CN106196491A - Temperature control method based on cold and hot inductance value and device - Google Patents

Temperature control method based on cold and hot inductance value and device Download PDF

Info

Publication number
CN106196491A
CN106196491A CN201610625632.6A CN201610625632A CN106196491A CN 106196491 A CN106196491 A CN 106196491A CN 201610625632 A CN201610625632 A CN 201610625632A CN 106196491 A CN106196491 A CN 106196491A
Authority
CN
China
Prior art keywords
cold
inductance value
warm
design temperature
hot inductance
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.)
Granted
Application number
CN201610625632.6A
Other languages
Chinese (zh)
Other versions
CN106196491B (en
Inventor
赖想球
屈金祥
张天宇
胡渊翔
邹丁山
段晓华
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.)
Midea Group Co Ltd
GD Midea Air Conditioning Equipment Co Ltd
Original Assignee
Midea Group Co Ltd
Guangdong Midea Refrigeration Equipment 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 Midea Group Co Ltd, Guangdong Midea Refrigeration Equipment Co Ltd filed Critical Midea Group Co Ltd
Priority to CN201610625632.6A priority Critical patent/CN106196491B/en
Publication of CN106196491A publication Critical patent/CN106196491A/en
Priority to PCT/CN2017/086382 priority patent/WO2018019024A1/en
Application granted granted Critical
Publication of CN106196491B publication Critical patent/CN106196491B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • 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
    • F24F11/30Control 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
    • F24F11/70Control systems characterised by their outputs; Constructional details thereof
    • F24F11/80Control systems characterised by their outputs; Constructional details thereof for controlling the temperature of the supplied air
    • F24F11/83Control systems characterised by their outputs; Constructional details thereof for controlling the temperature of the supplied air by controlling the supply of heat-exchange fluids to heat-exchangers
    • 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
    • F24F11/65Electronic processing for selecting an operating mode
    • F24F11/66Sleep mode

Landscapes

  • 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)
  • Air Conditioning Control Device (AREA)

Abstract

The invention discloses a kind of temperature control method based on cold and hot inductance value, described method includes: when air-conditioner is in warm-cold sensitivity sleep pattern, obtains the user's cold and hot inductance value under the current design temperature of described air-conditioner;Determine the warm-cold sensitivity interval range at described cold and hot inductance value place;According to the control strategy regulation design temperature that described cold and hot inductance value place warm-cold sensitivity interval range is corresponding.The invention also discloses a kind of temperature-adjusting device based on cold and hot inductance value.Present invention achieves air-conditioner to be subject to according to user's warm-cold sensitivity under current design temperature, it is automatically adjusted current design temperature, solving air-conditioner causes user to feel supercool overheated problem owing to running under user's design temperature always, improve the thermoregulator motility of air-conditioner, make the running temperature of air-conditioner be more suitable for the requirement of user.

