WO2023005659A1 - 图像处理方法及装置、电子设备、计算机可读存储介质、计算机程序及计算机程序产品 - Google Patents
图像处理方法及装置、电子设备、计算机可读存储介质、计算机程序及计算机程序产品 Download PDFInfo
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- WO2023005659A1 WO2023005659A1 PCT/CN2022/105205 CN2022105205W WO2023005659A1 WO 2023005659 A1 WO2023005659 A1 WO 2023005659A1 CN 2022105205 W CN2022105205 W CN 2022105205W WO 2023005659 A1 WO2023005659 A1 WO 2023005659A1
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- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06T—IMAGE DATA PROCESSING OR GENERATION, IN GENERAL
- G06T7/00—Image analysis
- G06T7/20—Analysis of motion
- G06T7/292—Multi-camera tracking
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- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06T—IMAGE DATA PROCESSING OR GENERATION, IN GENERAL
- G06T1/00—General purpose image data processing
- G06T1/0007—Image acquisition
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- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06T—IMAGE DATA PROCESSING OR GENERATION, IN GENERAL
- G06T2207/00—Indexing scheme for image analysis or image enhancement
- G06T2207/10—Image acquisition modality
- G06T2207/10004—Still image; Photographic image
Definitions
- the present disclosure relates to the technical field of image processing, and in particular to an image processing method and device, electronic equipment, computer readable storage medium, computer program and computer program product.
- the position of the target object in the scene can be more intuitively reflected. Before visualization, it is necessary to locate the target object in the visualization data of the scene.
- the traditional method uses the map of the scene as the visualized data of the scene, and determines the position of the target object in the map of the scene, so as to realize the positioning of the target object in the visualized data of the scene.
- the positioning accuracy of the traditional method is not high.
- the present disclosure provides an image processing method and device, electronic equipment, a computer-readable storage medium, a computer program and a computer program product.
- an image processing method comprising:
- a position of the target object in the first image is determined according to the first position.
- said acquiring the second image of the target object includes:
- An image containing the object in the blacklist library is determined from at least one third image as the second image, and the at least one third image is captured by the at least one camera.
- the method also includes:
- a first trajectory of the target object is displayed in the first image according to the first position and the second position, the first trajectory including a drivable trajectory.
- the method before displaying the first track of the target object in the first image according to the first position and the second position, the method further includes:
- the displaying the first track of the target object in the first image according to the first position and the second position includes:
- the target track is determined to be the first track.
- the at least one second trajectory includes a third trajectory
- the acquiring the at least one second trajectory in the first image includes:
- a trajectory setting page In the case of detecting a trajectory setting instruction for the first image, display a trajectory setting page, the trajectory setting page including at least one camera in the first image and the first scene; the first scene The at least one camera in includes a second camera and a third camera different from the second camera;
- the trajectory input for the start trajectory point and the end trajectory point is used as the third trajectory.
- the at least one camera further includes a fourth camera, the fourth camera is different from the second camera, and the fourth camera is different from the third camera;
- the method further includes:
- the track input for the starting track point and the ending track point, as the third track includes:
- the trajectory input for the initial trajectory point, the intermediate trajectory point and the termination trajectory point is used as the third trajectory, and the endpoints of the third trajectory are the initial trajectory point and the termination trajectory point respectively.
- trajectory points, and the third trajectory includes the intermediate trajectory points.
- the method further includes:
- the start track point and the end track point are displayed in the first image in a first preset display manner.
- the method also includes:
- the thumbnail of the first image and the thumbnail of the fourth image are displayed in a second preset display manner.
- the thumbnail of the first image and the thumbnail of the fourth image are displayed in a first area of the display page, and the display page further includes a second image different from the first area. Second area;
- the method also includes:
- the fourth image is displayed in the second area.
- the method also includes:
- a thumbnail of the first scene is obtained based on the first image and the fourth image.
- the acquiring the position information of at least one camera in the first scene in the first image includes:
- At least one camera in the first scene and the first image are displayed on the mark page;
- a movement instruction for moving the at least one camera to the first image is detected, according to the movement instruction, obtain position information of the at least one camera in the first scene in the first image .
- the acquiring the position information of at least one camera in the first scene in the first image includes:
- the position information of the at least one camera in the first image is obtained.
- the method further includes:
- the target camera is displayed in the first image in the first preset display manner.
- the annotation page further includes at least one of the following information: whether the at least one camera has been marked in the first image, the name of the at least one camera, the name of the at least one camera type, the preview button of the at least one camera, and the detailed information viewing button of the at least one camera.
- At least one of the following information is displayed: the name of the first scene, the access of the at least one camera state, and the moving direction of the object captured by the at least one camera.
- the image captured by the at least one camera is displayed.
- the first image is a bird's-eye view of the first scene.
- an image processing device comprising:
- An acquisition part configured to acquire a first image of a first scene and position information of at least one camera in the first scene in the first image, the first scene being a map missing scene;
- the acquisition part is configured to acquire a second image of the target object, the second image is acquired by the first camera in the first scene;
- a determining part configured to determine a first position of the first camera in the first image according to position information of the at least one camera in the first image
- the determining part is further configured to determine the position of the target object in the first image according to the first position.
- the obtaining part is configured to obtain a blacklist library; determine an image containing an object in the blacklist library from at least one third image as the second image, The at least one third image is captured by the at least one camera.
- the acquisition part is further configured to acquire a second position of the target object in the first image, the second position is different from the first position; according to the the first position and the second position, and a first trajectory of the target object is displayed in the first image, and the first trajectory includes a drivable trajectory.
- the acquisition part is further configured to display the first track of the target object in the first image according to the first position and the second position Before, at least one second trajectory in the first image is acquired, and the at least one second trajectory includes the drivable trajectory;
- the determining part is configured to determine the target trajectory as the first trajectory in a case where the trajectory points of the target trajectory in the at least one second trajectory include the first position and the second position.
- the at least one second track includes a third track
- the acquisition part is configured to display a track setting page when a track setting instruction for the first image is detected
- the track setting page includes the first image and at least one camera in the first scene
- the at least one camera in the first scene includes a second camera and a third camera different from the second camera
- In the case of detecting an instruction to use the second camera as a starting track point use the position of the second camera in the first image as a starting track point
- the position of the third camera in the first image is used as the end track point
- the track input for the start track point and the end track point is used as the third track.
- the at least one camera further includes a fourth camera, the fourth camera is different from the second camera, and the fourth camera is different from the third camera;
- the determining part is further configured to detect that the fourth camera is used as an intermediate track point before the track input for the start track point and the end track point is used as the third track. In the case of an instruction, use the position of the fourth camera in the first image as an intermediate track point;
- the acquisition part is configured to use the trajectory input for the start trajectory point, the intermediate trajectory point and the end trajectory point as the third trajectory, and the end points of the third trajectory are respectively the a start track point and the end track point, and the third track includes the intermediate track point.
