Bitmap control system for performance scene direction

JP7905384B2Active Publication Date: 2026-08-14FANLIGHT CO LTD
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Patent Information

Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2024-04-25
Publication Date
2026-08-14

AI Technical Summary

Benefits of technology

【0021】 前記のような本発明によれば、公演会場での公演演出時に、1つの発光装置をビットマ ップでの1つのピクセルであると指定し、ビットマップでピクセルを制御する方式にて複 数の発光装置を制御することで、効率的な演出場面を提供できるという効果を奏する。

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

To change a performance scene in a real time when causing each light-emitting device such as support goods to act as an individual pixel to create an image at a performance venue.SOLUTION: A control console device generates data packets for light-emitting operations for each performance scene for the performance and transmits them to a light-emitting device, a light-emitting devices can emit light in a first color corresponding to first collective information for a first performance scene in the data packet on the basis of collective information for each of the performance scenes already stored. The control console device overlays and plays each scene of a video on a layout diagram of the plurality of light-emitting devices, extracts values from the video of portions where the plurality of light-emitting devices are located, and generates the data packet on the basis of the extraction results.SELECTED DRAWING: Figure 7
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Description

Technical Field

[0001] The present invention relates to a bitmap control system, apparatus, and method for performing stage scene production in a performance venue.

Background Art

[0002] Generally, a light-emitting device (or lighting device) refers to a device that reflects, refracts, and transmits light from a light source to achieve the purpose of illumination. The light-emitting device can be classified into an indirect light-emitting device, a semi-indirect light-emitting device, a general diffusion light-emitting device, a semi-direct light-emitting device, a direct light-emitting device, etc. according to light distribution. With the development of technology, light-emitting devices are used in various applications. As an example, a light-emitting device is used to produce a media facade. A media facade refers to a device that attaches a light-emitting device to the outer wall of a building and realizes a media function.

[0003]

[0004]

[0005]

[0006]

[0007]

[0008] ​By controlling and managing such performances, diverse performances can be held at venues such as sports competitions and concerts. It is necessary to introduce measures that can create that effect. [Overview of the project] [Problems that the invention aims to solve]

[0007] Therefore, the present invention has been made in view of the above circumstances, and its purpose is to enable performances at concert venues. During the performance, one light-emitting device is specified as one pixel in a bitmap, and The method involves controlling multiple light-emitting devices using a pixel-based control system.

[0008] Another object of the present invention is to emit light from a control console device during performance production at a performance venue. Data packets are transmitted to the device in real time, and the illumination status of the light-emitting device is displayed in real time. The goal is to make changes.

[0009] The problems that this invention aims to solve are not limited to those mentioned above, but also include further problems not mentioned. Other issues should be clearly understandable to any average engineer from the description below. [Means for solving the problem]

[0010] To solve the above-mentioned problems, the present invention provides bitmap control for performance scene production. The system generates data packets for lighting effects for each stage of the performance. A control console device that transmits data, and a device that receives the data packets from the control console device. and includes a plurality of light-emitting devices that perform operations for the emission of light within the data packet, The optical device uses the data based on the aggregate information relating to each of the previously stored performance scenes. It can emit light in a first color corresponding to the first set of information for the first performance scene within the packet.

[0011] Here, the data packet can include at least one of the following information: index information including a part of the set information constituting the first production scene, color palette information including color information for representing the first production scene, and color number information for each of the part of the set information constituting the first production scene. In addition, the index information can include position information of the first set information in the data packet among the part of the set information constituting the first production scene.

[0012] Based on the position information of the first set information, the light-emitting device can confirm the color number information of the first color corresponding to the first set information among the part of the set information, confirm the first color information corresponding to the color number information of the first color among the color palette information, and emit the first color corresponding to the confirmed first color information.

[0013]

[0014]

[0015]

[0016] The control console device can change similar colors to one color for each of the entire production scenes, and apply a dithering technique to each of the entire production scenes changed to the one color to reduce the size of the color palette information.

[0017] The control console device can synchronize and transmit a first data packet including the index information related to the first production scene and the part of the set information, and a second data packet including the color palette information.

[0018] Temporarily store the report, and if the second color palette information in the data packet received later is different from the already stored first color palette information, the second color palette information can be used to update the first color palette information.

[0017] Also, for the light-emitting device for stage scene production according to the present invention to solve the above problems it includes a communication unit that communicates with a control console device, a light-emitting unit that emits light using a light source element , a storage unit that stores data, and a control unit that controls the operation of the light-emitting device. The control unit can control the light-emitting unit to emit light in a first color corresponding to the first set of information for the first stage scene received from the control console device via the communication unit based on the set information regarding each of the stage scenes stored in the storage unit.

[0018] Furthermore, for the control console device for stage scene production according to the present invention to solve the above problems it includes a communication unit that communicates with a light-emitting device, a storage unit that stores data, and a control unit that generates a data packet for the light-emitting operation of the light-emitting device. The control unit can synchronize and transmit a first data packet including the index information and a part of the set information regarding the first stage scene and a second data packet including the color palette information, respectively.

[0019] Here, the data packet includes index information including a part of the set information constituting the first stage scene , color palette information including color information for representing the first stage scene, and color number information for each of the part of the set information constituting the first stage scene. It may include at least one piece of information from a subset of collective information, including [specific information].

[0020] In addition, other methods, other systems for embodying the present invention, and methods for carrying out the said method A computer-readable recording medium for recording computer programs for further It may be provided. [Effects of the Invention]

[0021] According to the present invention as described above, when performing a show at a performance venue, one light-emitting device is bit-lighted. Specifying it as one pixel on the map and controlling the pixel with a bitmap is a method that allows multiple pixels to be created. By controlling a number of light-emitting devices, it becomes possible to provide efficient and effective visual effects.

[0022] Furthermore, according to the present invention, during performance production at a performance venue, a light-emitting device can be controlled from a control console device. Data packets are transmitted in real time to change the illumination status of the light-emitting device in real time. This has the effect of easily providing a variety of performance scenes depending on the situation.

[0023] The effects of the present invention are not limited to those mentioned above, and any other effects not mentioned are as follows: The above description should be easily understood by any average engineer. [Brief explanation of the drawing]

[0024] [Figure 1] This diagram schematically shows the configuration of a system for staging performance scenes at a performance venue according to the present invention. [Figure 2] This is an illustrative diagram showing color information categorized by color number information stored in the master according to the present invention. [Figure 3] This is an illustrative diagram showing reference color range information for the color information of a color palette stored in a master according to the present invention. [Figure 4]This is an illustrative diagram showing the performance effects that are projected onto the audience seating area of ​​a performance venue according to the present invention. [Figure 5] This is a block diagram showing the configuration of a control console device according to the present invention. [Figure 6] This is an illustrative diagram showing data packets generated by the control console device according to the present invention. [Figure 7] This is an illustrative diagram showing a first performance scene according to the present invention. [Figure 8] This is an illustrative diagram showing a second performance scene according to the present invention. [Figure 9] This is a block diagram showing the configuration of the light-emitting device according to the present invention. [Figure 10] This flowchart shows the process for staging a performance scene at a performance venue according to the present invention. [Modes for carrying out the invention]

[0025] The advantages and features of the present invention, and the methods for achieving them, will be described in detail later with the accompanying drawings. This will become clear when referring to the embodiments disclosed below. However, the present invention is not limited to the embodiments disclosed below. It is not limited to this, and can be embodied in a variety of forms that are different from each other. However, this The examples complete the disclosure of the present invention and are relevant to those who are ordinary in the art to which the present invention pertains. This is provided to allow for a complete understanding of the scope of the present invention, and the present invention is as described in the claims. It is merely defined by its category.

