CN101430546A - Operation control method for sleep mode of air conditioner - Google Patents

Operation control method for sleep mode of air conditioner Download PDF

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Publication number
CN101430546A
CN101430546A CNA2007100480206A CN200710048020A CN101430546A CN 101430546 A CN101430546 A CN 101430546A CN A2007100480206 A CNA2007100480206 A CN A2007100480206A CN 200710048020 A CN200710048020 A CN 200710048020A CN 101430546 A CN101430546 A CN 101430546A
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temperature
time
control
sleep
design temperature
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赵恩英
宋伟
张起云
郝虹
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Suzhou Samsung Electronics Co Ltd
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Suzhou Samsung Electronics Co Ltd
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Priority to CNA2007100480206A priority Critical patent/CN101430546A/en
Publication of CN101430546A publication Critical patent/CN101430546A/en
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Abstract

The invention relates to the improvement of an operational control method for a sleep pattern of an air-conditioner. The invention is characterized in that the whole sleeping process is divided into three sections of falling asleep, heavy sleep and getting up by applying the principle of human engineering, scientifically analyzing biological period, body rhythm and indoor space status of human body falling sleep; a temperature curve which can help people to enter into ideal sleeping status is set according to temperature variation requirements in different sleeping sections; users have comfortable and health sleeping by simulating and realizing the model of the temperature curve and adjusting the appropriate air quantity; the temperature curve can be widely applied to the sleep pattern of the air-conditioner.

Description

Operation control method for sleep mode of air conditioner
Technical field
The invention belongs to household electrical appliance technical field, relate to the air conditioner progress control method, especially at the improvement of operation control method for sleep mode of air conditioner.
Background technology
Along with popularizing of air-conditioning, simple cooling and warming can not satisfy the demands of consumers, and what people got more and more pursuit now is healthy and comfortable.Scientific research shows: human body also is different in the different phase of sleep for the requirement of environment temperature, and traditional air-conditioning can't be changed design temperature automatically according to the human body needs.
Current most air-conditioner sleep mode all is that simple after sleep is set 1 hour adds 1 ℃ with indoor design temperature on the desired temperature basis, or between 1~2 hour design temperature is promoted 1 ℃ again.Design temperature changes as shown in Figure 1.So simple temperature variation is difficult to allow the user obtain healthy comfortable sleep.Thereby have many consumers such some puzzlements are all arranged, if the temperature of setting in bed evening is low, can be frozen awake midnight, is easy to flu; If temperature is set height a bit, can't fall asleep fast again during the broiling summer.Therefore existing this operation control method for sleep mode haves much room for improvement.
Summary of the invention
Fundamental purpose of the present invention is to provide a kind of operation control method for sleep mode of air conditioner, for the user provides healthy, comfortable sleep environment.
For reaching above purpose, solution of the present invention is:
Operation control method for sleep mode of air conditioner, whole sleep pattern operation control procedure comprises the sleeping stage, goes into the temperature of sleep mode control air conditioner operation below adopting in the sleeping stage: go into sleep mode:
On the comfortable sleeping running starting point, design temperature (Td)=minimum temperature (Tb)-B ℃, wind speed is adjusted to gentle breeze control, carries out fast-refrigerating running control;
When " indoor temperature (Tr)≤minimum temperature (Tb)-B ℃ ", design temperature (Td)=minimum temperature (Tb) finishes fast-refrigerating running control.
Further, after finishing fast-refrigerating running control, also comprise the stage of sleeping soundly: the temperature of the pattern control air conditioner operation of sleeping soundly below adopting in the stage of sleeping soundly: the pattern of sleeping soundly:
Be the stage of sleeping soundly from time T 1~T14, the control of each time period design temperature is as follows:
A, time T 1~T2, design temperature (Td)=Td1=minimum temperature (Tb)+C ℃;
B, time T 2~T3, design temperature (Td)=Td2=minimum temperature (Tb)+D ℃;
C, time T 3~T4, design temperature (Td)=Td3=minimum temperature (Tb)+E ℃;
D, time T 4~T5, design temperature (Td)=Td4=minimum temperature (Tb)+F ℃;
E, time T 5~T6, design temperature (Td)=Td3=minimum temperature (Tb)+E ℃;
F, time T 6~T7, design temperature (Td)=Td2=minimum temperature (Tb)+D ℃;
G, time T 7~T8, design temperature (Td)=Td3=minimum temperature (Tb)+E ℃;
H, time T 8~T9, design temperature (Td)=Td4=minimum temperature (Tb)+F ℃;
I, time T 9~T10, design temperature (Td)=Td3=minimum temperature (Tb)+E ℃;
J, time T 10~T11, design temperature (Td)=Td2=minimum temperature (Tb)+D ℃;
K, time T 11~T12, design temperature (Td)=Td3=minimum temperature (Tb)+E ℃;
L, time T 12~T13, design temperature (Td)=Td4=minimum temperature (Tb)+F ℃;
M, time T 13~T14, design temperature (Td)=Td3=minimum temperature (Tb)+E ℃;
After stage control is slept soundly in end, also comprise the stage of getting up: the temperature of the pattern control air conditioner operation of getting up below adopting in the stage of getting up:
The pattern of getting up:
Be the stage of getting up from time T 14~T16, the control of design temperature is as follows:
A, time T 14~T15, design temperature (Td)=Td4=minimum temperature (Tb)+F ℃;
B, time T 15~T16, design temperature (Td)=Td5=minimum temperature (Tb)+G ℃;
Air-conditioning is out of service behind the time arrival setting-up time T16.
