WO2019119776A1 - 曲面内显led屏幕结合动感运动平台的观影装置及方式 - Google Patents

曲面内显led屏幕结合动感运动平台的观影装置及方式 Download PDF

Info

Publication number
WO2019119776A1
WO2019119776A1 PCT/CN2018/094595 CN2018094595W WO2019119776A1 WO 2019119776 A1 WO2019119776 A1 WO 2019119776A1 CN 2018094595 W CN2018094595 W CN 2018094595W WO 2019119776 A1 WO2019119776 A1 WO 2019119776A1
Authority
WO
WIPO (PCT)
Prior art keywords
led
curved surface
viewing
degree
led screen
Prior art date
Application number
PCT/CN2018/094595
Other languages
English (en)
French (fr)
Inventor
付恒生
陈德润
刘宏涛
汪淼
王吉川
王丹
Original Assignee
大连万达集团股份有限公司
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 大连万达集团股份有限公司 filed Critical 大连万达集团股份有限公司
Publication of WO2019119776A1 publication Critical patent/WO2019119776A1/zh

Links

Images

Classifications

    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63JDEVICES FOR THEATRES, CIRCUSES, OR THE LIKE; CONJURING APPLIANCES OR THE LIKE
    • A63J25/00Equipment specially adapted for cinemas

