CN113959029A - Voice-controlled atomizer and control method thereof - Google Patents

Voice-controlled atomizer and control method thereof Download PDF

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Publication number
CN113959029A
CN113959029A CN202111350606.4A CN202111350606A CN113959029A CN 113959029 A CN113959029 A CN 113959029A CN 202111350606 A CN202111350606 A CN 202111350606A CN 113959029 A CN113959029 A CN 113959029A
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China
Prior art keywords
voice
air pump
control
air
connecting seat
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Chinese (zh)
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王毅
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Individual
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F6/00Air-humidification, e.g. cooling by humidification
    • F24F6/12Air-humidification, e.g. cooling by humidification by forming water dispersions in the air
    • F24F6/14Air-humidification, e.g. cooling by humidification by forming water dispersions in the air using nozzles
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H33/00Bathing devices for special therapeutic or hygienic purposes
    • A61H33/06Artificial hot-air or cold-air baths; Steam or gas baths or douches, e.g. sauna or Finnish baths
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61LMETHODS OR APPARATUS FOR STERILISING MATERIALS OR OBJECTS IN GENERAL; DISINFECTION, STERILISATION OR DEODORISATION OF AIR; CHEMICAL ASPECTS OF BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES; MATERIALS FOR BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES
    • A61L9/00Disinfection, sterilisation or deodorisation of air
    • A61L9/14Disinfection, sterilisation or deodorisation of air using sprayed or atomised substances including air-liquid contact processes
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/50Control or safety arrangements characterised by user interfaces or communication
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/89Arrangement or mounting of control or safety devices

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  • Engineering & Computer Science (AREA)
  • Health & Medical Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Public Health (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Epidemiology (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Animal Behavior & Ethology (AREA)
  • General Health & Medical Sciences (AREA)
  • Veterinary Medicine (AREA)
  • Human Computer Interaction (AREA)
  • Pain & Pain Management (AREA)
  • Physical Education & Sports Medicine (AREA)
  • Rehabilitation Therapy (AREA)
  • Dispersion Chemistry (AREA)
  • Disinfection, Sterilisation Or Deodorisation Of Air (AREA)

Abstract

The invention provides a voice control atomizer and a method thereof, wherein the voice control atomizer comprises: the machine body comprises a base, a shell and an upper cover, wherein the bottom of the shell is connected with the base, and the top of the shell is provided with a connecting seat and the upper cover; the upper cover is provided with a mist guide sealing cover, and an air guide pipeline is arranged in the shell; the connecting seat is arranged between the shell and the upper cover, the top end of the connecting seat is connected with the upper cover, and the bottom end of the connecting seat is connected with the top wall of the shell; the atomizing mechanism comprises an air pump assembly and an atomizing assembly, and the air pump assembly is connected with the atomizing assembly through the air guide pipeline; and the voice control mechanism is arranged above the base and is in circuit connection with the air pump assembly. The invention adopts the system action of the voice control mechanism and the atomization mechanism, picks up voice information and converts an audio control command into a control signal to control the atomization mechanism, so that the product is more intelligent, the detachable connecting seat is arranged, the contact air tightness is increased in the installation state, and the atomization effect is ensured.

Description

Voice-controlled atomizer and control method thereof
Technical Field
The invention relates to the technical field of atomizers, in particular to a voice-controlled atomizer and a control method thereof.
Background
The atomization device is a device for heating stored atomized substances to form an atomized state, and is widely used in the fields of air humidification, skin care, beauty and the like in life. Under the general condition, adopt key control, thereby establish intelligent control mode, strengthen thereby the better user demand that satisfies of connecting line gas tightness, improve user experience, be the indispensable link of development.
Disclosure of Invention
According to the technical problem, the invention provides the intelligent voice control atomizer with good sealing performance.
In order to achieve the technical effects, the invention adopts the following technical scheme: a voice-controlled nebulizer, comprising:
the machine body comprises a base, a shell and an upper cover, wherein the bottom of the shell is connected with the base, and the top of the shell is provided with a connecting seat and the upper cover; the upper cover is provided with a mist guide sealing cover, and an air guide pipeline is arranged in the shell;
the connecting seat is arranged between the shell and the upper cover, the top end of the connecting seat is connected with the upper cover, and the bottom end of the connecting seat is connected with the top wall of the shell; a connecting pipe is arranged in the guide hole of the connecting seat, and a secondary sealing cover is arranged on the bottom wall of the connecting seat;
the atomizing mechanism comprises an air pump assembly and an atomizing assembly, and the air pump assembly is connected with the atomizing assembly through the air guide pipeline;
the voice conversation reply amplifying assembly is arranged above the base, is in circuit connection with the air pump assembly and is used for amplifying a voice control instruction, recognizing voice information and converting the voice information into a control electric signal circuit to control the starting of the atomizing assembly;
wherein, atomizing mechanism, voice control mechanism all set up in the casing.
