Wireless Lighting Control System
The wireless lighting control system addresses the challenge of creating systematic lighting patterns by remotely controlling groups of lighting devices with smart devices, enhancing cheering effects in low illuminance environments through synchronized lighting and display units.
Patent Information
- Application Number
- JP2023121990
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2015-06-18
- Filing Date
- 2023-07-26
- Publication Date
- 2025-11-13
- Estimated Expiration
- 2036-06-17
AI Technical Summary
Existing lighting systems struggle to create systematic lighting patterns and enhance cheering effects in low illuminance environments, such as sporting events and concerts, due to individual control of multiple lighting fixtures.
A wireless lighting control system that remotely controls multiple lighting devices in groups through a master-slave configuration, utilizing smart devices to transmit group-specific control pattern information, including lighting and display settings, and integrates a server for mapping user seat information and content distribution.
Enables the generation of various lighting patterns and enhanced visual cheering effects by synchronizing lighting and display units across multiple devices, improving the overall lighting experience.
Smart Images

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Abstract
Description
[Technical Field]
[0001] The present invention relates to a wireless lighting control system, and more particularly to a wireless lighting control system that can remotely control multiple lighting devices to generate lighting patterns and improve lighting effects. [Background technology]
[0002] Generally, a lighting device is a device that reflects, refracts, and transmits light from a light source to achieve the purpose of illumination. Lighting devices can be classified into indirect lighting devices, semi-indirect lighting devices, general diffused lighting devices, semi-direct lighting devices, and direct lighting devices according to the light distribution.
[0003] With the development of technology, lighting devices are now used for a variety of purposes. For example, lighting devices are used to create a media facade. A media facade is a building that has lighting devices attached to its exterior wall to realize media functions.
[0004] As another example, lighting devices are used as small cheering props at sporting events or concerts held in environments below a certain level of illuminance. However, in such environments, multiple lighting fixtures are individually controlled, making it difficult to create systematic lighting patterns or shapes. Furthermore, it is not easy to achieve the desired cheering effect simply by using the light sources arranged in the lighting device. Summary of the Invention [Problem to be solved by the invention]
[0005] Therefore, the present invention has been made in consideration of the above circumstances, and an object of the present invention is to provide a wireless lighting control system that can remotely control multiple lighting devices in groups to generate lighting patterns and improve lighting effects. [Means for solving the problem]
[0006] In order to solve the above-mentioned problems, a wireless lighting control system according to one embodiment includes a first lighting device electrically connected to a first smart device and operating as a master, and a plurality of second lighting devices electrically connected to a plurality of second smart devices and operating as slaves, respectively. When groups and group-specific control pattern information for lighting control are set in the first smart device, the first lighting device transmits the group-specific control pattern information to the plurality of second lighting devices via a wireless communication method, and at least one of the lighting units of the plurality of second lighting devices and the display units of the plurality of second smart devices is controlled based on the group-specific control pattern information.
[0007] The control pattern information includes at least one of control pattern information regarding a lighting unit of the second lighting device and control pattern information regarding a display unit of the second smart device.
[0008] The control pattern information regarding the lighting unit of the second lighting device includes at least one of lighting color, lighting brightness, lighting on time, lighting off time, and lighting blinking speed, and the control pattern information regarding the display unit of the second smart device includes at least one of screen color, screen brightness, screen display start time, screen display end time, screen blinking interval, and identification information of content to be displayed on the screen.
[0009] The present invention further includes a server that maps identification information of the second lighting devices, identification information of the second smart devices, and seat information where users of the second smart devices are located onto a seating plan based on mapping request signals received from the second smart devices, respectively, and transmits a mapping completion signal to the first smart device.
[0010] The second smart device receives the seat information directly from the user of the second smart device, acquires the seat information from a barcode printed on an admission ticket, or acquires the seat information from a wireless communication tag attached to the seat.
[0011] If the control pattern information includes content identification information to be displayed on the display unit, the second smart device transmits a content request signal to the server and receives the content from the server.