[0026] The terms used herein are for illustrative purposes only and do not limit the present invention. This is not intended to be the case. In this specification, the singular form includes the plural form unless otherwise specified. The terms "includes" and / or "includes" as used in specifications. "rising)" implies the presence or addition of one or more other components besides the mentioned components. Addition is not excluded. Throughout the specification, the same reference numerals indicate the same components, and "and / or" includes each and all combinations of one or more of the recited components. For example, even if "first", "second", etc. are used to describe various components, these components are of course not limited by these terms. These terms are used merely to distinguish one component from another. Thus, it goes without saying that the first component referred to below may also be the second component within the technical idea of the present invention. "Or" includes each and all combinations of one or more of the recited components. For example, even if "first", "second", etc. are used to describe various components, these components are of course not limited by these terms. These terms are used merely to distinguish one component from another. Thus, it goes without saying that the first component referred to below may also be the second component within the technical idea of the present invention. "Exemplary" is used in the sense of "used as an example or illustration" in this specification. Any embodiment described as "exemplary" in this specification should not necessarily be construed as preferable or having advantages over other embodiments.

[0027] The term "part" used in the specification means a hardware element such as software, FPGA or ASIC, and the "part" plays a specific role. However, the "part" is not meant to be limited to software or hardware. The "part" may be configured to exist in a storage medium addressable, or may be configured to cause one or more processors to reproduce. Thus, as an example, the "part" includes elements such as software elements, object-oriented software elements, class elements and task elements, and processes, functions, attributes, procedures, subroutines, segments of program code, drivers, firmware, microcode, circuits, data, [[ID= . . . ]] (The original text seems to be incomplete here. The ellipsis indicates that there is more text in the original that is not provided in the question. But based on the provided rules, this is the translation up to the last provided line.) Any embodiment described as "exemplary" in this specification should not necessarily be construed as preferable or having advantages over other embodiments.

[0028] The term "section" used in the specification means a hardware element such as software, FPGA or ASIC, and the "section" plays a specific role. However, the "section" is not meant to be limited to software or hardware. The "section" may be configured to exist in a storage medium addressable, or may be configured to cause one or more processors to reproduce. Thus, the "section" may be, for example, elements such as software elements, object-oriented software elements, class elements and task elements, and processes, functions, attributes, procedures, subroutines, segments of program code, drivers, firmware, microcode, circuits, data, The term "section" used in the specification means a hardware element such as software, FPGA or ASIC, and the "section" plays a specific role. However, the "section" is not meant to be limited to software or hardware. The "section" may be configured to exist in a storage medium addressable, or may be configured to cause one or more processors to reproduce. Thus, the "section" may be, for example, elements such as software elements, object-oriented software elements, class elements and task elements, and processes, functions, attributes, procedures, subroutines, segments of program code, drivers, firmware, microcode, circuits, data, Thus, as an example, the "section" includes elements such as software elements, object-oriented software elements, class elements and task elements, and processes, functions, attributes, procedures, subroutines, segments of program code, drivers, firmware, microcode, circuits, data, <0000,199>Thus, as an example, the "section" includes elements such as software elements, object-oriented software elements, class elements and task elements, and processes, functions, attributes, procedures, subroutines, segments of program code, drivers, firmware, microcode, circuits, data, Thus, as an example, the "section" includes elements such as software elements, object-oriented software elements, class elements and task elements, and processes, functions, attributes, procedures, subroutines, segments of program code, drivers, firmware, microcode, circuits, data, Thus, as an example, the "section" includes elements such as software elements, object-oriented software elements, class elements and task elements, and processes, functions, attributes, procedures, subroutines, segments of program code, drivers, firmware, microcode, circuits, data, Includes databases, data structures, tables, arrays, and variables. Elements and "parts" The functions provided within are combined into fewer elements and "parts," or additional elements. It can be further separated into "ment" and "department".

[0029] Furthermore, all "parts" in this specification are controlled by at least one processor. It is possible that at least one processor can perform the operations performed by the “part” of this disclosure. Cut.

[0030] The embodiments described herein may be described in terms of function or a block that performs a function. Blocks that may be called "sections" or "modules" include logic gates, integrated circuits, and microphones. Processors, microcontrollers, memory, passive electronic components, active electronic components, optical components Ponents, hardwired circuits, etc. Physically embodied by analog or digital circuits, and selectively controlled by firmware and It can be driven by software.

[0031] The embodiments described herein are performed on at least one hardware device and It can also be implemented using a single software program, and a network can be used to control the elements. It can perform work management functions.

[0032] Unless otherwise defined, all terms used herein (including technical and scientific terms) This term is used in a way that can be commonly understood by ordinary articulators in the technical field to which this invention belongs. It can be done. Also, terms defined in commonly used dictionaries are clearly not particularly Unless otherwise defined, it should not be interpreted ideally or excessively.

[0033] The spatially relative terms "below," "beneath," The terms "lower," "above," and "upper" are illustrated. As shown, it is used to easily describe the correlation between one component and other components. It is possible. Spatially relative terms can be expressed in terms of the direction in which they are illustrated, as well as in terms of use or operation. It should be understood as a term that includes the different directions of its constituent elements. For example, illustrated When flipping a component, place it "below" or "directly below" another component. The element described as "below)" is "above" the other element. It can be placed there. Therefore, the exemplary term "down" can refer to both the downward and upward directions. It can include. The constituent elements can also be oriented in other directions, thereby spatially Relative terms can be interpreted based on their orientation.

[0034] The embodiments of the present invention will be described in detail below with reference to the attached drawings.

[0035] Figure 1 shows a schematic configuration of System 1 for creating performance scenes in a performance venue according to the present invention. This is a diagram that illustrates the point.

[0036] Figure 2 is an example showing color information by color number information stored in the master according to the present invention. This is a diagram.

[0037] Figure 3 shows the reference color information for the color palette stored in the master according to the present invention. This is an example diagram showing range information.

[0038] Figure 4 is an illustrative diagram showing the performance effects that are projected onto the audience seating area of ​​a performance venue according to the present invention. ru.

[0039] First, referring to Figure 1, the system for staging performance scenes in a performance venue according to the present invention The system (1, hereinafter referred to as the performance production system) includes a control console device 10 and a transmitter (20a , 20b, ... 20n, hereafter 20) and light-emitting device (30a_1, ... 30a_n, 30b_1 This can include, ..., 30b_n, ...30n_1, ..., 30n_n, and so on (30). Here, "performance venue" refers to venues such as sports stadiums and concert halls. This refers to a place where sporting events, concerts, and other performances actually take place. Therefore, the performance production system 1 has fewer components or more components than those shown in Figure 1. It can include components.

