application is shown, where the electronic device may be a first electronic device, a second electronic device, or a third electronic device, and the technical solution in the third embodiment is mainly used for implementing editable navigation routes, so that the drawn navigation routes more match navigation requirements, and accuracy of the navigation routes is improved.
Specifically, the electronic device in this embodiment may include the following structure:
a memory 1201 for storing an application program and data generated by the operation of the application program;
a processor 1202 for executing the application to implement: if the first electronic equipment obtains a navigation request of the second electronic equipment, wherein the navigation request at least comprises a starting point position and an end point position, route editing data containing the starting point position and the end point position is obtained; and obtaining a first target navigation route at least according to the route editing data, so that the second electronic equipment can output corresponding navigation information according to the first target navigation route.
As can be seen from the foregoing solution, in the electronic device provided by the third embodiment of the present application, if the first electronic device obtains the navigation request to the second electronic device, the route edit data including the start position and the end position in the navigation request is obtained, and then the corresponding navigation route is obtained according to the route edit data, so that the second electronic device can output the corresponding navigation information according to the navigation route. Therefore, the navigation route can be drawn according to the route editing data comprising the starting point and the end point, the drawn navigation route is more matched with the navigation requirement, and the accuracy of the navigation route is improved.
Taking the first electronic device as a cell phone of a passer and the second electronic device as a cell phone of a passer for example, the technical scheme in the application is configured in the cell phone of the passer, and based on the technical scheme, a map application program formed on the cell phone of the passer can realize the following processing when walking and guiding are needed:
1. the passerby plans and draws a walking path map between the starting position and the end position on the map of the mobile phone.
2. The guiders send the links of the drawn path map to the mobile phones of the road questioners through the communication connection between the mobile phones, and the path map sharing between the guiders and the road questioners is realized.
3. The person asking for the road can travel according to the navigation information shown by the route map drawn by the person asking for the road, as shown in fig. 13, the person asking for the road travels from the starting point to the self-drawing starting point, namely the route point, and then continues to travel from the self-drawing starting point, namely the route drawn by the person asking for the road, but does not travel according to the original route, until the person asking for the road passes through the Y-shaped intersection and travels beside the grassland, the navigation information prompts the person asking for the road to turn right and pass through the grassland, namely another route point, until the end point of the self-drawing route to which the person asking for the road arrives, and a building dining room rear door, namely a mark, is arranged near the end point, so that the person asking for the road can reach the end point position 'building'.
It can be seen that, in the process of drawing the route map, besides the addition of the route and route points, the guiders can also add some marks, such as identification guide information, and text prompt or graphic prompt.
4. The approach person and the questioner can intercommunicate and interact in real time: the passerby can see the real-time position of the passerby and can give prompt guidance on the route map. After the passer sends the updated route map to the mobile phone of the passer-by through the communication connection between the mobile phones, the passer-by can also see the guide given by the passer in real time.
In summary, according to the technical scheme in the application, navigation guidance can be realized in an area or a position on a route map without a mark. Secondly, the technical scheme in the application can also navigate aiming at the short route of the last kilometer in the route map. Moreover, according to the technical scheme, rich route guiding identification reminding information can be defined in a route map in a user-defined mode. In addition, in the technical scheme of the application, the road asking person and the road leading person can share, communicate and interact with each other in real time.
The embodiments in the present description are described in a progressive manner, each embodiment focuses on differences from other embodiments, and the same and similar parts among the embodiments are referred to each other. The device disclosed by the embodiment corresponds to the method disclosed by the embodiment, so that the description is simple, and the relevant points can be referred to the method part for description.
Those of skill would further appreciate that the various illustrative elements and algorithm steps described in connection with the embodiments disclosed herein may be implemented as electronic hardware, computer software, or combinations of both, and that the various illustrative components and steps have been described above generally in terms of their functionality in order to clearly illustrate this interchangeability of hardware and software. Whether such functionality is implemented as hardware or software depends upon the particular application and design constraints imposed on the implementation. Skilled artisans may implement the described functionality in varying ways for each particular application, but such implementation decisions should not be interpreted as causing a departure from the scope of the present application.
The steps of a method or algorithm described in connection with the embodiments disclosed herein may be embodied directly in hardware, in a software module executed by a processor, or in a combination of the two. A software module may reside in Random Access Memory (RAM), memory, Read Only Memory (ROM), electrically programmable ROM, electrically erasable programmable ROM, registers, hard disk, a removable disk, a CD-ROM, or any other form of storage medium known in the art.
The previous description of the disclosed embodiments is provided to enable any person skilled in the art to make or use the present application. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the generic principles defined herein may be applied to other embodiments without departing from the spirit or scope of the application. Thus, the present application is not intended to be limited to the embodiments shown herein but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims (10)

1. A method of processing, comprising:
if the first electronic equipment obtains a navigation request of the second electronic equipment, wherein the navigation request at least comprises a starting point position and an end point position, route editing data containing the starting point position and the end point position is obtained;
and obtaining a first target navigation route at least according to the route editing data, so that the second electronic equipment can output corresponding navigation information according to the first target navigation route.
