WO2019047490A1 - 遥控装置、拼接显示墙及遥控系统 - Google Patents
遥控装置、拼接显示墙及遥控系统 Download PDFInfo
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- WO2019047490A1 WO2019047490A1 PCT/CN2018/077772 CN2018077772W WO2019047490A1 WO 2019047490 A1 WO2019047490 A1 WO 2019047490A1 CN 2018077772 W CN2018077772 W CN 2018077772W WO 2019047490 A1 WO2019047490 A1 WO 2019047490A1
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- Prior art keywords
- remote control
- signal
- display
- component
- control signal
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- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F3/00—Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
- G06F3/14—Digital output to display device ; Cooperation and interconnection of the display device with other functional units
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- G—PHYSICS
- G08—SIGNALLING
- G08C—TRANSMISSION SYSTEMS FOR MEASURED VALUES, CONTROL OR SIMILAR SIGNALS
- G08C17/00—Arrangements for transmitting signals characterised by the use of a wireless electrical link
- G08C17/02—Arrangements for transmitting signals characterised by the use of a wireless electrical link using a radio link
-
- G—PHYSICS
- G08—SIGNALLING
- G08C—TRANSMISSION SYSTEMS FOR MEASURED VALUES, CONTROL OR SIMILAR SIGNALS
- G08C23/00—Non-electrical signal transmission systems, e.g. optical systems
- G08C23/04—Non-electrical signal transmission systems, e.g. optical systems using light waves, e.g. infrared
Definitions
- the utility model relates to the technical field of remote control, in particular to a remote control device, a splicing display wall and a remote control system.
- infrared remote controllers are commonly used to control various devices, and infrared remote controllers are the most widely used remote controllers on the market.
- Infrared remote controls generally use radio to send remote commands.
- the receiving device of the remote command cannot distinguish the remote command.
- the plurality of receiving devices receive the remote command, and it is difficult to implement more precise control such as one-to-one, which is liable to cause misoperation.
- the infrared remote controller capable of achieving precise control is costly and difficult to maintain.
- the technical problem to be solved by the present invention is how to provide a remote control device, a splicing display wall and a remote control system that are low in cost, easy to maintain, and can achieve precise control.
- a remote control device including:
- Inputting components acquiring an input operation of the user, and generating a position signal and a command signal associated with the input operation;
- An encoding component that encodes the position signal and the command signal to generate a remote control signal
- Transmitting component transmitting, by wireless communication, the remote control signal to a plurality of display devices, so that the first display device in the plurality of display devices successfully determines that the device number of the device is successfully matched with the position signal in the remote control signal In the case of executing an instruction action associated with the command signal in the remote control signal;
- the plurality of display devices are used to form a spliced display wall.
- the input component includes:
- the first device number includes a device number of the first display device.
- the device number includes:
- the position number of the display device in the spliced display wall is the position number of the display device in the spliced display wall.
- the wireless communication manner includes any one of the following: infrared communication, Bluetooth communication, radio frequency communication, and NFC communication.
- a spliced display wall includes a plurality of display devices, and the display device includes:
- Receiving component receiving a remote control signal by wireless communication, the remote control signal comprising a position signal and a command signal;
- control component decoding the remote control signal, acquiring the position signal and the command signal, and determining whether the position signal matches a device number of the display device itself,
- control operation component performs an instruction action associated with the instruction signal
- the device number includes:
- the position number of the display device in the spliced display wall is the position number of the display device in the spliced display wall.
- the wireless communication manner includes any one of the following:
- Infrared communication Bluetooth communication
- radio frequency communication radio frequency communication
- NFC communication NFC communication
- a remote control system comprising: the above-mentioned remote control device and the above-mentioned spliced display wall including a plurality of display devices.
- the remote control device, the splicing display wall and the remote control system provided by the utility model send a remote control signal to a plurality of display devices constituting the spliced display wall through the remote control device, and can accurately control the first matching of the device number with the position signal in the remote control signal
- the display device performs an instruction action associated with the command signal in the remote control signal, which is low in cost and easy to maintain.
- FIG. 1 shows a block diagram of a remote control device in accordance with an embodiment of the present invention
- FIG. 2 shows a block diagram of a display device in a spliced display wall in accordance with an embodiment of the present invention
- FIG. 3 is a schematic view showing a spliced display wall according to an embodiment of the present invention.
- FIG. 4 shows a block diagram of a remote control system in accordance with an embodiment of the present invention.
- FIG. 1 shows a block diagram of a remote control device in accordance with an embodiment of the present invention.