Description

Temperature control method based on cold and hot inductance value and device
Technical field
The present invention relates to air-conditioning equipment field, particularly relate to a kind of temperature control method based on cold and hot inductance value and device.
Background technology
Generally air-conditioner performs refrigeration or heating operation is all adjusted according to user's predetermined temperature, and uses Family predetermined temperature is simply arranged according to the custom that user oneself is conventional, is not the temperature being really suitable for user sometimes Degree.Such as, some user sets ratio relatively low temperature such as 20 DEG C in the environment of hotter, temperature through between back room after a while Can reduce rapidly, user can feel colder, is heightened by the design temperature of air-conditioner the most again, so will cause not relaxing of user Suitable sense.Therefore, if air-conditioner all goes to run according to same design temperature, also can bring supercool or overheated existing to user As, cause the discomfort of user, so can reduce user's experience effect of air-conditioner.
Summary of the invention
Present invention is primarily targeted at a kind of temperature control method based on cold and hot inductance value of offer and device, it is intended to solve Existing air-conditioner runs according to the temperature of user setup, brings supercool or overheated thus causes the uncomfortable technology of user to ask Topic.
For achieving the above object, a kind of based on cold and hot inductance value the temperature control method that the present invention provides, described based on cold The temperature control method of hotness value includes:
When air-conditioner is in warm-cold sensitivity sleep pattern, obtain cold and hot under the current design temperature of described air-conditioner of user Inductance value;
Determine the warm-cold sensitivity interval range at described cold and hot inductance value place;
According to the control strategy regulation design temperature that described cold and hot inductance value place warm-cold sensitivity interval range is corresponding.
Preferably, the described control strategy regulation corresponding according to described cold and hot inductance value place warm-cold sensitivity interval range sets temperature The step of degree includes:
If described cold and hot inductance value is in the first warm-cold sensitivity interval range, then improve on the basis of described current design temperature Described design temperature;
If described thermoinduction value is in the second warm-cold sensitivity interval range, then keep described current design temperature constant;
If described cold and hot inductance value is in the 3rd warm-cold sensitivity interval range, then reduce on the basis of described current design temperature Described design temperature.
Preferably, according to prefixed time interval, according to the control that the warm-cold sensitivity interval range at described cold and hot inductance value place is corresponding Strategy adjustment design temperature processed;
Wherein, when described cold and hot inductance value is in the first warm-cold sensitivity interval range, along with described cold and hot inductance value increase and Increase the time interval regulating described design temperature;
When described cold and hot inductance value is in the 3rd warm-cold sensitivity interval range, reduce tune along with the increase of described cold and hot inductance value Save the time interval of described design temperature.
Preferably, the described control strategy regulation corresponding according to described cold and hot inductance value place warm-cold sensitivity interval range sets temperature After the step of degree, also include:
Determine that the described design temperature after regulation is whether in preset range;
If the described design temperature after Tiao Jie is not in described preset range, then corresponding for described warm-cold sensitivity interval is preset Temperature is as the described design temperature after regulation, to control the operation of described air-conditioner.
Preferably, described determine the step whether in preset range of the described design temperature after regulation after, also include:
If the described design temperature after Tiao Jie is in described preset range, then according to the warm-cold sensitivity at described cold and hot inductance value place Described design temperature after the control strategy regulation that interval range is corresponding controls the operation of described air-conditioner.
Additionally, for achieving the above object, the present invention also provides for a kind of temperature-adjusting device based on cold and hot inductance value, described base Temperature-adjusting device in cold and hot inductance value includes:
Acquisition module, for when air-conditioner is in warm-cold sensitivity sleep pattern, obtains user and currently sets at described air-conditioner Cold and hot inductance value under fixed temperature;
Determine module, for determining the warm-cold sensitivity interval range at described cold and hot inductance value place;
Adjustment module, sets for the control strategy regulation corresponding according to described cold and hot inductance value place warm-cold sensitivity interval range Temperature.
Preferably, described adjustment module includes:
Improve unit, if being in the first warm-cold sensitivity interval range for described cold and hot inductance value, then in described current setting temperature Described design temperature is improved on the basis of degree;
Holding unit, if being in the second warm-cold sensitivity interval range for described thermoinduction value, then keeps described current setting Temperature-resistant;
Reduce unit, if being in the 3rd warm-cold sensitivity interval range for described cold and hot inductance value, then in described current setting temperature Described design temperature is reduced on the basis of degree.
Preferably, described adjustment module is additionally operable to according to prefixed time interval, cold and hot according to described cold and hot inductance value place The control strategy regulation design temperature that sense interval range is corresponding;
Wherein, when described cold and hot inductance value is in the first warm-cold sensitivity interval range, along with described cold and hot inductance value increase and Increase the time interval regulating described design temperature;
When described cold and hot inductance value is in the 3rd warm-cold sensitivity interval range, reduce tune along with the increase of described cold and hot inductance value Save the time interval of described design temperature.
Preferably, described determine that module is additionally operable to the described design temperature after determining regulation whether in preset range;
Described temperature-adjusting device based on cold and hot inductance value also includes processing module, if the described setting temperature after regulation Degree is not in described preset range, then using preset temperature corresponding for described warm-cold sensitivity interval as the described setting temperature after regulation Degree, to control the operation of described air-conditioner.
Preferably, if described processing module be additionally operable to regulation after described design temperature in described preset range, then press Control described according to the described design temperature after the control strategy regulation that the warm-cold sensitivity interval range at described cold and hot inductance value place is corresponding The operation of air-conditioner.
The present invention is by when air-conditioner is in warm-cold sensitivity sleep pattern, and determine under acquired current design temperature is cold The warm-cold sensitivity at hotness value place is interval, and regulates according to the control strategy that described cold and hot inductance value place warm-cold sensitivity interval range is corresponding Design temperature.Achieve air-conditioner to be subject to according to user's warm-cold sensitivity under current design temperature, be automatically adjusted current design temperature, Solving air-conditioner causes user to feel supercool overheated problem owing to running under user's design temperature always, improves air-conditioning The thermoregulator motility of device, makes the running temperature of air-conditioner be more suitable for the requirement of user.
Accompanying drawing explanation
Fig. 1 is the schematic flow sheet of the first embodiment of present invention temperature control method based on cold and hot inductance value;
Fig. 2 is the high-level schematic functional block diagram of the present invention thermostatic first embodiment based on cold and hot inductance value.
The realization of the object of the invention, functional characteristics and advantage will in conjunction with the embodiments, are described further referring to the drawings.
Detailed description of the invention
Should be appreciated that specific embodiment described herein, only in order to explain the present invention, is not intended to limit the present invention.
The present invention provides a kind of temperature control method based on cold and hot inductance value.
With reference to Fig. 1, present invention temperature control method based on cold and hot inductance value first embodiment is proposed.
In the present embodiment, described temperature control method based on cold and hot inductance value includes:
Step S10, when air-conditioner is in warm-cold sensitivity sleep pattern, obtains user at the current design temperature of described air-conditioner Under cold and hot inductance value;
When air-conditioner is in warm-cold sensitivity sleep pattern, obtain user's warm-cold sensitivity under the current design temperature of air-conditioner Value.Wherein, cold and hot inductance value is the evaluation index of user's hot comfort.Design temperature is the air-conditioner that in air-conditioner, user sets Running temperature.
It should be noted that the warm-cold sensitivity pattern of air-conditioner exists two kinds, one is warm-cold sensitivity sleep pattern, and one is cold Hotness awake mode.After air-conditioner enters warm-cold sensitivity pattern, detect air-conditioner institute by detection device built-in in air-conditioner At the brightness value of environment, decide whether that entering warm-cold sensitivity sleep pattern is also to continue with dimension according to the brightness value of air-conditioner place environment Hold in warm-cold sensitivity awake mode.It is understood that warm-cold sensitivity sleep pattern to be generally user in evening used cold and hot in bed Sense pattern, the warm-cold sensitivity pattern that when warm-cold sensitivity awake mode is generally daytime, air-conditioner is run.Detection device can be to detect Photoconductive resistance to light, it is possible to other device of this function can be realized for other.
According to the brightness value of its place environment, air-conditioner decides whether that the mode entering warm-cold sensitivity sleep pattern has two kinds, tool Body is: 1. when air-conditioner detect the brightness value of its place environment in the first preset time period less than predetermined threshold value time, from cold Hotness awake mode switches to warm-cold sensitivity sleep pattern;When the brightness value of environment is more than predetermined threshold value in the second preset time period Time, switch to warm-cold sensitivity awake mode from warm-cold sensitivity sleep pattern.2. air-conditioner is set and is in warm-cold sensitivity awake mode and cold and hot The time of sense sleep pattern.As arranged when air-conditioner is in that morning, 6:30 is 22:00 this time period in the evening to, air-conditioner is in Warm-cold sensitivity awake mode;When air-conditioner is in that evening, 22:00 is 6:30 this time period in the morning to, air-conditioner is in warm-cold sensitivity and sleeps Sleep mode.Further, in air-conditioner is in the time period of warm-cold sensitivity sleep pattern, air-conditioner judges the bright of its place environment Whether angle value is less than predetermined threshold value in the first preset time period, and if so, air-conditioner switches to cold and hot from warm-cold sensitivity awake mode Sense sleep pattern;If it is not, air-conditioner continues to keep warm-cold sensitivity awake mode;Air-conditioner judges that the brightness value of its place environment is Whether more than predetermined threshold value in two preset time period, if so, air-conditioner switches to warm-cold sensitivity from warm-cold sensitivity sleep pattern and regains consciousness mould Formula;If it is not, air-conditioner continues to keep warm-cold sensitivity sleep pattern.It should be noted that user can be according to the different settings in season It is in warm-cold sensitivity awake mode and the time period of warm-cold sensitivity sleep pattern.First preset time period, the second preset time period and pre- If threshold value can be arranged according to user's concrete condition.