[0012] When the first lighting device detects an electrical connection with the first smart device, the first lighting device transmits a confirmation request signal to the first smart device to confirm whether a lighting control application is installed, and the first smart device transmits an application request signal to a server and receives the lighting control application from the server. [Effects of the Invention]
[0013] According to the present invention, it is possible to control a plurality of lighting devices by group, thereby generating a variety of lighting patterns for sporting events, concerts, etc., thereby improving the cheering effect through the various lighting patterns.
[0014] The lighting effect can be enhanced because the lighting pattern can be generated by utilizing the resources of the lighting device and the resources of the smart device linked to the lighting device. [Brief explanation of the drawings]
[0015] [Figure 1] 1 is a diagram illustrating a configuration of a wireless lighting control system according to an embodiment. [Figure 2] FIG. 2 is a diagram illustrating a configuration of a first lighting device illustrated in FIG. [Figure 3] FIG. 2 is a diagram showing the configuration of a first smart device shown in FIG. [Figure 4] 4 is a flowchart illustrating an operation of the wireless lighting control system according to the embodiment. [Figure 5] 4 is a flowchart illustrating an operation of the wireless lighting control system according to the embodiment. [Figure 6] 5 is a diagram illustrating an example of a lighting control screen displayed through the second smart device in steps S455 and S460 of FIG. 4. [Figure 7]5. FIG. 6 is a diagram illustrating an example of a lighting control screen displayed through the first smart device in steps S485 to S495 of FIG. DETAILED DESCRIPTION OF THE INVENTION
[0016] The advantages and features of the present invention, as well as methods for achieving them, will become clearer with reference to the following detailed description of the embodiments in conjunction with the accompanying drawings. However, the present invention is not limited to the embodiments disclosed below, and may be realized in various other different forms. However, the present embodiments are provided to complete the disclosure of the present invention and to allow those skilled in the art to fully understand the scope of the invention, and the present invention is defined only by the scope of the claims.
[0017] Unless otherwise defined, all terms (including technical and scientific terms) used in this specification can be used as meanings that can be commonly understood by those having ordinary skill in the art to which the present invention belongs. Furthermore, terms defined in commonly used dictionaries should not be interpreted ideally or excessively unless they are clearly and specifically defined.
[0018] The terms used in this specification are for the purpose of describing embodiments and are not intended to limit the present invention. In this specification, the singular form includes the plural form unless otherwise specified. The words "comprises" and / or "comprising" used in this specification do not exclude the presence or addition of one or more other elements other than the elements mentioned.
[0019] DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS Hereinafter, embodiments of the present invention will be described with reference to the accompanying drawings, in which the same reference numerals indicate the same elements.
[0020] FIG. 1 is a diagram showing the configuration of a wireless lighting control system 1 according to an embodiment.
[0021] 1, a wireless lighting control system 1 according to one embodiment includes a plurality of lighting devices 100A, 100B, 100C, and 100D, a plurality of smart devices 200A, 200B, 200C, and 200D, a network 300, and a server 400. The plurality of lighting devices 100A, 100B, 100C, and 100D include a first lighting device 100A operating as a master and second lighting devices 100B, 100C, and 100D operating as slaves. The first lighting device 100A is electrically connected to the first smart device 200A, and the second lighting devices 100B, 100C, and 100D are electrically connected to the second smart devices 200B, 200C, and 200D. Hereinafter, for convenience of explanation, the first lighting device 100A and the second lighting devices 100B, 100C, and 100D will be referred to as "lighting device 100", and the first smart device 200A and the second smart devices 200B, 200C, and 200D will be referred to as "smart device 200".
[0022] The lighting device 100 refers to a device that fixes or protects a light source by reflecting, refracting, or transmitting light from the light source. Such a lighting device 100 may have various shapes. For example, the lighting device 100 may have a rod shape so that it can be held by a user. For another example, the lighting device 100 may have a shape that can be worn on a part of the user's body.
[0023] According to the embodiment, the lighting device 100 can detect an electrical connection with the smart device 200. When the electrical connection with the smart device 200 is detected, the lighting device 100 transmits and receives data and / or signals to and from the smart device 200. For example, the lighting device 100 transmits a confirmation request signal to the smart device 200 to confirm whether a lighting control application is installed on the smart device 200.
