CN105423477A - Air conditioner - Google Patents

Air conditioner Download PDF

Info

Publication number
CN105423477A
CN105423477A CN201510087583.0A CN201510087583A CN105423477A CN 105423477 A CN105423477 A CN 105423477A CN 201510087583 A CN201510087583 A CN 201510087583A CN 105423477 A CN105423477 A CN 105423477A
Authority
CN
China
Prior art keywords
sleep
operation mode
running
temperature
air
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN201510087583.0A
Other languages
Chinese (zh)
Inventor
佐藤寿江
井本勉
秋元正德
能登谷义明
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.)
Hitachi Johnson Controls Air Conditioning Inc
Original Assignee
Hitachi Appliances Inc
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 Hitachi Appliances Inc filed Critical Hitachi Appliances Inc
Publication of CN105423477A publication Critical patent/CN105423477A/en
Pending legal-status Critical Current

Links

Abstract

The present invention provides an air conditioner achieving a more comfortable sleeping environment. The air conditioner comprises: a human body detection unit for detecting human body in an air adjusting space; a first operating mode for performing air adjusting operation from the time when a timer is set to the time after a predetermined time passes, and ending the air adjusting operation after the predetermined time passes; and a second operating mode for starting the air adjusting operation after the first operating mode is ended when the motion of the human body detected by the human body detection unit exceeds a predetermined value. Or in the air conditioner of the present invention, the second operating mode is used for starting the air adjusting operation after the first operating mode is ended when the difference between an indoor temperature and a set temperature exceeds a predetermined value and the motion of the human body detected by the human body detection unit exceeds a predetermined value.

