WO2017113491A1 - 智能红外控制装置及智能红外控制系统 - Google Patents

智能红外控制装置及智能红外控制系统 Download PDF

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Publication number
WO2017113491A1
WO2017113491A1 PCT/CN2016/074489 CN2016074489W WO2017113491A1 WO 2017113491 A1 WO2017113491 A1 WO 2017113491A1 CN 2016074489 W CN2016074489 W CN 2016074489W WO 2017113491 A1 WO2017113491 A1 WO 2017113491A1
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Prior art keywords
infrared
control signal
control
module
script
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PCT/CN2016/074489
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English (en)
French (fr)
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姚博
刘宗孺
李志为
韦善果
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杭州古北电子科技有限公司
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Priority to EP16880300.5A priority Critical patent/EP3399511B1/en
Publication of WO2017113491A1 publication Critical patent/WO2017113491A1/zh

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    • GPHYSICS
    • G08SIGNALLING
    • G08CTRANSMISSION SYSTEMS FOR MEASURED VALUES, CONTROL OR SIMILAR SIGNALS
    • G08C23/00Non-electrical signal transmission systems, e.g. optical systems
    • G08C23/04Non-electrical signal transmission systems, e.g. optical systems using light waves, e.g. infrared
    • GPHYSICS
    • G08SIGNALLING
    • G08CTRANSMISSION SYSTEMS FOR MEASURED VALUES, CONTROL OR SIMILAR SIGNALS
    • G08C17/00Arrangements for transmitting signals characterised by the use of a wireless electrical link
    • G08C17/02Arrangements for transmitting signals characterised by the use of a wireless electrical link using a radio link
    • GPHYSICS
    • G08SIGNALLING
    • G08CTRANSMISSION SYSTEMS FOR MEASURED VALUES, CONTROL OR SIMILAR SIGNALS
    • G08C19/00Electric signal transmission systems
    • G08C19/16Electric signal transmission systems in which transmission is by pulses
    • G08C19/28Electric signal transmission systems in which transmission is by pulses using pulse code
    • GPHYSICS
    • G08SIGNALLING
    • G08CTRANSMISSION SYSTEMS FOR MEASURED VALUES, CONTROL OR SIMILAR SIGNALS
    • G08C2201/00Transmission systems of control signals via wireless link
    • G08C2201/40Remote control systems using repeaters, converters, gateways
    • GPHYSICS
    • G08SIGNALLING
    • G08CTRANSMISSION SYSTEMS FOR MEASURED VALUES, CONTROL OR SIMILAR SIGNALS
    • G08C2201/00Transmission systems of control signals via wireless link
    • G08C2201/70Device selection
    • GPHYSICS
    • G08SIGNALLING
    • G08CTRANSMISSION SYSTEMS FOR MEASURED VALUES, CONTROL OR SIMILAR SIGNALS
    • G08C2201/00Transmission systems of control signals via wireless link
    • G08C2201/90Additional features
    • G08C2201/93Remote control using other portable devices, e.g. mobile phone, PDA, laptop

Definitions

  • the invention relates to an infrared remote control technology, in particular to an intelligent infrared control device and an intelligent infrared control system.
  • the problem to be solved by the present invention is to provide an intelligent infrared control device and an intelligent infrared control system, which can acquire and control different external devices by using only one intelligent infrared control device.
  • an intelligent infrared control device including:
  • An infrared code receiving module receives the first infrared code
  • Parsing a script acquisition module and acquiring a first parsing script corresponding to the first infrared code
  • the infrared analysis module analyzes the first infrared code by using the first parsing script to obtain a corresponding control signal.
  • the method further includes: an infrared code sending module, and sending the second infrared code to the outside;
  • the parsing script obtaining module further includes: acquiring a second parsing script corresponding to the second infrared code;
  • the infrared analysis module further includes: modulating the acquired control signal into a second infrared code by using a second parsing script.
  • the first parsing script and the second parsing script are the same or different.
  • the first parsing script and the second parsing script are lua infrared code parsing scripts.
  • the method further includes: a control signal receiving module, receiving the control signal, and transmitting the control signal to the infrared analysis module, and modulating the acquired control signal into the second infrared code by using the second parsing script.
  • a control signal storage module is further included, and the control information of the control signal is stored.
  • the embodiment of the invention further provides an intelligent infrared control system, comprising: an intelligent infrared control device and an external control device.
  • the infrared code receiving module of the intelligent infrared control device receives the first infrared code sent by the external control device;
  • the parsing script obtaining module of the intelligent infrared control device acquires a first parsing script corresponding to the first infrared code
  • the infrared analysis module of the intelligent infrared control device uses the first analysis script to parse the first infrared code to obtain a control signal sent by the external control device.
