CN214366856U - Remote control fan intelligent voice system - Google Patents

Remote control fan intelligent voice system Download PDF

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Publication number
CN214366856U
CN214366856U CN202120388447.6U CN202120388447U CN214366856U CN 214366856 U CN214366856 U CN 214366856U CN 202120388447 U CN202120388447 U CN 202120388447U CN 214366856 U CN214366856 U CN 214366856U
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circuit
control module
module
control
electrically connected
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彭源
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Guang Zhou Ting Shen Electric Co ltd
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Guang Zhou Ting Shen Electric Co ltd
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Abstract

An intelligent voice system of a remote control fan comprises a system main control module, a voice control module, a network module, a circuit control module, a non-isolated DC-DC power conversion circuit, a motor speed regulation control circuit, an infrared remote control signal receiving circuit and a manual input control circuit; the circuit control module is electrically connected with the system main control module, the voice control module is electrically connected with the system main control module, and the network module is electrically connected with the system main control module; the non-isolated DC-DC power supply conversion circuit is electrically connected with the circuit control module, the motor speed regulation control circuit is electrically connected with the circuit control module, the infrared remote control signal receiving circuit is electrically connected with the circuit control module, and the manual input control circuit is electrically connected with the circuit control module. The system is more flexible and intelligent in operation of the household fan, and solves the problem of gap of space distance and convenient operation of short distance and medium distance.

