CN209824080U - LED illumination energy-saving lamp based on gesture voice induction - Google Patents

LED illumination energy-saving lamp based on gesture voice induction Download PDF

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Publication number
CN209824080U
CN209824080U CN201822255573.5U CN201822255573U CN209824080U CN 209824080 U CN209824080 U CN 209824080U CN 201822255573 U CN201822255573 U CN 201822255573U CN 209824080 U CN209824080 U CN 209824080U
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processing module
signal processing
voice
gesture
output end
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潘角
卢炳回
傅天珠
卢森锴
覃以威
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A Guilin Mdt Infotech Ltd
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A Guilin Mdt Infotech Ltd
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Abstract

A gesture voice induction based LED lighting energy-saving lamp relates to the field of intelligent lighting control and comprises an audio and video acquisition system, an image signal processing module, a voice signal processing module, a single chip microcomputer, a control processing module, lighting equipment and the like; the output end of the audio-video acquisition system is respectively connected with the input ends of the image signal processing module and the voice signal processing module, the output end of the brightness acquisition system is connected with the input end of the photoelectric signal processing module, the output ends of the image signal processing module, the voice signal processing module and the photoelectric signal processing module are respectively connected with the input end of the single chip microcomputer, the output end of the single chip microcomputer is connected with the input end of the control processing module, and the output end of the control processing module is connected with the lighting equipment. The utility model discloses it is very convenient to use, has characteristics such as control accuracy, simple structure, with low costs, easily uses widely.