- the remote control device 100 can include an input component 101, an encoding component 102, and a transmitting component 103.
- the input component 101 is configured to acquire an input operation of a user and generate a position signal associated with the input operation and an instruction signal.
- Encoding component 102 is configured to encode the position signal and the command signal to generate a remote control signal.
- the transmitting component 103 is configured to transmit a remote control signal to the plurality of display devices 200 by wireless communication to enable the first display device in the plurality of display devices 200 to successfully determine the location signal of the device number in the remote control signal. In the case, an instruction action associated with the command signal in the remote control signal is executed.
- the plurality of display devices 200 are used to form the spliced display wall 2.
- the input component 101 determines the device number of the display device that the user wants to control, the instruction action that needs to be performed according to the input operation of the user, and further generates a position signal and an instruction with the display device that the user wants to control. signal. It should be noted that the specific implementation manners of the input component and the sending component may be implemented based on the prior art, and the present invention is not limited.
- encoding component 102 can encode the position signal and the command signal using a particular encoding format to generate a remote control signal. Also, the display device can decode the remote control signal with a particular decoding format corresponding to the particular encoding format of the encoding component 102 to obtain the position signal and the command signal. In this way, the precise control of the display device in the splicing display wall can be ensured, so that the display device only responds to the decodable remote control signal, ensuring that the display device is only controlled by the remote control signal sent by the corresponding remote control device, and is not subject to Interference from other coding types of remote control signals.
- the encoding component 102 can be implemented by a dedicated hardware circuit, or can be implemented by using general processing hardware (such as a CPU, a single chip microcomputer, a field programmable logic device FPGA, etc.) in combination with executable logic instructions to perform the work of the main control component.
- general processing hardware such as a CPU, a single chip microcomputer, a field programmable logic device FPGA, etc.
- executable logic instructions can be implemented based on prior art means.
- the specific implementation manner of the coding component of the present invention is not limited.
- the remote control device 100 may further include a power supply component, a storage component, and an indication component.
- the power component is configured to supply power to the remote control device.
- the storage component is configured to encode the encoding information of the particular encoding format required by the component 102.
- the indication component is configured to display a corresponding color according to the transmission status of the transmission component 103 transmitting the remote control signal to remind the user whether the remote control signal is successfully transmitted. For example, in the case where the remote control signal is successfully transmitted, red light is emitted; in the case where the remote control signal fails to be transmitted, yellow light is emitted.
- the first display device may be any one of the plurality of display devices, or may be a plurality of display devices.
- remote control of one display device or multiple display devices can be performed simultaneously.
- the display device other than the first display device among the plurality of display devices does not perform the command action associated with the command signal in the remote control signal in the case where it is determined that the device number of the own device does not match the position signal in the remote control signal.
- a remote control device can realize control of multiple display devices, reducing cost and maintenance difficulty.
- the input component 101 can include an acquisition component.
- the acquisition component is configured to acquire the input first device number according to the input operation and generate a position signal according to the first device number.
- the first device number includes the device number of the first display device.
- the acquisition component can include a plurality of keys, which can include an action area and a numbered area.
- the user can input the device number of the first display device that the user wants to control by clicking a button of the number area, for example, input one or more device numbers of the display device to be controlled, and input the first display by clicking a button of the action area.
- the acquisition component may also include a user operable touchpad for the user to perform an input operation, input the device number of the first display device, and an instruction action to be performed by the first display device.
- the specific implementation of the obtaining component can be implemented based on the prior art, and the present invention is not limited.
- the instruction action performed by the display device may include turning on the display device, turning off the display device, and playing, pausing, stopping, fast forwarding, rewinding the current display content of the display device, and may further including adjusting the display device itself.
- the display screen for example, displays the color, brightness, size, and definition of the screen. A person skilled in the art can set the specific content of the instruction action as needed, and the present invention does not limit this.
- the device number may include: a location number of the display device in the spliced display wall.
- its position number may be determined according to the position of the display device 200 in the spliced display wall 2.
- the wireless communication method may include any one of the following: infrared communication, Bluetooth communication, radio frequency identification (RFID) communication, and NFC (Near Field Communication) communication. .
- RFID radio frequency identification
- NFC Near Field Communication
- the wireless communication mode of the remote control system can be set according to actual use requirements, and those skilled in the art can implement the wireless communication process between the remote control device and the display device through appropriate technologies, and the present invention is not limited.
- the remote control device provided by the utility model sends a remote control signal to a plurality of display devices constituting the spliced display wall, and can accurately control the first display device that matches the position signal of the device number and the remote control signal to execute the command signal in the remote control signal
- the associated command action, the remote control system is low cost and easy to maintain.