  • it also includes an external device
  • the intelligent infrared control device further includes an infrared code sending module, and sends the second infrared code to the external device to control the external device;
  • the parsing script obtaining module of the intelligent infrared control device further includes: acquiring a second parsing script corresponding to the second infrared code;
  • the infrared analysis module of the intelligent infrared control device further includes: modulating the acquired control signal into a second infrared code by using a second parsing script.
  • the method further includes a control signal storage module, storing control information of the control signal, and controlling the external device by using the stored control information.
  • the method further includes a control signal sending device, and the intelligent infrared control device further includes a control signal receiving module.
  • the control signal receiving module receives the control signal sent by the control signal sending device, and sends the control signal to the infrared analyzing module, and uses the second parsing script to modulate the acquired control signal into the second infrared code.
  • the cloud server is further included, and the parsing script obtaining module obtains the first parsing script and the second parsing script from the cloud server.
  • a control signal storage module is further included, and the control information of the control signal is stored.
  • the intelligent infrared control device of the present invention has a parsing script acquisition module, obtains a first parsing script through the parsing script acquiring module, and can parse the first infrared code to obtain a corresponding control signal by using the first parsing script, and only utilizes one intelligent infrared control device. It is possible to obtain control information of different kinds of remote controllers, which is convenient for obtaining user's usage habits and is beneficial to data analysis.
  • the parsing script obtaining module may further acquire a second parsing script corresponding to the second infrared code, and use the second parsing script to modulate the acquired control signal into a second infrared code, and send the second infrared code to the external device, to the external
  • the parsing script obtaining module may further acquire a second parsing script corresponding to the second infrared code, and use the second parsing script to modulate the acquired control signal into a second infrared code, and send the second infrared code to the external device, to the external
  • FIG. 1 is a schematic structural view of an intelligent infrared control system according to an embodiment of the present invention.
  • An embodiment of the present invention provides an intelligent infrared control system.
  • an intelligent infrared control device 10 an external control device 20 , an external device 30 , a cloud server 40 , and a control signal sending device 50 are provided.
  • the infrared control device 10 includes an infrared code receiving module 11, a parsing script acquiring module 12, an infrared analyzing module 13, an infrared code transmitting module 14, a control signal receiving module 15, and a control signal storage module (not shown).
  • the infrared code receiving module 11 is configured to receive an infrared signal of the external control device 20, acquire the first infrared code, and send the infrared code to the infrared analysis module 13 for analysis.
  • the infrared code receiving module 11 is configured to receive an infrared signal of the external control device 20, acquire the first infrared code, and send the infrared code to the infrared analysis module 13 for analysis.
  • there are many solutions for receiving the infrared signal of the external control device 20 and acquiring the first infrared code which will not be described herein.
  • the parsing script obtaining module 12 is configured to obtain a first parsing script corresponding to the first infrared code.
  • the first parsing script may be pre-stored in the smart infrared control device 10, that is, the smart infrared control device 10 pre-stores a first parsing script of the first infrared code corresponding to the external control device 20.
  • the first parsing script may also be stored in the cloud server 40.
  • the parsing script obtaining module 12 is a wired communication module or a wireless communication module, wherein the wireless communication module is a wireless communication module such as WIFI, RF, 3G, 4G, and the wired communication is 485.
  • the interface parsing module 12 obtains the first parsing script corresponding to the first infrared code from the cloud server 40 by using the parsing script acquisition module. Or a part of the first parsing script may be stored in the smart infrared control device 10 in advance, and the other may be stored in the cloud server 40, and the parsing script acquiring module 12 obtains the first parsing script corresponding to the first infrared code from the cloud server 40. .
  • the first parsing script corresponding to the first infrared code can be stored in the cloud server 40, and the parsing script obtaining module 12 obtains the first parsing script corresponding to the first infrared code from the cloud server 40, as needed.
  • Obtaining a first parsing script corresponding to different external devices, and the first parsing script corresponding to different external devices can be supplemented at any time, so that control information of different kinds of remote controllers can be acquired and controlled by different external devices by using only one intelligent infrared control device. It can save the development cost of the initial intelligent infrared control device, and also facilitate the later expansion of the intelligent infrared control device to the external device that can be controlled.
  • the mobile phone APP is connected to the parsing script obtaining module 12, and the mobile APP searches for the model of the external device or the corresponding external control device to be controlled, and finds the unified unification of the corresponding first parsing script in the cloud server.
  • a resource locator (URL) is sent to the parsing script obtaining module, and the parsing script obtaining module downloads the corresponding first parsing script to the cloud server according to the URL.
  • the first parsing script is a lua infrared code parsing script.
  • the parsing script may also employ other scripting engines.
  • the parsing script obtaining module 12 may further acquire a second parsing script corresponding to the second infrared code, where the second infrared code is a second infrared code corresponding to the control external device 30. In other embodiments, the parsing script obtaining module may not acquire the second parsing script corresponding to the second infrared code.
