Control device, control system, control method and medium for environmental conditioning equipment

By designing control devices in environmental regulation equipment, using wireless sensing signals to judge the environmental status and control the working status of the equipment, the energy waste caused by human bad use habits is solved, and the effects of energy conservation and equipment intelligence are achieved.

CN116164381BActive Publication Date: 2025-05-06WUHAN LINPTECH
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Patent Information

Application Number
CN202111414794.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-11-25
Publication Date
2025-05-06
Estimated Expiration
2041-11-25

AI Technical Summary

Technical Problem

Existing environmental regulation equipment leads to energy waste under artificial bad use habits, and the existing technology mainly focuses on equipment system improvements, while ignoring the energy waste caused by human factors.

Method used

A control device is designed, including a control module and a wireless communication module, to determine the state changes of the environment in which the environmental regulation device is located by receiving wireless sensing signals, and to flexibly control the working status of the device according to these signals, for example, stop working when the environment is open and restart work when the environment is closed.

Benefits of technology

It effectively reduces energy consumption, improves the efficiency of environmental regulation equipment, reduces energy waste caused by human bad habits, and improves the intelligence and user experience of the equipment.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The embodiment of the present invention discloses a control device, a control system, a control method and a medium for an environmental conditioning device. The control device includes a control module and a first wireless communication module connected to the control module; the first wireless communication module is used to receive a wireless sensor signal and send it to the control module, wherein the wireless sensor signal is used to characterize that the state of the environment in which the environmental conditioning device is located has changed; the control module is used to control the working state of the environmental conditioning device when it is determined according to the wireless sensor signal that the state of the environment in which the environmental conditioning device is located has changed. The above device can flexibly control the working state of the environmental conditioning device and reduce energy consumption.
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Description

Technical Field

[0001] The present invention relates to the field of environmental conditioning equipment control, and in particular to a control device, a control system, a control method and a medium for environmental conditioning equipment. Background Art

[0002] With the continuous development of science and technology, environmental conditioning equipment is becoming more and more abundant, such as existing air conditioners, heaters, etc. However, due to its low cost of use and the relatively sufficient domestic power supply, there have been many cases of equipment abuse due to bad human habits. For example, using air conditioners with windows open will lead to energy consumption on the one hand, and on the other hand, air conditioning equipment cannot play a good role in environmental regulation, and users have a poor experience. However, in the existing technology, the focus is generally on improving the system of the equipment itself, while ignoring the energy waste caused by bad human habits. Summary of the invention

[0003] In view of this, embodiments of the present invention are intended to provide a control device, a control system, a control method and a medium for an environmental conditioning device.

[0004] In a first aspect, an embodiment of the present invention provides a control device for an environment conditioning device, comprising:

[0005] A control module, and a first wireless communication module connected to the control module;

[0006] The first wireless communication module is used to receive a wireless sensor signal and send it to the control module, wherein the wireless sensor signal is used to indicate that a state of the environment in which the environment conditioning device is located has changed;

[0007] The control module is used to control the working state of the environment conditioning device when it is determined according to the wireless sensor signal that the state of the environment in which the environment conditioning device is located has changed.

[0008] In some embodiments, the control module is also used to control the environmental conditioning device to stop working when it is determined according to the wireless sensor signal that the state of the environment where the environmental conditioning device is located changes from a closed state to an open state; or to control the environmental conditioning device to restart working when it is determined according to the wireless sensor signal that the state of the environment where the environmental conditioning device is located changes from the open state to the closed state.

[0009] In some embodiments, the control module is also used to control the environmental conditioning device to stop working when it is determined by the wireless sensor signal that the state of the environment in which the environmental conditioning device is located changes from the closed state to the open state after the environmental conditioning device has worked for a first preset period of time.

[0010] In some embodiments, the wireless sensing signal includes a plurality of;

[0011] The control module is also used to control the environment conditioning device to stop working after a second preset time period when only one of the wireless sensor signals represents that the state of the environment where the environment conditioning device is located has changed from the closed state to the open state; and to control the environment conditioning device to stop working immediately when two or more of the wireless sensor signals represent that the state of the environment where the environment conditioning device is located has changed from the closed state to the open state.