[0024] In another example, the lighting device 100 receives group-specific control pattern information for the lighting device operating as a slave from the smart device 200. A more detailed description of the configuration of the lighting device 100 will be given later with reference to FIG.
[0025] The smart device 200 may be electrically connected to the lighting device 100. The smart device 200 electrically connected to the lighting device 100 transmits and receives data and / or signals to and from the lighting device 100. For example, the smart device 200 receives a confirmation request signal from the lighting device 100 to confirm whether a lighting control application is installed, and transmits group-based control pattern information for the lighting devices operating as slaves to the lighting device 100.
[0026] The smart device 200 may also communicate with the server 400 via the network 300. According to an embodiment, the smart device 200 transmits at least one of an application request signal requesting a lighting control application, a mapping request signal, and a content request signal to the server 400, and receives at least one of a lighting control application, a mapping completion signal, and the requested content from the server 400.
[0027] Meanwhile, once the installation of the lighting control application received from the server 400 is complete, the smart device 200 configures and displays a lighting control screen. When the lighting control screen is displayed, the user can set groups for the lighting devices operating as slaves, set control patterns for each group, and input various commands and information related to lighting control.
[0028] The smart device 200 as described above may include communication devices such as smartphones and tablets. However, the smart device 200 is not necessarily limited to the communication devices illustrated, and any communication device having wireless communication and display functions may be included in the smart device 200. A more detailed description of the configuration of the smart device 200 will be provided below with reference to FIG. 3.
[0029] The server 400 communicates with the lighting device 100 and the smart device 200 via the network 300. For example, the server 400 receives an application request signal from the smart device 200 and transmits a lighting control application to the smart device 200 in response. For another example, the server 200 receives a mapping request signal from the smart device 200 and transmits a mapping completion signal to the smart device 200. The mapping request signal is a signal requesting mapping of the lighting device 100's identification information, the smart device's identification information 200, and the user's seat information. For yet another example, the server 400 receives a content request signal from the smart device 200 and transmits the requested content to the smart device 200. The content may include text, images, and videos.
[0030] The configuration of the wireless lighting control system 1 according to one embodiment has been described above with reference to Fig. 1. Fig. 1 illustrates an example in which a lighting control application is distributed to the smart device 200 by the server 400. According to another embodiment, the lighting control application may be distributed to the smart device 200 by the lighting device 100.
[0031] FIG. 2 is a diagram showing the configuration of the lighting device 100 shown in FIG.
[0032] Referring to FIG. 2, the lighting device 100 includes a lighting unit 110, a wired communication unit 120, a control unit 130, and a wireless communication unit 140.
[0033] The lighting unit 110 includes one or more light sources. Examples of light sources include light-emitting diodes (LEDs). The lighting unit 110 may include LEDs of different colors. For example, the lighting unit 110 may include at least one of a red LED, a green LED, a blue LED, and a white LED. A wide range of colors can be produced by mixing the light emitted from these LEDs. The mixed color is determined based on the ratio of the intensities of the light emitted from each LED, and the intensities of the light emitted from each LED are proportional to the drive current of each LED. That is, the color of the light output from the lighting unit 110 can be controlled by controlling the drive current of each LED. The LEDs may be arranged in a dot pattern, and specific messages or images can be displayed by selectively lighting them.
[0034] Although the above description has been given using an LED as an example of the light source of the illumination unit 110, the type of light source is not limited to an LED. According to another embodiment, an organic light emitting diode (OLED) may be used as the light source.
[0035] The wired communication unit 120 is responsible for wired communication between the lighting device 100 and the smart device 200. Although not shown in the figure, the wired communication unit 120 may include a wired communication port (e.g., a USB port). The wired communication port of the wired communication unit 120 of the lighting device 100 is electrically connected to the wired communication port of the wired communication unit 250 of the smart device 200. When the wired communication port of the lighting device 100 is coupled to the wired communication port of the smart device 200, signals and / or data are transmitted and received between the lighting device 100 and the smart device 200. For example, a confirmation request signal for confirming whether a lighting control application is installed is transmitted to the smart device 200, and a response signal thereto is received from the smart device 200.