- the image processing device further includes: a display part configured to display the first image in the first preset display mode after the third trajectory is obtained. The starting track point and the ending track point.
- the acquiring part is further configured to acquire a fourth image of a second scene, the first scene including the second scene;
- the display part is further configured to display a thumbnail of the first image and a thumbnail of the fourth image in a second preset display manner.
- the thumbnail of the first image and the thumbnail of the fourth image are displayed in a first area of the display page, and the display page further includes a second image different from the first area. Second area;
- the display part is further configured to display the fourth image in the second area in the case of detecting that the thumbnail of the fourth image is clicked.
- the acquisition part is further configured to acquire a fourth image of a second scene, the first scene includes the second scene; based on the first image and the fourth image to get a thumbnail of the first scene.
- the acquiring part is further configured to display at least one camera in the first scene and the first image on the labeling page if an instruction to mark the position of the camera is detected ; In the case of detecting a movement instruction to move the at least one camera to the first image, according to the movement instruction, obtain the position of at least one camera in the first scene in the first image information.
- the acquiring part is further configured to display at least one camera in the first scene on the labeling page if an instruction to mark the position of the camera is detected;
- the display part is further configured to display a position input box when a position input instruction for the at least one camera is detected;
- the obtaining part is further configured to obtain the position information of the at least one camera in the first image according to the position in the position input box.
- the display part is further configured to, in the case of detecting that a target camera in the at least one camera is clicked, display the first image in the first preset display manner The target camera is displayed in .
- the annotation page further includes at least one of the following information: whether the at least one camera has been marked in the first image, the name of the at least one camera, the name of the at least one camera type, the preview button of the at least one camera, and the detailed information viewing button of the at least one camera.
- the display part is further configured to display at least one of the following information when it is detected that the detailed information viewing button of the at least one camera is clicked: the name of the first scene , the access state of the at least one camera, and the moving direction of the object photographed by the at least one camera.
- the display part is further configured to display the image captured by the at least one camera when it is detected that the preview button of the at least one camera is clicked.
- the first image is a bird's-eye view of the first scene.
- an electronic device including: a processor and a memory, the memory is used to store computer program codes, the computer program codes include computer instructions, and when the processor executes the computer instructions , the electronic device executes the method according to the foregoing first aspect and any possible implementation manner thereof.
- another electronic device including: a processor, a sending device, an input device, an output device, and a memory, the memory is used to store computer program codes, the computer program codes include computer instructions, and in the When the processor executes the computer instructions, the electronic device executes the method according to the above first aspect and any possible implementation manner thereof.
- a computer-readable storage medium is provided.
- a computer program is stored in the computer-readable storage medium, and the computer program includes program instructions.
- the program instructions are executed by a processor, the The processor executes the method according to the above first aspect and any possible implementation manner thereof.
- a computer program product includes a computer program or an instruction, and when the computer program or instruction is run on a computer, the computer executes the first aspect and any of the above-mentioned aspects.
- a computer program including computer readable code, when the computer readable code is run in an electronic device, a processor in the computer device executes the program to implement the above first aspect and any of the above A method of one possible implementation.
- FIG. 1 is a schematic diagram of an image processing system architecture provided by an embodiment of the present disclosure
- FIG. 2 is a schematic flowchart of an image processing method provided by an embodiment of the present disclosure
- FIG. 3 is a schematic diagram of a map provided by an embodiment of the present disclosure.
- FIG. 4 is a schematic diagram of a map missing scene provided by an embodiment of the present disclosure.
- FIG. 5 is a schematic diagram of a pixel coordinate system provided by an embodiment of the present disclosure.
- FIG. 6 is a schematic diagram of another map missing scene provided by an embodiment of the present disclosure.
- FIG. 7 is a schematic diagram of displaying a thumbnail of a first image and a thumbnail of a second image in a second preset display mode provided by an embodiment of the present disclosure
- FIG. 8 is a schematic diagram of a display page provided by an embodiment of the present disclosure.
- FIG. 9 is a schematic diagram of a track setting page provided by an embodiment of the present disclosure.
- FIG. 10 is a schematic diagram of displaying a first image and a fourth image in a second preset display mode provided by an embodiment of the present disclosure
- FIG. 11 is a schematic structural diagram of an image processing device provided by an embodiment of the present disclosure.
- Fig. 12 is a schematic diagram of a hardware structure of an electronic device provided by an embodiment of the present disclosure.
- At least one (item) means one or more, “multiple” means two or more, and “at least two (items)” means two or more Three or more, the character “/" can indicate that the associated objects are an "or” relationship, which refers to any combination of these items, including any combination of single items (items) or plural items (items).
- at least one item (piece) of a, b or c can mean: a, b, c, "a and b", “a and c", “b and c”, or "a and b and c ", where a, b, c can be single or multiple.
- an embodiment means that a particular feature, structure, or characteristic described in connection with the embodiment can be included in at least one embodiment of the present disclosure.
- the occurrences of this phrase in various places in the specification are not necessarily all referring to the same embodiment, nor are separate or alternative embodiments mutually exclusive of other embodiments. It is understood explicitly and implicitly by those skilled in the art that the embodiments described herein can be combined with other embodiments.
- the position of the target object in the scene can be more intuitively reflected. Before visualization, it is necessary to locate the target object in the visualization data of the scene.
- the traditional method uses the map of the scene as the visualized data of the scene, and determines the position of the target object in the map of the scene, so as to realize the positioning of the target object in the visualized data of the scene.
- the positioning accuracy of the traditional method is not high, wherein the detailed information includes at least one of the following: building information and road information.
- the execution subject of the embodiments of the present disclosure is an image processing apparatus, where the image processing apparatus may be any electronic device capable of executing the technical solutions disclosed in the method embodiments of the present disclosure.
- the image processing device may be one of the following: a mobile phone, a computer, a tablet computer, and a wearable smart device.
- FIG. 1 is a schematic structural diagram of an image processing system 11 provided by an embodiment of the present disclosure.
- the image processing device 112 may be a server.
- At least one camera 111 and an image processing device 112 may be deployed in a map missing scene.
- the map missing scene is a building in a supervision area, for example, a closed park.
- At least one camera 111 is used for at least one of images and videos inside the building.
- the image processing device 112 processes at least one of the images and videos collected by the at least one camera 111 based on the technical solution provided below, and determines the position of the target object in the building.
- at least one camera 111 includes a first camera.
- the image processing device acquires a first image including a scene in a building, and a second image acquired by a first camera, wherein the second image includes a target object.
- the image processing device 112 can determine the position of the target object in the first image based on the technical solutions provided below, that is, the position of the target object in the building scene.
- FIG. 2 is a schematic flowchart of an image processing method provided by an embodiment of the present disclosure.
- the map missing scene includes an area missing detailed information on the map, where the detailed information includes at least one of the following: building information and road information.
- the first scene includes at least one of the following: supervision places, subway stations.
