CN207399349U - Simulated underwater shoot on location system - Google Patents

Simulated underwater shoot on location system Download PDF

Info

Publication number
CN207399349U
CN207399349U CN201721198872.9U CN201721198872U CN207399349U CN 207399349 U CN207399349 U CN 207399349U CN 201721198872 U CN201721198872 U CN 201721198872U CN 207399349 U CN207399349 U CN 207399349U
Authority
CN
China
Prior art keywords
underwater
shoot
light
water tank
location system
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN201721198872.9U
Other languages
Chinese (zh)
Inventor
王凯
戴瑞
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Langtu Intelligent Technology Beijing Co ltd
Original Assignee
Dong Lan Vision Technology Development (beijing) Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Dong Lan Vision Technology Development (beijing) Co Ltd filed Critical Dong Lan Vision Technology Development (beijing) Co Ltd
Priority to CN201721198872.9U priority Critical patent/CN207399349U/en
Application granted granted Critical
Publication of CN207399349U publication Critical patent/CN207399349U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Studio Devices (AREA)
  • Structure And Mechanism Of Cameras (AREA)
  • Stroboscope Apparatuses (AREA)

Abstract

The utility model is related to camera work field, more particularly to a kind of simulated underwater shoot on location system, to solve the problem of that it is not high to be difficult to the unified picture quality of light for figure picture and background frame in the final image obtained by synthetic technology.Simulated underwater shoot on location system includes background cell, light unit, camera unit, control unit, water tank and water wave generator, and the water wave generator makes the aquatic products unboiled water ripple in water tank;The background cell includes the underwater simulation outdoor scene built;The light unit includes lighting device, and lighting device includes first light source, and the first light source irradiates the illumination come on ripples, is refracted to through the clear bottom of water tank in the underwater simulation outdoor scene built.The light direction of illumination of light direction of illumination, intensity and figure picture's image taking, intensity can accomplish unification in the final image picture of shooting, and the image quality of shooting is higher.

