CN106196473A - Control the method and device of air-conditioning - Google Patents

Control the method and device of air-conditioning Download PDF

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Publication number
CN106196473A
CN106196473A CN201610597204.7A CN201610597204A CN106196473A CN 106196473 A CN106196473 A CN 106196473A CN 201610597204 A CN201610597204 A CN 201610597204A CN 106196473 A CN106196473 A CN 106196473A
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CN
China
Prior art keywords
air
conditioning
temperature
instruction
sleep state
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN201610597204.7A
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Chinese (zh)
Inventor
贾伟光
傅强
侯恩星
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Beijing Xiaomi Mobile Software Co Ltd
Original Assignee
Beijing Xiaomi Mobile Software Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Beijing Xiaomi Mobile Software Co Ltd filed Critical Beijing Xiaomi Mobile Software Co Ltd
Priority to CN201610597204.7A priority Critical patent/CN106196473A/en
Publication of CN106196473A publication Critical patent/CN106196473A/en
Pending legal-status Critical Current

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F2120/00Control inputs relating to users or occupants
    • F24F2120/10Occupancy
    • 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
    • F24F11/30Control or safety arrangements for purposes related to the operation of the system, e.g. for safety or monitoring
    • 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
    • F24F11/62Control or safety arrangements characterised by the type of control or by internal processing, e.g. using fuzzy logic, adaptive control or estimation of values
    • 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
    • F24F11/70Control systems characterised by their outputs; Constructional details thereof
    • F24F11/72Control systems characterised by their outputs; Constructional details thereof for controlling the supply of treated air, e.g. its pressure
    • F24F11/74Control 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
    • F24F11/77Control 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 by controlling the speed of ventilators
    • 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
    • F24F11/70Control systems characterised by their outputs; Constructional details thereof
    • F24F11/72Control systems characterised by their outputs; Constructional details thereof for controlling the supply of treated air, e.g. its pressure
    • F24F11/79Control 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
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F2110/00Control inputs relating to air properties
    • F24F2110/10Temperature
    • 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
    • F24F11/56Remote control
    • F24F11/58Remote control using Internet 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
    • F24F11/62Control or safety arrangements characterised by the type of control or by internal processing, e.g. using fuzzy logic, adaptive control or estimation of values
    • F24F11/63Electronic processing
    • F24F11/64Electronic processing using pre-stored data
    • 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
    • F24F11/62Control or safety arrangements characterised by the type of control or by internal processing, e.g. using fuzzy logic, adaptive control or estimation of values
    • F24F11/63Electronic processing
    • F24F11/65Electronic processing for selecting an operating mode
    • F24F11/66Sleep mode
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B30/00Energy efficient heating, ventilation or air conditioning [HVAC]
    • Y02B30/70Efficient control or regulation technologies, e.g. for control of refrigerant flow, motor or heating

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Fuzzy Systems (AREA)
  • Mathematical Physics (AREA)
  • Signal Processing (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Atmospheric Sciences (AREA)
  • Fluid Mechanics (AREA)
  • Air Conditioning Control Device (AREA)

Abstract

The disclosure is directed to a kind of method and device controlling air-conditioning, for realizing by smart jack control air-conditioning, and control more accurately, rationally.Described method includes: obtain electrical parameter values;The current state of air-conditioning is obtained according to described electrical parameter values;When described current state indicates described air-conditioning in running order, obtain the operational factor mated with current extraneous characteristic information;Control described air-conditioning to run according to described operational factor.The method using the disclosure to be provided, makes air-conditioning when unmanned control, it is possible to realize automatically controlling air-conditioning by meeting control instruction corresponding to sleep state, so that controlling more accurately, rationally.

Description

Control the method and device of air-conditioning
Technical field
It relates to communication and computer disposal field, particularly relate to control the method and device of air-conditioning.
Background technology
Along with the development of electronic technology, the electronic equipment such as mobile phone, TV, air-conditioning emerges in an endless stream.But also occur in that Intelligence skinny device, such as Intelligent bracelet and smart jack etc..Smart jack can control the break-make of electricity from the source of power supply, more preferably Protection equipment.
Summary of the invention
For overcoming problem present in correlation technique, the disclosure provides a kind of method and device controlling air-conditioning.
First aspect according to disclosure embodiment, it is provided that a kind of method controlling air-conditioning, is applied to socket, described method Including:
Obtain electrical parameter values;
The current state of air-conditioning is obtained according to described electrical parameter values;
When described current state indicates described air-conditioning in running order, obtain and mate with current extraneous characteristic information Operational factor;
Control described air-conditioning to run according to described operational factor.
Embodiment of the disclosure that the technical scheme of offer can include following beneficial effect: in the present embodiment, socket can lead to Cross and judge that air-conditioning is the most in running order according to electrical parameter values, if air-conditioning is in running order, just can be according to the external world Characteristic information realizes automatically controlling air-conditioning, makes air-conditioning run according to operational factor.The present embodiment makes socket more intelligence Energyization, simplifies user operation.
In one embodiment, the operational factor that described acquisition is mated with current extraneous characteristic information, including:
Obtain described extraneous characteristic information, described extraneous characteristic information include following at least one: characteristics of human body's information, temperature Degree information, temporal information;
Obtain the operational factor mated with described extraneous characteristic information.
Embodiment of the disclosure that the technical scheme of offer can include following beneficial effect: the present embodiment can pass through human body The information such as characteristic information, temperature information and temporal information determine operational factor, it is adaptable to plurality of application scenes, and realize right The configuration versatile and flexible of operational factor.
In one embodiment, described extraneous characteristic information includes characteristics of human body's information;
The operational factor that described acquisition is mated with described extraneous characteristic information, including:
Obtaining behavior state according to described extraneous characteristic information, described behavior state includes following any one: sleep state, Kinestate;
Obtain the operational factor mated with described behavior state.
Embodiment of the disclosure that the technical scheme of offer can include following beneficial effect: the present embodiment can also according to The behavior state flexible configuration operational factor at family, it is provided that more implementation.Further, behavior state include sleep state and Kinestate etc., it is achieved that make air-conditioning coordinate the various actions state of user to run.
In one embodiment, the instruction of described operational factor performs at least one operation following: closes, arrange temperature, set Put air quantity, wind direction is set.
Embodiment of the disclosure that the technical scheme of offer can include following beneficial effect: in the present embodiment, socket can be real The now various control to air-conditioning so that socket is more intelligent, simplifies user operation simultaneously.
In one embodiment, when meet following at least one, the described operational factor described air-conditioning of instruction is in the object time Close in section:
The instruction of described sleep state is in sleep state;
The instruction of described kinestate performs shutoff operation;
The time of described temporal information instruction falls in predetermined shut-in time section;
The temperature of described temperature information instruction falls in predetermined first temperature range.
Embodiment of the disclosure that the technical scheme of offer can include following beneficial effect: sleep state, fortune can be passed through Dynamic state, temporal information and temperature information control the closedown of air-conditioning, present embodiments provide multiple implementation, it is adaptable to many Plant scene, can select flexibly.And it is favorably improved the accuracy to airconditioning control.
In one embodiment, when meet following at least one, the described operational factor described air-conditioning of instruction is in the object time Temperature is set in Duan:
The instruction of described sleep state is in sleep state;
The instruction execution of described kinestate arranges temperature operation;
The time of described temporal information instruction falls in predetermined set temperature-time section;
The temperature of described temperature information instruction falls in predetermined second temperature range.
Embodiment of the disclosure that the technical scheme of offer can include following beneficial effect: sleep state, fortune can be passed through Dynamic state, temporal information and temperature information control the temperature of air-conditioning, present embodiments provide multiple implementation, it is adaptable to many Plant scene, can select flexibly.And it is favorably improved the accuracy to airconditioning control.
In one embodiment, when meet following at least one, the described operational factor described air-conditioning of instruction is in the object time Air quantity is set in Duan:
The instruction of described sleep state is in sleep state;
The instruction of described kinestate following at least one: perform to arrange air quantity operation, be positioned at first area;
The time of described temporal information instruction fell in the predetermined set air quantity time period;
The temperature of described temperature information instruction falls in predetermined 3rd temperature range.
Embodiment of the disclosure that the technical scheme of offer can include following beneficial effect: sleep state, fortune can be passed through Dynamic state, temporal information and temperature information control the air quantity of air-conditioning, present embodiments provide multiple implementation, it is adaptable to many Plant scene, can select flexibly.And it is favorably improved the accuracy to airconditioning control.
In one embodiment, when meet following at least one, the described operational factor described air-conditioning of instruction is in the object time Wind direction is set in Duan:
The instruction of described sleep state is in sleep state;
The instruction of described kinestate following at least one: perform to arrange wind direction operation, be positioned at first area;
The time of described temporal information instruction fell in the predetermined set wind direction time period;
The temperature of described temperature information instruction falls in predetermined 4th temperature range.
Embodiment of the disclosure that the technical scheme of offer can include following beneficial effect: sleep state, fortune can be passed through Dynamic state, temporal information and temperature information control the wind direction of air-conditioning, present embodiments provide multiple implementation, it is adaptable to many Plant scene, can select flexibly.And it is favorably improved the accuracy to airconditioning control.