Air-conditioner obtains user's process in the cold and hot inductance value of the current design temperature of air-conditioner under warm-cold sensitivity sleep pattern For: 1. in acquisition room, the thermal resistance information of bedding system (sets thermal resistance reference value, in Various Seasonal correspondence difference, such as, summer For Rt, it is RT etc. in winter, or different thermal resistance reference values is set according to different operating modes of air conditioner) and bed surface temperature Degree (by infrared detection bed surface temperature).The thermal resistance information of bedding system is that quilt etc. covers the bedding with user, Bed surface temperature is by the temperature of sub-surface.
2. after the thermal resistance information getting bedding system in room and bed surface temperature, according to thermal resistance information and bed surface temperature Degree calculates cold and hot inductance value.Thermal resistance with bed surface temperature all to there being the design factor corresponding with warm-cold sensitivity, bed in getting room The thermal resistance information of cotton-padded mattress system and bed surface temperature, calculate cold and hot inductance value according to corresponding design factor.Concrete calculating process is: Obtain the design factor of the thermal resistance information cold and hot inductance value corresponding with bed surface temperature;According to thermal resistance information and bed surface temperature and correspondence Design factor calculates cold and hot inductance value.First calculate first result according to the design factor of thermal resistance information and correspondence, further according to The design factor of bed surface temperature and correspondence calculates second result, and the first result and the second result are combined the ratio preset Coefficient calculations obtains cold and hot inductance value.It should be noted that design factor and the proportionality coefficient preset are by a series of experiment Draw.
Further, air-conditioner obtains user's warm-cold sensitivity at the current design temperature of air-conditioner under warm-cold sensitivity sleep pattern During value, also can obtain quilt and cover rate of change, to obtain the most cold and hot inductance value.It is quilt that quilt covers rate of change Rate of change in the different detection cycles, can be detected by infrared scan heating source area and obtain.
Further, in order to ensure the accuracy of the cold and hot inductance value calculated, preset more than first in the cold and hot inductance value calculated During value, cold and hot inductance value takes the first preset value;When the value of the warm-cold sensitivity state calculated is less than the second preset value, cold and hot inductance value takes the Two preset values, the first preset value is more than the second preset value.First preset value can be 3 or 4 etc., and the second preset value can be-3 Or-4 etc..
Air-conditioner enters the mode of warm-cold sensitivity pattern and includes: 1. user is sent by the mobile terminal being connected with air-conditioner and opens The startup opening warm-cold sensitivity function is asked to air-conditioner, when air-conditioner receives the startup request that mobile terminal sends, open cold Hotness function, enters warm-cold sensitivity pattern;2. the button starting warm-cold sensitivity function that user is arranged in remote controller by pressing, sends out The startup sending open cold hotness function is asked to air-conditioner, when air-conditioner receives startup that the remote controller matched with it sends please When asking, open cold hotness function, enter warm-cold sensitivity pattern.Wherein, mobile terminal includes but not limited to smart mobile phone and flat board electricity Brain.
Step S20, determines the warm-cold sensitivity interval range at described cold and hot inductance value place;
After air-conditioner gets the cold and hot inductance value of user, determine the warm-cold sensitivity interval model at acquired cold and hot inductance value place Enclose.It should be noted that storage has the mapping relations table of cold and hot inductance value and warm-cold sensitivity interval in air-conditioner.At this mapping relations table In, warm-cold sensitivity interval can a corresponding cold and hot inductance value, it is possible to the value range of a corresponding warm-cold sensitivity.In the present embodiment, The corresponding warm-cold sensitivity value range in one warm-cold sensitivity interval, and the interval number of warm-cold sensitivity do not limits, can be according to concrete feelings Condition arranges corresponding number.
In the present embodiment, in order to be best understood from whole scheme, it is described in detail as a example by 8 warm-cold sensitivity intervals.Wherein, cold and hot Mapping relations table between sensillary area and between warm-cold sensitivity value range can refer to table 1, and table 1 is
Warm-cold sensitivity is interval Cold and hot inductance value Thermal comfort
Interval 1 4<M≤6 Heat
Interval 2 2<M≤4 Somewhat hot
Interval 3 1<M≤2 Warm
Interval 4 0≤M≤1 Comfortable (somewhat warm)
Interval 5 -1≤M<0 Comfortable (somewhat cool)
Interval 6 -2<M≤-1 Cool
Interval 7 -4<M≤-2 Somewhat cold
Interval 8 -6≤M<-4 Cold
As shown in Table 1,8 warm-cold sensitivities are interval to be arranged in order according to numeral order from small to large, correspondingly, and cold and hot inductance value Variation tendency be from big to small, and the interval hot comfort of 8 warm-cold sensitivities be first from heat to comfortable, then the change from comfortable to cold Change process.
It is understood that interval and its correspondence the cold and hot inductance value scope of the warm-cold sensitivity in the present embodiment is only example Property, those skilled in the art can be arranged to other value according to specific needs, does not limits at this.
Step S30, according to the control strategy regulation design temperature that described cold and hot inductance value place warm-cold sensitivity interval range is corresponding.
After air-conditioner determines the warm-cold sensitivity interval at cold and hot inductance value place, according to the warm-cold sensitivity interval model at cold and hot inductance value place Enclose the control strategy regulation design temperature of correspondence.It should be noted that each warm-cold sensitivity interval range correspond to different controls System strategy.In the present embodiment, being three warm-cold sensitivity interval ranges by warm-cold sensitivity interval division, the respectively first warm-cold sensitivity is interval Scope, the second warm-cold sensitivity interval range and the 3rd warm-cold sensitivity interval range.It is understood that the number of warm-cold sensitivity interval range Do not limit, also can be set to other value according to specific needs, such as four or five etc..
Further, described step S30 includes:
Step a, if described cold and hot inductance value is in the first warm-cold sensitivity interval range, then on the basis of described current design temperature The described design temperature of upper raising;
When air-conditioner determines that cold and hot inductance value is in the first warm-cold sensitivity interval range, air-conditioner is at the base of current design temperature This design temperature is improved on plinth.Specifically, as a example by above-mentioned 8 warm-cold sensitivity intervals, preferably by interval 6, interval 7 and interval 8 strokes Divide in the first warm-cold sensitivity interval range.Owing to the cold and hot inductance value in each warm-cold sensitivity interval is different, therefore, interval 6, interval The amplitude improving design temperature in 7 and interval 8 can not be different, it is possible to identical.Specifically, as shown in table 2, table 2 is:
Warm-cold sensitivity is interval Design temperature
Interval 8 TS=TS+1.5, TS≤28 (refrigeration);TS≤27 (heat)
Interval 7 TS=TS+1.5, TS≤28 (refrigeration);TS≤27 (heat)
Interval 6 TS=TS+0.5, TS≤28 (refrigeration);TS≤27 (heat)
Wherein, TS represents current design temperature.As when cold and hot inductance value is interval 8, and when TS=25 DEG C, TS is increased 1.5 DEG C, i.e. design temperature after regulation is TS=26.5 DEG C;As shown in Table 2, in interval 6, interval 7 and interval 8, temperature is set The regulation strategy of degree is substantially coincident, is all to calculate to improve design temperature on the basis of current design temperature, simply improves Amplitude different.
Further, described temperature control method based on cold and hot inductance value includes:
Step d, determines that the described design temperature after regulation is whether in preset range;
Step e, if the described design temperature after Tiao Jie is not in described preset range, then described warm-cold sensitivity interval is corresponding Preset temperature as regulation after described design temperature, to control the operation of described air-conditioner.
Step f, if the described design temperature after Tiao Jie is in described preset range, then according to described cold and hot inductance value place Described design temperature after the control strategy regulation that warm-cold sensitivity interval range is corresponding controls the operation of described air-conditioner.
After according to regulation strategy adjustment design temperature, air-conditioner determines that whether the design temperature after regulation is in preset range In.If the design temperature after Tiao Jie is not in preset range, then corresponding using the warm-cold sensitivity interval preset temperature of air-conditioner is as tune Design temperature after joint runs;If the design temperature after Tiao Jie is in preset range, air-conditioner is then according to cold and hot inductance value place Design temperature after the control strategy regulation that warm-cold sensitivity interval range is corresponding runs.
When cold and hot inductance value is in the first warm-cold sensitivity interval range, as shown in table 2, under air-conditioner is in refrigeration mode, The maximum of design temperature is 28 DEG C;If the design temperature after Tiao Jie is more than 28 DEG C, air-conditioner is then with the maximum of design temperature 28 DEG C are run as the design temperature after regulation.If the design temperature after Tiao Jie is less than or equal to 28 DEG C, as above 26.5 DEG C, air-conditioner then using regulation after design temperature 26.5 DEG C as regulation after design temperature operation.When air-conditioner is in During heating mode, the design temperature after control and regulation is the most basically identical at method and the air-conditioner of preset range, Do not repeat them here.
Step b, if described thermoinduction value is in the second warm-cold sensitivity interval range, then keeps described current design temperature not Become;
When air-conditioner determines that cold and hot inductance value is in the second warm-cold sensitivity interval range, air-conditioner keeps current design temperature not Become.Specifically, as a example by above-mentioned 8 warm-cold sensitivity intervals, preferably interval 4 and interval 5 are divided in the second warm-cold sensitivity interval range In.As being in interval 4 when cold and hot inductance value, and when TS=23 DEG C, keep TS=23 DEG C constant.
