CN205939565U - Air conditioner control system and air conditioner - Google Patents

Air conditioner control system and air conditioner Download PDF

Info

Publication number
CN205939565U
CN205939565U CN201620881919.0U CN201620881919U CN205939565U CN 205939565 U CN205939565 U CN 205939565U CN 201620881919 U CN201620881919 U CN 201620881919U CN 205939565 U CN205939565 U CN 205939565U
Authority
CN
China
Prior art keywords
air
temperature
conditioning
module
human body
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.)
Expired - Fee Related
Application number
CN201620881919.0U
Other languages
Chinese (zh)
Inventor
廖俊杰
李树云
朱芳勇
彭光前
蔡剑
高智强
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.)
Gree Electric Appliances Inc of Zhuhai
Original Assignee
Gree Electric Appliances Inc of Zhuhai
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 Gree Electric Appliances Inc of Zhuhai filed Critical Gree Electric Appliances Inc of Zhuhai
Priority to CN201620881919.0U priority Critical patent/CN205939565U/en
Application granted granted Critical
Publication of CN205939565U publication Critical patent/CN205939565U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Abstract

The utility model provides air conditioner control system and air conditioner, air conditioning system includes: set up the fuselage in air conditioner internal unit according to the direction of gravity, obtain a plurality of temperature sensor s of air conditioner internal unit fuselage along the direction of gravity's indoor temperature gradient, set up the fuselage in air conditioner internal unit, obtain the receiver of the remote controller end temperature that two temperature sensor of setting on remote controller of an air conditioner recorded, be connected with a plurality of temperature sensor and receiver, according to the temperature treatment ware of indoor temperature gradient with remote controller end temperature calculation indoor temperature, be connected with the temperature treatment ware, if indoor temperature and default temperature's difference outside the poor scope of default temperature, then is close the air conditioner controller of default temperature's the direction adjustment air -conditioning man rate of doing work towards indoor temperature. The utility model discloses an air conditioner control system and air conditioner use according to indoor temperature gradient and remote controller end temperature calculation's indoor temperature as the foundation, the automatic adjustment air -conditioning man rate of doing work has realized air conditioner temperature regulation's automatic control having improved the efficiency of air conditioner control.