[0040] More specifically, the performance production system 1 uses different lighting effects for each scene of the performance. A control console device 10 that generates and transmits a packet, the control console device 10 A transmitter 20 that transmits data packets received from to the light-emitting device 30, and the transmitter 2 The data packet generated from the control console device 10 is received via 0, It may include multiple light-emitting devices 30 that perform operations for emitting light within data packets.

[0041] In this type of performance production system 1, the control console device 10 controls the illumination status of the light-emitting device 30. By controlling this, various forms of performance production can be created, such as cheering from the audience in the performance venue. It can create various lighting patterns.

[0042] Therefore, the performance production system 1 uses one light-emitting device during performance production at the performance venue. Specify that it is one pixel on the map, and control multiple pixels using a bitmap method. By controlling the light-emitting device 30, it is possible to provide efficient performance scenes. It is possible.

[0043] Furthermore, the performance production system 1 is controlled from the control console device 10 during performance production at the performance venue. Data packets are transmitted to the light-emitting device 30 in real time to show the illumination status of the light-emitting device 30 in real time. By changing to a time-lapse format, it becomes possible to easily provide a variety of dramatic scenes depending on the situation. It is possible.

[0044] In the present invention, the control console device 10 is a light-emitting device for performance effects at a performance venue. It can perform the function of controlling 30. For example, the control console device 10 can control mobile phones, smartphones, etc. Smartphone, laptop computer r), digital broadcasting terminals, PDA (personal digital assistant) nts), PMP (portable multimedia player), navigation Slate PC, tablet PC, Ultrabook, wearable device vice, for example, smartwatch, smart glass (sm Art glass, HMD (head-mounted display), etc. One of the electronic devices, and the installation of an application related to one embodiment and This may include all executable electronic devices, or any of the components of such electronic devices. It can be composed of various forms that include a part of it or can be linked to it.

[0045] Furthermore, the control console device 10 includes MA Lighting grandMA2, gra ndMA3, ETC EOS, ETC ION, ETC GIO, Chroma Q Vis ta, High End HOG, High End Fullboar, Avolites Sapphire Avolites Tiger, Chamsys MagicQ, Ob sidian control systems Onyx, Martin M6, Mart in M1, Nicolaudie Sunlite, ESA, ESA2, Lumides k, SunSuite, Arcolis, Daslight, LightRider, M ADRIX, DJ LIGHT STUDIO, DISCO-DESIGNER VJ ST Electronic devices and PC software such as UDIO, Stagecraft, and Lightkey It could be one of the software programs.

[0046] Furthermore, the control console device 10 provides appropriate software to enable control of the light-emitting device 30. It may include an A or a computer program. For example, it may control the light-emitting device 30. Examples of protocols include DMX512, RDM, Art-Net, sACN, and ETC-Ne It can include t2, Pathport, Shownet, or KiNET, etc. The console device 10 supports DMX512, Art-Net, sACN, ETC-Net2, Data in an appropriate format such as Pathport, Shownet, or KiNET. It can transmit data signals (e.g., data packets). The control console device 10 is equipped with a light-emitting device. To control the device 30, a data packet is generated, and the data packet is sent to the light-emitting device 30. It can be transmitted to.

[0047] Furthermore, the master device (not shown) receives data packets generated from the control console device 10. The transmitter receives the data packet and transmits the received data packet to the transmitter 20, and the transmitter 20 The signal can be transmitted to the light-emitting device 30 inside the performance venue using wireless communication (for example, RF communication).

[0048] Depending on the embodiment, the master device (not shown) can be omitted, and the control console can be omitted. The device 10 directly transmits data packets to the transmitter 20, and the transmitter 20 receives the data packets. It can be sent to the light-emitting device 30.

[0049] The control console device 10 can be equipped with multiple input / output ports. The device 10 supports or relates to a specific data signal format or protocol. It can be equipped with an output port. For example, the control console device 10 has a DMX512, A first port dedicated to RDM data input and output, and Art-Net, sACN, ETC- Dedicated second port for Net2, Pathport, Shownet, and KiNET input / output. It can be equipped with a .

[0050] Here, DMX512, RDM, Art-Net, sACN, ETC-Net2, Pat hport, Shownet, and KiNET protocols are control protocols for stage lighting equipment. It is widely known as [a specific term]. According to the present invention, DMX512, Art-Net, sACN , control programs such as ETC-Net2, Pathport, Shownet and KiNET Tokol can enable more flexible control planning for the light-emitting device 30.

[0051] The control console device 10 generates performance production data in advance from other devices (for example, data generation devices) It can be received from (location) and stored. Here, performance production data is the seating arrangement of the performance. The stage layout can include information about the scenes that will be performed during the show. The seating arrangement diagram for this performance may coincide with the arrangement diagram of the light-emitting device 30.

[0052] Furthermore, the control console device 10 is placed on the layout diagram of the light-emitting device 30, as shown in the video. After overlaying each scene, playback is performed, and the portion of the video in which each light-emitting device 30 is located is shown. The values ​​are extracted, and based on these, data packets are generated and transmitted to each light-emitting device 30. It can be sent.

[0053] Here, the video shows the values ​​displayed on the computer monitor and control console device 10. The format is not stored in the R, G, and B 8-bit format, but in YUV (which also supports black and white television). The data is stored in a format for which the control console device 10 controls the light-emitting device 30. It is possible that the color display method used to show the color and the number of colors that can be displayed are different. .

[0054] That is, the original video in RGB color (the video to be displayed via the light-emitting device 30) The format was changed to YUV (YCbCr) format (the original RGB color video was converted to MP4). (By encoding into video formats such as MPG, MOV, and AVI, the loss occurs.) Information may be generated.

[0055] Specifically, values ​​that exist in RGB 24-bit color coordinates correspond to (exist in) YUV color coordinates. There are values ​​that do not exist, and the range of the color gamut between them may also differ. The conversion formula between them (ITU-R Applying BT.601 may result in loss due to differences in color gamut range. It has the ability to convert RGB 24-bit (256 levels of color representation) to YUV (8-bit bitrate). When converted, it is converted to 225 levels, and an error occurs (quantization error), and this error This could be 13.78%. The image has been converted to YUV (8-bit bitrate) 225 levels. When attempting to restore the image to 256 levels of RGB24bit, again, the quantization between them... The position (quantization error) does not match, resulting in an error, and this error is 12.11%. Therefore, the cumulative error calculated through round-trip conversion between them can be approximately 1.67%. Therefore, if we convert 1.67% back into the magnitude of the value in which the error occurs, it becomes approximately 4.28. If you round up to an integer value, it can become 5. Therefore, if the original value is 5, the maximum If an error occurs, the value restored to RGB after YUV conversion will range from 0 (-5 value) to 10 (+5 value). Errors may occur in values ​​within the range of ). Such errors may occur depending on the conversion formula applied (for example The ITU-R BT.601, ITU-R BT.656, and ITU-R BT.1120 standards It can appear differently depending on the internal conversion formula.

[0056] Therefore, the control console device 10 matches the original RGB2 to the director's intentions. When encoding from 4-bit video to YUV video, if you want to do it at a higher compression level, adjacent pins Because it is processed by merging with Xels, it is affected by the color of adjacent pixels, which can lead to errors. In other words, the color intended by the director may be output as a different color due to errors. Specifically, Depending on the video encoding format, bitrate, resolution, and adjacent pixel values Because the pixel values ​​are interpreted differently each time and stored in the video with lossy compression, the original state There is a risk that it may become impossible to restore the system to its original state.