Definitions

  • the invention relates to a viewing device and a viewing mode, in particular to a novel flying viewing device and a viewing mode of a curved surface display LED screen combined with a multi-degree of freedom motion viewing platform.
  • the dynamic cinematic experience has become a must-have for theme parks. Specifically, the audience is sent to the screen, watching movies and other similar media, and then playing with the content of the video to generate some movements, to increase the feeling of tourists watching in the air, this viewing theater is called a flying theater or flying theater.
  • this viewing theater is called a flying theater or flying theater.
  • most of these theaters are composed of a viewing platform and a viewing screen. Since the viewing screen uses projection technology, the optical path in the projection technology will affect the viewer's viewing position only on the outside of the screen, and the distance from the screen needs to be sufficient. As a result, the viewer cannot penetrate the inside of the screen. Affects the effect of watching and interacting.
  • the object of the present invention is to provide a viewing device and a viewing mode of a curved surface display LED screen combined with a dynamic motion platform, which can realize the viewer to send the inside of the curved surface to display the LED screen, and closely watch the surface of the curved display in the LED screen. Films and other similar media produce a feeling of watching in the air.
  • the curved surface display LED screen of the present invention is combined with the moving picture platform of the motion movement platform, comprising a control unit, a playing unit, a communication unit, and further comprises a curved internal display LED screen for playing various movies, media or entertainment items and a multi-degree-of-freedom viewing platform that carries one or more combined actions of flipping, ascending, descending, tilting, rotating, and/or side shifting together;
  • the curved in-line LED screen has a concave arc for playback a face panel, and a semi-opening accommodating space is formed in the middle of the concave curved surface panel;
  • the multi-degree-of-freedom moving viewing platform is fixedly mounted on the opposite side of the curved surface of the LED screen, and from the curved surface
  • the center line of the LED display screen is symmetrically disposed on both sides, and the multi-degree-of-freedom movement viewing platform can perform corresponding flipping, ascending and descending with the content played in the curved LED display screen via the control of the control
  • the curved internal display LED screen comprises a hemispherical curtain and a hemispherical support for supporting the hemispherical curtain, the hemispherical support frame is laid by a galvanized wire tube with a diameter of 25 mm along a hemispherical curtain Solder fixed.
  • the hemispherical curtain is welded and fixed by a plurality of LED units in sequence, and all the LED units are divided into 110 parts by the outermost circle to the center of the circle according to the latitude and longitude division method, and the angle between each part and the center of the circle is 1.65 degrees, so that the outermost part is made.
  • the largest LED unit size is close to the conventional 288*240mm.
  • Each of the LED units includes a circuit board and an LED chip embedded on the circuit board, the arrangement of the LED chips on the circuit board is arranged in an oblique moment, and is a set of two LED chips. Staggered, and a through hole is formed in the circuit board between the LED chips.
  • the distance between the outermost contours of the two adjacent LED chips is 5 mm and is inclined at 45 degrees.
  • the through hole has a diameter of 1-1.6 mm.
  • the curved internal display LED screen and the multi-degree of freedom moving viewing platform are fixedly mounted in a building, and a control room is disposed on a rear side of the multi-degree-of-freedom moving viewing platform, and the control room is installed in the control room a control unit, a playing unit, the control unit and the playing unit are connected to the curved internal display LED screen via the communication unit embedded along the wall on both sides of the building, and the control unit is connected with multiple degrees of freedom via the communication unit Sports viewing platform.
  • a horse track extending to the top of the curved display LED screen is fixedly mounted on the top of the building, and a hook for fixing the multi-degree-of-freedom movement viewing platform is mounted on the horse track.
  • the viewing mode of the viewing device for the curved surface display LED screen combined with the dynamic motion platform is carried by the multi-degree-of-freedom movement viewing platform to enter the accommodating space formed by the concave curved surface of the LED screen in the curved surface.
  • the multi-degree-of-freedom moving viewing platform carries the viewer to perform flipping, ascending, descending, tilting, One or more combinations of actions in rotation and/or side shifting enable the viewer to have an immersive dynamic viewing experience.