  • the second parsing script may be pre-stored in the intelligent infrared control device 10, that is, the smart infrared control device 10 pre-stores a second parsing script of the second infrared code corresponding to the external device 30 to be controlled.
  • the second parsing script may also be stored in the cloud server 40, and the parsing script acquires a module.
  • Block 12 is a wired communication module or a wireless communication module, wherein the wireless communication module is a wireless communication module such as WIFI, RF, 3G, 4G, etc., the wired communication is 485 interface communication or power carrier communication, etc., and the parsing script is used to acquire the module 12 to the cloud server 40.
  • Obtain a second parsing script corresponding to the second infrared code may be stored in the smart infrared control device 10 in advance, and the other may be stored in the cloud server 40, and the parsing script acquiring module 12 acquires the second parsing script corresponding to the second infrared code from the cloud server 40.
  • the method for obtaining the second parsing script may refer to the method for obtaining the first parsing script, and details are not described herein.
  • the second parsing script may be the same as the first parsing script, that is, the external control device is corresponding to the external device, for example, the external control device is a remote controller of the air conditioner, and the external device is a corresponding model of the air conditioner, and the air conditioner remote controller generates the first
  • An infrared code is parsed by the intelligent infrared control device 10 to obtain a control signal, and the control signal is further converted into a corresponding second infrared code, which is sent to the air conditioner to control the air conditioner, and the first infrared code and the second infrared code are used.
  • the first parsing script and the second parsing script are all lua infrared code parsing scripts. In this case, since the external control device can directly control the external device, the step of converting the control signal into the corresponding second infrared code and transmitting it to the external device can be omitted.
  • the second parsing script may also be different from the first parsing script, that is, the external control device does not correspond to the external device, for example, the external device is an air conditioner, and the external control device is not a remote controller of the corresponding model air conditioner, or an external control device. It is a versatile remote control, but it cannot directly control the air conditioner.
  • the first infrared code generated by the external control device is parsed by the intelligent infrared control device 10 to obtain a control signal, and the control signal is converted into a corresponding second infrared code, which is sent to the air conditioner to control the air conditioner.
  • the code and the second infrared code are different, but the first parsing script and the second parsing script may all be lua infrared code parsing scripts.
  • the infrared analysis module 13 has a lua script parser, which can parse the lua infrared code, parse the first infrared code by using the first parsing script, and obtain the control signal sent by the external control device 13, and also can Modulating the acquired control signal into a second infrared code, the control signal It can be either a control signal parsed from the first infrared code or a control signal directly acquired.
  • a lua script parser which can parse the lua infrared code, parse the first infrared code by using the first parsing script, and obtain the control signal sent by the external control device 13, and also can Modulating the acquired control signal into a second infrared code, the control signal It can be either a control signal parsed from the first infrared code or a control signal directly acquired.
  • the infrared parsing module may only have the function of parsing the first infrared code by using the first parsing script, and has no function of modulating the acquired control signal into the second infrared code.
  • the infrared code sending module 14 obtains the second infrared code generated by the infrared analyzing module 13, and sends the second infrared code to the external device to control the external device.
  • the control signal receiving module 15 can directly obtain a control signal to the external device, so that the infrared analysis module 13 can directly control the acquired control signal to be modulated into the second infrared code. In other embodiments, the control signal receiving module may also be unnecessary.
  • the control signal receiving module 15 is a wired communication module or a wireless communication module, wherein the wireless communication module is a wireless communication module such as WIFI, RF, 3G, 4G, and the wired communication is 485 interface communication or power carrier communication, etc., and the control signal receiving module is utilized. 15 acquires a control signal to the control signal transmitting device 50.
  • the wireless communication module is a wireless communication module such as WIFI, RF, 3G, 4G, and the wired communication is 485 interface communication or power carrier communication, etc.
  • control signal receiving module 15 and the parsing script acquiring module 12 collectively multiplex one WIFI module in the intelligent infrared control device 10 for communication, and use the WIFI module to acquire a control signal from the control signal transmitting device 50.
  • control signal receiving module and the parsing script obtaining module may also communicate with other identical or different communication modules.
  • the control signal storage module is configured to store the obtained control signal, and can learn the stored control signal, and control the external device by using the stored control information.
  • control signal includes the user's control time, control action, etc., it can reflect the user's usage habits for a certain external device, and can obtain powerful data analysis for market sales and the like by acquiring the user's usage habits.
  • the external device can formulate an intelligent control scheme according to the user's favorite usage habits, and can automatically and intelligently control the external device to perform work without user operation.
