System, method and device for providing video picture and operation method of target object
By setting flexible body accessories in the video screen, the flexible body deforms when subjected to stress, solving the problem that it is difficult to reflect the local stress situation of the target object in the prior art, and achieving a better immersive experience.
Patent Information
- Application Number
- CN202410141637.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-01-31
- Publication Date
- 2025-07-22
AI Technical Summary
The prior art is difficult to provide an immersive experience in video images, especially when reflecting the local stress of the target object, it is difficult for the audience to intuitively feel the stress of the driver or operator, especially in racing and sailing.
A flexible body attachment is set in the video screen. One end of the flexible body is fixed to the target object and the other end is a mobile end. When the force is applied, the flexible body deforms to reflect the force condition of the target object. It is displayed in the video screen through the deformation of the flexible body.
It improves the immersive experience of the video viewer, allowing the audience to intuitively feel the stress of the target object, especially when it accelerates, decelerates and turns, enhancing the realism of the operator's stress.
Smart Images

Figure CN120358316A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to a system, method, apparatus for providing video images, and an operation method for a target object. Background Art
[0002] In the video images of some scenarios, such as the video images of motorsport, viewers watching the video images often require a more immersive experience. For this reason, when providing video relay images, it is often switched to the first-person perspective (FPV) of the driver, that is, a perspective similar to the view that the driver's eyes can see. When the racing car accelerates or decelerates rapidly, in the video image, an acceleration ball, acceleration graph, acceleration bar or acceleration value is often generated according to acceleration data (for example, the acceleration data of an object can be synchronously recorded with video shooting by an accelerometer in the camera) and displayed in the video image, so that the viewer can understand the force received by the driver. As Figure 1 shown, the state of the acceleration being 5.2G and the vehicle speed being 293 km / h is displayed.
[0003] However, for the viewers of the video images, the immersive experience still needs to be improved. On the one hand, through methods such as acceleration balls, acceleration graphs, acceleration bars or acceleration values, similar to numerical instruments, most viewers are difficult to understand the force received by the driver through the numerical values or the corresponding numerical charts.
[0004] In addition, the above methods generally can only reflect the overall acceleration situation of the racing car and are also difficult to comprehensively reflect the impact force received locally. Taking sailing as an example, currently, when providing video images of a sailing boat, a solution similar to the above-described video images that provide an acceleration ball, acceleration graph, acceleration bar or acceleration value displayed in the video image is difficult to reflect the impact force of the waves on local hull components or the crew's body.
[0005] Therefore, there is a need in the art for a system, method, apparatus for providing video images, and an operation method for a target object to enable the viewers of the system for providing video images to have a better immersive experience and experience the forces received by the target object and the operator in the video images. Summary of the Invention
[0006] The object of the present invention is to provide a system for providing video images.
[0007] The object of the present invention is also to provide a method for providing video images.
[0008] The object of the present invention is also to provide a computer program product.
[0009] The object of the present invention is also to provide an apparatus for providing video images.
[0010] The object of the present invention is also to provide a method for operating a target object.
[0011] A system for providing a video picture according to a first aspect of the present invention includes: a target object, the target object including a photographed area, and the video picture of the photographed area being configured to be displayed within the video picture; a picture photographing device for photographing the video picture of the photographed area; a display device for displaying the video picture of the photographed area; an accessory provided in the photographed area of the target object, the accessory including a flexible body, one end of the flexible body being a fixed end fixedly relative to the target object, and the other end being a movable end; wherein, when the target object is subjected to a force, the movable end of the flexible body moves in the same direction as the direction of the force relative to the fixed end and drives the flexible body to deform, and the deformation of the flexible body can be displayed within the video picture in the photographed area of the target object.
[0012] In the solutions introduced in the above embodiments, through the provision of the accessory with a flexible body, when the target object is subjected to a force, such as during rapid acceleration, rapid deceleration, and turning, or when the local area where the accessory is installed is impacted by water droplets or foreign objects from the outside, the flexible body can deform similarly to a human being under force and be displayed within the video picture, enabling the viewers of the video picture to intuitively feel the force conditions of the operator corresponding to the target object, such as a racing driver, and providing a better immersive experience for the viewers of the video picture.
[0013] In one or more embodiments of the system, a head member is provided at the movable end of the accessory, the volume of the head member being larger than that of the flexible body; a base is further provided on the accessory, the base being used for fixedly connecting with the target object, and the fixed end of the flexible body being fixed to the base.
