CN108731203B - Architectural engineering real-time monitoring platform and method based on big data - Google Patents
Architectural engineering real-time monitoring platform and method based on big data Download PDFInfo
- Publication number
- CN108731203B CN108731203B CN201810578816.0A CN201810578816A CN108731203B CN 108731203 B CN108731203 B CN 108731203B CN 201810578816 A CN201810578816 A CN 201810578816A CN 108731203 B CN108731203 B CN 108731203B
- Authority
- CN
- China
- Prior art keywords
- air
- temperature
- control instruction
- space
- area
- 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.)
- Active
Links
Classifications
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F11/00—Control or safety arrangements
- F24F11/62—Control or safety arrangements characterised by the type of control or by internal processing, e.g. using fuzzy logic, adaptive control or estimation of values
- F24F11/63—Electronic processing
- F24F11/64—Electronic processing using pre-stored data
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F11/00—Control or safety arrangements
- F24F11/70—Control systems characterised by their outputs; Constructional details thereof
- F24F11/72—Control systems characterised by their outputs; Constructional details thereof for controlling the supply of treated air, e.g. its pressure
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F11/00—Control or safety arrangements
- F24F11/88—Electrical aspects, e.g. circuits
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F2110/00—Control inputs relating to air properties
- F24F2110/10—Temperature
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F2110/00—Control inputs relating to air properties
- F24F2110/50—Air quality properties
- F24F2110/64—Airborne particle content
Landscapes
- Engineering & Computer Science (AREA)
- Chemical & Material Sciences (AREA)
- Combustion & Propulsion (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Signal Processing (AREA)
- Physics & Mathematics (AREA)
- Fuzzy Systems (AREA)
- Mathematical Physics (AREA)
- Air Conditioning Control Device (AREA)
Abstract
This application discloses the architectural engineering real-time monitoring platforms based on big data, it include: temperature sensor, central controller and air-conditioning ventilation system, temperature sensor monitors the internal temperature of each area of space inside the external temperature and monitoring architectural engineering of architectural engineering;Central controller generates the air control instruction for being directed to each area of space, wraps aeriferous temperature in the air control instruction according to the external temperature and the internal temperature received;Air-conditioning ventilation system receives the air control instruction that central controller is sent, and starts air-conditioning system and ventilating operation according to air control instruction.The air-conditioning ventilation system of each area of space in architectural engineering inside is controlled by the central controller of monitor supervision platform, it can guarantee that the user inside to architectural engineering provides suitable temperature, while improving user experience, the energy can also be saved, avoids the problem that leading to energy waste because temperature is too low or too high.
Description
Technical field
This application involves architectural engineering monitoring field more particularly to a kind of architectural engineering real time monitoring based on big data are flat
Platform and method.
Background technique
With the development of science and technology, building intellectualization becomes a kind of development trend of building trade.How building is realized
The intelligentized control method of engineering becomes hot issue concerned by people.However, air-conditioning and ventilating system control in architectural engineering
Belong to a part of architectural engineering intelligentized control method.
Market, office building are as a kind of architectural engineering, since density of personnel is bigger, and then to the air matter of its inside
Amount, temperature and humidity require it is relatively high, but currently, usually by artificial mode to being disposed in each independent region
Air-conditioning and ventilating system are controlled, and the feelings that winter room temperature is excessively high, summer room temperature is too low are thus be easy to cause
Condition, is on the one hand unfavorable for the health of people, on the other hand also results in the waste of the energy.
Summary of the invention
In view of this, the embodiment of the present application provides a kind of architectural engineering real-time monitoring platform based on big data and side
Method, for solving the problems, such as architectural engineering existing energy waste in terms of air-conditioning and ventilating system control.