- the at least one camera in the first scene is at least one camera whose shooting range is located in the first scene.
- the at least one camera may be one camera, or may be two or more cameras.
- the position in the image may be the position under the pixel coordinates of the image, wherein the abscissa of the pixel coordinate system is used to represent the number of columns where the pixel point is located, and the ordinate in the pixel coordinate system is used to represent the pixel point The number of rows it is on.
- the pixel coordinates are constructed with the upper left corner of the image as the coordinate origin O, the direction parallel to the row of the image as the direction of the X axis, and the direction parallel to the column of the image as the direction of the Y axis.
- the system is XOY.
- the units of the abscissa and ordinate are pixels.
- the coordinates of pixel A11 in Fig. 5 are (1,1)
- the coordinates of pixel A23 are (3,2)
- the coordinates of pixel A42 are (2,4)
- the coordinates of pixel A34 are (4 , 3).
- the position of the at least one camera in the first image may be determined according to the position information of the at least one camera in the first image.
- the position of the camera in the first image is the position of the camera in the pixel coordinate system of the first image, and the position corresponds to the position of the camera in the first scene.
- camera a is installed at point A in the first scene. If in the first image, the pixel corresponding to point A is pixel point B. Then, the position of the pixel point B in the first image is the position of the camera a in the first image.
- the image processing apparatus receives the first image input by the user through the input component.
- the image processing apparatus receives the first image sent by the terminal.
- the image processing apparatus receives the first image input by the user through the input component.
- the image processing apparatus receives the first image sent by the terminal.
- the step of acquiring the first image and the step of acquiring the position information of at least one camera in the first image may be performed separately, or may be performed simultaneously.
- the image processing apparatus may acquire the first image first, and then acquire position information of at least one camera in the first image.
- the image processing device may first acquire the position information of at least one camera in the first image, and then acquire the first image.
- the image processing apparatus acquires position information of at least one camera in the first image during the process of acquiring the first image, or acquires the first image during the process of acquiring the position information of at least one camera in the first image.
- the target object may be any object.
- the target object includes one of the following: a human body, a human face, and a vehicle.
- the second image of the target object that is, the second image includes the target object.
- the first camera is any one of the above at least one camera.
- the image processing device receives the second image input by the user through the input component.
- the image processing apparatus receives the second image sent by the terminal.
- the second image contains the target object
- the second image is collected by the first camera, and the position of the target object in the first image can be obtained according to the position of the first camera in the first image.
- the image processing apparatus uses the first position as the position in the first image.
- the image processing device can determine the position where Xiao Ming appeared in the first image.
- the image processing device may determine a pixel point corresponding to the first position from the first image, and display the pixel point in the first image.
- the image processing apparatus displays the first camera at the first position.
- the image processing device displays the second image at the first position.
- the image processing device determines the position of the target object in the first image according to the position of the first camera that captures the second image of the target object in the first image, thereby improving the accuracy of positioning in the first scene Spend.
- the image processing device determines the position of the target object in the first image, it displays the position of the target object in the first image in the first image. In this way, the position where the target object appeared in the first scene can be reflected in the first image, so as to realize the visual display of the position of the target object in the first scene.
- the image processing device acquires the second image of the target object by performing the following steps:
- the blacklist library includes the face images of the searched object.
- the blacklist library contains Zhang San's face image, and at this time, the search object is Zhang San.
- the face image of the search object at B place can be stored in the blacklist library.
- the image processing apparatus receives the blacklist library input by a user through an input component.
- the image processing apparatus receives the blacklist library sent by the terminal.
- the third image is captured by at least one camera in the first scene, and if the object in the blacklist library appears in the third image, it means that the object in the blacklist library appears in the first scene. At this time, according to at least one third image containing the object in the blacklist library, the position of the object in the blacklist library in the first scene can be determined.
- the image processing device determines that at least one third image contains faces in the blacklist library by comparing at least one third image with face images in the blacklist library.
- the image of the object as the second image.
- steps 201 to 204 can be combined to determine the positions of the objects in the blacklist library in the first image.
- the blacklist database includes Zhang San's face image and Li Si's face image.
- the at least one third image includes a third image a and a third image b.
- the image processing device determines that the third image a includes Zhang San by comparing the third image a with the face image of Zhang San, and then uses the third image a as the second image. Combining the technical solutions of steps 201 to 204, the position of Zhang San in the first image can be further determined.
- step 1 and step 2 the image processing device determines whether the object in the blacklist library appears in the first scene by determining whether at least one third image contains the object in the blacklist library.
- the position of the object in the first image can be further determined by combining steps 201 to 204 .
- the image processing device also performs the following steps:
- the timestamp of the first location is different from the timestamp of the second location.
- the image processing apparatus receives the second location input by the user through the input component.
- the image processing apparatus receives the second location sent by the terminal.
- the first position and the second position display a first trajectory of the target object in the first image, where the first trajectory includes a trajectory on the road.
- the drivable trajectories include drivable trajectories for people or vehicles.
- the drivable trajectory when the target object includes a person, the drivable trajectory includes a drivable trajectory for a person; when the target object includes a car, the drivable trajectory includes a drivable trajectory for a car.
- the trajectory through the wall is not the trajectory that people can drive.
- the track passing through the building is not the track that a car can drive.
- the car can drive on the road, so the track on the road is the track that the car can drive.
- the first image includes at least one road in the first scene, that is, the first image may show at least one road in the first scene.
- Fig. 6 shows an image of the scene where the Ping An Financial Center is located, and the image may show the first road and the second road.
- the drivable trajectory includes at least one trajectory on the road.
- the image processing device takes the first position and the second position as two end points respectively, and determines a track passing through the first position and the second position as the first track.
- the trajectory determined based on the position may include unreasonable trajectories.
- a trajectory through a wall is unreasonable for a human.
- the first trajectory in the embodiment of the present disclosure includes a drivable trajectory, thereby improving the accuracy of the trajectory of the target object.
- the image processing device before performing step 4, the image processing device further performs the following steps:
- the image processing device receives at least one second trajectory input by a user through an input component.
- the image processing apparatus receives at least one second track sent by the terminal.
- Step 5 the image processing device executes the following steps during Step 5:
- the track point of the target track includes the first position and the second position, that is, the target track passes the first position and the second position.
- the point corresponding to the first position and the point corresponding to the second position are two endpoints of the target trajectory.
- the point corresponding to the first position is the starting point of the target trajectory
- the point corresponding to the second position is the ending point of the target trajectory
- the point corresponding to the second position is the starting point of the target trajectory
- the point corresponding to the first position is the ending point of the target trajectory
- the image processing device may determine a trajectory whose trajectory points include the first location and the second location from the at least one second trajectory as the first trajectory.
- the at least one second track includes a third track, that is, the third track is any track in the at least one second track.
- the image processing device performs the following steps in the process of executing step 4:
- the track setting page includes the first image and at least one camera in the first scene, and at least one camera in the first scene
- One camera includes a second camera and a third camera different from the second camera.
