CN110925973A - Intelligent air outlet system for adding variable wind power of target character body in multi-person scene - Google Patents
Intelligent air outlet system for adding variable wind power of target character body in multi-person scene Download PDFInfo
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- CN110925973A CN110925973A CN201911066887.3A CN201911066887A CN110925973A CN 110925973 A CN110925973 A CN 110925973A CN 201911066887 A CN201911066887 A CN 201911066887A CN 110925973 A CN110925973 A CN 110925973A
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- 230000007613 environmental effect Effects 0.000 claims abstract description 12
- 239000003570 air Substances 0.000 claims description 210
- 230000007246 mechanism Effects 0.000 claims description 55
- 239000012080 ambient air Substances 0.000 claims description 38
- 238000001514 detection method Methods 0.000 claims description 22
- 238000000034 method Methods 0.000 claims description 22
- 230000036760 body temperature Effects 0.000 claims description 7
- 230000003068 static effect Effects 0.000 claims description 7
- 230000006698 induction Effects 0.000 claims description 5
- 210000001747 pupil Anatomy 0.000 claims description 3
- 230000003238 somatosensory effect Effects 0.000 claims description 3
- 238000013480 data collection Methods 0.000 claims description 2
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- 230000033228 biological regulation Effects 0.000 abstract description 5
- 230000006855 networking Effects 0.000 description 5
- 238000010438 heat treatment Methods 0.000 description 4
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F11/00—Control or safety arrangements
- F24F11/62—Control or safety arrangements characterised by the type of control or by internal processing, e.g. using fuzzy logic, adaptive control or estimation of values
- F24F11/63—Electronic processing
- F24F11/64—Electronic processing using pre-stored data
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F11/00—Control or safety arrangements
- F24F11/50—Control or safety arrangements characterised by user interfaces or communication
- F24F11/52—Indication arrangements, e.g. displays
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F11/00—Control or safety arrangements
- F24F11/50—Control or safety arrangements characterised by user interfaces or communication
- F24F11/56—Remote control
- F24F11/58—Remote control using Internet communication
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F11/00—Control or safety arrangements
- F24F11/62—Control or safety arrangements characterised by the type of control or by internal processing, e.g. using fuzzy logic, adaptive control or estimation of values
- F24F11/63—Electronic processing
- F24F11/65—Electronic processing for selecting an operating mode
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F11/00—Control or safety arrangements
- F24F11/70—Control systems characterised by their outputs; Constructional details thereof
- F24F11/72—Control systems characterised by their outputs; Constructional details thereof for controlling the supply of treated air, e.g. its pressure
- F24F11/74—Control systems characterised by their outputs; Constructional details thereof for controlling the supply of treated air, e.g. its pressure for controlling air flow rate or air velocity
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F11/00—Control or safety arrangements
- F24F11/70—Control systems characterised by their outputs; Constructional details thereof
- F24F11/72—Control systems characterised by their outputs; Constructional details thereof for controlling the supply of treated air, e.g. its pressure
- F24F11/79—Control systems characterised by their outputs; Constructional details thereof for controlling the supply of treated air, e.g. its pressure for controlling the direction of the supplied air
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F11/00—Control or safety arrangements
- F24F11/89—Arrangement or mounting of control or safety devices
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F2110/00—Control inputs relating to air properties
- F24F2110/10—Temperature
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F2110/00—Control inputs relating to air properties
- F24F2110/20—Humidity
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F2110/00—Control inputs relating to air properties
- F24F2110/30—Velocity
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F2110/00—Control inputs relating to air properties
- F24F2110/50—Air quality properties
- F24F2110/64—Airborne particle content
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F2110/00—Control inputs relating to air properties
- F24F2110/50—Air quality properties
- F24F2110/65—Concentration of specific substances or contaminants
- F24F2110/70—Carbon dioxide
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F2120/00—Control inputs relating to users or occupants
- F24F2120/10—Occupancy
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Abstract
An intelligent air outlet system for adding and holding the swinging blade and the variable wind power of a target character body in a multi-person scene is provided with a wind power adding and holding mode of the target character under the condition of a plurality of persons, when the user selects the target character wind power holding mode under the condition of multiple persons, the air outlet component is controlled to exhaust air according to the target character wind power holding mode under the condition of multiple persons by changing the machine body and the swinging blade, the air outlet assembly is controlled to adjust the indoor temperature to the temperature environment suitable for the human body and the humidity environment suitable for the human body according to the external environment data information and the indoor human body information in combination with the target person wind power holding mode under the condition of multiple persons, and by arranging the data acquisition module, the data processing module and the air outlet system, when the air conditioner is used, the data information acquired by the data acquisition module is sent to the data processing module, and the data processing module is used for providing air for a user by judging whether the current indoor environment needs to be supplied. This target personage fuselage change wind-force under many people's scenes holds intelligent air-out system with can carry out the air-out according to indoor environmental information and adjust to can adapt to user's self demand and carry out wind-force regulation and control, provide comfortable air-out environment for the user.
Description
Technical Field
The invention relates to the technical field of intelligent household appliances, in particular to a method and a system for adding and holding air outlet through swinging blade and changing wind power of a body of a target person in a multi-person scene.
Background
With the progress of science and technology and the improvement of living standard, air outlet adjusting devices such as air conditioners, tower fans, fans and the like are widely used by people. In the prior art, when people enter a room, comfortable wind power suitable for users cannot be directly obtained. In addition, in the use, because everyone experiences difference to wind-force size and temperature, when people used the air-out subassembly to carry out wind-force compensation, some people needed the wind-force bigger, some people needed the wind-force smaller, would cause the puzzlement to some people like this, can't overall plan to compromise, provides perfect air-out scheme for the user.
Therefore, it is necessary to provide a method and a system for adding and maintaining wind power by swinging blades of a body of a target person in a multi-person scene to overcome the defects of the prior art.
Disclosure of Invention
One of the purposes of the invention is to provide a method for adding the swinging blade changing wind power and holding the air outlet of the body of the target person in a multi-person scene, which avoids the defects of the prior art, can provide wind power adjustment for a user according to the time parameters set by the user by simultaneously changing the running states of the body and the swinging blade during air outlet according to the requirements of the user, and can provide comfortable wind power compensation for an indoor human body according to environment information so as to provide a comfortable air outlet environment for the user.
