WO2018129683A1 - 一种声控智能家居系统 - Google Patents

一种声控智能家居系统 Download PDF

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Publication number
WO2018129683A1
WO2018129683A1 PCT/CN2017/070926 CN2017070926W WO2018129683A1 WO 2018129683 A1 WO2018129683 A1 WO 2018129683A1 CN 2017070926 W CN2017070926 W CN 2017070926W WO 2018129683 A1 WO2018129683 A1 WO 2018129683A1
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zigbee communication
user
communication module
module
water heater
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PCT/CN2017/070926
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English (en)
French (fr)
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孙丽霞
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孙丽霞
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Priority to PCT/CN2017/070926 priority Critical patent/WO2018129683A1/zh
Publication of WO2018129683A1 publication Critical patent/WO2018129683A1/zh

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    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B15/00Systems controlled by a computer
    • G05B15/02Systems controlled by a computer electric
    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B19/00Programme-control systems
    • G05B19/02Programme-control systems electric
    • G05B19/418Total factory control, i.e. centrally controlling a plurality of machines, e.g. direct or distributed numerical control [DNC], flexible manufacturing systems [FMS], integrated manufacturing systems [IMS] or computer integrated manufacturing [CIM]
    • GPHYSICS
    • G10MUSICAL INSTRUMENTS; ACOUSTICS
    • G10LSPEECH ANALYSIS TECHNIQUES OR SPEECH SYNTHESIS; SPEECH RECOGNITION; SPEECH OR VOICE PROCESSING TECHNIQUES; SPEECH OR AUDIO CODING OR DECODING
    • G10L15/00Speech recognition
    • GPHYSICS
    • G10MUSICAL INSTRUMENTS; ACOUSTICS
    • G10LSPEECH ANALYSIS TECHNIQUES OR SPEECH SYNTHESIS; SPEECH RECOGNITION; SPEECH OR VOICE PROCESSING TECHNIQUES; SPEECH OR AUDIO CODING OR DECODING
    • G10L15/00Speech recognition
    • G10L15/02Feature extraction for speech recognition; Selection of recognition unit

