WO2022142303A1 - 一种可视化灯光调节方法及调节系统 - Google Patents

一种可视化灯光调节方法及调节系统 Download PDF

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Publication number
WO2022142303A1
WO2022142303A1 PCT/CN2021/108679 CN2021108679W WO2022142303A1 WO 2022142303 A1 WO2022142303 A1 WO 2022142303A1 CN 2021108679 W CN2021108679 W CN 2021108679W WO 2022142303 A1 WO2022142303 A1 WO 2022142303A1
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WO
WIPO (PCT)
Prior art keywords
light spot
light
physical address
console
lamp
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PCT/CN2021/108679
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English (en)
French (fr)
Inventor
蒋伟楷
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广州市浩洋电子股份有限公司
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Application filed by 广州市浩洋电子股份有限公司 filed Critical 广州市浩洋电子股份有限公司
Priority to EP21791238.5A priority Critical patent/EP4274386A1/en
Priority to US17/514,571 priority patent/US11751314B2/en
Publication of WO2022142303A1 publication Critical patent/WO2022142303A1/zh

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Classifications

    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B47/00Circuit arrangements for operating light sources in general, i.e. where the type of light source is not relevant
    • H05B47/10Controlling the light source
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B47/00Circuit arrangements for operating light sources in general, i.e. where the type of light source is not relevant
    • H05B47/10Controlling the light source
    • H05B47/155Coordinated control of two or more light sources
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B47/00Circuit arrangements for operating light sources in general, i.e. where the type of light source is not relevant
    • H05B47/10Controlling the light source
    • H05B47/105Controlling the light source in response to determined parameters
    • H05B47/11Controlling the light source in response to determined parameters by determining the brightness or colour temperature of ambient light
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B20/00Energy efficient lighting technologies, e.g. halogen lamps or gas discharge lamps
    • Y02B20/40Control techniques providing energy savings, e.g. smart controller or presence detection