Above compensation temperature value B value is chosen to be 0.5 ℃.C, D, E, F, G value raise gradually, and its span is in 0 ~ 5 ℃.
The control of different set length of one's sleep:
A) set the length of one's sleep≤1 hour, only go into sleep mode control, after setting-up time arrived, air-conditioning was closed.
B) 1 hour<set the length of one's sleep≤4 hour, only go into sleep mode and the pattern control of sleeping soundly, after setting-up time arrived, air-conditioning was closed.
C) 4 hours<set the length of one's sleep≤8 hour, the pattern of falling asleep earlier and the pattern control of sleeping soundly, before setting-up time arrives 1 hour, the pattern that begins to get up control; After setting-up time arrived, air-conditioning was closed.
D) for setting the sleep of the length of one's sleep greater than 8 hours, the pattern of falling asleep earlier and the pattern control of sleeping soundly began to repeat the 3rd hour before this at the 7th hour and are the control model of starting point; After setting-up time arrived, air-conditioning was closed.
Mode at interval of a kind of time division:
A, T1~T2 time period is 20 minutes; B, T2~T3 time period is 20 minutes;
C, T3~T4 time period is 10 minutes; D, T4~T5 time period is 80 minutes;
E, T5~T6 time period is 10 minutes; F, T6~T7 time period is 20 minutes;
G, T7~T8 time period is 10 minutes; H, T8~T9 time period is 60 minutes;
I, T9~T10 time period is 10 minutes; J, T10~T11 time period is 20 minutes;
K, T11~T12 time period is 10 minutes; L, T12~T13 time period is 60 minutes;
M, T13~T14 time period is 30 minutes; N, T14~T15 time period is 20 minutes;
O, T15~T16 time period is 40 minutes.
Described control method, can be undertaken by following control flow:
At first, judge whether to have set comfortable sleeping in initialization E2PROM process, if set, then minimum temperature Tb and design temperature Ts are carried out assignment, the value of Tb is determined by desired temperature Ti;
After this in the operation process, minimum temperature changes with the variation that desired temperature is set;
Next judge whether telepilot input sleep or PANEL input sleep key, then begin to carry out comfortable sleeping control if having;
At first be to minimum temperature, design temperature initialize, carry out the display part then, demonstrate the length of one's sleep or the remaining length of one's sleep of setting; Then give the minimum temperature assignment again.
Further, in the sleep operation process, add unusual heat load protection, in implementation procedure, be provided with the zone bit of a unusual heat load; If zone bit is put 1, then directly the design temperature setting is equated with the indoor temperature value; Which otherwise determine to carry out according to the design temperature control in stage in the stage of falling asleep, the stage of sleeping soundly, the stage of getting up according to the residue scope length of one's sleep; Air quantity is that initial default value is a gentle breeze, can regulate setting by the user subsequently in the whole control procedure.
For example: when indoor temperature continues to exceed 1 ℃ of design temperature and reaches 30 minutes, design temperature changed to indoor temperature equate compressor shutdown this moment.
The present invention uses the ergonomics principle, enters physiological period, health rhythm and the interior space state of sleep by the scientific analysis human body, with the whole sleep pattern control procedure of air-conditioning be divided into sleeping, sleep soundly and get up 3 stages.The sleeping stage suitably lowers the temperature, and builds sleeping easily temperature environment; The stage of sleeping soundly need be adjusted room temperature with sleep quality, improves sleep quality; The stage of getting up easily gets up the user with the short brain of waking up of the fluctuation of temperature naturally.