Second aspect according to disclosure embodiment, it is provided that a kind of device controlling air-conditioning, is applied to socket, described device Including:
First acquisition module, is used for obtaining electrical parameter values;
First determines module, for obtaining the current state of air-conditioning according to described electrical parameter values;
Second acquisition module, for when described current state indicates described air-conditioning in running order, obtaining with current Extraneous characteristic information coupling operational factor;
First sending module, is used for controlling described air-conditioning and runs according to described operational factor.
In one embodiment, described second acquisition module includes:
Feature submodule, is used for obtaining described extraneous characteristic information, described extraneous characteristic information include following at least one: Characteristics of human body's information, temperature information, temporal information;
Parameter sub-module, for obtaining the operational factor mated with described extraneous characteristic information.
In one embodiment, described extraneous characteristic information includes characteristics of human body's information;
Described parameter sub-module obtains behavior state according to described extraneous characteristic information, and described behavior state includes following One: sleep state, kinestate;Obtain the operational factor mated with described behavior state.
In one embodiment, the instruction of described operational factor performs at least one operation following: closes, arrange temperature, set Put air quantity, wind direction is set.
In one embodiment, when meet following at least one, the described operational factor described air-conditioning of instruction is in the object time Close in section:
The instruction of described sleep state is in sleep state;
The instruction of described kinestate performs shutoff operation;
The time of described temporal information instruction falls in predetermined shut-in time section;
The temperature of described temperature information instruction falls in predetermined first temperature range.
In one embodiment, when meet following at least one, the described operational factor described air-conditioning of instruction is in the object time Temperature is set in Duan:
The instruction of described sleep state is in sleep state;
The instruction execution of described kinestate arranges temperature operation;
The time of described temporal information instruction falls in predetermined set temperature-time section;
The temperature of described temperature information instruction falls in predetermined second temperature range.
In one embodiment, when meet following at least one, the described operational factor described air-conditioning of instruction is in the object time Air quantity is set in Duan:
The instruction of described sleep state is in sleep state;
The instruction of described kinestate following at least one: perform to arrange air quantity operation, be positioned at first area;
The time of described temporal information instruction fell in the predetermined set air quantity time period;
The temperature of described temperature information instruction falls in predetermined 3rd temperature range.
In one embodiment, when meet following at least one, the described operational factor described air-conditioning of instruction is in the object time Wind direction is set in Duan:
The instruction of described sleep state is in sleep state;
The instruction of described kinestate following at least one: perform to arrange wind direction operation, be positioned at first area;
The time of described temporal information instruction fell in the predetermined set wind direction time period;
The temperature of described temperature information instruction falls in predetermined 4th temperature range.
The third aspect according to disclosure embodiment, it is provided that a kind of device controlling air-conditioning, is applied to socket, described device Including:
Processor;
For storing the memorizer of processor executable;
Wherein, described processor is configured to:
Obtain electrical parameter values;
The current state of air-conditioning is obtained according to described electrical parameter values;
When described current state indicates described air-conditioning in running order, obtain and mate with current extraneous characteristic information Operational factor;
Control described air-conditioning to run according to described operational factor.
It should be appreciated that it is only exemplary and explanatory, not that above general description and details hereinafter describe The disclosure can be limited.
Accompanying drawing explanation
Accompanying drawing herein is merged in description and constitutes the part of this specification, it is shown that meet the enforcement of the disclosure Example, and for explaining the principle of the disclosure together with description.
Fig. 1 is the flow chart according to a kind of method controlling air-conditioning shown in an exemplary embodiment;
Fig. 2 is the flow chart according to a kind of method controlling air-conditioning shown in an exemplary embodiment;
Fig. 3 is the flow chart according to a kind of method controlling air-conditioning shown in an exemplary embodiment;
Fig. 4 is the flow chart according to a kind of method controlling air-conditioning shown in an exemplary embodiment;
Fig. 5 A is the flow chart according to a kind of method controlling air-conditioning shown in an exemplary embodiment;
Fig. 5 B is the schematic diagram according to the curve shown in an exemplary embodiment;
Fig. 6 is the flow chart according to a kind of method controlling air-conditioning shown in an exemplary embodiment;
Fig. 7 is the flow chart according to a kind of method controlling air-conditioning shown in an exemplary embodiment;
Fig. 8 is according to a kind of device block diagram controlling air-conditioning shown in an exemplary embodiment;
Fig. 9 is according to one the second acquisition module block diagram shown in an exemplary embodiment;
Figure 10 is according to a kind of device block diagram controlling air-conditioning shown in an exemplary embodiment;
Figure 11 is to determine module frame chart according to the one second shown in an exemplary embodiment;
Figure 12 is according to a kind of device block diagram controlling air-conditioning shown in an exemplary embodiment;
Figure 13 is the block diagram according to a kind of device for controlling air-conditioning shown in an exemplary embodiment.
Detailed description of the invention
Here will illustrate exemplary embodiment in detail, its example represents in the accompanying drawings.Explained below relates to During accompanying drawing, unless otherwise indicated, the same numbers in different accompanying drawings represents same or analogous key element.Following exemplary embodiment Described in embodiment do not represent all embodiments consistent with the disclosure.On the contrary, they are only with the most appended The example of the apparatus and method that some aspects that described in detail in claims, the disclosure are consistent.
Along with the development of electronic technology, all kinds of smart machines emerge in an endless stream, except some are conventional such as smart mobile phone, Intelligent electric Depending on etc. outside common smart machine, some small-sized housed devices are more and more intelligent along with it, the most gradually shown huge Big effect.Such as smart jack, the operation power of electrical equipment of connection, electric current, voltage etc. on socket can not only be reflected intuitively Information, additionally it is possible to control the break-make of electricity from the source of power supply, reduces equipment long-play and causes damage, and reduces electricity The unnecessary waste of energy, thus preferably protect equipment, save electricity, reduce the safe thing that long-time overload power utilization causes Therefore.
Such as, when smart jack is connected with air-conditioning, unlatching temperature threshold and closing temperature threshold value can be set, when being placed in The temperature sensor being connected in smart jack or with smart jack detects when Current Temperatures is more than or equal to open temperature threshold, Control air-conditioning to open.When detecting that Current Temperatures is less than or equal to closing temperature threshold value, control air-conditioner standby.Thus both realize The effect of Intelligent adjustment indoor temperature, decreases again the unnecessary waste of electric energy.
But, smart jack can only make temperature value maintain in certain scope by controlling opening of air-conditioning with standby, And user is when waking state, air-conditioning work temperature value can be preset according to ambient temperature, and owing to user is at waking state Time blood circulation speed, when air-conditioning work temperature value is relatively low, feel pleasant.When user is in sleep state, Owing to blood circulation speed is relatively low, if the air-conditioning work temperature value arranged is relatively low, can feel a sense of cold, and user is at sleep state Time, it is impossible to manually adjust air-conditioning work temperature value, it is difficult to accurately, reasonably control temperature value, even if user is manual before sleep Air-conditioning work temperature value is set, when air-conditioning work temperature value arranges unreasonable, user all can be made not feel well, and then affect user Sleep and health.
Thus, how to propose a kind of method controlling air-conditioning, in order to control air-conditioning by smart jack, and control more accurate The most rationally, a technical problem urgently to be resolved hurrily is become.
In the disclosure, obtain electrical parameter values by smart jack;The current of air-conditioning is obtained according to described electrical parameter values State;When described current state indicates described air-conditioning in running order, acquisition is mated with current extraneous characteristic information Operational factor;The control command that the sleep state met is corresponding is sent to air-conditioning.Thus, make air-conditioning when unmanned control, it is possible to Meet, to air-conditioning transmission, the control instruction that sleep state is corresponding, it is achieved air-conditioning is automatically controlled, makes control by smart jack More accurately, rationally.
Fig. 1 is the flow chart according to a kind of method controlling air-conditioning shown in an exemplary embodiment, as it is shown in figure 1, should The method controlling air-conditioning can be realized by smart jack, and the method for this control air-conditioning can be implemented as following steps S101-S104:
In step S101, obtain electrical parameter values;
In step s 102, the current state of air-conditioning is obtained according to described electrical parameter values;
In step s 103, when described current state indicates described air-conditioning in running order, obtain and the current external world The operational factor of characteristic information coupling;
In step S104, control described air-conditioning and run according to described operational factor.
In the present embodiment, socket can pass through to judge that air-conditioning is the most in running order according to electrical parameter values, if air-conditioning In running order, just can realize air-conditioning is automatically controlled according to extraneous characteristic information, make air-conditioning enter according to operational factor Row runs.The present embodiment makes socket more intelligent, simplifies user operation.
In the present embodiment, being integrated with electricity statistical module in smart jack, this socket connects air-conditioning, is added up by electricity Module obtains electrical parameter values, as obtained operational voltage value or working current value etc., such as when operational voltage value or operating current When value is more than 0, determine that air-conditioning is in running order.
Socket can carry out radio communication with air-conditioning, and the mode of radio communication has WiFi, bluetooth etc..Socket can by Air-conditioning sends various control commands, controls air-conditioning and runs according to operational factor.Wherein, control command carries operation ginseng Number.
