CN201628340U - Air-conditioner energy saving controller of double control modes - Google Patents
Air-conditioner energy saving controller of double control modes Download PDFInfo
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- CN201628340U CN201628340U CN201020119034XU CN201020119034U CN201628340U CN 201628340 U CN201628340 U CN 201628340U CN 201020119034X U CN201020119034X U CN 201020119034XU CN 201020119034 U CN201020119034 U CN 201020119034U CN 201628340 U CN201628340 U CN 201628340U
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Abstract
The utility model discloses an air-conditioner energy saving controller of double control modes. The controller comprises a control mainframe. The controller is characterized by also comprising a learning remote controller; the control mainframe comprises a first microprocessor which plays a role in operation and control; the input port of the first microprocessor is electrically connected with a temperature detection module, a human body induction module and a time setting module; the output port of the control mainframe is connected with a load control module and a wireless transmission module for controlling communication between the control mainframe and the learning remote controller; the learning remote controller mainly comprises a second microprocessor; the input end of the second microprocessor is connected with an infrared receiving module connected with the wireless transmission module for receiving learning signals and a keyboard module; and the output end of the second microprocessor is connected with an infrared transmitting module for transmitting control signals. The controller has high intellectualization, overcomes the defect of the conventional power supply control or learning remote control, and effectively avoids the waste of the conventional air conditioner caused by long-term standby state.
Description
Technical field
The utility model relates to a kind of energy-saving controller of air-conditioner, in particular, relates in particular to a kind of energy-saving controller of air-conditioner of the dual control model of mainly being made up of main control system and learning remote control device.
Background technology
Existing management type air conditioner energy saving control technology is divided from control mode, and main control mode has power supply control and learning remote control to control two classes, but no matter is the shortcoming that all there are self in power supply control or learning remote control control.The power supply control mode is to lean on temperature, time and the personal information and the preset parameters value that are detected to compare, and in the temperature of non-setting or in the time period, produces the action of disconnection air-conditioning power supply.Advantage is to have strong volume management function, and shortcoming is to work as personnel after the start to leave, and arrives delay time with powered-down, after personnel enter once more, needs could start shooting again with remote controller, and automation is not strong.The advantage of learning remote control control is after personnel leave, the remote closing air-conditioning; Can remote control open air-conditioning after personnel enter once more, the personnel that need not manually start shooting, and are little to the use influence of air-conditioning.Shortcoming is not possess management function, all can open air-conditioning in the temperature and time section of setting arbitrarily.Air-conditioning is to be in holding state at night, thereby has caused unnecessary waste.
Summary of the invention
The utility model provides a kind of energy-saving controller of air-conditioner of mainly being made of the dual control model that can realize full automation control main control system and learning remote control device in order to overcome the shortcoming of above-mentioned technical problem.
The energy-saving controller of air-conditioner of dual control model of the present utility model comprises a main control system, and this main control system comprises a power module, and its special feature is: also comprise a learning remote control device; Described main control system has comprised the first microprocessor of computing and control action, the input port of described first microprocessor electrically connects the human body induction module of temperature detecting module, human body signal and is used to set the time set module of main control system working time section, and the output port of described main control system is connected with the wireless transport module that is used to control the load control module of air-conditioning on/off and realizes main control system and the communication of learning remote control device; Described learning remote control device has comprised second microprocessor of computing and control action, the input of described second microprocessor is connected with the wireless transport module that matches with the wireless transport module of first microprocessor, infrared receiving module and the Keysheet module that receives learning signal, and the output of described second microprocessor is connected with the infrared transmission module to controlled air-conditioning emissioning controling signal.Energy-saving controller of air-conditioner of the present utility model has been gathered learning remote control device and main control system advantage separately, has realized comparatively intelligentized control mode.Main control system can realize that the personal information in environment temperature and the environment detects; The time set module is used to set microprocessor and gives controlled air-conditioning supplying time section, as detects the time period that system time is positioned at setting, then to the air-conditioning power supply, otherwise the power supply of disconnection air-conditioning; Parameter display module on the main control system is used to show the detected temperature of first microprocessor, human body sensing volume delay time, the working time section that sets and the address information of the usefulness of communicating by letter with the learning remote control device.The infrared receiving module of learning remote control device is used to catch the various signals of the air-conditioning remote control of being learnt, and the signal that captures is input in second microprocessor; The infrared transmission module of learning remote control device is used for launching the various control signals that second microprocessor is stored, thereby realizes the control to air-conditioning.