Description of drawings
Fig. 1 is existing air conditioner refrigeration sleep temperature control curve synoptic diagram.
Fig. 2 is the air conditioner comfortable sleeping temperature control curve synoptic diagram of an embodiment of the present invention.
Fig. 3 is the sleep initial period of an embodiment of the present invention, the design temperature control flow synoptic diagram in the stage of falling asleep.
Fig. 4 is the design temperature control flow synoptic diagram in the stage of sleeping soundly of an embodiment of the present invention.
Fig. 5 is the unusual heat load steering logic synoptic diagram of an embodiment of the present invention.
Fig. 6 is the air-conditioner sleep mode control flow synoptic diagram of an embodiment of the present invention.
Fig. 7 is the curve map that changes the temperature variation of 8 hours standard comfortable sleepings of an embodiment of the present invention and time.
Fig. 8 is the curve map that changes the temperature variation of setting length of one's sleep more than 8 hours of an embodiment of the present invention and time.
Embodiment
The present invention is further illustrated below in conjunction with the accompanying drawing illustrated embodiment.
The present invention uses ergonomics and bionics principle, and by a large amount of sleep quality experiments, obtains temperature variation curve (as Fig. 2).Variation of temperature in the pulpit, the analog temperature curve model.Obtain with reference to 8 hours comfortable sleeping running benchmark for standard, the specific implementation method is as follows:
In technique scheme, temperature is to change in certain scope in sleep pattern.Here relate to the notion of a minimum temperature (Tb), following relation arranged between minimum temperature (Tb) and the desired temperature (Ti):
When a, " desired temperature (Ti)=24~30 ℃ ", set " minimum temperature (Tb)=desired temperature (Ti)-A ℃ ".
When b, " desired temperature (Ti)≤23 ℃ ", set the change that " minimum temperature (Tb)=23 ℃-A ℃ " minimum temperature sets along with desired temperature in the running of Good Morning comfortable sleeping the time and change.
That whole sleep procedure is divided into is sleeping, sleep soundly and get up 3 stages.Each different sleep stage is different to the temperature controlling method.
Go into sleep mode:
On the comfortable sleeping running starting point, design temperature (Td)=minimum temperature (Tb)-B ℃, wind speed is adjusted to gentle breeze control, carries out fast-refrigerating running control, i.e. T0~T0 ' time period of Fig. 2 demonstration.
In time T 0~T1, when " indoor temperature (Tr)≤minimum temperature (Tb)-B ℃ ", design temperature (Td)=minimum temperature (Tb) finishes fast-refrigerating running control, then begins the comfortable sleeping thermostatic control, i.e. T0 '~T1 time period of showing of Fig. 2.
The logic diagram of design temperature as shown in Figure 3-4.
Under respective settings temperature (Td), the thermostatic control of sleeping soundly operation.
The pattern of getting up:
Be the stage of getting up from time T 14~T16 (8Hr), the control of design temperature is as follows:
A, time T 14~T15, design temperature (Td)=Td4=minimum temperature (Tb)+F ℃;
B, time T 15~T16, design temperature (Td)=Td5=minimum temperature (Tb)+G ℃;
In this stage, air-conditioning also is to carry out the thermostatic control operation according to design temperature.It is out of service that time arrives setting-up time T16 (8Hr) back air-conditioning.
Above compensation temperature value A, B, C, D, E, F, G are fixing value, by a large amount of sleep experiments gained of human body, wherein the A value is 0, promptly when the refrigeration comfortable sleeping is set, initial design temperature is limited in more than 23 ℃, prevents that user Yin Wendu from crossing low and cause sick; The setting of B value is to reach the requirement of setting for indoor temperature is descended fast, and the B value is chosen to be 0.5 ℃.C, D, E, F, G value raise gradually, and its span is in 0 ~ 5 ℃, with external environment (temperature) with set T16 the length of one's sleep it doesn't matter.
In service in above-mentioned thermostatic control, added a protection control, for the control of unusual heat load.For example when indoor temperature continues to exceed 1 ℃ of design temperature and reaches 30 minutes, design temperature changed to indoor temperature equate that this moment, compressor continuous action was always so just avoided in the compressor shutdown, and is shown in Figure 5 as flow process.This is a kind of method in the air-conditioning protection control, safeguards the normal operation of compressor, has prolonged the serviceable life of compressor.