In one embodiment, step S103 includes: step A1 is to step A2.
In step A1, obtain described extraneous characteristic information, described extraneous characteristic information include following at least one: human body Characteristic information, temperature information, temporal information;
Such as, characteristics of human body's information includes heart rate, pulse, behavior etc., can judge at user according to characteristics of human body's information In sleep state or kinestate, and then control air-conditioning more accurately according to the state of user.Such as, heart rate or pulse exist In the heart rate preset or pulse range, it is determined that user is kept in motion, if less than the heart rate preset or pulse range, then Determine that user is in sleep state.Heart rate or the pulse range preset can be by determining the daily statistics of this user.Insert Seat can obtain characteristics of human body's information by miscellaneous equipments such as the wearable devices of connection.
And for example, socket can carry temperature sensor, to obtain extraneous temperature information, or by the mobile phone etc. connected Miscellaneous equipment obtains extraneous temperature information.Socket can control the operation of air-conditioning according to extraneous temperature information.Such as, outward The temperature information on boundary higher than the life comfort zone preset, then controls air-conditioning and turns down temperature.If the temperature information in the external world Less than the life comfort zone preset, then control air-conditioning and heighten temperature.The life comfort zone preset can pass through Substantial amounts of statistical data determines, it is also possible to arranged by user oneself.
And for example, socket can be with clock function, it is thus achieved that current temporal information, or by the mobile phone etc. that connects other Equipment obtains current temporal information.Can there is the corresponding relation of temporal information and operational factor with preset configuration, reach configuration Time, just send corresponding operational factor to air-conditioning.The corresponding relation of temporal information and operational factor can pass through substantial amounts of system Count and determine, it is also possible to arranged by user oneself.
In step A2, obtain the operational factor mated with described extraneous characteristic information.
The present embodiment can obtain the operational factor matched with characteristics of human body's information, temperature information or temporal information, real The operation of air-conditioning is now controlled according to different conditions.The most several extraneous characteristic informations can be combined with using.Determine simultaneously full The operational factor of the multiple condition of foot, controls the operation of air-conditioning so that it is more accurate to control accordingly.
In one embodiment, described extraneous characteristic information includes characteristics of human body's information.
Described step A2 includes: step A21 and step A22.
In step A21, obtaining behavior state according to described extraneous characteristic information, described behavior state includes following arbitrary : sleep state, kinestate;
In step A22, obtain the operational factor mated with described behavior state.
The present embodiment is according to the active degree of inside of human body, or the active degree of behavior, it may be determined that user is in Sleep state or kinestate.Different behavior states needs difference to operational factor, and then the control to air-conditioning is different.
Such as, people is when sleep, during compared to motion, it is desirable to temperature is slightly higher.And, it is not intended to air-conditioning blow-through when sleep Oneself.Therefore, sleep state and kinestate correspond to different operational factors.Air-conditioning can be controlled accordingly more accurately Run, more meet the demand of user.
In one embodiment, the instruction of described operational factor performs at least one operation following: closes, arrange temperature, set Put air quantity, wind direction is set.
The present embodiment arranges temperature, air quantity is set and the operation of wind direction is set, also there is the function of activation manipulation.Example As, current air-conditioning is active (being namely operated in certain temperature value, be different from standby), then arrange temperature, arrange wind The operation measuring and arranging wind direction need not activate air-conditioning.Current air-conditioning is in holding state, then arrange temperature, arrange air quantity and set Put wind direction operation control air-conditioning work instruction temperature, air quantity and wind direction while, also control air-conditioning enter activate shape State.
Shutoff operation in the present embodiment include control air-conditioning enter holding state (or claim resting state, remain work State) or control air-conditioning entrance off-mode, state of i.e. deactivating.
The combination of multiple operation, can form different mode of operations.Disposably entering according to operational factor instruction air-conditioning During the multiple operation of row, be equivalent to control air-conditioning and enter corresponding mode of operation.
It is described in detail below for each operation.
In one embodiment, when meet following at least one, such as B1 to B4, the described operational factor described air-conditioning of instruction exists Close in object time section:
The instruction of B1: described sleep state is in sleep state;
The present embodiment is known when user is in sleep state, air-conditioning can be controlled and close.User be probably afternoon nap or Being nighttime sleep, the present embodiment can utilize object time Duan Laiqu in two kinds of situation.Such as, object time section is set to 22 Point-6 point.Then, determine when user is in nighttime sleep, control air-conditioning and close.
The instruction of B2: described kinestate performs shutoff operation;
The present embodiment can control air-conditioning according to kinestate and close.Such as, determine that user is in static or transports slowly Dynamic state, produces heat less, then can control air-conditioning and close.This project plan comparison is suitable for summer.If in winter, determine use Family is in strenuous exercise's state, produces heat more, then can control air-conditioning and close.
The time of B3: described temporal information instruction falls in predetermined shut-in time section;
The present embodiment can control air-conditioning according to temporal information and close, and reaches the time specified, just can control air-conditioning and close. Such as, predetermined shut-in time section can be that user goes out the work hours, or the time etc. of sleeping at night.
The temperature of B4: described temperature information instruction falls in predetermined first temperature range.
The present embodiment controls air-conditioning according to extraneous temperature information and closes.Such as, extraneous temperature information has fallen into one Individual suitable temperature range, i.e. makes a reservation for the first temperature range, is also aforesaid life comfort zone, then can control air-conditioning Close, to save the energy.In different seasons or different personal habits, the first temperature range can be different.Such as, summer, First temperature range is 26 DEG C-28 DEG C.In winter, the first temperature range is 20 DEG C-22 DEG C.
In one embodiment, when meet following at least one, such as C1 to C4, the described operational factor described air-conditioning of instruction exists Temperature is set in object time section:
The instruction of C1: described sleep state is in sleep state;
The present embodiment can control air-conditioning adjust temperature when determining that user is in sleep state in object time section. Such as, user is not in sleep state, controls air-conditioning proper at 24 DEG C.User is in sleep state, controls air-conditioning 26 DEG C proper.The corresponding relation of sleep state and temperature can be preset with.When determining that user is in sleep state, control sky It is adjusted to the temperature of correspondence.
The instruction execution of C2: described kinestate arranges temperature operation;
The present embodiment can control the temperature of air-conditioning according to kinestate.Such as, determine that user is in static or slowly Kinestate, produces heat less, then can control air-conditioning and be adjusted to higher temperature, such as 26 DEG C.Determine that user is in acutely Kinestate, produces heat more, then can control sky and be adjusted to temperature on the low side, such as 24 DEG C.Kinestate can be preset with Corresponding relation with temperature.When determining that user is in certain kinestate, control air-conditioning and be adjusted to the temperature of correspondence.
The time of C3: described temporal information instruction falls in predetermined set temperature-time section;
The present embodiment can control the temperature of air-conditioning according to temporal information, reaches the time specified, and just can control air-conditioning and adjust Whole to corresponding temperature.Such as, working by day the time, control air-conditioning work, at 24 DEG C, controls air-conditioning work the length of one's sleep in the evening At 26 DEG C.It is previously provided with the corresponding relation of time period and temperature, the preset time period met according to current time, control air-conditioning man Make in corresponding temperature.
The temperature of C4: described temperature information instruction falls in predetermined second temperature range.
The present embodiment controls air-conditioning according to extraneous temperature information and adjusts temperature.Such as, extraneous temperature information is the most Fall into a suitable temperature range, i.e. make a reservation for the second temperature range, can be with aforesaid life comfort zone and first Temperature range is identical, then can control air-conditioning and adjust temperature, make ambient temperature fall into predetermined second temperature range, in order to for user One temperature environment the most comfortable is provided.In different seasons or different personal habits, the second temperature range can be different. Such as, in summer, the second temperature range is 25 DEG C-28 DEG C.In winter, the second temperature range is 18 DEG C-22 DEG C.
In one embodiment, when meet following at least one, such as D1 to D4, the described operational factor described air-conditioning of instruction exists Air quantity is set in object time section:
The instruction of D1: described sleep state is in sleep state;
The present embodiment can control air-conditioning adjust air quantity when determining that user is in sleep state in object time section. Such as, user is not in sleep state, controls air-conditioning work proper at bigger air quantity.Such as, air-conditioning air volume a total of 5 Shelves, 1 grade of air quantity minimum, 5 grades of air quantity maximums.When user is not in sleep state, control air-conditioning work at 4 grades or 5 grades.At user At sleep state, control air-conditioning work proper at relatively low air quantity, as being operated in 1 grade or 2 grades.Sleep shape can be preset with State and the corresponding relation of air quantity.When determining that user is in sleep state, control air-conditioning and be adjusted to the air quantity gear of correspondence.
The instruction of D2: described kinestate following at least one: perform to arrange air quantity operation, be positioned at first area;
The present embodiment can control the air quantity of air-conditioning according to kinestate.Such as, determine that user is in static or slowly Kinestate, produces heat less, then can control air-conditioning and be adjusted to air quantity on the low side.Such as, a total of 5 grades of air-conditioning air volume, 1 Shelves air quantity is minimum, 5 grades of air quantity maximums.Determine user be in static or slowly kinestate time, control air-conditioning be adjusted to 1 grade or 2 grades.Determine that user is in strenuous exercise's state, produce heat more, then can control sky and be adjusted to higher air quantity, as controlled Air-conditioning work is at 4 grades or 5 grades.The corresponding relation of kinestate and air quantity can be preset with.When determining that user is in certain motion During state, control air-conditioning and be adjusted to the air quantity gear of correspondence.