Further, when cold and hot inductance value is in the second warm-cold sensitivity interval range, i.e. keeping current design temperature constant During, air-conditioner makes this design temperature in preset range.As when air-conditioner is in refrigeration mode, control described setting Temperature keeps constant in the range of 24 DEG C to 28 DEG C.If current design temperature is 23 DEG C, then current design temperature is adjusted to 24 DEG C, and make design temperature be maintained at 24 DEG C constant;If current design temperature is 26 DEG C, then keep design temperature be 26 DEG C constant. When air-conditioner is in heating mode, design temperature can keep constant scope be set to 22 DEG C to 29 DEG C, concrete control sets Fixed temperature keeps constant mode basically identical, at this no longer with when air-conditioner is in refrigeration mode 22 DEG C to 29 DEG C of scopes Repeat.
Step c, if described cold and hot inductance value is in the 3rd warm-cold sensitivity interval range, then on the basis of described current design temperature The described design temperature of upper reduction.
When air-conditioner determines that cold and hot inductance value is in the 3rd warm-cold sensitivity interval range, air-conditioner is at the base of current design temperature This design temperature is reduced on plinth.Specifically, as a example by above-mentioned 8 warm-cold sensitivity intervals, preferably by interval 1, interval 2 and interval 3 strokes Divide in the 3rd warm-cold sensitivity interval range.Owing to the cold and hot inductance value in each warm-cold sensitivity interval is different, therefore, interval 1, interval The amplitude improving design temperature in 2 and interval 3 can not be different, it is possible to identical.Specifically, as shown in table 3, table 3 is:
Warm-cold sensitivity is interval Design temperature
Interval 3 TS=TS-1.5, TS >=24 (refrigeration);TS >=19 (heat)
Interval 2 TS=TS-1, TS >=24 (refrigeration);TS >=19 (heat)
Interval 1 TS=TS-0.5, TS >=24 (refrigeration);TS >=19 (heat)
Wherein, TS represents current design temperature.When cold and hot inductance value is interval 1, and when TS=27 DEG C, TS is reduced 1.5 DEG C, i.e. design temperature after regulation is TS=25.5 DEG C.As shown in Table 3, in interval 1, interval 2 and interval 3, design temperature Regulation strategy is substantially coincident, is all reduction design temperature on the basis of current design temperature, simply reduces design temperature Amplitude inconsistent.
When cold and hot inductance value is in the 3rd warm-cold sensitivity interval range, as shown in table 3, under air-conditioner is in refrigeration mode, The minima of design temperature is 24 DEG C.If the design temperature after Tiao Jie is less than 24 DEG C, air-conditioner is then with the minima of design temperature 24 DEG C are run as the design temperature after regulation.If the design temperature after Tiao Jie is more than or equal to 24 DEG C, as above 25.5 DEG C, air-conditioner then using regulation after design temperature 25.5 DEG C as regulation after design temperature operation.When air-conditioner is in During heating mode, the design temperature after control and regulation is the most basically identical at method and the air-conditioner of preset range, Do not repeat them here.Further, when cold and hot inductance value is in the 3rd warm-cold sensitivity interval range, it is also possible to setting after regulation is set The maximum of fixed temperature, makes air-conditioner can only reduce on the basis of current design temperature and set in the range of certain sets Temperature.
It is understood that the amplitude of accommodation between different cold and hot inductance value locations in the present embodiment, i.e. design temperature Increase rate and reduction amplitude, the maximum of design temperature and minima be all merely exemplary, do not limit, can basis Real needs are set to other value.
The present embodiment, by when air-conditioner is in warm-cold sensitivity sleep pattern, determines under acquired current design temperature The warm-cold sensitivity at cold and hot inductance value place is interval, and adjusts according to the control strategy that described cold and hot inductance value place warm-cold sensitivity interval range is corresponding Joint design temperature.Achieve air-conditioner to be subject to according to user's warm-cold sensitivity under current design temperature, be automatically adjusted and currently set temperature Degree, solves air-conditioner and causes user to feel supercool overheated problem owing to running under user's design temperature always, improve The thermoregulator motility of air-conditioner, makes the running temperature of air-conditioner be more suitable for the requirement of user.
Further, the of present invention temperature control method based on cold and hot inductance value is proposed on the basis of first embodiment Two embodiments.
In the present embodiment, described temperature control method based on cold and hot inductance value includes:
Step g, according to prefixed time interval, according to the control that the warm-cold sensitivity interval range at described cold and hot inductance value place is corresponding Strategy adjustment design temperature;
Wherein, when described cold and hot inductance value is in the first warm-cold sensitivity interval range, along with described cold and hot inductance value increase and Increase the time interval regulating described design temperature;
When described cold and hot inductance value is in the 3rd warm-cold sensitivity interval range, reduce tune along with the increase of described cold and hot inductance value Save the time interval of described design temperature.
Air-conditioner is according to prefixed time interval, according to the control strategy that the warm-cold sensitivity interval range at cold and hot inductance value place is corresponding Regulation design temperature.
When cold and hot inductance value is in the first warm-cold sensitivity interval range, air-conditioner increases regulation along with the increase of cold and hot inductance value The time interval of design temperature.As when cold and hot inductance value is in interval 8, air-conditioner reacquired cold and hot inductance value, root every 5 minutes The control strategy corresponding according to the warm-cold sensitivity interval range at acquired cold and hot inductance value place regulates design temperature again;Work as warm-cold sensitivity When value is in interval 7, air-conditioner reacquired cold and hot inductance value every 8 minutes, cold and hot according to acquired cold and hot inductance value place The control strategy that sense interval range is corresponding regulates design temperature again;When cold and hot inductance value is in interval 6, air-conditioner is every 12 points Clock reacquires cold and hot inductance value, according to control strategy corresponding to the warm-cold sensitivity interval range at acquired cold and hot inductance value place again Regulation design temperature.
When cold and hot inductance value is in the 3rd warm-cold sensitivity interval range, air-conditioner reduces regulation along with the increase of cold and hot inductance value The time interval of design temperature.As when cold and hot inductance value is in interval 3, air-conditioner reacquired cold and hot inductance value every 12 minutes, The control strategy that warm-cold sensitivity interval range according to acquired cold and hot inductance value place is corresponding regulates design temperature again;When cold and hot When inductance value is in interval 2, air-conditioner reacquired cold and hot inductance value every 8 minutes, cold according to acquired cold and hot inductance value place The control strategy that hotness interval range is corresponding regulates design temperature again;When cold and hot inductance value is in interval 1, air-conditioner is every 5 Minute reacquire cold and hot inductance value, according to control strategy corresponding to the warm-cold sensitivity interval range at acquired cold and hot inductance value place again Secondary regulation design temperature.
When cold and hot inductance value is in the second warm-cold sensitivity interval range, when the most cold and hot inductance value is in interval 4 and interval 5, air-conditioner Cold and hot inductance value can be reacquired, according to the warm-cold sensitivity interval range pair at acquired cold and hot inductance value place after prefixed time interval The control strategy answered regulates design temperature again.
It should be noted that air-conditioner is in different warm-cold sensitivity interval reacquires the prefixed time interval of cold and hot inductance value, I.e. air-conditioner is not restricted to shown in the present embodiment at the prefixed time interval of different warm-cold sensitivity intervals control design temperatures, can root It is set to other value according to real needs.
The present embodiment is by according to prefixed time interval, according to the control that the warm-cold sensitivity interval range at cold and hot inductance value place is corresponding Strategy adjustment design temperature processed, makes user when feeling comfortable, and being spaced the long time goes to reacquire cold and hot inductance value again, And when user feels cold or be hot, go to reacquire cold and hot inductance value after the short period of interval, and according to acquired cold and hot inductance value The control strategy that the warm-cold sensitivity interval range at place is corresponding regulates design temperature again, and the design temperature making air-conditioner current more accords with Share the sense of reality at family, improve the intelligent of air-conditioner.
The present invention further provides a kind of temperature-adjusting device based on cold and hot inductance value.
With reference to Fig. 2, the present invention thermostatic first embodiment based on cold and hot inductance value is proposed.
In the present embodiment, described temperature-adjusting device based on cold and hot inductance value includes:
Acquisition module 10, for when air-conditioner is in warm-cold sensitivity sleep pattern, obtains user current at described air-conditioner Cold and hot inductance value under design temperature;
When air-conditioner is in warm-cold sensitivity sleep pattern, obtain user's warm-cold sensitivity under the current design temperature of air-conditioner Value.Wherein, cold and hot inductance value is the evaluation index of user's hot comfort.Design temperature is the air-conditioner that in air-conditioner, user sets Running temperature.
It should be noted that the warm-cold sensitivity pattern of air-conditioner exists two kinds, one is warm-cold sensitivity sleep pattern, and one is cold Hotness awake mode.After air-conditioner enters warm-cold sensitivity pattern, detect air-conditioner institute by detection device built-in in air-conditioner At the brightness value of environment, decide whether that entering warm-cold sensitivity sleep pattern is also to continue with dimension according to the brightness value of air-conditioner place environment Hold in warm-cold sensitivity awake mode.It is understood that warm-cold sensitivity sleep pattern to be generally user in evening used cold and hot in bed Sense pattern, the warm-cold sensitivity pattern that when warm-cold sensitivity awake mode is generally daytime, air-conditioner is run.Detection device can be to detect Photoconductive resistance to light, it is possible to other device of this function can be realized for other.