[0012] In some embodiments, the control device further comprises:

[0013] A first input module, connected to the control module, for receiving first input information indicating the operation of the environment conditioning device, and sending the first input information to the control module;

[0014] The control module is further configured to control the environment conditioning device to restart operation according to the first input information when the currently received wireless sensor signal indicates that the state of the environment in which the environment conditioning device is located changes from the open state to the closed state.

[0015] In some embodiments, the control module is further used to control the environment adjustment device to restart working after a third preset time period according to the first input information.

[0016] In some embodiments, the control device further comprises:

[0017] A temperature detection module, connected to the control module, for detecting the temperature of the environment in which the environment conditioning device is located, and sending the temperature to the control module;

[0018] The control module is further used to control the environment conditioning device to stop working when it is determined according to the wireless sensor signal that the state of the environment where the environment conditioning device is located changes from the closed state to the open state and the temperature reaches a preset temperature threshold.

[0019] In some embodiments, the control device further comprises:

[0020] A display module connected to the control module, wherein the display module includes at least one display unit, and one display unit corresponds to one receiving channel of the wireless sensor signal;

[0021] The control module is also used to control the display unit corresponding to the receiving channel of the wireless sensor signal to display in a corresponding state according to the wireless sensor signal; wherein, when the wireless sensor signal represents that the state of the environment where the environmental adjustment device is located is an open state, the display unit corresponding to the receiving channel of the wireless sensor signal displays a first state; when the wireless sensor signal represents that the state of the environment where the environmental adjustment device is located is a closed state, the display unit corresponding to the receiving channel of the wireless sensor signal displays a second state.

[0022] In some embodiments, the first wireless communication module is further used to receive power information of the wireless sensor device that sends the wireless sensor signal, and send the power information to the control module;

[0023] The control module is further configured to execute control according to the power information when the wireless sensing signal sent by the wireless sensing device is not received within a fourth preset time period.

[0024] In some embodiments, the control module is also used to control the first wireless communication module to disconnect the communication connection with the wireless sensor device when the wireless sensor signal emitted by the wireless sensor device is not received within a fourth preset time period and the power information received last time indicates that the power value of the wireless sensor device is greater than or equal to a preset power threshold.

[0025] In some embodiments, if the control device includes a display module:

[0026] The control module is also used to control the display unit corresponding to the receiving channel of the wireless sensor signal to display the third state when the wireless sensor signal emitted by the wireless sensor device is not received within a fourth preset time period and the power information received last time indicates that the power value of the wireless sensor device is less than a preset power threshold.

[0027] In some embodiments, the wireless sensing signal includes at least one of the following:

[0028] Window magnetic signal;

[0029] Door magnetic signal.

[0030] In some embodiments, the control module is also used to determine whether to control the working state of the environmental conditioning device according to the number of the receiving channels corresponding to the wireless sensor signal received within a fifth preset time period when the control device is operating in a power-on reset state.

[0031] In some embodiments, the control module is also used to control the working state of the environmental conditioning device when the state change is determined according to the wireless sensor signal when all the receiving channels receive the wireless sensor signal within the fifth preset time period; if only some of the receiving channels receive the wireless sensor signal within the fifth preset time period, after the fifth preset time period, the working state of the environmental conditioning device is controlled when the state change is determined according to the wireless sensor signal received by the some of the receiving channels; if none of the receiving channels receives the wireless sensor signal within the fifth preset time period, the working state of the environmental conditioning device is not controlled after the fifth preset time period.

[0032] In some embodiments, the control module is also used to control the display unit corresponding to the receiving channel to display the fourth state at the beginning of the fifth preset time period; within the fifth preset time period, if the receiving channel does not receive the wireless sensor signal, after the fifth preset time period, control the display unit corresponding to the receiving channel to display the fifth state and exit the power-on reset state.