Description

Air conditioner
Technical field
The present invention relates to a kind of air conditioner that comfortable sleep environment is provided.
Background technology
In existing air conditioner, there is the refrigeration in predetermined timer setting-up time is gone to bed or heat the sleep timer function of running.Further, in this sleep timer operation mode, about decline 1 DEG C with design temperature relative to heating, the mode of 1 DEG C of about rising during refrigeration is to change air conditioning temperature, and it is indoor overheated or excessively cold to prevent, and provides comfortable sleep environment.The timer setting-up time of this sleep timer function can set according to the hobby of user, but by the end of timer air conditioning running, room temperature changes and hinders sleeping.
Therefore, proposing after timer running stops, carrying out supervision running (for example, referring to patent document 1) of the running/stopping for repeating air conditioner according to the deviation of the relative design temperature of room temperature.
In addition, as the air conditioning control technology in going to bed, Patent Document 2 discloses following technology, namely in above-mentioned supervision running, room temperature rises, indoor occupant is difficult to fall asleep and get up, by remote controller, when having carried out the operation that the running beginning of air conditioner or room temperature decline, air conditioner judges indoor occupant " To Be Protected from Heat ", implements to rerun to judge that " To Be Protected from Heat " of temperature and " decline " one grade of design temperature correction value difference is revised.In addition, in sleep reruns, room temperature declines, indoor occupant feels cold and gets up, by remote controller, when having carried out the operation that running stops or room temperature rises, air conditioner has judged that indoor occupant " is afraid of cold ", enforcement reruns and judges that temperature and " rising " a grade of design temperature correction value difference " being afraid of cold " is revised, and makes running reflection next time.
In addition, Patent Document 3 discloses following indoor environmental condition control system, namely the Biont information of (measurement) person to go to bed is detected by the sensor such as video camera or thermoelectric pile, based on the Biont information detected, judge the sleep states such as Depth of sleep, according to the Depth of sleep judged, set the air conditioning target of indoor environment.
In the prior art disclosed in above-mentioned patent document 1, not considering air-conditioner wind, therefore there is the possibility of waking up because monitoring the air-conditioner wind in operating.
In the prior art disclosed in above-mentioned patent document 2, existing and design temperature correction value determined into before rerun corresponding with indoor occupant judge temperature, getting up because being difficult to fall asleep, cannot Quick for the problem of sleeping environment.
In addition, according to the prior art disclosed in above-mentioned patent document 3, there is no the sleep condition considering to fall asleep, therefore there is the problem that cannot go to bed.
Prior art document
Patent document
Patent document 1: Japanese Unexamined Patent Publication 7-19564 publication
Patent document 2: Japanese Unexamined Patent Publication 2005-201579 publication
Patent document 3: Japanese Unexamined Patent Publication 2013-213642 publication
Summary of the invention
The object of the invention is to solve the problem, a kind of air conditioner realizing more comfortable sleep environment is provided.
In order to solve described problem, air conditioner of the present invention possesses: human detection unit, and it detects the human body in air conditioned spaces; First operation mode, it carries out air conditioning running after setting timer to after a predetermined time, is terminating air conditioning running after the described scheduled time; And second operation mode, time more than its human motion gone out by described human detection unit inspection after described first operation mode terminates predetermined value, start air conditioning running.
Or, in air conditioner of the present invention, the difference of described second operation mode indoor temperature and design temperature after described first operation mode terminates more than predetermined value, and time more than the human motion that gone out by described human detection unit inspection predetermined value, starts air conditioning running.
According to air conditioner of the present invention, person to go to bed can cosily sleep.
Accompanying drawing explanation
Fig. 1 is the integrally-built figure of the air conditioner S representing embodiment.
Fig. 2 is the sectional view of the indoor set of the air conditioner S of embodiment.
Fig. 3 is the structure chart of the controll block of air conditioner.
Fig. 4 is the flow chart of the control of the first embodiment representing sleep running.
Fig. 5 is the flow chart of the sleep timer operation mode representing the second embodiment.
Fig. 6 is the flow chart of the control of the second embodiment representing sleep running.
Fig. 7 is the flow chart of the control of the 3rd embodiment representing sleep running.
Fig. 8 is the figure of an example of the time variations of the room temperature representing sleep running.
Fig. 9 is the figure of an example of the time variations of the design temperature representing sleep running.
Symbol description
About 104 wind direction boards
105 up-down wind direction boards
110 shooting unit
115 near infrared ray light projectors
120 thermoelectric piles
130 control units
131 body detecting part
132 object detection portions
133 layout test sections
160 environment detecting portion operable
Detailed description of the invention
Below, with reference to accompanying drawing, embodiments of the present invention are described in detail.
First, according to Fig. 1 and Fig. 2, the summary of the air conditioner of the present embodiment is described.
" structure of air conditioner "
Fig. 1 is the integrally-built figure of the air conditioner S representing embodiment.Fig. 2 is the sectional view representing indoor set 100.
Air conditioner S shown in Fig. 1 is made up of indoor set 100, off-premises station 200 and remote controller Re.Indoor set 100 is connected by coolant piping (not shown) with off-premises station 200, carries out air conditioning by known kind of refrigeration cycle to the indoor being provided with indoor set 100.In addition, indoor set 100 and off-premises station 200 are received and sent messages mutually via communication cable (not shown).
User operation remote controller Re, sends infrared signal to the remote controller receiving and transmitting part Q of indoor set 100.Have in this infrared signal: running request, the change of design temperature, the setting of sleep timer value, the change of operation mode and stop the instructions such as request.Air conditioner S, according to these signals, carries out the air conditioning runnings such as refrigeration mode, heating mode, dehumidification mode, sleep operation mode.In addition, the information such as room temperature information, humidity information, electricity charge information are sent to remote controller Re by the remote controller receiving and transmitting part Q of machine 100 indoor, inform the user these information.
In addition, the bottom before indoor set 100 is provided with shooting unit 110, near infrared ray light projector 115 and the thermoelectric pile 120 for obtaining indoor temperature information for obtaining indoor image information.The setting position of this shooting unit 110, near infrared ray light projector 115 and thermoelectric pile 120 can change according to the object that obtains of image/temperature information described later, and is not limited to the position of Fig. 1.
Fig. 2 is the sectional view of the position of the shooting unit 110 of indoor set 100.Housing base 101 has received the internal structure bodies such as heat exchanger 102, blowing fan 103, filter 108.
Heat exchanger 102 has many heat-transfer pipe 102a, makes the air be taken in indoor set 100 by blowing fan 103 carry out heat exchange with the refrigerant of circulation heat-transfer pipe 102a, heats or cool described air.In addition, heat-transfer pipe 102a is communicated with described coolant piping (not shown), forms the part of known kind of refrigeration cycle (not shown).
Rotated by the blowing fan 103 shown in Fig. 2, be taken into room air via air suction inlet 107 and filter 108, the air having carried out heat exchange is imported to blowout air channel 109a by heat exchanger 102.Further, the air imported to blowout air channel 109a is adjusted wind direction by left and right wind direction board 104 and up-down wind direction board 105, sends out adjustment indoor from Air blowing mouth 109b.
Left and right wind direction board 104 is according to the instruction from control unit 130 (Fig. 3) described later, to be arranged on the rotating shaft (not shown) of the bottom of left and right wind direction board 104 for fulcrum, rotated by left and right wind direction board motor (not shown).
Up-down wind direction board 105, according to the instruction from control unit 130 (Fig. 3) described later, to be arranged on the rotating shaft (not shown) at both ends for fulcrum, is rotated by up-down wind direction board motor (not shown).
Thus, air-conditioner wind can be sent to the precalculated position of indoor.
Shooting unit 110 is provided with in the bottom of the front panel 106 arranged in the mode covered before indoor set 100.Further, the position of the vertical direction of not shown paper is provided with near infrared ray light projector 115 and thermoelectric pile 120.
In addition, thermoelectric pile 120 also can be can other temperature sensors (such as, infrared radiation thermometer) of Temperature Distribution in measuring cell.
Shooting unit 110 is arranged to, from taking the setting position relative level direction of unit 110 at a predetermined angle downward, can take the indoor being provided with indoor set 100 rightly.But, for the shooting detailed loading position of unit 110 or angle, can set according to the specification of air conditioner S or purposes, and not limiting structure.
In addition, the structure of the air conditioner S shown in Fig. 1, Fig. 2 is only an example of the present embodiment, and does not mean that the present invention is now scheduled present embodiment to apply.
" the controll block structure of air conditioner "
Then, according to Fig. 3, the structure of the controll block of the air conditioner S of embodiment is described.
The control unit 130 of the air conditioner S of the present embodiment is the environmental information of test section 160 and remote controller receiving and transmitting part Q (with reference to Fig. 1) or operational order environmentally, control is used for the motor of the driving carrying out refrigerant circulation (not shown) and blowing fan 103 or left and right wind direction board 104 and up-down wind direction board 105, control the load driving part 150 of carrying out indoor air conditioning control, wherein, described environment detecting portion operable 160 has the temperature sensor/humidity sensor of air-conditioner wind and indoor illuminance transducer etc., described detection is for carrying out the temperature of the indoor of air conditioning control, humidity or brightness, described remote controller receiving and transmitting part Q receives the operation instruction of user.
And, the image information of the indoor of the air conditioning object obtained according to the shooting unit 110 illustrated below by details, detects the position of the people in indoor or the configuration of furniture by image test section 139, the layout in the room of air conditioning object carries out air conditioning control.In addition, according to the temperature data obtained by thermoelectric pile 120, the heating part such as shell temperature or heating equipment of the people in indoor can be detected.
In addition, the air conditioner S of the present embodiment, is taken to indoor irradiation near infrared ray by shooting unit 110 by near infrared ray light projector 115.This near infrared ray is irradiated and is controlled by near infrared ray light projector drive circuit 116.Thus, even if under the indoor darker states such as h.d., indoor state can also be detected.
Therefore, take unit 110 and use capturing element visible light and near infrared light to spectral sensitivity.If be provided with the capturing element of near infrared prevention wave filter, then remove near infrared prevention wave filter and use.
Below, the content of the controll block of air conditioner is described in detail.
First, the structure of shooting unit 110 is simply illustrated.
As shown in Figure 3, take unit 110 by adjustment coverage or focal length optical lens 111, the room light injected from optical lens 111 is converted to the signal of telecommunication capturing element 112, will the A/D converter 113 of image information be converted after the signal digitlization of capturing element 112 to and the digital signal processing section 114 that brightness or the tone of image information are revised be formed.
In addition, also can the visible ray cut-off filter making visible light attenuation or the near infrared light cut-off filter that near infrared light is decayed be set before optical lens 111.In addition, also can be the structure that visible ray cut-off filter or near infrared light cut-off filter are set according to situation with switching.