  • the user is accustomed to turning on the air conditioner at 10 o'clock in the evening, setting the temperature at 18 degrees, and the control signal storage mode
  • the block 16 learns the customer's favorite usage habit by storing the control signal, and the user can not remotely control the air conditioner, and automatically, at 10 o'clock every night, the intelligent infrared control device converts the control signal stored by the control signal storage module into a corresponding The second infrared code, turn on the air conditioner, and adjust the temperature to 18 degrees, which enhances the intelligence of the smart home and enhances the user experience.
  • control signal storage module is located in the intelligent infrared control device as a storage module built therein.
  • control signal storage module may also be located in the cloud server, and the acquired control signal is uploaded to the control signal storage module of the cloud server in real time or periodically, and the cloud server is used to analyze and feedback the user's usage habits.
  • the intelligent infrared control device acquires the control information stored by the cloud server and controls the external device.
  • the external device 30 is a plurality of electrical devices, such as a television, an air conditioner, an electric curtain, etc.
  • the external control device 20 is a remote control corresponding to the model of the electrical device, and when the remote controller performs the electrical device
  • the intelligent infrared control device 10 acquires and stores each control signal, that is, the user's usage habits are collected and analyzed.
  • the infrared codes of the two are different, as long as the intelligent infrared control device 10 acquires the corresponding first decoding script and the first The second decoding script, when the Samsung remote control presses the zoom volume button, the intelligent infrared control device 10 analyzes the first infrared code, obtains a control signal for amplifying the volume, and modulates the control signal of the amplified volume to form a second infrared.
  • the code can also control Konka's TV, so that only one TV remote control is needed, and the conversion of the intelligent infrared control device 10 can control different brands and models of the television.
  • the external device may also be any other device that uses an infrared remote control.
  • the cloud server 40 is configured to store various first decoding scripts and second decoding scripts.
  • the cloud server can also be placed on a server or computer at the user's home, or on the Internet.
  • the first decoding script and the second decoding script stored by the cloud server 40 can be updated and added at any time.
  • the cloud server is further configured to store control information of a user control external device.
  • the intelligent infrared control system has a control signal transmitting device 50, and the control signal transmitting device 50 directly transmits a control signal to the intelligent infrared control device 10, so that the intelligent infrared control device 10 modulates into a second by using the control signal.
  • Infrared code to control external devices.
  • the control signal sending device is an intelligent terminal, and can select a control signal, and directly send the control signal to the control signal receiving module 15 through a communication manner such as WIFI.
  • control signal transmitting device is a mobile phone
  • each function button is not required to learn to generate a function panel of the remote controller, but directly finds a remote controller or an external device model, and generates an analog remote controller function panel, because lua
  • the parsing script already includes the infrared code parsing and modulation of the model, and is directly selected in the remote controller function panel generated by the mobile phone, and the mobile phone can send the corresponding control signal to the intelligent infrared control device 10.
  • the intelligent infrared control device of the present invention has at least a parsing script acquisition module, the parsing script acquiring module acquires the first parsing script, and the first parsing script can parse the first infrared code to obtain a corresponding control signal, and only utilizes one intelligent infrared control.
  • the device can acquire the control information of different kinds of remote controllers, which is convenient for obtaining the user's usage habits and is beneficial to data analysis.
  • the parsing script obtaining module may further acquire a second parsing script corresponding to the second infrared code, and use the second parsing script to modulate the acquired control signal into a second infrared code, and send the second infrared code to the external device.
  • the external device By controlling the external device, it is very convenient to implement a remote control to control multiple external devices or even different external devices, which greatly improves the user experience.
  • the steps of a method or algorithm described in connection with the embodiments disclosed herein may be implemented in hardware, a software module executed by a processor, or a combination of both.
  • the software module can be placed in random access memory RAM, memory, read only memory ROM, electrically programmable ROM, electrically erasable programmable ROM, registers, hard disk, removable disk, CD-ROM, or any other device known in the art. In the form of storage media.