  • the invention can put the motion platform into the screen cut surface, and solves the problem of optical path occlusion in the traditional viewing scheme.
  • the invention adopts the LED self-illumination technology, and the brightness can reach 2 to 4 times of the projection, which greatly improves the comfort of the viewing.
  • FIG. 1 is a top plan view showing a flying observation apparatus of the present invention.
  • Figure 2 is a side elevational view showing the structure of the flight observation apparatus of the present invention.
  • FIG. 3 is a schematic perspective view showing the multi-degree-of-freedom motion viewing platform of the present invention.
  • FIG. 4 is a front elevational view of the multi-degree-of-freedom motion viewing platform of the present invention.
  • Figure 5 is a side elevational view of the multi-degree of freedom motion viewing platform of the present invention.
  • FIG. 6 is a schematic structural view of a conventional LED display unit.
  • Fig. 7 is a schematic structural view of an LED display unit in the present invention.
  • the viewing device of the curved inner LED display screen combined with the dynamic motion platform of the present invention comprises a curved internal display LED screen 1 for playing various movies, media or entertainment projects and is used for driving the audience.
  • Multi-degree-of-freedom movement viewing platform 2 with one or more combined actions of flipping, ascending, descending, tilting, rotating and/or side shifting, combined installation of curved internal display LED screen 1 and multi-degree of freedom moving viewing platform 2 In the same building 3.
  • the multi-degree-of-freedom movement viewing platform 2 is fixedly mounted on the opposite side of the concave curved surface of the LED screen 1 in the curved surface, and the multi-degree-of-freedom moving viewing platform 2 can be extended into the curved surface to display the LED screen 1 Inside the concave curved surface, the concave curved surface panel of the LED screen 1 can be displayed close to the curved surface.
  • the curved surface display LED screen 1 includes a curved surface curtain 10 having a spherical shape, an arc shape and a hyperbolic shape, and a communication unit, a control unit and a playback unit communicably connected to the curved curtain 10.
  • the present invention is exemplified by a hemispherical curtain having a diameter of 20 meters and a height of 15.82 meters.
  • a hemispherical support frame 4 conforming to the shape of the hemispherical curtain is disposed behind the hemispherical curtain.
  • the hemispherical support frame 4 is welded by a galvanized wire tube having a diameter of 25 mm.
  • the first The galvanized wire tube is welded to form the hemispherical support frame 4, and then the TOP type LED unit 15 for forming a hemispherical curtain is welded on the hemispherical support frame 4 (CHIP type LED unit can also be used), and the hemispherical crucible is welded.
  • All the TOP type LED units 15 of the screen can be formed according to the warp and weft division method, specifically, the LED unit 15 is squared, and each square LED unit 15 is sequentially spliced one by one, and the size of each square LED unit is performed as follows, that is, In the splicing process, 110 points are equally divided into the center of the circle, and the angle between each part and the center of the circle is 1.65 degrees, so that the outermost largest LED unit 15 is close to the conventional 288*240 mm, and this latitude and longitude division method can be effectively used. Reduce the modular effect of the screen, the visual squeaky feeling is the weakest, the curved surface is the smoothest, and the playback and visual effects are the best.
  • the formation of the hemispherical curtain can also be formed by a triangular splicing method to form a hemispherical curtain similar to the surface of a soccer ball. Specifically, each LED unit is made into a triangle, and each triangular LED unit is sequentially spliced one by one.
  • the formation of the hemispherical curtain can also adopt a six-sided ball screen splicing method, in particular, each LED unit is formed into a hexagon shape, and then each hexagonal LED unit is sequentially spliced one by one.
  • the LED unit 15 for forming a hemispherical curtain includes a circuit board 16 and an LED chip 17 embedded on the circuit board 16, and the distribution of the LED chips 17 in the existing LED unit 15.
  • the arrangement is arranged in a matrix, as shown in Fig. 6.
  • the distance between the outermost contours of the two adjacent LED chips 17.1, 17.2 cannot exceed 6 mm.
  • the gap between the LED chips 17 in the circuit board 16 is too small to provide a vent hole.
  • the present invention changes the arrangement of the LED chips 17 on the circuit board 16 to an oblique moment arrangement, and is a staggered arrangement of two LED chips 17.1, 17.2, two adjacent LED chips 17.1, 17.2 outer contour
  • the distance between the farthest distance is 5mm