Description

LED illumination energy-saving lamp based on gesture voice induction
Technical Field
The utility model relates to an intelligence lighting control field, especially a LED illumination electricity-saving lamp based on gesture voice response.
Background
The lighting device is a common household device in life, and the switching times are the most, which is quite troublesome. The switch is often found in the dark when the lamp is turned on, and the blind-firing practice of the black lamp is often found after the lamp is turned off, so that the lamp is very inconvenient to use. Although the lamp control system in the current market adopts a remote controller and a wall button switch additionally provided with a miniature indicator lamp, sometimes the remote controller cannot be found when the lamp illumination system is required to be controlled, at this time, the wall button switch is required to be used, the use is still inconvenient, and the requirements of users on switching at different positions or controlling the turning-off or brightness of the lamp cannot be met. In the prior art, the lighting circuit is controlled by the single voice recognition technology, such as Chinese patent application numbers '201510400405.9' and '201420780880.4', but the circuit sometimes generates misjudgment due to single recognition. The invention patent application with the application publication number of CN103987169A discloses an intelligent LED table lamp based on voice and gesture control and a control method thereof, but the patent still has the defects of single recognition, namely single recognition of gestures or voice, and easy generation of misjudgment; other technologies are integrated and applied to the field of lighting control, and the structure is complex, the cost is high, and the method is not suitable for market popularization.
Disclosure of Invention
The to-be-solved technical problem of the utility model is: the gesture voice induction based LED lighting energy-saving lamp is provided to overcome the defects of inconvenience in use, misjudgment, complex structure and high cost in the prior art.
The technical scheme for solving the technical problems is as follows: a gesture voice induction based LED lighting energy-saving lamp comprises a light brightness acquisition system, a single chip microcomputer and lighting equipment, and further comprises an audio-video acquisition system, an image signal processing module, a voice signal processing module, a photoelectric signal processing module, a control processing module and the lighting equipment; the output end of the audio-video acquisition system is respectively connected with the input ends of the image signal processing module and the voice signal processing module, the output end of the brightness acquisition system is connected with the input end of the photoelectric signal processing module, the output ends of the image signal processing module, the voice signal processing module and the photoelectric signal processing module are simultaneously connected with the input end of the single chip microcomputer, the output end of the single chip microcomputer is connected with the input end of the control processing module, and the output end of the control processing module is connected with the lighting equipment.
The utility model discloses a further technical scheme is: the audio and video acquisition system comprises a camera device and an electret microphone, wherein the output end of the camera device is connected with an image signal processing module, and the output end of the electret microphone module is connected with a voice signal processing module.
The utility model discloses a further technical scheme is again: the image signal processing module and the voice signal processing module are respectively provided with two or more groups.
The utility model discloses a further technical scheme is again: the voice signal processing module adopts an LD3320 voice signal processing module.
The utility model discloses a further technical scheme is: the single chip microcomputer adopts an MSP430F413 ultra-low power consumption single chip microcomputer.
The utility model discloses a further technical scheme is again: the light brightness acquisition system comprises a photoresistor sensor.
Due to the adoption of the structure, the utility model relates to a compare with prior art, have following beneficial effect based on gesture voice response LED illumination electricity-saving lamp:
1. convenient to use
The utility model comprises an audio-video acquisition system, an image signal processing module, a voice signal processing module, a brightness acquisition system, a photoelectric signal processing module, a singlechip, a control processing module and a lighting device; the output end of the audio-video acquisition system is respectively connected with the input ends of the image signal processing module and the voice signal processing module, the output end of the brightness acquisition system is connected with the input end of the photoelectric signal processing module, the output ends of the image signal processing module, the voice signal processing module and the photoelectric signal processing module are simultaneously connected with the input end of the single chip microcomputer, the output end of the single chip microcomputer is connected with the input end of the control processing module, and the output end of the control processing module is connected with the lighting equipment. When the lighting device is used, when light is dark and a person takes a gesture and turns on the lamp, the audio-video acquisition system acquires gesture signals and language information and transmits the gesture signals and the language information to the corresponding image signal module and the corresponding voice recognition module, the image signals and the voice signals are converted into electric signals through the level signal conversion circuit and transmitted to the single chip microcomputer, the single chip microcomputer processes the electric signals and transmits the electric signals to the control processing module, and the control processing module sends out control signals to control the lighting device to be turned on; when light is dark and a person takes a gesture and says to turn off the lamp, the audio-video acquisition system acquires gesture signals and language information and transmits the gesture signals and the language information to the corresponding image signal module and the corresponding voice recognition module, the image signals and the voice signals are converted into electric signals through the level signal conversion circuit and transmitted to the single chip microcomputer, the single chip microcomputer processes the electric signals and transmits the electric signals to the control processing module, and the control processing module sends out control signals to control the lighting equipment to be turned off; when light is on, no matter whether a person makes a gesture and turns on the lamp, the control processing module is in a disconnected state, and the lamp cannot be on. Therefore, the utility model does not need to blind up the black light to switch on or off the light, and does not need a remote controller or a button switch, and the use is very convenient.
2. Control accuracy
The utility model comprises a brightness acquisition system, a singlechip, a lighting device, an audio-video acquisition system, an image signal processing module, a voice signal processing module, a photoelectric signal processing module, a control processing module and a lighting device; the output end of the audio-video acquisition system is respectively connected with the input ends of the image signal processing module and the voice signal processing module, the output end of the brightness acquisition system is connected with the input end of the photoelectric signal processing module, and the output ends of the image signal processing module, the voice signal processing module and the photoelectric signal processing module are simultaneously connected with the input end of the single chip microcomputer. Therefore, the utility model discloses an input with image signal, speech signal, photoelectric signal combines together simultaneously and judges whether to open or close lighting apparatus. When light is dark and a person takes a gesture and says 'turn on the light', the audio-video acquisition system acquires gesture signals and language information and transmits the gesture signals and the language information to the corresponding image signal module and the corresponding voice recognition module, the image signals and the voice signals are converted into electric signals through the level signal conversion circuit and transmitted to the single chip microcomputer, the single chip microcomputer processes the electric signals and transmits the electric signals to the control processing module, and the control processing module sends out control signals to control the lighting equipment to be turned on; when light is dark and a person takes a gesture and says to turn off the lamp, the audio-video acquisition system acquires gesture signals and language information and transmits the gesture signals and the language information to the corresponding image signal module and the corresponding voice recognition module, the image signals and the voice signals are converted into electric signals through the level signal conversion circuit and transmitted to the single chip microcomputer, the single chip microcomputer processes the electric signals and transmits the electric signals to the control processing module, and the control processing module sends out control signals to control the lighting equipment to be turned off; when light is on, no matter whether a person makes a gesture and turns on the lamp, the control processing module is in a disconnected state, and the lamp cannot be on. Therefore, the utility model discloses a gesture, the dual discernment of pronunciation can avoid the erroneous judgement of singleness discernment, and its control is more accurate.
3. Simple structure, with low costs, easily use widely:
the utility model discloses can realize that lighting circuit has produced dual discernment's function when gesture and sound play simultaneously, its structure is practical, simple reliable, low cost, easily market a large amount of popularization and application.
The technical features of the gesture-based voice-sensing LED lighting energy-saving lamp and the method thereof according to the present invention will be further described with reference to the accompanying drawings and embodiments.
Drawings
FIG. 1: embodiment one the utility model relates to a functional block diagram based on gesture voice response LED illumination electricity-saving lamp.
Detailed Description
Example one
A gesture voice induction based LED lighting energy-saving lamp comprises an audio-video acquisition system, an image signal processing module, a voice signal processing module, a light brightness acquisition system, a photoelectric signal processing module, a level signal conversion circuit, a single chip microcomputer, a control processing module and lighting equipment; wherein:
the audio and video acquisition system comprises a camera device and an electret microphone, wherein the output end of the camera device is connected with an image signal processing module, the output end of the electret microphone module is connected with a voice signal processing module, and the voice signal processing module adopts an LD3320 voice signal processing module. The image signal processing module and the voice signal processing module are respectively provided with two groups.
The output end of the brightness acquisition system is connected with the input end of the photoelectric signal processing module, and the brightness acquisition system comprises a photoresistor sensor;
the output ends of the image signal processing module, the voice signal processing module and the photoelectric signal processing module are respectively connected with the input end of a level signal conversion circuit, the output end of the level signal conversion circuit is connected with the input end of a single chip microcomputer, the single chip microcomputer adopts an MSP430F413 ultra-low power consumption single chip microcomputer and is used for processing various acquisition signals and sensing signals and sending and receiving various control instructions, the output end of the single chip microcomputer is connected with the input end of the control processing module, and the control processing module is used for controlling the lighting equipment to be switched on and off and comprises a silicon controlled rectifier, a photoelectric switch, a relay and the like.
As a variation of the first embodiment, the audio/video acquisition system may further have a plurality of sets, and the image signal processing module and the voice signal processing module also have a plurality of sets, respectively.
The image signal processing module and the photoelectric signal processing module are all known technologies, and detailed description thereof is not provided herein.
The utility model relates to a theory of operation based on gesture voice response LED illumination electricity-saving lamp as follows:
when light is dark and a person makes a gesture and says 'turn on the light', a camera device and an electret microphone of the audio-video acquisition system respectively acquire gesture signals and language information and transmit the gesture signals and the language information to a corresponding image signal module and a corresponding voice recognition module, the image signals and the voice signals are converted into electric signals through a level signal conversion circuit and transmitted to a single chip microcomputer, the signals are transmitted to a control processing module after being processed by the single chip microcomputer, and the control processing module sends out control signals to control the lighting equipment to be turned on; when light is bright and a person makes a gesture and says to turn off a lamp, a camera device and an electret microphone of the audio-video acquisition system respectively acquire gesture signals and language information and transmit the gesture signals and the language information to a corresponding image signal module and a corresponding voice recognition module, the image signals and the voice signals are converted into electric signals through a level signal conversion circuit and transmitted to a single chip microcomputer, the signals are transmitted to a control processing module after being processed by the single chip microcomputer, and the control processing module sends out control signals to control lighting equipment to be turned off; when light is on, no matter whether a person makes a gesture and turns on the lamp, the control processing module is in a disconnected state, and the lamp cannot be on.