The embodiment of the present application provides a kind of architectural engineering real-time monitoring platform based on big data, comprising: temperature sensing
Device, central controller and air-conditioning ventilation system, in which:
The temperature sensor, for monitoring the external temperature of architectural engineering and monitoring each inside the architectural engineering
The internal temperature of a area of space, and the external temperature monitored and the internal temperature are sent to central controller;
The central controller, for generating and being directed to each space region according to the external temperature and the internal temperature
The air control instruction is sent to the corresponding air-conditioning ventilation system of each area of space by the air control instruction in domain,
Wherein, aeriferous temperature is wrapped in the air control instruction;
The air-conditioning ventilation system, the air control instruction sent for receiving the central controller, and according to described
Air control instruction starts air-conditioning system and ventilating operation.
The embodiment of the present application provides a kind of architectural engineering method for real-time monitoring based on big data, comprising:
Each sky inside the external temperature and the monitoring architectural engineering of architectural engineering is monitored by temperature sensor
Between region internal temperature;
According to the external temperature and the internal temperature, the air control instruction for being directed to each area of space is generated, it will
The air control instruction is sent to the corresponding air-conditioning ventilation system of each area of space, wherein in the air control instruction
Wrap aeriferous temperature;
Wherein, the air control instruction that the air-conditioning ventilation system is sent for receiving the central controller, and according to
The air control instruction starting air-conditioning system and ventilating operation.
What at least one embodiment of the application reached has the beneficial effect that:
The embodiment of the present application provides the architectural engineering real-time monitoring platform based on big data, comprising: temperature sensor, in
Entreat controller and air-conditioning ventilation system, in which: the temperature sensor, for monitoring external temperature and the monitoring of architectural engineering
The internal temperature of each area of space inside the architectural engineering, and the external temperature monitored and the inside is warm
Degree is sent to central controller;The central controller, for according to the external temperature and the internal temperature, generation to be directed to
The air control instruction is sent to the corresponding air-conditioning of each area of space by the air control instruction of each area of space
Ventilating system, wherein wrap aeriferous temperature in the air control instruction;The air-conditioning ventilation system, it is described for receiving
The air control instruction of central controller, and air-conditioning and ventilating operation are started according to the air control instruction.Pass through
The central controller of monitor supervision platform controls the air-conditioning ventilation system of each area of space in architectural engineering inside, can guarantee
Give user inside architectural engineering to provide suitable temperature, while improving user experience, additionally it is possible to save the energy, avoid because
Temperature too low or too high the problem of leading to energy waste.
Detailed description of the invention
In order to more clearly explain the technical solutions in the embodiments of the present application, make required in being described below to embodiment
Attached drawing is briefly introduced, it should be apparent that, the drawings in the following description are only some examples of the present application, for this
For the those of ordinary skill in field, without any creative labor, it can also be obtained according to these attached drawings
His attached drawing.
Fig. 1 is a kind of structural representation of the architectural engineering real-time monitoring platform based on big data provided by the embodiments of the present application
Figure;
Fig. 2 is a kind of structural representation of the architectural engineering real-time monitoring platform based on big data provided by the embodiments of the present application
Figure;
Fig. 3 is a kind of structural representation of the architectural engineering real-time monitoring platform based on big data provided by the embodiments of the present application
Figure;
Fig. 4 is a kind of process signal of architectural engineering method for real-time monitoring based on big data provided by the embodiments of the present application
Figure.
Specific embodiment
In order to realize the purpose of the application, the embodiment of the present application provides a kind of architectural engineering based on big data and supervises in real time
Control platform and method, comprising: temperature sensor, central controller and air-conditioning ventilation system, in which: the temperature sensor is used
The internal temperature of each area of space inside the external temperature of monitoring architectural engineering and the monitoring architectural engineering, and will
The external temperature and the internal temperature monitored is sent to central controller;The central controller, for according to institute
External temperature and the internal temperature are stated, the air control instruction for being directed to each area of space is generated, air control is referred to
Order is sent to the corresponding air-conditioning ventilation system of each area of space, wherein wraps in the air control instruction aeriferous
Temperature;The air-conditioning ventilation system is controlled for receiving the air control instruction of the central controller, and according to the air
Instruction starting air-conditioning and ventilating operation.By the central controller of monitor supervision platform to each space region in architectural engineering inside
The air-conditioning ventilation system in domain is controlled, and can be guaranteed that the user inside to architectural engineering provides suitable temperature, be improved user
While experience, additionally it is possible to save the energy, avoid the problem that leading to energy waste because temperature is too low or too high.