The above object of the present invention is achieved by the following technical means.
The intelligent air outlet system is characterized in that a target character body variable wind power holding mode under the condition of multiple persons is preset, and under the target character wind power holding mode under the condition of multiple persons, a body swinging driving mechanism of an air outlet assembly drives a body and a swinging blade swinging driving mechanism drives a swinging blade to change the current state at the same time so that the air outlet direction can carry out wind power holding on a human body within a time parameter range set by a user.
Specifically, the fuselage of air-out subassembly sways actuating mechanism drive fuselage and changes current state and includes: when the machine body is in a static state, the machine body swinging driving mechanism of the air outlet assembly drives the machine body to swing leftwards or rightwards;
when the machine body moves, the machine body slowly sweeps along the original moving direction or swings in the opposite direction or stops swinging.
Preferably, the environmental information is detected in real time, comfortable air is calculated through the comfort level model according to the environmental information, and the air outlet assembly is controlled to conduct air outlet adjustment according to the comfortable air in the target person wind power holding mode under the condition of multiple persons.
Preferably, the environment information is indoor environment data information and indoor human body information. Preferably, the air outlet body is controlled according to the indoor human body information so that the air outlet direction covers all human body positions in the room.
Preferably, the indoor environment data information includes at least one of indoor environment humidity, indoor environment temperature, and indoor air quality and indoor air flow rate;
preferably, the indoor human body information includes at least one of a distance between the human body and the air outlet device, indoor human body temperature information, and human body quantity information.
Preferably, the comfort model is specifically:
AT=1.07*T+0.2*e-0.65*Vhuman being-2.7 … … formula (i);
wherein AT is a somatosensory temperature value and the unit is; t is ambient temperature in units of; e is the vapor pressure in hPa; vHuman beingThe unit is m/s for comfortable wind speed; RH is relative humidity in%.
Preferably, the wind speed of the comfort wind is determined by:
step 1.1, detecting the ambient temperature, the relative humidity and the distance from a human body to a fan in real time;
step 1.2, substituting the environmental temperature and the relative humidity obtained in the step 1.1 into a comfort model to obtain a comfortable wind speed of the position of the human body;
and step 1.3, calculating the air speed of an air outlet of the fan according to the comfortable air speed in the step 1.2 and the distance from the human body to the fan in the step 1.1, and taking the calculated air speed of the air outlet of the fan as the air speed of the comfortable air.
Specifically, the ambient temperature and the relative humidity obtained in the step 1.1 are substituted into the formula (II) to obtain the water vapor pressure, and then the comfortable wind speed of the position where the human body is located is obtained through the formula (I) according to the obtained water vapor pressure e, the ambient temperature and the sensible temperature value obtained in the step 1.1.
Specifically, in the step 1.3, the distance from the human body to the fan obtained in the step 1.1 and the comfortable wind speed obtained in the step 1.2 are defined as a, and the wind speed at the air outlet is defined as VFan blower,
When A is less than or equal to B, i.e. VFan blower=aVHuman being;
When B is more than A and less than or equal to C, VFan blower=bVHuman being;
When C is more than A and less than or equal to D, VFan blower=cVHuman being;
When A > D, VFan blower=dVHuman beingAnd 1.0 < a < b < c < D, B, C and D both being positive numbers.
In this example, B is 1.5m, C is 3.0m, D is 5.0m, a is 1.5, B is 2.0, C is 3.0, and D is 4.0.
When the wind speed of the wind outlet is greater than or equal to the maximum wind speed of the fan, the fan operates in a maximum wind speed state;
and when the air speed of the air outlet is less than the maximum air speed of the fan, the fan operates at the air speed of the air outlet.
Preferably, a line connecting the air outlet assembly and the target object is defined as a coincident line, and the target area is an area where an included angle between the air outlet direction of the air outlet assembly and the coincident line is not more than W degrees;
preferably, the target person wind power holding mode under the condition of multiple persons is specifically that when the air outlet direction of the air outlet assembly is in the target area, the machine body swing driving mechanism of the air outlet assembly drives the machine body to change the current state, and the swing blade swing driving mechanism drives the swing blade to change the current state according to specific time information in a time parameter command set by a user, so that the air outlet direction carries out wind power holding on the human body.
Preferably, the step of changing the current state of the body by the body swinging driving mechanism of the air outlet assembly in the wind power holding mode of the target person under the condition of multiple persons comprises the following specific steps;
preferably, when the machine body state is static, the machine body swing driving mechanism of the air outlet assembly drives the machine body to swing leftwards or rightwards to prolong the wind receiving time of the target person to the time parameter set by the user and then restore the original machine body state,
preferably, when the machine body moves in the state, the machine body decelerates and sweeps along the original moving direction, swings in the opposite direction or stops swinging to enable the wind receiving time to reach the time parameter set by the user, and then the original machine body swinging state is recovered;
preferably, the method for changing the current state of the swing blade by the swing blade swing driving mechanism comprises the following specific steps;
preferably, when the swing blade state is static, the swing blade swing driving mechanism of the air outlet assembly drives the swing blade to swing leftwards or rightwards to prolong the wind receiving time of the target person to a time parameter set by a user and then restore at least one of the original swing blade states,
when the blade-swinging state moves, the blade-swinging device performs deceleration sweep along the original moving direction or swings in the opposite direction or stops swinging so that the wind receiving time reaches the time parameter set by the user and then recovers at least one of the original blade-swinging state. When the swinging blades are actually used, because a plurality of groups of swinging blades are arranged, and the directions of the swinging blades are the same or different, the swinging blades can be driven to swing leftwards and rightwards at the same time.
Preferably, 0 DEG-W DEG-30 deg.
The method for changing the swinging blade of the body of the target character and adding the wind power to the air outlet in the multi-user scene can provide special wind power adjustment for a user by changing the running state of the body during air outlet according to the requirements of the user, meanwhile, comfortable wind can be obtained by calculation according to environmental information, the air outlet assembly is controlled to provide comfortable wind power compensation for an indoor human body according to the wind speed of the comfortable wind and a target character wind power adding mode under the multi-user condition, specific air outlet is provided for the target user, and a comfortable air outlet environment is provided for the user to meet the air outlet requirements of all people indoors.