About the image information of the indoor obtained by shooting unit 110, carry out various image procossing by image test section 139.
The image test section 139 of the present embodiment possesses: the layout test section 133 of the layout of air-handling compartment that detects the body detecting part 131 of the person such as head, chest, arm, foot of people, detects the object detection portion 132 of the shape etc. of the furniture of air-handling compartment, detected by the position at the angle of distance or indoor wall that the wall of indoor room detected.
Now, the acquisition parameters of above-mentioned image procossing is adapted to from 139 pairs of digital signal processing section 114 settings of image test section.
By testing results such as the positional informations of the people in indoor detected by image test section 139 with inform to arithmetic processing section 141 based on the action command of testing result.
The controll block of arithmetic processing section 141 pairs of air conditioners unifies control, except the running setting of the air conditioning running of setting, also uses this testing result to carry out fortune allocation and transportation turn to control drive control part 136.In addition, take unit 110 and carry out shooting action according to the action command of the shooting request signal from arithmetic processing section 141.
Drive control part 136 notifies drive singal to load driving part 150, carries out driving instruction.
The air compressor motor (not shown) that the indoor fan motor (not shown) that load driving part 150 carries out kind of refrigeration cycle (not shown) respectively, indoor set 100 possesses, off-premises station 200 possess, be arranged on the up-down wind direction board motor (not shown) on up-down wind direction board 105 and be arranged on the driving of left and right wind direction board motor (not shown) on left and right wind direction board 104.
In addition, the drive division of the rotary actuation carrying out shooting unit 110 or near infrared ray light projector 115 or the thermoelectric pile 120 illustrated below in detail can also be comprised.
Near infrared ray light projector drive circuit 116 drives near infrared ray light projector 115 synergistically with the action command of the shooting request signal of arithmetic processing section 141.
Memory cell 140A, 140B such as comprise ROM (ReadOnlyMemory, read-only storage), RAM (RandomAccessMemory, random access memory) etc.Further, launch in RAM after the program be stored in ROM being read by the CPU (CentralProcessingUnit, central processing unit) in the arithmetic processing section 141 of control unit 130, perform.
In addition, as environment detecting portion operable 160, the temperature of the air-breathing for detecting air conditioner or the temperature/humidity sensor of humidity and illuminance transducer are set.According to the testing result of this temperature/humidity/illuminance transducer, the air conditioning carrying out the indoor of air conditioning object controls.
According to said structure, control unit 130 according to the image information inputted from shooting unit 110, the temperature information from thermoelectric pile 120 input, the command signal from remote controller Re input and the sensor output etc. inputted from various sensor, can control by unifying to control to carry out meticulous running to the action of air conditioner S.
In addition, control unit 130 has timer function, and the running can carrying out air conditioner S starts or the time controling terminated that operates.
During the sleep running illustrated after carrying out, by near infrared ray light projector 115 to indoor irradiation near infrared light, by shooting unit 110, indoor are taken, resolve this shooting image by image test section 139, judge the body action such as to stand up of person to go to bed according to the time variations of the testing result of body detecting part 131.
In addition, based on the position of the people detected by body detecting part 131 or object detection portion 132, the body temperature of person to go to bed is judged according to the temperature data detected by thermoelectric pile 120.
In addition, the room temperature of air conditioning object room is judged by the testing result of the temperature sensor of environment detecting portion operable 160.
Then, to the operation mode of h.d. namely sleep running action be described in detail.
The sleep running of embodiment is the operation mode that h.d. carries out application when refrigeration/dehumidification operates, and after after predetermined timer time, refrigeration/dehumidification running stops, again operating when room temperature or humidity rise, and makes the temperature/humidity of indoor maintain predetermined value.Thus, the air conditioning environment being suitable for sleeping is provided.
This sleep operates at the long-range refrigerating/heating/dehumidifying of indicating when waiting other operation modes, or the sleep operation continuation scheduled time (such as, 7 hours) time is removed.
" dormant summary "
Before the motion flow that sleep running is described, the sleep action of the people premised on one-tenth is described.
The sleep stage of people has: (1) falls asleep the stage (entering sleep); (2) sleep the initial stage; (3) sleep mid-term; (4) sleep the later stage.
Fall asleep the stage in (entering sleep) in (1), known sleep medium and deep temperature decline, is therefore transferred to the brothers of end by heat, releases heat.Therefore, entering in sleep stage in (1), when reducing room temperature to impel the heat release from brothers, easily entering sleep.
The sleep state of people is roughly divided into rem sleep and the sleep of non-rem, and, be divided into according to the degree of depth of sleep that the rem of hypohyphnotic first stage is slept, the non-rem of the fourth stage of deep sleep is slept.The state that the sleep of this rem and non-rem are slept alternatively repeats, dark non-rem sleep occurs more after just falling asleep, along with reducing through appearance of the length of one's sleep, stage (Depth of sleep) also shoals, the time of occurrence of rem sleep (shallow sleep) increases as an alternative, has the tendency of waking up.
In addition, deep body temperature declines along with sleep, easily wakes up when deep temperature rises.
(2) the sleep initial stage be just fallen asleep after dark non-rem sleep period between, be sleep start after during 1 ~ 2 hour.In this period, sleep is comparatively dark, is difficult to produce based on waking up of stimulating.
Therefore, when detecting that body temperature rises or when detecting body action, the swing air-supply (blowing running) of certain hour can be carried out to the direction of people.But, when blowing the wind of long period, wake up sometimes, be not therefore swing to body movement less till, and to wish for certain hour.Thus, sendible temperature is declined efficiently, thus improve uncomfortable situation.
In addition, in order to promote that the decline of deep body temperature is blown to underfooting, thus the heat release from underfooting can be promoted.
(3) sleep is that fall asleep the stage (Depth of sleep) of non-rem sleep is more shallow mid-term, and, during the state of rem sleep is elongated, be 3 hours.In addition, be also deep body temperature minimum during.
In this sleep mid-term, sleep more shallow, easily wake up because of stimulation, therefore when detecting that body temperature rises or detects body action, the mode not blowing to human body with air-conditioner wind is carried out blow (windproof running).Such as, can blow to the roof of indoor or wall, suppress the photothermal air conditioning method from roof or wall.
In addition, when carrying out continous blowing, at indoor generation circulated air, thus becoming stimulation of waking up sometimes, therefore wishing repeat air-supply/stopping and not producing circulated air.
(4) the sleep later stage shoals compared to the sleep stage (degree of depth of sleep) of the sleep non-rem sleep in mid-term of (3), in addition, during the state of rem sleep is elongated, and the state becoming easily to wake up.Deep body temperature change also becomes rising.
In this sleep later stage, identical for mid-term with the sleep of (3), sleep more shallow, easily wake up because of stimulation, therefore, when detecting the situation that body temperature rises or detecting that health moves, the air conditioning identical with sleep mid-term of (3) can be carried out and control.
In addition, in the sleep later stage of (4), suppose that the change of deep body temperature becomes rising, room temperature changes on the impact stimulated of waking up.Therefore, body temperature rising sleep shoals, and therefore considers to carry out air conditioning control in the mode that room can not be made excessively cold.In addition, phase body temperature adjustment functional rehabilitation, therefore can be adjusted to lower by room temperature after sleep, in order to avoid WA becomes offending state because of heat, can take into account the control of exercising air conditioning temperature and declining.
Generally, think that standing up in sleep waits body action to occur under the more shallow state of sleep, therefore by Depth of sleep being made to improve based on the enhancement of environment of air conditioning control.But body action is except the deterioration of sleep environment, and it is known for also producing together with the improvement of sleeping position or the change of sleep stage.In addition, number of times or frequency have larger individual differences, are difficult to only evaluate sleep environment according to body action.
The air conditioner of the present embodiment changes according to the room temperature in the body action of the people in the above-mentioned sleep state determined by the sleep continuation time, the sleep detected or body temperature, bedroom, carries out air conditioning control.Afterwards, concrete to it control example is described.
(embodiment one)
Fig. 4 is the flow chart of the control of the sleep running of the air conditioner representing embodiment.
Sleep runs through the sleep key pressing remote controller Re and starts, and carries out freezing or heating with design temperature in the scheduled time.
First, sleep timer is set, starts timer (S401).Thus, the sleep timer operation mode of the initial air conditioning running of the sleep of sleep running is started to become.The setting value of sleep timer is set as the time at above-mentioned sleep initial stage.Specifically, the time of 1 ~ 2 hours is set as.
When after the sleep key pressing remote controller Re, when the indoor illumination intensity detected is dimmed, sleep timer can be started by environment detecting portion operable 160.Or the position according to bedding position or people detects body action, when body action tails off, judge to fall asleep, can sleep timer be started.
Then, carry out sleep timer running (S402), before sleep timer to time, repeat sleep timer running (S403) of S402.
In sleep timer running (S402), in order to not facing the people's air-supply in sleep, and the up-down wind direction board of the blow-off outlet of air conditioner is set as the level of omiting (when vertical lower being set as 0 degree, up-down wind direction board is set as the angle of slightly 90 degree) or than horizontal direction upwards, thus do not make air-flow downward, carry out windproof running.Now, detect the position of the people in sleep described later, wish the direction controlling left and right wind direction board to nobody.
As mentioned above, the stage of falling asleep (entering the stage of sleep), reduce room temperature when impelling the heat release from trick, easily to enter sleep.Therefore, the scheduled time (such as, 30 minutes) after the startup from sleep running, the design temperature of refrigeration is set to low 1 ~ 2 DEG C and operates, the time is through returning design temperature for better later.
In addition, when can detect head and the pin of people, fall asleep in the stage above-mentioned, if be set as to the air-supply of pin direction, and when making wind avoid the wind direction of head, promote the heat release of pin easily to enter sleep.
In addition, under most cases, the design temperature of air-conditioning is set as sendible temperature when waking up, therefore in sleep running, controls design temperature with+1 ~ 2 DEG C (but being no more than room temperature 29 DEG C).Or, in order to make temperature change less, be better from the running of current room temperature to-1 ~-2 DEG C.
When in step S403 sleep timer to (S403 is) during the time, stop air conditioning running, carry out sleep watchdog operation mode described below (monitoring sleep running) until exceed the longest Looking Out Time (S404) duration of runs.
Exceed the longest Looking Out Time for (S404 is) time (such as, seven hours) when the duration of runs of sleep watchdog operation mode, terminate sleep running.In addition, also when pressing the stop key of remote controller Re or when specifying other patterns such as refrigerating/heating, sleep running can be terminated.
In sleep watchdog operation mode (monitoring sleep running), detect sleep in people stand up wait body action or body temperature rising, determine whether the body action of more than scheduled volume, or be whether that the body temperature of more than predetermined value rises (S405).
Its result, when not having body action or body temperature to rise (S404's is no), judge to rise whether more than 3 DEG C (S406), when not having room temperature to rise (S406's is no) from the room temperature of setting value, return to S404, continue sleep watchdog operation mode.When there is room temperature and rising (S406 is), carry out windproof running (S408) described later.