The each embodiment of the application is described in further detail with reference to the accompanying drawings of the specification.Obviously, described
Embodiment is merely a part but not all of the embodiments of the present application.Based on the embodiment in the application, this field
Those of ordinary skill's all other embodiment obtained without making creative work belongs to the application protection
Range.
Fig. 1 is a kind of structural representation of the architectural engineering real-time monitoring platform based on big data provided by the embodiments of the present application
Figure.It include: temperature sensor 101, central controller 102 and air-conditioning ventilation system 103, in which:
The temperature sensor 101, for monitoring the external temperature of architectural engineering and monitoring inside the architectural engineering
Each area of space internal temperature, and the external temperature monitored and the internal temperature are sent to central control
Device 102;
The central controller 102, for generating and being directed to each space according to the external temperature and the internal temperature
The air control instruction is sent to the corresponding air-conditioning ventilation system of each area of space by the air control instruction in region
103, wherein wrap aeriferous temperature in the air control instruction;
The air-conditioning ventilation system 103, the air control instruction sent for receiving the central controller 102, and root
Start air-conditioning system and ventilating operation according to the air control instruction.
In the inside and outside deployment temperature sensor of architectural engineering, in order to monitor the inside and outside temperature of architectural engineering
Degree, what needs to be explained here is that, the temperature sensor more than one of architectural engineering On-premise can be in each independent space
Regional deployment temperature sensor, can also be in interconnecting piece (such as: public use region, corridor etc.) deployment in different spaces region
Temperature sensor.
Central controller passes through the external temperature and internal temperature got in this way, can quickly determine in architectural engineering room
Temperature whether be suitable for, if suitable living environment can be provided for indoor user, once discovery temperature it is unfavorable, can
The air control instruction for improving Environmental Suitability is quickly generated, to adjust the environment temperature inside architectural engineering, simultaneously also
It can be avoided the problems of energy consumption caused by being not suitable for due to temperature.
In another embodiment of the application, locating module, the locating module are installed inside each temperature sensor
It can determine the location information of temperature sensor, location information here is spatial positional information, is sat comprising longitude coordinate, latitude
Mark and height value.
More preferably, the temperature sensor 101, is also used to determine location information by locating module, and by location information
And the corresponding internal temperature of the location information is sent to central controller 102;
The central controller 102, is also used to compare any two location information, if comparison result is described two positions
Meet between information and imposes a condition, then the further corresponding internal temperature of more described two location informations, and
According to the comparison result of two internal temperatures, the air conditioner ventilation system of area of space is corresponded to described two location informations respectively
System sends air control instruction, and the air control instruction corresponds to the air of area of space for realizing described two location informations
Temperature difference meet given threshold.
It should be noted that setting condition here is for judging whether the corresponding region of described two location informations is phase
Neighbouring region, such as: it include multiple separate space regions and part public domain inside architectural engineering, then here adjacent can be with
It is interpreted as adjacent between separate space region and public domain, such as: coming out from a room will be by corridor, then room
This area of space and this area of space of corridor are adjacent space region.Here given threshold is for judging two spaces region
Temperature difference it is whether excessive, to guarantee the temperature difference between two neighboring area of space within an optimum range.This
A given threshold can be not specifically limited here according to being configured subject to public felt preference temperature.
In another embodiment of the application, the central controller 102 is specifically used for according to the external temperature,
It determines the sendible temperature that user is suitable for, and is directed to each area of space, execute following operation:
Compare an area of space internal temperature and the sendible temperature;
According to comparison result, the air control instruction for being directed to the area of space is generated.
What needs to be explained here is that the sendible temperature that user is suitable for is different according to the difference in season, it can be in advance in
The mapping relations between sendible temperature that storage weather temperature (external temperature i.e. here) and user are suitable in the controller of centre, that
Central controller can be determined in the case where receiving the external temperature of temperature sensor transmission according to the mapping relations
The sendible temperature that user is suitable for.