2. The method of claim 1, wherein obtaining route edit data including the start location and the end location comprises:
obtaining route edit data drawn by a user of the first electronic device on an input component thereof based on the start position and the end position; or the like, or, alternatively,
obtaining the route edit data based on interaction data with the second electronic device, the interaction data relating to the start position and the end position; or the like, or, alternatively,
obtaining the route edit data based on interaction data with the first electronic device, the interaction data relating to the start position and the end position; or the like, or, alternatively,
obtaining route editing data which is sent by the first electronic equipment and contains the starting point position and the end point position; or the like, or, alternatively,
obtaining the route edit data based on interaction data between the first electronic device and the second electronic device, the interaction data relating to the start position and the end position.
3. The method of claim 1 or 2, wherein obtaining a first target navigation route based at least on the route edit data comprises:
adjusting an initial navigation route generated based on the starting point position and the end point position according to the route editing data to obtain a first target navigation route;
or the like, or, alternatively,
and obtaining at least one route point between the starting point position and the end point position according to the route editing data, and obtaining a first target navigation route according to at least a route drawn among the starting point position, the end point position and the at least one route point.
4. The method of claim 3, adjusting an initial navigation route generated based on the start position and the end position according to the route edit data to obtain a first target navigation route, comprising:
obtaining first marking data in the route editing data, wherein the first marking data is at least used for prompting environmental information of a passing point, and marking an initial navigation route generated based on the starting point position and the end point position at least based on the first marking data to obtain a first target navigation route;
or the like, or, alternatively,
obtaining a route point in the route editing data, and adjusting the initial navigation route at least based on the route point to obtain a first target navigation route;
or the like, or, alternatively,
and acquiring a passing point and first marking data in the route editing data, wherein the first marking data is at least used for prompting the environmental information of the passing point, and the initial navigation route is adjusted and marked based on the passing point and the first marking data to acquire a first target navigation route.
5. The method of claim 3, wherein obtaining a first target navigation route based on at least the starting position, the ending position, and a route drawn between the at least one waypoint comprises:
drawing a route among the starting point position, the end point position and the at least one passing point on a map to obtain a first target navigation route;
or the like, or, alternatively,
obtaining first marking data in the route editing data, wherein the first marking data is at least used for prompting the environment information of the route points, drawing the starting point position, the end point position and the route between the at least one route point on a map, and marking the drawn route to obtain a first target navigation route;
or the like, or, alternatively,
and obtaining environment data among the starting point position, the end point position and the at least one passing point, obtaining corresponding audio data and/or image data at least according to the environment data, and generating a first target navigation route capable of providing navigation prompts for demanders at least according to the audio data and/or the image data.
6. The method according to any one of claims 1 to 5, wherein obtaining a first target navigation route at least according to the route edit data to enable the second electronic device to output corresponding navigation information according to the first target navigation route comprises:
the first electronic equipment at least obtains a first target navigation route according to the route editing data and sends the first target navigation route to the second electronic equipment, so that the second electronic equipment can output corresponding navigation information according to the first target navigation route; or the like, or, alternatively,
the method comprises the steps that a second electronic device obtains a first target navigation route at least according to a third electronic device or route editing data sent by the first electronic device, and outputs corresponding navigation information according to the first target navigation route, wherein the third electronic device is a device capable of achieving communication between the first electronic device and the second electronic device; or the like, or, alternatively,
the third electronic device obtains a first target navigation route at least according to the route editing data sent by the first electronic device, and sends the first target navigation route to the second electronic device, so that the second electronic device can output corresponding navigation information according to the first target navigation route, and the third electronic device is a device capable of realizing communication between the first electronic device and the second electronic device.
7. The method of claim 1 or 2, further comprising:
obtaining a route modification operation and/or road condition information for the first target navigation route, wherein the route modification operation is used for adjusting at least one track line in the first target navigation route, and the road condition information represents a road state on a path position corresponding to the first target navigation route;
and modifying the first target navigation route according to the route modification operation and/or the road condition information to obtain a second target navigation route, so that the second electronic equipment outputs the modified navigation information according to the second target navigation route.
8. The method according to claim 1, wherein the starting position is obtained according to device location information of the first electronic device or device location information of the second electronic device, and the ending position is obtained according to interaction data corresponding to the first electronic device and/or the second electronic device.
9. A processing apparatus, comprising:
an edit data obtaining unit, configured to obtain route edit data including a start position and an end position if a first electronic device obtains a navigation request of a second electronic device, where the navigation request includes at least the start position and the end position;
and the navigation route obtaining unit is used for obtaining a first target navigation route at least according to the route editing data so that the second electronic equipment can output corresponding navigation information according to the first target navigation route.
10. An electronic device, comprising:
the memory is used for storing an application program and data generated by the running of the application program;
a processor for executing the application to implement: if the first electronic equipment obtains a navigation request of the second electronic equipment, wherein the navigation request at least comprises a starting point position and an end point position, route editing data containing the starting point position and the end point position is obtained; and obtaining a first target navigation route at least according to the route editing data, so that the second electronic equipment can output corresponding navigation information according to the first target navigation route.
CN202110779692.4A 2021-07-09 2021-07-09 Processing method and device and electronic equipment Pending CN113465623A (en)

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