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  • the invention relates to the field of automatic control, and in particular to a voice-activated smart home system.
  • the ZigBee-based voice-activated smart home system will bring good news to people when there are elderly people in the family, elderly people with inconvenient mobility, or in some cases people are reluctant to get up and turn on or off their home appliances.
  • ZigBee (IEEE802.15.4) technology is a short-range wireless communication technology recently developed, which has low power consumption and is the main supporting technology of wireless sensor networks. Its many features make it a great development space in the fields of industrial monitoring, sensor networks, home monitoring, and security systems. Zigbee wireless communication technology compared with Bluetooth technology and WiFi wireless LAN technology, its basic characteristics are low energy consumption (two-fifth battery can be used for six months to two years), the chip is cheap, easy to layout the network, and compatible with wireless sensor networks.
  • the present invention aims to provide a voice-activated smart home system in which a user can control home appliances by voice.
  • a voice-activated smart home system includes a client device, a central processing unit, a ZigBee communication module, a memory module and a control device; the client device includes a client processor, a user voice input module, a user ZigBee communication module, and a user voice.
  • An output module the output end of the user voice input module is electrically connected to an input end of the user end processor, and an input end of the user voice output module is electrically connected to the user end processor, the user end processor a bidirectional electrical connection with the user ZigBee communication module; the user ZigBee communication module is bidirectionally electrically connected to the ZigBee communication module; the ZigBee communication module and the memory module are respectively electrically connected to the central processor in two directions;
  • the control device includes a water heater ZigBee communication module, a water heater controller, a water heater switch, a water heater temperature control module, an air conditioner ZigBee communication module, an air conditioner controller, an air conditioner temperature control module, an air conditioner switch, a ZigBee communication module of each lamp, and each lamp switch.
  • Water heater ZigBee communication module, air conditioner ZigBee communication An input end of the block and each luminaire ZigBee communication module is electrically connected to an output end of the ZigBee communication module, respectively, an output end of the water heater ZigBee communication module, an input end of the water heater switch, and an input end of the water heater temperature control module respectively
  • the water heater controller is electrically connected, the output end of the air conditioner ZigBee communication module, the input end of the air conditioner temperature control module, and the input end of the air conditioner switch
  • the electrical connection is not electrically connected to the air conditioner controller, and the input ends of the respective lamp switches are electrically connected to the ZigBee communication modules of the lamps.
  • the user equipment communicates with the central processing unit through ZigBee wireless communication mode, and the user can carry the user terminal device with him or at any place in the home.
  • the user terminal device can be used for wireless control.
  • the home appliances distributed in all corners of the home are more convenient to use, and the user can realize the control of the home appliance without going to a special control switch or a touch screen;
  • the user can wirelessly control the switch of the water heater and its temperature adjustment, the switch of the air conditioner and its temperature adjustment, and the switch of each lamp, which brings great convenience to the user's home life;
  • control device After completing the control command, the control device sends a feedback signal to the user device and broadcasts through the voice output module, so that the user can know whether the control operation has been completed.
  • FIG. 1 is a block diagram showing an embodiment of a voice-activated smart home system of the present invention.
  • 1 client device; 11: client processor; 12: user voice input module; 13: user ZigBee communication module; 14: user voice output module; 2: central processor; 3: ZigBee communication module; : memory module; 5: control terminal device; 51: water heater ZigBee communication module; 52: water heater controller; 53: water heater switch; 54: water heater temperature control module; 55: air conditioning ZigBee communication module; 55: air conditioning controller; Air conditioning temperature control module; 58: air conditioning switch; 59: ZigBee communication module for each lamp; 510: each lamp switch.
  • the client device 1 includes a central processing unit 2, a ZigBee communication module 3, a memory module 4, and a control device 5; the client device 1 includes a client processor 11, a user voice input module 12, a user ZigBee communication module 13 and a user voice output module 14, the output end of the user voice input module 12 is electrically connected to the input end of the user terminal processor 11, the input end of the user voice output module 14 and the user
  • the end processor 11 is electrically connected, the user end processor 11 is electrically connected to the user ZigBee communication module 13 in two directions; the user ZigBee communication module 13 is electrically connected to the ZigBee communication module 3 in two directions; the ZigBee communication
  • the module 3 and the memory module 4 are respectively electrically connected to the central processing unit 2 in two directions;
  • the control terminal device 5 includes a water heater ZigBee communication module 51, a water heater controller 52, and hot water.
  • the input ends of the air-conditioning ZigBee communication module 55 and the respective ZigBee communication modules 59 are electrically connected to the output end of the ZigBee communication module 5, the output end of the water heater ZigBee communication module 51, the input end of the water heater switch 53, and the water heater temperature.
  • An input end of the control module 54 is electrically connected to the water heater controller 52, and an output end of the air conditioner ZigBee communication module 55, an input end of the air conditioner temperature control module 57, and an input end of the air conditioner switch 58 are respectively associated with the air conditioner controller. 55 is electrically connected, and the input ends of the respective lamp switches 510 are electrically connected to the respective lamps ZigBee communication module 59.
  • the user inputs voice information through the user voice input module 12, for example, “open water heater”, and the client processor 11 processes the voice information, sends it to the ZigBee communication module 3 through the user ZigBee communication module 13, and then transmits it to the center.
  • the processor 2 compares the received voice information with the voice information control command table stored in advance in the memory module 4, and then sends a corresponding command to the control device 5 through the ZigBee communication module 3, for example, with the voice.
  • the control command corresponding to the information "opening the water heater” is sent to the water heater ZigBee communication module 51 through the ZigBee communication module 5, and then the control command is transmitted to the water heater controller 52, and the water heater controller 52 analyzes the received control command and controls
  • the water heater switch 53 thus turns on the water heater to realize a multifunctional ZigBee-based voice-activated smart home system. After the water heater switch 53 turns on the water heater, a feedback signal is sent to the water heater controller 52.
  • the water heater controller 52 After the water heater controller 52 analyzes the processing, it is sent to the ZigBee communication module 3 through the water heater ZigBee communication module 51, and then sent to the central processing unit 2, and the central processing unit 2 will
  • the received feedback signal analysis process is sent to the user ZigBee communication module 13 through the ZigBee communication module 3, and then sent to the client processor 11, and the client processor 11 analyzes and processes the received feedback signal and sends it to the user voice output module. 14 output the corresponding voice, for example, "the water heater is turned on", the user can know the control effect.
  • the voice information is first input through the user voice input module 12, for example, "the water heater temperature is 50 degrees Celsius", and the user terminal processor 11 processes the voice information and sends it through the user ZigBee communication module 13.
  • the central processing unit 2 compares the received voice information with the voice information control command table stored in advance in the memory module 4, and then transmits the voice with the voice through the ZigBee communication module 3.
  • the corresponding command of the information "water heater temperature 50 degrees Celsius” is sent to the water heater ZigBee communication module 51, and then the control command is transmitted to the water heater controller 52.
  • the water heater controller 52 analyzes the received control command, the water heater temperature control module is controlled.
  • the water heater controller 52 adjusts the set temperature of the water heater to 50 degrees Celsius, after the setting is completed, send a feedback signal to the water heater controller 52, the water heater controller 52 analyzes and processes the water heater ZigBee communication module 51 to the ZigBee communication module 3, and then sends it to the central Processor 2, central processor 2 will receive
  • the feedback signal analysis process is sent to the user ZigBee communication module 13 through the ZigBee communication module 3, and then sent to the user end.
  • the processor 11 analyzes the received feedback signal and sends it to the user voice output module 14 to output a corresponding voice. For example, “the water heater temperature has been set to 50 degrees Celsius”, the user can know the control effect.
  • the principle of controlling the air conditioner to turn off and adjust the air conditioner temperature by user voice is the same.
  • the client processor 11 processes the voice information, sends it to the ZigBee communication module 3 through the user ZigBee communication module 13, and then transmits it to the
  • the central processing unit 2 compares the received voice information with the voice information control command table stored in advance in the memory module 4, and then sends corresponding commands to the respective ZigBee communication modules 59 through the ZigBee communication module 3.
  • the luminaire AZigBee communication module controls the luminaire A in each luminaire switch 510 to open.
  • a feedback signal is sent to each luminaire ZigBee communication module 59, and then sent to the ZigBee communication module 3, and finally sent to the central processing unit 2, and the central processing unit 2 analyzes and processes the received feedback signal and passes through the ZigBee communication module.
  • 3 is sent to the user ZigBee communication module 13, and then sent to the client processor 11, the client processor 11 analyzes the received feedback signal and sends it to the user voice output module 14 to output the corresponding voice, for example, "lamp A is turned on"
  • the user can know the control effect.