Description

Air-conditioner control system and air-conditioning
Technical field
The utility model is related to household electrical appliance technical field, more particularly, to a kind of air-conditioner control system and air-conditioning.
Background technology
With expanding economy, the raising of people's living standard.Air-conditioning has had become as ordinary household electrical appliances, and is installed in In various public buildings.Traditional domestic air conditioning, typically (as warm in preset according to the preset operating conditions that user sets Degree, air quantity, blowing angle etc.) work.After air-conditioning unlatching, air-conditioning internal machine will be according to the temperature of user preset, air quantity, blowing Angle, room air is sucked and carries out heat exchange to room air.Then blowing hot-air or cold wind, the closed-loop that user is located Border carries out temperature adjustment.
At present, air-conditioning can only work according to the preset operating conditions of user, needs the default work of user's manual setting air-conditioning Make the control that condition just enables air-conditioning, control the inefficiency of air-conditioning.
Utility model content
Based on this it is necessary to be directed to above-mentioned technical problem, provide a kind of air-conditioner control system and air-conditioning, to improve control empty Adjust.
A kind of air-conditioner control system, including:
It is arranged at air-conditioning internal machine fuselage according to gravity direction, obtain described air-conditioning internal machine fuselage along the interior of gravity direction Multiple first temperature sensors of thermograde;
It is arranged at air-conditioning internal machine fuselage, obtain the remote control that the second temperature sensor being arranged on air-conditioning remote control records The receiver of end temperature;
It is connected with the plurality of first temperature sensor and described receiver, distant with described according to described indoor temperature gradient The Temperature processor of control device end temperature computation indoor temperature;
Be connected with described Temperature processor, if the difference of described indoor temperature and preset temperature preset temperature difference scope it Outward, then adjust the air-conditioner controller of air-conditioning work power close to the direction of described preset temperature towards described indoor temperature.
Wherein in an embodiment, described Temperature processor includes:It is connected with the plurality of first temperature sensor, obtain Be taken at the rate of change of described indoor temperature gradient in Preset Time, and when described rate of change is within the scope of default nearly zero according to First calculating module of described indoor temperature gradient calculation mean temperature.
Wherein in an embodiment, described first calculating module is connected with described receiver, if described receiver obtains The temperature failure of described remote control end, then described first calculate module using described mean temperature as described indoor temperature.
Wherein in an embodiment, described Temperature processor also includes:It is connected with the described first calculating module, if described Receiver obtains the temperature success of described remote control end, then according to described remote control end temperature and described mean temperature calculate Second calculating module of indoor temperature.
Wherein in an embodiment, described second calculating module includes:If described mean temperature and described remote control end The difference of temperature, in the range of preset difference value, takes the arbitrary temperature in described remote control end temperature and described mean temperature as institute State the first module of indoor temperature.
Wherein in an embodiment, described second calculating module includes:If described mean temperature and described remote control end The difference of temperature outside preset difference value scope, then takes described remote control end temperature as the second unit of described indoor temperature.
Wherein in an embodiment, described second calculating module includes:When described rate of change default nearly zero scope it When outer, then take described remote control end temperature as Unit the 3rd of described indoor temperature.
Wherein in an embodiment, described air-conditioner controller includes:
Judge that the air-conditioning state of air-conditioning work state judges module;
Judge that module is connected with described air-conditioning state, if air-conditioning work state is refrigeration, improve described air-conditioning man's work done Rate, if air-conditioning work state is to heat, reduces the execution module of air-conditioning work power.
Wherein in an embodiment, also include:
Obtain the sound sensor of the noise information of air-conditioning internal machine place environment;
It is connected with described sound sensor, described noise information is carried out with audio analysis, obtain people in described noise information The Sound Processor Unit of the audio frequency characteristics of body activity noise information;
Described air-conditioner controller is connected with described Sound Processor Unit, and determines human body liveness simultaneously according to described audio frequency characteristics Air-conditioning work power is adjusted according to described human body liveness.
Wherein in an embodiment, described Sound Processor Unit is connected with described Temperature processor, if described indoor temperature With the difference of preset temperature within the scope of preset temperature is poor, then described Sound Processor Unit execution carries out sound to described noise information The task of frequency analysis.
Wherein in an embodiment, described sound sensor includes judging the sound of position of human body according to described noise information Sound directive property is popped one's head in;Described air-conditioner controller includes being connected with described sound directivity probe, for according to described position of human body The air-out direction of adjustment air-conditioning internal machine adjusts module towards the wind direction of described position of human body.
Wherein in an embodiment, described air-conditioner controller also includes:It is connected with described sound sensor, by described people Body liveness is compared with default human body liveness and notifies when described human body liveness is mated with described default human body liveness The comparison module of described sound sensor work;Execution module is connected with the described module that compares, when described human body liveness and institute When stating default human body liveness mismatch, execution is described to adjust air-conditioning work power according to described human body liveness.
A kind of air-conditioning is it is characterised in that include the air-conditioner control system in any of the above embodiment.