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Abstract

一种智能红外控制装置(10)及智能红外控制系统,智能红外控制装置(10)包括:红外码接收模块(11),接收第一红外码;解析脚本获取模块(12),获取第一红外码对应的第一解析脚本;红外解析模块(13),利用第一解析脚本解析第一红外码获取对应的控制信号。仅利用一个智能红外控制装置(10)就可以对不同种遥控器的控制信息进行获取,便于获得用户的使用习惯,有利于数据分析。

Description

智能红外控制装置及智能红外控制系统 技术领域
本发明涉及红外遥控技术,特别涉及一种智能红外控制装置及智能红外控制系统。
背景技术
目前有越来越多的万能遥控器,WIFI转红外的控制设备、手机集成红外控制的产品,通过这些产品,可以将目前家用的各种电器的红外控制器,能合成一体,只需要一个设备即可控制所有通过红外控制的设备,这样给用户带来极大的方便。这些产品的实现,往往是内置有所有电器设备的红外码。但这样的红外遥控器的存储空间需要很大,能控制的设备越多,红外控制器的成本越高,且不容易扩展。
发明内容
本发明解决的问题是提供一种智能红外控制装置及智能红外控制系统,仅利用一个智能红外控制装置就可以对不同种遥控器的控制信息进行获取并控制不同的外部设备。
为解决上述问题,本发明实施例提供了一种智能红外控制装置,包括:
红外码接收模块,接收第一红外码;
解析脚本获取模块,获取第一红外码对应的第一解析脚本;
红外解析模块,利用第一解析脚本解析第一红外码获取对应的控制信号。
可选的,还包括:红外码发送模块,将第二红外码对外发送;
解析脚本获取模块还包括:获取第二红外码对应的第二解析脚本;
红外解析模块还包括:利用第二解析脚本将获取的控制信号调制成第二红外码。
可选的,第一解析脚本和第二解析脚本相同或不同。
可选的,第一解析脚本、第二解析脚本为lua红外码解析脚本。
可选的,还包括:控制信号接收模块,接收控制信号,并发送给红外解析模块,利用第二解析脚本将获取的控制信号调制成第二红外码。
可选的,还包括控制信号存储模块,对控制信号的控制信息进行存储。
本发明实施例还提供了一种智能红外控制系统,包括:智能红外控制装置、外部控制设备,
智能红外控制装置的红外码接收模块,接收外部控制设备发送的第一红外码;
智能红外控制装置的解析脚本获取模块,获取第一红外码对应的第一解析脚本;
智能红外控制装置的红外解析模块,利用第一解析脚本解析第一红外码获取外部控制设备发送的控制信号。
可选的,还包括外部设备;
智能红外控制装置还包括红外码发送模块,将第二红外码发送给外部设备,对外部设备进行控制;
智能红外控制装置的解析脚本获取模块还包括:获取第二红外码对应的第二解析脚本;
智能红外控制装置的红外解析模块还包括:利用第二解析脚本将获取的控制信号调制成第二红外码。
可选的,还包括控制信号存储模块,对控制信号的控制信息进行存储,并利用存储的控制信息对外部设备进行控制。
可选的,还包括控制信号发送设备,智能红外控制装置还包括控制信号接收模块,
控制信号接收模块接收控制信号发送设备发送的控制信号,并发送给红外解析模块,利用第二解析脚本将获取的控制信号调制成第二红外码。
可选的,还包括云端服务器,解析脚本获取模块从云端服务器获取第一解析脚本、第二解析脚本。
可选的,还包括控制信号存储模块,对控制信号的控制信息进行存储。
与现有技术相比,本技术方案具有以下优点:
由于本发明的智能红外控制装置具有解析脚本获取模块,通过解析脚本获取模块获取第一解析脚本,并利用第一解析脚本可以解析第一红外码获取对应的控制信号,仅利用一个智能红外控制装置就可以对不同种遥控器的控制信息进行获取,便于获得用户的使用习惯,有利于数据分析。
进一步的,解析脚本获取模块还可以获取第二红外码对应的第二解析脚本,利用第二解析脚本将获取的控制信号调制成第二红外码,将第二红外码发送给外部设备,对外部设备进行控制,就能够实现一个遥控器控制多个外部设备,甚至不同的外部设备,非常方便,大大提高了用户的体验度。
附图说明
图1是本发明实施例的智能红外控制系统的结构示意图。
具体实施方式
下面结合附图,通过具体实施例,对本发明的技术方案进行清楚、完整的描述。
本发明实施例提供了一种智能红外控制系统,请参考图1,包括:智能红外控制装置10、外部控制设备20、外部设备30、云端服务器40、控制信号发送设备50,其中,所述智能红外控制装置10包括:红外码接收模块11、解析脚本获取模块12、红外解析模块13、红外码发送模块14、控制信号接收模块15、控制信号存储模块(未图示)。