The invention is further provided with: the voice control mechanism includes:
the bracket comprises an upper panel, a lower panel and a side wall, wherein the upper panel and the lower panel are respectively connected with one end of the side wall;
the sound pickup assembly is used for picking up voice information generated in the surrounding environment and comprises a sound pickup base and a sound pickup, the sound pickup base is arranged on the side wall below the voice conversation reply amplification assembly, and the sound pickup base is provided with a sound pickup;
the voice conversation reply amplifying assembly comprises a loudspeaker base and a loudspeaker, wherein the loudspeaker bottom is arranged on the side wall of the bracket, the loudspeaker base is provided with the loudspeaker, and a sound transmission hole is formed in the shell at a position corresponding to the loudspeaker;
the voice integrated circuit board is arranged below the voice control mechanism and is electrically connected with the voice control mechanism and the air pump assembly; the voice control mechanism picks up voice information, converts the voice information into a control signal through the voice integrated circuit board, and starts the air pump assembly so as to drive the atomization assembly to be opened, closed or perform function adjustment.
The invention is further provided with: the atomization assembly is arranged in the shell below the connecting seat and comprises a storage cavity, a liquid atomization nozzle and a flow guide pipe; the storage cavity is internally provided with an atomization substance, the liquid atomization nozzle is arranged in the storage cavity, the primary sealing cover is arranged between the liquid atomization nozzle and the inner wall of the storage cavity, and the bottom wall of the connecting seat is provided with a secondary sealing cover corresponding to the primary sealing cover; the liquid atomization nozzle is connected with the flow guide pipe and the upper cover gas guide pipe, and the flow guide pipe extends downwards to penetrate into the storage cavity to enable the atomized substances to be close to the bottom surface without contacting the bottom surface; the liquid atomizing nozzle is further connected with the upper cover air duct, the upper cover air duct is connected with the air duct way through the air duct joint of the machine body, an air inlet sealing ring is further arranged outside the upper cover air duct, and the air inlet sealing ring is arranged in the mounting groove in the top of the shell.
The invention is further provided with: the air pump assembly comprises an air pump and an air pump air guide hose, the air pump is arranged in a cavity formed by the upper panel, the lower panel and the side wall of the support in an enclosing mode, the air pump is connected with the support in tight connection through an air pump linking seat, the air pump is connected with the air pump air guide hose, the air pump air guide hose is connected with the liquid atomizing nozzle through an air guide pipeline, a connecting pipe and an upper cover air guide pipe, and therefore air is guided into the liquid atomizing nozzle.
The invention is further provided with: still include stereoplasm soundproof cotton, set up store the chamber with between the voice control mechanism.
The invention is further provided with: the upper cover is provided with a mist guide sealing cover, and the mist guide sealing cover is provided with a mist outlet corresponding to the position of the mist outlet of the liquid atomizing nozzle; the connecting seat is provided with an atomized particle collecting cavity, and the atomized particle collecting cavity and the center of the mist outlet are on the same axis.
The invention is further provided with: the connecting seat is of a detachable structure.
The invention is further provided with: and the bottom of the base is provided with an anti-slip pad.
The invention also provides a control method for controlling the atomizer by voice, which is characterized by comprising the following steps:
A. the pickup device picks up voice information of an external environment in real time and transmits the voice information to the voice integrated circuit board;
B. the voice integrated circuit board controls the loudspeaker to carry out loudspeaker reply on the set voice conversation;
C. extracting, analyzing and judging target vocabularies appearing in the time node interval by the voice integrated circuit board;
C1. extracting voice information in a time node interval;
C2. analyzing a target vocabulary which is the same as or similar to the word meaning of the set voice instruction in the extracted voice information;
C3. and judging the crowd category to which the target vocabulary belongs.
D. The voice integrated circuit board analyzes and judges the instruction of the target vocabulary and executes control.
The invention is further provided with: step D, the voice integrated circuit board analyzes and judges the instruction of the target vocabulary and executes control steps, including:
a. when the target vocabulary is the same semantic vocabulary, the voice integrated circuit board executes a control command of the target vocabulary and responds to the air pump component so as to control the starting, closing and function adjustment of the atomizer;
b. when the target vocabularies do not belong to the same class and the time interval is greater than a preset value, controlling the voice control atomizer according to the latest generated target vocabularies;
c. when a plurality of target vocabularies do not belong to the same class of vocabularies and the time interval between the target vocabularies is smaller than the preset time interval, the target vocabularies with the largest sound amplitude are adopted to control the voice control atomizer; so as to prevent misoperation of a user in a short time during use.
In summary, compared with the prior art, the beneficial technical effects of the invention are as follows: the invention provides a voice control atomizer and a control method thereof, wherein the voice control atomizer comprises: the machine body comprises a base, a shell and an upper cover, wherein the bottom of the shell is connected with the base, and the top of the shell is provided with a connecting seat and the upper cover; the upper cover is provided with a mist guide sealing cover, and an air guide pipeline is arranged in the shell; the connecting seat is arranged between the shell and the upper cover, the top end of the connecting seat is connected with the upper cover, and the bottom end of the connecting seat is connected with the top wall of the shell; the atomizing mechanism comprises an air pump assembly and an atomizing assembly, and the air pump assembly is connected with the atomizing assembly through the air guide pipeline; the voice control mechanism is arranged above the base, is in circuit connection with the air pump assembly and is used for amplifying a voice control instruction, identifying voice information and converting the voice information into a control electric signal to control the circuit to start the atomization assembly; wherein, atomizing mechanism, voice control mechanism all set up in the casing. The invention adopts the system action of the voice control mechanism and the atomization mechanism to recognize and pick up voice information, replies a set conversation by a voice speaker and converts an extracted target vocabulary into a control signal to control the atomization mechanism, so that the product is more intelligent, the connection seat is arranged, the contact air tightness is increased in the installation state, and the atomization effect is ensured.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without creative efforts.