[0014] In one or more embodiments of the system, the flexible body is in a tubular shape, and the head member has shapes including spherical, columnar, and conical; a grating printing layer is provided on the surface of the head member.
[0015] In one or more embodiments of the system, the accessory is provided in the central part of the photographed area within the video picture; and / or the moving range of the movable end of the accessory within the video picture is 40%-70% of the range of the photographed area of the target object.
[0016] A method for providing a video image according to a second aspect of the present invention includes: providing a target object, an image capturing device, and an accessory; the target object includes a captured area, and the video image of the captured area is configured to be displayed within the video image, and the image capturing device is used to capture the video image of the captured area in real time; the accessory includes a flexible body, one end of the flexible body is a fixed end, which is relatively fixed to the target object, and the other end is a movable end; providing a display device for displaying the video image, and the content of the video image includes: when the target object is subjected to a force, the movable end of the flexible body moves in the same direction as the direction of the force relative to the fixed end and drives the flexible body to deform.
[0017] A method for providing a video image according to a third aspect of the present invention includes: receiving a video image signal of a captured area of a target object captured by an image capturing device, where the accessory includes a flexible body, one end of the flexible body is a fixed end, and the other end is a movable end;
[0018] Outputting the video image signal to a display device;
[0019] The content of the video image includes: when the target object is subjected to a force, the movable end of the flexible body moves in the same direction as the direction of the force relative to the fixed end and drives the flexible body to deform; or
[0020] Receiving a video image signal of a captured area of a target object captured by an image capturing device, where the accessory includes a flexible body, one end of the flexible body is a fixed end, and the other end is a movable end;
[0021] Outputting the video image signal to a display device;
[0022] The content of the video image includes: when the target object is subjected to a force, the movable end of the flexible body moves in the same direction as the direction of the force relative to the fixed end and drives the flexible body to deform.
[0023] A computer program product according to a fourth aspect of the present invention includes a computer program, and when the computer program is executed by a processor, the following steps are implemented: adding an accessory to a target object in a video image, the accessory includes a flexible body, and the accessory is configured that when the target object is subjected to a force, according to the force, one end of the flexible body is a fixed end, and the other end is a movable end; the movable end of the flexible body moves in the same direction as the direction of the force relative to the fixed end and drives the flexible body to deform.
[0024] A method for operating a target object according to a fifth aspect of the present invention includes:
[0025] The video picture provided by the method for providing a video picture according to the second or third aspect and displayed by a display device;
[0026] Operate the target object according to the video picture.
[0027] A device for providing a video picture according to the sixth aspect of the present invention includes: an accessory for the system as described in the first aspect, or further includes a target object as described in the first aspect, or further includes a picture shooting device as described in the first aspect; or, includes a target object as described in the first aspect, and the target object includes an accessory mounting portion and a picture shooting device mounting portion.
[0028] In one or more embodiments of the device, the target object includes a car model and an aircraft model. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] The above and other features, properties and advantages of the present invention will become more apparent from the following description in conjunction with the drawings and embodiments, where:
[0030] Figure 1 Is an image of an existing racing car video picture.
[0031] Figure 2 Is a schematic block diagram of the structure of a system for providing a video picture according to an embodiment.
[0032] Figures 3A to 3D Is a schematic diagram of the structure of different embodiments of an accessory of a system for providing a video picture and the corresponding video picture.
[0033] Figure 4 Is a schematic diagram of the structure of a part of the device of a system for providing a video picture according to an embodiment.
[0034] Figures 5A to 5D Is a photo of a method for operating a target object according to an embodiment.
[0035] REFERENCE SIGNS:
[0036] 1 - Target object
[0037] 11 - Shooting area
[0038] 2 - Picture shooting device
[0039] 3 - Display device
[0040] 4 - Accessory
[0041] 41 - Flexible body
[0042] 42 - Head component
[0043] 421 - Grating printing layer
[0044] 43 - Base
[0045] 5 - Server device
[0046] 100 - Operator
[0047] 200 - Video picture. Detailed implementation manners
[0048] The embodiments of the technical solution of the present application will be described in detail below with reference to the accompanying drawings. The following embodiments are only used to illustrate the technical solution of the present application more clearly, so they are only examples and cannot be used to limit the protection scope of the present application.