The energy-saving controller of air-conditioner of dual control model of the present utility model, comprise the system remote-controller that the time, temperature and the human body sensing parameter that are used for main control system are set, the input port of described first microprocessor is connected with the infrared receiving module that is used with system remote-controller.Usually under the circumstances, the installation site of main control system is higher, a system remote-controller that is used to set each parameter of main control system work should be set, and the shutdown delay time after system remote-controller is used for working time section, the opening and closing value of temperature, human body to main control system and leaves and the work address of main control system are set.
The energy-saving controller of air-conditioner of dual control model of the present utility model, described main control system comprise and are used for the parameter display module that the delay parameter to time, temperature and the human body sensing set shows that described learning remote control device comprises a parameter display module.The real-time demonstration of each parameter in the time of can realizing main control system and the work of learning remote control device by display module, it is more convenient to observe.
The energy-saving controller of air-conditioner of dual control model of the present utility model, the parameter display module of described main control system and the parameter display module of learning remote control device are the digital display module of LED.
The energy-saving controller of air-conditioner of dual control model of the present utility model, the wireless transport module of the wireless transport module of described main control system and learning remote control device all adopts the communications protocol of 2.4GHz double-direction radio communication module and M-BUS.Adopt this communication module and agreement not only to be convenient to installation but also comparatively reliable.
The energy-saving controller of air-conditioner of dual control model of the present utility model, described learning remote control device comprises a power module, and this power module input is 220 volts a alternating current, and the input of this power module is bipod or three-pin plug.
The beneficial effects of the utility model are: the advantages of existing power supply control and learning remote control control, make energy-saving controller of air-conditioner of the present utility model that higher intellectuality all be arranged, effectively avoided the shortcoming of existing learning remote control control and power supply control; The power supply that the main control system of energy-saving controller of air-conditioner of the present utility model can be realized controlled air-conditioning on one's own time in and be in off-state in the non-temperature section, effectively avoided existing air-conditioning because the waste that is in holding state for a long time and is brought.
Description of drawings
Fig. 1 is the theory structure schematic diagram of main control system;
Fig. 2 is the theory structure schematic diagram of learning remote control device.
Among the figure: 1 main control system, 2 learning remote control devices, 3 first microprocessors, 4 second microprocessors, 5 time set modules, 6 temperature detecting module, 7 human body induction modules, 8 infrared receiving modules, 9 load control modules, 10 wireless transport modules, 11 parameter display modules, 12 power modules, 13 wireless transport modules, 14 infrared receiving modules, 15 Keysheet modules, 16 infrared transmission modules, 17 power modules, 18 parameter display modules.
The specific embodiment
The utility model is described in further detail below in conjunction with accompanying drawing and embodiment.
The energy-saving controller of air-conditioner of dual control model of the present utility model comprises main control system 1, learning remote control device 2 and a system remote-controller.
Fig. 1 has provided the theory structure schematic diagram of main control system 1, main control system 1 comprises a first microprocessor 3, this first microprocessor 3 is a single-chip microcomputer, and the input port of first microprocessor 3 is connected with time set module 5, temperature detecting module 6, human body induction module 7, infrared receiving module 8.Time set module 5 is used to set the working time section of main control system, such as the working time section is 08:00 to 17:00, after time period configures, if the 13 detected times of first microprocessor are positioned within the 08:00 to 17:00, between temperature is in and allows to open, then give controlled air-conditioning power supply, otherwise will not power by load control module 9; Temperature detecting module 6 is used to detect extraneous environment temperature, because the temperature sensor of temperature detecting module 6 generally is positioned on the main control system 1, this makes its detected temperature higher 2~3 ℃ than average indoor temperature, the measurement of mean temperature is difficulty relatively, utilize 3 pairs of temperature that record of first microprocessor to carry out suitable correction, promptly on the temperature value that records, deduct 2~3 ℃, so that the operation values that makes temperature is more near the actual temperature value of the interior space; Human body induction module 7 be used in the sensing chamber or the regional extent of answering in whether have personnel to exist, but when the personnel that detect all leave, first microprocessor 3 picks up counting, main control system 1 makes air-conditioning be in holding state by learning remote control device 2 after reaching delay time, after personnel enter the room once more, make air-conditioning in running order by learning remote control device 2; The infrared receiving module 8 of first microprocessor 3 is used to realize the communication with system remote-controller, and then realizes the working time section of main control system 1, the opening and closing value of temperature, the setting of delay time parameter.
