CN203132059U - Control system of air conditioner - Google Patents
Control system of air conditioner Download PDFInfo
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- CN203132059U CN203132059U CN 201320074685 CN201320074685U CN203132059U CN 203132059 U CN203132059 U CN 203132059U CN 201320074685 CN201320074685 CN 201320074685 CN 201320074685 U CN201320074685 U CN 201320074685U CN 203132059 U CN203132059 U CN 203132059U
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Abstract
The utility model provides a control system of an air conditioner. The control system of the air conditioner comprises a cloud server, a weather server and the air conditioner, wherein the weather server and the air conditioner are connected with the cloud server in a communication mode. The cloud server is used for obtaining weather information, provided by the weather server, of a geographic location where the air conditioner exits based on the geographic location, generating target temperature information used for controlling the air conditioner, and outputting the information to the air conditioner. Thus, the cloud server generates optimal temperature based on the weather information and controls the air conditioner to adaptively operate so as to improve indoor comfort.
Description
Technical field
The utility model relates to a kind of air conditioner control system.
Background technology
At present, the intelligent air condition device can arrange the self-adapting operation function by remote controller, and during the self-adapting operation pattern, air-conditioner determines operational mode according to the temperature difference of user's design temperature and room temperature.For example: Tr represents room temperature, and Ts represents design temperature.When entering the self-adapting operation pattern for the first time, if Tr 〉=Ts-3 ℃, refrigeration mode then entered; If Tr<Ts-3 ℃, then enter heating mode.
Enter after the self-adapting operation pattern along with the variation operational mode of indoor environment temperature can be in refrigeration, switch between heating.But above-mentioned regulative mode can't be regulated based on current season, weather condition, and there is error in the temperature sensor of air-conditioner self, can't accurately detect indoor temperature, cause in this self-adapting operation pattern the adjustment fineness not high enough thus, can't transfer to optimal temperature.
The utility model content
In view of this, main purpose of the present utility model is, a kind of air conditioner control system is provided, and generates optimal temperature according to Weather information, makes the air-conditioner self-adapting operation, to improve indoor comfort degree.
For achieving the above object, air conditioner control system provided by the utility model comprises Cloud Server and is connected weather server and air-conditioner with this Cloud Server communication,
Described Cloud Server is used for obtaining according to air-conditioner geographic location information the Weather information in this geographical position that weather server provides, and the target temperature information that generates the control air-conditioner also exports described air-conditioner to.
By last, Cloud Server generates optimal temperature according to Weather information, makes the air-conditioner self-adapting operation, to improve indoor comfort degree.
Optionally, also comprise the control end that is connected with the Cloud Server communication.
By last, the user can carry out Long-distance Control by Cloud Server to air-conditioner by control end.
Optionally, described Cloud Server comprises:
Information transmission unit;
Memory cell stores the corresponding relation of Weather information and target temperature: Weather information comprises one of following at least: illumination information, temperature information and humidity information;
The Cloud Server main control unit, be connected with memory cell with information transmission unit respectively, be used for obtaining according to air-conditioner geographic location information the Weather information in this geographical position that weather server provides, and generate the target temperature control information according to the described corresponding relation that memory cell is stored.
By last, Cloud Server generates optimal temperature according to illumination, outdoor temperature and humidity etc. Weather information, makes the air-conditioner self-adapting operation, to improve indoor comfort degree.
Optionally, described Cloud Server also comprises first authentication unit, is connected between described information transmission unit and the Cloud Server main control unit, is used for the instruction of the control end of checking reception.
By last, Cloud Server can be identified identity and the authority of determining this control end, realizes the accuracy of control end control.
Optionally, described air-conditioner comprises:
Described air-conditioner comprises:
Communication unit is used for receiving described target temperature control information;
The air-conditioning load;
The air-conditioner main control unit is connected with described communication unit, is used for adjusting according to the target temperature control information operation of described air-conditioning load.