[0057] For example, the part that is displayed in the original red color (255,0,0 when expressed in RGB) If you try to specify it as color space 0, it will be encoded in YUV and then converted back to RGB. Looking at the original values, the restored red color (represented in RGB as 250, 4, 5) is, The red color may appear differently from the original red color. That is, the restored red color may be The original, intended color may not be accurately represented, and may appear as a altered color.

[0058] As a result, the master (not shown) receives the video from the control console device 10 based on the video. The generated data packet is received, and the color of the error that occurred in the data packet is determined. The color information of the palette can be corrected based on already stored reference color range information.

[0059] First, the master can pre-store multiple predefined color information for the aforementioned video. Here, multiple already defined color information refers to, for example, four already defined color information. It is possible.

[0060] For example, the master selects one scene of the video and assigns the multiple already defined functions to it. It is also possible to direct the scene based on the information provided, and the shape of the scene will be the same as the scene that was directed earlier. While maintaining the original settings, the director arbitrarily changed the colors, and then created several new colors based on those colors. The aforementioned scene can also be created through information. Therefore, even if the scene is the same shape, Different nuances in the melody can create a variety of atmospheres.

[0061] Specifically, the master contains color information for each color number, as shown in Figure 2. It can be stored.

[0062] Here, the color number information can be represented from 0 to 15, and each color number Color information can be represented by RGB values. For example, color number information If it is "0", the color information is "255,255,255 (white)", and the color number information If the report is "1", the color information could be "255,0,0 (red)".

[0063] Subsequently, the master generates data from the control console device 10 based on the video. When a data packet is received, the color palette containing the error in the data packet The color information can be corrected based on already stored reference color range information.

[0064] Specifically, referring to Figure 3, the master already has a color information for the color palette. The submitted reference color range information can be stored in advance. For example, color number information The report is "0", and the reference color to be translated, i.e., the reference color used to correct for errors, is "250, The error range is 250,250 (white), and the correction range for each error (when the correction range is applied) is 245,24 It can be "5,245~255,255,255". Here, the correction range is the error The correction applied to the reference color can range from -5 to +5.

[0065] As an example, the master receives the data packets from the control console device 10. The color information of the color palette where the error occurred is "246,247,248". The reference color range information already stored is "245,245,245~255,255, If it is included in "255", it will be determined that "250,250,250 (white)" has been received. This is translated to the value "0", and as a result the corresponding set of light-emitting devices 30 corresponds to the color palette in Figure 2. It can be made to emit light in the color of the "0" in "T", which is 255,255,255 (white). .

[0066] As another example, referring to Figure 3, the master is based on a color whose color number information is "2". The semi-color 5,250,5 (green) can be stored, and the correction error range value can be stored together in -5 to +5. The master receives the color information of the color palette, "3,2" from the control console device 10. 47.7 (I intended to use green, but an error occurred during the RGB conversion process of the video played on the console) When a data packet containing the value "3,247,7" is received, the color information "3,247,7" is used. However, since it is found within the range of 0.245.0 to 10.255.10, the standard color is 5.250.5 (green). It is determined that a signal has been received, and this is translated into the value "2", and the corresponding set of the light-emitting device 30 is shown in Figure It will emit light in the color 255,50,0 (orange), which is the color "2" in the color palette of 2. It is possible.

[0067] The effect of this is that the master (not shown) is controlled by the control console device 10, and the original Even if a value with an error is received that is not the intended color, the already stored reference color range will still be used. Because errors can be corrected based on ambient information, it has the effect of allowing the director to create the desired effect. It is possible.

[0068] Furthermore, in the present invention, the transmitter 20 is a communication device such as an antenna, and is a control controller The transmitter 20 can transmit data packets received from the sole device 10 to the light-emitting device 30. The control console device 10 receives data packets for controlling the light emission of the light emitter 30. The data packets can then be transmitted to the light-emitting device 30.

[0069] The transmitter 20 is disclosed in a separate device from the control console device 10, but the control console The communication device 10 may include a communication module that performs the same function as the transmitter 20. Therefore, if the control console device 10 includes the communication module, then the transmitter 20 and Performing the same function, the light-emitting device 30 receives data packets from the control console device 10. It can emit light.

[0070] Here, the transmitter 20 can have directivity, and performance The organizer should consider the specifications of the transmitter to be used in the performance and, at the planning stage of the performance, select the transmitter. 20 can be placed. However, due to the physical and technical limitations of the transmitter 20, it may not be possible to position it in some seats. The light-emitting devices can receive data packets sent from different transmitters. More specifically, the light-emitting devices located in some of the seats are transmitted from two or more transmitters to each other. Since it can receive duplicate data packets, from the perspective of the light-emitting device, which data packet It can be difficult to decide whether the light should be emitted in a way that corresponds to the set. However, the limited radio bandwidth Within the width, the light-emitting device 30 can correctly determine the corresponding data packet. The optical device 30 can receive data packets based on the transmitter's identification information. Furthermore, the control unit... The insole device 10 transmits data packets to each of the transmitters 20, By drastically reducing the impact of noise, it is possible to achieve performance effects different from conventional performances. It is possible.

[0071] Furthermore, the transmitter 120 sends data packets to the light-emitting device 30 a predetermined number of times. Yes, it is possible. Generally, the signals sent by transmitter 20 are mostly one-time signals. However, the performance venue is... Because it is a place where many signals with different bandwidths coexist, signals other than data packets Any of these can become noise in a performance. Such noise indicates that the data packets are not functioning correctly. This may interfere with the transmission to the light-emitting device 30. Therefore, the transmitter 20 is predetermined The data packets are sent to the light-emitting device 30 a certain number of times (for example, 5 times per data packet). By transmitting, the light-emitting device 30 can receive the data packet normally. It has that effect.

[0072] Furthermore, in the present invention, the light-emitting device 30 is controlled in real time by the control console device 10. The system, or predetermined data packets, can produce a variety of light emission patterns. It can perform the following functions.

[0073] Here, the light-emitting device 30 includes or includes light-emitting elements / devices such as LCDs and LEDs. A device including any electronic device to which a device is connected and which is capable of wireless communication, in a sports stadium It could become a small cheering item carried by audience members at performance venues such as concerts. As an example, the light-emitting device 30 is a mobile phone, a wireless cheering stick, a lighting stick (STI). ck), lighting bar, lighting ball, lighting This also includes mechanisms equipped with panels and wirelessly controllable light sources. It is possible.

[0074] Furthermore, the light-emitting device 30 includes a lighting device, a receiver, a controlled device, a slave, and a threaded device. It can also be called a light-emitting device. Furthermore, the light-emitting device 30 can be used on parts of the body such as the wrist or chest. This may include wearable devices that can be attached to and / or worn.

[0075] As shown in Figure 1, the first set 2 includes light-emitting devices 30a_1 and 30 a_2, light-emitting device 30a_3, and light-emitting device 30b_1 receive data from transmitter 20a. The first color corresponding to the first set information for the first performance scene within the ket is included in the second set 3. The light-emitting devices 30b_2 and 30b_3, which are embedded in the device, receive data from the transmitter 20a. The colors included in the second set of information for the first performance scene within the kettle are generated to correspond to the colors contained within the second set of information. It can emit light.