[0033] In some embodiments, the control device further comprises:

[0034] A second input module, used for detecting second input information and sending the second input information to the control module before the first wireless communication module receives the wireless sensor signal;

[0035] The control module is further used to control the first wireless communication module to communicate with the wireless sensor device that sends the wireless sensor signal according to the second input information, and identify the wireless sensor device according to the communication result.

[0036] In some embodiments, the control module is further used to, after receiving the second input information, identify the wireless sensor device that sends the pairing signal based on the pairing signal if a preset number of pairing signals are received from the wireless sensor device and it is determined that the wireless sensor device that sends the pairing signal is not identified.

[0037] In some embodiments, the control module is further used to control the display unit corresponding to the wireless sensor device to continue displaying in the state before identification after identifying the wireless sensor device.

[0038] In some embodiments, the second input module,

[0039] Also used for detecting third input information of triggering the stop mark of the wireless sensor device;

[0040] The control module is further configured to control the first wireless communication module to communicate with the wireless sensor device that sends the wireless sensor signal according to the third input information, without identifying the wireless sensor device.

[0041] In some embodiments, the control device further comprises:

[0042] An audio output module connected to the control module;

[0043] The control module is further configured to send a corresponding control signal after receiving the second input information or according to the identification result;

[0044] The audio output module is used to output corresponding audio according to the control signal.

[0045] In a second aspect, an embodiment of the present invention provides a control system for an environmental conditioning device, including:

[0046] The control device and the wireless sensor device;

[0047] The wireless sensor device comprises a second wireless communication module and a sensor module; wherein the sensor module is used to detect whether the state of the environment where the environment conditioning device is located has changed; the second wireless communication module is used to send a wireless sensor signal indicating that the state of the environment where the environment conditioning device is located has changed to the control device according to the detection result of the sensor module;

[0048] The control device is used to control the working state of the environment conditioning device when it is determined according to the wireless sensor signal that the state of the environment in which the environment conditioning device is located has changed.

[0049] In some embodiments, the wireless sensing device further comprises:

[0050] A power detection module, used to detect the power information of the wireless sensor device;

[0051] The second wireless communication module is used to send the power information of the wireless sensor device to the control device;

[0052] The control device is further used to perform control according to the power information.

[0053] In a third aspect, an embodiment of the present invention provides a method for controlling an environment conditioning device, comprising:

[0054] receiving a wireless sensor signal, wherein the wireless sensor signal is used to indicate that a state of an environment in which the environment conditioning device is located has changed;

[0055] When it is determined according to the wireless sensor signal that the state of the environment in which the environment conditioning device is located changes, the working state of the environment conditioning device is controlled.

[0056] In some embodiments, when it is determined according to the wireless sensor signal that the state of the environment in which the environment conditioning device is located has changed, controlling the working state of the environment conditioning device includes:

[0057] When it is determined according to the wireless sensor signal that the state of the environment where the environmental conditioning device is located changes from a closed state to an open state, the environmental conditioning device is controlled to stop working; or, when it is determined according to the wireless sensor signal that the state of the environment where the environmental conditioning device is located changes from the open state to the closed state, the environmental conditioning device is controlled to restart working.

[0058] In some embodiments, when it is determined according to the wireless sensor signal that the state of the environment in which the environment conditioning device is located changes from a closed state to an open state, controlling the environment conditioning device to stop working includes:

[0059] After the environment conditioning device has been operating for a first preset time period, when it is determined according to the wireless sensor signal that the state of the environment in which the environment conditioning device is located changes from the closed state to the open state, the environment conditioning device is controlled to stop operating.

[0060] In some embodiments, the wireless sensing signal includes a plurality of;

[0061] When it is determined according to the wireless sensor signal that the state of the environment where the environment conditioning device is located changes from the closed state to the open state, controlling the environment conditioning device to stop working includes:

[0062] When only one of the wireless sensor signals indicates that the state of the environment in which the environment regulating device is located changes from the closed state to the open state, controlling the environment regulating device to stop working after a second preset time period;

[0063] When two or more of the wireless sensor signals represent that the state of the environment where the environment conditioning device is located changes from the closed state to the open state, the environment conditioning device is controlled to stop working immediately.