Preferable, described air-conditioner also comprises the service data collecting unit, is connected with described air-conditioning load, is used for gathering the service data of air-conditioning load;
Described communication unit also is connected with described service data collecting unit, is used for the described service data of output.
Preferable, described air-conditioner also comprises second authentication unit, is connected with described communication unit, is used for the target temperature information of the Cloud Server of checking reception.
By last, air-conditioner can verify that Cloud Server sends out the uniqueness of target temperature information, avoids control deviation.
Description of drawings
Fig. 1 is the principle schematic of air conditioner control system;
Fig. 2 is the principle schematic of Cloud Server;
Fig. 3 is the principle schematic of air-conditioner.
The specific embodiment
Below in conjunction with Fig. 1 air conditioner control system described in the utility model is described, comprising: control end 10 is used for the control instruction that air-conditioner 30 self-adapting operations are controlled in long-range transmission; Cloud Server 20 is connected with control end 10 communications, is used for receiving above-mentioned control instruction, generates the optimum target temperature of control air-conditioner 30 self-adapting operations according to environmental information; Weather server 40 with Cloud Server 20 wireless connections, is used for providing described environmental information to Cloud Server 20, and described environmental information comprises outdoor temperature information, humidity information and the illumination information of described air-conditioner 30 geographic locations; Air-conditioner 30 carries out corresponding adjusting according to target temperature, and operational factor is uploaded to Cloud Server 20.In addition, described control end 10 also communicates to connect with air-conditioner 30, makes id information and the geographical location information of the two shared air-conditioner 30, realizes the coupling of the two.
As shown in Figure 2, Cloud Server 20 comprises information transmission unit 201, first authentication unit 202, Cloud Server main control unit 203 and the memory cell 204 that connects successively at least.
Cloud Server main control unit 203 is transferred the temperature information of corresponding area in the weather server 40 for the geographical location information at air-conditioner 30 places that load according to control instruction, and according to the target temperature computing function formula of storing in the memory cell 204, calculate the optimal temperature of control air-conditioner 30 operations, generate target temperature control information output.
Described target temperature computing function formula is T=TJZ+ (TPQ+TPW+TPS) * P, and T is that fiducial temperature, TPQ are that illumination is that outdoor temperature is that outside humidity is the weight coefficient of target temperature for Temperature Influence, P for Temperature Influence, TPS for Temperature Influence, TPW for target temperature, the TJZ of control air-conditioner 30 self-adapting operations in the formula.Wherein, the fiducial temperature difference that set different seasons, for example, be 22 degree spring, and be 27 degree summer, and be 28 degree autumn, and be 23 degree winter.
In addition, at the influence of varying environment, the weight coefficient difference that it adopts, specifically shown in table 1, table 2, table 3,
Illumination is as shown in table 1 for Temperature Influence.
Illumination | Fine | Cloudy | Cloudy | Sleet |
TPQ | -2 | 0 | +1 | +2 |
Table 1
In addition, because different time period intensity of illumination difference in a day, therefore, temporal information can be further used as a weighted value, for example when 19:00~7:00, acquiescence illumination is 0 for Temperature Influence, and noon, can set 11:00~14:00 is n for temperature effect, thereby above-mentioned value is further adjusted.
Outdoor temperature is as shown in table 2 for Temperature Influence.
Table 2
Outside humidity is as shown in table 3 for Temperature Influence.
Table 3
Cloud Server main control unit 203 calculates according to target temperature computing function formula and generates the target temperature control information, exports information transmission unit 201 to behind the id information of loading air-conditioner 30, carries out exporting the internet to after the modulation treatment through information transmission unit 201.
Air-conditioner 30 receives above-mentioned target temperature control information by the internet, carries out corresponding adjusting according to above-mentioned target temperature control information, and operational factor is uploaded to Cloud Server 20.As shown in Figure 3, air-conditioner 30 comprises communication unit 301, second authentication unit 302, air-conditioner main control unit 303, the air-conditioning load 304 that connects successively, also comprises the service data collecting unit 305 that is connected respectively with air-conditioning load 304 and communication unit 301.