Definitions

  • the invention relates to the technical field of stage lights, and more particularly, to a visual lighting adjustment method.
  • stage lights in order to realize the control of a certain light spot, it is necessary to know which light is emitted when the light spot is emitted, and then know the physical address of the light before using the console to control it.
  • the ambient light when the ambient light is bright, it is not easy to trace the source of the light beam to which lamp emits the light spot;
  • the physical address of the lamp usually needs to be remembered by the operator to remember the physical address of the lamp installed in each position,
  • the number of stage lights on the scene will be large, and each time a new venue is built, it needs to be re-remembered, which is very cumbersome and difficult, and it is not conducive to changing the operator.
  • the present invention provides a visual light adjustment method, which does not need to memorize the physical address of the light, and can adjust the corresponding light spot directly on the display device, which is simple and easy to use.
  • a visual lighting adjustment method comprising the following steps:
  • the console controls the lamps corresponding to the physical addresses to generate corresponding light effects according to the selection of the input device and the correlation between the coordinates of the light spots and the physical addresses of the lamps.
  • the visual light adjustment method uses the correlation between the coordinates of the light spots in the console and the physical addresses of the lamps, and when the operator selects the coordinates of a certain light spot in the display device through the input device, it is automatically associated with the lamps corresponding to the physical addresses. Send the light effect data input by the input device to the lamps of the physical address, and control them to generate the corresponding light effects without memorizing the installation position and corresponding physical address of each lamp.
  • the operation is simple and easy to use, even if the operator is changed. There is no impact, and there is no impact on rebuilding the venue.
  • step S3 the console sequentially controls the lamps of each physical address to change the light spot state, until the light spot state changes at the selected coordinate, associates the coordinates of the light spot with the physical address, and then controls the physical address.
  • the lamps produce the corresponding light effects. It is not necessary to pre-store the relationship between the coordinates of the light spot in the display device and the physical address of the lamp in the console, but in the process of use, the relationship is obtained and stored, and the light spot needs to be controlled to obtain the relationship with it.
  • the physical address of the fixture is not necessary to pre-store the relationship between the coordinates of the light spot in the display device and the physical address of the lamp in the console, but in the process of use, the relationship is obtained and stored, and the light spot needs to be controlled to obtain the relationship with it.
  • the physical address of the fixture is not necessary to pre-store the relationship between the coordinates of the light spot in the display device and the physical address of the lamp in the console, but in the process of use, the relationship is obtained and stored, and the light spot needs
  • the change of the light spot state refers to the on and off of the light spot.
  • the console controls the lamps of each physical address to change the light spot state in turn, until the light spot state changes at the selected coordinate. Specifically, the lamps of all physical addresses are broadcast and extinguished one by one. Lights up until the selected coordinate position is lit. The change of the light spot on and off is the most obvious and the easiest to analyze, and the result is more accurate.
  • the console compares and analyzes the projection scene obtained by the camera device and the scene before the change of the light spot state, so as to judge whether the light spot state at the selected coordinate is not. change. By comparing the two pictures, the console can quickly find out whether the state of the light spot in the projection scene has changed. The technology is mature and the analysis is fast.
  • the console sequentially controls the lamps of each physical address to change the state of the light spot
  • the physical address that has established a matching relationship with the coordinates of the light spot is skipped. It can effectively speed up the association speed between the light spot coordinates in the display device and the physical addresses of the corresponding lamps.
  • the light spot state of a light fixture of a certain physical address changes, but the light spot state of the selected coordinate does not change, the light spot of the light fixture of the physical address is restored to the state before the change. Avoid the mutual influence of the light spots.
  • the association relationship between the coordinates of the light spot in the display device and the physical address of the light fixture is pre-stored in the console.
  • the console controls the lamps of each physical address to change the spot state in turn, until the spot states of the lamps of all physical addresses have changed once under the control of the console, and the console takes a camera according to each time the lamps of a physical address change the spot state.
  • the change of the light spot state in the light spot projection scene acquired by the device can associate the coordinates of the light spot in the display device with the physical address of the corresponding lamp and store the association relationship. This allows direct calls without having to perform an addressing operation each time a spot is selected.
  • step S4 is also included, changing the angle of the light fixture at the physical address corresponding to the selected light spot coordinates through the input device and inputting a new light effect, and the console records the angle parameters of the light fixture of the physical address at each angle and the light effect at the angle. . Record the angle parameters of each lamp at each angle and the light effect data at the angle, and control the actions of each lamp in chronological order to form a light show.
  • step S4 the console tracks the movement of the light spot of the lamp in the display device, and updates the coordinates of the light spot corresponding to the lamp of the physical address.
  • the console updates the coordinates of the light spot in the relationship in real time, so that even if the light spot moves, the relationship is still valid.
  • the light effect at least includes changes in at least one of the color of the light spot, the shape of the light spot, the brightness of the light spot, the angle of the light spot or the position of the light spot.
  • the input device selects the coordinates of the light spot in a circle selection manner.
  • the present invention also provides a lighting adjustment system, applying any of the aforementioned visual lighting adjustment methods, including:
  • a camera device for acquiring the light spot projection scene of a lamp
  • a display device for visually presenting a spot projection scene
  • the display device is a touch screen, and the touch screen simultaneously serves as an input device.