According to the brightness value of its place environment, air-conditioner decides whether that the mode entering warm-cold sensitivity sleep pattern has two kinds, tool Body is: 1. when air-conditioner detect the brightness value of its place environment in the first preset time period less than predetermined threshold value time, from cold Hotness awake mode switches to warm-cold sensitivity sleep pattern;When the brightness value of environment is more than predetermined threshold value in the second preset time period Time, switch to warm-cold sensitivity awake mode from warm-cold sensitivity sleep pattern.2. air-conditioner is set and is in warm-cold sensitivity awake mode and cold and hot The time of sense sleep pattern.As arranged when air-conditioner is in that morning, 6:30 is 22:00 this time period in the evening to, air-conditioner is in Warm-cold sensitivity awake mode;When air-conditioner is in that evening, 22:00 is 6:30 this time period in the morning to, air-conditioner is in warm-cold sensitivity and sleeps Sleep mode.Further, in air-conditioner is in the time period of warm-cold sensitivity sleep pattern, air-conditioner judges the bright of its place environment Whether angle value is less than predetermined threshold value in the first preset time period, and if so, air-conditioner switches to cold and hot from warm-cold sensitivity awake mode Sense sleep pattern;If it is not, air-conditioner continues to keep warm-cold sensitivity awake mode;Air-conditioner judges that the brightness value of its place environment is Whether more than predetermined threshold value in two preset time period, if so, air-conditioner switches to warm-cold sensitivity from warm-cold sensitivity sleep pattern and regains consciousness mould Formula;If it is not, air-conditioner continues to keep warm-cold sensitivity sleep pattern.It should be noted that user can be according to the different settings in season It is in warm-cold sensitivity awake mode and the time period of warm-cold sensitivity sleep pattern.First preset time period, the second preset time period and pre- If threshold value can be arranged according to user's concrete condition.
Air-conditioner obtains user's process in the cold and hot inductance value of the current design temperature of air-conditioner under warm-cold sensitivity sleep pattern For: 1. in acquisition room, the thermal resistance information of bedding system (sets thermal resistance reference value, in Various Seasonal correspondence difference, such as, summer For Rt, it is RT etc. in winter, or different thermal resistance reference values is set according to different operating modes of air conditioner) and bed surface temperature Degree (by infrared detection bed surface temperature).The thermal resistance information of bedding system is that quilt etc. covers the bedding with user, Bed surface temperature is by the temperature of sub-surface.
2. after the thermal resistance information getting bedding system in room and bed surface temperature, according to thermal resistance information and bed surface temperature Degree calculates cold and hot inductance value.Thermal resistance with bed surface temperature all to there being the design factor corresponding with warm-cold sensitivity, bed in getting room The thermal resistance information of cotton-padded mattress system and bed surface temperature, calculate cold and hot inductance value according to corresponding design factor.Concrete calculating process is: Obtain the design factor of the thermal resistance information cold and hot inductance value corresponding with bed surface temperature;According to thermal resistance information and bed surface temperature and correspondence Design factor calculates cold and hot inductance value.First calculate first result according to the design factor of thermal resistance information and correspondence, further according to The design factor of bed surface temperature and correspondence calculates second result, and the first result and the second result are combined the ratio preset Coefficient calculations obtains cold and hot inductance value.It should be noted that design factor and the proportionality coefficient preset are by a series of experiment Draw.
Further, air-conditioner obtains user's warm-cold sensitivity at the current design temperature of air-conditioner under warm-cold sensitivity sleep pattern During value, also can obtain quilt and cover rate of change, to obtain the most cold and hot inductance value.It is quilt that quilt covers rate of change Rate of change in the different detection cycles, can be detected by infrared scan heating source area and obtain.
Further, in order to ensure the accuracy of the cold and hot inductance value calculated, preset more than first in the cold and hot inductance value calculated During value, cold and hot inductance value takes the first preset value;When the value of the warm-cold sensitivity state calculated is less than the second preset value, cold and hot inductance value takes the Two preset values, the first preset value is more than the second preset value.First preset value can be 3 or 4 etc., and the second preset value can be-3 Or-4 etc..
Air-conditioner enters the mode of warm-cold sensitivity pattern and includes: 1. user is sent by the mobile terminal being connected with air-conditioner and opens The startup opening warm-cold sensitivity function is asked to air-conditioner, when air-conditioner receives the startup request that mobile terminal sends, open cold Hotness function, enters warm-cold sensitivity pattern;2. the button starting warm-cold sensitivity function that user is arranged in remote controller by pressing, sends out The startup sending open cold hotness function is asked to air-conditioner, when air-conditioner receives startup that the remote controller matched with it sends please When asking, open cold hotness function, enter warm-cold sensitivity pattern.Wherein, mobile terminal includes but not limited to smart mobile phone and flat board electricity Brain.
Determine module 20, for determining the warm-cold sensitivity interval range at described cold and hot inductance value place;
After air-conditioner gets the cold and hot inductance value of user, determine the warm-cold sensitivity interval model at acquired cold and hot inductance value place Enclose.It should be noted that storage has the mapping relations table of cold and hot inductance value and warm-cold sensitivity interval in air-conditioner.At this mapping relations table In, warm-cold sensitivity interval can a corresponding cold and hot inductance value, it is possible to the value range of a corresponding warm-cold sensitivity.In the present embodiment, The corresponding warm-cold sensitivity value range in one warm-cold sensitivity interval, and the interval number of warm-cold sensitivity do not limits, can be according to concrete feelings Condition arranges corresponding number.
In the present embodiment, in order to be best understood from whole scheme, it is described in detail as a example by 8 warm-cold sensitivity intervals.Wherein, cold and hot Mapping relations table between sensillary area and between warm-cold sensitivity value range can refer to table 1, and table 1 is
Warm-cold sensitivity is interval Cold and hot inductance value Thermal comfort
Interval 1 4<M≤6 Heat
Interval 2 2<M≤4 Somewhat hot
Interval 3 1<M≤2 Warm
Interval 4 0≤M≤1 Comfortable (somewhat warm)
Interval 5 -1≤M<0 Comfortable (somewhat cool)
Interval 6 -2<M≤-1 Cool
Interval 7 -4<M≤-2 Somewhat cold
Interval 8 -6≤M<-4 Cold
As shown in Table 1,8 warm-cold sensitivities are interval to be arranged in order according to numeral order from small to large, correspondingly, and cold and hot inductance value Variation tendency be from big to small, and the interval hot comfort of 8 warm-cold sensitivities be first from heat to comfortable, then the change from comfortable to cold Change process.
It is understood that interval and its correspondence the cold and hot inductance value scope of the warm-cold sensitivity in the present embodiment is only example Property, those skilled in the art can be arranged to other value according to specific needs, does not limits at this.
Adjustment module 30, sets for the control strategy regulation corresponding according to described cold and hot inductance value place warm-cold sensitivity interval range Fixed temperature.
After air-conditioner determines the warm-cold sensitivity interval at cold and hot inductance value place, according to the warm-cold sensitivity interval model at cold and hot inductance value place Enclose the control strategy regulation design temperature of correspondence.It should be noted that each warm-cold sensitivity interval range correspond to different controls System strategy.In the present embodiment, being three warm-cold sensitivity interval ranges by warm-cold sensitivity interval division, the respectively first warm-cold sensitivity is interval Scope, the second warm-cold sensitivity interval range and the 3rd warm-cold sensitivity interval range.It is understood that the number of warm-cold sensitivity interval range Do not limit, also can be set to other value according to specific needs, such as four or five etc..
Further, described adjustment module 30 includes:
Improve unit, if being in the first warm-cold sensitivity interval range for described cold and hot inductance value, then in described current setting temperature Described design temperature is improved on the basis of degree;
When air-conditioner determines that cold and hot inductance value is in the first warm-cold sensitivity interval range, air-conditioner is at the base of current design temperature This design temperature is improved on plinth.Specifically, as a example by above-mentioned 8 warm-cold sensitivity intervals, preferably by interval 6, interval 7 and interval 8 strokes Divide in the first warm-cold sensitivity interval range.Owing to the cold and hot inductance value in each warm-cold sensitivity interval is different, therefore, interval 6, interval The amplitude improving design temperature in 7 and interval 8 can not be different, it is possible to identical.Specifically, as shown in table 2, table 2 is:
Warm-cold sensitivity is interval Design temperature
Interval 8 TS=TS+1.5, TS≤28 (refrigeration);TS≤27 (heat)
Interval 7 TS=TS+1.5, TS≤28 (refrigeration);TS≤27 (heat)
Interval 6 TS=TS+0.5, TS≤28 (refrigeration);TS≤27 (heat)
Wherein, TS represents current design temperature.As when cold and hot inductance value is interval 8, and when TS=25 DEG C, TS is increased 1.5 DEG C, i.e. design temperature after regulation is TS=26.5 DEG C;As shown in Table 2, in interval 6, interval 7 and interval 8, temperature is set The regulation strategy of degree is substantially coincident, is all to calculate to improve design temperature on the basis of current design temperature, simply improves Amplitude different.
Described determine that module 20 is additionally operable to the described design temperature after determining regulation whether in preset range;
Described temperature-adjusting device based on cold and hot inductance value also includes processing module 40, if the described setting after regulation Temperature is not in described preset range, then using preset temperature corresponding for described warm-cold sensitivity interval as the described setting temperature after regulation Degree, to control the operation of described air-conditioner.
If described processing module 40 be additionally operable to regulation after described design temperature in described preset range, then according to described Described design temperature after the control strategy regulation that the warm-cold sensitivity interval range at cold and hot inductance value place is corresponding controls described air-conditioner Operation.
After according to regulation strategy adjustment design temperature, air-conditioner determines that whether the design temperature after regulation is in preset range In.If the design temperature after Tiao Jie is not in preset range, then corresponding using the warm-cold sensitivity interval preset temperature of air-conditioner is as tune Design temperature after joint runs;If the design temperature after Tiao Jie is in preset range, air-conditioner is then according to cold and hot inductance value place Design temperature after the control strategy regulation that warm-cold sensitivity interval range is corresponding runs.
