WO2021000486A1 - 一种图像映射播放器及像素点调试的方法 - Google Patents

一种图像映射播放器及像素点调试的方法 Download PDF

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Publication number
WO2021000486A1
WO2021000486A1 PCT/CN2019/116997 CN2019116997W WO2021000486A1 WO 2021000486 A1 WO2021000486 A1 WO 2021000486A1 CN 2019116997 W CN2019116997 W CN 2019116997W WO 2021000486 A1 WO2021000486 A1 WO 2021000486A1
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brightness
image
color component
pixel
module
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PCT/CN2019/116997
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English (en)
French (fr)
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张家瑞
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大峡谷照明系统(苏州)股份有限公司
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Priority to US16/971,189 priority Critical patent/US11082674B2/en
Priority to SG11202007983YA priority patent/SG11202007983YA/en
Publication of WO2021000486A1 publication Critical patent/WO2021000486A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N9/00Details of colour television systems
    • H04N9/12Picture reproducers
    • H04N9/31Projection devices for colour picture display, e.g. using electronic spatial light modulators [ESLM]
    • H04N9/3191Testing thereof
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N9/00Details of colour television systems
    • H04N9/12Picture reproducers
    • H04N9/31Projection devices for colour picture display, e.g. using electronic spatial light modulators [ESLM]
    • H04N9/3141Constructional details thereof
    • H04N9/315Modulator illumination systems
    • H04N9/3155Modulator illumination systems for controlling the light source
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N9/00Details of colour television systems
    • H04N9/12Picture reproducers
    • H04N9/31Projection devices for colour picture display, e.g. using electronic spatial light modulators [ESLM]
    • H04N9/3179Video signal processing therefor
    • H04N9/3182Colour adjustment, e.g. white balance, shading or gamut

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  • the invention relates to the technical field of video projection, in particular to an image mapping player and a pixel point debugging method.
  • the image of the original video is usually not projected on the building 1:1. This is due to cost considerations. The more pixels of the video, the more lamps and lanterns needed. The number of controllers will increase and the cost will increase. Generally, some pixels are taken sparsely. As long as the original picture can be seen clearly, the image mapping player is suitable for this. It will load the cloth first.
  • the lighting file generated by the lighting software according to the point mapping relationship in the lighting file, rearranges the points of the original video according to the new rules.
  • the Chinese invention patent with publication number CN109194994A discloses an image mapping player, which expresses the parameter values of the video image through fixed pixels on the image.
  • its function is relatively limited and cannot adjust a single port or multiple ports.
  • the brightness of the video, the parameter adjustment is not convenient enough, and the versatility is not high enough. After the conditional parameter changes, it may be necessary to re-modify the parameters of the image mapping player.
  • the present invention provides an image mapping player with rich functions, good versatility, and more flexible use. It is suitable for projects where lamps of various manufacturers are mixed, and is convenient for on-site staff to use and debug. At the same time, the present invention It also provides a method for pixel debugging by using the image mapping player.
  • an image mapping player which is characterized in that it includes:
  • the image mapping module is used to establish a mapping relationship between each pixel point in the image of the video to be mapped and each pixel point in the image to be displayed, and display the image according to the mapping relationship;
  • Brightness adjustment module used to adjust the brightness of the displayed image
  • Controller selection module used to select the controller type
  • Channel selection module used to select channels
  • the RB inversion selection module is used to select whether to adapt to the color component R and color component B of the inverted image
  • White light setting module used to select white light mode
  • Port brightness adjustment module used to adjust the brightness of the selected port.
  • the brightness adjustment module includes:
  • the overall brightness adjustment unit is used to adjust the brightness of the entire displayed image
  • the color component R brightness adjustment unit is used to adjust the brightness of the color component R in the displayed image
  • the color component G brightness adjustment unit is used to adjust the brightness of the color component G in the displayed image
  • the color component B brightness adjustment unit is used to adjust the brightness of the color component B in the displayed image
  • the color component W brightness adjustment unit is used to adjust the brightness of the color component W in the displayed image.
  • the port brightness adjustment module includes:
  • the port selection unit is used to select the port whose brightness needs to be adjusted in the image
  • the color component brightness adjustment unit is used to adjust the brightness of the color components R, G, B, and W of the selected port.
  • the port selection unit supports single port selection and batch selection of ports, and the port selection unit also supports deletion of single selected ports and batch deletion of selected ports.