- the spliced display wall may include a plurality of display devices.
- each display device 200 included in the spliced display wall may include a receiving component 201, a control component 202, and an operating component 203.
- the receiving component 201 is configured to receive a remote control signal by wireless communication, the remote control signal including a position signal and a command signal.
- the control component 202 is configured to decode the remote control signal to obtain a position signal and a command signal in the remote control signal, determine whether the position signal in the remote control signal matches the device number of the display device 200, and determine the position signal and the device in the remote control signal. In the case of a number match, the control operation component 203 performs an instruction action associated with the command signal in the remote control signal.
- the operational component 203 is configured to perform an instruction action.
- control component 202 encodes the remote control signal in a decoding format corresponding to the particular encoding format used by the remote control device.
- the location signal received by the display device may include the device number of one or more display devices.
- the control component 202 determines that the location signal in the remote control signal matches the device number, and controls the operation component 203 to perform the command signal in the remote control signal, if it is determined that the device number of the device is the same as the device number included in the acquired location signal.
- the instruction action of the joint is performed by the joint.
- the control component 202 determines that the location signal included in the remote control signal does not match the device number in the case where it is determined that the device number of the device is not the same as the device number included in the acquired location signal, and does not continue to respond to the command signal. In this way, the precise control of the remote control system can be ensured, so that the display device only responds to the decodable remote control signal, ensuring that the display device is only controlled by the remote control signal sent by the remote control device in the remote control system, and is not subject to the remote control signals of other coding types. interference.
- the spliced display wall may be a splicing display wall composed of a device such as a liquid crystal display (LCD), a big screen, or the like, which can display images, videos, and the like;
- the laser splicing display wall of the light source also known as the laser wall.
- the size and shape of the splicing wall can be set according to the needs of viewing, the setting position of the splicing wall, and the like.
- control component 202 can be implemented by a dedicated hardware circuit, or can be implemented by using general processing hardware (such as a CPU, a single chip microcomputer, a field programmable logic device FPGA, etc.) in combination with executable logic instructions to perform the work of the main control component.
- general processing hardware such as a CPU, a single chip microcomputer, a field programmable logic device FPGA, etc.
- executable logic instructions can be implemented based on prior art means.
- the specific implementation manner of the control component of the utility model is not limited.
- the device number may include: a location number of the display device 200 in the spliced display wall 2.
- the location number of the display device 200 can be determined based on its position in the splicing display wall 2.
- 3 is a schematic view showing a spliced display wall according to an embodiment of the present invention.
- the spliced display wall 2 may be composed of, for example, nine display devices 200, which may be spliced according to each display device 200.
- the position in the display wall 2 determines the position number (x, y) of each display device 200, where x, y represent the position number of the display device in different directions. For example, as shown in FIG.
- the position numbers of the respective display devices 200 are set to (1, 1), (1, 2), (1, 3), (2, 1), (2, 2), ( 2, 3), (3, 1), (3, 2), and (3, 3).
- the device number may also be a number of the display device 200 in the spliced display wall 2, for example, the number of each display device 200 may be 1, 2, 3, 4, 5, 6, 7, 8, and 9.
- a person skilled in the art can set the device number according to actual needs, and the present invention does not limit this.
- the wireless communication manner may include any one of the following: infrared communication, Bluetooth communication, radio frequency communication, and NFC communication.
- the splicing display wall provided by the utility model can decode the remote control signal received from the remote control device, acquire the position signal and the command signal in the remote control signal, and display the first display device among the plurality of display devices of the display wall When it is determined that the own device number matches the position signal, the command action associated with the command signal is executed, and the remote control system is low in cost and easy to maintain.
- the remote control system can include a remote control device 100 and a spliced display wall 2 including a plurality of display devices 200.
- the remote control device 100 is configured to generate a remote control signal based on an input operation of the user, and transmit the remote control signal to the plurality of display devices 200 by wireless communication.
- the remote control signal may include a position signal and a command signal.
- the plurality of display devices 200 are configured to receive a remote control signal, and in a case where the device number of the first display device among the plurality of display devices 200 matches the position signal in the remote control signal, the execution is associated with the command signal in the remote control signal Instruction action.
- the remote control device 100, the spliced display wall 2, and the display device 200 are described in detail above.
- the remote control system provided by the utility model transmits a remote control signal to a plurality of display devices constituting the spliced display wall through a remote control device, and can accurately control the execution and remote control signals of the first display device whose device number matches the position signal in the remote control signal.