When cold and hot inductance value is in the first warm-cold sensitivity interval range, as shown in table 2, under air-conditioner is in refrigeration mode, The maximum of design temperature is 28 DEG C;If the design temperature after Tiao Jie is more than 28 DEG C, air-conditioner is then with the maximum of design temperature 28 DEG C are run as the design temperature after regulation.If the design temperature after Tiao Jie is less than or equal to 28 DEG C, as above 26.5 DEG C, air-conditioner then using regulation after design temperature 26.5 DEG C as regulation after design temperature operation.When air-conditioner is in During heating mode, the design temperature after control and regulation is the most basically identical at method and the air-conditioner of preset range, Do not repeat them here.
Holding unit, if being in the second warm-cold sensitivity interval range for described thermoinduction value, then keeps described current setting Temperature-resistant;
When air-conditioner determines that cold and hot inductance value is in the second warm-cold sensitivity interval range, air-conditioner keeps current design temperature not Become.Specifically, as a example by above-mentioned 8 warm-cold sensitivity intervals, preferably interval 4 and interval 5 are divided in the second warm-cold sensitivity interval range In.As being in interval 4 when cold and hot inductance value, and when TS=23 DEG C, keep TS=23 DEG C constant.
Further, when cold and hot inductance value is in the second warm-cold sensitivity interval range, i.e. keeping current design temperature constant During, air-conditioner makes this design temperature in preset range.As when air-conditioner is in refrigeration mode, control described setting Temperature keeps constant in the range of 24 DEG C to 28 DEG C.If current design temperature is 23 DEG C, then current design temperature is adjusted to 24 DEG C, and make design temperature be maintained at 24 DEG C constant;If current design temperature is 26 DEG C, then keep design temperature be 26 DEG C constant. When air-conditioner is in heating mode, design temperature can keep constant scope be set to 22 DEG C to 29 DEG C, concrete control sets Fixed temperature keeps constant mode basically identical, at this no longer with when air-conditioner is in refrigeration mode 22 DEG C to 29 DEG C of scopes Repeat.
Reduce unit, if being in the 3rd warm-cold sensitivity interval range for described cold and hot inductance value, then in described current setting temperature Described design temperature is reduced on the basis of degree.
When air-conditioner determines that cold and hot inductance value is in the 3rd warm-cold sensitivity interval range, air-conditioner is at the base of current design temperature This design temperature is reduced on plinth.Specifically, as a example by above-mentioned 8 warm-cold sensitivity intervals, preferably by interval 1, interval 2 and interval 3 strokes Divide in the 3rd warm-cold sensitivity interval range.Owing to the cold and hot inductance value in each warm-cold sensitivity interval is different, therefore, interval 1, interval The amplitude improving design temperature in 2 and interval 3 can not be different, it is possible to identical.Specifically, as shown in table 3, table 3 is:
Warm-cold sensitivity is interval Design temperature
Interval 3 TS=TS-1.5, TS >=24 (refrigeration);TS >=19 (heat)
Interval 2 TS=TS-1, TS >=24 (refrigeration);TS >=19 (heat)
Interval 1 TS=TS-0.5, TS >=24 (refrigeration);TS >=19 (heat)
Wherein, TS represents current design temperature.When cold and hot inductance value is interval 1, and when TS=27 DEG C, TS is reduced 1.5 DEG C, i.e. design temperature after regulation is TS=25.5 DEG C.As shown in Table 3, in interval 1, interval 2 and interval 3, design temperature Regulation strategy is substantially coincident, is all reduction design temperature on the basis of current design temperature, simply reduces design temperature Amplitude inconsistent.
When cold and hot inductance value is in the 3rd warm-cold sensitivity interval range, as shown in table 3, under air-conditioner is in refrigeration mode, The minima of design temperature is 24 DEG C.If the design temperature after Tiao Jie is less than 24 DEG C, air-conditioner is then with the minima of design temperature 24 DEG C are run as the design temperature after regulation.If the design temperature after Tiao Jie is more than or equal to 24 DEG C, as above 25.5 DEG C, air-conditioner then using regulation after design temperature 25.5 DEG C as regulation after design temperature operation.When air-conditioner is in During heating mode, the design temperature after control and regulation is the most basically identical at method and the air-conditioner of preset range, Do not repeat them here.Further, when cold and hot inductance value is in the 3rd warm-cold sensitivity interval range, it is also possible to setting after regulation is set The maximum of fixed temperature, makes air-conditioner can only reduce on the basis of current design temperature and set in the range of certain sets Temperature.
It is understood that the amplitude of accommodation between different cold and hot inductance value locations in the present embodiment, i.e. design temperature Increase rate and reduction amplitude, the maximum of design temperature and minima be all merely exemplary, do not limit, can basis Real needs are set to other value.
The present embodiment, by when air-conditioner is in warm-cold sensitivity sleep pattern, determines under acquired current design temperature The warm-cold sensitivity at cold and hot inductance value place is interval, and adjusts according to the control strategy that described cold and hot inductance value place warm-cold sensitivity interval range is corresponding Joint design temperature.Achieve air-conditioner to be subject to according to user's warm-cold sensitivity under current design temperature, be automatically adjusted and currently set temperature Degree, solves air-conditioner and causes user to feel supercool overheated problem owing to running under user's design temperature always, improve The thermoregulator motility of air-conditioner, makes the running temperature of air-conditioner be more suitable for the requirement of user.
Further, the present invention based on cold and hot inductance value thermostatic the is proposed on the basis of first embodiment Three embodiments.
In the present embodiment, described adjustment module 30 is additionally operable to according to prefixed time interval, according to described cold and hot inductance value institute Warm-cold sensitivity interval range corresponding control strategy regulation design temperature;
Wherein, when described cold and hot inductance value is in the first warm-cold sensitivity interval range, along with described cold and hot inductance value increase and Increase the time interval regulating described design temperature;
When described cold and hot inductance value is in the 3rd warm-cold sensitivity interval range, reduce tune along with the increase of described cold and hot inductance value Save the time interval of described design temperature.
Air-conditioner is according to prefixed time interval, according to the control strategy that the warm-cold sensitivity interval range at cold and hot inductance value place is corresponding Regulation design temperature.
When cold and hot inductance value is in the first warm-cold sensitivity interval range, air-conditioner increases regulation along with the increase of cold and hot inductance value The time interval of design temperature.As when cold and hot inductance value is in interval 8, air-conditioner reacquired cold and hot inductance value, root every 5 minutes The control strategy corresponding according to the warm-cold sensitivity interval range at acquired cold and hot inductance value place regulates design temperature again;Work as warm-cold sensitivity When value is in interval 7, air-conditioner reacquired cold and hot inductance value every 8 minutes, cold and hot according to acquired cold and hot inductance value place The control strategy that sense interval range is corresponding regulates design temperature again;When cold and hot inductance value is in interval 6, air-conditioner is every 12 points Clock reacquires cold and hot inductance value, according to control strategy corresponding to the warm-cold sensitivity interval range at acquired cold and hot inductance value place again Regulation design temperature.
When cold and hot inductance value is in the 3rd warm-cold sensitivity interval range, air-conditioner reduces regulation along with the increase of cold and hot inductance value The time interval of design temperature.As when cold and hot inductance value is in interval 3, air-conditioner reacquired cold and hot inductance value every 12 minutes, The control strategy that warm-cold sensitivity interval range according to acquired cold and hot inductance value place is corresponding regulates design temperature again;When cold and hot When inductance value is in interval 2, air-conditioner reacquired cold and hot inductance value every 8 minutes, cold according to acquired cold and hot inductance value place The control strategy that hotness interval range is corresponding regulates design temperature again;When cold and hot inductance value is in interval 1, air-conditioner is every 5 Minute reacquire cold and hot inductance value, according to control strategy corresponding to the warm-cold sensitivity interval range at acquired cold and hot inductance value place again Secondary regulation design temperature.
When cold and hot inductance value is in the second warm-cold sensitivity interval range, when the most cold and hot inductance value is in interval 4 and interval 5, air-conditioner Cold and hot inductance value can be reacquired, according to the warm-cold sensitivity interval range pair at acquired cold and hot inductance value place after prefixed time interval The control strategy answered regulates design temperature again.
It should be noted that air-conditioner is in different warm-cold sensitivity interval reacquires the prefixed time interval of cold and hot inductance value, I.e. air-conditioner is not restricted to shown in the present embodiment at the prefixed time interval of different warm-cold sensitivity intervals control design temperatures, can root It is set to other value according to real needs.
The present embodiment is by according to prefixed time interval, according to the control that the warm-cold sensitivity interval range at cold and hot inductance value place is corresponding Strategy adjustment design temperature processed, makes user when feeling comfortable, and being spaced the long time goes to reacquire cold and hot inductance value again, And when user feels cold or be hot, go to reacquire cold and hot inductance value after the short period of interval, and according to acquired cold and hot inductance value The control strategy that the warm-cold sensitivity interval range at place is corresponding regulates design temperature again, and the design temperature making air-conditioner current more accords with Share the sense of reality at family, improve the intelligent of air-conditioner.
The invention described above embodiment sequence number, just to describing, does not represent the quality of embodiment.By above embodiment party The description of formula, those skilled in the art it can be understood that can add required general to above-described embodiment method by software The mode of hardware platform realizes, naturally it is also possible to by hardware, but a lot of in the case of the former is more preferably embodiment.Based on Such understanding, the part that prior art is contributed by technical scheme the most in other words can be with software product Form embody, this computer software product is stored in a storage medium (such as ROM/RAM, magnetic disc, CD), including Some instructions are with so that a station terminal equipment (can be mobile phone, computer, server, or the network equipment etc.) performs this Method described in each embodiment bright.
These are only the preferred embodiments of the present invention, not thereby limit the scope of the claims of the present invention, every utilize this Equivalent structure or equivalence flow process that bright description and accompanying drawing content are made convert, or are directly or indirectly used in other relevant skills Art field, is the most in like manner included in the scope of patent protection of the present invention.