  • the display device automatically pops up the light effect type for the user to select. The operation is simpler, and there is no need to enter complex parameters.
  • the light effect parameters are pre-stored in the console or the lamps, and the console can directly call them according to the selection of the input device.
  • FIG. 1 is a schematic flowchart of the present embodiment of the present invention.
  • FIG. 2 is a schematic flowchart of another embodiment of the present invention.
  • the present invention provides a method for visualizing lighting adjustment, comprising the following steps:
  • the console controls the lamps corresponding to the physical addresses to generate corresponding light effects according to the selection of the input device and the correlation between the coordinates of the light spots and the physical addresses of the lamps.
  • the visual light adjustment method uses the correlation between the coordinates of the light spot in the console and the physical address of the light fixture.
  • a certain spot coordinate is selected in the display device through the input device, it will be automatically associated with the luminaire of the corresponding physical address, and the light effect data input by the input device will be sent to the luminaire of the physical address to control it to generate the corresponding light effect without memorizing each time.
  • the installation location of each lamp and the corresponding physical address are simple and easy to operate. Even if the operator is changed, it will not be affected, and the site will be rebuilt.
  • the relationship between the coordinates of the light spot and the physical address of the light fixture is associated after a certain light spot coordinate is selected.
  • the console controls the light fixtures of each physical address to change in sequence.
  • the state of the light spot is changed until the state of the light spot at the selected coordinate is changed, the coordinates of the light spot are associated with the physical address, and then the lamps at the physical address are controlled to generate the corresponding light effect. It is not necessary to pre-store the relationship between the coordinates of the light spot in the display device and the physical address of the lamp in the console, but in the process of use, the relationship is obtained and stored, and the light spot needs to be controlled to obtain the relationship with it.
  • the physical address of the fixture is not necessary to pre-store the relationship between the coordinates of the light spot in the display device and the physical address of the lamp in the console, but in the process of use, the relationship is obtained and stored, and the light spot needs to be controlled to obtain the relationship with it.
  • the physical address of the fixture is not necessary to pre-store the relationship between the coordinate
  • the change of the light spot state refers to the on and off of the light spot
  • the console controls the lamps of each physical address to change the light spot state in turn, until the light spot state changes at the selected coordinate, specifically, first broadcast and extinguish the lamps of all physical addresses. , and then light up one by one until the selected coordinate position is lighted up.
  • the change of the light spot on and off is the most obvious and the easiest to analyze, and the result is more accurate.
  • the console compares and analyzes the projection scene obtained by the camera device with the scene before the change of the light spot state, so as to determine the light spot at the selected coordinate. Whether the spot state has changed. By comparing the two pictures, the console can quickly find out whether the state of the light spot in the projection scene has changed. The technology is mature and the analysis is fast.
  • the console sequentially controls the lamps of each physical address to change the light spot state
  • the physical address that has established a matching relationship with the coordinates of the light spot is skipped. It can effectively speed up the association speed between the light spot coordinates in the display device and the physical addresses of the corresponding lamps.
  • the light spot state of a fixture of a certain physical address changes, but the light spot state of the selected coordinate does not change, the light spot of the light fixture of the physical address is restored to the state before the change. Avoid the mutual influence of the light spots.
  • the relationship between the coordinates of the light spot in the display device and the physical address of the light fixture is pre-existed in the console.
  • the console controls the lamps of each physical address to change the spot state in turn, until the spot states of the lamps of all physical addresses have changed once under the control of the console, and the console takes a camera according to each time the lamps of a physical address change the spot state.
  • the change of the light spot state in the light spot projection scene acquired by the device can associate the coordinates of the light spot in the display device with the physical address of the corresponding lamp and store the association relationship. This allows direct calls without having to perform an addressing operation each time a spot is selected.
  • step S4 is also included, changing the angle of the light fixture at the physical address corresponding to the selected light spot coordinates through the input device and inputting a new light effect, and the console records the angle parameters of the light fixture at the physical address at each angle and the angle at the angle. light effect. Record the angle parameters of each lamp at each angle and the light effect data at the angle, and control the actions of each lamp in chronological order to form a light show.
  • step S4 the console tracks the movement of the light spot of the lamp in the display device, and updates the coordinates of the light spot corresponding to the lamp of the physical address.
  • the console updates the coordinates of the light spot in the relationship in real time, so that even if the light spot moves, the relationship is still valid.
  • the light effect at least includes changes in at least one of the color of the light spot, the shape of the light spot, the brightness of the light spot, the angle of the light spot, or the position of the light spot.
  • the input device selects the coordinates of the light spot in a circle selection manner.
  • the coordinates of the light spot can also be selected by clicking.
  • the present invention also provides a lighting adjustment system, applying any of the aforementioned visual lighting adjustment methods, including:
  • a camera device for acquiring the light spot projection scene of a lamp
  • a display device for visually presenting a spot projection scene
  • the display device is a touch screen, and the touch screen also serves as an input device.
  • the input device may also be a mouse or a keyboard.
  • the display device when the input device selects the light spot, the display device automatically pops up the light effect type for the user to select.
  • the operation is simpler, and there is no need to enter complex parameters.
  • the light effect parameters are pre-stored in the console or the lamps, and the console directly calls them according to the selection of the input device.
  • the types of light effects are presented in the form of previews. Play light effect animation on the display device, which is intuitive and easy to operate.