Description

Simulated underwater shoot on location system
Technical field
The utility model is related to camera work field, more particularly to a kind of simulated underwater shoot on location system.
Background technology
Image in camera work field, in order to obtain underwater scene is usually clicked through to actual photographeds such as sea, swimming pools Row underwater photograph technical, it is necessary to spend substantial amounts of human and material resources, financial resources and time on the road for arriving at actual photographed place.And And during underwater photograph technical is carried out, shooting personnel, reference object and camera are required for into underwater operation, lower water shooting It needs to carry out the safety prevention measure of shooting personnel and reference object and the waterproof measure of camera, select waterproof cameras or incites somebody to action Camera is enclosed in waterproof case and is shot, and therefore, underwater photograph technical is cumbersome, misgivings that are costly and having secure context.
In addition, the image of underwater scene in order to obtain, can also use underwater outdoor scene picture image and figure picture's image Synthetic technology, the shooting process of usual figure picture's image is in blueness or the underwater real screen image of green background Imitating In background light parameter and camera parameter to personage carry out shooting obtain figure picture's image, the bat of underwater outdoor scene picture image The process of taking the photograph is to arrive at the acquisition of actual photographed place or existing underwater outdoor scene picture image, then again by underwater outdoor scene picture figure As carrying out later image processing with figure picture's image, the personage in figure picture's image is deducted, with underwater outdoor scene picture figure As synthesis, final image is formed.It is complicated for operation since final image needs artificially to be synthesized by two images.Meanwhile underwater outdoor scene The light direction of illumination of picture image shooting, the light direction of illumination of intensity and figure picture's image taking, intensity are difficult to Definitely consistent, figure picture is difficult to light unification, image matter with background frame in the final image obtained by synthetic technology Amount is not high.
Utility model content
The purpose of this utility model is to propose a kind of simulated underwater shoot on location system, to solve underwater outdoor scene picture figure As the light direction of illumination, the light direction of illumination of intensity and figure picture's image taking, intensity of shooting are difficult to absolute one It causes, figure picture is difficult to light unification with background frame in the final image obtained by synthetic technology, and picture quality is not high The problem of.
In order to solve the above-mentioned technical problem, the utility model employs following technical solution:
The utility model provides a kind of simulated underwater shoot on location system, single including background cell, light unit, camera shooting Member and control unit, wherein, it further includes:
Water tank, the water tank are arranged on above the background cell, and the water tank bottom is clear bottom;
Water wave generator, the water wave generator are fixed in the water tank, make the aquatic products unboiled water in the water tank Ripple;
The control terminal of described control unit is electrically connected with the water wave generator, and the water wave generator is controlled to work;
The background cell includes the underwater simulation outdoor scene built;
The light unit includes lighting device, and the lighting device includes first light source, and the first light source irradiates The illumination come is refracted to through the clear bottom of the water tank in the underwater simulation outdoor scene built on the ripples;
Described control unit has the camera parameter of the adjusting first light source lighting programmers and/or the camera unit Adjuster, described control unit have recorded the lighting programmers information and correspondence for the underwater simulation outdoor scene light built described in correspondence The camera parameter information of the underwater simulation outdoor scene light built, described control unit respectively with the light unit and described Camera unit is electrically connected.
Further, the water wave generator includes any one or more in water pump, mixer, wind turbine.
The water wave generator more rotary speed workings under the control of the control terminal of described control unit, make in the water tank Water generates the ripples of different fluctuating ranges.
Further, the background cell further includes wall;
The clear bottom of the water tank is to have the inclined-plane of angle with the wall metope, the scope of the angle at 45 degree extremely Between 70 degree;
The first light source irradiates the illumination come on the ripples, through the water tank clear bottom be refracted to it is described On wall.
The first light source is the light source that can be vertically moved up or down.
Preferably, the lighting device further includes secondary light source, and described control unit, which has, adjusts the secondary light source lamp The adjuster of optical parameter.
Preferably, the simulated underwater shoot on location system, further includes:
Stent, the stent include pedestal, the first support portion and the second support portion being arranged on the pedestal;
The camera unit is arranged on first support portion;
Described control unit is arranged on second support portion.
Wherein, there is idler wheel below the pedestal.
It is highly preferred that there is the control screen for controlling the light unit and camera unit in described control unit.
Wherein, described control unit is mobile phone, tablet computer or computer with integrated.
By above-mentioned technical proposal, technical solutions of the utility model provide simulated shoot on location system at least have under Row advantage:
In the technical solution that the utility model embodiment provides, the background list of the simulated underwater shoot on location system of proposition Member employs the underwater simulation outdoor scene built, the background frame that the underwater simulation outdoor scene simulation actual location built is found a view into Row is built, and the clear bottom that the underwater simulation outdoor scene combination first light source built is radiated on ripples through water tank is refracted to institute State ripples and light in underwater simulation outdoor scene, the pictured scene true to nature for having reproduced actual location and having found a view, the underwater simulation reality built Scape is shot with personage under the same light of light unit, for the prior art, is avoided underwater outdoor scene in the prior art and is drawn The light direction of illumination of face image taking, the light direction of illumination of intensity and figure picture's image taking, intensity are difficult to absolutely To it is consistent the technical issues of, also solve by synthetic technology obtain final image in figure picture be difficult to background frame The technical issues of light is unified, in embodiment provided by the utility model, light direction of illumination in the final image picture of shooting, The light direction of illumination of intensity and figure picture's image taking, intensity can accomplish unification, and the image quality of shooting is higher, meanwhile, The operating procedure of picture need not be synthesized the prior art middle and later periods, shooting efficiency can be improved.
In addition, in embodiment provided by the utility model, using the underwater simulation outdoor scene built, eliminate in the prior art The image of underwater scene in order to obtain carries out underwater photograph technical to actual photographeds places such as sea, swimming pools, with arriving at shoot on location It on the road of point, the human and material resources, financial resources and the time that are spent, cuts down expenses, improves work efficiency, in addition, using building Underwater simulation outdoor scene avoids the underwater operation situation of shooting personnel, reference object and camera, eliminates underwater operation and brings Secure context misgivings.
Above description is only the general introduction of technical solution of the present invention, in order to better understand the technological means of the present invention, And can be practiced according to the content of specification, below with the preferred embodiment of the utility model and coordinate attached drawing be described in detail such as Afterwards.
Description of the drawings
Attached drawing described herein is used to provide a further understanding of the present invention, and forms the part of the application, The schematic description and description of the utility model is not formed for explaining the utility model to the improper of the utility model It limits.In the accompanying drawings:
Fig. 1 is a kind of structural representation at the first visual angle of the simulated underwater shoot on location system of embodiment of the utility model Figure;
Fig. 2 is that a kind of the second visual angle part-structure of the simulated underwater shoot on location system of embodiment of the utility model shows It is intended to.
Specific embodiment
The utility model is described in further detail with reference to specific embodiment, but not as to the utility model It limits.
Referring to Fig. 1 and Fig. 2, the utility model embodiment provides a kind of simulated underwater shoot on location system, including background Unit 10, light unit 20, camera unit 30, control unit, water tank 40 and water wave generator 50.
For the water tank 40 for filling water, the water tank 40 is arranged on 10 top of background cell, the most bottom surface of water tank 40 away from The vertical height on ground could be provided as 2 meters, and the height is only a reference altitude provided in this embodiment, is not unique height Degree;40 bottom of water tank is clear bottom, the clear bottom include transparent glass, plastics etc. any one.
The water wave generator 50 is fixed in the water tank 40, and water wave generator 50 includes water pump, mixer, wind Any one or more in machine, mixer or water pump may be disposed at the water-bed portion of water tank or horizontal plane position, wind turbine are arranged at water Above the horizontal plane of case, dry to horizontal plane;The water wave generator 50 makes the aquatic products unboiled water ripple in the water tank 40, and simulation is dynamic The effect of state water.
The control terminal of described control unit is electrically connected with the water wave generator 50, controls 50 work of water wave generator Make, operator can control the running of water wave generator 50, easy to operate, work efficiency in the control terminal of control unit It is high.
The background cell 10 includes the underwater simulation outdoor scene 11 built, and the underwater simulation outdoor scene 11 built is simulation The background frame that actual location is found a view is built.
The light unit 20 includes lighting device, and the lighting device includes first light source 21, the first light source 21 The illumination come is irradiated on the ripples, the underwater simulation outdoor scene built is refracted to through the clear bottom of the water tank 40 On 11;
Described control unit has the camera ginseng for adjusting 21 lighting programmers of first light source and/or the camera unit 30 Several adjusters, described control unit have recorded it is corresponding described in the lighting programmers information of 11 light of underwater simulation outdoor scene built with And it is corresponding described in the camera parameter information of 11 light of underwater simulation outdoor scene built, described control unit respectively with the light list Member 20 and the camera unit 30 are electrically connected.
21 lighting programmers of first light source mainly include lamplight brightness power, light-illuminating direction, diaphragm size etc., institute Stating the camera parameter of camera unit 30 includes aperture, shutter, sensitivity, exposure compensating, focal length, resolution ratio etc..
The camera unit 30 includes video camera, and the video camera is one kind of the prior art, such as singly anti-high definition is taken the photograph Shadow machine.
In the technical solution that the utility model embodiment provides, the background list of the simulated underwater shoot on location system of proposition Member 10 employs the underwater simulation outdoor scene 11 built, and the underwater simulation outdoor scene 11 built is radiated at water with reference to first light source 21 Clear bottom on ripple through water tank 40 is refracted to ripples and light in the underwater simulation outdoor scene 11 built, true to nature to reproduce The pictured scene that actual location is found a view, the underwater simulation outdoor scene 11 built are clapped with personage under the same light of light unit 20 It takes the photograph, for the prior art, avoids light direction of illumination, intensity and the people of underwater outdoor scene picture image shooting in the prior art The light direction of illumination of object picture image shooting, intensity are difficult to the technical issues of definitely consistent, also solve by synthesizing skill Figure picture is difficult to the technical issues of light is unified with background frame in the final image that art obtains, and the utility model provides Embodiment in, in the final image picture of shooting light direction of illumination, intensity and figure picture's image taking light irradiation Direction, intensity can accomplish unification, and the image quality of shooting is higher, meanwhile, the prior art middle and later periods is not required to synthesize the behaviour of picture Make step, shooting efficiency can be improved.