[0064] In some embodiments, the method further comprises:

[0065] receiving first input information indicating that the environmental conditioning device is operating;

[0066] When the currently received wireless sensor signal indicates that the state of the environment where the environment conditioning device is located changes from the open state to the closed state, the environment conditioning device is controlled to restart working according to the first input information.

[0067] In some embodiments, when the currently received wireless sensor signal indicates that the state of the environment in which the environment conditioning device is located changes from the open state to the closed state, controlling the environment conditioning device to restart operation according to the first input information includes:

[0068] The environment adjustment device is controlled to restart working after a third preset time period according to the first input information.

[0069] In some embodiments, the method further comprises:

[0070] Detecting the temperature of the environment in which the environmental conditioning device is located;

[0071] When it is determined according to the wireless sensor signal that the state of the environment in which the environment conditioning device is located changes from the closed state to the open state, and the temperature reaches a preset temperature threshold, the environment conditioning device is controlled to stop working.

[0072] In some embodiments, the control device includes at least one display unit, and one display unit corresponds to one receiving channel of the wireless sensor signal;

[0073] The method further comprises:

[0074] According to the wireless sensor signal, the display unit corresponding to the receiving channel of the wireless sensor signal is controlled to display in a corresponding state; wherein, when the wireless sensor signal represents that the state of the environment where the environmental adjustment device is located is an open state, the display unit corresponding to the receiving channel of the wireless sensor signal is displayed in a first state; when the wireless sensor signal represents that the state of the environment where the environmental adjustment device is located is a closed state, the display unit corresponding to the receiving channel of the wireless sensor signal is displayed in a second state.

[0075] In some embodiments, the method further comprises:

[0076] Receiving power information of the wireless sensor device that sends the wireless sensor signal;

[0077] When the wireless sensing signal sent by the wireless sensing device is not received within a fourth preset time period, control is performed according to the power information.

[0078] In some embodiments, when the wireless sensing signal sent by the wireless sensing device is not received within a fourth preset time period, executing control according to the power information includes:

[0079] When the wireless sensor signal sent by the wireless sensor device is not received within a fourth preset time period, and the power information received last time indicates that the power value of the wireless sensor device is greater than or equal to a preset power threshold, control to disconnect the communication connection with the wireless sensor device.

[0080] In some embodiments, when the wireless sensing signal sent by the wireless sensing device is not received within a fourth preset time period, executing control according to the power information includes:

[0081] When the wireless sensor signal emitted by the wireless sensor device is not received within a fourth preset time period, and the power information received last time indicates that the power value of the wireless sensor device is less than a preset power threshold, the display unit corresponding to the receiving channel of the wireless sensor signal is controlled to display the third state.

[0082] In some embodiments, the method further comprises:

[0083] When the control device operates in a power-on reset state, it is determined whether to control the working state of the environment adjustment device according to the number of the receiving channels corresponding to the wireless sensor signals received within a fifth preset time period.

[0084] In some embodiments, when the control device is operating in a power-on reset state, determining whether to control the working state of the environment conditioning device according to the number of the receiving channels corresponding to the wireless sensor signal received within a fifth preset time period includes:

[0085] Within the fifth preset time period, when all the receiving channels receive the wireless sensor signal, when determining the state change according to the wireless sensor signal, controlling the working state of the environment conditioning device;

[0086] If only part of the receiving channels receive the wireless sensor signal within a fifth preset time period, after the fifth preset time period, when the state change is determined according to the wireless sensor signal received by the part of the receiving channels, the working state of the environment conditioning device is controlled;

[0087] If the receiving channel does not receive the wireless sensor signal within the fifth preset time period, the working state of the environmental conditioning device will not be controlled after the fifth preset time period.