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  • Circuit Arrangement For Electric Light Sources In General (AREA)

Abstract

提供了一种可视化灯光调节系统及调节系统,其中可视化灯光调节系统包括以下步骤:S1、用摄像装置获取灯具的光斑投射场景并通过显示装置实时显示;S2、通过输入装置在显示装置上选中某一光斑的坐标,并输入需要的光效;S3、控台根据输入装置的选择以及光斑的坐标与灯具的物理地址之间的关联关系,控制对应物理地址的灯具产生对应的光效。通过控台内光斑的坐标与灯具的物理地址之间的关联关系,在操作人通过输入装置在显示装置中选中某一光斑坐标时,自动关联到对应物理地址的灯具,将输入装置输入的光效数据发送给该物理地址的灯具,控制其产生对应的光效,无需记忆每个灯具的安装位置及对应的物理地址,操作起来简单易上手。

Description

一种可视化灯光调节方法及调节系统 技术领域
本发明涉及舞台灯技术领域,更具体地,涉及一种可视化灯光调节方法。
背景技术
目前在舞台灯的控制过程中,为了实现对某一光斑的控制,需要先知道这个光斑时哪一台灯发出来的,然后知道这个灯的物理地址,才可以利用控台对其进行控制。首先,在环境光线较亮的时候,不易通过光束溯源到光斑是哪台灯具发射出来的;其次,灯的物理地址通常需要操作人员去记忆,记住装在每个位置的灯的物理地址,而一般现场的舞台灯数量会很多,每次搭建新场地时也都需要重新记忆,十分繁琐,难度很大,也不利于更换操作人。
技术问题
本发明为克服上述现有技术所述的至少一种缺陷,提供一种可视化灯光调节方法,无需记忆灯的物理地址,直接在显示装置上选中对应光斑就可以调节,简单易上手。
技术解决方案
为解决上述技术问题,本发明采用的技术方案是:一种可视化灯光调节方法,包括以下步骤:
S1、用摄像装置获取灯具的光斑投射场景并通过显示装置实时显示;
S2、通过输入装置在所述显示装置上选中某一光斑的坐标,并输入需要的光效;
S3、控台根据输入装置的选择以及光斑的坐标与灯具的物理地址之间的关联关系,控制对应物理地址的灯具产生对应的光效。
所述可视化灯光调节方法通过控台内光斑的坐标与灯具的物理地址之间的关联关系,在操作人通过输入装置在显示装置中选中某一光斑坐标时,自动关联到对应物理地址的灯具,将输入装置输入的光效数据发送给该物理地址的灯具,控制其产生对应的光效,无需记忆每个灯具的安装位置及对应的物理地址,操作起来简单易上手,即使更换了操作人也没有影响,重新搭建场地也没有影响。
进一步地,在S3步骤中,控台依次控制各物理地址的灯具改变光斑状态,直至被选中的坐标处光斑状态发生改变,将该光斑的坐标与该物理地址相关联,然后控制该物理地址的灯具产生对应的光效。不用提前预存光斑在显示装置中的坐标与灯具的物理地址之间关联关系预存在控台内,而是在一边使用的过程中,一边获取关联关系并进行存储,需要控制那个光斑就获取与其关联的灯具的物理地址。
进一步地,光斑状态变化是指光斑的亮灭,控台依次控制各物理地址的灯具改变光斑状态,直至被选中的坐标处光斑状态发生改变,具体为先广播熄灭全部物理地址的灯具,然后逐一点亮直至被选中的坐标位置被点亮。光斑的亮灭变化是最为明显的,也是最容易分析的,结果更准确。
进一步地,当控台控制某一物理地址的灯具的光斑状态发生变化后,控台将摄像装置获取的投射场景与光斑状态变化前的场景进行对比分析,从而判断所选中坐标处的光斑状态是否发生变化。控台通过两张图片的对比,即可快速得出投射场景中的光斑状态是否发生变化,技术成熟且分析快速。