[0049] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those skilled in the technical field to which this application belongs; the terms used herein are only for the purpose of describing specific embodiments and are not intended to limit this application; the terms "including" and "having" and any variations thereof in the specification and claims of this application and the above - mentioned drawings are intended to cover non - exclusive inclusion.
[0050] In the description of the embodiments of this application, technical terms such as "first" and "second" are only used to distinguish different objects and cannot be understood as indicating or implying relative importance or implicitly indicating the quantity, specific order or primary - secondary relationship of the indicated technical features. In the description of the embodiments of this application, "a plurality of" means more than two unless otherwise specifically defined.
[0051] Referring to "embodiments" herein means that the specific features, structures or characteristics described in connection with the embodiments can be included in at least one embodiment of this application. The phrase appears in various places in the specification and does not necessarily refer to the same embodiment, nor is it an independent or alternative embodiment mutually exclusive with other embodiments. Those skilled in the art understand explicitly and implicitly that the embodiments described herein can be combined with other embodiments.
[0052] In the description of the embodiments of this application, technical terms such as "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc. indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the embodiments of this application and simplifying the description, and does not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the embodiments of this application.
[0053] In the description of the embodiments of the present application, unless otherwise clearly specified and limited, technical terms such as "installation", "connection", "connection", "fixation", etc. should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral body; it can also be a mechanical connection. For those of ordinary skill in the art, the specific meanings of the above terms in the embodiments of the present application can be understood according to specific situations.
[0054] In the following embodiments, the system for providing video images is introduced by taking the operation of a racing car model as an example, that is, the target object can be a racing car model, but not limited thereto. The target object can be other things. Any scenario that can improve the immersive experience of the viewer of the video image regarding the force-bearing situation of the target object in the image is applicable to the technical solution of the present application. For example, the operation of a model aircraft, or the production of videos of real racing cars, sailboats, etc. As long as it can improve the immersive experience of the viewer regarding the force-bearing situation in the video image, it is applicable to this case.
[0055] Reference Figure 2 As shown, in some embodiments, the system 10 for providing video images may include: a target object 1, an image capturing device 2, a display device 3, and an accessory 4.
[0056] The target object 1 takes a racing car model as an example in the embodiment, but not limited thereto. For example, it can also be a real racing car, or a model aircraft, etc. The target object 1 may include a captured area 11, and the video image of the captured area 11 is configured to be displayed within the video image. For example, for a racing car model, as Figures 4 to 5D shown, the captured area 11 may be an area similar to the first-person perspective of the driver during a racing car broadcast, that is, the front area corresponding to the racing car, and may include areas such as the cockpit and / or the front wheels of the racing car model.
[0057] The image capturing device 2 can be used to capture the video image of the captured area 11. Specifically, it can be a common small camera device, and its position can be, for example, Figure 4 as shown, located in the middle of the racing car model, but not limited thereto, as long as it can achieve appropriate image clarity and composition in the video image. For the specific structure of the camera, reference can be made to common small cameras in the prior art, and details are not described here.
[0058] The display device 3 is used to display the video image of the captured area 11. The specific form of the display device 3 can be a physical display screen, such as an LCD screen integrated in a mobile phone, a tablet computer, a PC, that is, an LCD screen such as LED, OLED, QLED, etc., or it can also be the display screen of a VR\AR\MR device, but not limited thereto. For example, it can also be a projection screen, such as being projected to a specified area through a projection device, and all are not limited thereto.