The invention also aims to provide the intelligent air outlet system for the multiple persons under the condition that the body of the target person changes the wind power.
The system is specifically provided with a data acquisition module, a data processing module and a user command module; the output end of the data acquisition module is connected with the input end of the data processing module, and the output end of the data processing module is connected with the air outlet assembly; the user command module is respectively connected with the data acquisition module and the data processing module;
preferably, the data processing module is preset with a target person wind power holding mode under the condition of multiple persons; the user command module is used for issuing control commands of starting or closing the target character wind-sheltering mode, the target character information and the time parameter under the condition of multiple persons to the data processing module;
the data acquisition module detects the identity information of a target figure of the identification control command and identifies and positions the position of the target figure to form target figure position information, and sends the target figure identity information and the target figure position information to the data processing module;
specifically, after receiving the control command, the data processing module works according to the target character wind power holding mode under the condition of multiple persons when the air outlet direction of the air outlet assembly is in the target area according to the control command of the user, the target character position information and the target character identity information.
Preferably, the data processing module is preset with a comfort level model, the data acquisition module sends the acquired indoor environment data information and the indoor human body information to the data processing module, the data processing module calculates through the comfort level model according to the acquired indoor environment data information and the indoor human body information to obtain comfortable wind, and the data processing module controls the air outlet assembly to work at the wind speed of the comfortable wind under the corresponding time parameter in the target character wind power holding mode under the condition of multiple persons according to the comfortable wind.
Preferably, the data acquisition module is provided with a human body recognition module, the human body recognition module is connected with the data processing module, the human body recognition module recognizes a target person according to a control command and sends the target person recognition information to the data processing module, and the data processing module controls the air outlet assembly to work according to a target person wind power holding mode under the condition of multiple persons according to the corresponding control command in the user command module and the recognition information of the human body recognition module.
Preferably, the data acquisition module is further provided with at least one of an ambient air temperature acquisition device, an ambient humidity air acquisition device, an ambient air quality acquisition device, an ambient air freshness acquisition device and an air flow rate detection device, and the ambient air temperature acquisition device, the ambient humidity air acquisition device, the ambient air quality acquisition device, the ambient air freshness acquisition device and the air flow rate detection device are respectively connected with the data processing module.
Preferably, the user command module is provided with a target person command unit and a time parameter command unit for setting specific time parameters, and the target person command unit and the time parameter command unit are respectively connected with the control end of the data processing module.
Preferably, the air purifier is further provided with an environment display device, and the input end of the environment display device is connected with the output end of the ambient air temperature acquisition unit, the output end of the ambient humidity air acquisition unit, the output end of the ambient air quality acquisition unit, the output end of the ambient air freshness acquisition unit and the output end of the air flow rate detection unit.
Preferably, the air outlet assembly is provided with a swing blade swing driving mechanism, a swing blade, a machine body swing driving mechanism and a machine body, the swing blade swing driving mechanism and the machine body swing driving mechanism are respectively connected with the data processing module, the swing blade swing driving mechanism is connected with the swing blade, the swing blade swing driving mechanism and the swing blade are assembled on the machine body, and the machine body is fixedly connected with the machine body swing driving mechanism.
Preferably, the user command module is provided with a target person command unit and a deceleration command unit, the target person command unit and the deceleration control command unit are connected with the control end of the data processing module, and the target person command unit is respectively connected with the data processing module and the human body identification module.
Preferably, the user command module is further provided with a person display unit, and the person display unit is connected with the human body identification module.
Preferably, the human body recognition module is set as any one or more of an infrared human face recognition device, a handprint recognition device, a face recognition device, a pupil recognition device or an image recognition device.
Preferably, the ambient air temperature acquisition device is arranged as an infrared temperature detector;
preferably, the ambient humidity air collection device is arranged as a humidity sensing chip;
preferably, the ambient air quality acquisition device is set as a PM2.5 detection chip;
preferably, the ambient air freshness collection means is set to CO2A concentration detection chip;
preferably, the human body infrared induction acquisition device is arranged as an infrared camera;
preferably, the air flow velocity detection device is provided as a wind flow velocity detection device.
Preferably, the time parameter command unit is provided with one or more, and the human body recognition module is provided with one or more.
The intelligent air outlet system for the variable wind power and the holding of the body of the target person under the multi-person scene is preset with a wind power and holding mode of the target person under the multi-person condition, and under the wind power and holding mode of the target person under the multi-person condition, the body swing driving mechanism and the swing blade swing driving mechanism of the air outlet assembly simultaneously change the current states of the body and the swing blades so that the air outlet direction carries out wind power and holding on the target person according to specific time parameters. The target character body swinging blade changes wind power and holds the air outlet in the multi-user scene, so that wind power adjustment can be provided for a user by changing the running state of the body when the air is outlet according to the user requirements, and a comfortable personalized intelligent air outlet environment is provided for the user.
Drawings
The invention is further illustrated by means of the attached drawings, the content of which is not in any way limiting.
Fig. 1 is a schematic structural view of embodiment 2 of the present invention.
Fig. 2 is a schematic structural diagram of embodiment 3 of the present invention.
Fig. 3 is a schematic structural diagram of embodiment 4 of the present invention.
In fig. 1 to 3, the following are included:
the system comprises a data acquisition module 100, an ambient air temperature acquisition device 101, an ambient humidity air acquisition device 102, an ambient air quality acquisition device 103, an ambient air freshness acquisition device 104, a human body infrared induction acquisition device 105, an air flow rate detection device 106 and a human body identification module 107;
a data processing module 200;
an air outlet assembly 300;
an external networking device 400;
a user command module 500, a target person command unit 501, a deceleration command unit 502, an environment display device 600, a person display unit 601.
Detailed Description
The invention is further described with reference to the following examples.
Example 1.
A method for adding and holding air outlet by changing the wind power of a swinging blade of a body of a target person under a multi-person scene is characterized in that a wind power adding and holding mode of the target person under the multi-person condition is preset, and under the wind power adding and holding mode of the target person under the multi-person condition, the body swinging driving mechanism of an air outlet assembly drives the body and the swinging blade swinging driving mechanism drives the swinging blade to change the current state at the same time so that the air outlet direction carries out wind power adding and holding on a human body within a time parameter range set by a.