  • pixel point adjustment module which is used to debug pixels and run off points
  • the pixel point adjustment module includes:
  • Pixel selection unit used to select pixels by port number and index number
  • the color component adjustment unit is used to adjust the brightness of the color components R, G, B, and W of the selected pixel;
  • the pixel selection unit selects the pixel to be debugged through the pixel selection unit, and then adjusts the brightness of the color component of the pixel through the color component adjustment unit to determine whether the lamp of the pixel is working normally; the pixel selection unit switches The index number adjusts the selected pixel, and the pixel is turned on and off to realize the runaway.
  • the white light modes include single white, mixed white, white light always bright, and white color separation modes
  • the white light displayed by the color component RGB and the white light displayed by the color component W are displayed simultaneously;
  • the color component W is always displayed with the set brightness
  • the white and color separation mode includes the mode of taking points downward and taking points to the right.
  • the display area includes a first area and a second area with the same display content in two parts.
  • the first area is full-color and displays the color component RGB
  • the second area is gray and white, and the color component W is used for fill light.
  • the second area is located below the first area;
  • the display area includes two parts of the first area and the second area with the same display content.
  • the first area is full-color and displays the color component RGB
  • the second area is gray and white
  • the color component W is used to fill light.
  • the second area is located to the right of the first area.
  • controller types include standard mode, extended mode, and serial mode.
  • the maximum number of pixels of a single port of the controller is 170; in extended mode, the maximum number of pixels of a single port of the controller is 256; in serial mode, the maximum number of pixels of a single port of the controller The maximum number of pixels is 512.
  • a setting parameter saving module which is used to automatically save the parameter information set in the brightness adjustment module, controller selection module, channel selection module, RB inversion selection module, white light setting module, and port brightness adjustment module.
  • the parameter information set last time is automatically loaded when the image map player is enabled.
  • a method for pixel debugging using the above-mentioned image mapping player includes the following steps:
  • Step S1 The pixel point adjustment module is activated, the overall brightness of the displayed image is adjusted to 0, and the image is displayed completely black;
  • Step S2 Input the pixel selected by the port number and the index number through the pixel selection unit, and the selected pixel is lit;
  • Step S3 Adjust the brightness of the color components R, G, B, and W of the pixel points through the color component adjustment unit to perform debugging to determine whether the lamps of the pixel points work normally.
  • the image mapping player of the present invention supports the adjustment of the overall brightness of the video, and can also support the adjustment of the video brightness of a single port or multiple ports, and can also adapt to the number of channels, the type of the controller, the adaptive color component R, Whether B is inverted, adaptive white light mode, can switch between various white light modes and channel numbers, at the same time, by setting the parameter saving module, the settings are automatically saved in the brightness adjustment module, controller selection module, channel selection module, RB inversion
  • the parameter information set in the selection module, white light setting module, and port brightness adjustment module will automatically load the parameter information set last time when the image mapping player is started next time. It has rich functions, good versatility, and more flexible use, which is suitable for various manufacturers
  • the mixed use of lamps and lanterns is convenient for the use and debugging of on-site staff,
  • the image mapping player of the present invention is used to debug the pixels and run-off points by setting the pixel point adjustment module, the pixel point selection unit selects the pixel points that need to be debugged through the pixel point selection unit, and then the color component adjustment unit adjusts the pixel point The brightness of the color component determines whether the lamp of the pixel point is working normally; the pixel point selection unit adjusts the selected pixel point by switching the index number, and realizes the run-out by switching the pixel point on and off.
  • Figure 1 is a system block diagram of the image mapping player of the present invention
  • FIG. 2 is a block diagram of the brightness adjustment module of the present invention.
  • Figure 3 is a block diagram of the port brightness adjustment module of the present invention.
  • Fig. 4 is a block diagram of the pixel adjustment module of the present invention.
  • the image mapping module 1 is used to establish a mapping relationship between each pixel point in the image of the video to be mapped and each pixel point in the image to be displayed, and to display the image according to the mapping relationship.
  • the brightness adjustment module 2 is used to adjust the brightness of the displayed image.
  • the brightness adjustment module 2 includes:
  • the overall brightness adjustment unit 21 is used to adjust the brightness of the entire displayed image
  • the color component R brightness adjustment unit 22 is used to adjust the brightness of the color component R in the displayed image
  • the color component G brightness adjustment unit 23 is used to adjust the brightness of the color component G in the displayed image
  • the color component B brightness adjustment unit 24 is used to adjust the brightness of the color component B in the displayed image
  • the color component W brightness adjustment unit 25 is used to adjust the brightness of the color component W in the displayed image.