Due to the influence of the external conditions such as architectural engineering inner ventilation, density of personnel, the internal temperature of each area of space is deposited
In difference, then an area of space is directed to, by comparing the difference between internal temperature and the sendible temperature of determination, Jin Ersheng
At air control instruction, the temperature in simultaneously adjustment space region can be found in time, has reached the needs that user is suitable for.
In another embodiment of the application, the central controller is specifically used in the sendible temperature and one
It is interested according to the user in the case that difference between the interested temperature of the user of area of space is greater than setting numerical value
Temperature generates the air control instruction for being directed to the area of space.
Specifically, for some specific separate space region, it is understood that there may be the interested temperature of user, such as: it is right
Can be higher than young people in old man or the more area of space of child, the sendible temperature that they are suitable for, then in
Entreat controller that can determine the interested temperature of user based on the temperature value that user inputs in a certain period of time.Different seasons
It is different to save the interested temperature in family.For the ease of providing the user with comfortable environment, architectural engineering monitor supervision platform is according to user
Actual needs determine air control instruction, to meet the needs of architectural engineering internal user.
In another embodiment of the application, which further includes Detection of Air Quality equipment 104, in which:
The Detection of Air Quality equipment 104, for monitor architectural engineering outside air quality and monitoring described in build
Build the inner air quality of each area of space of technical interior, and by the outside air quality monitored and the inside
Air quality is sent to central controller 102;
The central controller 102 is also used to according to the outside air quality and/or the inner air quality, raw
At the air control instruction for being directed to each area of space, aeriferous performance figure is also wrapped in the air control instruction.
Specifically, if outside air quality is poor (PM2.5 numerical value is relatively high, or is serious pollution), then in
Centre controller can make the air quality index of air provided by air-conditioning ventilation system higher by air control instruction,
Air-conditioning ventilation system in this way goes out wind velocity and purification in the case where receiving air quality index, through air, filters out
It is fresh to guarantee that user can breathe so that the air quality of output meets the air quality index for the measures such as the air of wind
Air,
By the inside and outside air quality of monitoring building function, the air quality inside architectural engineering is effectively adjusted,
Effectively promote the living environment of user.
Specifically, the air-conditioning ventilation system is specifically used for adjusting out wind velocity according to the air control instruction and going out
Air temperature.
In another embodiment of the application, Fig. 2 is a kind of building based on big data provided by the embodiments of the present application
The structural schematic diagram of engineering real-time monitoring platform.The monitor supervision platform further include: air filter unit 201, in which:
The air-conditioning ventilation system 103 is specifically used for starting the air filter unit according to the air control instruction
201, the air filter unit is used for according to wrapping aeriferous performance figure in the control instruction, to air to be discharged into
Row filtering, so that the quality of filtered air meets the performance figure of the air;And send out filtered air.
The monitor supervision platform further include: fault test set 202, in which:
The fault test set, for timing or the operating status of cycle detection air-conditioning ventilation system, according to the fortune
Row state judges whether air-conditioning ventilation system breaks down.Once breaking down, alarm signal is issued, in order to arrange maintenance people
The air conditioner ventilation equipment that member breaks down to it repairs.
In another embodiment of the application, Fig. 3 is a kind of building based on big data provided by the embodiments of the present application
The structural schematic diagram of engineering real-time monitoring platform.The monitor supervision platform further include: be covered on the architectural engineering top layer platform too
Positive energy solar panel 301, in which:
The central controller 102, if the external temperature for being also used to receive is greater than setting numerical value, the Xiang Suoshu sun
It can solar panel transmission starting work order;
The solar panel 301, in the case where receiving starting work order, absorbing sunlight, and will
Luminous energy is converted to electric energy, and the electric energy is used to supply to the air-conditioning ventilation system, the temperature sensor, the central controller
Electricity.
Here setting numerical value can be determined according to the light application time of different zones, be not specifically limited here.