[0088] In some embodiments, the method further comprises:

[0089] At the start time of the fifth preset duration, controlling the display unit corresponding to the receiving channel to display a fourth state;

[0090] If the receiving channel does not receive the wireless sensor signal within the fifth preset time period, the display unit corresponding to the receiving channel is controlled to display a fifth state and exit the power-on reset state after the fifth preset time period.

[0091] In some embodiments, the method further comprises:

[0092] Before receiving the wireless sensor signal, detecting second input information;

[0093] According to the second input information, the communication with the wireless sensor device that sends the wireless sensor signal is controlled, and the wireless sensor device is identified according to the communication result.

[0094] In some embodiments, controlling communication with the wireless sensor device that sends the wireless sensor signal according to the second input information, and identifying the wireless sensor device according to the communication result, includes:

[0095] After receiving the second input information, if a preset number of pairing signals sent by the wireless sensor device are received and it is determined that the wireless sensor device sending the pairing signal is not identified, the wireless sensor device sending the pairing signal is identified according to the pairing signal.

[0096] In some embodiments, the method further comprises:

[0097] After the wireless sensor device is identified, a display unit corresponding to the wireless sensor device is controlled to continue displaying in a state before identification.

[0098] In some embodiments, the method further comprises:

[0099] Detecting third input information of the wireless sensor device that triggers the stop mark;

[0100] According to the third input information, the wireless sensor device that sends the wireless sensor signal is controlled to stop communicating, and the wireless sensor device is not identified.

[0101] In some embodiments, the method further comprises:

[0102] After receiving the second input information, or according to the identification result, sending a corresponding control signal;

[0103] The corresponding audio is output according to the control signal.

[0104] In a fourth aspect, an embodiment of the present invention provides a control device for an environmental conditioning device, the device comprising:

[0105] A memory for storing computer executable instructions;

[0106] A processor is connected to the memory and is used to implement any control method described in the third aspect by executing the computer executable instructions.

[0107] In a fifth aspect, an embodiment of the present invention provides a storage medium, wherein the computer-readable storage medium stores computer-executable instructions, and the computer-executable instructions are configured to execute any one of the control methods described in the third aspect above.

[0108] The technical solution provided by the embodiments of the present invention may have the following beneficial effects:

[0109] In an embodiment of the present invention, the control device includes a control module and a first wireless communication module connected to the control module; the first wireless communication module is used to receive a wireless sensor signal and send it to the control module, wherein the wireless sensor signal is used to indicate that the state of the environment where the environment conditioning device is located has changed; the control module is used to control the working state of the environment conditioning device when it is determined according to the wireless sensor signal that the state of the environment where the environment conditioning device is located has changed. In this way, the working state of the environment conditioning device can be flexibly controlled while reducing energy consumption.

[0110] It is to be understood that the foregoing general description and the following detailed description are exemplary and explanatory only and are not restrictive of the invention. BRIEF DESCRIPTION OF THE DRAWINGS

[0111] Figure 1 A schematic diagram of a central air conditioning system provided by an embodiment of the present invention;

[0112] Figure 2 A schematic diagram of a fresh air system provided by an embodiment of the present invention;

[0113] Figure 3 A structure of a control device for an environmental conditioning device provided by an embodiment of the present invention Figure 1 ;

[0114] Figure 4 A control device structure of an environmental conditioning device provided in an embodiment of the present invention Figure 2 ;

[0115] Figure 5 A control device structure of an environmental conditioning device provided in an embodiment of the present invention Figure 3 ;

[0116] Figure 6 A control system structure diagram of an environmental conditioning device provided by an embodiment of the present invention;

[0117] Figure 7 A structural diagram of a wireless sensor device provided by an embodiment of the present invention;

[0118] Figure 8 A flow chart of a control method for an environmental conditioning device provided by an embodiment of the present invention;

[0119] Fig. 9 A schematic diagram of the physical structure of a control device for an environmental conditioning device provided in an embodiment of the present invention. DETAILED DESCRIPTION

[0120] The technical solution of the present invention is further described in detail below in conjunction with the accompanying drawings and specific embodiments.