[0059] Reference Figure 2 As shown, the method of transmitting the video frame signal captured by the frame capturing device 2 to the display device 3 for display can be, for example Figure 4 As shown, an antenna 12 is provided on the racing car model that is the target object 1. The antenna can transmit the video frame signal to the receiving end of the display device 3 through wireless transmission methods such as WiFi or 4G / 5G / 6G. For another example, referring to the existing television broadcast method, a server device 5 can be set up to receive the video frame data of the frame capturing device 2 and output it to the display device 3. The specific signal propagation methods can all refer to the solutions in the prior art and will not be elaborated here. In addition, the server device 5 can also be devices such as a server or a router that forms a local area network with the display device 3 and the frame capturing device 2. It can be understood that, as Figure 2 As shown, the frame capturing device 2 and the display device 3 can also directly communicate for data transmission
[0060] Appendix 4 is provided in the captured area 11 of the target object 1. Appendix 4 includes a flexible body 41. One end of the flexible body 41 is a fixed end, which is fixedly relative to the target object 1, and the other end is a mobile end. The shape of the flexible body 41 can be the tubular shape shown in the figure. Here, the "appendix" means that it is a component specifically used to enhance the immersive experience of the viewer of the video frame, rather than a part for realizing the inherent functions of the target object 1 itself. For example, for a racing car model as the target object, the role of appendix 4 is specifically used to enhance the immersive experience of the viewer of the video frame, rather than a component for the driving competition function of the racing car model itself. The flexible body 41 can show the action of external force through its own deformation. The deformation amplitude after the action of external force is controlled by its softness, length, plasticity degree, etc. Its bent flexible body 41 represents the state of the force-receiving body when it is acted upon by an external force. When there is no external force or the external force is very small, the flexible body 41 is in a nearly straight state. That is, the mobile end of the flexible body 41 can rotate or swing relative to the fixed end to reflect the force, for example Figures 3A to 3D As shown, it swings in the left-right direction or the front-back direction in the video frame 200 to reflect the force condition
[0061] As Figures 3A to 5DAs shown, the function of the attachment 4 is that when a force acts on the target object 1, the mobile end of the flexible body 41 moves in the same direction as the force relative to the fixed end and drives the flexible body 41 to deform. The deformation of the flexible body 41 can be displayed in the video picture in the photographed area 11 of the target object 1. In the video picture, at this time, the photographed area 11 of the target object 1 itself is approximately rigid and will not move or deform with the force. For example, the body of a vehicle generally does not deform in the picture. Therefore, it is necessary to use the flexible body 41 to reflect the force condition.
[0062] It can be understood that the beneficial effect of adopting the solution introduced in the above embodiment is that by setting an attachment with a flexible body, when the target object is under force, such as during rapid acceleration, rapid deceleration, and turning, or when the local part where the attachment is installed is impacted by external water droplets or foreign objects, the flexible body can deform similarly to a human being under force and be displayed in the video picture, enabling the viewers of the video picture to intuitively feel the force condition of the operator corresponding to the target object, such as a racing driver. This allows the viewers of the video picture to have a better immersive experience.
[0063] The natural science principle for achieving the beneficial effect is that since there are "mirror neuron" cells in the brain, when an operator is engaged in something, they will instinctively make an immersive reaction. By setting to display the flexible body in the picture, the target object in the picture is generally rigid and it is difficult to reflect the influence of the force in the video picture after being under force. By setting the flexible body, it enables the viewers of the video picture to immerse themselves in the deformation and movement of the flexible body after being under force, thereby enhancing the immersive experience.
[0064] Preferably, referring to Figures 3A to 3D As shown, in some embodiments, the structure of the attachment 4 can also be that the structure of the flexible body 41 can be that a head component 42 is provided at the mobile end of the attachment 4, and the volume of the head component 42 is larger than that of the flexible body 41. The head component 42 provides mass and volume for the external force to act on and have an impact. By controlling the mass, the acceleration is affected, such as the centrifugal force during rapid acceleration, rapid deceleration, and turning. By controlling the volume, the influence of the object force is affected, such as in scenarios like the blowing of air currents and the beating of waves.