所述红外码接收模块11用于接收外部控制设备20的红外信号,获取第一红外码,并发送到红外解析模块13进行解析。现有技术中,接收外部控制设备20的红外信号并获取第一红外码有很多解决方案,在此不作赘述。
所述解析脚本获取模块12用于获取第一红外码对应的第一解析脚本。所述第一解析脚本可以预先存储在智能红外控制装置10中,即智能红外控制装置10预先存储有外部控制设备20对应的第一红外码的第一解析脚本。所述第一解析脚本也可以存储在云端服务器40中,解析脚本获取模块12为有线通讯模块或无线通讯模块,其中无线通讯模块为WIFI、RF、3G、4G等无线通讯模块,有线通讯为485接口通讯或电力载波通讯等,利用解析脚本获取模块12向云端服务器40获取第一红外码对应的第一解析脚本。或者所述第一解析脚本一部分可以预先存储在智能红外控制装置10中,其他的可以存储在云端服务器40中,利用解析脚本获取模块12向云端服务器40获取第一红外码对应的第一解析脚本。
在智能家居领域或者其他领域,有非常多的外部设备都需要用遥控器进行控制,例如空调有空调的遥控器,电视机有电视机的遥控器,有些门帘、加湿器等也可以通过其对应的遥控器进行控制,绝大多数遥控器都为红外遥控器。但遥控器过多,容易造成丢失遗忘,且不方便,不清楚哪个遥控器控制哪个外部设备。现有技术也有一些万能遥控器,可以控制多种外部设备,例如同时控制不同品牌的空调,但所谓的万能遥控器也预先设定好程序,针对指定的几款外部设备进行控制,其不可能对市面上所有的空调或电视机的 红外码进行控制。而在本发明中,第一红外码对应的第一解析脚本是可以存储在云端服务器40中,利用解析脚本获取模块12向云端服务器40获取第一红外码对应的第一解析脚本,根据需要随时获取不同外部设备对应的第一解析脚本,不同外部设备对应的第一解析脚本可以随时补充,使得仅利用一个智能红外控制装置就可以对不同种遥控器的控制信息进行获取并控制不同的外部设备,能够节省初期智能红外控制装置的开发成本,且也有利于智能红外控制装置对能控制的外部设备的后期拓展。
在一个实施例中,手机APP与解析脚本获取模块12相连,手机APP对要进行控制的外部设备或对应的外部控制设备的型号进行搜索,找到云端服务器中对应的第一解析脚本的指定的统一资源定位符(Uniform Resource Locator,URL),并发送给解析脚本获取模块,让解析脚本获取模块根据所述URL向云端服务器下载对应的第一解析脚本。
由于不同的外部设备的控制单元会基于多种平台进行开发,而lua语言作为一种跨平台的嵌入式脚本语言,至少适用包括Android平台、Ios平台和Windows平台等多平台,兼容性强,且一个完整的lua脚本解析器不过200K,体积小,且解析速度快,因此在本实施例中,所述第一解析脚本为lua红外码解析脚本。在其他实施例中,所述解析脚本也可以采用其他脚本引擎。
在本实施例中,所述解析脚本获取模块12还可以获取第二红外码对应的第二解析脚本,所述第二红外码为控制外部设备30对应的第二红外码。在其他实施例中,所述解析脚本获取模块也可以不获取第二红外码对应的第二解析脚本。
所述第二解析脚本可以预先存储在智能红外控制装置10中,即智能红外控制装置10预先存储有要进行控制的外部设备30对应的第二红外码的第二解析脚本。所述第二解析脚本也可以存储在云端服务器40中,解析脚本获取模 块12为有线通讯模块或无线通讯模块,其中无线通讯模块为WIFI、RF、3G、4G等无线通讯模块,有线通讯为485接口通讯或电力载波通讯等,利用解析脚本获取模块12向云端服务器40获取第二红外码对应的第二解析脚本。或者所述第二解析脚本一部分可以预先存储在智能红外控制装置10中,其他的可以存储在云端服务器40中,利用解析脚本获取模块12向云端服务器40获取第二红外码对应的第二解析脚本。其中,获取第二解析脚本的方法可参照获取第一解析脚本的方法,在此不作赘述。
所述第二解析脚本可以与第一解析脚本相同,即外部控制设备与外部设备是对应的,例如外部控制设备是空调的遥控器,外部设备是对应型号的空调,空调的遥控器产生的第一红外码经过智能红外控制装置10进行解析,获得控制信号,并将控制信号再转化为对应的第二红外码,发送给空调,对空调进行控制,此时第一红外码和第二红外码也可以是相同的,第一解析脚本、第二解析脚本都为lua红外码解析脚本。在这种状况下,由于外部控制设备可以直接控制外部设备,将控制信号再转化为对应的第二红外码发送给外部设备的步骤可以省略。
所述第二解析脚本也可以与第一解析脚本不相同,即外部控制设备与外部设备是不对应的,例如外部设备是空调,外部控制设备不是对应型号的空调的遥控器,或者外部控制设备是一种万能的遥控器,但不能直接控制该空调。外部控制设备产生的第一红外码经过智能红外控制装置10进行解析,获得控制信号,并将控制信号再转化为对应的第二红外码,发送给空调,对空调进行控制,此时第一红外码和第二红外码不相同,但第一解析脚本、第二解析脚本也可以都为lua红外码解析脚本。