[0121] Before describing the embodiments of the present invention in detail, a brief description of the environment adjustment device is given. The environment adjustment device includes household environment adjustment devices and commercial environment adjustment devices. The environment adjustment includes but is not limited to cooling, heating, air quality adjustment, etc. Common environment adjustment devices include air conditioners and fresh air systems.

[0122] Figure 1 A schematic diagram of a central air conditioning system provided by an embodiment of the present invention is shown. Figure 1 It can be seen that the central air conditioning system includes a refrigeration system and a condensing water system; the refrigeration system includes a compressor, a cooling pump, a cooling tower and a throttling device connected by pipelines; the cooling water system includes a freezing pump connected by pipelines, several control ball valves, and several coil fans arranged in parallel. The refrigeration principle of central air conditioning is that the refrigerant is compressed into a high-temperature and high-pressure gas by the compressor and enters the cooling pump, and performs isobaric heat exchange with water or air to become a low-temperature and low-pressure liquid working medium, which vaporizes in the cooling tower. The vaporization process absorbs the heat of the chilled water and reduces the temperature of the chilled water. The refrigerant absorbs heat in the cooling tower, and the temperature rises to become superheated steam, which enters the compressor for repeated circulation. The chilled water circulation system is connected to both ends of the cooling tower. The refrigerant absorbs heat to reduce the temperature of the chilled water, so that the low-temperature water flows to the user end and then passes through the fan coil for heat exchange. The fan coil is installed in each room to exchange heat with the indoor air, and the cold generated in the refrigeration system is transferred to the room, thereby achieving the purpose of refrigeration.

[0123] Figure 2 The schematic diagram of a fresh air system provided by an embodiment of the present invention is shown. The fresh air system is based on using a dedicated device to deliver fresh air to the room on one side of a closed room, and then exhausting it to the outside from the other side by a dedicated device, so that a fresh air flow field is formed in the room, thereby meeting the needs of indoor fresh air ventilation. The fresh air system uses a high-pressure, large-flow fan, relying on mechanical force to deliver air to the room from one side, and exhausts it to the outside from the other side by a specially designed exhaust fan, so as to force a fresh air flow field to be formed in the system. While delivering air, the air entering the room is filtered, heat-humidified, disinfected, sterilized, oxygenated, and preheated.

[0124] For including Figure 1 and Figure 2 Environmental conditioning equipment, including the one that opens doors / windows, will consume energy on the one hand, and on the other hand, due to the temperature difference between inside and outside the room, opening doors / windows will form a large amount of condensation water, affecting the environmental conditioning effect.

[0125] To this end, the present invention provides a method comprising Figure 1 and Figure 2 Control devices for environmental conditioning equipment including Figure 3 , Figure 3 The structure of a control device for an environmental conditioning device provided by an embodiment of the present invention is shown. Figure 1 , the control device 10 of the environment conditioning device includes a first wireless communication module 11, and a control module 12 connected to the first wireless communication module 11;

[0126] The first wireless communication module 11 is used to receive a wireless sensor signal and send it to the control module 12, wherein the wireless sensor signal is used to indicate that the state of the environment where the environment adjustment device is located has changed;

[0127] The control module 12 is used to control the working state of the environment conditioning device when it is determined according to the wireless sensor signal that the state of the environment in which the environment conditioning device is located has changed.

[0128] In an embodiment of the present invention, the control device 10 further includes a power supply module for converting alternating current into direct current to supply power to each module in the control device 10 .

[0129] In some embodiments, the wireless sensing signal includes at least one of the following: a window magnetic signal; a door magnetic signal.