[0076] Here, the first set 2 to the Nth set N are light-emitting devices having identification information for the same transmitter 20a. It can mean a set. Therefore, the number of light-emitting devices included in each set can differ from set to set. The first set 2 to the Nth set N are based on the assumption that the light-emitting device 30 is located in the seat. The concert organizer, based on the seating information of the concert venue, will, according to their intention, create a bitmap-formatted pixel It could be something that has been defined and divided into categories.

[0077] The transmitter 120 of the present invention can have directivity. The concert organizer should consider the specifications of the transmitter to be used in the concert and send the information during the concert planning stage. A transmitter 20 can be placed there. Therefore, the light-emitting device 30 identifies the transmitter that has been stored in it in advance. Data packets can be received from transmitter 20 which has identification information corresponding to the information.

[0078] Next, referring to Figure 4, the performance production system 1 is positioned corresponding to each seat in the performance venue. The light-emitting device 30 is defined as one pixel, and the light-emitting device 30 is used in the performance It can realize the desired effect.

[0079] The control console device 10 generates performance production data in advance from other devices (for example, data generation devices) It can be provided by (the storage) and stored, or provided via other storage media or transmission media. It is also possible to receive a gift. In addition, the control console device 10 will publicly display in real time during the performance. It can receive performance and production data and generate corresponding data packets.

[0080] Here, the performance production data may include control information for each scene that is performed during the performance time. To be more precise, the aforementioned performance production data will be used during the performance time at the performance venue, including the use of light-emitting equipment. Depending on the scene (stage) to be staged using the 30, the performance will be staged in sections according to the stage direction. This could be data that constitutes the scene in which the scene appears.

[0081] The control console device 10 receives performance production data from a data generation device (not shown). According to the data, data packets for bitmap control of the light-emitting device 30 can be generated. ru.

[0082] For example, the control console device 10, during the first performance section (for example, the first hour), Generate data packets for one performance scene (e.g., Scene 1), and for the nth performance section. (For example, time n) the data package for the nth performance scene (for example, scene n) It can generate a T.

[0083] Therefore, as shown in Figure 4, if the audience seating is configured within the performance venue, the first During the performance segment, specific text, as shown in Figure 4, is displayed along with different luminous colors depending on the seat in the audience. The first performance scene displayed may be generated. Then, in the nth performance performance section, the first performance scene A different scene from the main screen is generated, such as an nth performance scene where a specific shape or pattern is displayed. It is possible.

[0084] When the control console device 10 controls the light-emitting device 30 using a bitmap, it controls the scene of the performance separately. The light-emitting device 30 is arranged in different ways to form various sets, and these sets are arranged in various forms. A variety of theatrical scenes can be created through the integrated light-emitting device 30.

[0085] As an example, the control console device 10 provides a light-emitting device 30 located in one area A. When transmitting a data packet, the first to Nth sequences are used to create the first performance scene for area A. It can contain the entire set of information, including the set information itself.

[0086] Here, the light-emitting device 30 that forms the first set 401 corresponding to the first set information is in the first color It can emit light to represent the first text, "2". It also corresponds to the second set of information. The light-emitting device 30 forming the second set 402 emits light in the second color and displays the second text, "2". It can represent the background.

[0087] Figure 5 is a block diagram showing the configuration of the control console device 10 according to the present invention.

[0088] Figure 6 is an example showing data packets generated by the control console device 10 according to the present invention. This is a diagram.

[0089] Figure 7 is an illustrative diagram showing a first performance scene according to the present invention.

[0090] Figure 8 is an illustrative diagram showing a second performance scene according to the present invention.

[0091] Figure 9 is a block diagram showing the configuration of the light-emitting device 30 according to the present invention.

[0092] The control console device 1 of the public performance system 1 according to the present invention is shown below through Figures 5 to 9. When describing the configuration and operation of the 0 and the light-emitting device 30, the control console device 10 is one transmitter This will be described as controlling a light-emitting device 30 located in one area via 20.

[0093] First, referring to Figure 5, the control console device 10 consists of a first communication unit 110 and a first memory It may include 120 and the first processor 130. The components shown in Figure 5 are Since it is not essential for realizing the control console device 10, it is not described herein. The control console device 10 has more or fewer components than those described above. It is possible.

[0094] The first communications unit 110 includes a transmitter 20 and wireless communication terminals (for example, smartphones) held by spectators. (Not shown), light-emitting device 30 or data generation device (Not shown) and wired or wireless communication It may include one or more modules that enable the following: Includes one or more modules that connect the console device 10 to one or more networks. It is possible.

[0095] The first memory 120 can be configured to include a cache, buffers, etc. Data received from or generated by the processor 130 or data generation device (not shown) It can store data. In one embodiment, the first memory 120 is a data generation device (not shown) It can store performance production data generated by [the system].

[0096] The first processor 130, based on the performance production data stored in the first memory 120, In the relevant performance section, data packets corresponding to the performance scene of each scene are generated, and the generated data packets are generated The data packets can be transmitted to the transmitter 20. Alternatively, the first processor 130 can The generated data packets can be transmitted to the light-emitting device 30. Alternatively, the first process The 140 is at least two or more of the components included in the control console device 10. These can be combined and operated together.

[0097] More specifically, the first processor 130 controls the lighting operation according to the performance scene. It can generate data packets and transmit them in real time during a performance.

[0098] Referring to Figure 6, the data packet contains index information 610, color It includes at least one of the following: palette information 620 and some aggregate information 630. It is possible.

[0099] First, the index information 610 is at least one area that constitutes the first performance scene. It may include some set information for that.

[0100] That is, the index information 610 is the collection of a part of the first performance scene The location information of each of the first to Nth set of information within the data packet in the report. It can include...

[0101] More specifically, the index information is used in a specific area of ​​the first performance scene. The positional information of each of the aforementioned aggregate pieces of information that constitutes a part of the scene can be included. Here, the location information of each of the aforementioned aggregate information is in the data packet. This may represent the location of some of the aforementioned set of information.

[0102] In other words, the index information 610 is used to describe the performance in a specific area of ​​the first performance scene. In the data packets used to create the scene, a portion of the aggregated information In the location information 611 of the first aggregate information or in some of the aggregate information of the data packets It can include location information of the Nth set of information.

[0103] Next, the color palette information 620 includes color information for representing the first performance scene. It is possible.

[0104] More specifically, the color palette information 620 is used in the first performance scene. At least one piece of color information can be arranged in numerical order. Therefore, the light-emitting device 30 can be arranged in numerical order. Based on the information, it will emit light in at least one color for each stage scene, representing the stage scenes of the performance. It can be expressed.

[0105] In other words, the color palette information is displayed in a specific area of ​​the first performance scene. Of the aforementioned set of information for forming a part of the scene, the first set of information that should emit light 1. Color information 621 or the Nth set of information from the aforementioned partial set of information, the Nth color to be emitted - It can contain information.

[0106] Next, some of the collective information 630 is each of the collective information that constitutes the first performance scene This can include color number information.