When the body action or body temperature that there is more than predetermined value rise (S405 is), judge to rise whether more than 2 DEG C (S407) from the room temperature of setting value, when not having room temperature to rise (S407's is no), returning to S404, continuing sleep watchdog operation mode.When there is room temperature and rising (S407 is), carry out windproof running (S408) described later.
Sleep watchdog operation mode (monitoring sleep running) becomes the air conditioning running in above-mentioned sleep mid-term and sleep later stage, therefore needs not make air-conditioner wind become stimulation of waking up.
Therefore, carry out, to ceiling or air-conditioner wind, the so-called windproof running of wall blowout, carrying out the photothermal air conditioning suppressing room in S408.
Room temperature is judged whether below design temperature in S409, reaching the windproof running (S409's is no) continuing S408 before room temperature becomes design temperature, when room temperature becomes design temperature (S409 is), stop windproof running (S410).
Then, return to S404, during sleep mid-term and sleep later stage, continue sleep watchdog operation mode.
As mentioned above, in sleep watchdog operation mode, intermittently carry out windproof running, therefore, it is possible to suppress indoor circulated air, thus the stimulation of waking up based on wind can be reduced.
Air supply direction now after be described in detail, but obtain ceiling or wall according to the indoor arrangement information detected by layout test section 133 (Fig. 3), and determine its direction.In addition, detecting body action afterwards, the position of person to go to bed or furniture detects, the details of temperature check is described.
According to the above embodiments, even if sleep timer is to the time, also carry out the supervision of room temperature, body temperature and body action, carry out air conditioning running simultaneously, therefore can not wake up because room temperature rises, comfortable sleep environment can be provided.
(embodiment two)
In the sleep timer operation mode of the above embodiments one, the example carrying out air conditioning by sleep timer running at predetermined design temperature is illustrated, but the present embodiment monitors according to body action or body temperature etc. the sleep that sleep state provides more comfortable.
As mentioned above, during sleep timer operation mode with sleep the initial stage corresponding, be in the sleep the darkest stage, air-conditioner wind be difficult to become wake up stimulation during.Therefore, when detecting body action or body temperature rises, at certain hour, air-supply being set as and swinging air-supply, eliminate uncomfortable state in early days.
Fig. 5 is the flow chart representing this sleep timer operation mode.
First, setting sleep timer, starts sleep timer (S501).Thus, sleep timer operation mode is started.The setting value of sleep timer is set as above-mentioned sleep baseline.Specifically, during being set as 1 ~ 2 hours.
When the room brilliancy that also can be detected by environment detecting portion operable 160 after the sleep key pressing remote controller Re is darker, start sleep timer.Or, also can detect body action according to the position of bedding position or people, when body action is less, be judged to fall asleep, start sleep timer.
Then, sleep timer running (S502) is started.In this sleep timer running (S502), blowing to the people slept to not make air-supply, the up-down wind direction board of the blow-off outlet of air conditioner being set as slightly level, iting is desirable to mode down to carry out windproof running with air-flow.Further, after detecting the position of the people slept, the direction controlling left and right wind direction board to nobody is wished.
Then, detect the people in sleep the body action such as to stand up or body temperature rises, determine whether the body action of more than predetermined value, or have the body temperature of more than predetermined value to rise (S503).
When having the body action of more than predetermined value or body temperature rises in S503 (S503 is), up-down wind direction board is made to carry out the wobbling action of certain hour, after certain hour, turn back to the wind direction board position (S504) of above-mentioned windproof running.Then, advance to S505.When there is no body action or body temperature rises (S503's is no), advance to S505.
In S505, before sleep customizer to time, repeat sleep timer running (S505's is no) of S502 ~ S504, turn end (to the transfer of sleep watchdog operation mode) (S505 is) to time luck.
In S504, if excessive wind-engaging, sleep and shoal, therefore body action may increase.Therefore, not to swing to till body action tails off but to be set to certain hour,
Make wind direction board carry out the wobbling action of certain hour as described above, make air-conditioner wind blow to human body temporarily, sendible temperature is declined, carry out improving water flood state.Now, wind speed can arrive by force the degree that can not wake up.
Fig. 6 is the figure of flow process of the sleep running representing the present embodiment, be by the sleep running flow process shown in Fig. 4, the sleep timer operation mode part of S401 ~ S403 replaces to the figure of the flow process shown in Fig. 5.
S501 ~ the S505 of S601 ~ S605 and Fig. 5 of Fig. 6 is corresponding, and the S404 ~ S410 of S606 ~ S612 and Fig. 3 of Fig. 6 is corresponding.Each process is identical, therefore in this description will be omitted.
Can the sleep running flow process of the present embodiment according to Fig. 6, more comfortable sleep environment is provided.
(embodiment three)
In the sleep running of the above embodiments one, two, carry out sleep timer operation mode at the sleep initial stage, carry out sleep watchdog operation mode in sleep mid-term and sleep later stage.But the phase after sleep, sleep becomes more shallow, and the change of deep body temperature becomes rising, therefore room temperature also can become large to the impact stimulated of waking up.Therefore, consider that the phase carries out changing less air conditioning control than the variations in temperature of sleeping mid-term or air-supply after sleep.Below, this process is described.
Fig. 7 is the process chart of the sleep running representing the present embodiment.
In the sleep running of the present embodiment, first, the sleep timer operation mode (S701) illustrated in the S501 ~ S505 (with the S601 ~ S605 of Fig. 6) of the S401 ~ S403 of Fig. 4, Fig. 5 is carried out before during being equivalent to the sleep initial stage, sleep timer to time.
At the end of sleep timer operation mode, judge (S702) in whether the duration of runs is during sleep mid-term, if the duration of runs during sleep mid-term in (S702's is no), the sleep watchdog operation mode carrying out illustrating in the S404 ~ S410 of Fig. 4 or the S606 ~ S612 of Fig. 6 (monitoring sleep running) (S703).
At this, sleep is 3 hours during mid-term, is during 4 ~ 5 hours in the running, carries out the sleep watchdog operation mode of sleeping mid-term.
When in S702 the duration of runs exceeded sleep mid-term during time (S702 is), make process transfer to the sleep watchdog operation mode in sleep later stage.
In addition, in S702, when detecting that the indoor illumination intensity detected by environment detecting portion operable 160 due to sunrise brightens, though the duration of runs be sleep mid-term during, also can make process transfer to sleep the later stage sleep watchdog operation mode.
In the sleep watchdog operation mode of phase after sleep, in S704, judge whether at the longest Looking Out Time (such as the duration of runs, 7 hours) more than, if the duration of runs (S704 is) more than the longest Looking Out Time, then terminate sleep running.
In S704, if the duration of runs is (S704's is no) within the longest Looking Out Time, then detect sleep in people stand up wait body action or body temperature rising, determine whether the body action of more than predetermined value, or have the body temperature of more than predetermined value to rise (S705).
Its result, when not having body action and body temperature rises (S705's is no), whether judging rises from the room temperature of setting value has more than 2 DEG C (S706), when not having room temperature to rise (S706's is no), turn back to S704, continue sleep watchdog operation mode.When there being room temperature to rise (S706 is), carry out windproof running (S708) described later.
When having the body action of more than predetermined value or body temperature rises (S705 is), whether judging rises from the room temperature of setting value has more than 1 DEG C (S707), when not having room temperature to rise (S707's is no), turning back to S704, continuing sleep watchdog operation mode.When there being room temperature to rise (S707 is), carry out windproof running (S708) described later.
This sleep watchdog operation mode (monitoring sleep running) becomes the air conditioning running in above-mentioned sleep later stage, therefore needs to make air-conditioner wind can not become stimulation of waking up.
Therefore, in S708, carry out sending air-conditioner wind, so-called windproof running to ceiling or wall, carry out the photothermal air conditioning suppressing room, and its air quantity is compared with the windproof running in sleep mid-term, air output diminishes,
Room temperature is judged whether below design temperature in S709, continue the windproof running of S708 until room temperature is lower than design temperature (S709's is no), when room temperature is lower than (S709 is) during design temperature, stop windproof running (S710).
Then, turn back to S704, after sleep during the phase, continue sleep watchdog operation mode.
As mentioned above, in sleep watchdog operation mode, intermittently carry out windproof running, therefore indoor circulated air is suppressed, the stimulation of waking up based on wind can be reduced, and with between sleep on-stream period corresponding to later stage, can carry out operating and closing (OFF) and running and open the variations in temperature of the room temperature of (ON) or the less air conditioning control of air-supply change.
In above-mentioned windproof running, be described in detail later, obtain the direction of ceiling or wall according to the layout information of the indoor detected by layout test section 133 (Fig. 3), determine air supply direction.In addition, also later body action is detected, the position of person to go to bed or bedding is detected, the details of temperature check is described.
Generally, if brighter, easily wake up.Therefore, also can change the control of windproof running S708 according to the illumination of the indoor detected by environment detecting portion operable 160, suppress the stimulation of waking up based on air-conditioner wind.Specifically, when indoor brighten, the air quantity of air-conditioner wind is diminished.
According to the above embodiments, even if sleep timer is to the time, while also can carrying out the supervision of room temperature, body temperature and body action, carry out air conditioning running, therefore that can not wake up because room temperature rises, more comfortable sleep environment can be provided.
" room temperature change "
Fig. 8 is the figure of an example of the time variations of room temperature when representing the sleep running having carried out illustrating in the diagram.Figure 8 illustrates supposition sleep timer is set to 2 little constantly, the time process of the opening of room temperature change (solid line) and air-supply (ON)/close (OFF) state (dotted line).
Carry out air at room temperature regulable control to become the running of constant sleep timer operation mode, until passing through for 2 hours sleep timer setting.Now, after up-down wind direction board being set as the level of omiting, windproof running is carried out continuously air-flow can not be made to encounter human body.
Constantly little when have passed through 2 to sleep timer setting, shift to sleep watchdog operation mode.More specifically, figure 8 illustrates and detect that body action or body temperature rise, and, detect the state when room temperature of 2 DEG C rises.In sleep watchdog operation mode, carry out air conditioning running when detecting that room temperature rises, shut down when room temperature reaches design temperature, therefore to become sawtooth as shown in figure wavy in room temperature change.In addition, the interval air-supply of windproof running is carried out.
In other words, in sleep watchdog operation mode, when detecting that body action or body temperature rise, and, when the difference of the indoor temperature at the end of sleep timer operation mode and current indoor temperature is more than predetermined value, carry out air conditioning running, the air conditioning carried out thus for maintaining the room temperature at the end of sleep timer operation mode controls.
" design temperature change "
Fig. 9 is the figure of an example of the time variations representing design temperature change the control example of design temperature as the change according to sleep stage, sleep running.According to the four-stage (1) of described sleep fall asleep the stage, (2) sleep initial stage, (3) sleep mid-term, (4) sleep later stage, change sleep running design temperature.In addition, fall asleep the stage in (1), (2) during the sleep initial stage, carry out the sleep timer operation mode of the setting-up time air conditioning running of described sleep timer, sleep mid-term in (3), (4) during the sleep later stage, detect more than the predetermined value of described person to go to bed body action detect or predetermined value more than body temperature rise at least one party and predetermined value more than room temperature rise time, start air conditioning running, the sleep watchdog operation mode repeating the windproof running of blowing air-conditioner wind to wall or ceiling was carried out before room temperature becomes below design temperature.