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  • Audiology, Speech & Language Pathology (AREA)
  • Human Computer Interaction (AREA)
  • Computational Linguistics (AREA)
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Abstract

一种声控智能家居系统,包括用户端装置(1)、中央处理器(2)、ZigBee通信模块(3)、存储器模块(4)和控制端装置(5);用户端装置(1)包括用户端处理器(11)、用户语音输入模块(12)、用户ZigBee通信模块(13)和用户语音输出模块(14);用户端装置(1)与中央处理器(2)之间、中央处理器(2)与控制端装置(5)之间通过ZigBee无线通信方式进行通信。用户可以无线控制热水器的开关及其温度的调节、空调的开关及其温度的调节以及各灯具的开关,并可通过语音输出模块(14)了解控制操作是否已经完成,给用户的居家生活带来了很大的便利。

Description

一种声控智能家居系统 技术领域
本发明涉及自动控制领域,特别是涉及一种声控智能家居系统。
背景技术
安全、舒适、方便和快捷的居家生活是人们的追求目标,家庭智能化将是大势所趋。当家里有年迈老人、行动不方便老人时,或者在某些情况下人们不愿意起身去打开或关闭家用电器时,多功能基于ZigBee的声控智能家居系统将会为人们带来福音。
ZigBee(IEEE802.15.4)技术是最近发展起来的一种短距离无线通信技术,功耗低,是无线传感器网络的主要支撑技术。它的许多特点使其在工业监控、传感器网络、家庭监控、安全系统等领域有很大的发展空间。Zigbee无线通讯技术与蓝牙技术和WiFi无线局域网技术比较,它的基本特点是能耗低(两节五号电池可用半年到两年),芯片价格便宜,容易布局网络,并且和无线传感器网络兼容。
发明内容
本发明旨在提供一种声控智能家居系统,用户能够通过语音控制家用电器。
为了实现上述目的,本发明采用如下技术方案:
一种声控智能家居系统,包括用户端装置、中央处理器、ZigBee通信模块、存储器模块和控制端装置;所述用户端装置包括用户端处理器、用户语音输入模块、用户ZigBee通信模块和用户语音输出模块,所述用户语音输入模块的输出端与所述用户端处理器的输入端电连接,所述用户语音输出模块的输入端与所述用户端处理器电连接,所述用户端处理器与所述用户ZigBee通信模块的双向电连接;所述用户ZigBee通信模块与所述ZigBee通信模块双向电连接;所述ZigBee通信模块和所述存储器模块分别与所述中央处理器双向电连接;所述控制端装置包括热水器ZigBee通信模块、热水器控制器、热水器开关、热水器温度控制模块、空调ZigBee通信模块、空调控制器、空调温度控制模块、空调开关、各灯具ZigBee通信模块和各灯具开关,所述热水器ZigBee通信模块、空调ZigBee通信模块和各灯具ZigBee通信模块的输入端分别与所述ZigBee通信模块的输出端电连接,所述热水器ZigBee通信模块的输出端、热水器开关的输入端和热水器温度控制模块的输入端分别与所述热水器控制器电连接,所述空调ZigBee通信模块的输出端、空调温度控制模块的输入端和空调开关的输入端分 别与所述空调控制器电连接,所述各灯具开关的输入端与所述各灯具ZigBee通信模块电连接。
本发明声控智能家居系统具有如下有益效果:
1:用户端装置与中央处理器通过ZigBee无线通信方式进行通信,用户可以随身携带用户端装置,或者在家里任意放置该用户端装置,在控制家电时,仅需使用用户端装置即可无线控制分布在家里各个角落的家电,使用更加方便,用户无需走到专门的控制开关或触摸屏面前即可实现家电的控制;
2:用户可以无线控制热水器的开关及其温度的调节、空调的开关及其温度的调节以及各灯具的开关,给用户的居家生活带来了很大的便利;
3:控制端装置在完成控制指令后,会发送反馈信号至用户端装置,并通过语音输出模块进行播报,使用户可以了解控制操作是否已经完成。
附图说明
下面结合附图和具体实施方式对本发明作详细阐述:
图1示出了本发明声控智能家居系统的一种实施方式的结构示意图。
图中:1:用户端装置;11:用户端处理器;12:用户语音输入模块;13:用户ZigBee通信模块;14:用户语音输出模块;2:中央处理器;3:ZigBee通信模块;4:存储器模块;5:控制端装置;51:热水器ZigBee通信模块;52:热水器控制器;53:热水器开关;54:热水器温度控制模块;55:空调ZigBee通信模块;55:空调控制器;57:空调温度控制模块;58:空调开关;59:各灯具ZigBee通信模块;510:各灯具开关。
具体实施方式
下面通过实施例,并结合附图,对本发明的技术方案作进一步具体的说明。