FIG. 1 is an external structural view of a first viewing angle of a voice-controlled atomizer according to the present invention;
FIG. 2 is an external structural view of a second viewing angle of the voice-controlled atomizer provided in the present invention;
FIG. 3 is a schematic view of a connection structure between a housing and an atomizing mechanism after a connecting seat and an upper cover of the voice-controlled atomizer provided by the present invention are removed;
FIG. 4 is a schematic view of the connection between the liquid atomizing nozzle and the flow guide tube of the voice-controlled atomizer provided by the present invention;
FIG. 5 is a flow chart of the control of the voice-controlled atomizer provided by the present invention;
FIG. 6 is a schematic view of the internal structure of a housing of a voice-controlled atomizer according to the present invention;
FIG. 7 is a schematic view of a support structure of the voice-controlled atomizer provided in the present invention;
FIG. 8 is a top view of a connecting seat in the voice controlled atomizer provided in the present invention;
FIG. 9 is a connection diagram of a connection seat and an atomization mechanism in the voice-controlled atomizer provided by the present invention;
fig. 10 is a bottom view of the connecting seat in the magnetically connected voice control atomizer of the present invention.
The reference numerals are explained below:
seal lid 1, upper cover 2, connecting seat 4, admit air sealing washer 5, liquid atomizing mouth 6, upper cover air duct 7, fuselage air guide joint 8, honeycomb duct 9, storage chamber 10, stereoplasm soundproof cotton 11, air pump link 12, speaker 13, speaker base 14, adapter 15, adapter base 16, support 17, top panel 171, lower panel 172, lateral wall 173, pronunciation integrated circuit board 18, base 19, slipmat 20, casing 22, air pump air guide hose 23, air guide hole 24, air pump 25, the sealed lid of second grade 26, the sealed lid of first grade 27.
The specific implementation mode is as follows:
example 1
As shown in fig. 1 and 2, a voice-controlled atomizer comprises: the machine body comprises a base 19, a shell 22 and an upper cover 2, the base 19 is provided with the shell 22, the top end of the shell 22 is provided with the connecting seat 4 and the upper cover 2, the upper cover 2 is provided with a mist guide sealing cover 1, the shell 22 is internally provided with a gas guide pipeline, the atomizing assembly and the voice control mechanism, the voice control mechanism comprises a voice control mechanism and an atomizing assembly, the voice control mechanism is arranged on the base 19 and can pick up and amplify a sound signal and convert the sound signal into a control signal so as to control the opening, closing and adjusting of the atomizing assembly, wherein the top end of the connecting seat 4 is connected with the upper cover 2, and the bottom end of the connecting seat is connected with the top wall of the shell 22; a guide hole is arranged on the connecting seat 4, a connecting pipe is arranged inside the connecting seat, and a second-stage sealing cover 26 is arranged on the bottom wall of the connecting seat 4.
In this embodiment, as an optional implementation mode, between casing 22 and connecting seat 4, between connecting seat 4 and the upper cover 2, all connect through the spacing mode of draw-in groove, specific saying so, be provided with slightly bellied fixture block on casing 22 and connecting seat 4 top inner wall, be provided with the assembly groove with protruding fixture block matched with at the bottom outer wall of connecting seat 4 and upper cover 2, connect through the joint mode in the installation, connect firm, installation, dismantlement convenience.
As another practical way, the shell 22 and the connecting seat 4, and the connecting seat 4 and the upper cover 2 are all in threaded connection, specifically, an internal thread is arranged on the inner wall of the top end of the shell 22, an external thread is arranged on the outer wall of the bottom of the connecting seat 4, an internal thread is arranged on the inner wall of the top end of the connecting seat 4, and an external thread is arranged on the upper cover 2, the shell 22 and the connecting seat 4 are in threaded connection through threaded fit, and the upper cover 2 and the connecting seat 4 are in threaded connection, so that the installation and the disassembly are convenient, and the connection structure is not easy to damage;
as another kind of mode that can carry out, casing 22 and connecting seat 4, connecting seat 4 is connected through external connection mechanism with upper cover 2, specific saying so, fixedly connected with magic buckle son is detained on the outer wall of casing 22, fixedly connected with magic box on the bottom outer wall of connecting seat 4, fixedly connected with magic buckle son is detained on the outer wall of connecting seat 4, magic buckle box is fixedly connected with magic buckle box on the outer wall of upper cover 2, thereby it is connected casing 22 and upper cover 2 to detain being connected between the box through magic buckle son and magic, adopt this kind of mode installation, it is convenient to dismantle, can not influence outside pleasing to the eye.
When the atomizing device is used, a user installs all the parts, converts the sound signals into control signals under the actions of voice control mechanism pickup, established voice dialogue reply amplification and conversion through dictation instructions, and controls the opening, closing and function adjustment of the atomizing assembly by controlling the output power of the air pump assembly.
Further, the air pump assembly comprises an air pump 25 and an air pump air guide hose 23, the air pump 25 is provided with the air pump air guide hose 23, the air pump air guide hose 23 is of a snake-shaped structure, the chamfer is smooth, the impact force in the gas conduction process is buffered, the atomization assembly comprises a storage cavity 10, a flow guide pipe 9 and a liquid atomization nozzle 6, the storage cavity 10 is connected with the connecting seat 4, in the embodiment, the outer wall of the storage cavity 10 is provided with external threads, the connecting seat 4 is provided with a mounting groove, internal threads are arranged in the groove body, and the storage cavity 10 is connected in a threaded fit manner by rotating; by adopting the connection mode, the connection mode is common in daily life, easy to operate and high in connection reliability;
in this embodiment, as an implementable manner, the air pump air guide hose 23 is in threaded connection with the air outlet of the air pump 25, and a connection sleeve having an external thread on an outer wall is provided at the port of the air pump air guide hose 23, and is matched with the internal thread of the air outlet of the air pump 25, and is connected in a threaded connection manner to lead out and conduct the generated air.