  • the controller selection module 3 is used to select the controller type.
  • the controller type includes standard mode, extended mode, and serial mode.
  • the standard mode the maximum number of pixels of a single port of the controller is 170 ;
  • extended mode the maximum number of pixels of a single port of the controller is 256;
  • serial mode the maximum number of pixels of a single port of the controller is 512.
  • Channel selection module 4 used to select channels.
  • the RB reversal selection module 5 is used to select whether to adapt the color component R and the color component B of the reversed image.
  • the white light setting module 6 is used to select the white light mode.
  • the white light mode includes single white, mixed white, white light always bright, and white color separation modes;
  • the white light displayed by the color component RGB and the white light displayed by the color component W are displayed simultaneously;
  • the color component W is always displayed with the set brightness
  • the white and color separation mode includes the mode of taking points downward and taking points to the right.
  • the display area includes a first area and a second area with the same display content in two parts.
  • the first area is full-color and displays the color component RGB
  • the second area is gray and white, and the color component W is used for fill light.
  • the second area is located below the first area;
  • the display area includes two parts of the first area and the second area with the same display content.
  • the first area is full-color and displays the color component RGB
  • the second area is gray and white
  • the color component W is used to fill light.
  • the second area is located to the right of the first area.
  • the port brightness adjustment module 7 is used to adjust the brightness of the selected port.
  • the port brightness adjustment module can adjust the local brightness of the image.
  • the port brightness adjustment module 7 includes:
  • the port selection unit 71 is used to select a port in the image whose brightness needs to be adjusted;
  • the color component brightness adjustment unit 72 is configured to adjust the brightness of the color components R, G, B, and W of the selected port respectively;
  • the port selection unit 71 supports single port selection and batch selection of ports, and the port selection unit 71 also supports deletion of a single selected port and batch deletion of selected ports.
  • the pixel point adjustment module 8 is used for debugging pixels and running points.
  • the pixel point adjustment module 8 includes:
  • the pixel selection unit 81 is used to select pixels by port number and index number;
  • the color component adjustment unit 82 is used to adjust the brightness of the color components R, G, B, and W of the selected pixel points respectively;
  • the pixel selection unit 81 selects the pixel to be debugged through the pixel selection unit 81, and then adjusts the brightness of the color component of the pixel through the color component adjustment unit 82 to determine whether the lamp of the pixel is working normally;
  • the pixel point selection unit 81 adjusts the selected pixel point by switching the index number, and realizes the running point by turning on and off the pixel point.
  • Setting parameter saving module 9 used to automatically save the parameter information set in the brightness adjustment module, controller selection module, channel selection module, RB inversion selection module, white light setting module, and port brightness adjustment module, and the image mapping playback will be enabled next time
  • the parameter information that was set last time is automatically loaded when the device is configured.
  • the method for pixel debugging using the above-mentioned image mapping player includes the following steps:
  • Step S1 The pixel point adjustment module is activated, the overall brightness of the displayed image is adjusted to 0, and the image is displayed completely black;
  • Step S2 Input the pixel selected by the port number and the index number through the pixel selection unit, and the selected pixel is lit;
  • Step S3 Adjust the brightness of the color components R, G, B, and W of the pixel points through the color component adjustment unit to perform debugging to determine whether the lamps of the pixel points work normally.
  • the image mapping player of the present invention supports the adjustment of the overall brightness of the video, and can also support the adjustment of the video brightness of a single port or multiple ports, and can also adapt to the number of channels, the type of the controller, the adaptive color component R, Whether B is inverted, adaptive white light mode, can switch between various white light modes and channel numbers, at the same time, by setting the parameter saving module, the settings are automatically saved in the brightness adjustment module, controller selection module, channel selection module, RB inversion
  • the parameter information set in the selection module, white light setting module, and port brightness adjustment module will automatically load the parameter information set last time when the image mapping player is started next time. It has rich functions, good versatility, and more flexible use, which is suitable for various manufacturers
  • the mixed use of lamps and lanterns is convenient for the use and debugging of on-site staff,
  • the image mapping player of the present invention is used to debug the pixels and run-off points by setting the pixel point adjustment module, the pixel point selection unit selects the pixel points that need to be debugged through the pixel point selection unit, and then the color component adjustment unit adjusts the pixel point The brightness of the color component determines whether the lamp of the pixel point is working normally; the pixel point selection unit adjusts the selected pixel point by switching the index number, and realizes the run-out by switching the pixel point on and off.