图1示出了本发明声控智能家居系统的一种实施方式的结构示意图。如图1所示,包括用户端装置1、中央处理器2、ZigBee通信模块3、存储器模块4和控制端装置5;所述用户端装置1包括用户端处理器11、用户语音输入模块12、用户ZigBee通信模块13和用户语音输出模块14,所述用户语音输入模块12的输出端与所述用户端处理器11的输入端电连接,所述用户语音输出模块14的输入端与所述用户端处理器11电连接,所述用户端处理器11与所述用户ZigBee通信模块13的双向电连接;所述的用户ZigBee通信模块13与所述ZigBee通信模块3双向电连接;所述ZigBee通信模块3和所述存储器模块4分别与所述中央处理器2双向电连接;所述控制端装置5包括热水器ZigBee通信模块51、热水器控制器52、热水 器开关53、热水器温度控制模块54、空调ZigBee通信模块55、空调控制器55、空调温度控制模块57、空调开关58、各灯具ZigBee通信模块59和各灯具开关510,所述热水器ZigBee通信模块51、空调ZigBee通信模块55和各灯具ZigBee通信模块59的输入端分别与所述ZigBee通信模块5的输出端电连接,所述热水器ZigBee通信模块51的输出端、热水器开关53的输入端和热水器温度控制模块54的输入端分别与所述热水器控制器52电连接,所述空调ZigBee通信模块55的输出端、空调温度控制模块57的输入端和空调开关58的输入端分别与所述空调控制器55电连接,所述各灯具开关510的输入端与所述各灯具ZigBee通信模块59电连接。
使用时,用户通过用户语音输入模块12录入语音信息,例如“开热水器”,用户端处理器11将该语音信息进行处理后,通过用户ZigBee通信模块13发送至ZigBee通信模块3,继而传送至中央处理器2,中央处理器2将接收到的语音信息与存储器模块4中预先存储的语音信息控制命令表相比对,然后通过ZigBee通信模块3发送相应指令至控制端装置5,例如将与语音信息“开热水器”相对应的控制指令通过ZigBee通信模块5发送至热水器ZigBee通信模块51,继而将控制指令传送至热水器控制器52,热水器控制器52对接收到的控制指令进行分析处理后,控制热水器开关53从而打开热水器,实现多功能基于ZigBee的声控智能家居系统。热水器开关53打开热水器后,发送一个反馈信号给热水器控制器52,热水器控制器52分析处理后通过热水器ZigBee通信模块51发送至ZigBee通信模块3,继而发送至中央处理器2,中央处理器2将接收到的反馈信号分析处理后通过ZigBee通信模块3发送至用户ZigBee通信模块13,继而发送至用户端处理器11,用户端处理器11将接收到的反馈信号分析处理后发送至用户语音输出模块14输出相应语音,例如“热水器已打开”,用户便可以知道控制效果。
当用户需要控制热水器的设定温度时,首先通过用户语音输入模块12录入语音信息,例如“热水器温度50摄氏度”,用户端处理器11将该语音信息进行处理后,通过用户ZigBee通信模块13发送至ZigBee通信模块3,继而传送至中央处理器2,中央处理器2将接收到的语音信息与存储器模块4中预先存储的语音信息控制命令表相比对,然后通过ZigBee通信模块3发送与语音信息“热水器温度50摄氏度”相对应的控制指令至热水器ZigBee通信模块51,继而将控制指令传送至热水器控制器52,热水器控制器52对接收到的控制指令进行分析处理后,控制热水器温度控制模块54调节热水器的设定温度至50摄氏度,设定完成后,发送一个反馈信号给热水器控制器52,热水器控制器52分析处理后通过热水器ZigBee通信模块51发送至ZigBee通信模块3,继而发送至中央处理器2,中央处理器2将接收到的反馈信号分析处理后通过ZigBee通信模块3发送至用户ZigBee通信模块13,继而发送至用户端 处理器11,用户端处理器11将接收到的反馈信号分析处理后发送至用户语音输出模块14输出相应语音,例如“热水器温度已设定50摄氏度”,用户便可以知道控制效果。
通过用户语音控制空调关闭及调节空调温度的原理与此相同。
以此类推,当用户通过用户语音输入模块12录入语音信息“开灯A”,用户端处理器11将该语音信息进行处理后,通过用户ZigBee通信模块13发送至ZigBee通信模块3,继而传送至中央处理器2,中央处理器2将接收到的语音信息与存储器模块4中预先存储的语音信息控制命令表相比对,然后通过ZigBee通信模块3发送相应指令至各灯具ZigBee通信模块59中的灯具AZigBee通信模块,继而控制各灯具开关510中的灯具A打开。灯具A打开后,发送一个反馈信号给各灯具ZigBee通信模块59,继而发送至ZigBee通信模块3,最后发送至中央处理器2,中央处理器2将接收到的反馈信号分析处理后通过ZigBee通信模块3发送至用户ZigBee通信模块13,继而发送至用户端处理器11,用户端处理器11将接收到的反馈信号分析处理后发送至用户语音输出模块14输出相应语音,例如“灯具A已打开”,用户便可以知道控制效果。
通过用户语音控制灯具关闭的原理与此相同。
上述实施例只是为了说明本发明的技术构思及特点,其目的是在于让本领域内的普通技术人员能够了解本发明的内容并据以实施,并不能以此限制本发明的保护范围。凡是根据本发明内容的实质所作出的等效的变化或修饰,都应涵盖在本发明的保护范围内。