Above-mentioned air-conditioner control system and air-conditioning, when the second temperature sensor that receiver gets on air-conditioning remote control is surveyed Remote control end temperature when, the Temperature processor being connected with receiver according to air-conditioning internal machine fuselage along gravity direction interior Thermograde and described remote control end temperature are calculating indoor temperature it is ensured that the accuracy that calculates of indoor temperature.And then with The air-conditioner controller that Temperature processor is connected is again according between the difference between indoor temperature and preset temperature and preset temperature difference Relation, towards described indoor temperature close to the direction of described preset temperature adjust air-conditioning work power direction adjustment air-conditioning man The rate of doing work.Air-conditioner control system is it is achieved thereby that air-conditioning is empty come adjust automatically with preset temperature according to calculating the indoor temperature obtaining Adjust operating power, improve the efficiency of airconditioning control.
Brief description
Fig. 1 is the structural representation of the air-conditioner control system in one embodiment of the utility model;
Fig. 2 is the structural representation of the air-conditioner control system in another embodiment of the utility model;
Fig. 3 is the structural representation of the air-conditioner control system in the utility model further embodiment.
Fig. 4 is the structural representation of the air-conditioner control system in another embodiment of the utility model.
Fig. 5 is the structural representation of the air-conditioner control system in one embodiment of the utility model.
Specific embodiment
In order that the purpose of this utility model, technical scheme and advantage become more apparent, below in conjunction with accompanying drawing and enforcement Example is further elaborated to the utility model air-conditioner control system and air-conditioning.It should be appreciated that it is described herein concrete Embodiment only in order to explain the utility model, is not used to limit the utility model.
Refer to Fig. 1, the utility model embodiment further provides for a kind of air-conditioner control system 10, including:According to gravity Direction is arranged at air-conditioning internal machine 100 fuselage, obtains air-conditioning internal machine 100 fuselage multiple along the indoor temperature gradient of gravity direction First temperature sensor 124;It is arranged at air-conditioning internal machine 100 fuselage, obtain the second temperature sensing being arranged on air-conditioning remote control The receiver 160 of the remote control end temperature that device records;It is connected with multiple first temperature sensors 124 and receiver 160, according to room Interior thermograde and the Temperature processor 120 of remote control end temperature computation indoor temperature;It is connected with Temperature processor 120, if room The difference of interior temperature and preset temperature outside preset temperature difference scope, is then adjusted towards indoor temperature close to the direction of preset temperature The air-conditioner controller 110 of whole air-conditioning work power.
Air-conditioning internal machine 100 refers to be arranged on the indoor indoor apparatus of air conditioner for air-out.Including but not limited to install indoors The on-hook of wall, vertical cabinet air-conditioner and window machine.Indoor temperature gradient refers to the change of indoor temperature in unit length Value.Air-conditioning internal machine 100 fuselage refers to the temperature of air-conditioning internal machine in the vertical direction along the indoor temperature gradient of gravity direction Gradient.Specifically, multiple first temperature sensors can be arranged by the direction along gravity on air-conditioning internal machine 100 fuselage 124, the temperature value of measurement respective heights is calculating acquisition.The quantity of multiple first temperature sensors 124 does not limit, can be according to sky The volume of machine 100 and be actually needed setting in tune.It is appreciated that the quantity of the first temperature sensor 124 is more, the temperature recording Angle value and height value are more, thus also more accurate when calculating indoor temperature gradient.
Receiver 160 can wirelessly be communicated with second temperature sensor, thus receiving, to be arranged on air-conditioning distant The remote control end temperature that second temperature sensor on control device records.Remote control end temperature is by being arranged on air-conditioning remote control Second temperature sensor record.When generally user uses air-conditioning remote control, air-conditioning remote control can be placed on and relatively close to The position of human body.Therefore, remote control end temperature air-conditioning remote control recording is the interior space of the relatively position of human body Temperature.
Indoor temperature refers to the temperature of air-conditioning internal machine 100 place environment.When Temperature processor 120 gets remote control end temperature When spending, can be according to indoor temperature gradient and remote control end temperature computation indoor temperature.Temperature processor 120 is according to indoor temperature Gradient and remote control end temperature computation indoor temperature, can be accomplished in several ways.As asked by indoor temperature gradient One mean value, is then being averaging with remote control end temperature by mean value.Temperature processor 120 is used for obtaining indoor temperature, Indoor temperature can adjust the foundation of operating power as air-conditioning.Indoor temperature refers to the temperature of air-conditioning internal machine place environment.Room The acquisition of interior temperature can have various ways, such as can directly pass through setting temperature-sensitive sticker in the environment and obtain.
Air-conditioner controller 110 is connected with Temperature processor 120, and the indoor temperature of acquisition is sent to by Temperature processor 120 Air-conditioner controller 110.Air-conditioner controller 110 adjusts air-conditioning work power according to indoor temperature with preset temperature.Preset temperature is User open air-conditioning before, air-conditioning preset temperature set in advance.It is appreciated that preset temperature difference scope can be as needed Select, can be such as positive and negative 1 degree, or positive and negative 0.5 degree.When such as preset temperature difference scope is in the range of -1 to+1, if Indoor temperature is 0.5 with the difference of preset temperature, then the difference of indoor temperature and preset temperature is just in preset temperature difference scope Within.If indoor temperature is 1.5 with the difference of preset temperature, then the difference of indoor temperature and preset temperature is just in default temperature Outside degree difference scope.Refer to towards indoor temperature close to the direction of preset temperature adjustment air-conditioning work power, by adjusting air-conditioning Operating power makes difference carry out to close to the direction of preset temperature difference.Such as when indoor temperature is more than preset temperature, and need When adjusting air-conditioning power.If refrigerating state, then be accomplished by increasing air-conditioning power, strengthen refrigeration;If heating state, that It is accomplished by reducing air-conditioning power, weaken and heat.