进一步地,在控台依次控制各物理地址的灯具改变光斑状态时,跳过已与光斑的坐标建立匹配关系的物理地址。可以有效的加快显示装置中的光斑坐标与对应灯具的物理地址的关联速度。
进一步地,在某一物理地址的灯具改变光斑状态,而被选中的坐标处光斑状态未发生改变时,将该物理地址的灯具的光斑恢复至变化前的状态。避免光斑的相互影响。
进一步地,光斑在显示装置中的坐标与灯具的物理地址之间关联关系预存在控台内。例如控台依次控制各物理地址的灯具改变光斑状态,直至全部物理地址的灯具的光斑状态均在控台的控制下发生过一次变化,控台根据每次一个物理地址的灯具改变光斑状态时摄像装置获取的光斑投射场景中光斑状态的变化,就可以将光斑在显示装置中的坐标与对应灯具的物理地址进行关联并将关联关系进行存储。这样就可以直接进行调用,而不需每次选中一个光斑都要进行一次寻址操作。
进一步地,还包括S4步骤,通过输入装置更改所选中光斑坐标对应物理地址的灯具角度并输入新的光效,控台记录该物理地址的灯具在各角度的角度参数以及在该角度的光效。将每台灯具在各各角度的角度参数以及在该角度的光效数据记录下来,并按时间顺序控制每台灯具动作,就可以形成一场灯光秀。
进一步地,在S4步骤中,控台跟踪显示装置中灯具光斑的移动,更新该物理地址的灯具对应光斑的坐标。在某一光斑移动时,控台实时更新关联关系中的光斑的坐标,这样即使光斑有移动,关联关系依然有效。
进一步地,光效至少包括光斑的颜色、光斑的形状、光斑的亮度、光斑的角度或光斑的位置中的至少一种发生变化。
进一步地,输入装置以圈选的方式选中光斑的坐标。
本发明还提供一种灯光调节系统,应用前述任一种可视化灯光调节方法,包括:
用于获取灯具光斑投射场景的摄像装置;
用于将光斑投射场景进行可视化呈现的显示装置;
用于在显示装置中选中光斑及输入光效的输入装置;
以及用于根据输入装置的选择及输入的光效控制关联物理地址的灯具光斑状态发生改变的控台。
进一步地,显示装置为触控屏,触控屏同时作为输入装置。
进一步地,显示装置在输入装置选中光斑时,自动弹出光效种类供用户选择。操作更加简单,无需输入复杂参数。
进一步地,控台或者灯具内预存有光效参数,控台根据输入装置的选择直接调用。
进一步地,光效种类以预览的形式进行呈现。直观可见,易于操作。
附图说明
图1是本发明本实施例的流程示意图。
图2是本发明另一实施例的流程示意图。
本发明的最佳实施方式
附图仅用于示例性说明,不能理解为对本专利的限制;为了更好说明本实施例,附图某些部件会有省略、放大或缩小,并不代表实际产品的尺寸;对于本领域技术人员来说,附图中某些公知结构及其说明可能省略是可以理解的。附图中描述位置关系仅用于示例性说明,不能理解为对本专利的限制。
如图1、图2,本发明提供一种可视化灯光调节方法,包括以下步骤:
S1、用摄像装置获取灯具的光斑投射场景并通过显示装置实时显示;
S2、通过输入装置在所述显示装置上选中某一光斑的坐标,并输入需要的光效;
S3、控台根据输入装置的选择以及光斑的坐标与灯具的物理地址之间的关联关系,控制对应物理地址的灯具产生对应的光效。
所述可视化灯光调节方法通过控台内光斑的坐标与灯具的物理地址之间的关联关系,该关联关系可以是全部预存的,也可以是在选中某一光斑坐标后现关联的,在操作人通过输入装置在显示装置中选中某一光斑坐标时,自动关联到对应物理地址的灯具,将输入装置输入的光效数据发送给该物理地址的灯具,控制其产生对应的光效,无需记忆每个灯具的安装位置及对应的物理地址,操作起来简单易上手,即使更换了操作人也没有影响,重新搭建场地也没有影响。