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Abstract

本发明提供了一种图像映射播放器,其功能丰富,通用性好,使用更灵活,适应于各个厂家的灯具混用的项目,且方便现场工作人员的使用与调试,包括:图像映射模块,用于建立待映射的视频的图像中各个像素点与待显示的图像中各个像素点之间的映射关系,并根据所述映射关系显示图像;亮度调整模块,用于调节显示的图像亮度;控制器选择模块,用于选择控制器类型;通道选择模块,用于选择通道;RB颠倒选择模块,用于选择是否适应颠倒图像的颜色分量R和颜色分量B;白光设置模块,用于选择白光模式;端口亮度调节模块,用于调节选中端口的亮度,同时本发明还提供了采用该图像映射播放器进行像素点调试的方法。

Description

一种图像映射播放器及像素点调试的方法 技术领域
本发明涉及视频投影技术领域,特别涉及一种图像映射播放器及像素点调试的方法。
背景技术
通常在通过灯具向楼宇上投射视频时,原始视频的画面影像通常并不会被1:1的投射到楼宇上,这是出于成本的考虑,视频的像素点越多,所需的灯具和控制器都会跟着变多,成本也会提高,一般都是比较稀疏的取部分像素点,只要能保证看的清原始画面即可,图像映射播放器则正是适用于此,其首先会加载布灯软件生成的布灯文件,根据布灯文件中点位映射关系,将原视频的点位按照新的规律重新排列。
公开号为CN109194994A的中国发明专利公开了一种图像映射播放器,其通过图像上的固定点像素点来表示视频的图像的参数值,然而其功能较为局限,无法调节单个端口、或多个端口的视频亮度,参数调节不够便利,通用性也不够高,条件参数变化后,可能就要重新修改图像映射播放器的参数。
发明内容
针对上述问题,本发明提供了一种图像映射播放器,其功能丰富,通用性好,使用更灵活,适应于各个厂家的灯具混用的项目,且方便现场工作人员的使用与调试,同时本发明还提供了采用该图像映射播放器进行像素点调试的方法。
其技术方案是这样的:一种图像映射播放器,其特征在于,包括:
图像映射模块,用于建立待映射的视频的图像中各个像素点与待显示的图像中各个像素点之间的映射关系,并根据所述映射关系显示图像;
亮度调整模块,用于调节显示的图像亮度;
控制器选择模块,用于选择控制器类型;
通道选择模块,用于选择通道;
RB颠倒选择模块,用于选择是否适应颠倒图像的颜色分量R和颜色分量B;
白光设置模块,用于选择白光模式;
端口亮度调节模块,用于调节选中端口的亮度。
进一步的,所述亮度调整模块包括:
整体亮度调节单元,用于调节显示的整个图像的亮度;
颜色分量R亮度调节单元,用于调节显示的图像中颜色分量R的亮度;
颜色分量G亮度调节单元,用于调节显示的图像中颜色分量G的亮度;
颜色分量B亮度调节单元,用于调节显示的图像中颜色分量B的亮度;
颜色分量W亮度调节单元,用于调节显示的图像中颜色分量W的亮度。
进一步的,所述端口亮度调节模块包括:
端口选择单元,用于选中图像中需要调节亮度的端口;
颜色分量亮度调节单元,用于分别调节选中端口的颜色分量R、G、B、W的亮度。
进一步的,端口选择单元支持选择单个端口和批量选择端口,端口选择单元还支持删除单个选中的端口和批量删除选中的端口。
进一步的,还包括像素点调节模块,用于调试像素点以及跑点,所述像素点调节模块包括:
像素点选择单元,用于通过端口号和索引号选中像素点;
颜色分量调节单元,用于分别调节选中像素点的颜色分量R、G、B、W的亮度;
所述像素点选择单元通过像素点选择单元选中需要调试的像素点,再通过颜色分量调节单元调节像素点的颜色分量的亮度来判断像素点的灯具是否正常工作;所述像素点选择单元通过切换索引号调节选中的像素点,通过像素点的亮灭实现跑点。
进一步的,白光模式包括单白、混白、白光常亮、白彩分离模式;
在单白模式下,只显示颜色分量W显示出的白光;
在混白模式下,同时显示颜色分量RGB显示出的白光和颜色分量W显示出的白光;
在白光常亮模式下,颜色分量W始终以设定的亮度进行显示;
在白彩分离模式下,包括向下取点和向右取点模式,