Specifically, the fuselage of air-out subassembly sways actuating mechanism drive fuselage and changes current state and includes: when the machine body state is static, the machine body swing driving mechanism of the air outlet component drives the machine body to swing leftwards or rightwards to prolong the wind receiving time of the target character to the time parameter set by the user and then restore the original machine body state,
when the machine body moves in a state, the machine body decelerates and sweeps along the original moving direction, swings in the opposite direction or stops swinging to enable the wind receiving time to reach a time parameter set by a user, and then the original machine body swinging state is recovered;
the swinging blade swinging driving mechanism of the air outlet assembly drives the swinging blade to change the current state specifically;
when the swing blade state is static, the swing blade swing driving mechanism of the air outlet component drives the swing blade to swing leftwards or rightwards to prolong the wind receiving time of the target character to a time parameter set by a user and then recover at least one of the original swing blade states,
when the swinging blade moves, the swinging blade performs speed reduction sweep along the original moving direction or swings in the opposite direction or stops swinging so that the wind receiving time reaches the time parameter set by a user and then recovers to at least one state of the original swinging blade.
Specifically, environmental information is detected in real time, comfortable wind is calculated through a comfort level model according to the environmental information, and the air outlet assembly is controlled to conduct air outlet adjustment according to the comfortable wind in a target person wind power holding mode under the condition of multiple persons.
Specifically, the environment information is indoor environment data information and indoor human body information.
Specifically, the indoor environment data information includes at least one of indoor environment humidity, indoor environment temperature, indoor air quality, and indoor air flow rate;
specifically, the indoor human body information includes at least one of a distance between the human body and the air outlet device, indoor human body temperature information, and human body quantity information.
Specifically, the comfort model is specifically:
AT=1.07*T+0.2*e-0.65*Vhuman being-2.7 … … formula (i);
wherein AT is a somatosensory temperature value and the unit is; t is ambient temperature in units of; e is the vapor pressure in hPa; vHuman beingThe unit is m/s for comfortable wind speed; RH is relative humidity in%.
Specifically, the wind speed of the comfort wind is determined by the following steps:
step 1.1, detecting the ambient temperature, the relative humidity and the distance from a human body to a fan in real time;
step 1.2, substituting the environmental temperature and the relative humidity obtained in the step 1.1 into a comfort model to obtain a comfortable wind speed of the position of the human body;
and step 1.3, calculating the air speed of an air outlet of the fan according to the comfortable air speed in the step 1.2 and the distance from the human body to the fan in the step 1.1, and taking the calculated air speed of the air outlet of the fan as the air speed of the comfortable air.
Specifically, the ambient temperature and the relative humidity obtained in the step 1.1 are substituted into the formula (II) to obtain the water vapor pressure, and then the comfortable wind speed of the position where the human body is located is obtained through the formula (I) according to the obtained water vapor pressure e, the ambient temperature and the sensible temperature value obtained in the step 1.1.
Specifically, in the step 1.3, the distance from the human body to the fan obtained in the step 1.1 and the comfortable wind speed obtained in the step 1.2 are defined as a, and the wind speed at the air outlet is defined as VFan blower,
When A is less than or equal to B, i.e. VFan blower=aVHuman being;
When B is more than A and less than or equal to C, VFan blower=bVHuman being;
When C is more than A and less than or equal to D, VFan blower=cVHuman being;
When A > D, VFan blower=dVHuman beingAnd 1.0 < a < b < c < D, B, C and D both being positive numbers.
In this example, B is 1.5m, C is 3.0m, D is 5.0m, a is 1.5, B is 2.0, C is 3.0, and D is 4.0.
It should be noted that B, C and D of the present invention can have other values, and a, b, c and D can have other values, and the specific embodiment is determined according to the actual situation.
When the season is summer, AT is more than or equal to 13 ℃ and less than or equal to 18 ℃, the comfort level of the human body is very cold; when AT is more than 18 ℃ and less than or equal to 20 ℃, the comfort level of the human body is cold; when AT is more than 20 ℃ and less than or equal to 25 ℃, the comfort level of the human body is slightly cold; when AT is more than 25 ℃ and less than or equal to 27 ℃, the comfort level of the human body is cool; when AT is more than 27 ℃ and less than or equal to 30 ℃, the comfort level of the human body is heat; when AT is more than 30 ℃ and less than or equal to 33 ℃, the comfort level of the human body is very hot; when AT is more than 33 ℃ and less than or equal to 35 ℃, the comfort level of the human body is overheat; when AT is more than 35 ℃ and less than or equal to 37 ℃, the comfort level of the human body is too hot; when the temperature is lower than 37 ℃ and is AT, the comfort level of the human body is extremely hot.
When the season is winter and the temperature is not lower than 4 ℃ AT, the comfort level of the human body is very cold; when AT is more than 4 ℃ and less than or equal to 8 ℃, the comfort level of the human body is cold; when AT is more than 8 ℃ and less than or equal to 13 ℃, the comfort level of the human body is cool; when AT is more than 13 ℃ and less than or equal to 18 ℃, the comfort level of the human body is cool; when AT is more than 18 ℃ and less than or equal to 23 ℃, the comfort level of the human body is comfortable; when AT is more than 23 ℃ and less than or equal to 29 ℃, the comfort level of the human body is warm; when AT is more than 29 ℃ and less than or equal to 35 ℃, the comfort level of the human body is warm.
For example, inIn summer, the ambient temperature is 20 ℃, the relative humidity is 50%, the optimum sensible temperature is 26 ℃, and the wind speed of the position of the human body is 1.86m/s calculated by using the formula (I) and the formula (II). According to the model obtained by the known parameters and the early-stage flow field simulation, the distance from the human body to the fan is defined as A, and the wind speed of the air outlet is VFan blowerWhen A is less than or equal to 1.5m, i.e. VFan blower1.5V, when A is more than 1.5m and less than or equal to 3.0m, VFan blower2.0V, when A is more than 3.0m and less than or equal to 5.0m, VFan blower4.0V, when A > 5.0m, VFan blowerD. The distance between a person and the equipment is known to be 1.5m, and the wind speed of the air outlet is deduced to be 2.79 m/s. If the maximum air outlet speed of the temperature regulation equipment and the driving component is 5m/s, the data processing module regulates the driving component and the temperature regulation equipment to enable the air outlet speed to be 2.79 m/s.