In the present embodiment, the remote control that records when the second temperature sensor that receiver 160 gets on air-conditioning remote control During the temperature of device end, the Temperature processor 120 that is connected with receiver 160 according to air-conditioning internal machine 100 fuselage along gravity direction room Interior thermograde and remote control end temperature are calculating indoor temperature it is ensured that the accuracy that calculates of indoor temperature.And then with temperature The air-conditioner controller 110 that degree processor 120 is connected is again poor according to the difference between indoor temperature and preset temperature and preset temperature Between relation, towards indoor temperature close to the direction of preset temperature adjust air-conditioning work power direction adjustment air-conditioning man's work done Rate.Air-conditioner control system 10 achieves air-conditioning according to the indoor temperature calculating acquisition and preset temperature come adjust automatically air-conditioning work Power, improves the efficiency of airconditioning control.
Refer to Fig. 2, in one embodiment, Temperature processor 120 includes:With multiple first temperature sensors 124 even Connect, obtain the rate of change of indoor temperature gradient in Preset Time, and when rate of change is within the scope of default nearly zero according to room First calculating module 121 of interior temperature gradient calculation mean temperature.
First calculating module 121 can calculate the indoor temperature gradient change rate in Preset Time.Preset Time is permissible It is arranged as required to, such as 1 minute or 2 minutes.Preset nearly zero scope refer to one set in advance including zero Close to zero scope, can set according to actual needs, such as -0.1 to+0.1, or -0.01 to+0.01.Indoor temperature The rate of change of gradient is zero explanation, the temperature stabilization near air-conditioning internal machine 100 fuselage, such that it is able to according to indoor in Preset Time The degree close to zero for the rate of change of thermograde to judge the degree of stability of the temperature near air-conditioning internal machine 100 fuselage.Pre- If if the rate of change of indoor temperature gradient, within the scope of default nearly zero, illustrates near air-conditioning internal machine 100 fuselage in the time Temperature stabilization.When rate of change is within the scope of default nearly zero, first calculates module 121 puts down according to indoor temperature gradient calculation Samming.At this moment the temperature near air-conditioning internal machine 100 is more stable, and the mean temperature therefore calculating acquisition can be used as Indoor Temperature Degree, or an intermediate quantity as calculating indoor temperature further.
In one embodiment, receiver 160 is connected with the first calculating module 121, if receiver 160 obtains remote control end Temperature failure, then first calculate module 121 using mean temperature as indoor temperature.In the present embodiment, cannot obtain in receiver 160 When getting remote control end temperature, first calculates module 121 using mean temperature as indoor temperature.Then with according to indoor temperature gradient Calculate the mean temperature obtaining as indoor temperature, it is to avoid when air-conditioning remote control does not have electricity or loses it is impossible to obtain Indoor Temperature Degree, thus cause air-conditioner control system 10 cannot work.
In one embodiment, Temperature processor 120 also includes:It is connected with the first calculating module 121, if receiver 160 Obtain the temperature success of remote control end, then calculate the second calculating module of indoor temperature according to remote control end temperature and mean temperature 123.
When receiver 160 gets remote control end temperature, remote control end temperature can be sent to by the first calculating module 121 The second calculating module 123 being connected with the first calculating module 121.Second calculate module 123 can according to remote control end temperature and Mean temperature calculates indoor temperature.Improve the accuracy of result of calculation.The air-conditioner control system 10 of the present embodiment, carries further The high accuracy of indoor temperature, thus improve the accuracy of the air-conditioning work power adjustment carrying out according to indoor temperature.
In one embodiment, the second calculating module 123 includes:If the difference of mean temperature and remote control end temperature is pre- If in difference range, take the arbitrary temperature in remote control end temperature and mean temperature as first module 123a of indoor temperature. Preset difference value scope refers to a scope set in advance, and such as -1 to+1, or 0 can also be set as.If mean temperature With the difference of remote control end temperature in the range of preset difference value, then explanation mean temperature is with remote control end temperature relatively.The One unit 123a takes the arbitrary temperature in remote control end temperature and mean temperature as indoor temperature, thus ensure that indoor temperature Accuracy.
In one embodiment, the second calculating module 123 includes:If the difference of mean temperature and remote control end temperature is pre- If outside difference range, then take remote control end temperature as the second unit 123b of indoor temperature.If mean temperature and remote control Outside preset difference value scope, then the temperature near explanation air-conditioning internal machine 100 is unstable, and second unit 123b is then for the difference of end temperature Take remote control end temperature as indoor temperature, thus ensure that the accuracy of indoor temperature.
In one embodiment, the second calculating module 123 includes:When rate of change is outside presetting nearly zero scope, then take Remote control end temperature is as the 3rd unit 123c of indoor temperature.First calculating module 121 can calculate in Preset Time The rate of change of indoor temperature gradient, when rate of change is outside presetting nearly zero scope, then the temperature near explanation air-conditioning internal machine 100 Unstable, the 3rd unit 123c then takes remote control end temperature as indoor temperature, thus ensure that the accuracy of indoor temperature.