如图1,在本实施例中,光斑的坐标与灯具的物理地址之间的关联关系是在选中某一光斑坐标后现关联的,在S3步骤中,控台依次控制各物理地址的灯具改变光斑状态,直至被选中的坐标处光斑状态发生改变,将该光斑的坐标与该物理地址相关联,然后控制该物理地址的灯具产生对应的光效。不用提前预存光斑在显示装置中的坐标与灯具的物理地址之间关联关系预存在控台内,而是在一边使用的过程中,一边获取关联关系并进行存储,需要控制那个光斑就获取与其关联的灯具的物理地址。
在本实施例中,光斑状态变化是指光斑的亮灭,控台依次控制各物理地址的灯具改变光斑状态,直至被选中的坐标处光斑状态发生改变,具体为先广播熄灭全部物理地址的灯具,然后逐一点亮直至被选中的坐标位置被点亮。光斑的亮灭变化是最为明显的,也是最容易分析的,结果更准确。
在本实施例中,当控台控制某一物理地址的灯具的光斑状态发生变化后,控台将摄像装置获取的投射场景与光斑状态变化前的场景进行对比分析,从而判断所选中坐标处的光斑状态是否发生变化。控台通过两张图片的对比,即可快速得出投射场景中的光斑状态是否发生变化,技术成熟且分析快速。
在本实施例中,在控台依次控制各物理地址的灯具改变光斑状态时,跳过已与光斑的坐标建立匹配关系的物理地址。可以有效的加快显示装置中的光斑坐标与对应灯具的物理地址的关联速度。
在本实施例中,在某一物理地址的灯具改变光斑状态,而被选中的坐标处光斑状态未发生改变时,将该物理地址的灯具的光斑恢复至变化前的状态。避免光斑的相互影响。
如图2,在另一实施例中,光斑在显示装置中的坐标与灯具的物理地址之间关联关系预存在控台内。例如控台依次控制各物理地址的灯具改变光斑状态,直至全部物理地址的灯具的光斑状态均在控台的控制下发生过一次变化,控台根据每次一个物理地址的灯具改变光斑状态时摄像装置获取的光斑投射场景中光斑状态的变化,就可以将光斑在显示装置中的坐标与对应灯具的物理地址进行关联并将关联关系进行存储。这样就可以直接进行调用,而不需每次选中一个光斑都要进行一次寻址操作。
在本实施例中,还包括S4步骤,通过输入装置更改所选中光斑坐标对应物理地址的灯具角度并输入新的光效,控台记录该物理地址的灯具在各角度的角度参数以及在该角度的光效。将每台灯具在各各角度的角度参数以及在该角度的光效数据记录下来,并按时间顺序控制每台灯具动作,就可以形成一场灯光秀。
在本实施例中,在S4步骤中,控台跟踪显示装置中灯具光斑的移动,更新该物理地址的灯具对应光斑的坐标。在某一光斑移动时,控台实时更新关联关系中的光斑的坐标,这样即使光斑有移动,关联关系依然有效。
在本实施例中,光效至少包括光斑的颜色、光斑的形状、光斑的亮度、光斑的角度或光斑的位置中的至少一种发生变化。
在本实施例中,输入装置以圈选的方式选中光斑的坐标。在其他实施例中,也可以以点选的方式选中光斑的坐标。
本发明还提供一种灯光调节系统,应用前述任一种可视化灯光调节方法,包括:
用于获取灯具光斑投射场景的摄像装置;
用于将光斑投射场景进行可视化呈现的显示装置;
用于在显示装置中选中光斑及输入光效的输入装置;
以及用于根据输入装置的选择及输入的光效控制关联物理地址的灯具光斑状态发生改变的控台。
在本实施例中,显示装置为触控屏,触控屏同时作为输入装置。在其他实施例中,所述输入装置也可以为鼠标或者键盘。
在本实施例中,显示装置在输入装置选中光斑时,自动弹出光效种类供用户选择。操作更加简单,无需输入复杂参数。
在本实施例中,控台或者灯具内预存有光效参数,控台根据输入装置的选择直接调用。
在本实施例中,光效种类以预览的形式进行呈现。在显示装置上播放光效动画,直观可见,易于操作。
显然,本发明的上述实施例仅仅是为了清楚地说明本发明所作的举例,而并非是对本发明的实施方式的限定。对于所属领域的普通技术人员来说,在上述说明的基础上还可以做出其它不同形式的变化或变动。这里无需也无法对所有的实施方式予以穷举。凡在本发明的精神和原则之内所作的任何修改、等同替换和改进等,均应包含在本发明权利要求的保护范围之内。