For example, in winter, the temperature is less than 10 ℃, the relative humidity is 60%, and the distance from the person to the equipment is 1.5 m. The data processing module opens a heating mode of the heating component and the temperature regulation equipment, and calculates the target heating temperature of the position of the human body to be 19.3 ℃ by using the formula (I) and the formula (II) according to the preset optimum body sensing temperature of 20.5 ℃ and the optimum wind speed of 0.2m/s of the position of the human body. And adjusting the heating component and the temperature regulation equipment to heat at the maximum working rate until the temperature of the position of the human body is 19.3 ℃, and deducing to obtain the air speed of the air outlet at 0.3m/s according to known parameters and a model obtained by early flow field simulation. If the maximum outlet wind speed of the driving assembly is 5m/s, the data processing module adjusts the driving assembly and the temperature adjusting equipment to enable the wind speed of the air outlet of the driving assembly to be 0.3m/s because 0.3m/s is smaller than the maximum wind speed of the driving assembly.
Specifically, the indoor environment data information includes at least one of an indoor environment humidity, an indoor environment temperature, an indoor air quality, and an indoor air flow rate.
The indoor human body information comprises at least one of the distance between the human body and the air outlet equipment, indoor human body temperature information and human body quantity information.
In the scheme, the distance between the human body and the air outlet equipment is a sufficient necessary condition of indoor human body information, and the indoor human body temperature information and the human body quantity information contain at least one of the indoor human body temperature information and the indoor human body quantity information.
In this embodiment, the indoor environment data information includes indoor environment humidity, indoor environment temperature, indoor air quality, and indoor air flow rate.
The indoor human body information simultaneously comprises indoor human body temperature information, human body quantity information and the distance between a human body and the air outlet equipment.
When the wind speed of the wind outlet is greater than or equal to the maximum wind speed of the fan, the fan operates in a maximum wind speed state;
and when the air speed of the air outlet is less than the maximum air speed of the fan, the fan operates at the air speed of the air outlet.
Specifically, a line connecting the air outlet assembly and the position of the target object is defined as a coincident line, and the target area is an area in which the included angle between the air outlet direction of the air outlet assembly and the coincident line is not more than W degrees; w is more than or equal to 0 degree and less than or equal to 30 degrees.
Specifically, the target character wind power holding mode under the condition of multiple persons is that when the air outlet direction of the air outlet assembly is in the target area, the machine body swing driving mechanism of the air outlet assembly drives the machine body to change the current state, and the swing blade swing driving mechanism drives the swing blade to change the current state according to specific time information in a time parameter command set by a user, so that the air outlet direction carries out wind power holding on the human body.
The intelligent air outlet system for the variable wind power of the body of the target person in the multi-person scene is preset with a wind power holding mode of the target person under the multi-person condition, and under the wind power holding mode of the target person under the multi-person condition, the body swing driving mechanism and the swing blade swing driving mechanism of the air outlet assembly simultaneously change the current states of the body and the swing blades so that the air outlet direction carries out wind power holding on the target person. The target character body swinging blade changes wind power and holds the air outlet in the multi-user scene, so that wind power adjustment can be provided for a user by changing the running state of the body when the air is outlet according to the user requirements, and a comfortable personalized intelligent air outlet environment is provided for the user.
Example 2.
The utility model provides a target person fuselage variable wind power adds holds intelligent air-out system under many people's scene, lies in utilizing the method the same as that described in embodiment 1, the difference lies in, this target person fuselage variable wind power adds holds intelligent air-out system under many people's scene, as shown in fig. 1, is provided with data acquisition module 100, data processing module 200 and user command module 500;
the output end of the data acquisition module 100 is connected with the input end of the data processing module 200, the output end of the data processing module 200 is connected with the air outlet assembly 300, and the output end of the user command module 500 is in signal connection with the input end of the data processing module 200. The data processing module 200 is preset with a target person wind power holding mode under the condition of multiple persons; the user command module 500 issues a control command for starting or closing the target person wind power adding mode, the target person information and the time parameter in the case of a plurality of persons to the data processing module 200,
specifically, the data acquisition module 100 detects the identity information of the target person of the recognition control command and recognizes and positions the position of the target person to form the position information of the target person, and sends the identity information of the target person and the position information of the target person to the data processing module 200; meanwhile, the data acquisition module 100 acquires indoor environment data information and indoor human body information and transmits the indoor environment data information and the indoor human body information to the data processing module 200. The data processing module 200 is preset with a comfort level model, the data processing module 200 calculates the comfortable wind speed through the comfort level model according to the collected indoor environment data information and the indoor human body information, and after receiving the control command, the data processing module 200 works at the wind speed of the comfortable wind according to the target character wind power holding mode under the condition of multiple persons and the corresponding time parameter when the air outlet direction of the air outlet assembly is in the target area according to the control command of the user, the target character position information and the target character identity information.
The data acquisition module 100 is further provided with a human body recognition module 107, the human body recognition module 107 is connected with the data processing module 200, the human body recognition module 107 recognizes a target person according to the control command and sends the recognition information to the data processing module 200, and the data processing module 200 controls the air outlet assembly 300 to work according to the target person wind power holding mode under the condition of multiple persons according to the corresponding control command in the user command module 500 and the recognition information of the human body recognition module 107.
Meanwhile, the human body recognition module 107 can be directly connected with the user command module 500, and the human body recognition module 107 can directly obtain the target person information through the user command module 500. The human body recognition module 107 is connected with the data processing module 200 in this embodiment.
The user command module 500 is provided with a target person command unit 501 and a time parameter command unit 503 for setting specific time parameters, and the target person command unit 501 and the time parameter command unit 503 are connected with the control terminal of the data processing module 200.
Meanwhile, the target person command unit 501 may be connected to the data processing module 200 and the human body recognition module 107 at the same time, respectively, in order for the human body recognition module 107 to directly obtain the target person information in the control command.