Refer to Fig. 3, air-conditioner controller 110 includes:Judge that the air-conditioning state of air-conditioning work state judges module 111;With Air-conditioning state judges that module 111 connects, if air-conditioning work state is refrigeration, improves air-conditioning work power, if air-conditioning work state For heating the execution module 116 then reducing air-conditioning work power.Air-conditioner control system 10 in the present embodiment, air-conditioning state judges Module 111 may determine that the working condition of air-conditioning is refrigeration or heats.Air-conditioning state judges that module 111 judges air-conditioning work shape When state is refrigerating state, the uncomfortable of human body results from environment temperature height, reduces indoor temperature to the adjustment direction of air-conditioning Direction is carried out, and can breeze up or strengthen compressor operating power, is to carry therefore to the adjustment direction of air-conditioning work power High air-conditioning operating power.When air-conditioning state judges that module 111 judges air-conditioning work state for heating state, not the relaxing of human body Fit and result from environment temperature height, so the adjustment to air-conditioning is carried out towards the direction reducing indoor temperature, little wind-force can be added and subtracted Or reduce compressor operating power, be therefore to reduce air-conditioning work power to the adjustment direction of air-conditioning work power.This enforcement The air-conditioner control system 10 of example, can further increase work by the specific adjustment mode arranging air-conditioning work power Efficiency.
In one embodiment, refer to Fig. 4, air-conditioner control system 10 also includes:Obtain air-conditioning internal machine 100 place environment Noise information sound sensor 130;It is connected with sound sensor 130, noise information is carried out with audio analysis, obtain noise The Sound Processor Unit 150 of the audio frequency characteristics of physical activity noise information in information;Air-conditioner controller 110 and Sound Processor Unit 150 Connect, and determine human body liveness and according to human body liveness adjustment air-conditioning work power according to audio frequency characteristics.
Sound sensor 130 is used for obtaining the noise information of air-conditioning internal machine 100 place environment.
Air-conditioning internal machine 100 place environment refers to the environment being located during air-conditioning internal machine work itself.Such as, air-conditioning internal machine peace Be contained in the parlor of family or company meeting room when, then parlor or meeting room are exactly the environment that air-conditioning internal machine is located.Noise Information refers to the environmental noise collected by sound sensor 130 electric signal changing into environmental noise.Environmental noise bag Include the noise in the environment of all air-conditioning internal machine places, noise that such as people's one's voice in speech, physical activity produce etc..Physical activity produces Raw noise refers to the sound that people sends in the environment in air-conditioning internal machine 100, the sound such as stamped one's foot, the sound rubbed hands, rubs Wipe sound and the voice of object.It is appreciated that traditional noise collection device may be used to embodiment of the present utility model In.
The Sound Processor Unit 150 being connected with sound sensor 130 is used for carrying out audio analysis to noise information, obtains noise The audio frequency characteristics of physical activity noise information in information.Audio analysis include noise information is filtered, and filter out non-human Movable noise information.Sound Processor Unit 150, after by audio analysis, just obtains physical activity noise letter in noise information The audio frequency characteristics of breath.
Air-conditioner controller 110 is connected with Sound Processor Unit 150, and Sound Processor Unit 150 is by the sound of physical activity noise information Frequency feature is sent to air-conditioner controller 110.Air-conditioner controller 110 determines human body liveness according to audio frequency characteristics, then according to people Body liveness adjusts air-conditioning work power.
Human body liveness refers to the active degree of the people in the environment space of air-conditioning internal machine place.Human body liveness can be anti- Answer the comfort level in the environment to temperature sensation for the people.People's audible frequency typically concentrates on medium-high frequency, and physical activity, mobile object The sound sending mostly is low-frequency range noise (20HZ-390HZ), can judge human body liveness with this.In one embodiment, sound Frequency feature is when sharply increasing or vibrating occur suddenly in low-frequency range it is possible to judge that human body liveness is high.If audio frequency characteristics exist It is possible to judge that human body liveness is low when low-frequency range is stablized.Air-conditioner controller 110 adjustment air-conditioning work power can be by adjustment The operating power of the speed of air-conditioning blowing or adjustment compressor of air conditioner is realized.Air-conditioner controller 110 adjusts air-conditioning work power Mode can have multiple, such as can work as human body liveness higher when, suitably heighten or turn down the operating power of air-conditioning.Work as people When body liveness is relatively low, keep air-conditioning work power.
Above-mentioned air-conditioner control system 10, obtains the noise letter of air-conditioning internal machine 100 place environment by sound sensor 130 Breath, obtains the sound of the physical activity noise information in noise information by the Sound Processor Unit 150 being connected with sound sensor 130 Frequency feature.Then the air-conditioner controller 110 by being connected with Sound Processor Unit 150 determines human body liveness simultaneously according to audio frequency characteristics Air-conditioning work power is adjusted according to human body liveness.It is achieved thereby that user need not send instruction orders about adjustment air-conditioning man's work done Rate, by air-conditioner control system 10 adjust automatically air-conditioning work power it is achieved that automatically controlling of air-conditioner temperature regulation, improves sky The efficiency of regulation and control system.
In one embodiment, physical activity noise information is the noise information of noise information medium and low frequency section;Audio frequency characteristics Including physical activity noise intensity and/or frequency.Because, in physical activity noise, people's one's voice in speech is the sound of high frequency, and The sound of people's activity or mobile object is all low-frequency sound.In the present embodiment, physical activity noise information is in noise information The noise information of low-frequency range.Such that it is able to realize the automatic control to air-conditioning by selecting the sound of people's activity or mobile object System, sends instruction without user, realizes air-conditioning and actively adjust indoor temperature, thus more intelligent.