As another practical way, the air guide hose 23 of the air pump is in interference fit and plug-in connection with the air outlet of the air pump, and the effects of tight connection and air conduction can also be achieved.
An air pump air guide hose 23 in the air pump assembly is connected with an upper cover air guide pipe 7 through an air guide pipeline in a shell 22 and a connecting pipe arranged in a connecting seat 4, a sealing ring is arranged outside the top end of the upper cover air guide pipe 7, the bottom end of the upper cover air guide pipe is connected with an air guide joint 8 of the machine body, and gas generated by the air pump assembly is guided into an air inlet end of a liquid atomizing nozzle 6 connected with the upper cover air guide pipe 7 through the air guide pipeline, the connecting pipe and the upper cover air guide pipe 7;
the bottom end of the liquid atomizing nozzle 6 is connected with the flow guide pipe 9, the flow guide pipe 9 extends downwards to penetrate into the storage cavity 10 and is close to but not in contact with the bottom surface of the storage cavity 10, so that gas is guided into the storage cavity 10, and liquid atomizing substances move upwards by utilizing the siphon principle and are atomized by the liquid atomizing nozzle 6 and then are sprayed out; a primary sealing cover 27 is arranged between the inner wall of the bottle mouth at the upper end of the storage cavity 10 and the outer wall of the liquid atomizing nozzle 6 and is used for increasing air tightness and ensuring an atomizing effect; the primary seal cap 27 corresponds in position to the secondary seal cap 26.
Further, connecting seat 4 is detachable construction, and in the use, with the sealed lid 26 of second grade, admit air sealing washer 5, admit air hose 7 all hide in the bottom of connecting seat 4 and be used for further increasing the gas tightness, still can reach the atomizing effect of speech control after dismantling connecting seat 4, nevertheless install connecting seat 4 time sealed effect better.
Further, the voice control mechanism comprises a support 17, a voice conversation reply amplification assembly, a pickup assembly and a voice integrated circuit board 18;
wherein, the bracket 17 includes an upper panel 171, a lower panel 172 and a sidewall 173, and the upper panel 171 and the lower panel 172 are respectively connected with one end of the sidewall 173; the upper and lower panels 171 and 172 are perpendicular to the side walls 173, respectively;
as an implementation manner, the upper panel 171, the lower panel 172 and the sidewall 173 are integrally formed, so that the structure stability is high, and the processing and the use are convenient.
As another practical way, the upper panel 171, the lower panel 172 and the side wall 173 are connected together in a splicing manner, so that more time is required for installation and disassembly, and the same use effect can be achieved after installation;
in the present embodiment, the bracket 17 is formed by integrally molding an upper panel 171, a lower panel 172 and a sidewall 173; wherein, lateral wall 173 can have one or more, and voice conversation replies and enlargies subassembly, pickup assembly and sets up respectively on lateral wall 173, and when lateral wall 173 has a plurality ofly, corresponding voice conversation replies and enlargies subassembly, pickup assembly be a plurality ofly, and along with the increase of quantity, its sensitivity to external speech information increases, and the circumference speech information discernment, extraction can be realized to the accessible increase of its quantity.
The voice integrated circuit board 18 is arranged below the lower panel 172 and is in circuit connection with the voice conversation reply amplification component and the pickup component; in the present embodiment, an offline voice module is disposed in the voice integrated circuit board 18, and can reply the collected dialogue information offline;
the voice conversation reply amplifying assembly comprises a loudspeaker base 14 and a loudspeaker 13 which are both arranged on the side wall 173 of the bracket 17, the loudspeaker 13 is arranged on the loudspeaker base 14, and a sound transmission hole 24 is arranged on the shell 22 corresponding to the loudspeaker 13;
the sound pickup assembly comprises a sound pickup base 16 and a sound pickup 15 which are both arranged on the side wall 173 of the bracket 17 below the voice conversation reply amplification assembly, and the sound pickup 15 is arranged on the sound pickup base 16;
the voice ic board 18 is disposed below the lower panel 172 of the bracket 17 and is electrically connected to the voice control mechanism and the air pump assembly.
When the voice control mechanism 17 is used, the voice control mechanism responds to the amplifying component through voice conversation to amplify the spoken voice command, picks up voice information through the pickup component, converts the voice information into a control signal through the voice integrated circuit board 18, and starts the air pump component.
Further, the upper panel 171, the lower panel 172 and the sidewall 173 of the bracket 17 enclose a cavity 174, and the air pump 25 is disposed in the cavity 174 and is tightly connected to the sidewall 173 of the bracket 17 through the air pump linking base 12.
In use, the air pump assembly is stably fixed in the cavity 174 inside the bracket 17 through the air pump linking seat 12.