The present embodiment can also control air quantity and be positioned at first area with the kinestate meeting user.Such as, user Movement position is near air-conditioning, and first area includes that the movement position of user, the then air quantity controlling air-conditioning blow to first area, I.e. use less air quantity.The movement position of user away from air-conditioning, then controls air-conditioning and is adjusted to higher air quantity, in order to control The air quantity of air-conditioning processed blows to first area.Wherein it is possible to determined the distance of user by infrared or the shooting mode such as image.
The time of D3: described temporal information instruction fell in the predetermined set air quantity time period;
The present embodiment can control the air quantity of air-conditioning according to temporal information, reaches the time specified, and just can control air-conditioning and adjust Whole to corresponding air quantity.Such as, daytime is in the working time, controls air-conditioning work at higher air quantity gear.Such as, air-conditioner wind Measure a total of 5 grades, 1 grade of air quantity minimum, 5 grades of air quantity maximums.Determine that current time, for the time of working by day, controls air-conditioning work and exists 4 grades or 5 grades., air-conditioning can be controlled and be adjusted to air quantity on the low side the length of one's sleep in the evening, as controlled air-conditioning work at 4 grades or 5 grades. It is previously provided with the corresponding relation of time period and air quantity, the preset time period met according to current time, control air-conditioning work right The air quantity gear answered.
The temperature of D4: described temperature information instruction falls in predetermined 3rd temperature range.
The present embodiment controls air-conditioning according to extraneous temperature information and adjusts air quantity.Such as, extraneous temperature information is the most Fall into a suitable temperature range, i.e. make a reservation for the 3rd temperature range, can be with aforesaid life comfort zone and first Temperature range is identical, or a subinterval of aforesaid first temperature range.Such as, if the temperature information of current outside The suitable temperature range that distance is preset farther out, then can control air-conditioning work at higher air quantity gear.Such as, air-conditioning air volume A total of 5 grades, 1 grade of air quantity minimum, 5 grades of air quantity maximums.The suitable temperature range that the temperature information distance of current outside is preset Farther out time (the temperature distance threshold more than presetting), control air-conditioning work at 4 grades or 5 grades, make ambient temperature falling into faster Predetermined 3rd temperature range, in order to provide the user a temperature environment the most comfortable.The temperature information distance of current outside During the suitable temperature range preset relatively near (the temperature distance threshold no more than preset), control air-conditioning work at 1 grade or 2 grades, To save the energy.In different seasons or different personal habits, the 3rd temperature range can be different.Such as, summer, the 3rd temperature Degree interval is 26 DEG C-28 DEG C.In winter, the 3rd temperature range is 20 DEG C-22 DEG C.
In one embodiment, when meet following at least one, such as E1 to E4, the described operational factor described air-conditioning of instruction exists Wind direction is set in object time section:
The instruction of E1: described sleep state is in sleep state;
The present embodiment can control air-conditioning adjust wind direction when determining that user is in sleep state in object time section. Such as, user is not in sleep state, and the wind direction controlling air-conditioning is proper towards user, or the wind direction controlling air-conditioning uses Blow-through is proper.User is in sleep state, and the wind direction controlling air-conditioning is proper not towards user, or controls air-conditioning Wind direction uses (left and right) pendulum wind proper.The corresponding relation of sleep state and wind direction can be preset with.When determining that user is in During sleep state, control air-conditioning and be adjusted to the wind direction of correspondence.Wherein it is possible to determine user by infrared or the shooting mode such as image Orientation.
The instruction of E2: described kinestate following at least one: perform to arrange wind direction operation, be positioned at first area;
The present embodiment can control the wind direction of air-conditioning according to kinestate.Such as, determine that user is in static or slowly Kinestate, produces heat less, then the wind direction controlling air-conditioning is proper not towards user, or the wind direction controlling air-conditioning is adopted Proper with (left and right) pendulum wind.Determine that user is in strenuous exercise's state, produce heat more, then control the wind direction court of air-conditioning Proper to user, or the wind direction employing blow-through controlling air-conditioning is proper.Kinestate and wind direction can be preset with Corresponding relation.When determining that user is in certain kinestate, control air-conditioning and be adjusted to the wind direction of correspondence.
The present embodiment can also control wind direction and be positioned at first area with the kinestate meeting user.Such as, user When movement position is positioned at the side of air-conditioning, first area includes that the movement position of user, the then wind direction controlling air-conditioning blow to first Region.Wherein it is possible to determined the orientation of user by infrared or the shooting mode such as image.
The time of E3: described temporal information instruction fell in the predetermined set wind direction time period;
The present embodiment can control the wind direction of air-conditioning according to temporal information, reaches the time specified, and just can control air-conditioning and adjust Whole to corresponding wind direction.Such as, daytime is in the working time, and the wind direction controlling air-conditioning is proper towards user, or controls The wind direction of air-conditioning uses blow-through proper., the wind direction controlling air-conditioning is proper not towards user the length of one's sleep in the evening, or The wind direction controlling air-conditioning uses (left and right) pendulum wind proper.It is previously provided with the corresponding relation of time period and wind direction, according to currently The preset time period that time meets, controls air-conditioning work at corresponding wind direction.
The temperature of E4: described temperature information instruction falls in predetermined 4th temperature range.
The present embodiment controls air-conditioning according to extraneous temperature information and adjusts wind direction.Such as, extraneous temperature information does not falls within One suitable temperature range, i.e. makes a reservation for the 4th temperature range, can be with aforesaid life comfort zone and the first temperature Interval identical, or a subinterval of aforesaid first temperature range.Such as, if the temperature information distance of current outside The suitable temperature range preset (the temperature distance threshold more than presetting) farther out, then the wind direction controlling air-conditioning compares towards user Properly, or control air-conditioning wind direction use blow-through proper.User is made to experience suitable temperature from body-sensing faster. During suitable temperature range relatively near (the temperature distance threshold no more than preset) that the temperature information distance of current outside is preset, control The wind direction of air-conditioning processed is proper not towards user, or the wind direction controlling air-conditioning uses (left and right) pendulum wind proper.Not Same season or different personal habits, the 4th temperature range can be different.Such as, in summer, the 4th temperature range is 26 DEG C-28 ℃.In winter, the 4th temperature range is 20 DEG C-22 DEG C.
Realize process is discussed in detail below by several embodiments.
Fig. 2 is the flow chart according to a kind of method controlling air-conditioning shown in an exemplary embodiment, as in figure 2 it is shown, should The method controlling air-conditioning can be realized by smart jack, and the method for this control air-conditioning can be implemented as following steps:
In step s 201, electrical parameter values is obtained.
In step S202, obtain the current state of air-conditioning according to described electrical parameter values;When described current state indicates Described air-conditioning is in running order, continues step S203, otherwise terminates this flow process.
In step S203, obtain described extraneous characteristic information, described extraneous characteristic information include following at least one: people Body characteristics information, temperature information, temporal information.
In step S204, obtain the operational factor mated with described extraneous characteristic information.
In step S205, control described air-conditioning and run according to described operational factor.
Fig. 3 is the flow chart according to a kind of method controlling air-conditioning shown in an exemplary embodiment, as it is shown on figure 3, should The method controlling air-conditioning can be realized by smart jack, and the method for this control air-conditioning can be implemented as following steps:
In step S301, obtain electrical parameter values.
In step s 302, the current state of air-conditioning is obtained according to described electrical parameter values;When described current state indicates Described air-conditioning is in running order, continues step S303, otherwise terminates this flow process.
In step S303, obtaining behavior state according to described extraneous characteristic information, described behavior state includes following One: sleep state, kinestate.
In step s 304, the operational factor mated with described behavior state is obtained.
In step S305, control described air-conditioning and run according to described operational factor.
Realize process is discussed in detail below as a example by sleep state.
Fig. 4 is the flow chart according to a kind of method controlling air-conditioning shown in an exemplary embodiment, as shown in Figure 4, and should The method controlling air-conditioning can be realized by smart jack, and the method for this control air-conditioning can be implemented as following steps:
In step S401, it is thus achieved that electrical parameter values.
In step S402, determine that air-conditioning is in running order according to electrical parameter values.
In step S403, determine and meet the sleep state preset.
In step s 404, send, to air-conditioning, the control command that the sleep state met is corresponding.
When determining that air-conditioning is in running order, it may be judged whether meet the sleep state preset, in the present embodiment, if full Foot is preset dormant determination methods and can be judged in the following way:
Mode one
In the manner, preset in advance length of one's sleep, is 22:00-06:00 as arranged the length of one's sleep, when current time is in Time in the range of this length of one's sleep, determine and meet the sleep state preset, i.e. determine that user is currently at sleep state.
Wherein, user can directly be arranged on smart jack.Or, user is by smart jack on mobile terminals Smart jack is configured by APP.