  • the distance between the outermost contours of the two adjacent LED chips 17.2 and 17.3 is also 5mm, and is inclined at 45 degrees.
  • a space is formed between the three LED chips 17.1, 17.2, 17.3, in which a through hole 18 having a diameter of 1 to 1.6 mm can be processed, so that a plurality of through holes can be formed on the circuit board 16 of the LED unit 15.
  • the through hole 18 is used to make the LED unit 15 have a function of transmitting sound, so that the entire display screen has a function of transmitting sound, and specifically, the sound behind the hemispherical curtain (display screen) can pass through the through hole 18. Pass to the front of the hemispherical curtain. Moreover, the heat dissipation problem of the LED chip 17 can be well solved by using the through hole 18, and the LED unit 15 can be assembled into a hemispherical curtain by the warp and weft division method because of the heat dissipation problem.
  • the curved internal display LED screen 1 is fixedly mounted on one end of the interior of the building 3, and the control room 6 is fixedly mounted on the opposite side of the concave curved surface of the LED screen 1 in the curved surface, and the control unit and the playback unit are disposed inside the control room 6
  • the control unit and the playing unit are connected to form all the TOP type LEDs of the curved internal display LED screen 1 through the communication wires 5 embedded along the wall on both sides of the building 3.
  • the curved surface display LED screen 1 displays various kinds according to the control unit and the playing unit. Movies, media, entertainment projects, preset aerial photography or CG (Computer Graphics) screens.
  • the control chamber 6 is located at the position of the hemispherical curtain centerline 7 and is symmetrically disposed along the centerline 7 to both sides.
  • the control unit simultaneously controls the complete sound system and lighting system installed inside the building.
  • the sound system and lighting system can be combined with the creative needs for unified control to form a more realistic flight experience. It is easy for a person skilled in the art to set up the sound system, the lighting system and the control unit according to the creative requirements, and therefore will not be described in detail.
  • a multi-degree-of-freedom movement viewing platform 2 is arranged between the control room 6 and the hemispherical curtain and symmetrically along the center line 7.
  • the multi-degree-of-freedom movement viewing platform 2 comprises a base 8 connected to the control room 6, such as As shown in FIG. 3, FIG. 4 and FIG. 5, a multi-degree of freedom moving mechanism 9 is fixedly mounted on the side of the top of the base 8 near the hemispherical curtain, and a plurality of seats are mounted on the top of the multi-degree of freedom moving mechanism 9. 11.
  • the control unit in the control room 6 simultaneously connects the multi-degree-of-freedom movement mechanism 9 of the multi-degree-of-freedom movement observation platform 2, and the multi-degree-of-freedom movement mechanism 9 can drive the entire seat 11 to realize the turning and rising together under the control of the control unit.
  • the multi-degree-of-freedom moving mechanism 9 adopts a commercially available mature product, and the specific structure and working principle are not described in detail, and the control unit can be based on the playing unit.
  • the playing content is pre-set with a specific motion mode, so that the content played in the LED screen 1 can be combined with the surface to enable the viewer to have an immersive dynamic viewing experience.
  • Two parallel horse tracks 12 are symmetrically arranged on the inner top of the building 3.
  • hooks 13 which can be moved along the horse track.
  • the hooks 13 are controlled by the control unit and can be used for multi-degree-of-freedom movement of the viewing platform 2
  • the multi-degree-of-freedom motion mechanism 9 performs position limitation.
  • the hook 13 can be used for multiple freedom.
  • the degree of motion mechanism 9 is positionally defined to further ensure the safety of the audience.
  • the hook 13 and the horse track 12 are commercially available mature products, and the structure and principle thereof will not be described in detail.
  • the novel flight observation device and method of the present invention can bring the viewer into the semi-open accommodating space 14 formed by the concave curved surface of the LED screen 1 in the curved surface, and can view the curved surface internal display LED at a close distance.
  • the content played on screen 1 interacts with it to experience different viewing effects, and the LED display screen on the curved surface directly has a sound-permeable function, which can reduce the display of LED screen 1 and multi-degree-of-freedom movement in the curved surface.
  • the acoustic device disposed between the platform 2 realizes the multi-degree-of-freedom movement viewing platform 2 to enter the curved inner surface of the LED screen 1 in the curved surface.