Claims (10)

1. a temperature control method based on cold and hot inductance value, it is characterised in that described temperature regulation side based on cold and hot inductance value Method includes:
When air-conditioner is in warm-cold sensitivity sleep pattern, obtain user's warm-cold sensitivity under the current design temperature of described air-conditioner Value;
Determine the warm-cold sensitivity interval range at described cold and hot inductance value place;
According to the control strategy regulation design temperature that described cold and hot inductance value place warm-cold sensitivity interval range is corresponding.
2. temperature control method based on cold and hot inductance value as claimed in claim 1, it is characterised in that described according to described cold and hot The step of the control strategy regulation design temperature that inductance value place warm-cold sensitivity interval range is corresponding includes:
If described cold and hot inductance value is in the first warm-cold sensitivity interval range, then improve described on the basis of described current design temperature Design temperature;
If described thermoinduction value is in the second warm-cold sensitivity interval range, then keep described current design temperature constant;
If described cold and hot inductance value is in the 3rd warm-cold sensitivity interval range, then reduce described on the basis of described current design temperature Design temperature.
3. temperature control method based on cold and hot inductance value as claimed in claim 2, it is characterised in that according between Preset Time Every, according to the control strategy regulation design temperature that the warm-cold sensitivity interval range at described cold and hot inductance value place is corresponding;
Wherein, when described cold and hot inductance value is in the first warm-cold sensitivity interval range, increase along with the increase of described cold and hot inductance value Regulate the time interval of described design temperature;
When described cold and hot inductance value is in the 3rd warm-cold sensitivity interval range, reduce regulation institute along with the increase of described cold and hot inductance value State the time interval of design temperature.
4. the temperature control method based on cold and hot inductance value as described in any one of claims 1 to 3, it is characterised in that described Regulate the step of design temperature according to the control strategy that described cold and hot inductance value place warm-cold sensitivity interval range is corresponding after, also include:
Determine that the described design temperature after regulation is whether in preset range;
If the described design temperature after Tiao Jie is not in described preset range, then by preset temperature corresponding for described warm-cold sensitivity interval As the described design temperature after regulation, to control the operation of described air-conditioner.
5. temperature control method based on cold and hot inductance value as claimed in claim 4, it is characterised in that described determine regulation after After the described design temperature whether step in preset range, also include:
If the described design temperature after Tiao Jie is in described preset range, then interval according to the warm-cold sensitivity at described cold and hot inductance value place Described design temperature after the control strategy regulation that scope is corresponding controls the operation of described air-conditioner.
6. a temperature-adjusting device based on cold and hot inductance value, it is characterised in that described temperature based on cold and hot inductance value regulation dress Put and include:
Acquisition module, for when air-conditioner is in warm-cold sensitivity sleep pattern, obtains user and currently sets temperature at described air-conditioner Cold and hot inductance value under Du;
Determine module, for determining the warm-cold sensitivity interval range at described cold and hot inductance value place;
Adjustment module, sets temperature for the control strategy regulation corresponding according to described cold and hot inductance value place warm-cold sensitivity interval range Degree.
7. temperature-adjusting device based on cold and hot inductance value as claimed in claim 6, it is characterised in that described adjustment module bag Include:
Improve unit, if being in the first warm-cold sensitivity interval range, then at described current design temperature for described cold and hot inductance value On the basis of improve described design temperature;
Holding unit, if being in the second warm-cold sensitivity interval range for described thermoinduction value, then keeps described current design temperature Constant;
Reduce unit, if being in the 3rd warm-cold sensitivity interval range, then at described current design temperature for described cold and hot inductance value On the basis of reduce described design temperature.
8. temperature-adjusting device based on cold and hot inductance value as claimed in claim 7, it is characterised in that described adjustment module is also used According to prefixed time interval, set according to the control strategy regulation that the warm-cold sensitivity interval range at described cold and hot inductance value place is corresponding Temperature;
Wherein, when described cold and hot inductance value is in the first warm-cold sensitivity interval range, increase along with the increase of described cold and hot inductance value Regulate the time interval of described design temperature;
When described cold and hot inductance value is in the 3rd warm-cold sensitivity interval range, reduce regulation institute along with the increase of described cold and hot inductance value State the time interval of design temperature.
9. the temperature-adjusting device based on cold and hot inductance value as described in any one of claim 6 to 8, it is characterised in that described really Cover half block is additionally operable to the described design temperature after determining regulation whether in preset range;
Described temperature-adjusting device based on cold and hot inductance value also includes processing module, if the described design temperature after regulation is not In described preset range, then using preset temperature corresponding for described warm-cold sensitivity interval as regulation after described design temperature, with Control the operation of described air-conditioner.
10. temperature-adjusting device based on cold and hot inductance value as claimed in claim 9, it is characterised in that described processing module is also If the described design temperature after regulation is in described preset range, then interval according to the warm-cold sensitivity at described cold and hot inductance value place Described design temperature after the control strategy regulation that scope is corresponding controls the operation of described air-conditioner.
CN201610625632.6A 2016-07-29 2016-07-29 Temperature control method and device based on cold and hot inductance value Active CN106196491B (en)