Air-conditioner sleep mode control flow of the present invention as shown in Figure 6.At first, judge whether to have set comfortable sleeping in initialization E2PROM process, if set, then minimum temperature (Tb) and design temperature (Ts) are carried out assignment, the value of Tb is determined by desired temperature (Ti).After this in the operation process, minimum temperature changes with the variation that desired temperature is set.Next judge whether telepilot input sleep or PANEL input sleep key, then begin to carry out comfortable sleeping control if having.At first be to minimum temperature, design temperature initialize, carry out the display part then, demonstrate the length of one's sleep or the remaining length of one's sleep of setting.Then give the minimum temperature assignment again.We have added unusual heat load protection in the sleep operation process, are provided with the zone bit of a unusual heat load in the implementation procedure of software.If zone bit is put 1, then directly the design temperature setting is equated with the indoor temperature value; Which otherwise determine to carry out according to the design temperature control in stage in the stage of falling asleep, the stage of sleeping soundly, the stage of getting up according to the residue scope length of one's sleep.About air quantity, in the whole control procedure, initial default value is gentle breeze (when referring to set the comfortable sleeping function, the setting the when default value of setting air quantity is product export), can regulate setting by the user subsequently.Whole flow process is undertaken by Fig. 6 circulation, makes temperature variation satisfy the initial temperature ideal curve that we describe.Air-conditioning that just can let us has real comfortable sleeping function, allows the user obtain comfortable, healthy sleep.
1) time that can set usually in sleep of our air-conditioning is 30 minutes now, 1 hour, and 1 hour 30 minutes ... 12 hours was that unit carries out time set with 30 minutes promptly;
2) fall asleep time in stage is T0~T1, is fixed as 1 hour, and promptly T1 is 1 hour constantly.
3) suppose to carry out 30 minutes sleep setting, then,
A) under indoor temperature 〉=minimum temperature (Tb)-B ℃ condition,, carry out fast-refrigerating running control with design temperature (Tr)=minimum temperature (Tb)-B ℃.
B) in case indoor temperature=minimum temperature (Tb)-B ℃ (being assumed to be T0 ' constantly), then should be constantly after, with design temperature (Tr)=minimum temperature (Tb) ℃, carry out cooling operation control (time T 0 '~T1)
Embodiment one
When the user sets the length of one's sleep is 40 minutes, and the control of whole sleep procedure only relates to this stage of falling asleep.On the comfortable sleeping running starting point, design temperature (Td)=minimum temperature (Tb)-B ℃, wind speed is adjusted to gentle breeze control, carries out fast-refrigerating running control, i.e. T0~T0 ' time period of Fig. 2 demonstration.
In time T 0~40 minute, when " indoor temperature (Tr)≤minimum temperature (Tb)-B ℃ ", design temperature (Td)=minimum temperature (Tb) finishes fast-refrigerating running control, then begin the comfortable sleeping thermostatic control, i.e. the T0 '~40 minute time period of Fig. 2 demonstration.When reaching the comfortable sleeping time set in the time of 40 minutes, air-conditioning shuts down.
The logic diagram of design temperature as shown in Figure 3.
This embodiment adopts into sleep mode and carries out temperature control.
Embodiment two
When the user sets the length of one's sleep is 3 hours (during hour setting range of T1 ~ 4 (wherein T1〉40 minute), can be undertaken by this embodiment control method), and whole sleep procedure experience is fallen asleep and slept soundly two stages, and the logic diagram of design temperature is shown in Fig. 3,4.
On the comfortable sleeping running starting point, design temperature (Td)=minimum temperature (Tb)-B ℃, wind speed is adjusted to gentle breeze control, carries out fast-refrigerating running control, i.e. T0~T0 ' time period of Fig. 2 demonstration.
In time T 0~T1, when " indoor temperature (Tr)≤minimum temperature (Tb)-B ℃ ", design temperature (Td)=minimum temperature (Tb) finishes fast-refrigerating running control, then begins the comfortable sleeping thermostatic control, i.e. T0 '~T1 time period of showing of Fig. 2.
From T1 ~ 3 hour, running enters comfortable sleeping and sleep soundly the stage, and by design temperature (Td) control in this stage, when reaching comfortable sleeping time set 3Hr, air-conditioning shuts down.
This embodiment adopts into the sleep mode and the pattern of sleeping soundly and carries out temperature control.