[0065] In this way, the human form can be simulated through a simple structure, especially the state of the operator of the target object can be more intuitively reflected. For example, the state of a racing driver. The viewers of the video picture can intuitively map the impact on the driver's head through the movement of the head component at one end of the flexible body, thereby experiencing more realistically. The viewers of the above video picture can be not only viewers of sports events, but also operators of simulators or games, or operators of models, such as Figures 5A to 5DAs shown in the photo, the operator 100 can remotely control the target object 1 (racing car model) to drive on a real track, and the racing car model is provided with an accessory 4, so that the operator can obtain a more realistic racing driving experience through the video screen. Refer to Figures 3A to 3D As shown, the specific interface of the head part 42 can be spherical or cylindrical, but not limited thereto. For example, it can also be conical. As Figure 3A , Figure 3D As shown, the spherical shape Figure 3D is based on Figure 3A On the basis of this, a layer of foam plastic wrapping layer is added outside the head part 42, increasing the volume of the force-bearing body, improving the force of the fluid scouring on the force-bearing body and the probability of collision with external objects, making it easier for the accessory to capture the force-bearing scenario. As Figure 3A As shown, viewers of the video screen can intuitively feel the driving force, steering force and the force of the environmental content received by the target object 1. For example Figure 3A In the flexible body 41 of the accessory 4 in, it bends to the right. The force may come from the centrifugal force borne by the accessory 4 when the target object 1 turns left, or may come from the force brought by the airflow or water flow impacting from left to right on the target object 1 and other situations. As Figure 3B As shown, the shape of the head part 42 can be columnar, such as the shape of a cuboid. Compared with Figure 3A , Figure 3D the spherical head part 42 shown, using the columnar head part 42 can enhance the performance of the tilt angle of the head part 42 in the captured image, which is more conducive to observation. In Figure 3C In one or more embodiments shown, the head part 42 is Figure 3B As shown, the shape of a cuboid. On this basis, the surface has a lenticular printing layer 421, for example, a horizontal lenticular printing layer 421 is attached to the surface. The lenticular printing layer 421 allows the observer to see different printed images at different pitching angles, and the images change in pattern or color, so that when the head part 42 tilts forward and backward, different patterns and colors will appear on the surface. In this way, the performance of the forward and backward tilt of the head part 42 can be enhanced in the video screen, which is more conducive to observation.
[0066] In addition, refer to Figure 4As shown, in some embodiments, the accessory 4 may further be provided with a base 43, and the base 43 is used for fixedly connecting with the target object 1, and the fixed end of the flexible body 41 is fixed to the base 43. The base 43 can be fixedly connected with the target object 1, so as to adjust the position and angle of the accessory 4 relative to the picture shooting device 2. It can be understood that it is not necessary to provide the base 43 for the accessory 4. For example, it can be directly installed and connected to the target object 1 through the hollow flexible body 41. For example, the target object 1 may have a protrusion, and the accessory 4 can be fixed to the target object 1 by directly inserting the hollow flexible body 41 into the protrusion. Although the flexible body 41, the head member 42, and the base 43 are separately described above, it can be understood that the above three are not limited to the form of separate manufacturing and then reassembly. The above three can be integrally formed, and the base 43 can also be integrated into the target object 1 for manufacturing. For example, it is integrated into the shell of the racing car model, and all are not limited thereto.
[0067] Reference Figures 3A to 3D , and Figures 5A to 5D As shown, the setting position of the accessory 4 can be that the accessory 4 is set in the central part of the photographed area 11 within the video picture; and / or the moving range of the mobile end of the accessory 4 within the video picture is more than half of the range of the photographed area 11 of the target object 1. For example, in the illustration, the length of the flexible body 41 is more than half of the range of the photographed area 11 of the target object 1. In this way, a better immersive experience effect can be achieved, and at the same time, it is also avoided that the proportion of the accessory 4 in the picture is too large and affects the normal display of the target object 1 in the video picture.
[0068] Continuing from the above introduction, the method for providing a video picture of the present application can be:
[0069] From the perspective of the organizer of the event occurring in the target object, for example, for the venue provider of the racing car model control, such as the track venue provider, the method for providing a video picture of the present application can be:
[0070] Provide the target object 1, the picture shooting device 2, and the accessory 4; the target object 1 includes a photographed area 11, and the video picture of the photographed area 11 is configured to be displayed within the video picture. The picture shooting device 2 is used for shooting the video picture of the photographed area 11 in real time; the accessory 4 includes a flexible body 41, one end of the flexible body 41 is a fixed end, which is relatively fixed to the target object 1, and the other end is a mobile end. It can be understood that when providing the target object 1, taking the racing car model as an example, the ways of the picture shooting device 2 and the accessory 4 can be that the track venue provider allows the users of the track to prepare by themselves, one of the above three or a combination, or the track venue provider can provide the above three by itself, and the user only needs to arrive at the venue to carry out the racing car model competition activity, and all are not limited thereto.
[0071] A display device 3 is provided for displaying the video picture, and the content of the video picture includes: when the target object 1 is subjected to a force, the moving end of the flexible body 41 moves in the same direction as the direction of the force relative to the fixed end and drives the flexible body 41 to deform.