[0107] More specifically, the aforementioned aggregate information is used in the first performance scene, at least one The color information may include the number information of the aforementioned color palette.

[0108] In other words, the aforementioned aggregate information is a scene performed in a specific area of ​​the first performance scene. Among the set information of a part that constitutes the part, the first set information that should emit light Among the number information 631 of the light information and the aforementioned partial set information, the Nth set information should emit light. It can include number information for the Nth color information.

[0109] As an example, referring to Figure 7, the aforementioned collection of information that constitutes the first performance scene is A section of the entire set of information constituting the first performance scene that is transmitted via one transmitter 20 Data packets relating to a collection connected in various forms to the light-emitting device 30 located in the region. The above information may be relevant.

[0110] If the aforementioned performance venue is divided into areas A to H, the first performance scene is located in area A: L appears in area B, O in area C, V in area D, and E in area F. Half a heart shape appears in each of the two areas, and half a heart shape appears in both the G and H areas. obtain.

[0111] Here, a control console device 10 is connected to area A via a transmitter 20. When transmitting the data packet, the data packet contains the first performance scene This may include some aggregated information about area A.

[0112] Specifically, during the performance of the first performance scene, some of the aggregated information relating to area A is first It can include set information 701, second set information 702 to the Nth set information, and each Each set of information can be different or can be grouped into the same form, and each set of information contains The pixels are defined in a way that allows the light-emitting devices 130 to be grouped together so that they do not overlap.

[0113] As another example, referring to Figure 8, the aforementioned collection of information that constitutes the second performance scene is The entire set of information constituting the second performance scene is transmitted via one transmitter 20. Data packets relating to a collection connected in various forms to the light-emitting device 30 located in the area This could be information from the internet.

[0114] If the aforementioned performance venue is divided into areas A to H, the second performance scene is located in area A to H. A smiley face illustration may appear throughout area H.

[0115] Here, via one transmitter 20 connected to area A, the control console device 1 When 0 transmits the data packet, the data packet contains the first performance scene and This may include some aggregate information relating to area A, which constitutes a different second performance scene.

[0116] Specifically, some of the aggregate information relating to area A is the first aggregate information 801 and the second aggregate information 801 in Figure 8. It can include set information 802 to the Nth set information, and each set information is different It can be grouped into the same form, and each set of information is included and defined in pixels. The light-emitting devices 130 can be arranged so that they do not overlap.

[0117] On the other hand, the first processor 130 considers the color palette information as a percentage of the data packet. The signal can be reduced in size and transmitted to the light-emitting device 30.

[0118] As an example, the first processor 130 performs the following for the colors included in the color palette information Instead of using 8-bit, 8-bit, and 8-bit for each of the RGB values, use 5-bit, 5-bit for each. It can be compressed to 5 bits. That is, the first processor 130 reduces the color depth, for example to 8 bits. By compressing the color of t to 6 bits and generating the data packet, the scene display This allows for a reduction in the number of data packets transmitted.

[0119] As another example, the first processor 130 determines the colors that the light-emitting device 30 can support. Let's define and store the index color (for example, 8 bits) in Ri120 and then try to create an effect. By including the desired color as an index color value in the color palette and transmitting it, RG The total color value of B is not 24-bit data, but is transmitted as 8 bits or less. By reducing the size of the socket, wireless bandwidth can be used more effectively.

[0120] As another example, the first processor 130 uses similar colors for each of the entire performance scenes. Change each of the scenes to one color, and apply the same color to each of the entire scenes in the performance sequence. Then, by applying a dithering technique, the size of the color palette information can be reduced.

[0121] As another example, the first processor 130 processes the high-resolution field included in the performance production data. Instead of transmitting all pixels on a surface, four pixels within a pre-defined range are transmitted. The first processor can process six pixels together into one color. 130 is matched with 4 or 6 pixels within the already set range. The light-emitting device 30 can generate data packets so that they emit the same color light.

[0122] As another example, the first processor 130 provides the index relating to the first performance scene. A first data packet containing information and some of the aggregated information, and the color palette information By synchronizing and transmitting the second data packet, the large data packet size The size can be reduced.

[0123] As another example, the first processor 130 processes the first color particles used in the first performance scene. If the red information and the second color palette information used in the second production scene are different, Only include the second color palette information, which differs from the first color palette information, in the data packet. This can be transmitted to the light-emitting device 30.

[0124] Next, referring to Figure 9, the light-emitting device 30 includes a second communication unit 310, a second memory 320, and It may include an optical unit 330 and a second processor 340. Components shown in Figure 9 Since it is not essential for realizing the light-emitting device 30, the light-emitting described herein The device 30 may have more or fewer components than those described above. .

[0125] More specifically, among the above components, the second communication unit 310 is connected to the control console device 10, The communication device 20 or a wireless communication terminal (e.g., a smartphone) (not shown) held by a spectator is not connected to the device. It may include one or more modules that enable line communication. Also, the second communication unit 310 This includes one or more modules that connect the light-emitting device 30 to one or more networks. It is possible.

[0126] The second communication unit 310 communicates with various types of external devices using various types of communication methods. Communication is possible. The second communication unit 310 has a Wi-Fi chip and a Bluetooth® chip. It may include at least one of the following: a wireless communication chip, or an NFC chip.

[0127] According to the mobile communication technologies described herein, technical standards or communication methods (e.g., GSM (G lobal System for Mobile communication), CDM A(Code Division Multi Access), CDMA2000(Co de Division Multi Access 2000), EV-DO(Enhan ced Voice-Data Optimized or Enhanced Voice- Data Only), WCDMA (Registered Trademark) (Wideband CDMA), HSD PA (High Speed ​​Downlink Packet Access), HSUP A (High Speed ​​Uplink Packet Access), LTE (Lon g Term Evolution), LTE-A(Long Term Evolution) On a mobile communication network built by n-Advanced, etc., base stations and external terminals It transmits and receives wireless signals with at least one of the external servers.

[0128] Furthermore, wireless internet technologies in this specification include, for example, WLAN (Wireless Internet Network). eless LAN), Wi-Fi (Wireless-Fidelity), Wi-Fi ( Wireless Fidelity Direct, DLNA (registered trademark) (Digi tal Living Network Alliance), WiBro(Wirele ss Broadband), WiMAX (World Interoperability) y for Microwave Access), HSDPA (High Speed ​​D ownlink Packet Access), HSUPA (High Speed ​​Up link Packet Access), LTE (Long Term Evolution n), LTE-A (Long Term Evolution-Advanced), etc. ru.

[0129] Furthermore, the short-range communication technology described herein is Bluetooth® (registered trademark). ooth TM RFID(Radio Frequency Identification) Infrared data association (IrDA), UW B (Ultra Wideband), ZigBee, NFC (Near Field C) ommunication), Wi-Fi (Wireless-Fidelity), Wi -Fi Direct, Wireless USB (Wireless Universal Supports short-range communication using at least one of the Serial Bus technologies. The ability to provide technology.

[0130] The second memory 320 is a local storage medium that supports the various functions of the light-emitting device 30. The second memory 320 can be driven by the light-emitting device 30 for a number of applications. Gram (application program or application (applic It can store data and command words for the operation of the light-emitting device 30. At least part of the application program communicates with an external server via wireless communication. It can be downloaded. The application program is stored in the second memory 320. The second processor 340 is installed on the light-emitting device 30 and controls the light-emitting device 30 It can be driven to perform an action (or function).