Mode two
In the manner, can detect, by the Intelligent worn device (such as Intelligent bracelet) that user wears, the physiology that user is current Status information (such as the quantity of motion amplitude of variation of user, rate of metabolism etc.), the physiological state information current by user is sentenced The most disconnected user is in sleep state.
Wherein, smart jack can be with Intelligent worn device wireless connections.
When judging to meet the sleep state preset by the way, send satisfied default sleep state to air-conditioning corresponding Control command.
Embodiment of the disclosure that the technical scheme of offer can include following beneficial effect: when air-conditioning meets default sleep During state, send to air-conditioning and meet the control instruction that sleep state is corresponding, so that air-conditioning is when unmanned control, it is possible to by full The control instruction that foot sleep state is corresponding realizes automatically controlling air-conditioning, so that controlling more accurately, rationally.
In one embodiment, above-mentioned steps S403 can be implemented as following steps F1:
In step F1, determine when current time meets the default length of one's sleep, determine and meet the sleep state preset.
Or, as shown in Figure 5A, above-mentioned steps S403 can be implemented as following steps S501-S502:
In step S501, receive the current user state that external equipment sends.
In step S502, determine that current user state meets default sleep state.
In the present embodiment, if meeting default dormant determination methods can judge in the following way:
Mode one
In the manner, preset in advance length of one's sleep, is 22:00-06:00 as arranged the length of one's sleep, when current time is in Time in the range of this length of one's sleep, determine and meet the sleep state preset, i.e. determine that user is currently at sleep state.We In case, smart jack can be bound with user mobile phone in advance, and applies by being used for managing the mobile phone of Smart Home in mobile phone The length of one's sleep is set, it is also possible to arrange different periods correspondence difference sleep state, makes the control of air-conditioning work temperature value More accurate.
Mode two
Owing to when user is in sleep state, the flowing of quantity of motion amplitude of variation, heart rates, pulse frequency, blood is fast Degree, body temperature, rate of metabolism all can be lower than during waking state, thus, in the manner, can be worn by the intelligence that user wears Wear the change curve that equipment (such as Intelligent bracelet) detects the above-mentioned physiological index of user, when many in above-mentioned physiological status index When item index reduces, determine that user is currently at sleep state.
Embodiment of the disclosure that the technical scheme of offer can include following beneficial effect: provide multiple sleep state really Determine mode, make dormant to determine that mode is more diversified.By the default length of one's sleep, meet default sleeping in current time During the dormancy time, determine and meet the sleep state preset, thus without i.e. can be determined whether to meet by other equipment to preset sleep State, provides cost savings.Secondly, determine whether current user state meets the sleep state preset by external equipment, make full What foot was preset dormant determines that result is more accurate.
In one embodiment, the sleep state preset has at least two.
Control instruction includes temperature adjustment instructions, standby command or activation instruction.Wherein, different control instruction correspondences is not The same sleep state preset.
When user is in waking state, blood circulation speed, when air-conditioning work temperature value is relatively low, feel to compare Comfortable.But after user falls asleep, blood circulation speed reduces, if the most still keeping lower temperature, can feel a sense of cold.Cause And, smart jack needs have the function being automatically adjusted air-conditioner temperature.In this programme, can in smart jack integrated infrared emission Module, the temperature adjustment instructions that smart jack generates can be sent to air-conditioning by this infrared transmission module, to control air-conditioning regulation temperature Degree.
Wherein, it is also possible to be connected with air-conditioning by the wireless communication module such as bluetooth, WiFi, it is with infrared transmission module herein As a example by.
Secondly, in smart jack also can built-in temperature sensor, be used for detecting indoor temperature, when indoor temperature is worked as with air-conditioning When the temperature of front setting is identical, generates standby command, by the infrared transmission module in smart jack, this standby command is sent To air-conditioning, to control air-conditioner standby.When indoor temperature goes back up to certain temperature threshold, generate activation instruction.Pass through smart jack In infrared generation module this activation instruction is sent to air-conditioning, with control air-conditioning open.
Meanwhile, when ambient temperature is the highest, it is also possible to generate standby command when user is in and sleep soundly state, and pass through intelligence This standby command is sent to air-conditioning to control air-conditioner standby by the infrared transmission module in energy socket.
It should be noted that when air-conditioning is in holding state time, not only activation instruction can control air-conditioning unlatching, temperature Regulating command also has the effect of activation, difference to be that activation instruction need not carry air-conditioning work temperature value.
Embodiment of the disclosure that the technical scheme of offer can include following beneficial effect: by arranging polytype control System instruction, makes the control of air-conditioning more flexible, and default dormant with different by arranging different control instructions Corresponding relation, the control making air-conditioning is more reasonable.
In one embodiment, temperature adjustment instructions includes air-conditioning work temperature value.May taking of air-conditioning work temperature value Value at least two, there is corresponding relation with the sleep state preset in air-conditioning work temperature value.
In the present embodiment, the temperature adjustment instructions of air-conditioning comprises air-conditioning work temperature value, when air-conditioning receives a temperature During degree regulating command, current operating temperature value is adjusted to identical with the air-conditioning work temperature value in this temperature adjustment instructions.
For example, in the present embodiment, each sleep state correspondence one operating temperature value:
User, when waking state (waken up or not yet fallen asleep), is generally in active state, meeting in active procedure Produce heat.And user's pulse velocity of waking state, heart rates, blood circulation speed, rate of metabolism etc. are all very fast, Relatively low air-conditioning work temperature is set, when making indoor holding lower temperature, can be pleasant.I.e. it is in waking state user Time, relatively low air-conditioning work temperature value should be set, such as, arranging air-conditioning work temperature value when user is in waking state is 24 Degree.
When user falls asleep, user becomes resting state from active state, and quantity of motion amplitude of variation reduces, blood circulation speed Degree is gradually lowered, if indoor temperature is relatively low, can feel a sense of cold.Thus, air-conditioner temperature value should be higher than that air-conditioning man during waking state Making temperature value, such as, arranging air-conditioning work temperature value when user is in hypnagogic state is 26 degree.
When user enters and sleep soundly state, pulse velocity, heart rates, blood circulation speed, rate of metabolism, motion The value of every indexes such as amount is the most relatively low, and now, air-conditioner temperature value should be higher than that air-conditioner temperature value during hypnagogic state, such as, arranges It is 28 degree that user is in air-conditioning work temperature value when sleeping soundly state.
When user is in fast awake state, pulse velocity, heart rates, blood circulation speed, rate of metabolism etc. are each Index is gradually worth and gradually rises, now, current air-conditioning work temperature value should less than sleep soundly state time air-conditioning work temperature Value, such as, arrange user be in fast wake up state time air-conditioning work temperature value be 26 degree.
Embodiment of the disclosure that the technical scheme of offer can include following beneficial effect: multiple air-conditioning work temperature is set Value, and multiple air-conditioning work temperature values and sleep state are set up corresponding relation such that it is able to dormant change intelligence The temperature value of energy ground regulation air-conditioning.
In one embodiment, the sleep state preset includes hypnagogic state, state of sleeping soundly, fast state and the state of having waken up of waking up In at least one.
Embodiment of the disclosure that the technical scheme of offer can include following beneficial effect: by arranging multiple different sleeping Dormancy state, makes the regulation of operating temperature value of the air-conditioning that different sleep state is corresponding more accurately, rationally.
In one embodiment, the air-conditioning work that the air-conditioning work temperature value that hypnagogic state is corresponding is corresponding less than state of sleeping soundly Temperature value.
The air-conditioning work temperature value that air-conditioning work temperature value corresponding to fast state of waking up is corresponding more than state of having waken up.
In the present embodiment, it is contemplated that when user falls asleep, user becomes resting state, quantity of motion change width from active state Degree reduces, and blood circulation speed is gradually lowered, when user enters and sleep soundly state, and pulse velocity, heart rates, blood circulation speed The value of every indexes such as degree, rate of metabolism, quantity of motion is lower than during hypnagogic state, thus, the state of sleeping soundly is corresponding Air-conditioner temperature value is set above air-conditioner temperature value during hypnagogic state, such as, arranges the air-conditioning man that user's hypnagogic state is corresponding It is 26 degree as temperature value, and is in air-conditioning work temperature value when sleeping soundly state and is set to 28 degree.
When user is in fast awake state, pulse velocity, heart rates, blood circulation speed, rate of metabolism etc. are each Index is gradually worth and gradually rises, but, owing to being still within resting state.And user is when waking up state, it is generally in Active state, can produce heat in active procedure.And user's pulse velocity of waking state, heart rates, blood circulation speed Degree, rate of metabolism etc. are the most very fast.Therefore, the air-conditioning work temperature value that fast state of waking up the is corresponding state that should be greater than waking up is corresponding Air-conditioning work temperature value, such as, arranging the fast air-conditioner temperature value waking up state is 26 degree, and arranges the air-conditioning man that state of having waken up is corresponding It it is 28 degree as temperature value.
In the disclosure, when sleep state changes, smart jack generates temperature adjustment instructions, and passes through smart jack In infrared transmission module be sent to air-conditioning, to regulate air-conditioner temperature, when air-conditioning is in holding state, temperature adjustment instructions is also The effect of activation, difference is had to be that activation instruction need not carry air-conditioning work temperature value.