The output port of first microprocessor 3 is connected with load control module 9, wireless transport module 10 and parameter display module 11, and shown wireless transport module can be realized both-way communication.The power supply that load control module 9 is used to control air-conditioning disconnects and is closed; The wireless transport module 10 of main control system 1 adopts the communications protocol of 2.4GHz double-direction radio communication module and M-BUS, by realizing communicating by letter of main control system 1 and learning remote control device 2, and then realize control to air-conditioning with the cooperation of the wireless transport module 13 of learning remote control device 2; The parameter display module is used to show that working time section, the indoor temperature of detection, the personnel of the main control system that sets respond to the mailing address of delay time, main control system, has only the learning remote control device 2 identical with the address of main control system 1 just can realize communicating by letter with main control system.Main control system 1 also comprises the power module 12 that is used to provide electric energy.
Fig. 2 gives the theory structure schematic diagram of having located learning remote control device 2, learning remote control device 2 comprises second microprocessor 4 of a computing and processing capacity, second microprocessor 4 also is a single-chip microcomputer, this learning remote control device 2 comprises power module 12, and the input of this power module 12 is the bipod or the three-pin plug of 220 volts of alternating currents.The input port of second microprocessor 4 is connected with wireless transport module 13, infrared receiving module 14 and Keysheet module 15, and wireless transport module 13 can be realized both-way communication.The wireless transport module 13 of learning remote control device 2 is used with the wireless transport module 10 of main control system 1, realizes the communication between main control system 1 and the learning remote control device 2; The infrared receiving module 14 of learning remote control device 2 is used to receive each function signal of the air-conditioning remote control of being learnt, and the signal of learning is existed in the memory cell of second microprocessor, when controlling as 2 pairs of air-conditionings of need learning remote control device, learning remote control device 2 is controlled air-conditioning and is produced corresponding action existing the corresponding signal in second microprocessor 4 to send via infrared transmission module 16.
The course of work of the energy-saving controller of air-conditioner of dual control model of the present utility model:
It at first is each parameter that main control system is set, set by system remote-controller, for example can be provided with to the air-conditioning supplying time is 8:00 to 17:00, the correction value of temperature is 2 ℃, pairing opening and closing value is respectively 30 ℃ and 26 ℃ under the refrigeration mode, pairing opening and closing value is respectively 10 ℃ and 16 ℃ under the heating mode, and the delay time that personnel leave the back outage is set to 20 minutes.
Be the signal that utilizes learning remote control device 2 each buttons of study air-conditioning remote control then, for example the signal waveform of the startup and shutdown key of air-conditioning remote control is provided with main control system 1 consistent with the address of learning remote control device 2 then.So that main control system 1 is realized good communication with learning remote control device 2.
Open main control system 1, the first microprocessor of main control system 1 at first is that working time section, extraneous ambient temperature value and personal information are detected, if all satisfy condition of power supply, then power on to air-conditioning, if there is one not satisfy condition of power supply then do not power on by load control module; In the process of work, if main control system 1 detects the time of internal system when not being positioned at the time period that sets, just close air-conditioning, and then cut off the power supply to air-conditioning by load control module 9 by the wireless transport module order learning remote control device 2 of main control system 1; As detect temperature and reached corresponding unlatching or close value and then order the learning remote control device that air-conditioning is carried out to open or closing motion; As after the personnel that detect leave and reached the delay time of setting, then close air-conditioning by the learning remote control device.
Wherein, personnel respond to delay time and can adjust arbitrarily between 1~45 minute, are applicable to the user demand of different occasions.The shutdown of main control system control is closed air-conditioning with the learning remote control device earlier, and powered-down has again avoided during operation of air conditioner positive closing to the adverse effect of air-conditioning.Simultaneously, make main frame opening and closing under the situation of low power load, protected the contact of relay.In order to improve the reliability of communication, adopt 3 communication modes at random, if three times still can't be communicated by letter, then main control system is judged correctly installation or the artificial damage of learning remote control device, enters the single supply control mode of self, ensures normally carrying out of control.