[0036] The wireless communication unit 140 is responsible for wireless communication between the lighting device 100 and other lighting devices. To this end, the wireless communication unit 140 can support a wireless communication method, such as ZigBee.
[0037] ZigBee is a wireless personal area network standard that connects peripheral devices wirelessly in a personal area network operating at 868 MHz, 902-928 MHz, and 2.4 GHz. ZigBee is based on the IEEE 802.15 standard approved by the IEEE-SA. ZigBee allows data to be exchanged at speeds up to 250 Kbps between peripheral devices within a wireless personal area network, typically within a distance of 50 meters.
[0038] In the above explanation, ZigBee has been used as an example of a wireless communication method supported by the wireless communication unit 140, but this is not necessarily limited to this, and the wireless communication unit 140 may also support one or more other wireless communication methods in addition to the example given.
[0039] The control unit 130 connects and controls each component of the lighting device 100. For example, the control unit 130 detects whether an electrical connection is established between the lighting device 100 and the smart device 200. If a connection with the smart device 200 is detected, the control unit 130 transmits a confirmation request signal to the smart device 200 to confirm whether a lighting control application is installed.
[0040] Furthermore, the control unit 130 controls the lighting pattern of the lighting unit 110 based on the control pattern information. The control pattern information may include at least one of lighting color, lighting brightness, lighting on time, lighting off time, and lighting blinking speed. The control pattern information as illustrated may be predefined or may be set directly by the user.
[0041] The configuration of the lighting device 100 shown in FIG. 1 has been described above with reference to FIG. 2. As shown in FIG. 2, the lighting device 100 may not include a power supply unit. In this case, the lighting device 100 is electrically connected to the smart device 200 and operates by receiving power from the smart device 200. As another example, the lighting device 100 may further include a power supply unit (dry cell). After being separated from the lighting device 100, the power supply unit may be replaced with another power supply unit or may be charged by externally supplied power.
[0042] FIG. 3 is a diagram showing the configuration of the smart device 200 shown in FIG.
[0043] Referring to FIG. 3, the smart device 200 includes an input unit 210, a display unit 220, a storage unit 230, a control unit 240, a wired communication unit 250, and a wireless communication unit 260.
[0044] The input unit 210 may receive various information and / or commands from a user. For example, it may receive control pattern information for the lighting unit 110 and / or the display unit 220, an operation standby command, a lighting control execution command for starting lighting control, and a lighting control end command for ending lighting control that is currently being executed. To this end, the input unit 210 may include at least one of a joystick, a mouse, a keypad, and a keyboard. In this case, the keyboard may be realized as hardware or software.
[0045] The display unit 220 may display a lighting control screen when a lighting control application is driven. According to an embodiment, various information and / or icons may be arranged on the lighting control screen. For example, a seating layout of the location where the user is located, an icon for selecting the user's seat information, a group setting icon for setting a group for the second lighting device and the second smart device, an icon corresponding to a preset lighting control pattern, an icon for inputting a lighting control execution command, an icon for inputting a lighting control end command, etc. However, the icons arranged on the lighting control screen are not limited to those exemplified above, and the types and arrangement positions of the icons included on the lighting control screen may be configurable by the user.
[0046] The display unit 220 can be controlled by control pattern information, which can be selected from predefined control pattern information or can be set directly by the user.
[0047] The storage unit 230 may include a hard disk drive, an optical disk drive, a magneto-optical disk drive, a non-volatile memory, a volatile memory, or a combination thereof. Such a storage unit 230 stores data necessary for the smart device 200 to operate. For example, the storage unit 230 stores a lighting control application. The lighting control application is an application that can control at least one of the display unit 220 of the smart device 200 and the lighting unit 110 of the lighting device 100.
[0048] The lighting control application may be implemented as a mobile application and may be distributed by the server 400 via the network 300 or may be distributed by the lighting device 100.
[0049] The wired communication unit 250 is responsible for wired communication between the smart device 200 and the lighting device 100. Although not shown in the figure, the wired communication unit 250 may include a wired communication port. The wired communication port of the wired communication unit 250 of the smart device 200 is electrically connected to the wired communication port of the wired communication unit 120 of the lighting device 100. When the wired communication port of the smart device 200 is coupled to the wired communication port of the lighting device 100, signals and / or data are transmitted and received between the smart device 200 and the lighting device 100. For example, a confirmation request signal for confirming whether a lighting control application is installed is received from the lighting device 100, and a response signal in response thereto is transmitted to the lighting device 100.