在本实施例中,所述红外解析模块13具有lua脚本解析器,能对lua红外码进行解析,利用第一解析脚本解析第一红外码,获取外部控制设备13发送的控制信号,同时还可以对获取的控制信号调制成第二红外码,所述控制信号 既可以是从第一红外码解析出来的控制信号,也可以是直接获取的控制信号。
在其他实施例中,所述红外解析模块可以仅具有利用第一解析脚本解析第一红外码的功能,不具有对获取的控制信号调制成第二红外码的功能。
所述红外码发送模块14获取红外解析模块13产生的第二红外码,将第二红外码发送给外部设备,对外部设备进行控制。
所述控制信号接收模块15可以直接获取对外部设备的控制信号,使得红外解析模块13可以直接对获取的控制信号调制成第二红外码进行控制。在其他实施例中,也可以不需要所述控制信号接收模块。
所述控制信号接收模块15为有线通讯模块或无线通讯模块,其中无线通讯模块为WIFI、RF、3G、4G等无线通讯模块,有线通讯为485接口通讯或电力载波通讯等,利用控制信号接收模块15向控制信号发送设备50获取控制信号。
在本实施例中,所述控制信号接收模块15和解析脚本获取模块12共同复用智能红外控制装置10中的一个WIFI模块进行通讯,利用WIFI模块向控制信号发送设备50获取控制信号。在其他实施例中,所述控制信号接收模块和解析脚本获取模块也可以采用其他相同或不同的通讯模块进行通讯。
所述控制信号存储模块用于存储获得的控制信号,并可以将存储的控制信号进行学习,利用存储的控制信息对外部设备进行控制。
由于控制信号包括用户的控制时刻、控制动作等,能够反映用户对于某种外部设备的使用习惯,通过获取用户的使用习惯,能够为市场销售等做出有力的数据分析。
同时,在另一些实施例中,外部设备可以根据用户最喜欢的使用习惯制定智能控制方案,不需要用户操作即能自动智能地控制外部设备进行工作。例如用户习惯在晚上10点打开空调,设置温度在18度,所述控制信号存储模 块16通过存储控制信号,对客户最喜欢的使用习惯进行学习,用户后续可以不对空调进行遥控,自动在每天晚上10点,智能红外控制装置将所述控制信号存储模块存储的控制信号转化成对应的第二红外码,开启空调,并调节温度到18度,提升了智能家居的智能度,能够提升用户体验。
在本实施例中,所述控制信号存储模块位于智能红外控制装置中,作为其中内置的存储模块。在其他实施例中,所述控制信号存储模块也可以位于云端服务器中,获取的控制信号实时或定时上传到云端服务器的控制信号存储模块,利用云端服务器对用户的使用习惯进行分析和反馈,当需要自动控制外部设备时,智能红外控制装置获取云端服务器存储的控制信息并对外部设备进行控制。
在本实施例中,所述外部设备30为一些电器设备,例如电视、空调、电动窗帘等,对应的,所述外部控制设备20这些电器设备对应型号的遥控器,当遥控器对电器设备进行遥控的同时,智能红外控制装置10对每一次控制信号进行获取并存储,即用户的使用习惯进行收集和分析。
在其他实施例中,即使外部设备和外部控制设备不对应,例如一个康佳的电视和三星的电视遥控器,两者的红外码不同,只要智能红外控制装置10获取对应的第一解码脚本和第二解码脚本,当三星的电视遥控器按下放大音量按钮,智能红外控制装置10对第一红外码进行解析,获得放大音量的控制信号,并对放大音量的控制信号进行调制,形成第二红外码,也能控制康佳的电视,这样就使得只需要一个电视遥控器,通过智能红外控制装置10的转换,就能控制不同品牌、型号的电视机。
在其他实施例中,所述外部设备还可以为其他任意采用红外遥控的设备。
所述云端服务器40用于存储各种第一解码脚本和第二解码脚本。所述云端服务器也可以放置在用户家里的服务器或电脑上,也可以放在互联网上。 云端服务器40存储的第一解码脚本和第二解码脚本可以随时更新和增加。
在其他实施例中,所述云端服务器还用于存储用户控制外部设备的控制信息。
在本实施例中,智能红外控制系统具有控制信号发送设备50,所述控制信号发送设备50向智能红外控制装置10直接发送控制信号,使得智能红外控制装置10利用所述控制信号调制成第二红外码,对外部设备进行控制。在其他实施例中,也可以不具有控制信号发送设备。
所述控制信号发送设备为智能终端,可以对控制信号进行选择,并通过WIFI等通讯方式将控制信号直接发送给控制信号接收模块15。
在一实施例中,所述控制信号发送设备为手机,不需要每个控制按键都学习生成遥控器的功能面板,而是直接找到遥控器或外部设备型号,生成模拟遥控器功能面板,因为lua解析脚本已经包含有该型号的红外码解析和调制,直接在手机生成的遥控器功能面板进行选择,手机即可以将对应的控制信号发送给智能红外控制装置10。