在向下取点模式下,显示区域包括两部分显示内容相同的第一区域和第二区域,第一区域为全彩,显示颜色分量RGB,第二区域为灰白,采用颜色分量W进行补光,第二区域位于第一区域的下方;
在向右取点模式下,显示区域包括两部分显示内容相同的第一区域和第二区域,第一区域为全彩,显示颜色分量RGB,第二区域为灰白,采用颜色分量W进行补光,第二区域位于第一区域的右侧。
进一步的,控制器类型包括标准模式、扩展模式、串行模式。
进一步的,在标准模式下,控制器单个端口的最大像素点个数为170;在扩展模式下,控制器单个端口的最大像素点个数为256;在串行模式下,控制器单个端口的最大像素点 个数为512。
进一步的,还包括设置参数保存模块,用于自动保存设置的亮度调整模块、控制器选择模块、通道选择模块、RB颠倒选择模块、白光设置模块、端口亮度调节模块中设置的参数信息,下一次启用图像映射播放器时自动加载上次设置的参数信息。
一种采用上述的图像映射播放器进行像素点调试的方法,包括以下步骤:
步骤S1:启用像素点调节模块,显示的图像整体亮度调整为0,图像显示为全黑;
步骤S2:通过像素点选择单元输入通过端口号和索引号选中像素点,选中的像素点点亮;
步骤S3:通过颜色分量调节单元分别调节像素点的颜色分量R、G、B、W的亮度来进行调试,以判断像素点的灯具是否正常工作。
本发明的图像映射播放器,其支持调节视频的整体亮度,也可以支持调节单个端口、或多个端口的视频亮度,还可以自适应通道数、自适应控制器类型、自适应颜色分量R、B是否颠倒、自适应白光模式,能在各种白光模式和通道数之间进行切换,同时,通过设置参数保存模块,自动保存设置在亮度调整模块、控制器选择模块、通道选择模块、RB颠倒选择模块、白光设置模块、端口亮度调节模块中设置的参数信息,下一次启用图像映射播放器时自动加载上次设置的参数信息,其功能丰富,通用性好,使用更灵活,适应于各个厂家的灯具混用的项目,且方便现场工作人员的使用与调试,
此外,本发明的图像映射播放器通过设置像素点调节模块用于调试像素点以及跑点,像素点选择单元通过像素点选择单元选中需要调试的像素点,再通过颜色分量调节单元调节像素点的颜色分量的亮度来判断像素点的灯具是否正常工作;像素点选择单元通过切换索引号调节选中的像素点,通过像素点的亮灭实现跑点。
附图说明
图1为本发明的图像映射播放器的系统框图;
图2为本发明的亮度调整模块的框图;
图3为本发明的端口亮度调节模块的框图;
图4为本发明的像素点调节模块的框图。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述。
见图1、图2、图3、图4,本发明的一种图像映射播放器,包括:
图像映射模块1,用于建立待映射的视频的图像中各个像素点与待显示的图像中各个像素点之间的映射关系,并根据映射关系显示图像。
亮度调整模块2,用于调节显示的图像亮度,在本实施例中,亮度调整模块2包括:
整体亮度调节单元21,用于调节显示的整个图像的亮度;
颜色分量R亮度调节单元22,用于调节显示的图像中颜色分量R的亮度;
颜色分量G亮度调节单元23,用于调节显示的图像中颜色分量G的亮度;
颜色分量B亮度调节单元24,用于调节显示的图像中颜色分量B的亮度;
颜色分量W亮度调节单元25,用于调节显示的图像中颜色分量W的亮度。
控制器选择模块3,用于选择控制器类型,在本实施例中,控制器类型包括标准模式、扩展模式、串行模式,在标准模式下,控制器单个端口的最大像素点个数为170;在扩展模式下,控制器单个端口的最大像素点个数为256;在串行模式下,控制器单个端口的最大像素点个数为512。
通道选择模块4,用于选择通道。
RB颠倒选择模块5,用于选择是否适应颠倒图像的颜色分量R和颜色分量B。
白光设置模块6,用于选择白光模式,在本实施例中,白光模式包括单白、混白、白光常亮、白彩分离模式;
在单白模式下,只显示颜色分量W显示出的白光;
在混白模式下,同时显示颜色分量RGB显示出的白光和颜色分量W显示出的白光;
在白光常亮模式下,颜色分量W始终以设定的亮度进行显示;