- the trajectory setting instruction may be input by the user to the image processing device through the input component, and the trajectory setting instruction may also be sent by the user to the image processing device through the terminal.
- the track setting instruction is used to instruct the image processing device to enter the track setting program.
- the image processing device When the image processing device detects a trajectory setting instruction for the first image, it displays a trajectory setting page, and displays the first image and at least one camera in the first scene on the trajectory setting page.
- At least one camera in the first scene includes a second camera and a third camera different from the second camera. That is, in this step, the first scene includes two or more cameras, and the second camera and the third camera are any two different cameras in the first scene.
- the image processing device displays "Please select the starting track point" on the track setting page, and the user then clicks on the second camera to input an instruction to the image processing device to use the second camera as the starting track point .
- the image processing device displays "Please input the starting track point" on the track setting page, and the user further inputs the name of the second camera to input the second camera as the starting track point to the image processing device. point instruction.
- the image processing device displays "Please select the end track point" on the track setting page, and the user then clicks on the third camera to input an instruction to the image processing device to use the third camera as the starting track point.
- the image processing device displays "Please enter the ending track point" on the track setting page, and the user then inputs the name of the third camera to the image processing device to use the third camera as the starting track point instructions.
- the trajectory determined by the image processing device based on the start trajectory point and the end trajectory point may not be a drivable trajectory. And the user can determine the drivable trajectory between the starting trajectory point and the ending trajectory point by displaying the first image displayed on the page. Therefore, the image processing device uses the trajectory input for the start trajectory point and the end trajectory point as the third trajectory.
- the image processing device displays a track setting page through a touch screen.
- the user connects the starting track point and the ending track point by touching the display screen, and constructs a track whose end points are the starting track point and the ending track point, so as to input the track for the starting track point and the ending track point to the image processing device.
- the third trajectory in steps 7 to 10 is only an example, and it should not be understood that only one trajectory of the at least one second trajectory can be obtained through steps 7 to 10.
- the image processing device can obtain all second trajectories by performing steps 7 to 10 .
- the at least one camera further includes a fourth camera, the fourth camera is different from the second camera, and the fourth camera is different from the third camera.
- the image processing device Before performing step 10, the image processing device also performs the following steps:
- the image processing device displays "Please select an intermediate track point" on the track setting page, and the user clicks on the fourth camera to input an instruction to use the fourth camera as the starting track point to the image processing device.
- the image processing device displays "Please enter the middle track point" on the track setting page, and the user further inputs the name of the fourth camera to the image processing device to use the fourth camera as the starting track point instructions.
- the image processing device After performing step 11, the image processing device obtains the third trajectory by performing the following steps:
- the trajectory input for the above-mentioned initial trajectory point, the above-mentioned intermediate trajectory point and the above-mentioned end trajectory point is used as the above-mentioned third trajectory, and the endpoints of the above-mentioned third trajectory are the above-mentioned initial trajectory point and the above-mentioned end trajectory point respectively, and the above-mentioned The third trajectory includes the above-mentioned intermediate trajectory points.
- the image processing device displays a track setting page through a touch screen.
- the user connects the start track point, the middle track point and the end track point by touching the display screen, and constructs a track whose endpoints are the start track point and the end track point respectively and passes through the middle track point, so as to input the starting track point to the image processing device. , the trajectory of the intermediate trajectory point and the terminal trajectory point.
- the second camera, the third camera and the fourth camera are all examples, and it should not be understood that the first scene only includes three cameras.
- the image processing device By performing step 11 and step 12, the image processing device obtains the trajectory whose endpoints are the starting trajectory point and the ending trajectory point, so that the trajectory information of the third trajectory can be made more detailed.
- the image processing device further performs the following steps:
- the first preset display mode may be emphatic display, that is, in step 13, the image processing device emphatically displays the start track point and the end track point in the first image. Emphasis on displaying the start track point and the end track point in the first image means that the display mode of the start track point and the end track point are different from the display mode of the non-emphasis display area, wherein the non-emphasis display area includes the first image The area in excluding the start track point and the end track point.
- the first preset display manner includes one or more of the following: color highlighting, highlighting, and hovering.
- the first preset display manner includes color highlighting.
- the image processing device converts the non-emphasized display area into a grayscale image, and retains the color of the starting track point and the color of the ending track point, so as to realize highlighting the starting track point and the ending track point.
- the first preset display manner includes highlighting.
- the image processing device highlights the start track point and the end track point, so as to realize highlighting the start track point and the end track point.
- the first preset display manner includes floating display.
- the first image includes a head up display (HUD) layer, the image processing device determines the first display area corresponding to the starting track point from the HUD layer, and determines the second display area corresponding to the ending track point from the HUD layer area.
- the first display area and the second display area are used as floating display areas, and the start track point is displayed in the first display area, and the end track point is displayed in the second display area.
- HUD head up display
- the image processing device can enable the user to more intuitively determine the third trajectory from the first image by displaying the start trajectory point and the end trajectory point in the first image in the first preset display manner.
- the image processing device also performs the following steps:
- the first scene and the second scene are affiliation relationships.
- the first scene is a campus
- the second scene is a teaching building in the campus.
- the first scene is the teaching building
- the second scene is the third floor in the teaching building.
- the first scene is the third floor of the teaching building
- the second scene is classroom 308 on the third floor.
- the second scenario includes a map missing scenario.
- the image processing apparatus receives the fourth image input by the user through the input component.
- the image processing apparatus receives the fourth image sent by the terminal.
- the second preset display mode may be displayed in a hierarchical manner, that is, in step 15, the image processing apparatus displays the thumbnails of the first image and the thumbnails of the fourth image in a hierarchical manner. For example, in FIG. 7, a thumbnail of the first image and a thumbnail of the fourth image.
- the image processing device can simulate the 3D model of the first scene, obtain a 3D display effect, and better display the hierarchical relationship between the first scene and the second scene.
- the thumbnail of the first image and the thumbnail of the fourth image are displayed in a first area of the display page, and the display page further includes a second area different from the first area.
- the image processing device also performs the following steps:
- the image processing device can simulate the 3D model of the first scene, and the 3D model is displayed in the first area. And by clicking any thumbnail of the three-dimensional model in the first area, the user can make the image processing device display the scene image corresponding to the thumbnail in the second area. Therefore, the image processing device displays the fourth image in the second area when detecting that the thumbnail of the fourth image is clicked.
- the image processing device converts the image displayed in the second area to Switch from the fourth image to the first image.
- the image shown in FIG. 8 is the display page in step 15 .
- Fig. 9 shows the track setting page.
- the left side of the track display page is the scene information display area, which is used to display scene information.
- the scene information display areas include: factory, clinic, surveillance area 3, surveillance area 4, surveillance area 1, surveillance area 2, and hospital.
- the middle of the track display page is the image display area, which is used to display images. Refer to FIG. 8 for the image display area shown in FIG. 9 .