Embodiment of the disclosure that the technical scheme of offer can include following beneficial effect: state of sleeping soundly and fast state of waking up Under temperature value be set above hypnagogic state and the temperature of state of having waken up, reduce temperature under user's sleep state too low and affect User's sleep and health.
Wherein, multiple air-conditioning work temperature values can form a temperature curve.Some points on curve can be corresponding each Individual sleep state.Air-conditioning can be controlled by smart jack according to this curve.Curve as shown in Figure 5 B, can be by mobile whole End is configured on smart jack.
In one embodiment, as shown in Figure 6, after above-mentioned steps S404, the method controlling air-conditioning also can be carried out For following steps S601-S603:
In step s 601, current environmental temperature value is obtained.
In step S602, determine that current environmental temperature value meets air-conditioning work temperature value.
In step S603, send standby command to air-conditioning.
Owing to smart jack being built-in with temperature sensor, thus the temperature of current environment can be obtained by temperature sensor Angle value, when current environmental temperature value meets air-conditioning work temperature value, generates standby command, and by this standby command by intelligence Infrared transmission module in socket is sent to air-conditioning, to control air-conditioner standby.Thus decrease the unnecessary waste of electric energy.
When indoor temperature goes back up to certain temperature threshold, generate activation instruction, and this activation instruction is passed through smart jack In infrared transmission module be sent to air-conditioning, with control air-conditioning open.
Generate activation instruction by the infrared generation module in smart jack and control air-conditioning unlatching.
Embodiment of the disclosure that the technical scheme of offer can include following beneficial effect: when current temperature value meets air-conditioning During operating temperature value, send standby command to air-conditioning, thus reduce air-conditioning to be in running status for a long time and shorten the air-conditioning life-span, And reduce electric energy loss.
Fig. 7 is the flow chart according to a kind of method controlling air-conditioning shown in an exemplary embodiment, as it is shown in fig. 7, should The method controlling air-conditioning can be realized by smart jack, and the method for this control air-conditioning can be implemented as following steps S701-S708:
In step s 701, electrical parameter values is obtained.
In step S702, obtain the current state of air-conditioning according to described electrical parameter values.
In step S703, receive the current user state that external equipment sends.
In step S704, determine that current user state meets default sleep state.
In step S705, send, to air-conditioning, the control command that the sleep state met is corresponding.
In step S706, obtain current environmental temperature value.
In step S707, determine that current environmental temperature value meets air-conditioning work temperature value.
In step S708, send standby command to air-conditioning.
By described above understood control air-conditioning realize process, this process is realized by mobile terminal and computer, under Face is respectively directed to the internal structure of two equipment and function is introduced.
Fig. 8 is according to a kind of device block diagram controlling air-conditioning shown in an exemplary embodiment.With reference to Fig. 8, this control is empty The device adjusted includes:
First acquisition module 801, is used for obtaining electrical parameter values;
First determines module 802, for obtaining the current state of air-conditioning according to described electrical parameter values;
Second acquisition module 803, for when described current state indicates described air-conditioning in running order, obtains and works as The operational factor of front extraneous characteristic information coupling;
First sending module 804, is used for controlling described air-conditioning and runs according to described operational factor.
In one embodiment, as it is shown in figure 9, described second acquisition module 803 includes:
Feature submodule 901, is used for obtaining described extraneous characteristic information, and described extraneous characteristic information includes following at least one : characteristics of human body's information, temperature information, temporal information;
Parameter sub-module 902, for obtaining the operational factor mated with described extraneous characteristic information.
In one embodiment, described extraneous characteristic information includes characteristics of human body's information;
Described parameter sub-module 902 obtains behavior state according to described extraneous characteristic information, described behavior state include with Lower any one: sleep state, kinestate;Obtain the operational factor mated with described behavior state.
In one embodiment, the instruction of described operational factor performs at least one operation following: closes, arrange temperature, set Put air quantity, wind direction is set.
In one embodiment, when meet following at least one, the described operational factor described air-conditioning of instruction is in the object time Close in section:
The instruction of described sleep state is in sleep state;
The instruction of described kinestate performs shutoff operation;
The time of described temporal information instruction falls in predetermined shut-in time section;
The temperature of described temperature information instruction falls in predetermined first temperature range.
In one embodiment, when meet following at least one, the described operational factor described air-conditioning of instruction is in the object time Temperature is set in Duan:
The instruction of described sleep state is in sleep state;
The instruction execution of described kinestate arranges temperature operation;
The time of described temporal information instruction falls in predetermined set temperature-time section;
The temperature of described temperature information instruction falls in predetermined second temperature range.
In one embodiment, when meet following at least one, the described operational factor described air-conditioning of instruction is in the object time Air quantity is set in Duan:
The instruction of described sleep state is in sleep state;
The instruction of described kinestate following at least one: perform to arrange air quantity operation, be positioned at first area;
The time of described temporal information instruction fell in the predetermined set air quantity time period;
The temperature of described temperature information instruction falls in predetermined 3rd temperature range.
In one embodiment, when meet following at least one, the described operational factor described air-conditioning of instruction is in the object time Wind direction is set in Duan:
The instruction of described sleep state is in sleep state;
The instruction of described kinestate following at least one: perform to arrange wind direction operation, be positioned at first area;
The time of described temporal information instruction fell in the predetermined set wind direction time period;
The temperature of described temperature information instruction falls in predetermined 4th temperature range.
In one embodiment, Figure 10 is according to a kind of device block diagram controlling air-conditioning shown in an exemplary embodiment. With reference to Figure 10, the device of this control air-conditioning includes:
First acquisition module 801, is used for obtaining electrical parameter values.
First determines module 802, for obtaining the current state of air-conditioning according to described electrical parameter values.
Second determines module 1003, when described current state indicates described air-conditioning in running order, obtains with current Extraneous characteristic information coupling operational factor.
Second sending module 1004, for sending, to air-conditioning, the control command that the sleep state met is corresponding.
Embodiment of the disclosure that the technical scheme of offer can include following beneficial effect: when second determines that module determines sky When adjusting the satisfied sleep state preset, meet, to air-conditioning transmission, the control instruction that sleep state is corresponding by the first sending module, So that air-conditioning is when unmanned control, it is possible to realize the automatic control to air-conditioning by meeting control instruction corresponding to sleep state System, so that controlling more accurately, rationally.
In one embodiment, as shown in figure 11, second determines module 1003, including:
First determines submodule 1101, for determining when current time meets the default length of one's sleep, determines to meet and presets Sleep state.
Receive submodule 1102, for receiving the current user state that external equipment sends.
Second determines submodule 1103, for determining that current user state meets default sleep state.
Embodiment of the disclosure that the technical scheme of offer can include following beneficial effect: provide multiple sleep state really Determine mode, make dormant to determine that mode is more diversified.By the default length of one's sleep, meet default sleeping in current time During the dormancy time, first determines that submodule determines meets the sleep state preset, thus without i.e. can determine that by other equipment is No satisfied default sleep state, provides cost savings.Secondly, active user's shape of external equipment transmission is received by receiving submodule By second, state, determines that submodule determines whether current user state meets the sleep state preset, makes to meet the sleep preset The determination result of state is more accurate.
In one embodiment, the sleep state preset has at least two.
Control instruction includes temperature adjustment instructions, standby command or activation instruction.Wherein, different control instruction correspondences is not The same sleep state preset.
Embodiment of the disclosure that the technical scheme of offer can include following beneficial effect: by arranging polytype control System instruction, makes the control of air-conditioning more flexible, and default dormant with different by arranging different control instructions Corresponding relation, the control making air-conditioning is more reasonable.
In one embodiment, temperature adjustment instructions includes air-conditioning work temperature value.May taking of air-conditioning work temperature value Value at least two, there is corresponding relation with the sleep state preset in air-conditioning work temperature value.
Embodiment of the disclosure that the technical scheme of offer can include following beneficial effect: multiple air-conditioning work temperature is set Value, and multiple air-conditioning work temperature values and sleep state are set up corresponding relation such that it is able to dormant change intelligence The temperature value of energy ground regulation air-conditioning.
In one embodiment, the sleep state preset includes hypnagogic state, state of sleeping soundly, fast state and the state of having waken up of waking up In at least one.
Embodiment of the disclosure that the technical scheme of offer can include following beneficial effect: by arranging multiple different sleeping Dormancy state, makes the regulation of operating temperature value of the air-conditioning that different sleep state is corresponding more accurately, rationally.
In one embodiment, the air-conditioning work that the air-conditioning work temperature value that hypnagogic state is corresponding is corresponding less than state of sleeping soundly Temperature value.
The air-conditioning work temperature value that air-conditioning work temperature value corresponding to fast state of waking up is corresponding more than state of having waken up.
Embodiment of the disclosure that the technical scheme of offer can include following beneficial effect: state of sleeping soundly and fast state of waking up Under temperature value be set above hypnagogic state and the temperature of state of having waken up, reduce temperature under user's sleep state too low and affect User's sleep and health.