Embodiment three
When the user sets the length of one's sleep is 6 hours (during 8 hours setting ranges of 4 h ~, can be undertaken by this embodiment control method), and the sleep running control stage of will getting up also comprises to come in.Originally design temperature (Td) control of 8 hours comfortable sleepings of the standard running above the operation, the mode operation of getting up brings into operation when " elapsed time (the t)=comfortable sleeping duration of runs (ts)-60 minute " before reaching the comfortable sleeping running and finishing 60 minutes.It is t=6*60-60=300 minute, from 5 hours patterns of getting up that bring into operation.
On the comfortable sleeping running starting point, design temperature (Td)=minimum temperature (Tb)-B ℃, wind speed is adjusted to gentle breeze control, carries out fast-refrigerating running control, i.e. T0~T0 ' time period of Fig. 2 demonstration.
In time T 0~T1, when " indoor temperature (Tr)≤minimum temperature (Tb)-B ℃ ", design temperature (Td)=minimum temperature (Tb) finishes fast-refrigerating running control, then begins the comfortable sleeping thermostatic control, i.e. T0 '~T1 time period of showing of Fig. 2.
From T1 ~ 5 hour, running enters comfortable sleeping and sleep soundly the stage, by design temperature (Td) control in this stage, from 5 ~ 6 hours this section period by the mode operation of getting up, when reaching comfortable sleeping time set 6Hr, air-conditioning shuts down.
This embodiment adopts into sleep mode, the pattern of sleeping soundly and the pattern of getting up and carries out temperature control.
Setting-up time 〉=4 hour enter the pattern control of getting up on " setting-up time-1 hour " moment point in sleep procedure.
Embodiment four
When the user sets the length of one's sleep is 12 hours (during 12 hours setting ranges of 8 h ~, can be undertaken by this embodiment control method), and whole sleep procedure still is divided into the three phases of falling asleep, sleep soundly, get up and controls.Originally after the design temperature (Td) of 8 hours comfortable sleepings of the standard running above the operation controls to " elapsed time (t)=420 minute ", " elapsed time (t)=420 minute " begins to finish before 60 minutes " elapsed time (the t)=comfortable sleeping duration of runs (ts)-60 minute " point to the comfortable sleeping running, carries out in design temperature (Ts) control of top standard comfortable sleeping running in 8 hours " elapsed time (t)=180 minute ~ 420 minutes " interval control in promptly 7 ~ 11 hours repeatedly.
From 11 ~ 12 hours this section period by the mode operation of getting up, when reaching comfortable sleeping time set 12Hr, air-conditioning shuts down.
This embodiment adopts into sleep mode, the pattern of sleeping soundly and the pattern of getting up and carries out temperature control.
1) working time
Fig. 7 is the design temperature of 8 hours standard comfortable sleepings and the curve map of time variation, the time of finding out each segment that can be apparent in view (each is lined 10 minutes).
Curve shown in Figure 7 and Fig. 2 are identical, have just marked the concrete time interval in time.
2) divide for the time
A) set the length of one's sleep≤1 hour, only go into sleep mode.After setting-up time arrived, air-conditioning was closed.
B) 1 hour<set the length of one's sleep≤4 hour, only go into sleep mode and the pattern of sleeping soundly.After setting-up time arrived, air-conditioning was closed.
C) set the length of one's sleep〉4 hours, fall asleep and the process of sleeping soundly, before arriving, setting-up time on 1 hour the moment point, enters the pattern of getting up.After setting-up time arrived, air-conditioning was closed.
D) in the operational process, the set temperature value strictness is followed temperatur-timel curve and is changed.
E) T0 ' is not certain fixed time, and promptly indoor temperature reaches minimum temperature (Tb)-B ℃ the moment, also may can't occur in operational process.
F) for setting the sleep of the length of one's sleep greater than 8 hours, for example setting the length of one's sleep is 12 hours, as shown in Figure 8, it is 8 hours identical that its temperature is controlled at before the 7th hour with setting the length of one's sleep, and just repeating the 3rd hour before this since the 7th hour is the control model of starting point; Before arriving, setting-up time on 1 hour the moment point, enters the pattern of getting up; After setting-up time arrived, air-conditioning was closed.
The present invention is according to the temperature variation demand of different sleep stages, set one and can help to enter desirable dormant temperature curve, and regulate suitable air quantity, simulation and realization temperature curve model, even the user not only can be fallen asleep rapidly at extremely hot unbearable night in midsummer, keep body sense comfort temperature for a long time, prolong the deep sleep time, and can allow people's one feel wake up naturally, in high spirits when getting up, energetic.