在白彩分离模式下,包括向下取点和向右取点模式,
在向下取点模式下,显示区域包括两部分显示内容相同的第一区域和第二区域,第一区域为全彩,显示颜色分量RGB,第二区域为灰白,采用颜色分量W进行补光,第二区域位于第一区域的下方;
在向右取点模式下,显示区域包括两部分显示内容相同的第一区域和第二区域,第一区域为全彩,显示颜色分量RGB,第二区域为灰白,采用颜色分量W进行补光,第二区域位于第一区域的右侧。
端口亮度调节模块7,用于调节选中端口的亮度,通过端口亮度调节模块可以调节图像局部的亮度,在本实施例中,端口亮度调节模块7包括:
端口选择单元71,用于选中图像中需要调节亮度的端口;
颜色分量亮度调节单元72,用于分别调节选中端口的颜色分量R、G、B、W的亮度;
端口选择单元71支持选择单个端口和批量选择端口,端口选择单元71还支持删除单个选中的端口和批量删除选中的端口。
像素点调节模块8,用于调试像素点以及跑点,像素点调节模块8包括:
像素点选择单元81,用于通过端口号和索引号选中像素点;
颜色分量调节单元82,用于分别调节选中像素点的颜色分量R、G、B、W的亮度;
在像素点调试时,像素点选择单元81通过像素点选择单元81选中需要调试的像素点,再通过颜色分量调节单元82调节像素点的颜色分量的亮度来判断像素点的灯具是否正常工作;
像素点选择单元81通过切换索引号调节选中的像素点,通过像素点的亮灭实现跑点。
设置参数保存模块9,用于自动保存设置的亮度调整模块、控制器选择模块、通道选择模块、RB颠倒选择模块、白光设置模块、端口亮度调节模块中设置的参数信息,下一次启用图像映射播放器时自动加载上次设置的参数信息。
采用上述的图像映射播放器进行像素点调试的方法,包括以下步骤:
步骤S1:启用像素点调节模块,显示的图像整体亮度调整为0,图像显示为全黑;
步骤S2:通过像素点选择单元输入通过端口号和索引号选中像素点,选中的像素点点亮;
步骤S3:通过颜色分量调节单元分别调节像素点的颜色分量R、G、B、W的亮度来进行调试,以判断像素点的灯具是否正常工作。
本发明的图像映射播放器,其支持调节视频的整体亮度,也可以支持调节单个端口、或多个端口的视频亮度,还可以自适应通道数、自适应控制器类型、自适应颜色分量R、B是否颠倒、自适应白光模式,能在各种白光模式和通道数之间进行切换,同时,通过设置参数保存模块,自动保存设置在亮度调整模块、控制器选择模块、通道选择模块、RB颠倒选择模块、白光设置模块、端口亮度调节模块中设置的参数信息,下一次启用图像映射播放器时自动加载上次设置的参数信息,其功能丰富,通用性好,使用更灵活,适应于各个厂家的灯具混用的项目,且方便现场工作人员的使用与调试,
此外,本发明的图像映射播放器通过设置像素点调节模块用于调试像素点以及跑点,像素点选择单元通过像素点选择单元选中需要调试的像素点,再通过颜色分量调节单元调 节像素点的颜色分量的亮度来判断像素点的灯具是否正常工作;像素点选择单元通过切换索引号调节选中的像素点,通过像素点的亮灭实现跑点。
对于本领域技术人员而言,显然本发明不限于上述示范性实施例的细节,而且在不背离本发明的精神或基本特征的情况下,能够以其他的具体形式实现本发明。因此,无论从哪一点来看,均应将实施例看作是示范性的,而且是非限制性的,本发明的范围由所附权利要求而不是上述说明限定,因此旨在将落在权利要求的等同要件的含义和范围内的所有变化囊括在本发明内。不应将权利要求中的任何附图标记视为限制所涉及的权利要求。
此外,应当理解,虽然本说明书按照实施方式加以描述,但并非每个实施方式仅包含一个独立的技术方案,说明书的这种叙述方式仅仅是为清楚起见,本领域技术人员应当将说明书作为一个整体,各实施例中的技术方案也可以经适当组合,形成本领域技术人员可以理解的其他实施方式。

Claims (10)

  1. 一种图像映射播放器,其特征在于,包括:
    图像映射模块,用于建立待映射的视频的图像中各个像素点与待显示的图像中各个像素点之间的映射关系,并根据所述映射关系显示图像;
    亮度调整模块,用于调节显示的图像亮度;