In this embodiment, the target person command unit 501 and the time parameter command unit 503 are connected to the control end of the data processing module 200.
Specifically, the data acquisition module 100 is provided with an ambient air temperature acquisition device 101, an ambient humidity air acquisition device 102, an ambient air quality acquisition device 103, an ambient air freshness acquisition device 104, a human body infrared sensing acquisition device 105 for sensing and detecting the position of a human body, and an air flow rate detection device 106.
Specifically, the ambient air temperature acquisition device 101 is provided as an infrared temperature detector;
the infrared temperature detector is set as any one or more of OTP-538U, a digital I2CSi705x temperature sensor or DS18B20, and the specific structural features of the infrared temperature detector are not repeated as the infrared temperature detector is common knowledge in the field.
The air outlet assembly 300 is provided with a swing blade swing driving mechanism, a swing blade, a machine body swing driving mechanism and a machine body, the swing blade swing driving mechanism and the machine body swing driving mechanism are respectively connected with the data processing module 200, the swing blade swing driving mechanism is connected with the swing blade, the swing blade swing driving mechanism and the swing blade are assembled on the machine body, and the machine body is fixedly connected with the machine body swing driving mechanism. The swinging blade swinging driving mechanism, the machine body swinging driving mechanism and the machine body are common knowledge of persons skilled in the art, and detailed structures are not described again. The machine body swinging driving mechanism can be arranged into a rotating chassis and a motor, the motor drives the rotating chassis to rotate, and the machine body is fixedly assembled on the rotating chassis. The detailed structure is not described as a general work knowledge of a person skilled in the art.
Specifically, the ambient humidity air collection device 102 is configured as a humidity sensing chip; the humidity sensing chip is set to be any one or more of HS1101LF, HTU2X, HTD2800B11C6 or HM1520LF, and the specific structural features of the ambient humidity air collecting device are not described again as common knowledge in the art.
Specifically, the ambient air quality acquisition device 103 is set as a PM2.5 detection chip, and the PM2.5 detection chip is common knowledge in the art, and specific structural features and working principles are not described again.
Specifically, the ambient air freshness capture device 104 is configured as a CO2A concentration detection chip; CO 22As a general knowledge in the field, the specific structural features and the working principle of the concentration detection chip are not described in detail. Specifically, the human body recognition module 107 is set as any one or more of an infrared human face recognition device, a handprint recognition device, a face recognition device, a pupil recognition device or an image recognition device;
specifically, the human body infrared induction acquisition device 105 is arranged as an infrared camera; as a result, the specific structural features and working principles of the infrared camera are not described in detail.
Specifically, the air flow velocity detection device 106 is provided as a wind flow velocity detection device. When the air conditioner is used, a user senses indoor information through the ambient air temperature collecting device 101, the ambient humidity air collecting device 102, the ambient air quality collecting device 103, the ambient air freshness collecting device 104 and the air flow rate detecting device 106 in the data collecting module 100 and senses whether a human body exists or not through the human body infrared sensing collecting device 105, recognizes human body information and detects the specific position of the human body, the information is sent to the data processing module 200, the data processing module 200 calculates through a comfort level model according to the detected information to obtain comfortable air, and the air outlet assembly 300 is controlled to work according to the wind speed of the comfortable air in a target person wind power holding mode under the condition of multiple persons. When the user is in the multi-user target person wind power holding mode, the human infrared sensing acquisition device 105 detects the specific position of the human body, the human body recognition module 107 recognizes target human body information and sends the detected data information to the data processing module 200, and the data processing module then controls the air outlet assembly 300 to work in the multi-user target person wind power holding mode.
Specifically, the wind power holding mode of the target person under the condition of multiple persons is specifically operated as follows: when the data processing module 200 controls the air outlet direction of the body of the air outlet assembly 300 to reach the target region of the target person, the body swing driving mechanism of the air outlet assembly drives the body to change the current state, so that the air outlet direction can support the wind power of the human body.
The intelligent air outlet system for the wind power adding and holding of the body of the target person under the multi-person scene is preset with a wind power adding and holding mode of the target person under the multi-person condition, a data acquisition module, a data processing module and a user command module are arranged, when the intelligent air outlet system is used, the data acquisition module sends acquired data information to the data processing module, the data processing module judges whether the current indoor environment needs to provide air outlet adjustment for a user and receives whether the user needs to start the wind power adding and holding mode of the target person under the multi-person condition according to a control command of the user, when the air outlet adjustment needs to be provided for the person and the wind power adding and holding mode of the target person under the multi-person condition is released, the target person is appointed through a target person command unit in the user command module, the target person is identified through a human body identification module, and the human body position information, indoor environment information is collected through other components in the data collection module, the data processing module obtains comfortable wind through comfort model calculation, and the data processing module controls the wind outlet component to carry out wind outlet work indoors in a target single-person wind power following mode under the condition of multiple persons with the wind speed of the comfortable wind according to time parameters set by a user. This target personage fuselage change wind-force under many people's scenes adds holds intelligent air-out system can adjust indoor air-out according to indoor environmental information and user's concrete requirement, provides comfortable air-out environment for the user.
Example 3.
The other structures of the intelligent air outlet system with the variable wind power and the holding function of the body of the target person in the multi-person scene are the same as those in the embodiment 2, but the difference is that the intelligent air outlet system with the variable wind power and the holding function of the body of the target person in the multi-person scene is shown in figure 2,
an external networking device 400 is also arranged, and the output end of the external networking device 400 is connected with the input end of the data processing module 200; the external networking device 400 acquires local area environment information in the local area weather forecast through a network, and transmits the local area environment information to the data processing module 200, and the data processing module 200 uses the local area environment information as an indoor environment.
The local area environment information obtained from the local area weather forecast acquired through the network in the embodiment is not limited to the weather information obtained from the internet platform, and may be obtained from a broadcast or obtained through an external temperature measuring instrument.
The local temperature information, the local environmental quality information and the local humidity information are sent to the data processing module 200, and the data processing module 200 controls the air outlet assembly 300 to work according to the local environmental information.
Through setting up external networking equipment, can further promote the intelligent body-to-body service to the user, it is convenient simultaneously to provide for user's life.
Example 4.