Description

Remote control fan intelligent voice system
Technical Field
The utility model belongs to the technical field of thing networking household electrical appliances and specifically relates to a remote control fan intelligence voice system.
Background
The intelligent home is the specific embodiment of the intellectualization of household appliances under the influence of an internet of things technology. As a new production industry, the smart home is at a critical point of a lead-in period and a growth period, the market consumption concept is not formed yet, but with further implementation of popularization and popularization of the smart home market, the use habit of consumers is developed, the consumption potential of the smart home market is inevitably huge, and the industrial prospect is bright. The existing remote control fan is connected to the Internet through a network module, and a user can use mobile phone software to operate in real time to control the operation program and the working mode of the fan. However, in a short distance, the mobile phone control increases the operation time, and a technical solution for both remote control and short-distance convenient operation is required.
Disclosure of Invention
The patent of the utility model provides a remote control fan intelligence voice system compromises thing networking remote control and closely speech control.
In order to solve the technical problem, the technical scheme of the utility model is that: an intelligent voice system of a remote control fan comprises a system main control module, a voice control module, a network module, a circuit control module, a non-isolated DC-DC power conversion circuit, a motor speed regulation control circuit, an infrared remote control signal receiving circuit and a manual input control circuit;
the circuit control module is electrically connected with the system main control module, the voice control module is electrically connected with the system main control module, and the network module is electrically connected with the system main control module; the non-isolated DC-DC power supply conversion circuit is electrically connected with the circuit control module, the motor speed regulation control circuit is electrically connected with the circuit control module, the infrared remote control signal receiving circuit is electrically connected with the circuit control module, and the manual input control circuit is electrically connected with the circuit control module. The voice control module is electrically connected with the system main control module, and after receiving a voice instruction sent by a user, the voice control module carries out voice recognition processing and then converts the voice instruction into a corresponding control instruction signal by the system main control module; because the circuit control module is electrically connected with the system main control module, the system main control module transmits the control instruction signal to the circuit control module, and the circuit control module performs corresponding operation control on the fan.
As an embodiment, the system main control module is an Arduino Mega 2560 core board, the Arduino Mega 2560 core board is connected with a DS1307 clock module, the + v port of the DS1307 clock module is connected in series with a 4.7K Ω R6 and the SDA-12c date end is connected as an SDA and is connected with the SDA of the Arduino Mega 2560 core board, the clock output port of the DS1307 clock module is connected in series with a 4.7K Ω R5 and the SCL-12c clock end is connected as an SCL and is connected with the SCL of the Arduino Mega 2560 core board;
the voice control module comprises an ASR M08-A voice recognition module, an LED1, an LED2, a steering engine and a Relay K1, wherein the ASR M08-A voice recognition module is connected with an Arduino UNO control panel, TX and DX of an ASR M08-A are respectively connected with pins D0 and D1 of the Arduino UNO control panel, an LED1 and an LED2 which are connected with the Arduino UNO control panel, the steering engine and the Relay K1 are further arranged, a Relay end of the Relay is connected with a pin D6 of the Arduino UNO control panel, the LED1 is connected with a resistor R1 of 1K omega in series and then connected with a pin D7 of the Arduino UNO control panel, the LED2 is connected with a resistor R2 of 1K omega in series and then connected with a pin D7 of the Arduino UNO control panel, and a pulse end of the steering engine is connected with a pin D5 of the Arduino UNO control panel; the voice control module is connected with a loudspeaker and a microphone.
As an embodiment, the network module is a WIZnet W5100 chip, and the WIZnet W5100 chip is connected with an Arduino UNO control board.
As concrete, the network module comprises a WIFI module, the WIFI module is a WIZnet WIZFI250-H WiFi chip, and the WIZnet WIZFI250-H WiFi chip is connected with the Arduino UNO control panel.
As concrete, the circuit control module is an STC89C55 single chip microcomputer; the non-isolated DC-DC power conversion circuit comprises a switching power management chip SC1124DG, a 2200UH inductor connected with SC1124DG, diodes D1 and D2, and capacitors C5, C6 and C7; the capacitors C7 and C5 are used for filtering out noise components in direct current;
the motor speed regulation control circuit comprises Z0607 bidirectional thyristors T1, T2, T3 and T4, resistors R1, R2, R3, R4, capacitors C1, C2, C3 and C4;
the infrared remote control signal receiving circuit consists of an infrared integrated receiving module T5, and the infrared integrated receiving module T5 is connected with an external interrupt pin P3.2 of the STC89C55 singlechip;
the button circuit comprises five user manual buttons S3, S4, S5, S6 and S7.
Further, the circuit control module is electrically connected with a reset circuit, and the reset circuit comprises 10UF electrolytic capacitors C16 and 10K resistors R22.
Furthermore, the circuit control module is also electrically connected with a clock circuit, and the clock circuit comprises a 12M crystal oscillator and 30PF ceramic chip capacitors C14 and C15 connected with the crystal oscillator.
Compared with the prior art, the remote control fan intelligent voice system and the voice control system are a voice operation system which is convenient for a user to control the fan in a home at a short distance. The user can control the fan device in the home only through the simplest voice command form in daily life. The interaction cost of the user and the fan is greatly reduced, and the convenience of the interaction of the user and the fan is greatly enhanced. In addition, when the user uses the remote operation system, the user only needs to download the corresponding app on the user terminal device, such as a smart phone, and uses the remote control system through the phone app. The user is more flexible and intelligent in operation of the household fan, the problems of gap of space distance and convenient operation close to the gap are greatly solved, and people can enjoy the convenience brought to life by intelligent home. The technical scheme support is provided for the household intelligent home to access the Internet of things. Using APP control at remote; at medium distance indoors, voice control is used; when the device is used in a short distance, the control panel is used; the remote control, the middle-distance voice control and the short-distance voice control of the Internet of things are considered.