[0072] The effect can be referred to Figures 5A to 5D As shown, by using the method for providing a video picture introduced above, it can be combined with a method for remotely operating a racing car model, that is, the viewer of the video picture remotely operates the driving of the racing car model on the track at the same time. At this time, the display device 3 is integrated into Figures 5A to 5D the racing simulator in the photo shown. Through the video picture provided by the method for providing a video picture as claimed in claim 5 or 6 and displayed by the display device 3, the operator operates the target object through this video picture. Such a beneficial effect lies in that, due to the adoption of the above-mentioned method for providing a video picture, the operator can instantaneously, precisely and immersively experience various force conditions and sudden accidents encountered by the racing car tires, such as slight unevenness of the track, small stones on the track, debris from vehicle collisions, oil leakage, changes in the track, such as sand, grass and other objects brought out by other vehicles, and the feedback on the situation of a wet track, which cannot be provided by the current racing simulator and related racing game solutions. Operating the racing car model can well simulate a real racing scene.
[0073] In addition, as introduced above, the method for implementing the application to provide a video picture can be:
[0074] From the perspective of the content provider, such as the perspective of a racing car television broadcasting agency, in order to provide a better immersive experience, the method for implementing the application to provide a video picture can be:
[0075] Receiving the video picture signal of the photographed area 11 of the target object 1 with the attachment 4 photographed by the picture photographing device 2; the attachment 4 includes a flexible body 41, one end of the flexible body 41 is a fixed end, and the other end is a moving end;
[0076] Outputting the video picture signal to the display device 3;
[0077] The content of the video picture includes: when the target object 1 is subjected to a force, the moving end of the flexible body 41 moves in the same direction as the direction of the force relative to the fixed end and drives the flexible body 41 to deform. Alternatively, the attachment 4 may not be the above-mentioned physically placed object, but can be a later virtual synthesis in the picture, similar to adding the display of acceleration data in the video picture in the prior art, that is:
[0078] The photographed area 11 of the target object 1 captured by the receiving screen photographing device 2 has the video screen signal of the accessory 4; the accessory 4 includes a flexible body 41, one end of the flexible body 41 is a fixed end, and the other end is a mobile end;
[0079] Output the video screen signal to the display device 3;
[0080] The content of the video screen includes: when the target object 1 is subjected to a force, the mobile end of the flexible body 41 moves in the same direction as the direction of the force relative to the fixed end and drives the flexible body 41 to deform.
[0081] It can be understood that the present application also provides a computer program product, including a computer program, which when executed by a processor implements the following steps:
[0082] Add the accessory 4 to the target object 1 in the video screen. The accessory 4 includes a flexible body 41. The accessory 4 is configured such that when the target object 1 is subjected to a force, according to the force, one end of the flexible body 41 is a fixed end and the other end is a mobile end; the mobile end of the flexible body 41 moves in the same direction as the direction of the force relative to the fixed end and drives the flexible body 41 to deform.
[0083] With the above computer program, the beneficial effects are as introduced above, and a better immersive experience for the viewer of the video screen can be achieved.
[0084] As introduced above, the present application also provides a device for providing a video screen, as a dedicated component of the above-described system for providing a video screen. For example, the above-mentioned accessory 4, or the original target object 1 can be modified. For example, the accessory 4 is directly integrated into the racing car model, or on this basis, the screen photographing device 2 can also be integrated. Or an accessory installation part and a screen photographing device installation part for specifically installing the accessory 4 and the screen photographing device 2 are provided at the shell or other positions of the racing car model. It can be understood that the above dedicated components, as dedicated accessories for implementing the above-described video screen providing, also fall within the protection scope of the present application.
[0085] In summary, the beneficial effects of the system, method, device and operation method of the target object of the video screen introduced by the above embodiments include but are not limited to, through the setting of the accessory with a flexible body, when the target object is subjected to a force, such as during rapid acceleration, rapid deceleration and turning, or when the part corresponding to the installed accessory is impacted by external water droplets or foreign objects, the flexible body can deform like a person being subjected to a force and be displayed in the video screen, so that the viewer of the video screen can intuitively feel the force situation of the operator corresponding to the target object, such as the driver, and the viewer of the video screen has a better immersive experience.
[0086] Although the present invention is disclosed above in preferred embodiments, it is not intended to limit the present invention. Any person skilled in the art can make possible changes and modifications without departing from the spirit and scope of the present invention. Therefore, any modification, equivalent change, and modification made to the above embodiments based on the technical essence of the present invention without departing from the technical solution of the present invention shall fall within the protection scope defined by the claims of the present invention.