[0050] The wireless communication unit 260 is responsible for wireless communication between the smart device 200 and the server 400. To this end, the wireless communication unit 260 can support one or more wireless communication methods, including, but not limited to, Ultra Wide Band (UWB), Wi-Fi, Bluetooth, Bluetooth Low Energy (BLE), ZigBee, Radio Frequency (RF), and Infrared Data Association (IrDA).
[0051] The control unit 240 connects and controls each component within the smart device 200. For example, when a confirmation request signal for confirming whether a lighting control application is installed is received from the lighting device 100, the control unit 240 checks whether the corresponding application is installed in the smart device 200. If the confirmation result shows that the lighting control application is not installed, the control unit 240 transmits an application request signal to the server 400. Thereafter, when the lighting control application is received from the server 400, the control unit 240 installs the received lighting control application.
[0052] After the lighting control application is installed and executed, the controller 240 creates a lighting control screen. Through the lighting control screen, the user can input information and data required for lighting control, set groups for lighting control, and input commands for lighting control.
[0053] 4 and 5 are diagrams illustrating an embodiment of the operation of the wireless lighting control system 1 according to the embodiment.
[0054] Prior to the description, it is assumed that the first lighting device 100A operating as a master and the second lighting device 100B operating as a slave are located within the wireless control range of the first lighting device 100A.
[0055] First, the first lighting device 100A detects an electrical connection with the first smart device 200A (S400), and then transmits a confirmation request signal to the first smart device 200A to confirm whether a lighting control application is installed (S405).
[0056] The first smart device 200A checks whether a lighting control application is installed in the first smart device 200A. If the result of the check shows that the lighting control application is not installed or needs to be updated, the first smart device 200A transmits an application request signal requesting the lighting control application or an update request signal requesting the update of the lighting control application to the server 400 (S410).
[0057] The server 400 transmits the requested lighting control application to the first smart device 200A via the network 300 (S415).
[0058] When the lighting control application is installed in the first smart device 200A and then executed, a lighting control screen is configured and displayed on the display unit 220 of the first smart device 200A.
[0059] Thereafter, when the user inputs an operation standby command through the lighting control screen, the input operation standby command is transmitted to the first lighting device 100A through the wired communication unit 250 (S420).
[0060] The first lighting device 100A transmits the standby command received from the first smart device 200A to the second lighting device 100B via wireless communication (S425).
[0061] The second lighting device 100B notifies the user that the standby command has been received by controlling the lighting unit 110 based on the standby command received from the first lighting device 100A (S430). For example, the second lighting device 100B notifies the user that the standby command has been received by blinking the light source of the lighting unit 110 at regular intervals for a certain period of time.
[0062] After confirming that the standby command has been received, the user couples the second lighting device 100B to the second smart device 200B, and as a result, the second lighting device 100B detects an electrical connection with the second smart device 200B (S435).
[0063] When the electrical connection with the second smart device 200B is detected in this manner, the second lighting device 100B transmits a confirmation request signal to the second smart device 200B to confirm whether a lighting control application is installed (S440).
[0064] Thereafter, the second smart device 200B checks whether a lighting control application is installed. If the result of the check shows that the lighting control application is not installed or needs to be updated, the second smart device 200B transmits an application request signal requesting the installation of the lighting control application or an update request signal requesting the update of the lighting control application to the server 400 (S445).
[0065] The server 400 transmits the requested lighting control application to the second smart device 200B via the network 300 (S450).
[0066] When the lighting control application is installed and executed in the second smart device 200B, a lighting control screen is configured. When the user of the second smart device 200B inputs location information about the user's location through the lighting control screen, a seating plan for the corresponding location can be searched and displayed, as shown in FIG. 6 (S455). For example, a seating plan for a sports stadium or concert hall where the user is located can be searched and displayed. In this case, the seating plan can be searched for in the storage unit 230 of the second smart device 200B. As another example, the seating plan can be searched for in the server 300 and provided to the second smart device 200B.