- the instruction signal is associated with the command action, and the remote control system is low in cost and easy to maintain.
- the spliced display wall is composed of a plurality of large screens, and the large screen of the display device communicates with the remote control device through infrared communication.
- the device number for each large screen is (x, y). Taking a large screen D1 with a device number (1, 2) in the splicing display wall as an example, a description of the remote control process of the large-screen remote control system is performed:
- the input component of the remote control device collects the input operation of the user after receiving the input operation of the user, and acquires the first device number input by the user according to the input operation, for example, (1, 2);
- the first device number is required to perform an instruction action, for example, closing the large screen; and then generating a position signal and a command signal according to the first device number and the instruction action.
- the encoding component of the remote control device encodes the position signal and the command signal to generate a remote control signal, and then transmits the remote control signal to the plurality of large screens of the spliced display wall through the transmitting component of the remote control device having the infrared transmitting function.
- the receiving component of the large screen D1 receives the remote control signal, and decodes the remote control signal under the action of the control component to obtain the position signal and the command signal.
- the control component determines whether the device number of the large screen D1 matches the position signal. Since the device number (1, 2) of the large screen D1 matches the position signal generated based on the first device number (1, 2), the control component controls the control.
- the operational component of screen D1 performs an instruction action associated with the command signal, that is, turns off the large screen. In this way, any one or more large screens in the spliced display wall can be precisely controlled without erroneous operation.