The above-mentioned description to embodiment is can understand and apply the invention for ease of those skilled in the art.The person skilled in the art obviously can easily make various modifications to these embodiment, and needn't pass through performing creative labour being applied in the General Principle of this explanation among other embodiment.Therefore, the invention is not restricted to the embodiment here, those skilled in the art should be within protection scope of the present invention for improvement and modification that the present invention makes according to announcement of the present invention.

Claims (13)

1, a kind of operation control method for sleep mode of air conditioner is characterized in that: whole sleep pattern operation control procedure comprises the sleeping stage, goes into the temperature of sleep mode control air conditioner operation below adopting in the sleeping stage: go into sleep mode:
On the comfortable sleeping running starting point, design temperature (Td)=minimum temperature (Tb)-B ℃, wind speed is adjusted to gentle breeze control, carries out fast-refrigerating running control;
When " indoor temperature (Tr)≤minimum temperature (Tb)-B ℃ ", design temperature (Td)=minimum temperature (Tb) finishes fast-refrigerating running control.
2, control method according to claim 1 is characterized in that: after finishing fast-refrigerating running control, also comprise the stage of sleeping soundly: the temperature of the pattern control air conditioner operation of sleeping soundly below adopting in the stage of sleeping soundly: the pattern of sleeping soundly:
Be the stage of sleeping soundly from time T 1~T14, the control of each time period design temperature is as follows:
A, time T 1~T2, design temperature (Td)=Td1=minimum temperature (Tb)+C ℃;
B, time T 2~T3, design temperature (Td)=Td2=minimum temperature (Tb)+D ℃;
C, time T 3~T4, design temperature (Td)=Td3=minimum temperature (Tb)+E ℃;
D, time T 4~T5, design temperature (Td)=Td4=minimum temperature (Tb)+F ℃;
E, time T 5~T6, design temperature (Td)=Td3=minimum temperature (Tb)+E ℃;
F, time T 6~T7, design temperature (Td)=Td2=minimum temperature (Tb)+D ℃;
G, time T 7~T8, design temperature (Td)=Td3=minimum temperature (Tb)+E ℃;
H, time T 8~T9, design temperature (Td)=Td4=minimum temperature (Tb)+F ℃;
I, time T 9~T10, design temperature (Td)=Td3=minimum temperature (Tb)+E ℃;
J, time T 10~T11, design temperature (Td)=Td2=minimum temperature (Tb)+D ℃;
K, time T 11~T12, design temperature (Td)=Td3=minimum temperature (Tb)+E ℃;
1, time T 12~T13, design temperature (Td)=Td4=minimum temperature (Tb)+F ℃;
M, time T 13~T14, design temperature (Td)=Td3=minimum temperature (Tb)+E ℃;
3, control method according to claim 2 is characterized in that: after stage control is slept soundly in end, also comprise the stage of getting up: the temperature of the pattern control air conditioner operation of getting up below adopting in the stage of getting up: the pattern of getting up:
Be the stage of getting up from time T 14~T16, the control of design temperature is as follows:
A, time T 14~T15, design temperature (Td)=Td4=minimum temperature (Tb)+F ℃;
B, time T 15~T16, design temperature (Td)=Td5=minimum temperature (Tb)+G ℃;
Air-conditioning is out of service behind the time arrival setting-up time T16.
4, control method according to claim 1 is characterized in that: compensation temperature value B is 0.5 ℃.
5, according to claim 2 or 3 described control methods, it is characterized in that: compensation temperature value C, D, E, F, G value raise gradually, and its span is in 0-5 ℃.
6, control method according to claim 1 is characterized in that:
A) set the length of one's sleep≤1 hour, only go into sleep mode control, after setting-up time arrived, air-conditioning was closed.
7, control method according to claim 2 is characterized in that:
B) 1 hour<set the length of one's sleep≤4 hour, only go into sleep mode and the pattern control of sleeping soundly, after setting-up time arrived, air-conditioning was closed.
8, control method according to claim 3 is characterized in that:
C) 4 hours<set the length of one's sleep≤8 hour, the pattern of falling asleep earlier and the pattern control of sleeping soundly, before setting-up time arrives 1 hour, the pattern that begins to get up control; After setting-up time arrived, air-conditioning was closed.
9, control method according to claim 3 is characterized in that:
D) for setting the sleep of the length of one's sleep greater than 8 hours, the pattern of falling asleep earlier and the pattern control of sleeping soundly began to repeat the 3rd hour before this at the 7th hour and are the control model of starting point; After setting-up time arrived, air-conditioning was closed.