[0067] On the lighting control screen of FIG. 6, the user of the second smart device 200B can directly input his / her seat information by selecting his / her seat (S460).
[0068] Meanwhile, seating information can also be entered automatically. For example, a barcode (2D barcode, 3D barcode) containing seating information may be printed on an admission ticket held by a user of the second smart device 200B. When the user scans the barcode on the admission ticket using the second smart device 200B, the second smart device 200B can recognize the barcode and acquire the seating information. For this purpose, the second smart device 200B may further include a photographing unit (not shown) for scanning the barcode and acquiring an image. The second smart device 200B may also include a barcode recognition program for recognizing seating information from the image acquired by the photographing unit. In this case, the barcode recognition program may be implemented to be included in the lighting control application.
[0069] As another example, an NFC tag recording seat information for each seat may be attached to each seat, and when a user sits down and brings the second smart device 200B close to the NFC tag, the second smart device 200B can acquire the seat information from the NFC tag. In this way, if the second smart device 200B automatically acquires the seat information, step S455 of displaying the seating layout may be omitted.
[0070] 6, when the "Seat Selected" icon 22 is selected, the control unit 240 of the second smart device 200B transmits a mapping request signal to the server 400 (S470). The mapping request signal may include identification information (e.g., serial number) of the second lighting device 100B, identification information of the second smart device 200B, and seat information.
[0071] The server 400 maps the information included in the mapping request signal to each seat on the seating plan (S475). When the identification information has been mapped to all seats on the seating plan, the server 400 transmits a mapping completion signal to the first smart device 200A operating as the master (S480).
[0072] Thereafter, a lighting control screen including a seating plan is displayed on the display unit 220 of the first smart device 200A (S485). The user of the first smart device 200A can set a group for lighting control by referring to the seating plan (S490). For example, the user can set a group for lighting control by dragging a specific area on the seating plan to draw a boundary 24, as shown in FIG. 7.
[0073] After setting the groups, the user can set control pattern information for each group (S495). The control pattern information can include at least one of control pattern information for the lighting unit 110 and control pattern information for the display unit 220. The control pattern information for the lighting unit 110 can include the color of the light, the brightness of the light, the time when the light is turned on, the time when the light is turned off, and the blinking speed of the light. The control pattern information for the display unit 220 can include the color of the screen, the brightness of the screen, the time when the screen display starts, the blinking interval of the screen, the time when the screen display ends, and identification information of the content displayed on the screen. The user can select each group and set the control pattern information. Specifically, when the user selects inside the boundary 24 of a predetermined group, a menu for setting the control pattern information for the corresponding group is displayed, and the user can set the control pattern information for the corresponding group using the displayed menu.
[0074] After setting the control pattern information for each group, when the 'Set' icon 23 is selected, the first smart device 200A transmits the group-specific control pattern information to the first lighting device 100A (S500).
[0075] The first lighting device 100A transmits the group-specific control pattern information to the second lighting device 100B by wireless communication (S505).
[0076] The second lighting device 100B transmits the group-specific control pattern information received from the first lighting device 100A to the second smart device 200B. The second smart device 200B checks the content of the group-specific control pattern information and determines whether communication with the server 400 is necessary (S515). For example, if the control pattern information of the display unit 220 among the control pattern information contains content identification information, the second smart device 200B transmits a content request signal requesting the corresponding content to the server 400 (S520).
[0077] The server 400 searches for the content requested by the second smart device 200B and transmits it to the second smart device 200B (S525).Then, the server 400 transmits a transmission completion signal to the first smart device 200A to notify that the content transmission has been completed (S530).
[0078] Thereafter, when a lighting control execution command is input by the user, the first smart device 200A transmits the input lighting control execution command to the first lighting device 100A (S535).
[0079] The first lighting control device 100A transmits a lighting control execution command to the second lighting device 100B (S540).
[0080] The second lighting device 100B transmits the lighting control execution command received from the first lighting device 100A to the second smart device 200B (S545).