In one embodiment, Sound Processor Unit 150 is connected with Temperature processor 120, if indoor temperature and preset temperature Difference preset temperature difference within the scope of, then Sound Processor Unit 150 executes the task that noise information is carried out with audio analysis.This Embodiment provides air-conditioner control system, if the difference of indoor temperature and preset temperature, within the scope of preset temperature difference, enters one Step adjusts air-conditioning work power according to human body liveness, thus improving the accuracy of airconditioning control further.
Refer to Fig. 5, in one embodiment, air-conditioner controller 110 includes:It is connected with sound sensor 130, by human body Liveness is compared with default human body liveness and the notification voice sensor when human body liveness is mated with default human body liveness 130 comparison module 112;Execution module 116 is connected with comparing module 112, when human body liveness and default human body liveness not During coupling, execution adjusts air-conditioning work power according to human body liveness.
Corresponding one of default human body liveness is stored in the default environmental noise information comparing module 112.Default environment is made an uproar Message breath can be the noise information when not comprising physical activity noise information for the noise information.That is, in air-conditioning internal machine In environment residing for 100, there is no a physical activity noise, and the noise of only naturally occurring.Or it may be possible to the people in environment Body does not send sound it is also possible to be that in environment, nobody exists.Default environmental noise information can be used as the base of a noise Quasi- value, comparing module 112 can be by comparing the audio frequency characteristics of physical activity noise information and the sound of default environmental noise information Frequency feature realizes the comparison of human body liveness and default human body liveness, thus judging that human body liveness is enlivened with default human body Whether degree mates.
If the audio frequency characteristics of default environmental noise information are consistent with the audio frequency characteristics of physical activity noise information, compare mould Group 112 judges that human body liveness is mated with default human body liveness.Thus being not required in the environment that is located at present of air-conditioning internal machine 100 The operating power of air-conditioning is adjusted.Relatively module 112 notifies and compares the sound sensor 130 that module 112 is connected and hold Row obtains the task of the noise information of air-conditioning internal machine 100 place environment.
If the audio frequency characteristics of default environmental noise information are inconsistent with the audio frequency characteristics of physical activity noise information, compare Module 112 may determine that human body liveness is mismatched with default human body liveness.If comparing module 112 to judge that human body is lived Jerk is mismatched with default human body liveness.Relatively module 112 to compare the execution module 116 that module 112 is connected and send life Order is so that execution module 116 executes the task of adjusting air-conditioning work power according to human body liveness.
Air-conditioner control system 10 in the present embodiment, compare module 112 can by judge human body liveness whether with advance If human body liveness mates.When human body liveness is mated with default human body liveness, and compare module 112 to sound sensor 130 give notice so that sound sensor 130 execution obtains the task of the noise information of air-conditioning internal machine 100 place environment.Air-conditioning , so that air conditioning control method is carried out continuously, noise in lasting monitors environment, when finding that human body enlivens for control system 10 Degree is when mate with default human body liveness, the just noise in lasting monitors environment, only finds human body liveness and in advance If human body liveness is unmatched, just carry out air-conditioning work power adjusts the lasting reality it is achieved that to environmental degree of comfort When monitoring, more intelligently.
Refer to Fig. 5, in one embodiment, sound sensor 130 includes judging position of human body according to noise information Sound directivity probe 134;Air-conditioner controller 110 includes being connected with sound directivity probe 134, for being adjusted according to position of human body The air-out direction of whole air-conditioning internal machine adjusts module 115 towards the wind direction of position of human body.
Sound directivity probe 134 can be arranged on air-conditioning internal machine 100.Sound directivity probe 134 can be according to noise Information judges the direction of noise source, therefore just can judge to produce the position of human body of noise according to noise information.Sound directivity 134 position of human body information of probe are sent to the wind direction adjustment module 115 being connected with sound directivity probe 134.Wind direction adjusts Module 115 adjusts the air-out direction of air-conditioning internal machine 100 towards position of human body according to position of human body information again.In the present embodiment, empty Control system 10 is adjusted to achieve automatic decision position of human body, then adjust automatically air-out direction is so that the automatic direction of air conditioning exhausting Position of human body, further increases the operating efficiency of air-conditioning.
One of ordinary skill in the art will appreciate that each module of the present utility model is independent components and parts, embedded It is operated under system.It is appreciated that those skilled in the art are on the premise of knowing the function of each module, write embedding in advance Enter formula code and be burnt in programmable chip and just can obtain corresponding module, realize corresponding module function.Compiling here Journey chip includes MCU (Microcontroller Unit, micro-control unit), CPLD (Complex Programmable Logic Device, CPLD), (Field-Programmable Gate Array, that is, scene can for FPGA Programming gate array), DSP (Digital Signal Processor, i.e. digital signal processor) and MPU (Microprocessor Unit, microprocessor).
Above example only have expressed several embodiments of the present utility model, and its description is more concrete and detailed, but simultaneously Therefore the restriction to utility model patent scope can not be interpreted as.It should be pointed out that the ordinary skill people for this area For member, without departing from the concept of the premise utility, some deformation can also be made and improve, these broadly fall into this reality With new protection domain.Therefore, the protection domain of the utility model patent should be defined by claims.