Claims
1. A system for providing video images, characterized in that, Comprising: A target object (1), the target object (1) including a photographed area (11), and a video image of the photographed area (11) being configured to be displayed within the video image; A picture shooting device (2) for shooting a video image of the photographed area (11); A display device (3) for displaying the video image of the photographed area (11); An accessory (4) provided in the photographed area (11) of the target object (1), the accessory (4) including a flexible body (41), one end of the flexible body (41) being a fixed end, being relatively fixed to the target object (1), and the other end being a movable end; Wherein, when the target object (1) is subjected to a force, the movable end of the flexible body (41) moves in the same direction as the direction of the force relative to the fixed end and drives the flexible body (41) to deform, and the deformation of the flexible body (41) can be displayed within the photographed area (11) of the target object (1) in the video image.
2. The system for providing video pictures according to claim 1, wherein A head member (42) is provided at the movable end of the accessory (4), the volume of the head member (42) being larger than that of the flexible body (41); a base (43) is further provided on the accessory (4), the base (43) being used for fixedly connecting with the target object (1), and the fixed end of the flexible body (41) being fixed to the base (43).
3. The system for providing a video picture according to claim 2, characterized in that, The flexible body (41) is in a tubular shape, and the shape of the head member (42) includes a spherical shape, a columnar shape, and a conical shape; a grating printing layer (421) is provided on the surface of the head member (42).
4. The system for providing video images according to claim 1, wherein, The accessory (4) is provided in the central part of the photographed area (11) within the video image; and / or the moving range of the movable end of the accessory (4) within the video image is 40%-70% of the range of the photographed area (11) of the target object (1).
5. A method for providing a video picture, characterized in that, The method includes: Providing a target object (1), a picture shooting device (2), and an accessory (4); the target object (1) includes a photographed area (11), a video image of the photographed area (11) being configured to be displayed within the video image, the picture shooting device (2) being used for shooting a video image of the photographed area (11) in real time; the accessory (4) includes a flexible body (41), one end of the flexible body (41) being a fixed end, being relatively fixed to the target object (1), and the other end being a movable end; Providing a display device (3) for displaying the video image, the content of the video image including: when the target object (1) is subjected to a force, the movable end of the flexible body (41) moves in the same direction as the direction of the force relative to the fixed end and drives the flexible body (41) to deform.
6. A method for providing a video picture, characterized in that, The method includes: Receiving a video image signal of the photographed area (11) of the target object (1) having the accessory (4) shot by the picture shooting device (2); the accessory (4) includes a flexible body (41), one end of the flexible body (41) being a fixed end and the other end being a movable end; Outputting the video image signal to the display device (3); The content of the video image includes: when the target object (1) is subjected to a force, the mobile end of the flexible body (41) moves in the same direction as the force relative to the fixed end and drives the flexible body (41) to deform; or Receiving a video image signal of the photographed area (11) of the target object (1) captured by the image capturing device (2); the accessory (4) includes a flexible body (41), one end of the flexible body (41) is a fixed end, and the other end is a mobile end; Outputting the video image signal to the display device (3); The content of the video image includes: when the target object (1) is subjected to a force, the mobile end of the flexible body (41) moves in the same direction as the force relative to the fixed end and drives the flexible body (41) to deform.
7. A computer program product, comprising a computer program, characterized in that, When the computer program is executed by a processor, the following steps are implemented: Adding an accessory (4) to the target object (1) in the video image, the accessory (4) includes a flexible body (41), and the accessory (4) is configured such that when the target object (1) is subjected to a force, according to the force, one end of the flexible body (41) is a fixed end, and the other end is a mobile end; the mobile end of the flexible body (41) moves in the same direction as the force relative to the fixed end and drives the flexible body (41) to deform.
8. A method for operating a target object, characterized in that, Including: The video image provided by the method of providing a video image as claimed in claim 5 or 6 and displayed by the display device (3); Operating the target object according to the video image.
9. A device for providing a video picture, characterized in that, Including an accessory (4) for the system as claimed in any one of claims 1-5, or further including a target object (1) for the system as claimed in any one of claims 1-5, or further including an image capturing device (2) for the system as claimed in any one of claims 1-5; or, including a target object (1) for the system as claimed in any one of claims 1-5, the target object (1) includes an accessory mounting portion and an image capturing device mounting portion.
10. The device according to claim 9, characterized in that, The target object (1) includes a car model and an aircraft model.