Further, the sound-proof cotton storage box also comprises hard sound-proof cotton 11 which is arranged between the storage cavity 10 and the voice control mechanism. The influence of the sound generated by the atomization assembly during working on the voice control mechanism is blocked, and the effectiveness and the accuracy of voice control are improved; in order to improve the sound insulation effect, the hard sound insulation cotton 11 extends axially to be connected with the inner wall of the shell 22; on the other hand, the space inside the housing 22 can be divided to carry the weight of the storage chamber 10.
When using, the air pump subassembly will be gaseous to be conducted to the atomizing liquid level that stores in the storage chamber 10 under the bubble sound can influence voice control mechanism 17 to outside voice command's the effect of picking up, can effectively separate the sound conduction through stereoplasm soundproof cotton 11, guarantee voice command's the effect of picking up.
Further, the upper cover 2 is provided with a mist guide sealing cover 1, and the mist guide sealing cover 1 is provided with a mist outlet corresponding to the position of the mist outlet of the liquid atomizing nozzle 6; the connecting seat 4 is provided with an atomized particle collecting cavity 3, and the atomized particle collecting cavity 3 and the center of the mist outlet are on the same axis.
Further, the bottom of the base 19 is provided with the non-slip mat 20, the non-slip mat 20 is fixedly connected with the bottom surface of the base 19 in the embodiment, and the non-slip mat 20 is in contact with a placing surface in the using process, so that the contact friction force is increased, and the non-slip mat cannot be easily inclined or damaged when being placed and used. As an alternative embodiment, in order to increase the surface roughness of the non-slip mat 20, non-slip lines, such as water ripples, zigzag lines, serpentine lines, etc., may be provided;
as another alternative, the non-slip mat 20 may be made of a material with a relatively high surface roughness, such as a silicone material, a PVC material, etc.
Example 2
As a preferred embodiment, the bracket 17 includes an upper panel 171, a lower panel 172 and a plurality of sidewalls 173, and is an integrally formed structure, and one or more voice dialog reply amplification assemblies and sound pickup assemblies are disposed on each sidewall 173, so that voice commands can be picked up in the directions of the voice dialog reply amplification assemblies and the sound pickup assemblies, and the effectiveness of picking up the voice commands can be improved.
In this embodiment, there are 4 side walls 173, and each side wall 173 is provided with a sound amplifying assembly and a sound pickup assembly, so that the voice command adapting operation can be performed simultaneously from four directions, and the voice command can be quickly picked up from any direction.
As an implementable manner, the number of the side walls 173, which are common and easily accepted in daily life, can be 3, 6 or 8, and as the number of the side walls increases, the voice information pickup of the side walls is realized, the recognition sensitivity of the whole machine is improved, and the recognition and extraction of the circumferential voice information are realized.
Example 3
In use, the nebulizable substance of the storage chamber 10 can be replaced according to the requirements of use;
as an alternative embodiment, when humidification is needed, the humidification liquid can be water or atomized liquid, and the atomized liquid is used for forming mist to humidify the space;
as another alternative, when skin care is needed, the humidifying liquid can be replaced by skin care liquid or a mixed liquid of skin care essential oil is added into water, and the skin care and the skin nourishing are carried out through atomization;
as another optional mode, when the perfume diffuser is used as a perfume diffuser, the humidifying liquid can be replaced by perfume or mixed liquid of perfume essential oil is added into water, and fragrance is diffused through atomization, so that the using effects of refreshing the space and increasing fragrance for the space are achieved.
Example 4
A method of controlling a voice-controlled nebulizer, comprising:
A. the pick-up device 15 picks up the voice information of the external environment in real time and transmits the voice information to the voice integrated circuit board 18;
B. the voice integrated circuit board 18 controls the speaker 13 to perform a speaker reply to the set voice conversation;
in this embodiment, the voice ic board 18 includes an offline voice module, and when the pickup device 15 recognizes and extracts the information corresponding to the set dialog information, the voice ic board 18 invokes the dialog reply information in the offline voice module to be played through a speaker;
C. extracting, analyzing and judging target vocabularies appearing in the time node interval by the voice integrated circuit board 18;
C1. extracting voice information in a time node interval;
C2. analyzing a target vocabulary which is the same as or similar to the word meaning of the set voice instruction in the extracted voice information;
C3. judging the crowd category of the target vocabulary;
step C3 includes monitoring the sound amplitude, vibration frequency and tone of the target vocabulary, and comparing and judging with the set threshold;
whether voice information of different crowd categories exists or not;
in this embodiment, as an alternative embodiment, the crowd categories are classified according to age and are set as children, adults, and elderly people.
The division mode is selected, convenience is provided for people with poor body constitution in daily life, and in daily life, the old people are more sensitive to changes of living environments due to the fact that the old people are weaker than adults and children, so that the old people can be set as first-level voice output users; children are more sensitive to changes in living environment than adults are weak in constitution, so that children can be set as secondary voice output users; adults are stronger than children and the elderly, have the weakest sensitivity to changes in the external living environment, and have less need for control adjustment, so that they can be positioned to three-level voice output users.
After the sound pickup picks up the voice information and transmits the voice information to the voice integrated circuit board 18, the crowd type of the sound is determined by extracting and analyzing the amplitude and the vibration frequency of the sound wave, wherein the amplitude represents the loudness of the sound, and one of the factors influencing the amplitude of the picked sound is the distance, and the other is the amplitude of the sound source; generally, the amplitude of sound picked up is smaller as the distance is farther, and the amplitude of sound source itself is smaller, so that when the amplitude is smaller, two cases can be generally determined: 1. the distance is long, 2. the body of the user emitting the sound source is weak;
the vibration frequency of the sound wave can reflect the tone of the sound source, the tone is lower for people with weak constitution, and the tone is higher for people with strong constitution,
and combining the judgment results of the sound source and the sound source to judge the sound source into the corresponding crowd category.