Landscapes

  • Illuminated Signs And Luminous Advertising (AREA)
  • Non-Portable Lighting Devices Or Systems Thereof (AREA)

Abstract

一种曲面内显LED屏幕结合动感运动平台的观影装置及观影方式,观影装置包括控制单元、播放单元、通信单元、曲面内显LED屏幕(1)和多自由度运动观影平台(2);曲面内显LED屏幕(1)具有用于播放的凹弧面面板,并在凹弧面面板中间形成有半开放的容置空间(14);多自由度运动观影平台(2)固定安装在曲面内显LED屏幕凹弧面的对面,且从曲面内显LED屏幕(1)的中心线往两侧对称设置,多自由度运动观影平台(2)配合曲面内显LED屏幕(1)中播放的内容执行各种动作;且多自由度运动观影平台(2)在控制单元的控制下能够延伸进入到曲面内显LED屏幕(1)的凹弧面形成的容置空间(14)内部。

Description

曲面内显LED屏幕结合动感运动平台的观影装置及方式 技术领域
本发明涉及一种观影装置及观影方式,具体地说,涉及一种曲面内显LED屏幕结合多自由度运动观影平台的新型飞行观影装置及观影方式。
背景技术
动感观影体验已成为主题公园必备的游乐项目。具体是将观众送入屏幕附近,观看影片等类似媒体,再配合影片播放内容产生一些动作,增加游客在空中观影的感受,这种观影影院称为飞行影院或飞翔影院。但此类影院大多由观影运动平台和观影屏幕组成,由于观影屏幕使用投影技术,投影技术中的光路将影响观众的观影位置只能位于屏幕外侧,且距离屏幕需要足够的距离,因此导致观众无法深入屏幕内部。影响了观影与互动的效果。
发明内容
本发明的目的在于提供一种曲面内显LED屏幕结合动感运动平台的观影装置及观影方式,可以实现将观众送入曲面内显LED屏幕内部,近距离观看曲面内显LED屏幕中播放的影片等类似媒体,产生在空中观影的感受。
本发明中的曲面内显LED屏幕结合动感运动平台的观影装置,包括控制单元、播放单元、通信单元,进一步包括有用于播放各种影片、媒体或娱乐项目的曲面内显LED屏幕和用于携带观众一起作翻转、上升、下降、倾斜、旋转和/或侧移中一种或一种以上组合动作的多自由度运动观影平台;所述曲面内显LED屏幕具有用于播放的凹弧面面板,并在凹弧面面板中间形成有半开放的容置空间;所述多自由度运动观影平台固定安装在所述曲面内显LED屏幕凹弧面的对面,且从所述曲面内显LED屏幕的中心线往两侧 对称设置,经由所述控制单元的控制,所述多自由度运动观影平台能够配合所述曲面内显LED屏幕中播放的内容执行相应的翻转、上升、下降、倾斜、旋转和/或侧移中一种或一种以上组合的动作;且所述多自由度运动观影平台在所述控制单元的控制下能够延伸进入到所述曲面内显LED屏幕的凹弧面形成的容置空间内部。
所述曲面内显LED屏幕包括有半球形穹幕和用于支撑所述半球形穹幕的半球形支撑架,所述半球形支撑架由直径为25mm的镀锌线管沿半球形穹幕敷设焊接固定。
所述半球形穹幕由大量的LED单元依次焊接固定而成,所有LED单元按经纬分割法,以最外圆向圆心等分110份,每份与圆心的夹角为1.65度,使得最外面最大的LED单元尺寸接近于常规的288*240mm。
每块所述LED单元包括有电路板和嵌设固定在电路板上的LED芯片,所述LED芯片在所述电路板上的排列为斜矩陈排列,并且是以两个LED芯片为一组的交错排列,并在所述LED芯片之间的电路板上开设有通孔。
两相邻所述LED芯片外轮廓最远之间的距离为5mm,且呈45度倾斜设置。
所述通孔的直径为1-1.6毫米。
所述曲面内显LED屏幕和多自由度运动观影平台相对的固定安装在一建筑物内,在所述多自由度运动观影平台的后侧设置有控制室,在所述控制室内安装有控制单元、播放单元,所述控制单元、播放单元经由沿所述建筑物两侧墙壁埋设的所述通信单元与所述曲面内显LED屏幕连接,同时所述控制单元经由通信单元连接多自由度运动观影平台。
在所述建筑物内顶部固定安装有延伸到所述曲面内显LED屏幕顶部的马道,在所述马道上安装有用于能对所述多自由度运动观影平台固定的挂钩。
本发明中用于曲面内显LED屏幕结合动感运动平台的观影装置的观影方式,由多自由度运动观影平台携带观众进入到曲面内显LED屏幕凹弧面形成的容置空间内部,近距离观看所述曲面内显LED屏幕中的播放内容,并配合所述曲面内显LED屏幕中播放的内容,所述多自由度运动观影平台携带观众一起执行翻转、上升、下降、倾斜、旋转和/或侧移中一种或一种以上组合的动作,使观众产生身临其境的动感观影体验。
本发明的优点:
本发明能将运动平台放入屏幕切面以内,解决了传统观影方案中光路遮挡问题。
本发明采用LED自发光技术,亮度可达到投影的2~4倍,极大提高了观影的舒适度。
附图说明
图1是本发明中飞行观影装置的俯视结构示意图。
图2是本发明中飞行观影装置的侧视结构示意图。
图3是本发明中多自由度运动观影平台的立体结构示意图。
图4是本发明中多自由度运动观影平台的主视示意图。
图5是本发明中多自由度运动观影平台的侧视示意图。
图6是现有LED显示屏单元的结构示意图。
图7是本发明中LED显示屏单元的结构示意图。
具体实施方式
下面将结合附图对本发明中的具体实施例作详细说明。
如图1和图2所示,本发明中曲面内显LED屏幕结合动感运动平台的观影装置包括有用于播放各种影片、媒体或娱乐项目的曲面内显LED屏幕1和用于驱动观众作翻转、上升、下降、倾斜、旋转和/或侧移中一种或一种以 上组合动作的多自由度运动观影平台2,曲面内显LED屏幕1和多自由度运动观影平台2组合安装在同一建筑物3内。在建筑物3内部,多自由度运动观影平台2固定安装在曲面内显LED屏幕1内凹弧面的对面,并且多自由度运动观影平台2可以延伸进入到曲面内显LED屏幕1的凹弧面内部,可以近距离的接近曲面内显LED屏幕1的凹弧面面板。
