CN205787579U - 270 degree of phantom imaging systems based on gesture interaction - Google Patents
270 degree of phantom imaging systems based on gesture interaction Download PDFInfo
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Abstract
本实用新型的基于手势交互的270度幻影成像系统包括视觉手势传感器、计算机、玻璃罩、射灯、外壳和显示器;所述视觉手势传感器通过usb数据线与所述计算机连接;所述计算机通过HDMI线与所述显示器连接,所述显示器跟随所述HDMI线传输的数据同步显示三维模型;所述显示器置于所述外壳上面;所述射灯和玻璃罩置于所述外壳内,所述玻璃罩罩住所述射灯;所述视觉手势传感器置于所述显示器前端并居中,通过手对着所述视觉手势传感器进行操作实现交换功能;所述计算机与所述显示器位于同一水平线上。本实用新型的基于手势交互的270度幻影成像系统通过幻影成像技术实现3D效果,且可与客户进行交互,根据客户需求进行操作。
The 270-degree phantom imaging system based on gesture interaction of the utility model includes a visual gesture sensor, a computer, a glass cover, a spotlight, a shell and a display; the visual gesture sensor is connected to the computer through a usb data line; the computer is connected to the computer through HDMI The cable is connected to the display, and the display synchronously displays the three-dimensional model following the data transmitted by the HDMI cable; the display is placed on the casing; the spotlight and the glass cover are placed in the casing, and the glass The cover covers the spotlight; the visual gesture sensor is placed at the front of the display and centered, and the exchange function is realized by operating the hand on the visual gesture sensor; the computer and the display are located on the same horizontal line. The 270-degree phantom imaging system based on gesture interaction of the utility model realizes 3D effects through phantom imaging technology, and can interact with customers and operate according to customer needs.
Description
技术领域 technical field
本实用新型涉及展览展示和成像技术领域,具体涉及一种基于手势交互的270度幻影成像系统。 The utility model relates to the technical field of exhibition display and imaging, in particular to a 270-degree phantom imaging system based on gesture interaction.
背景技术 Background technique
3D是三维图形。在计算机里显示3d图形,相当于就是在平面中显示三维图形,跟现实世界里的相比没有真实的空间距离,只有真实的视觉效果。从计算机里看到的只是看起来很像真实的世界,其实非也,因此在计算机所显示的3d图形,就是让人眼看上就像真的一样。人眼有一个特性就是近大远小,就会形成立体感。 3D is three-dimensional graphics. Displaying 3D graphics in a computer is equivalent to displaying 3D graphics on a plane. Compared with the real world, there is no real spatial distance, only real visual effects. What you see from the computer only looks like the real world, but it is not. Therefore, the 3D graphics displayed on the computer look real to people. One of the characteristics of the human eye is that it is larger when it is near and smaller than when it is far, so it will form a three-dimensional effect.
幻影成像技术,也称为空中成像技术,它能够将展示的产品360度的旋转,能够在20多厘米的高度成像。他的原理很简单,主要利用镀膜玻璃对光的折射和反射原理,通过这些原理能够在成像空间投影虚像,然后精调三个不同面的成像融合,从而能够实现所谓的“实像”,从而让人感觉所在的物体就在其中。幻影成像的优点在于立体特性很炫而且成像比较逼真,并且我们在观看的时候不用带3D眼镜就可以达到一种非常真实的感觉。跟实物模型来讲实现了映像与实物的完美融合,从而能够吸引人们更大的兴趣。 Phantom imaging technology, also known as aerial imaging technology, can rotate the displayed products 360 degrees and image them at a height of more than 20 centimeters. His principle is very simple, mainly using the principle of refraction and reflection of coated glass to light, through these principles, a virtual image can be projected in the imaging space, and then the imaging fusion of three different surfaces can be fine-tuned, so that the so-called "real image" can be realized, so that The object where people feel is in it. The advantage of phantom imaging is that the three-dimensional characteristics are dazzling and the imaging is more realistic, and we can achieve a very real feeling without wearing 3D glasses when watching. Compared with the physical model, it realizes the perfect integration of the image and the real object, which can attract people's greater interest.
实用新型内容 Utility model content
本实用新型的目的在于提供一种基于手势交互的270度幻影成像系统,通过幻影成像技术实现3D效果,且可与客户进行交互,根据客户需求进行操作。 The purpose of this utility model is to provide a 270-degree phantom imaging system based on gesture interaction, which can realize 3D effects through phantom imaging technology, and can interact with customers and operate according to customer needs.
为了达到上述的目的,本实用新型提供一种基于手势交互的270度幻影成像系统,包括视觉手势传感器、计算机、玻璃罩、射灯、外壳和显示器;所述视觉手势传感器通过usb数据线与所述计算机连接;所述计算机通过HDMI线与所述显示器连接,所述显示器跟随所述HDMI线传输的数据同步显示三维模型;所述显示器置于所述外壳上面;所述射灯和玻璃罩置于所述外壳内,所述玻璃罩罩住所述射灯;所述视觉手势传感器置于所述显示器前端并居中,通过手对着所述视觉手势传感器进行操作实现交换功能;所述计算机与所述显示器位于同一水平线上。 In order to achieve the above object, the utility model provides a 270-degree phantom imaging system based on gesture interaction, including a visual gesture sensor, a computer, a glass cover, a spotlight, a casing and a display; The computer is connected; the computer is connected with the display through an HDMI line, and the display follows the data transmitted by the HDMI line to display the three-dimensional model synchronously; the display is placed on the casing; the spotlight and the glass cover are placed In the housing, the glass cover covers the spotlight; the visual gesture sensor is placed in the front of the display and in the center, and the exchange function is realized by operating the hand on the visual gesture sensor; the computer and the The above displays are located on the same horizontal line.