Claims (6)
1. the energy-saving controller of air-conditioner of a dual control model comprises a main control system (1), and this main control system (1) comprises a power module (12), it is characterized in that: also comprise a learning remote control device (2); Described main control system (1) has comprised the first microprocessor (3) of computing and control action, the input port of described first microprocessor (3) is electrically connected with the human body induction module (7) of temperature detecting module (6), human body signal and is used to set the time set module (5) of main control system (1) working time section, and the output port of described main control system (1) is connected with load control module (9) that is used to control the air-conditioning on/off and the wireless transport module (10) of realizing main control system (1) and learning remote control device (2) communication; Described learning remote control device (2) has comprised second microprocessor (4) of computing and control action, the input of described second microprocessor (4) is connected with the wireless transport module (13) that matches with the wireless transport module (10) of first microprocessor (3), infrared receiving module (14) and the Keysheet module (15) that receives learning signal, and the output of described second microprocessor (4) is connected with the infrared transmission module (16) to controlled air-conditioning emissioning controling signal.
2. the energy-saving controller of air-conditioner of dual control model according to claim 1, it is characterized in that: comprise the system remote-controller that the time, temperature and the human body sensing parameter that are used for main control system (1) are set, the input port of described first microprocessor (3) is connected with the infrared receiving module (8) that is used with system remote-controller.
3. the energy-saving controller of air-conditioner of dual control model according to claim 1 and 2, it is characterized in that: described main control system (1) comprises and is used for the parameter display module (11) that the delay parameter to time, temperature and the human body sensing set shows that described learning remote control device (2) comprises a parameter display module (18).
4. the energy-saving controller of air-conditioner of dual control model according to claim 3 is characterized in that: the parameter display module (11) of described main control system (1) is the digital display module of LED with the parameter display module (18) of learning remote control device (2).
5. the energy-saving controller of air-conditioner of dual control model according to claim 1 and 2, it is characterized in that: the wireless transport module (10) of described main control system (1) and the wireless transport module (13) of learning remote control device (2) all adopt the communications protocol of 2.4GHZ double-direction radio communication module and M-BUS.
6. the energy-saving controller of air-conditioner of dual control model according to claim 1 and 2, it is characterized in that: described learning remote control device (2) comprises a power module (17), this power module (17) input is 220 volts a alternating current, and the input of this power module (17) is bipod or three-pin plug.
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CN201020119034XU CN201628340U (en) | 2010-02-25 | 2010-02-25 | Air-conditioner energy saving controller of double control modes |
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Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102354885A (en) * | 2011-08-07 | 2012-02-15 | 东南大学 | Wireless universal air-conditioner remote control socket based on wireless sensor network |
CN104081132B (en) * | 2012-02-10 | 2015-07-22 | 大金工业株式会社 | Air conditioner |
WO2016119296A1 (en) * | 2015-01-28 | 2016-08-04 | 广州光炬智能科技有限公司 | Air conditioner driver apparatus |
CN108989378A (en) * | 2017-05-31 | 2018-12-11 | 瑞萨电子株式会社 | communication device, link method and communication system |
-
2010
- 2010-02-25 CN CN201020119034XU patent/CN201628340U/en not_active Expired - Lifetime
Cited By (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102354885A (en) * | 2011-08-07 | 2012-02-15 | 东南大学 | Wireless universal air-conditioner remote control socket based on wireless sensor network |
CN104081132B (en) * | 2012-02-10 | 2015-07-22 | 大金工业株式会社 | Air conditioner |
WO2016119296A1 (en) * | 2015-01-28 | 2016-08-04 | 广州光炬智能科技有限公司 | Air conditioner driver apparatus |
US11168912B2 (en) | 2015-01-28 | 2021-11-09 | Botao Zhang | Air conditioner driving device |
CN108989378A (en) * | 2017-05-31 | 2018-12-11 | 瑞萨电子株式会社 | communication device, link method and communication system |
CN108989378B (en) * | 2017-05-31 | 2021-11-12 | 瑞萨电子株式会社 | Communication device, linking method and communication system |
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Granted publication date: 20101110 |