The other structures of the intelligent air outlet system are the same as those of any one of embodiments 2 to 3, and the difference is that the intelligent air outlet system is additionally provided with the variable wind power of the body of the target person in the multi-person scene, as shown in fig. 3, an environment display device 600 is further arranged, and the input end of the environment display device 600 is respectively connected with the output ends of an ambient air temperature acquisition device 101, an ambient humidity air acquisition device 102, an ambient air quality acquisition device 103, an ambient air freshness acquisition device 104 and an air flow rate detection device 106.
The user command module 500 is further provided with a person display unit 603, and the person display unit 603 is connected with the human body recognition module 107. The person display unit 603 directly displays the target person by acquiring the indoor human body information recognized by the human body recognition module 107 and according to the control command.
The environment display device and the character display unit are arranged to display the environment information and the target character information for the user in real time.
Example 5.
The other structures of the method are the same as those of embodiment 1, and the difference is that the method for changing the wind power and holding the intelligent air outlet of the body of the target person in the multi-person scene further comprises the step of controlling the air outlet body according to indoor human body information so that the air outlet direction covers all human body positions indoors. Indoor human body information contains indoor human body position, responds to indoor human body position information through human infrared induction collection system on the hardware to with indoor human body position transmission to data processing module, data processing module sways drive assembly according to indoor people day position information control fuselage and rotates the fuselage, is that the air-out direction covers indoor all people.
The air outlet direction covers all human body positions indoors by controlling the air outlet body according to the indoor human body information, so that all people indoors can be compensated by the wind power of comfortable wind, and the air outlet environment is improved.
Example 6.
The other structures of the method are the same as those of the embodiment 2-4, and the difference is that one or more time parameter command units are arranged, and one or more human body identification modules are arranged.
In the embodiment, 2 are provided, and the specific number can be adjusted according to actual needs in actual use, for example, 3, 4 or 5.
Under the condition that a plurality of target persons exist, when different target persons need different time parameters to be added, the time parameter command unit correspondingly issues control commands one by one, and the human body identification modules corresponding one by one identify the identity information of specific target persons to provide wind power adding for the plurality of users.
The time parameter command unit with the human body recognition module can help more users, and provides a superior air outlet environment for the users.
Finally, it should be noted that the above embodiments are only used for illustrating the technical solutions of the present invention and not for limiting the protection scope of the present invention, and although the present invention is described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that modifications or equivalent substitutions can be made on the technical solutions of the present invention without departing from the spirit and scope of the technical solutions of the present invention.
Claims (20)
1. A method for holding air out by swinging blade and changing wind power of a body of a target character in a multi-person scene is characterized in that: the wind power adding mode of the target person under the condition of multiple persons is preset, and under the wind power adding mode of the target person under the condition of multiple persons, the machine body swing driving mechanism of the air outlet assembly drives the machine body and the swing blade swing driving mechanism drives the swing blade to change the current state at the same time so that the air outlet direction carries out wind power adding on the human body within the time parameter range set by a user.
2. The method for adding and maintaining wind power to wind output by swinging blades of the body of a target person in a multi-person scene as claimed in claim 1, wherein:
the environment information is detected in real time, comfortable wind is calculated through a comfort level model according to the environment information, and the air outlet assembly is controlled to conduct air outlet adjustment according to the comfortable wind in a target character wind power holding mode under the condition of multiple persons.
3. The method for adding and maintaining wind power to wind output by swinging blades of the body of the target person in the multi-person scene as claimed in claim 2, wherein:
the environment information is indoor environment data information and indoor human body information.
4. The method for adding and maintaining wind power to wind output by swinging blades of the body of the target person in the multi-person scene as claimed in claim 2, wherein:
the air outlet direction of the air outlet machine body is controlled to cover all human body positions indoors according to the indoor human body information.
5. The method for adding and maintaining wind power to wind outlet through swinging blades of the body of the target person in the multi-person scene as claimed in claim 3, wherein:
the indoor environment information includes at least one of an indoor environment humidity, an indoor environment temperature, and an indoor air quality and an indoor air flow rate.
The indoor human body information comprises at least one of the distance between the human body and the air outlet equipment, indoor human body temperature information and human body quantity information.
6. The method for adding and maintaining wind power to wind output by swinging blades of the body of the target person in the multi-person scene as claimed in claim 2, wherein:
the comfort model is specifically as follows:
AT=1.07*T+0.2*e-0.65*Vhuman being-2.7
… … formula (I);
wherein AT is a somatosensory temperature value and the unit is; t is ambient temperature in units of; e is the vapor pressure in hPa; vHuman beingThe unit is m/s for comfortable wind speed; RH is relatively wetDegree in%.
7. The method for adding and maintaining wind power to wind outlet through swinging blades of the body of the target person in the multi-person scene as claimed in claim 6, wherein:
determining the wind speed of the comfort wind by:
step 1.1, detecting the ambient temperature, the relative humidity and the distance from a human body to a fan in real time;
step 1.2, substituting the environmental temperature and the relative humidity obtained in the step 1.1 into a comfort model to obtain a comfortable wind speed of the position of the human body;
and step 1.3, calculating the air speed of an air outlet of the fan according to the comfortable air speed in the step 1.2 and the distance from the human body to the fan in the step 1.1, and taking the calculated air speed of the air outlet of the fan as the air speed of the comfortable air.
8. The method for adding and maintaining wind power to wind output by swinging blades of the body of a target person in a multi-person scene as claimed in claim 1, wherein:
a line connecting the air outlet assembly and the position of the target object is defined as a coincident line, and the target area is an area with an included angle between the air outlet direction of the air outlet assembly and the coincident line not larger than W degrees;
the wind power adding and holding mode of the target person under the condition of multiple persons is specifically that when the air outlet direction of the air outlet assembly is in a target area, the machine body swing driving mechanism of the air outlet assembly drives the machine body to change the current state, and the swing blade swing driving mechanism drives the swing blade to change the current state according to specific time information in a time parameter command set by a user, so that the air outlet direction carries out wind power adding and holding on the human body.