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Abstract
一种遥控装置、拼接显示墙及遥控系统,该遥控装置(100)包括:输入组件(101),获取用户的输入操作,并生成与输入操作相关联的位置信号和指令信号;编码组件(102),对位置信号和指令信号进行编码生成遥控信号;发送组件(103),通过无线通信方式向拼接显示墙的多个显示设备发送遥控信号,以使在多个显示设备中的第一显示设备在确定自身的设备编号与位置信号匹配成功的情况下,执行与指令信号相关联的指令动作。遥控装置、拼接显示墙及遥控系统通过遥控装置向组成拼接显示墙的多个显示设备发送遥控信号,可以精准地控制设备编号与遥控信号匹配的第一显示设备执行与遥控信号相关联的指令动作,遥控系统的成本低、易于维护。
Description
本实用新型涉及遥控技术领域,尤其涉及一种遥控装置、拼接显示墙及遥控系统。
目前,普遍使用红外遥控器对各种设备进行控制,红外遥控器是现在市场上应用最广泛的遥控器。红外遥控器一般都是使用广播方式发送遥控命令。但由于遥控命令的接收设备并不能对遥控命令进行区分。在可接收遥控命令的多台接收设备之间的距离较近的情况下,多台接收设备均接收到遥控命令,难以实现例如一对一等较为精准的控制,极易造成误操作。相关技术中,可实现精准控制的红外遥控器的成本高、不易维护。
技术问题
有鉴于此,本实用新型要解决的技术问题是,如何提供一种成本低、易维护且可实现精准控制的遥控装置、拼接显示墙及遥控系统。
解决方案
为了解决上述技术问题,根据本实用新型的一实施例,提供了一种遥控装置,包括:
输入组件,获取用户的输入操作,并生成与所述输入操作相关联的位置信号以及指令信号;
编码组件,对所述位置信号和所述指令信号进行编码生成遥控信号;以及
发送组件,通过无线通信方式向多个显示设备发送所述遥控信号,以使在所述多个显示设备中的第一显示设备在确定自身的设备编号与所述遥控信号中的位置信号匹配成功的情况下,执行与所述遥控信号中的指令信号相关联的指令动作;
其中,所述多个显示设备用于组成拼接显示墙。
对于上述装置,在一种可能的实现方式中,所述输入组件包括:
获取部件,根据所述输入操作获取输入的第一设备编号,并根据所述第一设备编号生成所述位置信号,
其中,所述第一设备编号包括所述第一显示设备的设备编号。
对于上述装置,在一种可能的实现方式中,所述设备编号包括:
所述显示设备在所述拼接显示墙中的位置编号。
对于上述装置,在一种可能的实现方式中,所述无线通信方式包括以下任一项:红外通信、蓝牙通信、射频通信和NFC通信。
为了解决上述技术问题,根据本实用新型的一实施例,提供了一种拼接显示墙,所述拼接显示墙包括多个显示设备,所述显示设备包括:
接收组件,通过无线通信方式接收遥控信号,所述遥控信号包括位置信号和指令信号;
控制组件,对所述遥控信号进行解码,获取所述位置信号和所述指令信号,确定所述位置信号与所述显示设备自身的设备编号是否匹配,
在确定所述位置信号与所述设备编号匹配的情况下,控制操作组件执行与所述指令信号相关联的指令动作;以及
操作组件,执行所述指令动作。
对于上述拼接显示墙,在一种可能的实现方式中,所述设备编号包括:
所述显示设备在所述拼接显示墙中的位置编号。
对于上述拼接显示墙,在一种可能的实现方式中,所述无线通信方式包括以下任一项:
红外通信、蓝牙通信、射频通信和NFC通信。
为了解决上述技术问题,根据本实用新型的一实施例,提供了一种遥控系统,包括:上述遥控装置和上述包括多个显示设备的拼接显示墙。
有益效果
本实用新型所提供的遥控装置、拼接显示墙及遥控系统,通过遥控装置向组成拼接显示墙的多个显示设备发送遥控信号,可以精准地控制设备编号与遥控信号中的位置信号匹配的第一显示设备执行与遥控信号中的指令信号相关联的指令动作,遥控系统的成本低、易于维护。
根据下面参考附图对示例性实施例的详细说明,本实用新型的其它特征及方面将变得清楚。
包含在说明书中并且构成说明书的一部分的附图与说明书一起示出了本实用新型的示例性实施例、特征和方面,并且用于解释本实用新型的原理。
图1示出根据本实用新型一实施例的遥控装置的框图;
图2示出根据本实用新型一实施例的拼接显示墙中的显示设备的框图;
图3示出根据本实用新型一实施例的拼接显示墙的示意图;
图4示出根据本实用新型一实施例的遥控系统的框图。
以下将参考附图详细说明本实用新型的各种示例性实施例、特征和方面。附图中相同的附图标记表示功能相同或相似的元件。尽管在附图中示出了实施例的各种方面,但是除非特别指出,不必按比例绘制附图。
在这里专用的词“示例性”意为“用作例子、实施例或说明性”。这里作为“示例性”所说明的任何实施例不必解释为优于或好于其它实施例。
另外,为了更好的说明本实用新型,在下文的具体实施方式中给出了众多的具体细节。本领域技术人员应当理解,没有某些具体细节,本实用新型同样可以实施。在一些实例中,对于本领域技术人员熟知的方法、手段、元件和电路未作详细描述,以便于凸显本实用新型的主旨。