    控制器选择模块,用于选择控制器类型;
    通道选择模块,用于选择通道;
    RB颠倒选择模块,用于选择是否适应颠倒图像的颜色分量R和颜色分量B;
    白光设置模块,用于选择白光模式;
    端口亮度调节模块,用于调节选中端口的亮度。
  2. 根据权利要求1所述的一种图像映射播放器,其特征在于,所述亮度调整模块包括:
    整体亮度调节单元,用于调节显示的整个图像的亮度;
    颜色分量R亮度调节单元,用于调节显示的图像中颜色分量R的亮度;
    颜色分量G亮度调节单元,用于调节显示的图像中颜色分量G的亮度;
    颜色分量B亮度调节单元,用于调节显示的图像中颜色分量B的亮度;
    颜色分量W亮度调节单元,用于调节显示的图像中颜色分量W的亮度。
  3. 根据权利要求2所述的一种图像映射播放器,其特征在于,所述端口亮度调节模块包括:
    端口选择单元,用于选中图像中需要调节亮度的端口;
    颜色分量亮度调节单元,用于分别调节选中端口的颜色分量R、G、B、W的亮度。
  4. 根据权利要求3所述的一种图像映射播放器,其特征在于:端口选择单元支持选择单个端口和批量选择端口,端口选择单元还支持删除单个选中的端口和批量删除选中的端口。
  5. 根据权利要求1所述的一种图像映射播放器,其特征在于:还包括像素点调节模块,用于调试像素点以及跑点,所述像素点调节模块包括:
    像素点选择单元,用于通过端口号和索引号选中像素点;
    颜色分量调节单元,用于分别调节选中像素点的颜色分量R、G、B、W的亮度;
    所述像素点选择单元通过像素点选择单元选中需要调试的像素点,再通过颜色分量调节单元调节像素点的颜色分量的亮度来判断像素点的灯具是否正常工作;
    所述像素点选择单元通过切换索引号调节选中的像素点,通过像素点的亮灭实现跑点。
  6. 根据权利要求1所述的一种图像映射播放器,其特征在于:白光模式包括单白、混白、 白光常亮、白彩分离模式;
    在单白模式下,只显示颜色分量W显示出的白光;
    在混白模式下,同时显示颜色分量RGB显示出的白光和颜色分量W显示出的白光;
    在白光常亮模式下,颜色分量W始终以设定的亮度进行显示;
    在白彩分离模式下,包括向下取点和向右取点模式,
    在向下取点模式下,显示区域包括两部分显示内容相同的第一区域和第二区域,第一区域为全彩,显示颜色分量RGB,第二区域为灰白,采用颜色分量W进行补光,第二区域位于第一区域的下方;
    在向右取点模式下,显示区域包括两部分显示内容相同的第一区域和第二区域,第一区域为全彩,显示颜色分量RGB,第二区域为灰白,采用颜色分量W进行补光,第二区域位于第一区域的右侧。
  7. 根据权利要求1所述的一种图像映射播放器,其特征在于:控制器类型包括标准模式、扩展模式、串行模式。
  8. 根据权利要求7所述的一种图像映射播放器,其特征在于:在标准模式下,控制器单个端口的最大像素点个数为170;在扩展模式下,控制器单个端口的最大像素点个数为256;在串行模式下,控制器单个端口的最大像素点个数为512。
  9. 根据权利要求1所述的一种图像映射播放器,其特征在于:还包括设置参数保存模块,用于自动保存设置的亮度调整模块、控制器选择模块、通道选择模块、RB颠倒选择模块、白光设置模块、端口亮度调节模块中设置的参数信息,下一次启用图像映射播放器时自动加载上次设置的参数信息。
  10. 一种采用权利要求3所述的图像映射播放器进行像素点调试的方法,包括以下步骤:
    步骤S1:启用像素点调节模块,显示的图像整体亮度调整为0,图像显示为全黑;
    步骤S2:通过像素点选择单元输入通过端口号和索引号选中像素点,选中的像素点点亮;
    步骤S3:通过颜色分量调节单元分别调节像素点的颜色分量R、G、B、W的亮度来进行调试,以判断像素点的灯具是否正常工作。
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