- the right side of the track display page is the camera information display area, which is used to display the camera information.
- the image processing device also performs the following steps:
- step 14 For the implementation of this step, refer to step 14.
- the image processing apparatus obtains the thumbnail of the first image based on the first image, and obtains the thumbnail of the fourth image based on the fourth image.
- the image processing apparatus obtains the thumbnail of the first image based on the first image, and obtains the thumbnail of the fourth image based on the fourth image.
- the thumbnail of the first image and the thumbnail of the fourth image are displayed hierarchically to obtain the thumbnail of the first scene.
- the image processing device acquires position information of at least one camera in the first scene in the first image by performing the following steps:
- the instruction to mark the position of the camera may be that the user controls the cursor with a mouse and clicks a mark button on the displayed page.
- the command to mark the position of the camera may also be that the user inputs the mark command to the image processing device through the input component, for example, the user inputs the character "start” to the image processing device through the keyboard, and inputs the mark command to the image processing device.
- the user inputs a labeling instruction to the image processing device by inputting voice data "start labeling the camera position" to the image processing device.
- the image processing apparatus may display at least one camera in the first scene on the annotation page by displaying an identification of at least one camera in the first scene on the annotation page, where the identification may be One or more of the following: icons, digital logos, text logos.
- the annotation page of the image processing device includes the following areas: a camera display area and an image display area, wherein the camera display area is used to display at least one camera in the first scene, and the camera display area is used to display images of the first scene (i.e. the first image).
- the first scene is a surveillance area
- there are three surveillance cameras installed in the surveillance area namely surveillance camera a, surveillance camera b, and surveillance camera c.
- the logo of surveillance camera a, the logo of surveillance camera b and the logo of surveillance camera c can be displayed in the camera display area.
- the image of the supervision area can be displayed in the image display area.
- the user inputs a moving instruction to the image processing apparatus by dragging the camera in the first scene to the first image.
- At least one camera includes camera a and camera b, and the user drags camera a to point A in the first image, and drags camera b to point B in the first image.
- the moving instruction includes moving camera a to point A in the first image, and moving camera b to point B in the first image.
- the user inputs a movement instruction to the image processing apparatus through a keyboard, where the keyboard includes a physical keyboard and a virtual keyboard.
- At least one camera includes camera a and camera b
- the user inputs to the image processing device through a physical keyboard to move camera a to point A in the first image and move camera b to point B in the first image.
- the moving instruction includes moving camera a to point A in the first image, and moving camera b to point B in the first image.
- position information of at least one camera in the first scene in the first image can be determined. Therefore, the position information of at least one camera in the first scene in the first image can be obtained according to the movement instruction.
- At least one camera includes camera a
- the moving instruction includes moving camera a to point A in the first image.
- the image processing device determines the position of camera a in the first image as point A according to the movement instruction, and then determines the position information of camera a in the first image according to the position of point A in the first image.
- the image processing device acquires position information of at least one camera in the first scene in the first image by performing the following steps:
- the instruction to mark the position of the camera may be that the user controls the cursor with a mouse and clicks a mark button on the displayed page.
- the command to mark the position of the camera may also be that the user inputs the mark command to the image processing device through the input component, for example, the user inputs the character "start” to the image processing device through the keyboard, and inputs the mark command to the image processing device.
- the user inputs a labeling instruction to the image processing device by inputting voice data "start labeling the camera position" to the image processing device.
- the image processing apparatus may display at least one camera in the first scene on the annotation page by displaying an identification of at least one camera in the first scene on the annotation page, where the identification may be One or more of the following: icons, digital logos, text logos.
- the position input instruction may be input by the user to the image processing apparatus through the input component, and the position input instruction may be sent by the user to the image processing apparatus through the terminal.
- the input box is used to input a position, and the position in the input box represents the position in the first image. For example, if the user inputs (3, 4) in the input box, then the coordinates of the position representation in the pixel coordinate system of the first image are (3, 4).
- At least one camera includes camera a and camera b.
- the user inputs a position input command for the camera a to the image processing device, so that the image processing device displays a position input box. If the position input by the user in the position input box is position A, then the image processing device uses position A as the position of camera a in the first image.
- the position information of the at least one camera in the first image is obtained.
- the image processing device obtains position information of the camera in the first image according to the position in the input frame corresponding to the position of the camera in the first scene.
- At least one camera includes camera a and camera b.
- the user inputs a position input command for the camera a to the image processing device, so that the image processing device displays a position input box. If the position input by the user in the position input box is position A, then the image processing device uses position A as the position of camera a in the first image. After inputting the position A, the user further inputs a position input command for the camera b to the image processing device, so that the image processing device displays a position input box. If the position input by the user in the position input box is position B, then the image processing device uses position B as the position of camera b in the first image.
- the image processing device after obtaining the position information of at least one camera in the first image, the image processing device further performs the following steps:
- the user clicks on the target camera in the annotation page, and the image processing device highlights the target camera in the first image.
- the annotation page further includes at least one of the following information: whether at least one camera has been marked in the first image, at least one camera name, at least one camera type, at least one camera preview button, at least A camera details view button.
- whether to mark in the first image is used to indicate whether the camera has been marked in the first image, that is, whether to determine the position information of the camera in the first image through steps 19 to 20, or to determine whether the camera is in the first image through steps 21 to 20
- Step 23 determines the position information of the camera in the first image.
- the types of cameras include dome cameras, bolt cameras, and dome cameras. Click the preview button of the camera to preview the images captured by the camera. You can view the detailed information of the camera by clicking the button to view the detailed information of the camera.
- At least one of the following information is displayed: the name of the first scene, the access status of at least one camera, the The direction of movement of the subject being photographed.
- the access state of the camera indicates whether there is a communication connection between the image processing device and the camera.
- At least one camera includes camera a. If there is no communication connection between camera a and the image processing device, the access state of camera a is abnormal; if there is a communication connection between camera b and the image processing device, the connection state of camera b is normal.
- the moving direction of the object captured by the camera includes: entering or exiting.
- At least one camera includes camera a.
- Camera a is installed at the gate of building A. If the moving direction of the objects captured by camera a includes in, then all the objects captured by camera a enter building A; if the moving direction of the objects captured by camera b includes out, then the objects captured by camera a are all Leave Building A.
- a preview button of at least one camera when it is detected that a preview button of at least one camera is clicked, a captured image of at least one camera is displayed.
- At least one camera includes a camera a and a camera b
- the image processing device displays a captured image of the camera a when a preview button of the camera a is detected to be clicked.
- the image processing device detects that the preview button of camera b is clicked, it displays the captured image of camera b.
- the first image is a bird's-eye view of the first scene.
- the first image is a bird's-eye view of the first scene
- the first image contains more detailed information of the first scene.
- the image processing device may display the position of the target object in the first image and visually display the position where the target object appeared in the first scene, so as to improve the display effect.