Claims (13)

1. a kind of air-conditioner control system, including:
It is arranged at air-conditioning internal machine (100) fuselage according to gravity direction, obtain described air-conditioning internal machine (100) fuselage along gravity direction Indoor temperature gradient multiple first temperature sensors (124);
It is arranged at air-conditioning internal machine (100) fuselage, obtain the remote control that the second temperature sensor being arranged on air-conditioning remote control records The receiver (160) of device end temperature;
Be connected with the plurality of first temperature sensor (124) and described receiver (160), according to described indoor temperature gradient with The Temperature processor (120) of described remote control end temperature computation indoor temperature;
It is connected with described Temperature processor (120), if the difference of described indoor temperature and preset temperature is in preset temperature difference scope Outside, then adjust the air-conditioner controller of air-conditioning work power close to the direction of described preset temperature towards described indoor temperature (110).
2. air-conditioner control system as claimed in claim 1 is it is characterised in that described Temperature processor (120) includes:With described Multiple first temperature sensors (124) connect, and obtain the rate of change of described indoor temperature gradient in Preset Time, and when described The first calculating module according to described indoor temperature gradient calculation mean temperature when rate of change is within the scope of default nearly zero (121).
3. air-conditioner control system as claimed in claim 2 is it is characterised in that described receiver (160) calculates with described first Module (121) connects, if described receiver (160) obtains the temperature failure of described remote control end, described first calculating module (121) using described mean temperature as described indoor temperature.
4. air-conditioner control system as claimed in claim 3 is it is characterised in that described Temperature processor (120) also includes:With institute State the first calculating module (121) to connect, if described receiver (160) obtains the temperature success of described remote control end, according to described Remote control end temperature and described mean temperature calculate the second of described indoor temperature and calculate module (123).
5. air-conditioner control system as claimed in claim 4 is it is characterised in that described second calculates module (123) inclusion:If institute The difference stating mean temperature with described remote control end temperature, in the range of preset difference value, takes described remote control end temperature flat with described Arbitrary temperature all in temperature is as the first module (123a) of described indoor temperature.
6. air-conditioner control system as claimed in claim 4 is it is characterised in that described second calculates module (123) inclusion:If institute The difference stating mean temperature with described remote control end temperature outside preset difference value scope, then takes described remote control end temperature as institute State the second unit (123b) of indoor temperature.
7. air-conditioner control system as claimed in claim 4 is it is characterised in that described second calculates module (123) inclusion:Work as institute State rate of change preset nearly zero scope outside when, then take described remote control end temperature as Unit the 3rd of described indoor temperature (123c).
8. air-conditioner control system as claimed in claim 1 is it is characterised in that described air-conditioner controller (110) includes:
Judge that the air-conditioning state of air-conditioning work state judges module (111);
Judge that module (111) is connected with described air-conditioning state, if air-conditioning work state is refrigeration, improve described air-conditioning man's work done Rate, if air-conditioning work state is to heat, reduces the execution module (116) of air-conditioning work power.
9. air-conditioner control system as claimed in claim 1 is it is characterised in that also include:
Obtain the sound sensor (130) of the noise information of air-conditioning internal machine (100) place environment;
It is connected with described sound sensor (130), described noise information is carried out with audio analysis, obtain people in described noise information The Sound Processor Unit (150) of the audio frequency characteristics of body activity noise information;
Described air-conditioner controller (110) is connected with described Sound Processor Unit (150), and determines that human body is lived according to described audio frequency characteristics Jerk simultaneously adjusts air-conditioning work power according to described human body liveness.
10. air-conditioner control system as claimed in claim 9 is it is characterised in that described Sound Processor Unit (150) and described temperature Processor (120) connects, if the difference of described indoor temperature and preset temperature is within the scope of preset temperature difference, described sound Processor (150) execution carries out the task of audio analysis to described noise information.
11. air-conditioner control systems as claimed in claim 9 are it is characterised in that described sound sensor (130) is included according to institute State sound directivity probe (134) that noise information judges position of human body;
Described air-conditioner controller (110) includes being connected with described sound directivity probe (134), is adjusted according to described position of human body The air-out direction of air-conditioning internal machine is towards wind direction adjustment module (115) of described position of human body.
12. air-conditioner control systems as claimed in claim 9 are it is characterised in that described air-conditioner controller (110) also includes:
It is connected with described sound sensor (130), described human body liveness is compared and in described people with default human body liveness Body liveness notifies the comparison module (112) that described sound sensor (130) works with described default human body liveness when mating;
Execution module (116) is connected with the described module (112) that compares, when described human body liveness and described default human body liveness During mismatch, execution is described to adjust air-conditioning work power according to described human body liveness.
A kind of 13. air-conditionings are it is characterised in that include the air-conditioner control system as described in any one in claim 1-12.
CN201620881919.0U 2016-08-15 2016-08-15 Air conditioner control system and air conditioner Expired - Fee Related CN205939565U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201620881919.0U CN205939565U (en) 2016-08-15 2016-08-15 Air conditioner control system and air conditioner