Specifically, fall asleep in the stage in described (1), make design temperature reduce by 1 DEG C, create and become easy from the heat release of trick, the environment that deep body temperature easily declines.This fallen asleep time in stage is set as about 0.5 hour.
Just interim in then (1) fall asleep (2) sleep in stage, turn back to design temperature, carry out until sleep timer is to the sleep timer running of about 2 hours of time.
After sleep timer to time, to the transfer of sleep watchdog operation mode, in the stage (3 ~ 4 hours) in sleep mid-term, do not change design temperature, and carry out windproof running by spells according to room temperature change.
In the sleep later stage afterwards, along with the rising of deep body temperature, the design temperature of air conditioning is made little by little to increase.Thus, reduce thermal stimulus, prevent unwanted waking up.
" position of human body and body action detection method "
Then, the position of human body detection method of person to go to bed of air supply direction of the sleep timer running for determining S402, S502, S601 and the body action detection method of S405, S503, S603, S607, S705 are described.
Position of human body can be obtained according to the positional information of the person of the head of people, chest, wrist, pin etc. or the positional information of bedding.
In addition, the actuating quantity such as to stand up of people is obtained according to the time variations of the position of described health or bedding, by judging whether this actuating quantity is greater than predetermined value and carries out body action detection.
More specifically, in body detecting part 131, based on the off-the-air picture taken by the shooting such as CCD (ChargeCoupledDevice, charge coupled device) unit 110, detected by known image recognition technology and lift one's head or the health of pin etc.The body action such as to stand up of person to go to bed is judged according to the time variations (amount of exercise) of the position of the head of the people detected by this body detecting part 131.
In going to bed, indoor illumination is lower, and after therefore irradiating near infrared light by near infrared ray light projector 115 during shooting, shooting near-infrared image, judges body action.
Or, by near infrared ray light projector 115 after indoor irradiation near infrared light, taken, in object detection portion 132 by the near-infrared image of shooting unit 110 to indoor, according to the near-infrared image of these indoor, detect bedding by known image recognition technology.The body action such as to stand up of person to go to bed is judged according to the time variations (amount of exercise) of the position of the bedding detected by this object detection portion 132.
Or the bedding position also can combined the body position detected by body detecting part 131 and be detected by this object detection portion 132, judges the body action such as to stand up of person to go to bed.
" body temperature rise detection method "
Then, the body temperature rise detection method of S405, S503, S603, S607, S705 is described.
In the temperature check of person to go to bed, the temperature of the position of the Temperature Distribution detected by thermoelectric pile 120 that the position of human body determined by the bedding position obtained with detect according to the body position detected by body detecting part 131 or object detection portion 132 is corresponding, be set as the body temperature of person to go to bed, carried out temperature check.
Detect that body temperature rises according to the time variations of this testing result.
In addition, if the resolution ratio of the Temperature Distribution detected by thermoelectric pile 120 is higher, also can judges the position of human body according to Temperature Distribution, carry out temperature check.
" detection method of wall/ceiling "
As follows, the ceiling or wall of blowing in the windproof running of S408, S610, S708 is detected by layout test section 133.
Layout test section 133 is based on the off-the-air picture taken by shooting unit 110, by extracting edge in image, extracting thick long edge, extend straight line, generate intersection point, the focus point of intersection point being set as end point, detect indoor corner, the corner detected is set to the wiring with wall and wall or wall and ceiling or wall and floor, detects the position in the face on indoor wall or ceiling or floor.Thereby, it is possible to determine the direction of blowing in windproof running.
In addition, the detection of wall/ceiling, also can be obtained under the darker state in going to bed to indoor irradiation near infrared light by near infrared ray light projector 115, but wishes to detect when waiting indoor illumination intensity brighter by day.
" heating running "
In the above description, sleep running during refrigeration is illustrated, but also can applies when heating.
In the winter heated of using air-condition machine, air themperature is lower, but by adjustment bedding, body temperature passes to bedding, and bedding warms, and therefore feels comfortably cool than summer in the sleep of bedroom bed.But, when falling asleep room or bedding colder, therefore can not carry out heat release from trick, hinder the decline of deep body temperature, thus there is more difficult problem of falling asleep.Therefore, by making around room or floor, warming around bedding, can easily fall asleep.Now, directly can impel the heat release of health during blowing, be not therefore directly dry to human body, but carried out running that room is warmed by windproof running.
Especially, can detect lift one's head and pin time, during sleep, cold head and warm foot be better, therefore also can to the hot wind of the direction blowing of pin.
Sleep in sleep more stable, but time indoor temperature decline uniform temperature (such as 13 DEG C), it is desirable to again to operate, carry out windproof running.Now also in the same manner as summer, existence air-supply or temperature change become the possibility of waking up and stimulating, and therefore wind speed are set as gentle breeze for better.
WA body temperature rises, if therefore room temperature is lower, body temperature is difficult to rise, and there is the problem being difficult to wake up.Therefore, during corresponding with the sleep later stage, design temperature is changed to higher value.
In addition, possess to press timer start after cumulative time or the function that learning of time period that stops of running, when room warms gradually from before this 1 hour, or when detecting that outside brightens by detecting unit at sunshine, carry out the control that room is warmed gradually.
For the wind direction of air-conditioner wind during heating, in the running down as usually operated, warm braw directly blows to human body.But, be set as warm air when operating upward and be trapped in top, the therefore fluctuation of temperature in room.Therefore, make left and right wind direction expand full shelves to, come warm wall or floor by the form directly blowing to wall or ground, thus radiation can be adopted to heat such mode.
More specifically, the handling process of the sleep running during refrigeration illustrated in the diagram is changed to as follows.
When the sleep timer running of S402, based on the position of human body detected by body detecting part 131 (with reference to Fig. 3) or the bedding position detected by object detection portion 132, left and right wind direction board 104, to set left and right wind direction board 104, is set to the air-supply of the most laggard row air-conditioner wind by the direction obtaining nobody.Thereby, it is possible to make air-conditioner wind become to wake up to heat irritatingly.
Now, according to the configuration of the furniture detected by object detection portion 132 etc., presumption heats the convection path of wind, as long as human body is not within the scope of this.
In addition, when the windproof running of S408, according to the indoor arrangement information detected by layout test section 133, the direction on wall or floor is obtained.According to these and the position of human body that detected by body detecting part 131 or object detection portion 132 (with reference to Fig. 3), decide the direction on wall or the floor that will blow, set the air-supply of left and right wind direction boards 104 and the laggard row air-conditioner wind of up-down wind direction board 105 according to these.
In addition, in order to heat running, S405, S406 change to the judgement carrying out room temperature decline, and S409 change to judge room temperature be greater than design temperature.
Also same control is carried out in the flow process of Fig. 5 ~ Fig. 7.
" many people control "
When many people are at the position h.d. of the dispersion of indoor, it is poor to there is individual in the change of sleep stage or Temperature changing, therefore, in sleep watchdog operation mode, detect that the body action of someone is more than scheduled volume or when the body temperature of someone rises more than predetermined value, carries out windproof running.That is, when detecting that who is in uncomfortable state, in order to eliminate uncomfortable state, windproof running is carried out.
Windproof running (S409 etc.) is now according to the indoor arrangement information detected by layout test section 133 (Fig. 3) and the position of human body detected by body detecting part 131 or object detection portion 132 (with reference to Fig. 3), with people be not in mode in the stream of circulated air to left and right wind direction board 104 and up-down wind direction board 105 towards controlling, to blow air-conditioner wind to the direction on wall or ceiling or floor.
" selection of blowing air-supply/calm air-supply "
To operate (S402 etc.) and in windproof running (S409 etc.), air-conditioner wind can not blow to the people in sleep at the sleep timer of the above embodiments.But, feel colder uncomfortable when having people less to feel that wind ability is comfortable or have people to blow to wind, like difference according to people.
Therefore, except sleep timer, the indication key can selecting blowing air-supply/windproof air-supply can also be set on remote controller Re.Now, with after sleep timer sets or press the button of canyon/windproof together with the button of sleep timer, determine that sleep timer operates or the wind direction of windproof running thus, the air conditioning liked can be carried out in sleep.
When indicating windproof air-supply, time setting certain hour being swung air-supply running (S504, S604) changes to the shorter time.
In addition, in above-mentioned sleep timer running (S402 etc.) and windproof running (S409 etc.), also can be set as and make that wind speed dies down further, air quantity reduces, promote and blow out design temperature etc.
When indicating blowing air-supply, operating towards carrying out swings air-supply of left and right wind direction board 104 or up-down wind direction board 105 is rotated in the mode of blowing air-conditioner wind within a certain period of time to the people in sleep in above-mentioned windproof running (S409 etc.), afterwards, air-conditioner wind is blown to wall or ceiling/floor.
When many people h.d., the mode also can blowing air-conditioner wind to the people that body action is more carries out above-mentioned swing air-supply running.
In the room temperature of the above embodiments, also can obtain according to the Temperature Distribution detected by thermoelectric pile 120 with the position of human body detected by body detecting part 131 near position (such as, bedding position or bed) corresponding temperature, these are set as room temperature.Thus, temperature accuracy improves, and therefore can provide more comfortable sleep environment.
As mentioned above, the air conditioner of the present embodiment is by shooting unit 110 or thermoelectric pile 120 or body detecting part 131 or object detection portion 132, indoor human body is detected according to image information or temperature information, judge its variable quantity (body action/body temperature rises), carry out air conditioning control.Thus, can the air conditioning corresponding with the state of person to go to bed be carried out, more comfortable sleep environment can be provided.
In addition, the air conditioner of embodiment can also possess current pyroelectric infrared sensor, detects body actions such as standing up.Thus, can judge that person to go to bed's the body action that body action detects the people in sleep more simply such as to stand up than the time variations of the testing result from body detecting part 131.In addition, can not rely on illumination condition and detect, therefore testing result is stablized.
In addition, the present invention is not limited to the above embodiments, comprises various variation.The above embodiments are the detailed descriptions carried out for the ease of understanding the present invention, might not possess illustrated all structures.In addition, the aliquot replacement of the structure of certain embodiment can be become the structure of other embodiments, in addition, also can increase the structure of other embodiments to the structure of certain embodiment.