上述基于手势交互的270度幻影成像系统,其中,所述玻璃罩呈梯形塔台状。 In the 270-degree phantom imaging system based on gesture interaction, the glass cover is in the shape of a trapezoidal tower.
上述基于手势交互的270度幻影成像系统,其中,所述外壳为一端开口的矩形框。 In the 270-degree phantom imaging system based on gesture interaction, the housing is a rectangular frame with one end open.
上述基于手势交互的270度幻影成像系统,其中,所述基于手势交互的270度幻影成像系统还包括音响,所述音响置于所述外壳的后箱中。 The above-mentioned 270-degree phantom imaging system based on gesture interaction, wherein, the 270-degree phantom imaging system based on gesture interaction further includes a sound, and the sound is placed in the rear box of the housing.
上述基于手势交互的270度幻影成像系统,其中,所述基于手势交互的270度幻影成像系统还包括电源,所述电源置于所述外壳的后箱中,为所述射灯、音响、视觉手势传感器、计算机和显示器供电。 The above-mentioned 270-degree phantom imaging system based on gesture interaction, wherein, the 270-degree phantom imaging system based on gesture interaction also includes a power supply, and the power supply is placed in the back box of the shell to provide power for the spotlights, audio, and vision. The gesture sensor, computer and display are powered.
本实用新型的基于手势交互的270度幻影成像系统通过幻影成像技术实现3D效果,可裸眼观看三维示图,通过视觉手势传感器可与客户进行交互,根据客户需求进行操作。 The 270-degree phantom imaging system based on gesture interaction of the utility model realizes 3D effects through phantom imaging technology, can watch three-dimensional diagrams with naked eyes, can interact with customers through visual gesture sensors, and operate according to customer needs.
附图说明 Description of drawings
本实用新型的基于手势交互的270度幻影成像系统由以下的实施例及附图给出。 The 270-degree phantom imaging system based on gesture interaction of the present utility model is provided by the following embodiments and accompanying drawings.
图1是本实用新型较佳实施例的基于手势交互的270度幻影成像系统的示意图。 Fig. 1 is a schematic diagram of a 270-degree phantom imaging system based on gesture interaction in a preferred embodiment of the present invention.
具体实施方式 detailed description
以下将结合图1对本实用新型的基于手势交互的270度幻影成像系统作进一步的详细描述。 The 270-degree phantom imaging system based on gesture interaction of the present invention will be further described in detail below in conjunction with FIG. 1 .
图1所示为本实用新型较佳实施例的基于手势交互的270度幻影成像系统的示意图。所述基于手势交互的270度幻影成像系统包括视觉手势传感器(leap motion)1、计算机3、玻璃罩5、射灯、音响7、电源8、外壳9和显示器; FIG. 1 is a schematic diagram of a 270-degree phantom imaging system based on gesture interaction in a preferred embodiment of the present invention. The 270-degree phantom imaging system based on gesture interaction includes a visual gesture sensor (leap motion) 1, a computer 3, a glass cover 5, a spotlight, a sound 7, a power supply 8, a casing 9 and a display;
所述视觉手势传感器1通过usb数据线2与所述计算机3连接; The visual gesture sensor 1 is connected with the computer 3 through a usb data line 2;
所述计算机3通过HDMI线4与所述显示器连接,所述显示器跟随所述HDMI线4传输的数据同步显示三维模型; The computer 3 is connected to the display through the HDMI line 4, and the display follows the data transmitted by the HDMI line 4 to synchronously display the three-dimensional model;
所述显示器置于所述外壳9上面; The display is placed on the casing 9;
所述射灯和玻璃罩5置于所述外壳9内,所述玻璃罩5罩住所述射灯; The spotlight and glass cover 5 are placed in the housing 9, and the glass cover 5 covers the spotlight;
所述电源8和音响7置于所述外壳9的后箱中; The power supply 8 and the audio system 7 are placed in the back box of the shell 9;
所述视觉手势传感器1置于所述显示器前端并居中,可通过手对着所述视觉手势传感器1进行操作实现交换功能; The visual gesture sensor 1 is placed at the front end of the display and centered, and the switching function can be realized by operating the visual gesture sensor 1 with the hand;
所述计算机3与所述显示器位于同一水平线上; The computer 3 and the display are located on the same horizontal line;
所述电源8为所述射灯、音响7、视觉手势传感器1、计算机3和显示器供电。 The power supply 8 supplies power to the spotlights, the sound 7, the visual gesture sensor 1, the computer 3 and the display.
较佳地,所述玻璃罩5呈梯形塔台状。 Preferably, the glass cover 5 is in the shape of a trapezoidal tower.
较佳地,所述外壳9为一端开口的矩形框。 Preferably, the housing 9 is a rectangular frame with one end open.
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Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN105929629A (en) * | 2016-05-26 | 2016-09-07 | 上海精密计量测试研究所 | 270-degree phantom imaging system based on gesture interaction |
| CN106842883A (en) * | 2017-04-24 | 2017-06-13 | 京东方科技集团股份有限公司 | Holographic display |
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Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN105929629A (en) * | 2016-05-26 | 2016-09-07 | 上海精密计量测试研究所 | 270-degree phantom imaging system based on gesture interaction |
| CN106842883A (en) * | 2017-04-24 | 2017-06-13 | 京东方科技集团股份有限公司 | Holographic display |
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Address after: 201109 Shanghai Minhang District Yuanjiang Road 3888 South Building 213 Room Patentee after: Shanghai Institute of Aerospace Technology Country or region after: China Address before: 201109 Shanghai Minhang District Yuanjiang Road 3888 South Building 213 Room Patentee before: SHANGHAI PRECISION METROLOGY AND TEST Research Institute Country or region before: China |