In the utility model embodiment, the first light source 21 include incandescent lamp, LED light etc. any one.Described first Light source 21 is existed using the naked lamp that can be vertically moved up or down, the adjustable extent at 40 top of distance from bottom water tank of the first light source 21 Between 0.5 meter to 2 meters, the bright intensity of light source can be adjusted or by control unit by the distance of light source Adjuster is adjusted.So-called naked lamp is exactly to be not added with the attachmentes such as soft box, beam light cylinder, sheen umbrella, and the lamp of exclusive use is right herein The type of first light source 21 is not limited, more than a kind of simply selection provided in this embodiment, the effect of first light source 21 is exactly The illumination come will be irradiated on ripples, through clear bottom refraction in the underwater simulation outdoor scene 11 built, and then generate ripples Effect.
The water wave generator 50 more rotary speed workings under the control of the control terminal of described control unit, make the water tank 40 In water generate the ripples of different fluctuating ranges.The ripples of different fluctuating ranges can generate the underwater environment of different-effect, example Such as quiet underwater environment and surfy underwater environment, the simulation effect for making Dynamic Water is more true to nature, the choosing of underwater environment Select more diversity.
In the utility model embodiment, the background cell 10 further includes wall 12.
It is refracted in order to which first light source is made to irradiate the light come through the clear bottom of water tank 40 on wall 12, the water tank 40 clear bottom is the inclined-plane for having with 12 metope of wall angle α, and the scope of the angle α is between 45 degree to 70 degree.
When the underwater scene of simulated seawater, in order to which underwater simulation effect is more true to nature, the color of wall 12 can be selected Closer to the color of seawater, using blue background wall 12.
First light source irradiates the light come and is refracted to through the clear bottom of water tank 40 on wall 12, imitates the imaging of ripples Fruit becomes apparent from, and it is more true to nature that ripples combine the pictured scene that the underwater simulation outdoor scene 11 built makes the actual location of reproduction find a view.
In order to simulation underwater outdoor scene light closer to actual underwater outdoor scene light, the lighting device can also include the Two light sources 22, described control unit have the adjuster for adjusting 22 lighting programmers of secondary light source.
The lighting device includes secondary light source 22, diffuser plate and lamp bracket, and the light that the secondary light source 22 is sent passes through institute It states diffuser plate to issue, the lamp bracket includes at least one of console mode lamp bracket and suspension type lamp stand.It is in addition, more preferable in order to reach Optical effect, such as soften light, sheen device, such as screening cover, sheen can be set before the secondary light source 22 Paper, soft box, Reflection umbrella etc..At least one of light-focusing type lamps and lanterns and astigmatism type lamps and lanterns may be employed in the secondary light source 22, the LED light may be employed in two light sources 22, and LED light belongs to one kind of light-focusing type lamps and lanterns.Light is divided into master according to the modeling effect of light Light, auxiliary light, rim(ming) light, bias light, decorative light, effect light and scene light etc., the modeling effect of different light use different type Lamps and lanterns, different type lamps and lanterns, that is, light-focusing type lamps and lanterns or astigmatism type lamps and lanterns.
For the lighting demand of multiple angles, secondary light source 22 can be placed with the mutually interspersed setting of stage property, secondary light source 22 Position is depending on different scenes demand.
In order to facilitate shooting and controlling switch, the simulated underwater shoot on location system further includes stent 31, the branch Frame 31 includes pedestal, the first support portion and the second support portion being arranged on the pedestal, and the camera unit 30 is arranged on On first support portion, described control unit is arranged on second support portion.Shooting personnel can be while shooting The different demands of scene changes are controlled.It is moved in order to facilitate stent 31, there is idler wheel below the pedestal.
There is the control screen for controlling the light unit 20 and camera unit 30 in described control unit, specifically, Described control unit can be mobile phone, tablet computer or computer with integrated.That is, shooting personnel can be single by controlling Control screen in member makes choice and controls to underwater simulation scene, easy to operate to understand, function is concentrated, and improves work effect Rate.
In addition, using the underwater simulation outdoor scene 11 built, the image of underwater scene in order to obtain is eliminated in the prior art, Underwater photograph technical is carried out to actual photographeds places such as sea, swimming pools, on the road in shoot on location place is arrived at, the people that is spent It power, material resources, financial resources and time, cuts down expenses, work efficiency is improved, in addition, being avoided using the underwater simulation outdoor scene 11 built The underwater operation situation of shooting personnel, reference object and camera eliminate the misgivings for the secure context that underwater operation is brought.
Above example is only the exemplary embodiment of the utility model, is not used in limitation the utility model, this practicality is new The protection domain of type is defined by the claims.Those skilled in the art can be in the essence and protection domain of the utility model It is interior, various modifications or equivalent substitution are made to the utility model, this modification or equivalent substitution also should be regarded as new in this practicality In the protection domain of type.