[0131] Furthermore, the second memory 320 of the present invention remains functional even when the power supplied to the light-emitting device 30 is cut off. The data must remain and be writable and non-volatile so that changes can be reflected. This can be provided in memory (Writable ROM). That is, the second memory 32 0 represents flash memory, EPROM, or EEPROM. It can be provided by any one of the following. For the sake of explanation in this invention, one of the following It is explained that all instruction information is stored in 2 memory 320. However, the light-emitting device 30 may be equipped with multiple memories.

[0132] Furthermore, the second memory 320 of the present invention controls the light-emitting device 30 by bitmap control. Control-related information can be stored in this manner.

[0133] In this invention, control-related information is used to control the light-emitting device 30 by bitmap control. Therefore, it can include information that is essential to store in the second memory 320. For example The second memory 320 is a set relating to each of the aforementioned performance scenes for bitmap control. It can store information.

[0134] Furthermore, the second memory 320 can also store seat information for tickets held by spectators. Yes, it is possible. When a large number of people gather at the performance venue, certain lighting devices will change their lighting patterns. There is a risk that the control-related information necessary for emitting light in the corresponding way may not be stored correctly. , A specific light-emitting device requires individual control at the control console device 10 until normal control-related information is received. The control console device 10 can send a data packet that controls only the specific light-emitting device via the transmitter 20.

[0135] Specifically, the seat information of the ticket stored in the second memory 320 can include at least one of the seat information displayed on the ticket (e.g., seat A1), the position information of the corresponding seat among the seats in the performance venue (e.g., the GPS information of the corresponding seat), and the identification information of the corresponding seat (e.g., the seat located at the upper leftmost among 5,000 seats when generating the performance production data is "1"). ]

[0136] Here, the control-related information can be input into the light-emitting device 30 at the production stage of the light-emitting device 30 or through the terminal (e.g., smartphone) of the spectator who holds the light-emitting device 30 after entering the performance venue.

[0137] The spectator can electrically connect the terminal he / she holds to the light-emitting device 30 and download the control-related information for the performance production from an external server via the application installed on the terminal and store it in the second memory 320. The electrical connection can be made by short-range wireless communication or physical connection between the terminal and the light-emitting device 30.

[0138] Also, as an embodiment, the control-related information can be input during the ticket confirmation process before entering. Specifically, the spectator can perform the confirmation stage of the performance ticket before entering the performance venue. In this case, the performance staff can, via an information confirmation device (not shown), include in the ticket ​​​​​​​​​​It receives electronic code information (in other words, barcodes, QR codes) (Registered trademark) Reads via RFID, NFC, ticket information values ​​stored in the device, etc. The second is provided to the light-emitting device 30 with location information corresponding to the information that can be obtained and related control information, It can be stored in memory 320. In this case, the information verification device is connected to an external server (not shown) Through communication, or during the planning stage of the performance, location information and related control information can be stored in advance. The electronic code information is the content of the notification received on the spectator's device when purchasing the ticket. Information contained in MMS, email, application push messages, etc. You can also obtain it from there.

[0139] Furthermore, the information verification device may include an electronic device such as a kiosk (not shown). It may include. In this case, the audience will perform the performance ticket verification process directly via the kiosk. The kiosk receives the electronic code information contained in the ticket and uses the electronic code information to The corresponding position information and related control information are provided to the light-emitting device 30 and stored in the second memory 320. It can be stored. In this case, the kiosk communicates with an external server (not shown), or publicly Location information and related control information can be stored in advance during the planning stage of the performance.

[0140] Here, the control-related information mentioned above may be information included in the performance production data. .

[0141] The light-emitting section 330 may include one or more light source elements, for example, a light-emitting diode Light-emitting diodes (LEDs), etc., can be used. Furthermore, the light-emitting unit 330 can output light of various colors based on RGB color information using a light source element. 。

[0142] The second processor 340 can receive the data packet from the control console device 10 and perform operations for light emission within the data packet. Also, the second processor 340 can operate at least two or more of the components included in the light emitting device 30 in combination with each other. 、前記発光装置30に含まれている構成要素のうちの少なくとも2つ以上を互いに組み合 わせて動作させることができる。

[0143] Based on the set information already stored for each of the performance scenes, the second processor 340 can cause the light emitting unit 330 to emit light in a first color corresponding to first set information regarding a first performance scene within the data packet. 基に、前記データパケット内の第1演出場面に関する第1集合情報に対応する第1カラー に発光部330を発光できる。

[0144] More specifically, the second processor 340 can confirm the number information of a first color corresponding to the first set information among the partial set information based on the position information of the first set information in the received data packet. The second processor 340 can confirm first color information corresponding to the number information of the first color among the color palette information, and cause the first color corresponding to the confirmed first color information to emit light via the light emitting unit 330. 情報の位置情報を基に、前記一部の集合情報のうちの前記第1集合情報に該当する第1カ ラーの番号情報を確認できる。第2プロセッサ340は、前記カラーパレット情報のうち の前記第1カラーの番号情報に該当する第1カラー情報を確認し、前記確認された第1カ ラー情報に該当する第1カラーを、前記発光部330を介して発光できる。

[0145] Also, the second processor 340 can temporarily store the first color palette information within the received data packet. If the second color palette information within a subsequently received data packet is different from the first color palette information already stored, the second processor 340 can update the first color palette information based on the second color palette information. 情報を臨時的に格納できる。第2プロセッサ340は、その後に受信したデータパケット 内の第2カラーパレット情報が既に格納された前記第1カラーパレット情報と異なる場合 、前記第2カラーパレット情報を基に前記第1カラーパレット情報にアップデートできる 。

[0146] FIG. 10 is a flowchart showing a process for producing a performance scene at a performance venue according to the present invention. It is.

[0147] Each step of the process for staging a performance scene according to the present invention involves a control console device 10, a transmitter 20. This can be carried out by a performance production system 1 including a light-emitting device 30.

[0148] The following describes the operation using the control console device 10, transmitter 20, and light-emitting device 30, with reference to Figure 10. This section will provide a detailed explanation focusing on the process of directing performance scenes.

[0149] The embodiments described for the control console device 10, transmitter 20, and light-emitting device 30 are public It can be applied to performance and staging methods in some or all ways, and conversely, it can be used to explain performance and staging methods. The contents described concern the control console device 10, the transmitter 20, and the light-emitting device 30. It is applicable in part or in whole. Furthermore, the performance scenes will be staged according to the disclosed content. The process for doing so involves the control console device 10, transmitter 20 and light-emitting device disclosed herein. This is carried out by setting 30, and the embodiments are not limited to, and can take various forms. This can be performed by electronic devices.

[0150] First, the control console device 10 adjusts the performance based on the stored performance production data. Data packets for light emission can be generated for each scene of the performance (S1001).

[0151] The aforementioned performance production data is generated during the planning stage of the performance using a data generation device (not shown) or an external server. It is generated (not shown) and provided to the control console device 10 for storage. Alternatively, The control console device 10 receives performance production data in real time during the performance, and It can generate corresponding data packets.