实施例1
图1示出根据本实用新型一实施例的遥控装置的框图。如图1所示,遥控装置100可以包括输入组件101、编码组件102和发送组件103。输入组件101被配置为获取用户的输入操作,并生成与输入操作相关联的位置信号以及指令信号。编码组件102被配置为对位置信号和指令信号进行编码生成遥控信号。发送组件103被配置为通过无线通信方式向多个显示设备200发送遥控信号,以使在多个显示设备200中的第一显示设备在确定自身的设备编号与遥控信号中的位置信号匹配成功的情况下,执行与遥控信号中的指令信号相关联的指令动作。其中,多个显示设备200用于组成拼接显示墙2。
在本实施例中,输入组件101根据用户的输入操作,确定用户想要控制的显示设备的设备编号、所需执行的指令动作,进而生成与针对用户想要控制的显示设备的位置信号和指令信号。需要说明的是,输入组件和发送组件的具体实现方式可基于现有技术实现,本实用新型不作限制。
在本实施例中,编码组件102可以采用特定编码格式对位置信号和指令信号进行编码生成遥控信号。并且,显示设备可以采用与编码组件102的特定编码格式相对应的特定解码格式对遥控信号进行解码,以获取位置信号和指令信号。这样,可以保证遥控装置对拼接显示墙中的各显示设备的精确控制,使得显示设备仅响应于可解码的遥控信号,保证显示设备仅受对应的遥控装置发出的遥控信号的控制,不会受其他编码类型的遥控信号的干扰。
在本实施例中,编码组件102可以通过专用硬件电路实现,也可以通过通用处理硬件(例如CPU、单片机、现场可编程逻辑器件FPGA等)结合可执行逻辑指令实现,以执行主控组件的工作过程,其中,可执行逻辑指令可以基于现有技术手段实现。本实用新型对编码组件的具体实现方式不做限定。
作为本实施例的一个示例,遥控装置100还可以包括电源组件、存储组件和指示组件。其中,电源组件被配置为为遥控装置供电。存储组件被配置为编码组件102存储所需的特定编码格式的编码信息。指示组件被配置为根据发送组件103发送遥控信号的发送状态显示对应的颜色,以提醒用户遥控信号是否发送成功。例如,在遥控信号发送成功的情况下,发出红色光;在遥控信号发送失败的情况下,发出黄色光。
作为本实施例的一个示例,第一显示设备可以是多个显示设备中的任意一个显示设备,也可以是多个显示设备。这样,可以对一个显示设备或对多个显示设备同时进行遥控控制。多个显示设备中除第一显示设备以外的其它显示设备,在判断自身的设备编号与遥控信号中的位置信号不匹配的情况下,不执行与遥控信号中的指令信号相关联的指令动作。这样,可以避免多个显示设备中除第一显示设备以外的显示设备因接收到遥控信号而发生误操作,实现各显示设备的精准控制。且一个遥控装置即可实现多个显示设备的控制,降低成本和维护难度。
在一种可能的实现方式中,输入组件101可以包括获取部件。该获取部件被配置为根据输入操作获取输入的第一设备编号,并根据第一设备编号生成位置信号。其中,第一设备编号包括第一显示设备的设备编号。
作为该实现方式的一个示例,获取部件可以包括多个按键,按键可以包括动作区域和编号区域。用户可以通过点击编号区域的按键输入用户想要控制的第一显示设备的设备编号,例如,输入一个或多个想要控制的显示设备的设备编号,以及通过点击动作区域的按键输入第一显示设备所需执行的指令动作。获取部件还可以包括用户可操作的触摸板,以供用户进行输入操作,输入第一显示设备的设备编号和第一显示设备所需执行的指令动作。获取部件的具体实现方式可基于现有技术实现,本实用新型不作限制。
作为本实施例的一个示例,显示设备所执行的指令动作可以包括开启显示设备、关闭显示设备以及播放、暂停、停止、快进、快退显示设备当前的显示内容,还可以包括调整显示设备自身的显示画面,例如,显示画面的颜色、亮度、大小和清晰度等。本领域技术人员可以根据需要设置指令动作的具体内容,本实用新型对此不作限制。
在一种可能的实现方式中,设备编号可以包括:显示设备在拼接显示墙中的位置编号。
作为该实现方式的一个示例,可以根据显示设备200在拼接显示墙2中的位置的确定其位置编号。
在一种可能的实现方式中,无线通信方式可以包括以下任一项:红外通信、蓝牙(Bluetooth)通信、射频(Radio Frequency Identification,简称RFID)通信和NFC(Near Field Communication,近场通信)通信。
在该实现方式中,可以根据实际使用需求设置遥控系统的无线通信方式,本领域技术人员可以通过适当技术实现遥控装置和显示设备之间的无线通信过程,本实用新型不作限制。
需要说明的是,尽管以上述实施例作为示例介绍了遥控装置如上,但本领域技术人员能够理解,本实用新型应不限于此。事实上,用户完全可根据个人喜好和/或实际应用场景灵活设定各组件,只要满足本实用新型的技术方案即可。
本实用新型所提供的遥控装置,向组成拼接显示墙的多个显示设备发送遥控信号,可以精准地控制设备编号与遥控信号中的位置信号匹配的第一显示设备执行与遥控信号中的指令信号相关联的指令动作,遥控系统的成本低、易于维护。