如图1和图2所示,曲面内显LED屏幕1包括有呈球型、弧型、双曲型的曲面穹幕10,与曲面穹幕10通信连接的通信单元、控制单元及播放单元。
本发明以半球形穹幕为例,该半球形穹幕的直径为20米,高度为15.82米。在半球形穹幕的后面设置有一个与半球形穹幕形状一致的半球形支撑架4,该半球形支撑架4由直径为25mm的镀锌线管焊接而成,实际建设过程中,先将镀锌线管焊接形成半球形支撑架4,再在半球形支撑架4上焊接固定用于形成半球形穹幕的TOP型LED单元15(也可以采用CHIP型LED单元),焊接形成半球形穹幕的所有TOP型LED单元15可以根据经纬分割法形成,具体是将LED单元15制成方形,再将每块方形LED单元15依次逐个拼接,每块方形的LED单元尺寸按以下方式进行,即拼接过程中以最外圆向圆心等分110份,每份与圆心的夹角为1.65度,使得最外面最大的LED单元15尺寸接近于常规的288*240mm,采用这种经纬分割法可以有效减少屏幕的模块化效应,视觉上的楞状感最弱,弧面最平滑,播放及视觉效果最好。
半球形穹幕的形成也可以采用三角形拼接方法,形成类似于足球表面的半球形穹幕,具体是将每一块LED单元制成三角形,再将每块三角形LED单元依次逐个拼接。半球形穹幕的形成还可以采用六面球屏拼接方法,具体是将每块LED单元制成六边形,再将每块呈六边形的LED单元依次逐个拼接。
如图6和图7所示,用于形成半球形穹幕的LED单元15包括有电路板16和嵌设固定在电路板16上的LED芯片17,现有LED单元15中LED芯片17的分 布与排列均为矩陈排列,如图6所示,为了确保LED显示屏在播放过程的视频的效果,两相邻LED芯片17.1、17.2外轮廓最远之间的距离不能超过6mm。而如此排列后,在电路板16中LED芯片17之间的空隙太小,无法设置透气孔。
为此,本发明将LED芯片17在电路板16上的排列改成斜矩陈排列,并且是以两个LED芯片17.1、17.2为一组的交错排列,两相邻LED芯片17.1、17.2外轮廓最远之间的距离为5mm,两相邻LED芯片17.2、17.3外轮廓最远之间的距离也为5mm,且呈45度倾斜设置。在三个LED芯片17.1、17.2、17.3之间形成一空间,在该空间内可以加工直径为1至1.6毫米的通孔18,如此可以在LED单元15的电路板16上加工出诸多个通孔18,利用该通孔18使LED单元15具有透过声音的功能,从而整个显示屏具有透过声音的功能,具体的说,在半球形穹幕(显示屏)后面的声音可以通过通孔18传到半球形穹幕的前面。并且利用通孔18可以很好的解决了LED芯片17的散热问题,也正因为散热问题的解决,才可以将LED单元15按经纬分割法组装成半球形穹幕。
曲面内显LED屏幕1固定安装在建筑物3内部的一端,在曲面内显LED屏幕1凹弧面的相对侧固定安装有控制室6,在控制室6内部设转置有控制单元和播放单元,控制单元和播放单元通过沿建筑物3两侧边墙壁埋设的通信导线5连接形成曲面内显LED屏幕1的所有TOP型LED,曲面内显LED屏幕1根据控制单元和播放单元显示播放各种影片、媒体、娱乐项目、预置的航拍或CG(Computer Graphics)画面。控制室6位于半球形穹幕中心线7的位置上,并沿该中心线7往两侧对称设置。控制单元同时对安装在建筑物内部的完整的音响系统、灯光系统进行控制,使用音响系统、灯光系统可以结合创意需要作统一控制,形成更真实的飞行感受。对于音响系统、灯光系统及控制单元对于本领域的技术人员来说,根据创 意需求加以设置,是容易实现的,因此不再详细说明。
在控制室6与半球形穹幕之间,并沿中心线7对称设置有多自由度运动观影平台2,该多自由度运动观影平台2包括有与控制室6连接的底座8,如图3、图4和图5所示,在底座8的顶部靠近半球形穹幕的一侧固定安装有多自由度运动机构9,在该多自由度运动机构9的顶部安装有多个座椅11,控制室6内的控制单元同时连接多自由度运动观影平台2的多自由度运动机构9,多自由度运动机构9在控制单元的控制下可以带动整个座椅11一起实现翻转、上升、下降、倾斜、旋转、侧移等其中一种或几种组合运动,多自由度运动机构9采用市售成熟产品,对于其具体的结构及工作原理不再详细说明,控制单元可以根据播放单元中播放内容预先设置具体的运动方式,从而可以结合曲面内显LED屏幕1中播放的内容,使观众产生身临其境的动感观影体验。
在建筑物3的内顶部对称设置有两道平行的马道12,在马道12上设置有可以沿马道移动的挂钩13,该挂钩13由控制单元控制,可以对多自由度运动观影平台2中多自由度运动机构9进行位置限定,当多自由度运动观影平台2带动观众进入到曲面内显LED屏幕1凹弧面形成的半开放容置空间14内部时,可以利用挂钩13对多自由度运动机构9作位置限定,进一步确保观众的安全。挂钩13和马道12采用市售成熟品,对其结构与原理不再详细说明。
综上所述,本发明中的新型飞行观影装置及方式,可以将观众带入曲面内显LED屏幕1凹弧面形成的半开放容置空间14内部,可以近距离的观看曲面内显LED屏幕1中播放的内容,并与之进行互动,体验不同的观影效果,并且曲面内显LED屏幕1直接具有透声的功能,可以减少在曲面内显LED屏幕1与多自由度运动观影平台2之间设置的音响设备,实现多自由度运动观影平台2进入到曲面内显LED屏幕1内凹弧面空间内目的。