由于本发明的智能红外控制装置至少具有解析脚本获取模块,通过解析脚本获取模块获取第一解析脚本,并利用第一解析脚本可以解析第一红外码获取对应的控制信号,仅利用一个智能红外控制装置就可以对不同种遥控器的控制信息进行获取,便于获得用户的使用习惯,有利于数据分析。
进一步的,所述解析脚本获取模块还可以获取第二红外码对应的第二解析脚本,利用第二解析脚本将获取的控制信号调制成第二红外码,将第二红外码发送给外部设备,对外部设备进行控制,就能够实现一个遥控器控制多个外部设备,甚至不同的外部设备,非常方便,大大提高了用户的体验度。
专业人员应该还可以进一步意识到,结合本申请所公开的实施例描述的各示例的单元及算法步骤,能够以电子硬件、计算机软件或者二者的结合来 实现,为了清楚地说明硬件和软件的可互换性,在上述说明中已经按照功能一般性地描述了各示例的组成及步骤。这些功能究竟以硬件还是软件方式来执行,取决于技术方案的特定应用和设计约束条件。专业技术人员可以对每个特定的应用来使用不同方法来实现所描述的功能,但是这种实现不应认为超出本申请的范围。
结合本申请中所公开的实施例描述的方法或算法的步骤可以用硬件、处理器执行的软件模块、或者二者的结合来实施。软件模块可以置于随机存储器RAM、内存、只读存储器ROM、电可编程ROM、电可擦除可编程ROM、寄存器、硬盘、可移动磁盘、CD-ROM、或技术领域内所公知的任意其它形式的存储介质中。
本发明虽然已以较佳实施例公开如上,但其并不是用来限定本发明,任何本领域技术人员在不脱离本发明的精神和范围内,都可以利用上述揭示的方法和技术内容对本发明技术方案做出可能的变动和修改,因此,凡是未脱离本发明技术方案的内容,依据本发明的技术实质对以上实施例所作的任何简单修改、等同变化及修饰,均属于本发明技术方案的保护范围。

Claims (12)

  1. 一种智能红外控制装置,其特征在于,包括:
    红外码接收模块,接收第一红外码;
    解析脚本获取模块,获取第一红外码对应的第一解析脚本;
    红外解析模块,利用第一解析脚本解析第一红外码获取对应的控制信号。
  2. 根据权利要求1所述的智能红外控制装置,其特征在于,还包括:红外码发送模块,将第二红外码对外发送;
    解析脚本获取模块还包括:获取第二红外码对应的第二解析脚本;
    红外解析模块还包括:利用第二解析脚本将获取的控制信号调制成第二红外码。
  3. 根据权利要求2所述的智能红外控制装置,其特征在于,第一解析脚本和第二解析脚本相同或不同。
  4. 根据权利要求1或2所述的智能红外控制装置,其特征在于,第一解析脚本、第二解析脚本为lua红外码解析脚本。
  5. 根据权利要求1所述的智能红外控制装置,其特征在于,还包括:控制信号接收模块,接收控制信号,并发送给红外解析模块,利用第二解析脚本将获取的控制信号调制成第二红外码。
  6. 根据权利要求1所述的智能红外控制装置,其特征在于,还包括控制信号存储模块,对控制信号的控制信息进行存储。
  7. 一种智能红外控制系统,其特征在于,包括:智能红外控制装置、外部控制设备,
    智能红外控制装置的红外码接收模块,接收外部控制设备发送的第一红外码;
    智能红外控制装置的解析脚本获取模块,获取第一红外码对应的第一解析脚本;
    智能红外控制装置的红外解析模块,利用第一解析脚本解析第一红外码获取外部控制设备发送的控制信号。
  8. 如权利要求7所述的智能红外控制系统,其特征在于,还包括外部设备;
    智能红外控制装置还包括红外码发送模块,将第二红外码发送给外部设备,对外部设备进行控制;
    智能红外控制装置的解析脚本获取模块还包括:获取第二红外码对应的第二解析脚本;
    智能红外控制装置的红外解析模块还包括:利用第二解析脚本将获取的控制信号调制成第二红外码。
  9. 如权利要求8所述的智能红外控制系统,其特征在于,还包括控制信号存储模块,对控制信号的控制信息进行存储,并利用存储的控制信息对外部设备进行控制。
  10. 如权利要求7所述的智能红外控制系统,其特征在于,还包括控制信号发送设备,智能红外控制装置还包括控制信号接收模块,
    控制信号接收模块接收控制信号发送设备发送的控制信号,并发送给红外解析模块,利用第二解析脚本将获取的控制信号调制成第二红外码。
  11. 如权利要求7或8所述的智能红外控制系统,其特征在于,还包括云端服务器,解析脚本获取模块从云端服务器获取第一解析脚本、第二解析脚本。
  12. 如权利要求7所述的智能红外控制系统,其特征在于,还包括控制信 号存储模块,对控制信号的控制信息进行存储。
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