- FIG. 11 is a schematic structural diagram of an image processing device provided by an embodiment of the present disclosure.
- the image processing device 2 includes: an acquisition part 21 and a determination part 22 .
- the image processing device 2 further includes a display part 23 . in:
- the acquiring part 21 is configured to acquire a first image of a first scene and position information of at least one camera in the first scene in the first image, the first scene being a map missing scene;
- the acquisition part 21 is also configured to acquire a second image of the target object, the second image is acquired by the first camera in the first scene;
- the determining part 22 is configured to determine a first position of the first camera in the first image according to position information of the at least one camera in the first image;
- the determining part 22 is further configured to determine the position of the target object in the first image according to the first position.
- the acquiring part 21 is further configured to acquire a blacklist library; determine an image containing an object in the blacklist library from at least one third image as the second image , the at least one third image is captured by the at least one camera.
- the acquiring part 21 is further configured to acquire a second position of the target object in the first image, where the second position is different from the first position; according to In the first position and the second position, a first trajectory of the target object is displayed in the first image, and the first trajectory includes a drivable trajectory.
- the acquisition part 21 is further configured to display the first image of the target object in the first image according to the first position and the second position.
- the at least one second trajectory in the first image is acquired, and the at least one second trajectory includes the drivable trajectory; the trajectory points of the target trajectory in the at least one second trajectory include the first In the case of a first location and the second location, the target trajectory is determined as the first trajectory.
- the at least one second track includes a third track
- the acquisition part 21 is further configured to display the track when a track setting instruction for the first image is detected
- the track setting page includes the first image and at least one camera in the first scene
- the at least one camera in the first scene includes a second camera and a second camera different from the second camera Three cameras; in the case of detecting an instruction to use the second camera as a starting track point, use the position of the second camera in the first image as a starting track point;
- the third camera is used as an instruction to terminate the track point
- the position of the third camera in the first image is used as the end track point; the track input for the initial track point and the end track point , as the third trajectory.
- the at least one camera further includes a fourth camera, the fourth camera is different from the second camera, and the fourth camera is different from the third camera;
- the determining part 22 is further configured to, before taking the track input for the start track point and the end track point as the third track, before detecting that the fourth camera is used as an intermediate track point In the case of an instruction, use the position of the fourth camera in the first image as an intermediate track point;
- the acquisition part 21 is also configured to use the trajectory input for the initial trajectory point, the intermediate trajectory point and the end trajectory point as the third trajectory, and the endpoints of the third trajectory are respectively The starting trajectory point and the ending trajectory point, and the third trajectory includes the intermediate trajectory point.
- the image processing device 2 further includes: a display part 23 configured to, after the third trajectory is obtained, display in the first image in a first preset display manner The start track point and the end track point are displayed.
- the acquiring part 21 is further configured to acquire a fourth image of a second scene, the first scene including the second scene;
- the display part 23 is further configured to display the thumbnail of the first image and the thumbnail of the fourth image in a second preset display manner.
- the thumbnail of the first image and the thumbnail of the fourth image are displayed in a first area of the display page, and the display page further includes a second image different from the first area. Second area;
- the display part 23 is further configured to display the fourth image in the second area in the case of detecting that the thumbnail of the fourth image is clicked.
- the acquisition part 21 is further configured to acquire a fourth image of a second scene, the first scene includes the second scene; based on the first image and the fourth image Four images, get the thumbnail of the first scene.
- the acquisition part 21 is further configured to display at least one camera in the first scene and the first image; in the case where a movement instruction to move the at least one camera to the first image is detected, according to the movement instruction, the at least one camera in the first scene in the first image is obtained location information.
- the acquiring part 21 is further configured to display at least one camera in the first scene on the labeling page if an instruction to mark the position of the camera is detected;
- the display part 23 is further configured to display a position input box when a position input instruction for the at least one camera is detected;
- the obtaining part 21 is further configured to obtain the position information of the at least one camera in the first image according to the position in the position input box.
- the display part 23 is further configured to, in the case of detecting that a target camera in the at least one camera is clicked, display the The target camera is shown in the image.
- the annotation page further includes at least one of the following information: whether the at least one camera has been marked in the first image, the name of the at least one camera, the name of the at least one camera type, the preview button of the at least one camera, and the detailed information viewing button of the at least one camera.
- the display part 23 is further configured to display at least one of the following information when it is detected that the detailed information viewing button of the at least one camera is clicked: name, the access status of the at least one camera, and the moving direction of the object captured by the at least one camera.
- the display part 23 is further configured to display the image captured by the at least one camera when it is detected that the preview button of the at least one camera is clicked.
- the first image is a bird's-eye view of the first scene.
- the image processing device determines the position of the target object in the first image according to the position of the first camera that captures the second image of the target object in the first image, thereby improving the accuracy of positioning in the first scene Spend.
- the functions or modules included in the apparatus provided by the embodiments of the present disclosure may be used to execute the methods described in the above method embodiments, and the implementation may refer to the descriptions of the above method embodiments.
- a "part" may be a part of a circuit, a part of a processor, a part of a program or software, etc., of course it may also be a unit, a module or a non-modular one.
- Fig. 12 is a schematic diagram of a hardware structure of an electronic device provided by an embodiment of the present disclosure.
- the electronic device 3 includes a processor 31 , a memory 32 , an input device 33 and an output device 34 .
- the processor 31 , the memory 32 , the input device 33 and the output device 34 are coupled through connectors, and the connectors include various interfaces, transmission lines or buses, etc., which are not limited in this embodiment of the present disclosure.
- coupling refers to interconnection in a specific manner, including direct connection or indirect connection through other devices, for example, connection through various interfaces, transmission lines, and buses.
- the processor 31 may be one or more graphics processing units (graphics processing units, GPUs).
- the GPU may be a single-core GPU or a multi-core GPU.
- the processor 31 may be a processor group formed by multiple GPUs, and the multiple processors are coupled to each other through one or more buses.
- the processor may also be other types of processors, etc., which are not limited in this embodiment of the present disclosure.
- the memory 32 can be used to store computer program instructions and various computer program codes including program codes for implementing the solutions of the present disclosure.
- the memory includes but is not limited to random access memory (random access memory, RAM), read-only memory (read-only memory, ROM), erasable programmable read-only memory (erasable programmable read only memory, EPROM ), or portable read-only memory (compact disc read-only memory, CD-ROM), which is used for related instructions and data.
- the input device 33 is used to input at least one of data and signals, and the output device 34 is used to output at least one of data and signals.
- the input device 33 and the output device 34 can be independent devices, or an integrated device.
- the memory 32 can not only be used to store related instructions, but also can be used to store related data, for example, the memory 32 can be used to store the first image obtained through the input device 33, or the memory 32 can also be used to store The first location obtained by the processor 31 is stored, and the embodiment of the present disclosure does not limit the data stored in the memory.
- Fig. 12 only shows a simplified design of an image processing device.