Claims (16)

  1. 一种可视化灯光调节方法,其特征在于,包括以下步骤:
    S1、用摄像装置获取灯具的光斑投射场景并通过显示装置实时显示;
    S2、通过输入装置在所述显示装置上选中某一光斑的坐标,并输入需要的光效;
    S3、控台根据输入装置的选择以及光斑的坐标与灯具的物理地址之间的关联关系,控制对应物理地址的灯具产生对应的光效。
  2. 根据权利要求1所述的控制方法,其特征在于,在S3步骤中,控台依次控制各物理地址的灯具改变光斑状态,直至被选中的坐标处光斑状态发生改变,将该光斑的坐标与该物理地址相关联,然后控制该物理地址的灯具产生对应的光效。
  3. 根据权利要求2所述的控制方法,其特征在于,光斑状态变化是指光斑的亮灭,控台依次控制各物理地址的灯具改变光斑状态,直至被选中的坐标处光斑状态发生改变,具体为先广播熄灭全部物理地址的灯具,然后逐一点亮直至被选中的坐标位置被点亮。
  4. 根据权利要求2所述的控制方法,其特征在于,当控台控制某一物理地址的灯具的光斑状态发生变化后,控台将摄像装置获取的投射场景与光斑状态变化前的场景进行对比分析,从而判断所选中坐标处的光斑状态是否发生变化。
  5. 根据权利要求2所述的控制方法,其特征在于,在控台依次控制各物理地址的灯具改变光斑状态时,跳过已与光斑的坐标建立匹配关系的物理地址。
  6. 根据权利要求2所述的控制方法,其特征在于,在某一物理地址的灯具改变光斑状态,而被选中的坐标处光斑状态未发生改变时,将该物理地址的灯具的光斑恢复至变化前的状态。
  7. 根据权利要求1所述的控制方法,其特征在于,光斑在显示装置中的坐标与灯具的物理地址之间关联关系预存在控台内。
  8. 根据权利要求1所述的控制方法,其特征在于,还包括S4步骤,通过输入装置更改所选中光斑坐标对应物理地址的灯具角度并输入新的光效,控台记录该物理地址的灯具在各角度的角度参数以及在该角度的光效。
  9. 根据权利要求8所述的控制方法,其特征在于,在S4步骤中,控台跟踪显示装置中灯具光斑的移动,更新该物理地址的灯具对应光斑的坐标。
  10. 根据权利要求1所述的控制方法,其特征在于,光效至少包括光斑的颜色、光斑的形状、光斑的亮度、光斑的角度或光斑的位置中的至少一种发生变化。
  11. 根据权利要求1所述的控制方法,其特征在于,输入装置以圈选的方式选中光斑的坐标。
  12. 一种采用权利要求1-11任一项所述可视化灯光调节方法的调节系统,其特征在于,包括:
    用于获取灯具光斑投射场景的摄像装置;
    用于将光斑投射场景进行可视化呈现的显示装置;
    用于在显示装置中选中光斑及输入光效的输入装置;
    以及用于根据输入装置的选择及输入的光效控制关联物理地址的灯具光斑状态发生改变的控台。
  13. 根据权利要求12所述的调节系统,其特征在于,显示装置为触控屏,触控屏同时作为输入装置。
  14. 根据权利要求12所述的调节系统,其特征在于,显示装置在输入装置选中光斑时,自动弹出光效种类供用户选择。
  15. 根据权利要求12所述的调节系统,其特征在于,控台或者灯具内预存有光效参数,控台根据输入装置的选择直接调用。
  16. 根据权利要求12所述的调节系统,其特征在于,光效种类以预览的形式进行呈现。
     
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