[0152] Specifically, the data generation device (not shown) generates data for each performance section (performance scene) The generated sets of information are mapped to the seat information within the audience seating area. The information can be organized into performance production data for each section of the performance.

[0153] As an example, a data generation device (not shown) has multiple collections corresponding to the performance information for each section. Performance production data can be constructed by mapping the performance. Here, the performance production data is the performance seats A seating chart can contain information about the scenes performed during the show. That is, Light-emitting devices 30, each having the same collective information for each performance section, have the same light-emitting state information for each other. It may also include the following: Light-emitting devices 30 having the same set information for each performance section They can be different from each other. For example, in the first performance section (first performance scene), the first collective information The light-emitting device is set to the second group information during the second performance section (second performance scene). In other words, the luminous equipment belonging to the first group in the first performance section (first performance scene) The placement and the lighting devices belonging to the group in the second performance's staging section (second performance's staging scene) are different from each other. It is possible.

[0154] The control console device 10 uses the performance production data described above to control each of the performance venues The light-emitting device 30, which is positioned in accordance with the seat, can be controlled in bitmap format, and such control Data packets can be generated for this purpose.

[0155] Next, the control console device 10 can transmit the data packets to the transmitter 20 (S 1002).

[0156] The control console device 10 receives data packets sent by each transmitter from the transmitter 20. It can transmit. At this time, the data packets transmitted to each transmitter are either identical or per transmitter. It can differ.

[0157] The transmitter 20 receives the data packets from the control console device 10 and outputs them The signal can be transmitted to the optical device 30 (S1003).

[0158] The light-emitting device 30 receives the data packet from the control console device 10, and The system can perform the operation for light emission within the data packet (S1004).

[0159] Here, the light-emitting device 30 is pre-configured to determine which set of lights corresponds to each staged scene before the performance begins. It can store set information regarding which it belongs to. For example, the light-emitting device 30 is , installed on the information confirmation device (e.g., kiosk) or on a terminal held by the audience A created application program (application program or app) Collective information for bitmap control via application It can receive and store the data. That is, the aggregate information of the light-emitting device 30 is received at the ticket verification stage. The data is input and stored via the aforementioned kiosk, or via an application on a wireless communication terminal held by the audience. It can be input and stored via a sequence.

[0160] In this case, the emission state information (for example, color information using RGB, etc.) is obtained from the pre-stored information. It may be excluded. Collective information is a collection of light-emitting devices 30 that are controlled to the same color at a specific moment or scene. This could mean...

[0161] Specifically, the light-emitting device 30 receives data packets from the transmitter 20, and the data packets The identification information of the transmitter 20 included in the system is compared with the identification information of the transmitter already stored. This allows you to verify the transmitter's identification information.

[0162] Therefore, the light-emitting device 30 uses the already stored transmitter identification information and the received data packet. The identification information of the transmitter 20 included in the package is compared with the received information, and if the two are identical, It can emit light in a color corresponding to the set information for each performance scene contained in the data packet.

[0163] Figure 10 shows that steps S1001 to S1004 are executed sequentially, This is merely an illustrative explanation of the technical concept of this embodiment, and this embodiment is Anyone with ordinary skill in the relevant technical field should be able to deviate from the essential characteristics of this embodiment. Either modify and execute the procedure shown in Figure 10 within the limits of not escaping, or steps S1001 to S By executing one or more of the 1004 steps in parallel, various modifications and transformations can be performed to suit the situation. Since it is possible to use them, Figure 10 is not limited to a chronological order.

[0164] The process for staging a performance scene according to the present invention is read by a machine. One or more stored in a storage medium (for example, memory) It can be embodied as software that includes the above instructions. For example, the device's process For example, processors 130 and 340 retrieve one or more stored instances from the storage medium. It can call and execute at least one instruction from the traction. The device is called by at least one instruction and at least one machine To enable operation to perform the function. The one or more instructions are Includes code generated by an interpreter or code that can be executed by an interpreter. This is possible. The storage medium that can be read by the device is non-transitory. It may be provided in the form of a storage medium. Here, "non-temporary storage medium" is an actual existing ( It is a tangible device and does not contain signals (e.g., electromagnetic waves). This simply means that the data is stored semi-permanently on the storage medium. There is no distinction made between cases where data is stored permanently and cases where it is stored temporarily. For example, "non-temporary storage medium" is It may include a buffer where data is temporarily stored.

[0165] The process for staging the performance scene according to the present invention described above is a computer program It may be included and provided as part of a computer program product. Computer program products can be traded as goods between sellers and buyers. Computer program products are stored on a device-readable storage medium (for example, compact digital media). It will be distributed in the form of read-only memory (CD-ROM), or as an app. via a referral store (e.g., Play Store™), or between two user devices ( For example, direct online distribution (for example, download) between smartphones. (or uploaded) may be distributed online as a computer program product. For example, at least one downloadable app The part is the memory of the manufacturing company's server, the application store's server, or the relay server. It is either temporarily stored or temporarily generated on a storage medium that can be read by such a device. It is possible.

[0166] Although embodiments of the present invention have been described above with reference to the attached drawings, in the technical field to which the present invention belongs A typical engineer would not change the technical concept or essential features of the present invention. It should be clear that this can be implemented in specific forms. Therefore, the implementation described above Examples should be understood as illustrative and non-restrictive in every respect.

Claims

1. A control console device that generates and transmits data packets for lighting operations according to the staging scene of the performance, The system includes a plurality of light-emitting devices that receive the data packets from the control console device and perform operations for emitting light within the data packets, Each of the aforementioned plurality of light-emitting devices is Based on the aggregate information relating to each of the aforementioned performance scenes already stored, the data packet emits light in a color corresponding to the first aggregate information included in a portion of the aggregate information constituting the first performance scene. The control console device, Each scene of the video is overlaid and played on the arrangement diagram of the multiple light-emitting devices. The values ​​of the portion where the multiple light-emitting devices are located are extracted from the aforementioned video. Based on the extraction results, a data packet is generated that includes index information containing some of the collective information constituting the first performance scene, and color palette information containing color information to be emitted by the first collective information representing the first performance scene. A bitmap control system for performance scene production, which transmits the aforementioned data packets to each of the multiple light-emitting devices in real time during the performance.

2. The aforementioned data packet is The bitmap control system for performance scene staging according to claim 1, characterized in that it includes color number information for the set of information of a part that constitutes the first performance scene.

3. The control console device, The bitmap control system for performance scene production according to claim 1, characterized in that when transmitting the data packets to a light-emitting device located in a specific area of ​​the performance venue, it is configured to store light emission information of a light-emitting device for producing the first performance scene in the specific area.

4. The control console device, The system stores light emission information for a light-emitting device that produces a second performance scene different from the first performance information in the specified area. The bitmap control system for performance scene staging according to claim 3, characterized in that the data packet corresponding to the second performance scene is configured to include another set of information that constitutes the second performance scene.

5. The bitmap control system for performance scene staging according to claim 4, characterized in that the other partial set information constituting the second performance scene includes a plurality of set information, and the light-emitting devices defined by pixels included in each of the plurality of set information are grouped so as not to overlap.

Citation Information

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