Pass through the architectural engineering real-time monitoring platform provided by the present application based on big data, comprising: temperature sensor, center
Controller and air-conditioning ventilation system, in which: the temperature sensor, for monitoring external temperature and the monitoring institute of architectural engineering
State the internal temperature of each area of space inside architectural engineering, and by the external temperature monitored and the internal temperature
It is sent to central controller;The central controller, for generating for each according to the external temperature and the internal temperature
The air control instruction is sent to the corresponding air-conditioning of each area of space and led to by the air control instruction of a area of space
Wind system, wherein wrap aeriferous temperature in the air control instruction;The air-conditioning ventilation system, for receiving in described
The air control instruction of controller is entreated, and air-conditioning and ventilating operation are started according to the air control instruction.Pass through prison
Control platform central controller the air-conditioning ventilation system of each area of space in architectural engineering inside is controlled, can guarantee to
User inside architectural engineering provides suitable temperature, while improving user experience, additionally it is possible to save the energy, avoid because of temperature
Spend too low or too high the problem of leading to energy waste.
Based on the same inventive concept, Fig. 4 is that a kind of architectural engineering based on big data provided by the embodiments of the present application is real
When monitoring method flow diagram.The method can be as follows.
Step 401: being monitored inside the external temperature and the monitoring architectural engineering of architectural engineering by temperature sensor
Each area of space internal temperature.
Step 402: according to the external temperature and the internal temperature, the air generated for each area of space is controlled
Instruction, is sent to the corresponding air-conditioning ventilation system of each area of space for the air control instruction.
Wherein, aeriferous temperature is wrapped in the air control instruction.The air-conditioning ventilation system is for receiving in described
The air control instruction for entreating controller to send, and air-conditioning and ventilating operation are started according to the air control instruction.
In another embodiment of the application, according to the external temperature and the internal temperature, generate for each
The air control instruction of area of space, comprising:
Determine the corresponding location information of each internal temperature;
Compare any two location information, if comparison result meets setting condition between described two location informations, that
The further corresponding internal temperature of more described two location informations, and according to the ratio of two internal temperatures
Compared with as a result, respectively to described two location informations correspond to area of space air-conditioning ventilation system send air control instruction, it is described
Air control instruction meets given threshold for realizing the temperature difference for the air that described two location informations correspond to area of space.
In another embodiment of the application, according to the external temperature and the internal temperature, generate for each
The air control instruction of area of space, comprising:
According to the external temperature, the sendible temperature that user is suitable for is determined, and be directed to each area of space, execute following behaviour
Make:
Compare an area of space internal temperature and the sendible temperature;
According to comparison result, the air control instruction for being directed to the area of space is generated.
In another embodiment of the application, according to the external temperature and the internal temperature, generate for each
The air control instruction of area of space, comprising:
Difference between the interested temperature of user of the sendible temperature and an area of space is greater than setting numerical value
In the case where, according to the interested temperature of the user, generate the air control instruction for being directed to the area of space.
In another embodiment of the application, the method also includes:
By in the outside air quality of Detection of Air Quality equipment monitoring architectural engineering and the monitoring architectural engineering
The inner air quality of each area of space in portion;
The central controller is generated according to the outside air quality and/or the inner air quality received
For the air control instruction of each area of space, aeriferous performance figure is also wrapped in the air control instruction.
Specifically, the air-conditioning ventilation system adjusts out wind velocity and leaving air temp according to the air control instruction.
In another embodiment of the application, the method also includes:
The air-conditioning ventilation system starts the air filter unit, the air mistake according to the air control instruction
Equipment is filtered to be used to be filtered air to be discharged, according to aeriferous performance figure is wrapped in the control instruction so that mistake
The quality of air after filter meets the performance figure of the air;And send out filtered air.
In another embodiment of the application, if the external temperature that the central controller receives is greater than setting
Numerical value sends starting work order to solar panel;
The solar panel absorbs sunlight, and luminous energy is converted in the case where receiving starting work order
For electric energy, the electric energy is used for the air-conditioning ventilation system, the temperature sensor, central controller power supply.