[0130] In an embodiment of the present invention, when the state of the window changes, such as when the window is opened or closed, the window magnet sends out a window magnet signal indicating that the window is opened or closed. Similarly, when the door is opened or closed, the door magnet sends out a door magnet signal indicating that the door is opened or closed. Therefore, the window magnet signal sent out by the window magnet installed on the window of the environment where the environmental conditioning device is located, and / or the door magnet signal sent out by the door magnet installed on the door of the environment where the environmental conditioning device is located, can be used to obtain a wireless sensing signal indicating that the state of the environment where the environmental conditioning device is located and is received by the first wireless communication module 11. Although the present embodiment takes the window magnet and the door magnet as examples, it can be understood that any device that can detect the open or closed state of the environment belongs to the protection scope of the present invention.

[0131] The control module 12 flexibly controls the working state of the environmental conditioning device according to the wireless sensor signal that represents the change in the state of the environment in which the environmental conditioning device is located. For example, the control module 12 controls the environmental conditioning device to shut down according to the wireless sensor signal to reduce energy consumption. The control module 12 controls the environmental conditioning device to restart working according to the wireless sensor signal without the need for manual control by the user, thereby improving intelligence.

[0132] In an embodiment of the present invention, Figure 3 The control device 10 may be externally connected to the environment conditioning device, or may be embedded in the control system of the environment conditioning device, which is not limited in this embodiment.

[0133] In some embodiments, the control module 12 is also used to control the environmental conditioning device to stop working when it is determined according to the wireless sensor signal that the state of the environment where the environmental conditioning device is located changes from a closed state to an open state; or to control the environmental conditioning device to restart working when it is determined according to the wireless sensor signal that the state of the environment where the environmental conditioning device is located changes from the open state to the closed state.

[0134] In an embodiment of the present invention, the state of the environment where the environmental conditioning device is located changes from a closed state to an open state. Taking the window magnet as an example, when the window magnet is disengaged, the window magnet sends a wireless sensor signal indicating that the window is opened. The control module 12 determines that the state of the environment where the environmental conditioning device is located changes from a closed state to an open state based on the wireless sensor signal, and controls the environmental conditioning device to stop working, thereby effectively reducing the energy waste caused by using the environmental conditioning device with the window opened.

[0135] When the state of the environment where the environmental conditioning device is located changes from an open state to a closed state, taking the window magnet as an example, when the window magnet is closed, the window magnet sends a wireless sensor signal indicating that the window is closed, and the control module 12 determines that the state of the environment where the environmental conditioning device is located has changed from an open state to a closed state based on the wireless sensor signal, and controls the environmental conditioning device to restart working without manual control by the user, thereby improving intelligence. It is worth noting that the "closed state" and "open state" described in this embodiment are relative concepts, and do not represent the absolute closure or absolute openness of the environment. In other words, the opening or closure of non-detected positions in the environment does not affect the "closed state" or "open state" described; for example, if the current environment is a closed state, even if the skylight used for ventilation is opened and the window magnet sensor device used for detection does not send a corresponding wireless signal, it will not affect the current environment being identified as a closed state.

[0136] In some embodiments, the control module 12 is also used to control the environmental conditioning device to stop working when it is determined according to the wireless sensor signal that the state of the environment in which the environmental conditioning device is located changes from the closed state to the open state after the environmental conditioning device has worked for a first preset period of time.

[0137] In an embodiment of the present invention, after the environmental conditioning device has worked for the first preset period of time, the environment in which the environmental conditioning device is located may have achieved a better conditioning effect. Therefore, when the control module 12 determines based on the wireless sensor signal that the state of the environment in which the environmental conditioning device is located has changed from a closed state to an open state, the environmental conditioning device is controlled to stop working. This can reduce energy consumption caused by using the environmental conditioning device in an open environment while taking into account user experience.

[0138] In some embodiments, the wireless sensor signal includes multiple ones; the control module 12 is also used to control the environmental conditioning device to stop working after a second preset time period when only one of the wireless sensor signals represents that the state of the environment where the environmental conditioning device is located has changed from the closed state to the open state; and to control the environmental conditioning device to stop working immediately when two or more of the wireless sensor signals represent that the state of the environment where the environmental conditioning device is located has changed from the closed state to the open state.