Wherein, air-conditioner 30 communicates to connect with Cloud Server 20 and control end 10 respectively by communication unit 301, and communication unit 301 is used for receiving target temperature control information that Cloud Server 20 assigns and to the service data of Cloud Server 20 output air-conditioners 30.Communication unit 301 also is used for to control end 10 output id informations, and receives or the output geographical location information.
Air-conditioner main control unit 303 is used for adjusting air-conditioning load 304 according to this temperature control information and carries out work, and described air-conditioning load 304 comprises compressor, blower fan and proportioning valve.
Service data collecting unit 305 is used for gathering the service data of air-conditioning load 304 and the ambient parameter in room, air-conditioner place, and for example air-conditioning bearing power, indoor temperature and humidity etc. are gathered by being arranged in the air-conditioner respective sensor.After service data collecting unit 305 is gathered above-mentioned parameter, be sent to communication unit 301.Be loaded with the id information of this air-conditioner 30 in the described parameter.
The information transmission unit 201 of Cloud Server 20 is stored to memory cell 204 after receiving the parameter of the above-mentioned id information that is loaded with air-conditioner 30, so that control end 10 inquiries.In the query script, Cloud Server 20 mates control end 10 and air-conditioner 30 according to described id information.
Need to prove that Cloud Server calculates target temperature after weather server obtains Weather information, and transfers to air-conditioner, is real-time, or (as being the cycle with one hour) in cycle carries out.
The above only is preferred embodiment of the present utility model; not in order to limit the utility model, in a word, all within spirit of the present utility model and principle; any modification of doing, be equal to replacement, improvement etc., all should be included within the protection domain of the present utility model.
Claims (7)
1. an air conditioner control system is characterized in that, comprise Cloud Server and be connected weather server and air-conditioner with this Cloud Server communication,
Described Cloud Server is used for obtaining according to air-conditioner geographic location information the Weather information in this geographical position that weather server provides, and the target temperature information that generates the control air-conditioner also exports described air-conditioner to.
2. air conditioner control system according to claim 1 is characterized in that, also comprises the control end that is connected with the Cloud Server communication.
3. air conditioner control system according to claim 1 and 2 is characterized in that, described Cloud Server comprises:
Information transmission unit;
Memory cell stores the corresponding relation of Weather information and target temperature: Weather information comprises one of following at least: illumination information, temperature information and humidity information;
The Cloud Server main control unit, be connected with memory cell with information transmission unit respectively, be used for obtaining according to air-conditioner geographic location information the Weather information in this geographical position that weather server provides, and generate the target temperature control information according to the described corresponding relation that memory cell is stored.
4. air conditioner control system according to claim 3 is characterized in that, described Cloud Server also comprises first authentication unit, is connected between described information transmission unit and the Cloud Server main control unit, is used for the instruction of the control end of checking reception.
5. air conditioner control system according to claim 1 and 2 is characterized in that, described air-conditioner comprises:
Communication unit is used for receiving described target temperature control information;
The air-conditioning load;
The air-conditioner main control unit is connected with described communication unit, is used for adjusting according to the target temperature control information operation of described air-conditioning load.
6. air conditioner control system according to claim 5 is characterized in that, described air-conditioner also comprises the service data collecting unit, is connected with described air-conditioning load, is used for gathering the service data of air-conditioning load;
Described communication unit also is connected with described service data collecting unit, is used for the described service data of output.
7. air conditioner control system according to claim 5 is characterized in that, described air-conditioner also comprises second authentication unit, is connected between described communication unit and the air-conditioner main control unit, is used for the target temperature information of the Cloud Server of checking reception.
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CN 201320074685 CN203132059U (en) | 2013-02-17 | 2013-02-17 | Control system of air conditioner |
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