Claims (1)

  1. 一种声控智能家居系统,其特征在于:包括用户端装置(1)、中央处理器(2)、ZigBee通信模块(3)、存储器模块(4)和控制端装置(5);所述用户端装置(1)包括用户端处理器(11)、用户语音输入模块(12)、用户ZigBee通信模块(13)和用户语音输出模块(14),所述用户语音输入模块(12)的输出端与所述用户端处理器(11)的输入端电连接,所述用户语音输出模块(14)的输入端与所述用户端处理器(11)电连接,所述用户端处理器(11)与所述用户ZigBee通信模块(13)的双向电连接;所述的用户ZigBee通信模块(13)与所述ZigBee通信模块(3)双向电连接;所述ZigBee通信模块(3)和所述存储器模块(4)分别与所述中央处理器(2)双向电连接;所述控制端装置(5)包括热水器ZigBee通信模块(51)、热水器控制器(52)、热水器开关(53)、热水器温度控制模块(54)、空调ZigBee通信模块(55)、空调控制器(55)、空调温度控制模块(57)、空调开关(58)、各灯具ZigBee通信模块(59)和各灯具开关(510),所述热水器ZigBee通信模块(51)、空调ZigBee通信模块(55)和各灯具ZigBee通信模块(59)的输入端分别与所述ZigBee通信模块(5)的输出端电连接,所述热水器ZigBee通信模块(51)的输出端、热水器开关(53)的输入端和热水器温度控制模块(54)的输入端分别与所述热水器控制器(52)电连接,所述空调ZigBee通信模块(55)的输出端、空调温度控制模块(57)的输入端和空调开关(58)的输入端分别与所述空调控制器(55)电连接,所述各灯具开关(510)的输入端与所述各灯具ZigBee通信模块(59)电连接。
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