Priority Applications (2)

Application Number Priority Date Filing Date Title
CN201610625632.6A CN106196491B (en) 2016-07-29 2016-07-29 Temperature control method and device based on cold and hot inductance value
PCT/CN2017/086382 WO2018019024A1 (en) 2016-07-29 2017-05-27 Temperature regulation method and device based on thermal sensation value

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201610625632.6A CN106196491B (en) 2016-07-29 2016-07-29 Temperature control method and device based on cold and hot inductance value

Publications (2)

Publication Number Publication Date
CN106196491A true CN106196491A (en) 2016-12-07
CN106196491B CN106196491B (en) 2019-02-05

Family

ID=57497649

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201610625632.6A Active CN106196491B (en) 2016-07-29 2016-07-29 Temperature control method and device based on cold and hot inductance value

Country Status (1)

Country Link
CN (1) CN106196491B (en)

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2018019025A1 (en) * 2016-07-29 2018-02-01 广东美的制冷设备有限公司 Air conditioner controlling method and device, and air conditioner
WO2018019024A1 (en) * 2016-07-29 2018-02-01 广东美的制冷设备有限公司 Temperature regulation method and device based on thermal sensation value
WO2018157483A1 (en) * 2017-02-28 2018-09-07 美的集团武汉制冷设备有限公司 Air conditioner control method, device and air conditioner
CN108758994A (en) * 2018-03-09 2018-11-06 珠海格力电器股份有限公司 Control method and device of air conditioner, storage medium and processor
CN111412621A (en) * 2020-03-31 2020-07-14 广东美的制冷设备有限公司 Child air conditioner, operation control method thereof and computer storage medium
CN112128954A (en) * 2020-08-26 2020-12-25 青岛海尔空调器有限总公司 Air conditioner and control method thereof

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS6291735A (en) * 1985-10-15 1987-04-27 Mitsubishi Electric Corp Air-conditioning machine
CN103245033A (en) * 2012-02-10 2013-08-14 珠海格力电器股份有限公司 Air conditioner and control method and device thereof
CN104296322A (en) * 2014-10-21 2015-01-21 广东美的暖通设备有限公司 Air conditioner and method for controlling air conditioning system
CN104949285A (en) * 2015-06-30 2015-09-30 青岛海尔空调器有限总公司 Intelligent control method and device for air conditioner
CN105339742A (en) * 2014-02-17 2016-02-17 松下电器产业株式会社 Air conditioner and thermal image sensor system

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS6291735A (en) * 1985-10-15 1987-04-27 Mitsubishi Electric Corp Air-conditioning machine
CN103245033A (en) * 2012-02-10 2013-08-14 珠海格力电器股份有限公司 Air conditioner and control method and device thereof
CN105339742A (en) * 2014-02-17 2016-02-17 松下电器产业株式会社 Air conditioner and thermal image sensor system
CN104296322A (en) * 2014-10-21 2015-01-21 广东美的暖通设备有限公司 Air conditioner and method for controlling air conditioning system
CN104949285A (en) * 2015-06-30 2015-09-30 青岛海尔空调器有限总公司 Intelligent control method and device for air conditioner

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2018019025A1 (en) * 2016-07-29 2018-02-01 广东美的制冷设备有限公司 Air conditioner controlling method and device, and air conditioner
WO2018019024A1 (en) * 2016-07-29 2018-02-01 广东美的制冷设备有限公司 Temperature regulation method and device based on thermal sensation value
WO2018157483A1 (en) * 2017-02-28 2018-09-07 美的集团武汉制冷设备有限公司 Air conditioner control method, device and air conditioner
CN108758994A (en) * 2018-03-09 2018-11-06 珠海格力电器股份有限公司 Control method and device of air conditioner, storage medium and processor
CN111412621A (en) * 2020-03-31 2020-07-14 广东美的制冷设备有限公司 Child air conditioner, operation control method thereof and computer storage medium
CN112128954A (en) * 2020-08-26 2020-12-25 青岛海尔空调器有限总公司 Air conditioner and control method thereof

Also Published As

Publication number Publication date
CN106196491B (en) 2019-02-05

Similar Documents

Publication Publication Date Title
CN106196491A (en) Temperature control method based on cold and hot inductance value and device
CN106225165B (en) Wind guide strip adjusting method and device based on cold and hot inductance value
CN106225164B (en) Air conditioner progress control method and device
CN106545976B (en) Air conditioner and air speed control method thereof
US20170123442A1 (en) System and Method of Smart and Energy-Saving Environmental Control
CN108458454A (en) Air conditioner and its control method and computer readable storage medium
CN106052027A (en) Control method and device of air conditioner
CN104896663A (en) Adjusting method, adjusting system for air supply mode of air conditioner and air conditioner
CN103175283A (en) Control method and device for operation mode of air conditioner and air conditioner
WO2022252672A1 (en) Control method and apparatus for air conditioning, and household appliance
CN108954662A (en) Air conditioner temperature control method and device
CN109579237B (en) Air conditioner temperature control method, storage medium and air conditioner
CN104776547A (en) Control method of air conditioner, terminal and air conditioner
CN204880542U (en) Air conditioner intelligent control box
CN110285539A (en) Air conditioner and its control method and computer readable storage medium
CN105042779A (en) Intelligent air conditioner control box and method
CN106288146A (en) Wind speed control method based on cold and hot inductance value and device
CN108618461A (en) Air-conditioning control method and air-conditioning control system
CN106403198B (en) The control method and device of air conditioner, air conditioner
CN104089372A (en) Method for controlling air conditioner and air conditioner
WO2020164227A1 (en) Control method for air conditioner
JP7012233B2 (en) Air environment control system, air environment control device and air environment control method
CN110887176B (en) Control method for air conditioner and air conditioner
CN113848744B (en) Control method and control device for household appliances, intelligent mattress and server
CN110285537A (en) Control method, air conditioner and the storage medium of air conditioner

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
GR01 Patent grant
GR01 Patent grant