[0081] Thereafter, the lighting unit 110 of the second lighting device 100B and the display unit 220 of the second smart device 200B are controlled (S550, S555) according to the group-specific control pattern information received in the previous steps (S505, S510).
[0082] The operation and lighting control screen of the wireless lighting control system 1 according to an embodiment have been described above with reference to Figures 4 to 7. Some of the steps shown in Figures 4 and 5 may be omitted. For example, if a plurality of second lighting devices are arranged at each seat in the order of their identification information (e.g., serial numbers), the step of displaying a seating layout on the second smart device 200B (S455) and the step of the user inputting his or her seat information (S460) may be omitted.
[0083] According to the above-described method, the lighting units 110 of the second lighting devices 100B, 100C, and 100D and the display units 220 of the second smart devices 200B, 200C, and 200D can be controlled simultaneously for each group, thereby improving the visual cheering effect compared to controlling only the lighting units 110 of the second lighting devices 100B, 100C, and 100D. Furthermore, various content such as text, images, or videos can be displayed collectively through the second smart devices 200B, 200C, and 200D, allowing for various types of visual cheering.
[0084] In addition to the above-described embodiments, the present invention may also be realized through a medium, e.g., a computer-readable medium, including computer-readable code / instructions for controlling at least one processing element of the above-described embodiments. The medium may correspond to any medium / media that allows the storage and / or transmission of the computer-readable code.
[0085] The computer-readable code may be stored on a medium or transmitted via the Internet, which may include, for example, a recording medium such as a magnetic storage medium (e.g., a ROM, a floppy disk, a hard disk, etc.) and an optical storage medium (e.g., a CD-ROM, a Blu-ray, a DVD), or a transmission medium such as a carrier wave. The medium may also be a distributed network, so that the computer-readable code may be stored / transmitted and executed in a distributed manner. Further, by way of example only, a processing element may include a processor or a computer processor, and the processing element may be distributed and / or contained within a single device.
[0086] Although the embodiments of the present invention have been described above with reference to the illustrated drawings, it should be understood by those skilled in the art that the present invention may be embodied in other specific forms without changing the technical spirit or essential characteristics thereof. Therefore, the above-described embodiments should be understood as illustrative in all respects and not restrictive.
Claims
1. a master device; a plurality of slave lighting devices each included in a different group and controlled by the master device; a smart device that communicates with the master device and sets a group to which the plurality of slave lighting devices belong; the master device transmits group-specific control information for the plurality of slave lighting devices to the plurality of slave lighting devices; The group-specific control information includes control information for outputting a corresponding lighting pattern in order to produce a visual effect related to an event in each group to which the plurality of slave lighting devices belong, and The smart device comprises: displaying a lighting control screen for controlling the plurality of slave lighting devices by group; receiving a selection input for at least one of the groups; displaying at least one menu for setting control information for the selected group; setting control information for the selected group based on input to the displayed menu; The corresponding lighting pattern includes a pattern for displaying at least one of text, an image, and a video.
2. The smart device includes: a photographing unit for photographing the code on the admission ticket; and a program for determining seat information associated with each seat from the code.
2. The wireless lighting control system of claim 1, further comprising:
3. the program is included in a lighting control application installed on the smart device; 3. The wireless lighting control system of claim 2, wherein the plurality of slave lighting devices and the respective seat information are mapped by the lighting control application through a server.
4. the plurality of slave lighting devices; Mapping is performed on a seating layout chart based on the respective seat information, The master device The wireless lighting control system according to claim 3 , wherein each of the plurality of slave lighting devices manages group information of the plurality of slave lighting devices set based on a mapped position of the plurality of slave lighting devices.
5. 2. The wireless lighting control system of claim 1, wherein the pattern for indicating at least one of the text, image, and video includes at least one of color, brightness, lighting time, lighting time, and blinking speed of the lighting.
6. the lighting control screen includes a seating plan including the set group; The wireless lighting control system according to claim 1 , wherein the control information is set for each of the groups based on the seating layout.
7. The smart device comprises:
7. The wireless lighting control system according to claim 6, wherein a selection input is received to select an area within a boundary of at least one group included in the seating plan, and control information for the selected group is set.
Citation Information
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