Claims (9)

  1. 一种曲面内显LED屏幕结合动感运动平台的观影装置,包括控制单元、播放单元、通信单元,其特征在于,进一步包括有用于播放各种影片、媒体或娱乐项目的曲面内显LED屏幕和用于携带观众一起作翻转、上升、下降、倾斜、旋转和/或侧移中一种或一种以上组合动作的多自由度运动观影平台;所述曲面内显LED屏幕具有用于播放的凹弧面面板,并在凹弧面面板中间形成有半开放的容置空间;所述多自由度运动观影平台固定安装在所述曲面内显LED屏幕凹弧面的对面,且从所述曲面内显LED屏幕的中心线往两侧对称设置,经由所述控制单元的控制,所述多自由度运动观影平台能够配合所述曲面内显LED屏幕中播放的内容执行相应的翻转、上升、下降、倾斜、旋转和/或侧移中一种或一种以上组合的动作;且所述多自由度运动观影平台在所述控制单元的控制下能够延伸进入到所述曲面内显LED屏幕的凹弧面形成的容置空间内部。
  2. 根据权利要求1所述的新型飞行观影装置,其特征在于,所述曲面内显LED屏幕包括有半球形穹幕和用于支撑所述半球形穹幕的半球形支撑架,所述半球形支撑架由直径为25mm的镀锌线管沿半球形穹幕敷设焊接固定。
  3. 根据权利要求2所述的新型飞行观影装置,其特征在于,所述半球形穹幕由大量的LED单元依次焊接固定而成,所有LED单元按经纬分割法,以最外圆向圆心等分110份,每份与圆心的夹角为1.65度,使得最外面最大的LED单元尺寸接近于常规的288*240mm。
  4. 根据权利要求3所述的新型飞行观影装置,其特征在于,每块所述LED单元包括有电路板和嵌设固定在电路板上的LED芯片,所述LED芯片在所述电路板上的排列为斜矩陈排列,并且是以两个LED芯片为一组的交错排列,并在所述LED芯片之间的电路板上开设有通孔。
  5. 根据权利要求4所述的新型飞行观影装置,其特征在于,两相邻所述LED芯片外轮廓最远之间的距离为5mm,且呈45度倾斜设置。
  6. 根据权利要求4所述的新型飞行观影装置,其特征在于,所述通孔的直径为1-1.6毫米。
  7. 根据权利要求2所述的新型飞行观影装置,其特征在于,所述曲面内显LED屏幕和多自由度运动观影平台相对的固定安装在一建筑物内,在所述多自由度运动观影平台的后侧设置有控制室,在所述控制室内安装有控制单元、播放单元,所述控制单元、播放单元经由沿所述建筑物两侧墙壁埋设的所述通信单元与所述曲面内显LED屏幕连接,同时所述控制单元经由通信单元连接多自由度运动观影平台。
  8. 根据权利要求7所述的新型飞行观影装置,其特征在于,在所述建筑物内顶部固定安装有延伸到所述曲面内显LED屏幕顶部的马道,在所述马道上安装有用于能对所述多自由度运动观影平台固定的挂钩。
  9. 一种用于上述任意一项权利要求中所述曲面内显LED屏幕结合动感运动平台的观影装置的观影方式,由多自由度运动观影平台携带观众进入到曲面内显LED屏幕凹弧面形成的容置空间内部,近距离观看所述曲面内显LED屏幕中的播放内容,并配合所述曲面内显LED屏幕中播放的内容,所述多自由度运动观影平台携带观众一起执行翻转、上升、下降、倾斜、旋转和/或侧移中一种或一种以上组合的动作,使观众产生身临其境的动感观影体验。
PCT/CN2018/094595 2017-12-18 2018-07-05 曲面内显led屏幕结合动感运动平台的观影装置及方式 WO2019119776A1 (zh)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201721773311 2017-12-18
CN201721773311.7 2017-12-18

Publications (1)

Publication Number Publication Date
WO2019119776A1 true WO2019119776A1 (zh) 2019-06-27

Family

ID=62551234

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2018/094595 WO2019119776A1 (zh) 2017-12-18 2018-07-05 曲面内显led屏幕结合动感运动平台的观影装置及方式

Country Status (2)

Country Link
CN (2) CN207838330U (zh)
WO (1) WO2019119776A1 (zh)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111219574A (zh) * 2020-01-16 2020-06-02 江西海若智能家居有限公司 穹顶式led显示屏及其使用方法

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN207838330U (zh) * 2017-12-18 2018-09-11 大连万达集团股份有限公司 曲面内显led屏幕结合动感运动平台的观影装置
CN109102762B (zh) * 2018-09-25 2024-03-29 深圳市奥拓电子股份有限公司 Led复合灯、led显示模组及led显示屏
CN111298460B (zh) * 2020-03-13 2021-12-21 江苏时代演艺设备有限公司 一种平移舞台