Claims (10)

1. a kind of simulated underwater shoot on location system, including background cell, light unit, camera unit and control unit, It is characterized in that, it further includes:
Water tank, the water tank are arranged on above the background cell, and the water tank bottom is clear bottom;
Water wave generator, the water wave generator are fixed in the water tank, make the aquatic products unboiled water ripple in the water tank;
The control terminal of described control unit is electrically connected with the water wave generator, and the water wave generator is controlled to work;
The background cell includes the underwater simulation outdoor scene built;
The light unit includes lighting device, and the lighting device includes first light source, and the first light source irradiates what is come Illumination is refracted to through the clear bottom of the water tank in the underwater simulation outdoor scene built on the ripples;
Described control unit has the adjusting for the camera parameter for adjusting the first light source lighting programmers and/or the camera unit Device, described control unit are electrically connected respectively with the light unit and the camera unit.
2. simulated underwater shoot on location system according to claim 1, which is characterized in that
The water wave generator includes any one or more in water pump, mixer, wind turbine.
3. simulated underwater shoot on location system according to claim 2, which is characterized in that
The water wave generator more rotary speed workings under the control of the control terminal of described control unit, make the aquatic products in the water tank The ripples of raw different fluctuating ranges.
4. simulated underwater shoot on location system according to claim 1, which is characterized in that
The background cell further includes wall;
The clear bottom of the water tank is the inclined-plane for having with the wall metope angle, and the scope of the angle is at 45 degree to 70 degree Between;
The first light source irradiates the illumination come on the ripples, and the background is refracted to through the clear bottom of the water tank On wall.
5. simulated underwater shoot on location system according to claim 4, which is characterized in that
The first light source is the light source that can be vertically moved up or down.
6. simulated underwater shoot on location system according to claim 1, which is characterized in that
The lighting device further includes secondary light source, and described control unit has the adjusting for adjusting the secondary light source lighting programmers Device.
7. simulated underwater shoot on location system according to claim 1, which is characterized in that further include:
Stent, the stent include pedestal, the first support portion and the second support portion being arranged on the pedestal;
The camera unit is arranged on first support portion;
Described control unit is arranged on second support portion.
8. simulated underwater shoot on location system according to claim 7, which is characterized in that
There is idler wheel below the pedestal.
9. simulated underwater shoot on location system according to claim 1, which is characterized in that
There is the control screen for controlling the light unit and camera unit in described control unit.
10. simulated underwater shoot on location system according to claim 9, which is characterized in that
Described control unit is mobile phone, tablet computer or computer with integrated.
CN201721198872.9U 2017-09-18 2017-09-18 Simulated underwater shoot on location system Active CN207399349U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201721198872.9U CN207399349U (en) 2017-09-18 2017-09-18 Simulated underwater shoot on location system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201721198872.9U CN207399349U (en) 2017-09-18 2017-09-18 Simulated underwater shoot on location system