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201620881919.0U CN205939565U (en) 2016-08-15 2016-08-15 Air conditioner control system and air conditioner

Publications (1)

Publication Number Publication Date
CN205939565U true CN205939565U (en) 2017-02-08

Family

ID=57921551

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201620881919.0U Expired - Fee Related CN205939565U (en) 2016-08-15 2016-08-15 Air conditioner control system and air conditioner

Country Status (1)

Country Link
CN (1) CN205939565U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107421082A (en) * 2017-07-26 2017-12-01 胥红伟 Energy-saving method for air conditioner and energy-saving type air conditioner
CN110691947A (en) * 2017-07-14 2020-01-14 大金工业株式会社 Equipment control system

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110691947A (en) * 2017-07-14 2020-01-14 大金工业株式会社 Equipment control system
CN107421082A (en) * 2017-07-26 2017-12-01 胥红伟 Energy-saving method for air conditioner and energy-saving type air conditioner

Similar Documents

Publication Publication Date Title
US11022333B2 (en) Control for device in a predetermined space area
CN103982986B (en) Air-conditioner and comfortable control method thereof and device
CN105241019B (en) Inletting fresh air control method
CN106556122B (en) Control system, sleep control device, air conditioner and its sleep control method
CN111735179B (en) Control method of intelligent home system and intelligent home system
CN105091217A (en) Intelligent control method for air conditioner
WO2019034127A1 (en) Human body comfort degree-based air conditioner control method, and air conditioner
CN104633860A (en) Indoor temperature adjusting method based on user human body temperature change
CN102880208B (en) Method, apparatus and system for controlling temperature and humidity
CN104089373B (en) Method for controlling air conditioner and air conditioner
CN104374048A (en) Control method for air supply angle of air-conditioner and control system
CN108592239B (en) Method and device for adjusting running frequency of air-conditioning compressor
JP2016061446A (en) Air conditioner
JP5538314B2 (en) Indoor environment control system
CN104279711B (en) A kind of air-conditioner and its room temperature self_adaptive adjusting method and system
WO2022252672A1 (en) Control method and apparatus for air conditioning, and household appliance
CN111550911A (en) Temperature controller capable of automatically setting target temperature, control method thereof, air conditioner and floor heating
CN108375173A (en) The control method of the wind deflector of indoor unit, air conditioner in air conditioner
CN109855253B (en) Control method for air conditioner
CN105716201B (en) A kind of air-conditioning self-study exchange method
WO2020000838A1 (en) Air conditioning apparatus control method and device, and air conditioning apparatus
CN205939565U (en) Air conditioner control system and air conditioner
CN108758978A (en) Central air-conditioning energy automatic control method and air-conditioning
CN106288183B (en) Air conditioner control method and device
CN109812936A (en) A kind of air-conditioning and its air conditioning exhausting temperature control method and device

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20170208

CF01 Termination of patent right due to non-payment of annual fee