Drawings
Fig. 1 is a system structure diagram of the present invention.
Fig. 2 is a block diagram of a system main control module.
Fig. 3 is a block diagram of a voice control module.
Fig. 4 is a structural diagram of the circuit control module and the fan control circuit.
FIG. 5 is a diagram showing the structure of a WIZnet W5100 chip.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings and specific embodiments.
As shown in fig. 1, the remote control fan intelligent voice system of the present embodiment includes a system main control module 1, a voice control module 2, a network module 3, a circuit control module 4, a non-isolated DC-DC power conversion circuit 5, a motor speed regulation control circuit 6, an infrared remote control signal receiving circuit 7, and a manual input control circuit 8.
As shown in fig. 1 to 5, the circuit control module 4 is electrically connected to the system main control module 1, the voice control module 2 is electrically connected to the system main control module 1, and the network module 3 is electrically connected to the system main control module 1; the non-isolated DC-DC power supply conversion circuit 5 is electrically connected with the circuit control module 4, the motor speed regulation control circuit 6 is electrically connected with the circuit control module 4, the infrared remote control signal receiving circuit 7 is electrically connected with the circuit control module 4, and the manual input control circuit 8 is electrically connected with the circuit control module 4. In this embodiment, because the voice control module 2 is electrically connected to the system main control module 1, after receiving a voice instruction sent by a user, the voice control module 2 performs voice recognition processing, and then the voice instruction is converted into a corresponding control instruction signal by the system main control module 1; because the circuit control module 4 is electrically connected with the system main control module 1, the system main control module 1 transmits the control instruction signal to the circuit control module 4, and the circuit control module 4 performs corresponding operation control on the fan.
As shown in fig. 1 to 5, the system master module 1 is an Arduino Mega 2560 core board, the Arduino Mega 2560 core board is connected with a DS1307 clock module, the + v port of the DS1307 clock module is connected in series with a 4.7K Ω R6 and SDA-12c date end connected as SDA and Arduino Mega 2560 core board SDA, the clock output port of the DS1307 clock module is connected in series with a 4.7K Ω R5 and SCL-12c clock end connected as SCL and Arduino Mega 2560 core board SCL. The voice control module 2 comprises an ASR M08-A voice recognition module 21, an LED1, an LED2, a steering engine 23 and a Relay K1, wherein the ASR M08-A voice recognition module 21 is connected with an Arduino UNO control board 22, TX and DX of an ASR M08-A are respectively connected with pins D0 and D1 of the Arduino UNO control board 22, an LED1 and an LED2 which are connected with the Arduino UNO control board 22, the steering engine 23 and the Relay K1 are further arranged, a Relay terminal of the Relay is connected with a pin D6 of the Arduino UNO control board 22, the LED1 is connected with a 1K omega resistor R1 in series and then connected with a pin D7 of the Arduino UNO control board 22, the LED2 is connected with a 1K omega resistor R2 in series and then connected with a pin D7 of the Arduino UNO control board 22, and a pulse terminal of the LED 3623 is connected with a pin D5 of the Arduino UNO control board 22; the voice control module 2 is connected with a loudspeaker and a microphone. The network module 3 in this embodiment is a WIZnet W5100 chip, the WIZnet W5100 chip is further connected with an Arduino UNO control board 22, and the network module is configured to receive and transmit a signal of the remote terminal App.
As shown in fig. 5, the circuit control module 4 in this embodiment is an STC89C55 single chip microcomputer. The non-isolated DC-DC power conversion circuit 5 comprises a switching power management chip SC1124DG, a 2200UH inductor connected with the SC1124DG, diodes D1 and D2, capacitors C5, C6 and C7, and capacitors C7 and C5 for filtering noise components in direct current. The motor speed regulation control circuit 6 comprises Z0607 bidirectional thyristors T1, T2, T3 and T4, resistors R1, R2, R3, R4, capacitors C1, C2, C3 and C4; the whole motor speed regulation control circuit 6 divides the fan into four speed gears of normal wind, natural wind, night wind and fast wind. The infrared remote control signal receiving circuit 7 consists of an infrared integrated receiving module T5, and the infrared integrated receiving module T5 is connected with an external interrupt pin P3.2 of the STC89C55 singlechip. The button circuit comprises five user manual buttons S3, S4, S5, S6 and S7. The functions of the manual buttons of the user are timing, wind type, wind speed, shaking head and power switch respectively, and the user can manually control the fan and the mode by pressing the five buttons.
As shown in fig. 5, the circuit control module 4 is further electrically connected to a reset circuit 9, which is used for the circuit control module 4 to implement resetting, and the reset circuit 9 includes an electrolytic capacitor C16 of 10UF and a resistor R22 of 10K. The circuit control module 4 is further electrically connected to a clock circuit 10, and the clock circuit 10 includes a 12M crystal oscillator, and 30PF ceramic chip capacitors C14 and C15 connected to the crystal oscillator, and provides a clock pulse signal for the circuit control module 4.
In the system, the voice control system is a voice operation system which is convenient for a user to control the fan in a home at a short distance. The user can control the fan device in the home only through the simplest voice command form in daily life. The interaction cost of the user and the fan is greatly reduced, and the convenience of the interaction of the user and the fan is greatly enhanced. In addition, when the user uses the remote operation system, the user only needs to download the corresponding app on the user terminal device, such as a smart phone, and uses the remote control system through the phone app. The user is more flexible and intelligent in operation of the household fan, the problems of gap of space distance and convenient operation close to the gap are greatly solved, and people can enjoy the convenience brought to life by intelligent home. The technical scheme support is provided for the household intelligent home to access the Internet of things.