In one embodiment, as shown in figure 12, the device of this control air-conditioning also includes:
Second acquisition module 1201, is used for obtaining current environmental temperature value.
3rd determines module 1202, is used for determining that current environmental temperature value meets air-conditioning work temperature value.
3rd sending module 1203, for sending standby command to air-conditioning.
Embodiment of the disclosure that the technical scheme of offer can include following beneficial effect: determine that module determines by the 3rd When current temperature value meets air-conditioning work temperature value, send standby command by the second sending module to air-conditioning, thus reduce sky Adjust and be in running status for a long time and shorten the air-conditioning life-span, and reduce electric energy loss.
About the device in above-described embodiment, wherein modules performs the concrete mode of operation in relevant the method Embodiment in be described in detail, explanation will be not set forth in detail herein.
Figure 13 is the block diagram according to a kind of device 1300 for controlling air-conditioning shown in an exemplary embodiment.Such as, Device 1300 can be mobile phone, computer, digital broadcast terminal, messaging devices, game console, tablet device, Armarium, body-building equipment, personal digital assistant etc..
With reference to Figure 13, device 1300 can include following one or more assembly: process assembly 1302, memorizer 1304, Power supply module 1306, multimedia groupware 1308, audio-frequency assembly 1310, the interface 1312 of input/output (I/O), sensor cluster 1314 and communications component 1316.
Process assembly 1302 and generally control the integrated operation of device 1300, such as with display, call, data communication, The operation that camera operation and record operation are associated.Process assembly 1302 and can include that one or more processor 1320 performs Instruction, to complete all or part of step of above-mentioned method.Additionally, process assembly 1302 can include one or more mould Block, it is simple to process between assembly 1302 and other assemblies is mutual.Such as, process assembly 1302 and can include multi-media module, With facilitate multimedia groupware 1308 and process between assembly 1302 mutual.
Memorizer 1304 is configured to store various types of data to support the operation at device 1300.These data Example include on device 1300 operation any application program or the instruction of method, contact data, telephone book data, Message, picture, video etc..Memorizer 1304 can by any kind of volatibility or non-volatile memory device or they Combination realizes, such as static RAM (SRAM), Electrically Erasable Read Only Memory (EEPROM), erasable can Program read-only memory (EPROM), programmable read only memory (PROM), read only memory (ROM), magnetic memory, flash memory Reservoir, disk or CD.
The various assemblies that power supply module 1306 is device 1300 provide power supply.Power supply module 1306 can include power management System, one or more power supplys, and other generate, manage and distribute, with for device 1300, the assembly that power supply is associated.
The screen of one output interface of offer that multimedia groupware 1308 is included between device 1300 and user.At some In embodiment, screen can include liquid crystal display (LCD) and touch panel (TP).If screen includes touch panel, screen May be implemented as touch screen, to receive the input signal from user.Touch panel includes one or more touch sensor With the gesture on sensing touch, slip and touch panel.Touch sensor can not only sense touch or the border of sliding action, But also detect the persistent period relevant to touch or slide and pressure.In certain embodiments, multimedia groupware 1308 Including a front-facing camera and/or post-positioned pick-up head.When device 1300 is in operator scheme, such as screening-mode or video mode Time, front-facing camera and/or post-positioned pick-up head can receive the multi-medium data of outside.Each front-facing camera and rearmounted shooting Head can be a fixing optical lens system or have focal length and optical zoom ability.
Audio-frequency assembly 1310 is configured to output and/or input audio signal.Such as, audio-frequency assembly 1310 includes a wheat Gram wind (MIC), when device 1300 is in operator scheme, during such as call model, logging mode and speech recognition mode, mike quilt It is configured to receive external audio signal.The audio signal received can be further stored at memorizer 1304 or via communication Assembly 1316 sends.In certain embodiments, audio-frequency assembly 1310 also includes a speaker, is used for exporting audio signal.
I/O interface 1312 provides interface, above-mentioned peripheral interface module for processing between assembly 1302 and peripheral interface module Can be keyboard, put striking wheel, button etc..These buttons may include but be not limited to: home button, volume button, start button and Locking press button.
Sensor cluster 1314 includes one or more sensor, for providing the state of various aspects to comment for device 1300 Estimate.Such as, what sensor cluster 1314 can detect device 1300 opens/closed mode, the relative localization of assembly, such as group Part is display and the keypad of device 1300, and sensor cluster 1314 can also detect of device 1300 or device 1300 The position change of assembly, the presence or absence that user contacts with device 1300, device 1300 orientation or acceleration/deceleration and device The variations in temperature of 1300.Sensor cluster 1314 can include proximity transducer, is configured to do not having any physics to connect The existence of object near detection when touching.Sensor cluster 1314 can also include optical sensor, as CMOS or ccd image sense Device, for using in imaging applications.In certain embodiments, this sensor cluster 1314 can also include acceleration sensing Device, gyro sensor, Magnetic Sensor, pressure transducer or temperature sensor.
Communications component 1316 is configured to facilitate the communication of wired or wireless mode between device 1300 and other equipment.Dress Put 1300 and can access wireless network based on communication standard, such as WiFi, 2G or 3G, or combinations thereof.Exemplary at one In embodiment, broadcast singal or broadcast that communications component 1316 receives from external broadcasting management system via broadcast channel are relevant Information.In one exemplary embodiment, communications component 1316 also includes near-field communication (NFC) module, to promote junction service. Such as, can be based on RF identification (RFID) technology in NFC module, Infrared Data Association (IrDA) technology, ultra broadband (UWB) skill Art, bluetooth (BT) technology and other technologies realize.
In the exemplary embodiment, device 1300 can be by one or more application specific integrated circuits (ASIC), numeral Signal processor (DSP), digital signal processing appts (DSPD), PLD (PLD), field programmable gate array (FPGA), controller, microcontroller, microprocessor or other electronic components realize, be used for performing said method.
In the exemplary embodiment, a kind of non-transitory computer-readable recording medium including instruction, example are additionally provided As included the memorizer 1304 of instruction, above-mentioned instruction can have been performed said method by the processor 1320 of device 1300.Example As, non-transitory computer-readable recording medium can be ROM, random access memory (RAM), CD-ROM, tape, floppy disk and Optical data storage devices etc..
A kind of device controlling air-conditioning, including:
Processor;
For storing the memorizer of processor executable;
Wherein, processor is configured to:
Obtain electrical parameter values;
The current state of air-conditioning is obtained according to described electrical parameter values;
When described current state indicates described air-conditioning in running order, obtain and mate with current extraneous characteristic information Operational factor;
The control command that the sleep state met is corresponding is sent to air-conditioning.
Processor can be additionally configured to:
The operational factor that described acquisition is mated with current extraneous characteristic information, including:
Obtain described extraneous characteristic information, described extraneous characteristic information include following at least one: characteristics of human body's information, temperature Degree information, temporal information;
Obtain the operational factor mated with described extraneous characteristic information.
Processor can be additionally configured to:
Described extraneous characteristic information includes characteristics of human body's information;
The operational factor that described acquisition is mated with described extraneous characteristic information, including:
Obtaining behavior state according to described extraneous characteristic information, described behavior state includes following any one: sleep state, Kinestate;
Obtain the operational factor mated with described behavior state.
Processor can be additionally configured to:
The instruction of described operational factor performs at least one operation following: closes, arrange temperature, arrange air quantity, arrange wind direction.
Processor can be additionally configured to:
When meet following at least one, the described operational factor described air-conditioning of instruction is closed in object time section:
The instruction of described sleep state is in sleep state;
The instruction of described kinestate performs shutoff operation;
The time of described temporal information instruction falls in predetermined shut-in time section;
The temperature of described temperature information instruction falls in predetermined first temperature range.
Processor can be additionally configured to:
When meet following at least one, the described operational factor described air-conditioning of instruction arranges temperature in object time section:
The instruction of described sleep state is in sleep state;
The instruction execution of described kinestate arranges temperature operation;
The time of described temporal information instruction falls in predetermined set temperature-time section;
The temperature of described temperature information instruction falls in predetermined second temperature range.
Processor can be additionally configured to:
When meet following at least one, the described operational factor described air-conditioning of instruction arranges air quantity in object time section:
The instruction of described sleep state is in sleep state;
The instruction of described kinestate following at least one: perform to arrange air quantity operation, be positioned at first area;
The time of described temporal information instruction fell in the predetermined set air quantity time period;
The temperature of described temperature information instruction falls in predetermined 3rd temperature range.
Processor can be additionally configured to:
When meet following at least one, the described operational factor described air-conditioning of instruction arranges wind direction in object time section:
The instruction of described sleep state is in sleep state;
The instruction of described kinestate following at least one: perform to arrange wind direction operation, be positioned at first area;
The time of described temporal information instruction fell in the predetermined set wind direction time period;
The temperature of described temperature information instruction falls in predetermined 4th temperature range.
A kind of non-transitory computer-readable recording medium, when the instruction in storage medium is held by the processor of mobile terminal During row so that mobile terminal is able to carry out a kind of method controlling air-conditioning, and method includes:
Obtain electrical parameter values;
The current state of air-conditioning is obtained according to described electrical parameter values;
When described current state indicates described air-conditioning in running order, obtain and mate with current extraneous characteristic information Operational factor;
The control command that the sleep state met is corresponding is sent to air-conditioning.