It will be understood by those skilled in the art that embodiments herein can provide as method, apparatus (equipment) or computer
Program product.Therefore, in terms of the application can be used complete hardware embodiment, complete software embodiment or combine software and hardware
Embodiment form.Moreover, it wherein includes the meter of computer usable program code that the application, which can be used in one or more,
The computer journey implemented in calculation machine usable storage medium (including but not limited to magnetic disk storage, CD-ROM, optical memory etc.)
The form of sequence product.
The application is flow chart of the reference according to method, apparatus (equipment) and computer program product of the embodiment of the present application
And/or block diagram describes.It should be understood that each process in flowchart and/or the block diagram can be realized by computer program instructions
And/or the combination of the process and/or box in box and flowchart and/or the block diagram.It can provide these computer programs to refer to
Enable the processor of general purpose computer, special purpose computer, Embedded Processor or other programmable data processing devices to generate
One machine so that by the instruction that the processor of computer or other programmable data processing devices executes generate for realizing
The device for the function of being specified in one or more flows of the flowchart and/or one or more blocks of the block diagram.
These computer program instructions, which may also be stored in, is able to guide computer or other programmable data processing devices with spy
Determine in the computer-readable memory that mode works, so that it includes referring to that instruction stored in the computer readable memory, which generates,
Enable the manufacture of device, the command device realize in one box of one or more flows of the flowchart and/or block diagram or
The function of being specified in multiple boxes.
These computer program instructions also can be loaded onto a computer or other programmable data processing device, so that counting
Series of operation steps are executed on calculation machine or other programmable devices to generate computer implemented processing, thus in computer or
The instruction executed on other programmable devices is provided for realizing in one or more flows of the flowchart and/or block diagram one
The step of function of being specified in a box or multiple boxes.
Although the preferred embodiment of the application has been described, it is created once a person skilled in the art knows basic
Property concept, then additional changes and modifications may be made to these embodiments.So it includes excellent that the following claims are intended to be interpreted as
It selects embodiment and falls into all change and modification of the application range.
Obviously, those skilled in the art can carry out various modification and variations without departing from the essence of the application to the application
Mind and range.In this way, if these modifications and variations of the application belong to the range of the claim of this application and its equivalent technologies
Within, then the application is also intended to include these modifications and variations.
Claims (5)
1. a kind of architectural engineering real-time monitoring platform based on big data characterized by comprising temperature sensor, center control
Device processed and air-conditioning ventilation system, in which:
The temperature sensor, each sky inside external temperature and the monitoring architectural engineering for monitoring architectural engineering
Between region internal temperature, and the external temperature monitored and the internal temperature are sent to central controller;
The central controller, for generating for each area of space according to the external temperature and the internal temperature
The air control instruction is sent to the corresponding air-conditioning ventilation system of each area of space by air control instruction, wherein
Aeriferous temperature is wrapped in the air control instruction;
The air-conditioning ventilation system, the air control instruction sent for receiving the central controller, and according to the air
Control instruction starts air-conditioning system and ventilating operation;
The temperature sensor, is also used to determine location information by locating module, and by location information and the location information
Corresponding internal temperature is sent to central controller, and the location information is spatial positional information, sits comprising longitude coordinate, latitude
Mark and height value;
The central controller is also used to compare any two location information, if comparison result be described two location informations it
Between meet and impose a condition, then the further corresponding internal temperature of more described two location informations, and according to two
The comparison result of a internal temperature is sent to the air-conditioning ventilation system that described two location informations correspond to area of space respectively
Air control instruction, the air control instruction correspond to the temperature of the air of area of space for realizing described two location informations
Difference meet given threshold;
The central controller is specifically used for determining the sendible temperature that user is suitable for, and for each according to the external temperature
Area of space executes following operation:
Compare an area of space internal temperature and the sendible temperature;
According to comparison result, the air control instruction for being directed to the area of space is generated;
The central controller, specifically between the interested temperature of user in the sendible temperature and an area of space
Difference be greater than setting numerical value in the case where, according to the interested temperature of the user, generate the air for being directed to the area of space
Control instruction;
The architectural engineering real-time monitoring platform further include: be covered on the solar battery of the architectural engineering top layer platform
Plate, in which:
The central controller, if the external temperature for being also used to receive is greater than setting numerical value, Xiang Suoshu solar battery
Plate sends starting work order;
The solar panel, for absorbing sunlight, and luminous energy is converted in the case where receiving starting work order
For electric energy, the electric energy is used for the air-conditioning ventilation system, the temperature sensor, central controller power supply.