Further, in step C3, if the crowd category to which the user belongs is different, the voice target vocabulary command of the priority crowd category is extracted according to the set crowd category priority.
Further, in step C3, if the crowd category belongs to the same crowd category, the voice ic board 18 extracts all target words.
D. The voice ic board 18 analyzes and judges the instruction of the target vocabulary and performs control.
Further: a. when the target vocabulary is the same type of semantic vocabulary, the voice integrated circuit board 18 executes a control command of the target vocabulary and responds to the air pump assembly so as to control the starting, closing and function adjustment of the atomizer;
b. when the target vocabularies do not belong to the same class and the time interval is greater than a preset value, controlling the voice control atomizer according to the latest generated target vocabularies;
c. when the target vocabularies do not belong to the same class and the time interval is smaller than the preset time interval, the target vocabularies with the largest sound amplitude are adopted to control the voice control atomizer; generally, when the voice command has a wrong description, the volume is increased when the user actively corrects the voice command, and the amplitude of the generated voice is relatively increased, so that the design can effectively correct the misoperation in use.
Specifically, the step a further comprises the following steps:
1. when only one person has a voice command and the voice command is similar to the word of opening, starting the air pump assembly;
the air pump assembly is connected with the atomization assembly, is transmitted to the liquid atomization nozzle 6 through the air guide pipe 7 of the upper cover by the air guide pipeline and the connecting pipe, atomized liquid in the storage cavity 10 passes through the air guide pipe 9 by adopting the siphon principle, so that the liquid level rises and is taken out through the air guide pipe 9, and is released from the mist outlet under the atomization action of the liquid atomization nozzle 6;
in the upward operation process of the fog, the fog is released into the outside air through the connecting seat 4 and the fog outlet on the fog guide sealing cover 1; when passing through the connecting seat 4, large particles which are not completely atomized enter the atomized particle collecting cavity 3, fall from the backflow hole under the action of gravity, enter the storage cavity 10 again, and are atomized again;
2. when only one person has a voice instruction, and the voice instruction is similar to the word of closing, controlling an air pump in the air pump assembly to stop running; so that the atomization assembly stops working without a power source.
3. When only one person has a voice instruction and the voice instruction is a regulation vocabulary, if the fog output becomes large and the fog output becomes small, the voice integrated circuit board 18 adjusts the work rate of the air pump assembly to be large or small according to the control signal after analyzing the semantics, so that the air flow conduction quantity and the speed are controlled, and the work of regulating the fog output is further achieved.
Example 5
A method of controlling a voice-controlled nebulizer, comprising:
A. the pick-up device 15 picks up the voice information of the external environment in real time and transmits the voice information to the voice integrated circuit board 18;
B. the voice integrated circuit board 18 controls the speaker 13 to perform a speaker reply to the set voice conversation;
C. extracting, analyzing and judging target vocabularies appearing in the time node interval by the voice integrated circuit board 18;
C1. extracting voice information in a time node interval;
C2. analyzing a target vocabulary which is the same as or similar to the word meaning of the set voice instruction in the extracted voice information;
C3. judging the crowd category of the target vocabulary;
step C3 includes monitoring the sound amplitude, vibration frequency and tone of the target vocabulary, and comparing and judging with the set threshold;
whether voice information of different crowd categories exists or not;
in this embodiment, as an alternative implementation, the crowd categories are divided into a male category and a female category according to gender, and because women have higher sensitivity to environmental changes and higher requirements for environmental humidity compared with men, the female category can be set as a primary voice output user, and the male category can be set as a secondary voice output user;
as another alternative, the population is divided more finely into: boys, girls, adult men, adult women, elderly men, and elderly women; the division is more detailed and objective, and the grade of the voice output user can be set according to the use requirement in a grading way
After the sound pickup picks up the voice information and transmits to the voice integrated circuit board 18, the crowd category of the sound is determined by extracting and analyzing the amplitude, the vibration frequency and the tone color of the sound wave, specifically:
judging the loudness of a sound source through amplitude, wherein the sound of a man is louder than that of a woman in general;
the tone of the sound source is reflected by the vibration frequency, and in general, the tone of women is higher than that of men;
different timbres can generate completely different sound wave pulses through timbres, and the sound source is judged to be the corresponding crowd type by combining three judging modes.
Further, in step C3, if the crowd category to which the user belongs is different, the voice target vocabulary command of the priority crowd category is extracted according to the set crowd category priority.
Further, in step C3, if the crowd category belongs to the same crowd category, the voice ic board 18 extracts all target words.
D. The voice ic board 18 analyzes and judges the instruction of the target vocabulary and performs control.
Further: a. when the target vocabulary is the same type of semantic vocabulary, the voice integrated circuit board 18 executes a control command of the target vocabulary and responds to the air pump assembly so as to control the starting, closing and function adjustment of the atomizer;
b. when the target vocabularies do not belong to the same class and the time interval is greater than a preset value, controlling the voice control atomizer according to the latest generated target vocabularies;
c. when the target vocabularies do not belong to the same class and the time interval is smaller than the preset time interval, the target vocabularies with the largest sound amplitude are adopted to control the voice control atomizer; generally, when the voice command has a wrong description, the volume is increased when the user actively corrects the voice command, and the amplitude of the generated voice is relatively increased, so that the design can effectively correct the misoperation in use.