Claims (12)

1. an air conditioner, is characterized in that, possesses:
Human detection unit, it detects the human body in air conditioned spaces;
First operation mode, it carries out air conditioning running after setting timer to after a predetermined time, is terminating air conditioning running after the described scheduled time; And
Second operation mode, it is after described first operation mode terminates, and time more than the human motion gone out by described human detection unit inspection predetermined value, starts air conditioning running.
2. air conditioner according to claim 1, is characterized in that,
Described second operation mode, after described first operation mode terminates, the difference of indoor temperature and design temperature is more than predetermined value, and time more than the human motion that gone out by described human detection unit inspection predetermined value, starts air conditioning running.
3. air conditioner according to claim 1, is characterized in that,
Described second operation mode, the indoor temperature at the end of described first operation mode and the difference of current indoor temperature more than predetermined value, and time more than the human motion that gone out by described human detection unit inspection predetermined value, start air conditioning running.
4. an air conditioner, is characterized in that, possesses:
Human detection unit, it detects the human body in air conditioned spaces;
First operation mode, it carries out air conditioning running after setting sleep timer to after a predetermined time, is terminating air conditioning running after the described scheduled time; And
Second operation mode, it is after described first operation mode terminates, and when the temperature of the human body gone out by described human detection unit inspection is more than predetermined value, starts air conditioning running.
5. air conditioner according to claim 4, is characterized in that,
Described second operation mode, after described first operation mode terminates, the difference of indoor temperature and design temperature is more than predetermined value, and the human body temperature gone out by described human detection unit inspection more than predetermined value time, start air conditioning running.
6. air conditioner according to claim 4, is characterized in that,
Described second operation mode, the indoor temperature at the end of described first operation mode and the difference of current indoor temperature more than predetermined value, and the human body temperature gone out by described human detection unit inspection more than predetermined value time, start air conditioning running.
7. air conditioner according to claim 4, is characterized in that,
Possess the thermoelectric pile for human body temperature,
Described second operation mode, when the human body temperature detected by described thermoelectric pile is more than predetermined value, starts air conditioning running.
8. the air conditioner according to any one in claim 1 to 7, is characterized in that,
Vertical lower is set as 0 degree by described first operation mode and described second operation mode, and the angle of up-down wind direction board is set as more than 90 degree.
9. the air conditioner according to any one in claim 1 to 7, is characterized in that,
Described first operation mode and described second operation mode make up-down wind direction board and left and right wind direction board towards the direction avoiding the human body gone out by described human detection unit inspection.
10. the air conditioner according to any one in claim 1 to 7, is characterized in that,
During cooling operation, described first operation mode carries out air conditioning running according to design temperature, and described second operation mode carries out air conditioning running according to the target temperature higher than described design temperature.
11. air conditioners according to any one in claim 1 to 7, is characterized in that,
When heating running, described first operation mode carries out air conditioning running according to design temperature, and described second operation mode carries out air conditioning running according to the target temperature lower than described design temperature after air conditioning running starts.
12. air conditioners according to claim 10, is characterized in that,
During cooling operation, described second operation mode from air conditioning running after have passed through the scheduled time time, improve described target temperature.
CN201510087583.0A 2014-09-12 2015-02-25 Air conditioner Pending CN105423477A (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
JP2014-186802 2014-09-12
JP2014186802A JP2016061446A (en) 2014-09-12 2014-09-12 Air conditioner