2. architectural engineering real-time monitoring platform according to claim 1, which is characterized in that further include that Detection of Air Quality is set
It is standby, in which:
The Detection of Air Quality equipment, for monitoring the outside air quality of architectural engineering and monitoring in the architectural engineering
The inner air quality of each area of space in portion, and by the outside air quality monitored and the inner air quality
It is sent to central controller;
The central controller is also used to be generated according to the outside air quality and/or the inner air quality for each
The air control instruction of a area of space also wraps aeriferous performance figure in the air control instruction.
3. architectural engineering real-time monitoring platform according to claim 1, which is characterized in that
The air-conditioning ventilation system is specifically used for adjusting out wind velocity and leaving air temp according to the air control instruction.
4. architectural engineering real-time monitoring platform according to claim 2 or 3, which is characterized in that further include: air filtration is set
It is standby, in which:
The air-conditioning ventilation system is specifically used for starting the air filter unit, the sky according to the air control instruction
Gas filter plant is used to be filtered air to be discharged according to aeriferous performance figure is wrapped in the control instruction, make
The quality for obtaining filtered air meets the performance figure of the air;And send out filtered air.
5. a kind of architectural engineering method for real-time monitoring based on big data characterized by comprising
Each space region inside the external temperature and the monitoring architectural engineering of architectural engineering is monitored by temperature sensor
The internal temperature in domain;
According to the external temperature and the internal temperature, the air control instruction for being directed to each area of space is generated, it will be described
Air control instruction is sent to the corresponding air-conditioning ventilation system of each area of space, wherein includes in the air control instruction
The temperature of air;
Wherein, the air-conditioning ventilation system is used to receive the air control instruction of central controller transmission, and according to the air
Control instruction starts air-conditioning system and ventilating operation;
The temperature sensor, is also used to determine location information by locating module, and by location information and the location information
Corresponding internal temperature is sent to central controller;
The central controller is also used to compare any two location information, if comparison result be described two location informations it
Between meet and impose a condition, then the further corresponding internal temperature of more described two location informations, and according to two
The comparison result of a internal temperature is sent to the air-conditioning ventilation system that described two location informations correspond to area of space respectively
Air control instruction, the air control instruction correspond to the temperature of the air of area of space for realizing described two location informations
Difference meet given threshold;
The central controller is specifically used for determining the sendible temperature that user is suitable for, and for each according to the external temperature
Area of space executes following operation:
Compare an area of space internal temperature and the sendible temperature;
According to comparison result, the air control instruction for being directed to the area of space is generated;
The central controller, specifically between the interested temperature of user in the sendible temperature and an area of space
Difference be greater than setting numerical value in the case where, according to the interested temperature of the user, generate the air for being directed to the area of space
Control instruction;
The architectural engineering real-time monitoring platform further include: be covered on the solar battery of the architectural engineering top layer platform
Plate, in which:
The central controller, if the external temperature for being also used to receive is greater than setting numerical value, Xiang Suoshu solar battery
Plate sends starting work order;
The solar panel, for absorbing sunlight, and luminous energy is converted in the case where receiving starting work order