图2示出根据本实用新型一实施例的拼接显示墙中的显示设备的框图。如图1所示,拼接显示墙可以包括多个显示设备。如图2所示,拼接显示墙所包括各显示设备200可以包括接收组件201、控制组件202和操作组件203。该接收组件201被配置为通过无线通信方式接收遥控信号,遥控信号包括位置信号和指令信号。该控制组件202被配置为对遥控信号进行解码获取遥控信号中的位置信号和指令信号,确定遥控信号中的位置信号与显示设备200的设备编号是否匹配,在确定遥控信号中的位置信号与设备编号匹配的情况下,控制操作组件203执行与遥控信号中的指令信号相关联的指令动作。该操作组件203被配置为执行指令动作。
作为本实施例的一个示例,控制组件202采用与遥控装置所用的特定编码格式相对应解码格式对遥控信号进行编码。显示设备所接收到的位置信号可以包括一个或多个显示设备的设备编号。控制组件202在确定自身的设备编号与获取的位置信号所包括的设备编号相同的情况下,确定遥控信号中的位置信号与设备编号匹配,并控制操作组件203执行与遥控信号中的指令信号相关联的指令动作。控制组件202在确定自身的设备编号与获取的位置信号所包括的设备编号不相同的情况下,确定遥控信号中的位置信号与设备编号不匹配,不再继续响应指令信号。这样,可以保证遥控系统的精确控制,使得显示设备仅响应于可解码的遥控信号,保证显示设备仅受遥控系统中的遥控装置发出的遥控信号的控制,不会受其他编码类型的遥控信号的干扰。
作为本实施例的一个示例,拼接显示墙可以是液晶显示器(Liquid Crystal Display,简称LCD)、大屏幕(big screen)等可以显示图片、视频等内容的设备组成的拼接显示墙;还可以是激光光源的激光拼接显示墙,亦称激光拼墙。可以根据观看需要、拼接墙的设置位置等使用需求设置拼接墙的大小、形状等。
在本实施例中,控制组件202可以通过专用硬件电路实现,也可以通过通用处理硬件(例如CPU、单片机、现场可编程逻辑器件FPGA等)结合可执行逻辑指令实现,以执行主控组件的工作过程,其中,可执行逻辑指令可以基于现有技术手段实现。本实用新型对控制组件的具体实现方式不做限定。
在一种可能的实现方式中,设备编号可以包括:显示设备200在拼接显示墙2中的位置编号。
在该实现方式中,可以根据显示设备200在拼接显示墙2中的位置的确定其位置编号。图3示出根据本实用新型一实施例的拼接显示墙的示意图,如图3所示,拼接显示墙2可以是由例如9个显示设备200拼接组成的,可以根据每个显示设备200在拼接显示墙2中的位置,确定各显示设备200的位置编号(x,y),其中,x、y表示显示设备在不同方向上的位置编号。例如,如图2所示,将各显示设备200的位置编号分别设置为(1,1)、(1,2)、(1,3)、(2,1)、(2,2)、(2,3)、(3,1)、(3,2)和(3,3)。设备编号还可以是显示设备200在拼接显示墙2中的编号,例如,各显示设备200的编号可以是1、2、3、4、5、6、7、8和9。本领域技术人员可以根据实际需要对设备编号进行设置,本实用新型对此不作限制。
在一种可能的实现方式中,无线通信方式可以包括以下任一项:红外通信、蓝牙通信、射频通信和NFC通信。
需要说明的是,接收组件和操作组件的具体实现方式可基于现有技术实现,本实用新型不作限制。
需要说明的是,尽管以上述实施例作为示例介绍了拼接显示墙如上,但本领域技术人员能够理解,本实用新型应不限于此。事实上,用户完全可根据个人喜好和/或实际应用场景灵活设定拼接显示墙,只要满足本实用新型的技术方案即可。
本实用新型所提供的拼接显示墙,可以对从遥控装置接收到的遥控信号进行解码,获取遥控信号中的位置信号和指令信号,并在拼接显示墙的多个显示设备中的第一显示设备确定自身设备编号与位置信号匹配的情况下,执行与指令信号相关联的指令动作,遥控系统的成本低、易于维护。
图4示出根据本实用新型一实施例的遥控系统的框图。如图4所示,该遥控系统可以包括遥控装置100和包括多个显示设备200的拼接显示墙2。
其中,遥控装置100被配置为基于用户的输入操作生成遥控信号,并将遥控信号通过无线通信方式发送给多个显示设备200。其中,遥控信号可以包括位置信号和指令信号。多个显示设备200被配置为接收遥控信号,在多个显示设备200中的第一显示设备的设备编号与遥控信号中的位置信号匹配成功的情况下,执行与遥控信号中的指令信号相关联的指令动作。
其中,遥控装置100、拼接显示墙2以及显示设备200参见上文的具体描述。
需要说明的是,尽管以上述实施例作为示例介绍了遥控系统如上,但本领域技术人员能够理解,本实用新型应不限于此。事实上,用户完全可根据个人喜好和/或实际应用场景灵活设定系统中各部分,只要满足本实用新型的技术方案即可。
本实用新型所提供的遥控系统,通过遥控装置向组成拼接显示墙的多个显示设备发送遥控信号,可以精准地控制设备编号与遥控信号中的位置信号匹配的第一显示设备执行与遥控信号中的指令信号相关联的指令动作,遥控系统的成本低、易于维护。
应用示例