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104623912A (zh) * 2015-02-03 2015-05-20 深圳华侨城文化旅游科技有限公司 一种循环式动感车观影系统
CN104870064A (zh) * 2012-10-26 2015-08-26 动力结构有限公司 飞行影院
CN204715810U (zh) * 2015-06-15 2015-10-21 深圳市维骏文化旅游科技有限公司 动感球幕剧场
CN206607917U (zh) * 2016-11-03 2017-11-03 黄辉 一种半球形动感影院系统
CN108176065A (zh) * 2017-12-18 2018-06-19 大连万达集团股份有限公司 曲面内显led屏幕结合动感运动平台的观影装置及方式

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN201930551U (zh) * 2011-01-24 2011-08-17 深圳市远望落星山科技有限公司 一种全景式三自由度平台视动体验系统
CN202306121U (zh) * 2011-08-29 2012-07-04 深圳市远望淦拓科技有限公司 一种led球幕装置
CN102915680B (zh) * 2012-01-13 2015-05-27 深圳市康硕展电子有限公司 一种球面led显示屏的像素排列结构
CN205805044U (zh) * 2016-06-08 2016-12-14 深圳市远望淦拓科技有限公司 一种嵌入式悬挂飞行影院系统

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104870064A (zh) * 2012-10-26 2015-08-26 动力结构有限公司 飞行影院
CN104623912A (zh) * 2015-02-03 2015-05-20 深圳华侨城文化旅游科技有限公司 一种循环式动感车观影系统
CN204715810U (zh) * 2015-06-15 2015-10-21 深圳市维骏文化旅游科技有限公司 动感球幕剧场
CN206607917U (zh) * 2016-11-03 2017-11-03 黄辉 一种半球形动感影院系统
CN108176065A (zh) * 2017-12-18 2018-06-19 大连万达集团股份有限公司 曲面内显led屏幕结合动感运动平台的观影装置及方式

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111219574A (zh) * 2020-01-16 2020-06-02 江西海若智能家居有限公司 穹顶式led显示屏及其使用方法

Also Published As

Publication number Publication date
CN207838330U (zh) 2018-09-11
CN108176065A (zh) 2018-06-19

Similar Documents

Publication Publication Date Title
WO2019119776A1 (zh) 曲面内显led屏幕结合动感运动平台的观影装置及方式
US10764544B2 (en) Robotically controlled entertainment elements
US10042244B2 (en) Performance system with multi-projection environment
CN105247150B (zh) 娱乐场馆及相关的系统/方法
US20010040671A1 (en) Large-audience, positionable imaging and display system for exhibiting panoramic imagery, and multimedia content featuring a circularity of action
CN206518893U (zh) 观众互动全息舞台系统
US11428952B2 (en) Holographic display device and method of use
CN109246404B (zh) 包括方向可变的观众坐位的多投影系统和方法
CN206521965U (zh) 主持人互动全息舞台系统
KR102163601B1 (ko) 4d 상영관 시스템
CN105629654B (zh) 一种以增强现实为基础的新型梦幻剧场
CN201765431U (zh) 流线影像环形投影及显示系统
US10397562B2 (en) 4D platform for home use and 4D system for home use
CN209855308U (zh) 飞行影院系统
CN203490454U (zh) 一种环幕立体影院系统
TWI816220B (zh) 沉浸式led顯示劇院系統
CN207133575U (zh) 一种场景模型幻影成像系统
US10419733B2 (en) Systems for creating and displaying real-time interactive virtual stage imagery using three dimensional stereoscopic projections
CN219864306U (zh) 一种玻璃廊桥悬空剧场
CN108766315A (zh) 双投影三维立体成像数字沙盘的投影控制设备及其方法
TWI830084B (zh) 沉浸式劇院系統
CN213183527U (zh) 一种适用于科普太阳系知识的互动设备
KR102522969B1 (ko) 실감형 놀이기구 및 실감형 콘텐츠를 이용한 체험형 영상제공 시스템
WO2021214881A1 (ja) 空中像表示装置および空中像表示方法
US11683456B2 (en) Robotically controlled display

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 18890781

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

32PN Ep: public notification in the ep bulletin as address of the adressee cannot be established

Free format text: NOTING OF LOSS OF RIGHTS PURSUANT TO RULE 112(1) EPC (EPO FORM 1205A DATED 05/10/2020)

122 Ep: pct application non-entry in european phase

Ref document number: 18890781

Country of ref document: EP

Kind code of ref document: A1