For electric energy, the electric energy is used for the air-conditioning ventilation system, the temperature sensor, central controller power supply.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201810578816.0A CN108731203B (en) | 2018-06-07 | 2018-06-07 | Architectural engineering real-time monitoring platform and method based on big data |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201810578816.0A CN108731203B (en) | 2018-06-07 | 2018-06-07 | Architectural engineering real-time monitoring platform and method based on big data |
Publications (2)
Publication Number | Publication Date |
---|---|
CN108731203A CN108731203A (en) | 2018-11-02 |
CN108731203B true CN108731203B (en) | 2019-11-12 |
Family
ID=63932714
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN201810578816.0A Active CN108731203B (en) | 2018-06-07 | 2018-06-07 | Architectural engineering real-time monitoring platform and method based on big data |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN108731203B (en) |
Families Citing this family (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111380164A (en) * | 2018-12-30 | 2020-07-07 | 国家能源投资集团有限责任公司 | Temperature control method and device for photovoltaic building, storage medium and processor |
Family Cites Families (8)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPS54131336A (en) * | 1978-04-03 | 1979-10-12 | Matsushita Electric Ind Co Ltd | Method and apparatus for temperature control of air conditioner |
JP2556884B2 (en) * | 1988-07-01 | 1996-11-27 | 関西電力株式会社 | Air conditioning system controller |
JPH10300133A (en) * | 1997-04-22 | 1998-11-13 | Sharp Corp | Air conditioner |
CN101581490B (en) * | 2009-06-22 | 2012-06-13 | 段一维 | Method for adjusting indoor temperature and system |
JP6053440B2 (en) * | 2012-10-09 | 2016-12-27 | 三菱電機株式会社 | Temperature adjustment system, temperature adjustment method, system controller, and program |
CN104374042B (en) * | 2014-07-28 | 2017-02-15 | 广东电网公司电力科学研究院 | Air conditioner load control method and system |
CN204141709U (en) * | 2014-08-13 | 2015-02-04 | 戴若夫 | A kind of fresh air conditioner |
CN105180374A (en) * | 2015-10-13 | 2015-12-23 | 浙江大冲能源科技有限公司 | Intelligent air conditioner terminal controllers and global comfort control system |
-
2018
- 2018-06-07 CN CN201810578816.0A patent/CN108731203B/en active Active
Also Published As
Publication number | Publication date |
---|---|
CN108731203A (en) | 2018-11-02 |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
TWI435038B (en) | Air conditioning control device and method thereof | |
CN102679505B (en) | Room temperature control method | |
US20190377305A1 (en) | Intelligent building management systems | |
CN108829074A (en) | A kind of artificial intelligence domestic environment system control method based on big data | |
CN102866684A (en) | Indoor environment integrated control system and method based on user comfort | |
CN108444044A (en) | Automatically cleaning control method for air conditioner | |
WO2011129025A1 (en) | Energy conservation unit and system of a building by way of interactive learning | |
JP6908441B2 (en) | Air conditioning system advice device | |
CN102192569A (en) | Air conditioner control method based on thermal comfort zone | |
CN104748292A (en) | Air conditioner and control method thereof and mobile terminal for air conditioner | |
CN108413578A (en) | Automatically cleaning control method for air conditioner | |
CN204214094U (en) | Energy-saving running environment intelligent controlling device | |
CN116258239B (en) | Intelligent control energy carbon-grid management integrated system and carbon-grid management method | |
TW202014648A (en) | Ice storage amount adjusting system and adjusting method for the same | |
CN102393771B (en) | Energy-saving environment monitoring system | |
CN108731203B (en) | Architectural engineering real-time monitoring platform and method based on big data | |
CN107859464A (en) | Intelligent multifunctional temperature air controlling of quality window | |
CN112797508A (en) | Control method for self-adaptive adjustment of air flow organization form in clean room | |
Mhuireach et al. | Lessons learned from implementing night ventilation of mass in a next-generation smart building | |
CN105066356A (en) | Automatic air conditioner adjustment method based on thermal comfortable area of pension environment | |
CN111536662A (en) | Network type fresh air system and regulation and control method based on big data analysis | |
CN103822325A (en) | Intelligent bedroom fresh air system and air distribution method | |
Milne | 19 THE ENERGY IMPLICATIONS OF A CLIMATE-BASED INDOOR AIR TEMPERATURE STANDARD | |
Thapa et al. | Energy conservation in buildings–a review | |
CN201853380U (en) | Intelligent home training system |
Legal Events
Date | Code | Title | Description |
---|---|---|---|
PB01 | Publication | ||
PB01 | Publication | ||
SE01 | Entry into force of request for substantive examination | ||
SE01 | Entry into force of request for substantive examination | ||
GR01 | Patent grant | ||
GR01 | Patent grant |