以下结合“大屏幕遥控系统”作为一个示例性应用场景,给出根据本实用新型实施例的应用示例,以便于理解遥控系统的工作原理和过程。本领域技术人员应理解,以下应用示例仅仅是出于便于理解本实用新型实施例的目的,不应视为对本实用新型实施例的限制。
在该应用示例的“大屏幕遥控系统”中,拼接显示墙是由多个大屏幕组成的,显示设备大屏幕与遥控装置之间通过红外通信方式进行通信。每个大屏幕的设备编号为(x,y)。以控制拼接显示墙中的一个设备编号为(1,2)的大屏幕D1为例,进行大屏幕遥控系统的遥控过程的说明:
在该应用示例中,遥控装置的输入组件在接收到用户的输入操作后,对用户的输入操作进行采集,根据输入操作获取用户输入的第一设备编号,例如,(1,2);以及获取第一设备编号所需执行的指令动作,例如,关闭大屏幕;而后根据第一设备编号和指令动作生成位置信号和指令信号。遥控装置的编码组件对位置信号和指令信号进行编码生成遥控信号,进而通过具备红外发射功能的遥控装置的发送组件将遥控信号发送给拼接显示墙的多个大屏幕。大屏幕D1的接收组件接收到遥控信号,并在控制组件的作用下对遥控信号进行解码获取位置信号和指令信号。控制组件判断大屏幕D1的设备编号与位置信号是否匹配,由于大屏幕D1的设备编号(1,2)与基于第一设备编号(1,2)生成的位置信号相匹配,则控制组件控制大屏幕D1的操作组件执行与指令信号相关联的指令动作,也即关闭大屏幕。这样,可以精确地控制拼接显示墙中的任意一个或多个大屏幕,不会发生误操作。
以上所述,仅为本实用新型的具体实施方式,但本实用新型的保护范围并不局限于此,任何熟悉本技术领域的技术人员在本实用新型揭露的技术范围内,可轻易想到变化或替换,都应涵盖在本实用新型的保护范围之内。因此,本实用新型的保护范围应以所述权利要求的保护范围为准。
Claims (8)
1、一种遥控装置,其特征在于,包括:
输入组件,获取用户的输入操作,并生成与所述输入操作相关联的位置信号以及指令信号;
编码组件,对所述位置信号和所述指令信号进行编码生成遥控信号;以及
发送组件,通过无线通信方式向多个显示设备发送所述遥控信号,以使在所述多个显示设备中的第一显示设备在确定自身的设备编号与所述遥控信号中的位置信号匹配成功的情况下,执行与所述遥控信号中的指令信号相关联的指令动作;
其中,所述多个显示设备用于组成拼接显示墙。
2、根据权利要求1所述的装置,其特征在于,所述输入组件包括:
获取部件,根据所述输入操作获取输入的第一设备编号,并根据所述第一设备编号生成所述位置信号,
其中,所述第一设备编号包括所述第一显示设备的设备编号。
3、根据权利要求1所述的装置,其特征在于,所述设备编号包括:
所述显示设备在所述拼接显示墙中的位置编号。
4、根据权利要求1所述的装置,其特征在于,所述无线通信方式包括以下任一项:
红外通信、蓝牙通信、射频通信和NFC通信。
5、一种拼接显示墙,其特征在于,所述拼接显示墙包括多个显示设备,所述显示设备包括:
接收组件,通过无线通信方式接收遥控信号,所述遥控信号包括位置信号和指令信号;
控制组件,对所述遥控信号进行解码,获取所述位置信号和所述指令信号,确定所述位置信号与所述显示设备自身的设备编号是否匹配,
在确定所述位置信号与所述设备编号匹配的情况下,控制操作组件执行与所述指令信号相关联的指令动作;以及
操作组件,执行所述指令动作。
6、根据权利要求5所述的拼接显示墙,其特征在于,所述设备编号包括:
所述显示设备在所述拼接显示墙中的位置编号。
7、根据权利要求5所述的拼接显示墙,其特征在于,所述无线通信方式包括以下任一项:
红外通信、蓝牙通信、射频通信和NFC通信。
8、一种遥控系统,其特征在于,包括:
权利要求1至4任一项所述的遥控装置和权利要求5至7任一项所述的包括多个显示设备的拼接显示墙。
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| KR20110085334A (ko) * | 2010-01-20 | 2011-07-27 | 엘지전자 주식회사 | 멀티디스플레이 장치 및 멀티디스플레이 장치의 제어 방법 |
| JP2011257540A (ja) * | 2010-06-08 | 2011-12-22 | Sharp Corp | マルチ・ディスプレイ・システム、画像表示方法、及びディスプレイ装置 |
| CN102426774A (zh) * | 2011-10-14 | 2012-04-25 | 广东威创视讯科技股份有限公司 | 红外遥控装置及拼接墙系统 |
| CN102929810A (zh) * | 2012-11-14 | 2013-02-13 | 四川长虹电子系统有限公司 | 拼接墙中的拼接显示单元地址设置方法 |
| CN104464265A (zh) * | 2014-12-31 | 2015-03-25 | 广东威创视讯科技股份有限公司 | 拼接显示屏的遥控方法和系统 |
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