10, control method according to claim 3 is characterized in that:
A, T1~T2 time period is 20 minutes; B, T2~T3 time period is 20 minutes;
C, T3~T4 time period is 10 minutes; D, T4~T5 time period is 80 minutes;
E, T5~T6 time period is 10 minutes; F, T6~T7 time period is 20 minutes;
G, T7~T8 time period is 10 minutes; H, T8~T9 time period is 60 minutes;
I, T9~T10 time period is 10 minutes; J, T10~T11 time period is 20 minutes;
K, T11~T12 time period is 10 minutes; 1, T12~T13 time period is 60 minutes;
M, T13~T14 time period is 30 minutes; N, T14~T15 time period is 20 minutes;
O, T15~T16 time period is 40 minutes.
11, control method according to claim 1 is characterized in that:
Undertaken by following control flow:
At first, judge whether to have set comfortable sleeping in initialization E2PROM process, if set, then minimum temperature Tb and design temperature Ts are carried out assignment, the value of Tb is determined by desired temperature Ti;
After this in the operation process, minimum temperature changes with the variation that desired temperature is set;
Next judge whether telepilot input sleep or PANEL input sleep key, then begin to carry out comfortable sleeping control if having;
At first be to minimum temperature, design temperature initialize, carry out the display part then, demonstrate the length of one's sleep or the remaining length of one's sleep of setting; Then give the minimum temperature assignment again.
12, control method according to claim 1 is characterized in that:
In the sleep operation process, add unusual heat load protection, in implementation procedure, be provided with the zone bit of a unusual heat load; If zone bit is put 1, then directly the design temperature setting is equated with the indoor temperature value; Which otherwise determine to carry out according to the design temperature control in stage in the stage of falling asleep, the stage of sleeping soundly, the stage of getting up according to the residue scope length of one's sleep; Air quantity is that initial default value is a gentle breeze, can regulate setting by the user subsequently in the whole control procedure.
13, control method according to claim 12 is characterized in that: when indoor temperature continues to exceed 1 ℃ of design temperature and reaches 30 minutes, design temperature changed to indoor temperature equate compressor shutdown this moment.
CNA2007100480206A 2007-11-09 2007-11-09 Operation control method for sleep mode of air conditioner Pending CN101430546A (en)

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Cited By (19)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102147138A (en) * 2010-02-04 2011-08-10 珠海格力电器股份有限公司 Method for controlling sleep mode of air conditioner
CN102722196A (en) * 2012-05-31 2012-10-10 深圳和而泰智能控制股份有限公司 Temperature control device and temperature control system
CN103776130A (en) * 2012-10-25 2014-05-07 珠海格力电器股份有限公司 Temperature control method and device and air conditioner equipment
CN103982977A (en) * 2014-04-22 2014-08-13 美的集团股份有限公司 Sleep temperature control method and device
CN104110786A (en) * 2013-12-30 2014-10-22 广东美的制冷设备有限公司 Intelligent air conditioner, sleep control device thereof and sleep control method for intelligent air conditioner
CN104949260A (en) * 2014-03-27 2015-09-30 珠海格力电器股份有限公司 Air-conditioner sleep mode control method and device and air-conditioner
CN105259948A (en) * 2015-10-12 2016-01-20 小米科技有限责任公司 Mattress temperature control method and apparatus
CN106196475A (en) * 2016-07-27 2016-12-07 深圳创维空调科技有限公司 The control method of a kind of air-conditioner and control device
CN107726545A (en) * 2017-09-30 2018-02-23 广东美的制冷设备有限公司 Air-conditioner control method, electronic equipment and computer-readable recording medium
CN111964230A (en) * 2020-08-06 2020-11-20 青岛海尔空调器有限总公司 Control method and control device of air conditioner and air conditioner
WO2020237468A1 (en) * 2019-05-27 2020-12-03 西门子(中国)有限公司 Method, apparatus and system for determining temperature setting value, and storage medium and processor
CN112283884A (en) * 2019-07-23 2021-01-29 广东美的制冷设备有限公司 Atmosphere lamp control method and device for air conditioner, air conditioner and storage medium