- the image processing device may also include other necessary components, including but not limited to any number of input/output devices, processors, memories, etc., and all image processing devices that can implement the embodiments of the present disclosure are included in this within the scope of public protection.
- An embodiment of the present disclosure also provides a computer-readable storage medium, where a computer program is stored in the computer-readable storage medium, the computer program includes program instructions, and when the program instructions are executed by a processor, the The processor executes the image processing method described above.
- An embodiment of the present disclosure also provides a computer program product, where the computer program product includes a computer program or an instruction, and when the computer program or instruction is run on a computer, causes the computer to execute the above image processing method.
- an embodiment of the present disclosure also provides a computer program, including computer readable codes.
- a processor in the computer device executes the above image processing method. .
- the disclosed systems, devices and methods may be implemented in other ways.
- the device embodiments described above are only illustrative.
- the division of the parts is only a logical function division. In actual implementation, there may be other division methods.
- multiple parts or components can be combined or May be integrated into another system, or some features may be ignored, or not implemented.
- the mutual coupling or direct coupling or communication connection shown or discussed may be through some interfaces, and the indirect coupling or communication connection of devices or parts may be in electrical, mechanical or other forms.
- the part described as a separate component may or may not be physically separated, and the part displayed as a part may or may not be a physical part, that is, it may be located in one place, or may also be distributed to multiple network parts. Some or all of them can be selected according to actual needs to achieve the purpose of the solution of this embodiment.
- each functional part in each embodiment of the present disclosure may be integrated into one processing part, or each part may physically exist separately, or two or more parts may be integrated into one part.
- all or part of them may be implemented by software, hardware, firmware or any combination thereof.
- software When implemented using software, it may be implemented in whole or in part in the form of a computer program product.
- the computer program product includes one or more computer instructions. When the computer program instructions are loaded and executed on the computer, all or part of the processes or functions according to the embodiments of the present disclosure will be generated.
- the computer can be a general purpose computer, a special purpose computer, a computer network, or other programmable devices.
- the computer instructions may be stored in or transmitted via a computer-readable storage medium.
- the computer instructions can be sent from a website site, computer, server, or data center via wired (e.g., coaxial cable, optical fiber, digital subscriber line (DSL)) or wireless (e.g., infrared, wireless, microwave, etc.) Another website site, computer, server or data center for transmission.
- the computer-readable storage medium may be any available medium that can be accessed by a computer, or a data storage device such as a server or a data center integrated with one or more available media.
- the usable medium (computer-readable storage medium) may be a tangible device capable of retaining and storing instructions used by the instruction execution device, and may be a volatile storage medium or a nonvolatile storage medium.
- a computer readable storage medium may be, for example, but is not limited to, an electrical storage device, a magnetic storage device, an optical storage device, an electromagnetic storage device, a semiconductor storage device, or any suitable combination of the foregoing. More specific examples (a non-exhaustive list) of computer-readable storage media include: portable computer diskettes, hard disks, random access memory (RAM), read-only memory (ROM), erasable programmable read-only memory (EPROM), or flash memory), static random access memory (SRAM), compact disc read only memory (CD-ROM), digital versatile disc (DVD), memory stick, floppy disk, mechanically encoded device, such as a printer with instructions stored thereon A hole card or a raised structure in a groove, and any suitable combination of the above.
- RAM random access memory
- ROM read-only memory
- EPROM erasable programmable read-only memory
- flash memory static random access memory
- SRAM static random access memory
- CD-ROM compact disc read only memory
- DVD digital versatile disc
- memory stick floppy
- computer-readable storage media are not to be construed as transient signals per se, such as radio waves or other freely propagating electromagnetic waves, electromagnetic waves propagating through waveguides or other transmission media (e.g., pulses of light through fiber optic cables), or transmitted electrical signals.