Example 6
A method of controlling a voice-controlled nebulizer, comprising:
A. the pick-up device 15 picks up the voice information of the external environment in real time and transmits the voice information to the voice integrated circuit board 18;
B. the voice integrated circuit board 18 controls the speaker 13 to perform a speaker reply to the set voice conversation;
C. extracting, analyzing and judging target vocabularies appearing in the time node interval by the voice integrated circuit board 18;
C1. extracting voice information in a time node interval;
C2. analyzing a target vocabulary which is the same as or similar to the word meaning of the set voice instruction in the extracted voice information;
C3. judging the crowd category of the target vocabulary;
step C3 includes monitoring the sound amplitude, vibration frequency and tone of the target vocabulary, and comparing and judging with the set threshold;
whether voice information of different crowd categories exists or not;
in this embodiment, as an alternative implementation, the crowd categories are divided into a male category and a female category according to gender, and because women have higher sensitivity to environmental changes and higher requirements for environmental humidity compared with men, the female category can be set as a primary voice output user, and the male category can be set as a secondary voice output user;
as another alternative, the population is divided more finely into: boys, girls, adult men, adult women, elderly men, and elderly women; the division is more detailed and objective, and the grade of the voice output user can be set according to the use requirement in a grading way
After the sound pickup picks up the voice information and transmits to the voice integrated circuit board 18, the crowd category of the sound is determined by extracting and analyzing the amplitude, the vibration frequency and the tone color of the sound wave, specifically:
judging the loudness of a sound source through amplitude, wherein the sound of a man is louder than that of a woman in general;
the tone of the sound source is reflected by the vibration frequency, and in general, the tone of women is higher than that of men;
by means of the timbre, different timbres will produce completely different sound pulses,
and judging the sound source into the corresponding crowd category by combining three judging modes.
Further, in step C3, if the crowd category to which the user belongs is different, the voice target vocabulary command of the priority crowd category is extracted according to the set crowd category priority.
Further, in step C3, if the crowd category belongs to the same crowd category, the voice ic board 18 extracts all target words.
D. The voice ic board 18 analyzes and judges the instruction of the target vocabulary and performs control.
Further: a. when the target vocabulary is the same type of semantic vocabulary, the voice integrated circuit board 18 executes a control command of the target vocabulary and responds to the air pump assembly so as to control the starting, closing and function adjustment of the atomizer;
b. when the target vocabularies do not belong to the same class and the time interval is greater than a preset value, controlling the voice control atomizer according to the latest generated target vocabularies;
c. when the target vocabularies do not belong to the same class and the time interval is smaller than the preset time interval, the target vocabularies with the largest sound amplitude are adopted to control the voice control atomizer; generally, when the voice command has a wrong description, the volume is increased when the user actively corrects the voice command, and the amplitude of the generated voice is relatively increased, so that the design can effectively correct the misoperation in use.
In the description of the present application, it is to be understood that the terms "upper", "lower", "top", "bottom", "inner", "outer", "rear", and the like, indicate orientations and positional relationships based on the orientations and positional relationships shown in the drawings, are only for convenience in describing the present invention and simplifying the description, and do not indicate or imply that the referenced devices or elements must have a particular orientation, be constructed and operated in a particular orientation, and thus, are not to be construed as limiting the present invention.
In this application, unless expressly stated or limited otherwise, the terms "mounted," "connected," "secured," and the like are to be construed broadly and can include, for example, fixed connections, removable connections, or integral parts; can be mechanically or electrically connected; either directly or indirectly through intervening media, either internally or in any other relationship. The specific meanings of the above terms in the present invention can be understood by those skilled in the art according to specific situations.
The above description is only a preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art can easily make changes or variations within the technical scope of the present invention disclosed, and such changes or variations should be covered within the scope of the present invention. Therefore, the protection scope of the present invention shall be subject to the protection scope of the claims. The technical features mentioned in the embodiments can be combined in any way as long as there is no structural conflict. It is intended that the invention not be limited to the particular embodiments disclosed, but that the invention will include all embodiments falling within the scope of the appended claims.

Claims (10)

1. A voice-controlled nebulizer, comprising:
the air guide device comprises a machine body, a fan and a control device, wherein the machine body comprises a base (19), a shell (22) and an upper cover (2), the bottom of the shell (22) is connected with the base (19), the upper cover (2) is arranged at the top of the shell, and an air guide pipeline is arranged in the shell (22);
the connecting seat (4) is arranged between the shell (22) and the upper cover (2), the top end of the connecting seat is connected with the upper cover (2), and the bottom end of the connecting seat is connected with the top wall of the shell (22); a guide hole is formed in the connecting seat (4), a connecting pipe is arranged in the connecting seat, and a secondary sealing cover (26) is arranged on the bottom wall of the connecting seat (4);
the atomizing mechanism comprises an air pump assembly and an atomizing assembly, and the air pump assembly is connected with the atomizing assembly through the air guide pipeline;
the voice control mechanism is arranged above the base (19), is in circuit connection with the air pump assembly and is used for receiving a voice control instruction, identifying voice information and converting the voice information into a control electric signal circuit to control and start the atomization mechanism;
wherein, atomizing mechanism, voice control mechanism all set up in casing (22).