CN113310194A (en) * 2020-02-27 2021-08-27 青岛海尔空调器有限总公司 Intelligent adjustment method and sleep environment adjustment system for sleep environment
CN113710967A (en) * 2019-04-25 2021-11-26 三菱电机株式会社 Environment control system and environment control method
CN113883670A (en) * 2021-09-13 2022-01-04 Tcl空调器(中山)有限公司 Air conditioner control method and device, storage medium and air conditioner
CN114017892A (en) * 2021-11-22 2022-02-08 宁波奥克斯电气股份有限公司 Sleep mode control method and device, readable storage medium and air conditioner
CN115220498A (en) * 2021-06-04 2022-10-21 广州汽车集团股份有限公司 Control method of temperature control apparatus, and storage medium
WO2023010859A1 (en) * 2021-07-31 2023-02-09 青岛海尔空调器有限总公司 Method and apparatus for air conditioner control, and air conditioner
CN115854411A (en) * 2022-12-23 2023-03-28 珠海格力电器股份有限公司 Heating equipment control method and device, electronic equipment and electric heater

Cited By (25)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102147138A (en) * 2010-02-04 2011-08-10 珠海格力电器股份有限公司 Method for controlling sleep mode of air conditioner
CN102147138B (en) * 2010-02-04 2013-04-24 珠海格力电器股份有限公司 Method for controlling sleep mode of air conditioner
CN102722196A (en) * 2012-05-31 2012-10-10 深圳和而泰智能控制股份有限公司 Temperature control device and temperature control system
CN102722196B (en) * 2012-05-31 2015-01-21 深圳和而泰智能控制股份有限公司 Temperature control device and temperature control system
CN103776130A (en) * 2012-10-25 2014-05-07 珠海格力电器股份有限公司 Temperature control method and device and air conditioner equipment
CN104110786A (en) * 2013-12-30 2014-10-22 广东美的制冷设备有限公司 Intelligent air conditioner, sleep control device thereof and sleep control method for intelligent air conditioner
CN104949260A (en) * 2014-03-27 2015-09-30 珠海格力电器股份有限公司 Air-conditioner sleep mode control method and device and air-conditioner
CN104949260B (en) * 2014-03-27 2017-09-22 珠海格力电器股份有限公司 Air-conditioner sleep mode control method, device and air conditioner
CN103982977A (en) * 2014-04-22 2014-08-13 美的集团股份有限公司 Sleep temperature control method and device
CN103982977B (en) * 2014-04-22 2017-03-01 美的集团股份有限公司 Sleep temperature-controlled process and device
CN105259948A (en) * 2015-10-12 2016-01-20 小米科技有限责任公司 Mattress temperature control method and apparatus
CN106196475A (en) * 2016-07-27 2016-12-07 深圳创维空调科技有限公司 The control method of a kind of air-conditioner and control device
CN107726545A (en) * 2017-09-30 2018-02-23 广东美的制冷设备有限公司 Air-conditioner control method, electronic equipment and computer-readable recording medium
CN107726545B (en) * 2017-09-30 2020-10-20 广东美的制冷设备有限公司 Air conditioner control method, electronic device, and computer-readable storage medium
CN113710967A (en) * 2019-04-25 2021-11-26 三菱电机株式会社 Environment control system and environment control method
WO2020237468A1 (en) * 2019-05-27 2020-12-03 西门子(中国)有限公司 Method, apparatus and system for determining temperature setting value, and storage medium and processor
CN112283884A (en) * 2019-07-23 2021-01-29 广东美的制冷设备有限公司 Atmosphere lamp control method and device for air conditioner, air conditioner and storage medium
CN113310194A (en) * 2020-02-27 2021-08-27 青岛海尔空调器有限总公司 Intelligent adjustment method and sleep environment adjustment system for sleep environment
CN111964230A (en) * 2020-08-06 2020-11-20 青岛海尔空调器有限总公司 Control method and control device of air conditioner and air conditioner
CN111964230B (en) * 2020-08-06 2022-04-19 青岛海尔空调器有限总公司 Control method and control device of air conditioner and air conditioner
CN115220498A (en) * 2021-06-04 2022-10-21 广州汽车集团股份有限公司 Control method of temperature control apparatus, and storage medium
WO2023010859A1 (en) * 2021-07-31 2023-02-09 青岛海尔空调器有限总公司 Method and apparatus for air conditioner control, and air conditioner
CN113883670A (en) * 2021-09-13 2022-01-04 Tcl空调器(中山)有限公司 Air conditioner control method and device, storage medium and air conditioner
CN114017892A (en) * 2021-11-22 2022-02-08 宁波奥克斯电气股份有限公司 Sleep mode control method and device, readable storage medium and air conditioner
CN115854411A (en) * 2022-12-23 2023-03-28 珠海格力电器股份有限公司 Heating equipment control method and device, electronic equipment and electric heater

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Application publication date: 20090513