Publications (1)

Publication Number Publication Date
CN207399349U true CN207399349U (en) 2018-05-22

Family

ID=62404440

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201721198872.9U Active CN207399349U (en) 2017-09-18 2017-09-18 Simulated underwater shoot on location system

Country Status (1)

Country Link
CN (1) CN207399349U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112484769A (en) * 2020-11-24 2021-03-12 上海海洋大学 Underwater target visual recognition algorithm function test platform and test method

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112484769A (en) * 2020-11-24 2021-03-12 上海海洋大学 Underwater target visual recognition algorithm function test platform and test method

Similar Documents

Publication Publication Date Title
US11210839B2 (en) Photometric image processing
KR101594135B1 (en) Method and system for filming
CN106664767B (en) Lighting system for stadium
CN114364099B (en) Method for adjusting intelligent light equipment, robot and electronic equipment
US11526067B2 (en) Lighting assembly for producing realistic photo images
CN107003600A (en) Including the system for the multiple digital cameras for observing large scene
US20150369447A1 (en) Lighting arrangement and method for producing an lighting arrangement
CN110651303A (en) Portable chroma-key synthesis and lighting adjustment system
US10594995B2 (en) Image capture and display on a dome for chroma keying
CN207399349U (en) Simulated underwater shoot on location system
US10419688B2 (en) Illuminating a scene whose image is about to be taken
CN109618089A (en) Intelligentized shooting controller, Management Controller and image pickup method
JP2006285763A (en) Method and device for generating image without shadow for photographic subject, and white board used therefor
US1394797A (en) Method of and apparatus for producing pictures by projection
CN103905738B (en) High dynamic range images generate system and method
CN207399373U (en) Simulated shoot on location system
CN105262927A (en) FSM3D fabric high definition scanner and automatic control system thereof
Zhou et al. Light field projection for lighting reproduction
US10564518B2 (en) Environmental lighting system and method
CN110136239B (en) Method for enhancing illumination and reflection reality degree of virtual reality scene
RU2667346C1 (en) Method of image projection on the surface of real objects
US656769A (en) Art of producing photographic negatives.
CN216133283U (en) Lighting system for live broadcast room
JP6114774B2 (en) Imaging method and system
Dorsey Computer Graphics Techniques for Opera Lighting Design and Simulation

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant
TR01 Transfer of patent right

Effective date of registration: 20220923

Address after: Room 202, Unit 1, Building 1, Yard 19, Andri North Street, Dongcheng District, Beijing 100010

Patentee after: Li Yaosha

Address before: 100123 5a, 718 Cultural Park, No. 19, ganluyuan, Chaoyang District, Beijing

Patentee before: DONLANN VISION TECHNOLOGY DEVELOPMENT (BEIJING) CO.,LTD.

TR01 Transfer of patent right
TR01 Transfer of patent right

Effective date of registration: 20230216

Address after: 311, Unit 2, Floor 3, Building 2, Yard 1, Shengfang Road, Daxing District, Beijing 102600

Patentee after: Langtu Intelligent Technology (Beijing) Co.,Ltd.

Address before: Room 202, Unit 1, Building 1, Yard 19, Andri North Street, Dongcheng District, Beijing 100010

Patentee before: Li Yaosha

TR01 Transfer of patent right