- the processes can be completed by computer programs to instruct related hardware.
- the programs can be stored in computer-readable storage media.
- When the programs are executed may include the processes of the foregoing method embodiments.
- the aforementioned storage medium includes: various media capable of storing program codes such as read-only memory (ROM) or random access memory (RAM), magnetic disk or optical disk.
- the embodiment of the present disclosure discloses an image processing method and device, electronic equipment, a computer-readable storage medium, a computer program and a computer program product.
- the method includes: acquiring a first image of a first scene and position information of at least one camera in the first image in the first scene, where the first scene is a scene without a map; acquiring a second image of the target object image, the second image is acquired by the first camera in the first scene; according to the position information of the at least one camera in the first image, determine that the first camera is in the first image A first position in the first image; determining a position of the target object in the first image according to the first position. Positioning can be achieved when the detailed information of the scene is missing from the map, and the positioning accuracy is high.
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Abstract
Description
Claims (22)
- 一种图像处理方法,所述方法包括:获取第一场景的第一图像以及所述第一场景中的至少一个摄像头在所述第一图像中的位置信息,所述第一场景为地图缺失场景;获取目标对象的第二图像,所述第二图像由所述第一场景内的第一摄像头采集得到;依据所述至少一个摄像头在所述第一图像中的位置信息,确定所述第一摄像头在所述第一图像中的第一位置;依据所述第一位置,确定所述目标对象在所述第一图像中的位置。
- 根据权利要求1所述的方法,其中,所述获取目标对象的第二图像,包括:获取黑名单库;从至少一张第三图像中确定包含所述黑名单库中的对象的图像,作为所述第二图像,所述至少一张第三图像由所述至少一个摄像头采集得到。
- 根据权利要求1或2所述的方法,其中,所述方法还包括:获取所述目标对象在所述第一图像中的第二位置,所述第二位置与所述第一位置不同;依据所述第一位置和所述第二位置,在所述第一图像中显示所述目标对象的第一轨迹,所述第一轨迹包括可行驶轨迹。
- 根据权利要求3所述的方法,其中,所述依据所述第一位置和所述第二位置,在所述第一图像中显示所述目标对象的第一轨迹之前,所述方法还包括:获取所述第一图像中的至少一条第二轨迹,所述至少一条第二轨迹均包括所述可行驶轨迹;所述依据所述第一位置和所述第二位置,在所述第一图像中显示所述目标对象的第一轨迹,包括:在所述至少一条第二轨迹中目标轨迹的轨迹点包括所述第一位置和所述第二位置的情况下,确定所述目标轨迹为所述第一轨迹。
- 根据权利要求4所述的方法,其中,所述至少一条第二轨迹包括第三轨迹,所述获取所述第一图像中的至少一条第二轨迹,包括:在检测到针对所述第一图像的轨迹设置指令的情况下,显示轨迹设置页面,所述轨迹设置页面包括所述第一图像和所述第一场景内的至少一个摄像头;所述第一场景内的至少一个摄像头包括第二摄像头和与所述第二摄像头 不同的第三摄像头;在检测到将所述第二摄像头作为起始轨迹点的指令的情况下,将所述第二摄像头在所述第一图像中的位置作为起始轨迹点;在检测到将所述第三摄像头作为终止轨迹点的指令的情况下,将所述第三摄像头在所述第一图像中的位置作为终止轨迹点;将针对所述起始轨迹点和所述终止轨迹点输入的轨迹,作为所述第三轨迹。
- 根据权利要求5所述的方法,其中,所述至少一个摄像头还包括第四摄像头,所述第四摄像头与所述第二摄像头不同,且所述第四摄像头与所述第三摄像头不同;所述将针对所述起始轨迹点和所述终止轨迹点输入的轨迹,作为所述第三轨迹之前,所述方法还包括:在检测到将所述第四摄像头作为中间轨迹点的指令的情况下,将所述第四摄像头在所述第一图像中的位置作为中间轨迹点;所述将针对所述起始轨迹点和所述终止轨迹点输入的轨迹,作为所述第三轨迹,包括:将针对所述起始轨迹点、所述中间轨迹点和所述终止轨迹点输入的轨迹,作为所述第三轨迹,所述第三轨迹的端点分别为所述起始轨迹点和所述终止轨迹点,且所述第三轨迹包括所述中间轨迹点。
- 根据权利要求5或6所述的方法,其中,所述得到所述第三轨迹之后,所述方法还包括:按第一预设显示方式在所述第一图像中显示所述起始轨迹点和所述终止轨迹点。
- 根据权利要求1至7中任意一项所述的方法,其中,所述方法还包括:获取第二场景的第四图像,所述第一场景包括所述第二场景;按第二预设显示方式显示所述第一图像的缩略图和所述第四图像的缩略图。
- 根据权利要求8所述的方法,其中,所述第一图像的缩略图和所述第四图像的缩略图显示于显示页面的第一区域,所述显示页面还包括与所述第一区域不同的第二区域;所述方法还包括:在检测到点击所述第四图像的缩略图的情况下,在所述第二区域内显示所述第四图像。
- 根据权利要求1至7中任意一项所述的方法,其中,所述方法还包 括:获取第二场景的第四图像,所述第一场景包括所述第二场景;基于所述第一图像和所述第四图像,得到所述第一场景的缩略图。
- 根据权利要求1至10中任意一项所述的方法,其中,所述获取所述第一场景中的至少一个摄像头在所述第一图像中的位置信息,包括:在检测到标注摄像头位置的指令的情况下,在标注页面显示所述第一场景内的至少一个摄像头和所述第一图像;在检测到将所述至少一个摄像头移动至所述第一图像的移动指令的情况下,依据所述移动指令,得到所述第一场景中的至少一个摄像头在所述第一图像中的位置信息。
- 根据权利要求1至10中任意一项所述的方法,其中,所述获取所述第一场景中的至少一个摄像头在所述第一图像中的位置信息,包括:在检测到标注摄像头位置的指令的情况下,在标注页面显示所述第一场景内的至少一个摄像头;在检测到针对所述至少一个摄像头的位置输入指令的情况下,显示位置输入框;依据所述位置输入框内的位置,得到所述至少一个摄像头在第一图像中的位置信息。
- 根据权利要求11或12所述的方法,其中,所述得到所述至少一个摄像头在第一图像中的位置信息之后,所述方法还包括:在检测到点击所述至少一个摄像头中的目标摄像头的情况下,按所述第一预设显示方式在所述第一图像中显示所述目标摄像头。
- 根据权利要求11至13中任意一项所述的方法,其中,所述标注页面还包括以下至少一种信息:所述至少一个摄像头是否已在所述第一图像中标记、所述至少一个摄像头名称、所述至少一个摄像头的类型、所述至少一个摄像头的预览按钮、所述至少一个摄像头的详情信息查看按钮。
- 根据权利要求14所述的方法,其中,在检测到点击所述至少一个摄像头的详情信息查看按钮的情况下,显示以下至少一种信息:所述第一场景的名称、所述至少一个摄像头的接入状态、所述至少一个摄像头所拍摄的对象的移动方向。
- 根据权利要求14或15所述的方法,其中,在检测到点击所述至少一个摄像头的预览按钮的情况下,显示所述至少一个摄像头的采集画面。
- 根据权利要求1至16中任意一项所述的方法,其中,所述第一图像为所述第一场景的鸟瞰图。
- 一种图像处理装置,所述装置包括:获取部分,被配置为获取第一场景的第一图像以及所述第一场景中的至少一个摄像头在所述第一图像中的位置信息,所述第一场景为地图缺失场景;所述获取部分,被配置为获取目标对象的第二图像,所述第二图像由所述第一场景内的第一摄像头采集得到;确定部分,被配置为依据所述至少一个摄像头在所述第一图像中的位置信息,确定所述第一摄像头在所述第一图像中的第一位置;所述确定部分,被配置为依据所述第一位置,确定所述目标对象在所述第一图像中的位置。
- 一种电子设备,包括:处理器和存储器,所述存储器用于存储计算机程序代码,所述计算机程序代码包括计算机指令,在所述处理器执行所述计算机指令的情况下,所述电子设备执行如权利要求1至17中任意一项所述的方法。
- 一种计算机可读存储介质,所述计算机可读存储介质中存储有计算机程序,所述计算机程序包括程序指令,在所述程序指令被处理器执行的情况下,使所述处理器执行权利要求1至17中任意一项所述的方法。
- 一种计算机程序,包括计算机可读代码,当所述计算机可读代码在电子设备中运行时,所述计算机设备中的处理器执行用于实现如权利要求1至17任一项所述的图像处理方法。
- 一种计算机程序产品,所述计算机程序产品包括计算机程序或指令,在所述计算机程序或指令在计算机上运行的情况下,使得所述计算机执行如权利要求1至17任一项所述的图像处理方法。
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| CN110113534A (zh) * | 2019-05-13 | 2019-08-09 | Oppo广东移动通信有限公司 | 一种图像处理方法、图像处理装置及移动终端 |
| CN112925941A (zh) * | 2021-03-25 | 2021-06-08 | 深圳市商汤科技有限公司 | 数据处理方法及装置、电子设备及计算机可读存储介质 |
| CN113592918A (zh) * | 2021-07-30 | 2021-11-02 | 深圳市商汤科技有限公司 | 图像处理方法及装置、电子设备及计算机可读存储介质 |
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| CN109886078A (zh) * | 2018-12-29 | 2019-06-14 | 华为技术有限公司 | 目标对象的检索定位方法和装置 |
| CN110113534A (zh) * | 2019-05-13 | 2019-08-09 | Oppo广东移动通信有限公司 | 一种图像处理方法、图像处理装置及移动终端 |
| CN112925941A (zh) * | 2021-03-25 | 2021-06-08 | 深圳市商汤科技有限公司 | 数据处理方法及装置、电子设备及计算机可读存储介质 |
| CN113592918A (zh) * | 2021-07-30 | 2021-11-02 | 深圳市商汤科技有限公司 | 图像处理方法及装置、电子设备及计算机可读存储介质 |
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