2. The voice-controlled nebulizer of claim 1 wherein said voice-controlled mechanism comprises:
the bracket (17) comprises an upper panel (171), a lower panel (172) and a side wall (173), wherein the upper panel (171) and the lower panel (172) are respectively connected with one end of the side wall (173);
the sound pickup assembly is used for picking up voice information in the external environment and comprises a sound pickup base (16) and a sound pickup (15), the sound pickup base (16) is arranged on the side wall (173) below the voice conversation reply amplification assembly, and the sound pickup base (16) is provided with the sound pickup (15);
the voice conversation reply amplifying assembly comprises a loudspeaker base (14) and a loudspeaker (13), wherein the loudspeaker base (14) is arranged on the side wall of the support (17), the loudspeaker (13) is arranged on the loudspeaker base (14), and a sound transmission hole (24) is formed in the shell (22) at a position corresponding to the loudspeaker (13);
the voice integrated circuit board (18) is electrically connected with the voice control mechanism and the air pump assembly; the voice control mechanism picks up voice information, converts the voice information into a control signal through the voice integrated circuit board (18), and starts the air pump assembly so as to drive the atomization assembly to be opened and closed or perform function adjustment.
3. A voice-controlled atomiser according to claim 1, characterised in that the atomising assembly is located in the housing (22) below the connecting socket (4) and comprises a storage chamber (10), a liquid atomising nozzle (6), a flow-guide tube (9); the storage cavity (10) is internally provided with an atomized substance, the liquid atomizing nozzle (6) is arranged in the storage cavity (10), the primary sealing cover (27) is arranged between the liquid atomizing nozzle (6) and the inner wall of the storage cavity (10), and the primary sealing cover (27) corresponds to the secondary sealing cover (26); the liquid atomizing nozzle (6) is connected with the flow guide pipe (9), and the flow guide pipe extends downwards to penetrate into the storage cavity (10) and is close to the bottom surface of the liquid surface of the atomized substance without contacting the bottom surface; the top end of the liquid atomizing nozzle (6) is connected with a connecting pipe in the connecting seat (4), the connecting pipe is also connected with a connecting pipe of the upper cover air duct (7), and the upper cover air duct (7) is further communicated with an air duct pipeline and an air pump assembly through the air guide joint (8) of the machine body; and an air inlet sealing ring (5) is arranged outside the upper cover air duct (7), and the sealing ring 5 is arranged in a mounting groove formed in the inner wall of the shell.
4. The voice-controlled atomizer according to claim 1, wherein the air pump assembly comprises an air pump (25) and an air pump air guide hose (23), the air pump (25) is disposed in a cavity (174) enclosed by an upper panel (171), a lower panel (172) and a side wall (173) of the bracket (17), the air pump (25) is tightly connected with the bracket (173) through an air pump linking seat (12), the air pump (25) is connected with the air pump air guide hose (23), and the air pump air guide hose (23) is connected with the liquid atomizing nozzle (6) through an air guide pipeline, a connecting pipe and the upper cover air guide pipe (7), so as to guide air into the liquid atomizing nozzle (6).
5. A voice controlled atomiser according to claim 1, further comprising a rigid acoustic wool pad (11) disposed between the storage chamber (10) and the voice control mechanism.
6. The voice-controlled atomizer according to claim 1, wherein the upper cover (2) is provided with a mist guiding sealing cover (1), and a mist outlet is formed in the mist guiding sealing cover (1) and corresponds to the mist outlet of the liquid atomizing nozzle (6); the connecting seat (4) is provided with an atomized particle backflow cavity (3), and the atomized particle backflow cavity (3) and the center of the mist outlet are on the same axis.
7. A voice controlled atomiser according to claim 1, characterised in that the connecting base (4) is of a detachable construction.
8. A voice-controlled atomiser according to claim 1, characterised in that the base (19) is provided with a non-slip mat (20) at its base.
9. A voice control system for a nebulizer, the control method comprising:
A. the pickup device (15) picks up voice information of an external environment in real time and transmits the voice information to the voice integrated circuit board (18);
B. the voice integrated circuit board (18) controls the control loudspeaker (13) to reply to the set voice conversation loudspeaker;
C. the voice integrated circuit board (18) extracts, analyzes and judges target words appearing in the time node interval;
C1. extracting voice information in a time node interval;
C2. analyzing a target vocabulary which is the same as or similar to the word meaning of the set voice instruction in the extracted voice information;
C3. judging the crowd category of the target vocabulary;
D. the voice integrated circuit board (18) analyzes and judges the instruction of the target vocabulary and executes control.
10. The method as claimed in claim 9, wherein the step D of analyzing and determining the command of the target vocabulary and executing the control by the voice ic board (18) comprises:
a. when the target vocabularies are the same semantic vocabularies, the voice integrated circuit board (18) executes a control command of the target vocabularies and responds to the air pump assembly so as to control the starting, the closing and the function adjustment of the atomizer;
b. when the target vocabularies do not belong to the same class and the time interval is greater than a preset value, controlling the voice control atomizer according to the latest generated target vocabularies;
c. when a plurality of target vocabularies do not belong to the same class of vocabularies and the time interval between the target vocabularies is smaller than the preset time interval, the target vocabularies with the largest sound amplitude are adopted to control the voice control atomizer; so as to prevent misoperation of a user in a short time during use.
CN202111350606.4A 2021-11-15 2021-11-15 Voice-controlled atomizer and control method thereof Pending CN113959029A (en)

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