Publications (1)

Publication Number Publication Date
CN105423477A true CN105423477A (en) 2016-03-23

Family

ID=55501872

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201510087583.0A Pending CN105423477A (en) 2014-09-12 2015-02-25 Air conditioner

Country Status (2)

Country Link
JP (1) JP2016061446A (en)
CN (1) CN105423477A (en)

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106839280A (en) * 2017-01-04 2017-06-13 青岛海尔空调器有限总公司 Air-conditioning sleep control method
CN106839279A (en) * 2017-01-04 2017-06-13 青岛海尔空调器有限总公司 A kind of air-conditioning sleep control method
CN107703764A (en) * 2017-09-27 2018-02-16 珠海格力电器股份有限公司 Apparatus control method and device
CN107883443A (en) * 2017-11-06 2018-04-06 海信(山东)空调有限公司 Air conditioner and its control method
CN111336652A (en) * 2018-12-19 2020-06-26 松下知识产权经营株式会社 Information processing method and information processing apparatus

Families Citing this family (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP6941938B2 (en) * 2016-12-15 2021-09-29 三菱電機株式会社 Humidifier and environmental control system
JP6998558B2 (en) * 2017-03-22 2022-01-18 パナソニックIpマネジメント株式会社 Air conditioning control method and air conditioning control system
JP2018185055A (en) * 2017-04-24 2018-11-22 日立ジョンソンコントロールズ空調株式会社 Air conditioner
CN107883539B (en) * 2017-10-17 2021-03-19 芜湖美智空调设备有限公司 Air conditioner controller, air conditioner, control method thereof and storage medium
JP7143582B2 (en) * 2017-11-24 2022-09-29 三菱電機株式会社 Fan
JP6893337B2 (en) * 2018-02-01 2021-06-23 パナソニックIpマネジメント株式会社 Air conditioning system
JP7460876B2 (en) * 2019-04-22 2024-04-03 ダイキン工業株式会社 air conditioning system
CN113614461A (en) * 2019-12-06 2021-11-05 松下知识产权经营株式会社 Control method, air conditioner, and program
JP7447467B2 (en) 2019-12-18 2024-03-12 三菱電機株式会社 air conditioner
WO2023012922A1 (en) * 2021-08-04 2023-02-09 三菱電機株式会社 Air conditioner and sensor control device
CN114046578B (en) * 2021-11-29 2022-10-21 四川虹美智能科技有限公司 Movable air conditioner

Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1322926A (en) * 2000-05-16 2001-11-21 Lg电子株式会社 Sleep running control method for refrigerating air conditioner
CN1849994A (en) * 2006-06-01 2006-10-25 中山大学 Domestic sleeping health monitoring system
CN201351979Y (en) * 2008-12-22 2009-11-25 浙江大学城市学院 Energy-saving automatic air conditioner control switch
CN201438011U (en) * 2009-05-05 2010-04-14 海尔集团公司 Air conditioner controlled through human induction
JP2013127328A (en) * 2011-12-19 2013-06-27 Panasonic Corp Air conditioner
CN103836759A (en) * 2012-11-20 2014-06-04 广东美的制冷设备有限公司 Air conditioner system and sleep control method and device thereof
CN104089372A (en) * 2014-07-04 2014-10-08 四川长虹电器股份有限公司 Method for controlling air conditioner and air conditioner
CN104235997A (en) * 2013-06-08 2014-12-24 广东美的制冷设备有限公司 Air conditioner control method and air conditioner system

Family Cites Families (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH02133749A (en) * 1988-11-15 1990-05-22 Mitsubishi Heavy Ind Ltd Operation control of air conditioner
JP3149932B2 (en) * 1993-05-27 2001-03-26 株式会社ノーリツ Air conditioner operation control method
JPH09303840A (en) * 1996-05-13 1997-11-28 Toshiba Corp Air conditioner
JPH11211203A (en) * 1998-01-30 1999-08-06 Sharp Corp Air conditioner
JP2001108278A (en) * 1999-10-05 2001-04-20 Daikin Ind Ltd Air conditioner
JP2009103392A (en) * 2007-10-25 2009-05-14 Panasonic Corp Air conditioner
JP5109732B2 (en) * 2008-03-10 2012-12-26 ダイキン工業株式会社 Air conditioning control system
JP2010127520A (en) * 2008-11-27 2010-06-10 Fujitsu General Ltd Air conditioner

Patent Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1322926A (en) * 2000-05-16 2001-11-21 Lg电子株式会社 Sleep running control method for refrigerating air conditioner
CN1849994A (en) * 2006-06-01 2006-10-25 中山大学 Domestic sleeping health monitoring system
CN201351979Y (en) * 2008-12-22 2009-11-25 浙江大学城市学院 Energy-saving automatic air conditioner control switch
CN201438011U (en) * 2009-05-05 2010-04-14 海尔集团公司 Air conditioner controlled through human induction
JP2013127328A (en) * 2011-12-19 2013-06-27 Panasonic Corp Air conditioner
CN103836759A (en) * 2012-11-20 2014-06-04 广东美的制冷设备有限公司 Air conditioner system and sleep control method and device thereof
CN104235997A (en) * 2013-06-08 2014-12-24 广东美的制冷设备有限公司 Air conditioner control method and air conditioner system
CN104089372A (en) * 2014-07-04 2014-10-08 四川长虹电器股份有限公司 Method for controlling air conditioner and air conditioner

Non-Patent Citations (2)

* Cited by examiner, † Cited by third party
Title
李秀梅: "《家用电器使用宝典》", 31 March 2001, 远方出版社 *
王国忠: "《家用制冷设备维修技术》", 30 August 1999, 山东科学技术出版社 *

Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106839280A (en) * 2017-01-04 2017-06-13 青岛海尔空调器有限总公司 Air-conditioning sleep control method
CN106839279A (en) * 2017-01-04 2017-06-13 青岛海尔空调器有限总公司 A kind of air-conditioning sleep control method
CN107703764A (en) * 2017-09-27 2018-02-16 珠海格力电器股份有限公司 Apparatus control method and device
CN107703764B (en) * 2017-09-27 2020-02-21 珠海格力电器股份有限公司 Equipment control method and device
CN107883443A (en) * 2017-11-06 2018-04-06 海信(山东)空调有限公司 Air conditioner and its control method
CN107883443B (en) * 2017-11-06 2023-08-25 海信空调有限公司 Air conditioner and control method thereof
CN111336652A (en) * 2018-12-19 2020-06-26 松下知识产权经营株式会社 Information processing method and information processing apparatus
CN111336652B (en) * 2018-12-19 2023-02-28 松下知识产权经营株式会社 Information processing method and information processing apparatus

Also Published As

Publication number Publication date
JP2016061446A (en) 2016-04-25

Similar Documents

Publication Publication Date Title
CN105423477A (en) Air conditioner
CN107013978B (en) Air conditioner indoor unit and air supply method thereof
CN104422085B (en) Air conditioner
JP6296633B1 (en) Air conditioner
KR101523424B1 (en) Air conditioner
JP7143582B2 (en) Fan
CN110895010B (en) Air conditioner control method and device, storage medium and air conditioner
CN108361926B (en) Air conditioner control method based on temperature and cold feeling and air conditioner
US10660450B2 (en) Air-conditioning control method and air-conditioning control system for in-bed air conditioning
CN106016614A (en) Air conditioner operation control method, air conditioner operation control system and air conditioner
CN105091218A (en) Intelligent sleeping control method of air conditioner
CN1321861A (en) Air conditioner and its controlling method
CN112567183A (en) Air conditioner, control device, air conditioning method, and program
CN104566780A (en) Indoor unit of air conditioner and air conditioner utilizing indoor unit
JP2017198393A (en) Controller, air conditioning system, and control method and program
JPH10300165A (en) Air conditioner
JP6823996B2 (en) Air conditioning system and humidification unit
CN107014042A (en) Air conditioning control method and system
CN112178785A (en) Dehumidification control method and dehumidification control equipment for air conditioner
JP2020051695A (en) Air conditioning system and air conditioning method
JP2015206483A (en) air conditioner
CN108332376A (en) A kind of air conditioner and its control method
CN108332350A (en) A kind of air conditioner and its control method
JP3210852B2 (en) Environmental control device and environmental control method
JP3080187B2 (en) Control device for 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
C41 Transfer of patent application or patent right or utility model
TA01 Transfer of patent application right

Effective date of registration: 20160823

Address after: Hongkong, China

Applicant after: Johnson Controls Hitachi air conditioning technology (Hongkong) Co., Ltd.

Address before: Tokyo, Japan, Japan

Applicant before: Hitachi Appliances Inc.

TA01 Transfer of patent application right
TA01 Transfer of patent application right

Effective date of registration: 20180614

Address after: Tokyo, Japan, Japan

Applicant after: Hitachi Johnson Controls Air Conditioning Co., Ltd.

Address before: Hongkong, China

Applicant before: Johnson Controls Hitachi air conditioning technology (Hongkong) Co., Ltd.

WD01 Invention patent application deemed withdrawn after publication
WD01 Invention patent application deemed withdrawn after publication

Application publication date: 20160323