Claims (6)

1. The utility model provides a LED illumination electricity-saving lamp based on gesture voice response, includes luminance collection system, singlechip, lighting apparatus, its characterized in that: the system also comprises an audio and video acquisition system, an image signal processing module, a voice signal processing module, a photoelectric signal processing module, a control processing module and lighting equipment; the output end of the audio-video acquisition system is respectively connected with the input ends of the image signal processing module and the voice signal processing module, the output end of the brightness acquisition system is connected with the input end of the photoelectric signal processing module, the output ends of the image signal processing module, the voice signal processing module and the photoelectric signal processing module are simultaneously connected with the input end of the single chip microcomputer, the output end of the single chip microcomputer is connected with the input end of the control processing module, and the output end of the control processing module is connected with the lighting equipment.
2. The gesture voice induction based LED lighting energy-saving lamp according to claim 1, characterized in that: the audio and video acquisition system comprises a camera device and an electret microphone, wherein the output end of the camera device is connected with an image signal processing module, and the output end of the electret microphone module is connected with a voice signal processing module.
3. The gesture voice induction based LED lighting energy-saving lamp according to claim 2, characterized in that: the image signal processing module and the voice signal processing module are respectively provided with two or more groups.
4. The gesture voice induction based LED lighting energy-saving lamp according to claim 3, characterized in that: the voice signal processing module adopts an LD3320 voice signal processing module.
5. The gesture voice induction based LED lighting energy-saving lamp according to claim 1, characterized in that: the single chip microcomputer adopts an MSP430F413 ultra-low power consumption single chip microcomputer.
6. The gesture voice induction based LED lighting energy-saving lamp according to any one of claims 1 to 5, characterized in that: the light brightness acquisition system comprises a photoresistor sensor.
CN201822255573.5U 2018-12-29 2018-12-29 LED illumination energy-saving lamp based on gesture voice induction Active CN209824080U (en)

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Application Number Priority Date Filing Date Title
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112202655A (en) * 2020-09-23 2021-01-08 腾讯科技(深圳)有限公司 Intelligent electric appliance, image recognition method, electronic device and storage medium

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112202655A (en) * 2020-09-23 2021-01-08 腾讯科技(深圳)有限公司 Intelligent electric appliance, image recognition method, electronic device and storage medium

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