Claims (7)

1. The utility model provides a remote control fan intelligence voice system which characterized in that: the system comprises a system main control module, a voice control module, a network module, a circuit control module, a non-isolated DC-DC power supply conversion circuit, a motor speed regulation control circuit, an infrared remote control signal receiving circuit and a manual input control circuit;
the circuit control module is electrically connected with the system main control module, the voice control module is electrically connected with the system main control module, and the network module is electrically connected with the system main control module;
the non-isolated DC-DC power supply conversion circuit is electrically connected with the circuit control module, the motor speed regulation control circuit is electrically connected with the circuit control module, the infrared remote control signal receiving circuit is electrically connected with the circuit control module, and the manual input control circuit is electrically connected with the circuit control module.
2. The remote-controlled fan smart phone system of claim 1, wherein: the system main control module is an Arduino Mega 2560 core board, the Arduino Mega 2560 core board is connected with a DS1307 clock module, the + v port of the DS1307 clock module is connected with a 4.7K omega R6 in series and the SDA-12c date end is connected as an SDA and is connected with the SDA of the Arduino Mega 2560 core board, the clock output port of the DS1307 clock module is connected with a 4.7K omega R5 in series and the SCL-12c clock end is connected as an SCL and is connected with the SCL of the Arduino Mega 2560 core board;
the voice control module comprises an ASR M08-A voice recognition module, an LED1, an LED2, a steering engine and a Relay K1, wherein the ASR M08-A voice recognition module is connected with an Arduino UNO control panel, TX and DX of an ASR M08-A are respectively connected with pins D0 and D1 of the Arduino UNO control panel, an LED1 and an LED2 which are connected with the Arduino UNO control panel, the steering engine and the Relay K1 are further arranged, a Relay end of the Relay is connected with a pin D6 of the Arduino UNO control panel, the LED1 is connected with a resistor R1 of 1K omega in series and then connected with a pin D7 of the Arduino UNO control panel, the LED2 is connected with a resistor R2 of 1K omega in series and then connected with a pin D7 of the Arduino UNO control panel, and a pulse end of the steering engine is connected with a pin D5 of the Arduino UNO control panel; the voice control module is connected with a loudspeaker and a microphone.
3. The remote-controlled fan smart phone system of claim 2, wherein: the network module is a WIZnet W5100 chip, and the WIZnet W5100 chip is connected with an Arduino UNO control board.
4. The remote-controlled fan smart phone system of claim 2, wherein: the network module comprises a WIFI module which is a WIZnet WIZFI250-H WiFi chip, and the WIZnet WIZFI250-H WiFi chip is connected with the Arduino UNO control panel.
5. The remote-controlled fan smart phone system of claim 1, wherein: the circuit control module is an STC89C55 singlechip;
the non-isolated DC-DC power conversion circuit comprises a switching power management chip SC1124DG, a 2200UH inductor connected with SC1124DG, diodes D1 and D2, and capacitors C5, C6 and C7; the capacitors C7 and C5 are used for filtering out noise components in direct current;
the motor speed regulation control circuit comprises Z0607 bidirectional thyristors T1, T2, T3 and T4, resistors R1, R2, R3, R4, capacitors C1, C2, C3 and C4;
the infrared remote control signal receiving circuit consists of an infrared integrated receiving module T5, and the infrared integrated receiving module T5 is connected with an external interrupt pin P3.2 of the STC89C55 singlechip;
the button circuit comprises five user manual buttons S3, S4, S5, S6 and S7.
6. The remote-controlled fan smart phone system of claim 5, wherein: the circuit control module is also electrically connected with a reset circuit, and the reset circuit comprises an electrolytic capacitor C16 of 10UF and a resistor R22 of 10K.
7. The remote-controlled fan smart phone system of claim 5, wherein: the circuit control module is also electrically connected with a clock circuit, and the clock circuit comprises a 12M crystal oscillator and 30PF ceramic chip capacitors C14 and C15 connected with the crystal oscillator.
CN202120388447.6U 2021-02-22 2021-02-22 Remote control fan intelligent voice system Active CN214366856U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120388447.6U CN214366856U (en) 2021-02-22 2021-02-22 Remote control fan intelligent voice system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120388447.6U CN214366856U (en) 2021-02-22 2021-02-22 Remote control fan intelligent voice system

Publications (1)

Publication Number Publication Date
CN214366856U true CN214366856U (en) 2021-10-08

Family

ID=77965870

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120388447.6U Active CN214366856U (en) 2021-02-22 2021-02-22 Remote control fan intelligent voice system

Country Status (1)

Country Link
CN (1) CN214366856U (en)

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