Instruction in storage medium can also include:
The operational factor that described acquisition is mated with current extraneous characteristic information, including:
Obtain described extraneous characteristic information, described extraneous characteristic information include following at least one: characteristics of human body's information, temperature Degree information, temporal information;
Obtain the operational factor mated with described extraneous characteristic information.
Instruction in storage medium can also include:
Described extraneous characteristic information includes characteristics of human body's information;
The operational factor that described acquisition is mated with described extraneous characteristic information, including:
Obtaining behavior state according to described extraneous characteristic information, described behavior state includes following any one: sleep state, Kinestate;
Obtain the operational factor mated with described behavior state.
Instruction in storage medium can also include:
The instruction of described operational factor performs at least one operation following: closes, arrange temperature, arrange air quantity, arrange wind direction.
Instruction in storage medium can also include:
When meet following at least one, the described operational factor described air-conditioning of instruction is closed in object time section:
The instruction of described sleep state is in sleep state;
The instruction of described kinestate performs shutoff operation;
The time of described temporal information instruction falls in predetermined shut-in time section;
The temperature of described temperature information instruction falls in predetermined first temperature range.
Instruction in storage medium can also include:
When meet following at least one, the described operational factor described air-conditioning of instruction arranges temperature in object time section:
The instruction of described sleep state is in sleep state;
The instruction execution of described kinestate arranges temperature operation;
The time of described temporal information instruction falls in predetermined set temperature-time section;
The temperature of described temperature information instruction falls in predetermined second temperature range.
Instruction in storage medium can also include:
When meet following at least one, the described operational factor described air-conditioning of instruction arranges air quantity in object time section:
The instruction of described sleep state is in sleep state;
The instruction of described kinestate following at least one: perform to arrange air quantity operation, be positioned at first area;
The time of described temporal information instruction fell in the predetermined set air quantity time period;
The temperature of described temperature information instruction falls in predetermined 3rd temperature range.
Instruction in storage medium can also include:
When meet following at least one, the described operational factor described air-conditioning of instruction arranges wind direction in object time section:
The instruction of described sleep state is in sleep state;
The instruction of described kinestate following at least one: perform to arrange wind direction operation, be positioned at first area;
The time of described temporal information instruction fell in the predetermined set wind direction time period;
The temperature of described temperature information instruction falls in predetermined 4th temperature range.
Those skilled in the art, after considering description and putting into practice invention disclosed herein, will readily occur to its of the disclosure Its embodiment.The application is intended to any modification, purposes or the adaptations of the disclosure, these modification, purposes or Person's adaptations is followed the general principle of the disclosure and includes the undocumented common knowledge in the art of the disclosure Or conventional techniques means.Description and embodiments is considered only as exemplary, and the true scope of the disclosure and spirit are by following Claim is pointed out.
It should be appreciated that the disclosure is not limited to precision architecture described above and illustrated in the accompanying drawings, and And various modifications and changes can carried out without departing from the scope.The scope of the present disclosure is only limited by appended claim.

Claims (17)

1. the method controlling air-conditioning, it is characterised in that be applied to socket, including:
Obtain electrical parameter values;
The current state of air-conditioning is obtained according to described electrical parameter values;
When described current state indicates described air-conditioning in running order, obtain the operation mated with current extraneous characteristic information Parameter;
Control described air-conditioning to run according to described operational factor.
Method the most according to claim 1, it is characterised in that the fortune that described acquisition is mated with current extraneous characteristic information Line parameter, including:
Obtain described extraneous characteristic information, described extraneous characteristic information include following at least one: characteristics of human body's information, temperature are believed Breath, temporal information;
Obtain the operational factor mated with described extraneous characteristic information.
Method the most according to claim 2, it is characterised in that described extraneous characteristic information includes characteristics of human body's information;
The operational factor that described acquisition is mated with described extraneous characteristic information, including:
Obtaining behavior state according to described extraneous characteristic information, described behavior state includes following any one: sleep state, motion State;
Obtain the operational factor mated with described behavior state.
Method the most according to claim 3, it is characterised in that the instruction of described operational factor performs at least one behaviour following Make: close, temperature is set, air quantity is set, wind direction is set.
Method the most according to claim 4, it is characterised in that when meet following at least one, the instruction of described operational factor Described air-conditioning is closed in object time section:
The instruction of described sleep state is in sleep state;
The instruction of described kinestate performs shutoff operation;
The time of described temporal information instruction falls in predetermined shut-in time section;
The temperature of described temperature information instruction falls in predetermined first temperature range.
Method the most according to claim 4, it is characterised in that when meet following at least one, the instruction of described operational factor Described air-conditioning arranges temperature in object time section:
The instruction of described sleep state is in sleep state;
The instruction execution of described kinestate arranges temperature operation;
The time of described temporal information instruction falls in predetermined set temperature-time section;
The temperature of described temperature information instruction falls in predetermined second temperature range.
Method the most according to claim 4, it is characterised in that when meet following at least one, the instruction of described operational factor Described air-conditioning arranges air quantity in object time section:
The instruction of described sleep state is in sleep state;
The instruction of described kinestate following at least one: perform to arrange air quantity operation, be positioned at first area;
The time of described temporal information instruction fell in the predetermined set air quantity time period;
The temperature of described temperature information instruction falls in predetermined 3rd temperature range.
Method the most according to claim 4, it is characterised in that when meet following at least one, the instruction of described operational factor Described air-conditioning arranges wind direction in object time section:
The instruction of described sleep state is in sleep state;
The instruction of described kinestate following at least one: perform to arrange wind direction operation, be positioned at first area;
The time of described temporal information instruction fell in the predetermined set wind direction time period;
The temperature of described temperature information instruction falls in predetermined 4th temperature range.
9. the device controlling air-conditioning, it is characterised in that be applied to socket, including:
First acquisition module, is used for obtaining electrical parameter values;
First determines module, for obtaining the current state of air-conditioning according to described electrical parameter values;
Second acquisition module, is used for when described current state indicates described air-conditioning in running order, outside obtaining and being current The operational factor of boundary's characteristic information coupling;
First sending module, is used for controlling described air-conditioning and runs according to described operational factor.
The device of control air-conditioning the most according to claim 9, it is characterised in that described second acquisition module includes:
Feature submodule, is used for obtaining described extraneous characteristic information, described extraneous characteristic information include following at least one: human body Characteristic information, temperature information, temporal information;
Parameter sub-module, for obtaining the operational factor mated with described extraneous characteristic information.
11. devices according to claim 10, it is characterised in that described extraneous characteristic information includes characteristics of human body's information;
Described parameter sub-module obtains behavior state according to described extraneous characteristic information, and described behavior state includes following arbitrary : sleep state, kinestate;Obtain the operational factor mated with described behavior state.
12. devices according to claim 11, it is characterised in that the instruction of described operational factor performs at least one behaviour following Make: close, temperature is set, air quantity is set, wind direction is set.
13. devices according to claim 12, it is characterised in that when meet below at least one, described operational factor refers to Show that described air-conditioning is closed in object time section:
The instruction of described sleep state is in sleep state;
The instruction of described kinestate performs shutoff operation;
The time of described temporal information instruction falls in predetermined shut-in time section;
The temperature of described temperature information instruction falls in predetermined first temperature range.
14. devices according to claim 12, it is characterised in that when meet below at least one, described operational factor refers to Show that described air-conditioning arranges temperature in object time section:
The instruction of described sleep state is in sleep state;
The instruction execution of described kinestate arranges temperature operation;
The time of described temporal information instruction falls in predetermined set temperature-time section;
The temperature of described temperature information instruction falls in predetermined second temperature range.
15. devices according to claim 12, it is characterised in that when meet below at least one, described operational factor refers to Show that described air-conditioning arranges air quantity in object time section:
The instruction of described sleep state is in sleep state;
The instruction of described kinestate following at least one: perform to arrange air quantity operation, be positioned at first area;
The time of described temporal information instruction fell in the predetermined set air quantity time period;
The temperature of described temperature information instruction falls in predetermined 3rd temperature range.
16. devices according to claim 12, it is characterised in that when meet below at least one, described operational factor refers to Show that described air-conditioning arranges wind direction in object time section:
The instruction of described sleep state is in sleep state;
The instruction of described kinestate following at least one: perform to arrange wind direction operation, be positioned at first area;
The time of described temporal information instruction fell in the predetermined set wind direction time period;
The temperature of described temperature information instruction falls in predetermined 4th temperature range.
17. 1 kinds of devices controlling air-conditioning, it is characterised in that be applied to socket, including:
Processor;
For storing the memorizer of processor executable;
Wherein, described processor is configured to:
Obtain electrical parameter values;
The current state of air-conditioning is obtained according to described electrical parameter values;
When described current state indicates described air-conditioning in running order, obtain the fortune mated with current extraneous characteristic information Line parameter;
Control described air-conditioning to run according to described operational factor.
CN201610597204.7A 2016-07-26 2016-07-26 Control the method and device of air-conditioning Pending CN106196473A (en)

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