9. The method for adding and maintaining wind power to wind output by swinging blades of the body of the target person in the multi-person scene as claimed in claim 8, wherein:
the machine body swinging driving mechanism of the air outlet assembly under the multi-person condition under the wind power holding mode of the target person drives the machine body to change the current state specifically;
when the machine body state is static, the machine body swing driving mechanism of the air outlet component drives the machine body to swing leftwards or rightwards to prolong the wind receiving time of the target character to the time parameter set by the user and then restore the original machine body state,
when the machine body moves in a state, the machine body decelerates and sweeps along the original moving direction, swings in the opposite direction or stops swinging to enable the wind receiving time to reach a time parameter set by a user, and then the original machine body swinging state is recovered;
the swinging blade swinging driving mechanism drives the swinging blade to change the current state specifically comprises the following steps;
when the swing blade state is static, the swing blade swing driving mechanism of the air outlet component drives the swing blade to swing leftwards or rightwards to prolong the wind receiving time of the target character to the time parameter set by the user and then recover at least one of the original swing blade states,
when the blade-swinging state moves, the blade-swinging device performs speed reduction sweep along the original moving direction, swings in the opposite direction or stops swinging to enable the wind receiving time to reach the time parameter set by the user, and then recovers at least one of the original blade-swinging state.
10. The method for adding and maintaining wind power to wind output by swinging blades of the body of the target person in the multi-person scene as claimed in claim 8, wherein: w is more than or equal to 0 degree and less than or equal to 30 degrees.
11. The utility model provides a target personage fuselage change wind-force under many people scene adds holds intelligent air-out system which characterized in that: the method for adding the wind power to the air outlet by swinging the blade of the body of the target person in the multi-person scene comprises the steps of 1-10, wherein the method is provided with a data acquisition module, a data processing module and a user command module; the output end of the data acquisition module is connected with the input end of the data processing module, the output end of the data processing module is connected with the air outlet assembly, and the user command module is respectively connected with the data acquisition module and the data processing module;
the data processing module is preset with a target character wind power holding mode under the condition of multiple persons; the user command module is used for issuing control commands of starting or closing the target character wind-sheltering mode, the target character information and the time parameter under the condition of multiple persons to the data processing module;
the data acquisition module detects the identity information of the target person for identifying the control command and identifies the position of the positioned target person to form target person position information, and sends the target person identity information and the target person position information to the data processing module;
and after receiving the control command, the data processing module works at the wind speed of comfortable wind under the corresponding time parameter according to the target character wind power holding mode under the condition of a plurality of persons when the air outlet direction of the air outlet assembly is in the target area according to the control command of the user, the target character position information and the target character identity information.
12. The system of claim 11, wherein the intelligent outlet system comprises a plurality of units, and the intelligent outlet system comprises:
the air-out component is characterized in that a comfort degree model is preset in the data processing module, the indoor environment data information and the indoor human body information which are collected by the data collection module are sent to the data processing module, the data processing module calculates through the comfort degree model according to the collected indoor environment data information and the indoor human body information to obtain comfortable air, and the data processing module controls according to the comfortable air to work with the air speed of the comfortable air under the target character wind power holding mode under the condition of multiple persons.
13. The system of claim 11, wherein the intelligent outlet system comprises a plurality of units, and the intelligent outlet system comprises:
the data acquisition module is provided with a human body recognition module, the human body recognition module is connected with the data processing module, the human body recognition module recognizes the target person according to a control command and sends target person recognition information to the data processing module, and the data processing module controls the air outlet assembly to work according to a target person wind power holding mode under the condition of multiple persons according to the control command corresponding to the user command module and the recognition information of the human body recognition module.
14. The system of claim 11, wherein the intelligent outlet system comprises a plurality of units, and the intelligent outlet system comprises:
the user command module is provided with a target character command unit and a time parameter command unit for setting specific time parameters, and the target character command unit and the time parameter command unit are respectively connected with the control end of the data processing module.
15. The system of claim 13, wherein the intelligent outlet system comprises a plurality of units, and the intelligent outlet system comprises: still be provided with environment display device, environment display device's input and ambient air temperature acquisition unit's output, ambient humidity air acquisition unit's output, ambient air quality acquisition unit's output, ambient air fresh degree acquisition unit's output, air flow rate detecting element's output are connected.
16. The system of claim 13, wherein the intelligent outlet system comprises a plurality of units, and the intelligent outlet system comprises:
the data acquisition module is further provided with at least one of an ambient air temperature acquisition device, an ambient humidity air acquisition device, an ambient air quality acquisition device, an ambient air freshness acquisition device and an air flow rate detection device, wherein the ambient air temperature acquisition device, the ambient humidity air acquisition device, the ambient air quality acquisition device, the ambient air freshness acquisition device and the air flow rate detection device are respectively connected with the data processing module.
17. The system of claim 11, wherein the intelligent outlet system comprises a plurality of units, and the intelligent outlet system comprises:
the air outlet assembly is provided with a swing blade swinging driving mechanism, a swing blade, a machine body swinging driving mechanism and a machine body, the swing blade swinging driving mechanism and the machine body swinging driving mechanism are respectively connected with the data processing module, the swing blade swinging driving mechanism is connected with the swing blade, the swing blade swinging driving mechanism and the swing blade are assembled on the machine body, and the machine body is fixedly connected with the machine body swinging driving mechanism.
18. The system of claim 11, wherein the intelligent outlet system comprises a plurality of units, and the intelligent outlet system comprises:
the user command module is further provided with a figure display unit, and the figure display unit is connected with the human body identification module.
19. The system of claim 13, wherein the intelligent outlet system comprises a plurality of units, and the intelligent outlet system comprises:
the human body recognition module is set to be any one or more of an infrared human face recognition device, a handprint recognition device, a face recognition device, a pupil recognition device or an image recognition device.
20. The system of claim 16, wherein the intelligent outlet system comprises a plurality of units, and the intelligent outlet system comprises:
the ambient air temperature acquisition device is arranged as an infrared temperature detector;
the environment humidity air acquisition device is arranged as a humidity sensing chip;
the environment air quality acquisition device is set as a PM2.5 detection chip;
the device for collecting the freshness of the ambient air is set to be CO2A concentration detection chip;
the human body infrared induction acquisition device is arranged as an infrared camera;
the air flow velocity detection device is set as a wind flow velocity detection device;
the time parameter command unit is provided with one or more than one, and the human body recognition module is provided with one or more than one.
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