[0139] In an embodiment of the present invention, the degree of openness of the environment in which the environment conditioning device is located can be reflected by multiple wireless sensor signals. When only one wireless sensor signal represents that the state of the environment in which the environment conditioning device is located has changed from a closed state to an open state, the degree of openness of the environment in which the environment conditioning device is located is relatively low. Therefore, in order to take into account the user experience, the environment conditioning device can be controlled to stop working after the second preset time to reduce energy consumption.

[0140] In an embodiment of the present invention, when there are two or more wireless sensor signals indicating that the state of the environment in which the environmental conditioning device is located has changed from a closed state to an open state, the degree of openness of the environment in which the environmental conditioning device is located is relatively high. At this time, even if the environmental conditioning device does not stop working, the regulating effect of the environmental conditioning device on the environment will be relatively poor. Therefore, in this case, the control module 12 controls the environmental conditioning device to stop working immediately, which can not only effectively reduce energy consumption but also reduce ineffective regulation.

[0141] In an embodiment of the present invention, the control module 12 determines the degree of openness of the environment where the environmental conditioning device is located according to the number of wireless signals that characterize the change in the state of the environment where the environmental conditioning device is located from a closed state to an open state, and controls the timing when the environmental conditioning device stops working, thereby taking into account both user experience and reducing energy consumption.

[0142] In some embodiments, the control device 10 further includes a first input module connected to the control module 12, for receiving first input information indicating that the environment conditioning device is working, and sending the first input information to the control module 12;

[0143] The control module 12 is further configured to control the environment conditioning device to restart operation according to the first input information when the currently received wireless sensor signal indicates that the state of the environment where the environment conditioning device is located changes from the open state to the closed state.

[0144] In an embodiment of the present invention, the first input module can be an air conditioning control panel, which is electrically connected to the control module 12. When the user selects the power button on the control panel, the control panel sends the user instruction (i.e., the first input information) to the control module 12, and the control module 12 obtains the first input information indicating that the environmental conditioning device is working.

[0145] In an embodiment of the present invention, when the currently received wireless sensor signal indicates that the state of the environment in which the environmental conditioning device is located has changed from an open state to a closed state, the control module 12 controls the environmental conditioning device to restart working according to the first input information without the user having to issue a restart command again, thereby reducing user operations and providing a good user experience.

[0146] In some embodiments, the control module 12 is further configured to control the environment adjustment device to restart working after a third preset time period according to the first input information.

[0147] In an embodiment of the present invention, the wireless sensor signal acquired by the control module 12 may be temporarily unstable due to a device failure such as a window magnet or a door magnet. For example, the actual door is open or half-open, but a signal indicating a change to a closed state is still given; or, because the user changes the state of the window magnet or the door magnet multiple times within a preset time period, causing the wireless signal to change frequently, after the control module 12 obtains the first input information indicating that the environmental conditioning device is working, the control module 12 controls the environmental conditioning device to restart working when the state of the environment where the environmental conditioning device is located changes from an open state to a closed state according to the wireless sensor signal received for the last time within a third preset time period, thereby improving the accuracy of control.

[0148] In some embodiments, the control device further comprises:

[0149] A temperature detection module, connected to the control module 12, for detecting the temperature of the environment in which the environment conditioning device is located, and sending the temperature to the control module 12;

[0150] The control module 12 is further configured to control the environment conditioning device to stop working when it is determined according to the wireless sensor signal that the state of the environment in which the environment conditioning device is located changes from the closed state to the open state and the temperature reaches a preset temperature threshold.

[0151] In an embodiment of the present invention, the temperature detection module may be a temperature sensor, which detects the temperature of the environment where the environmental conditioning device is located and sends the temperature to the control module 12. When the control module 12 determines that the state of the environment where the environmental conditioning device is located has changed from a closed state to an open state according to the wireless sensor signal, and the temperature reaches a preset temperature threshold, the environmental conditioning device is controlled to stop working. Since the ambient temperature has reached the preset temperature threshold, that is, the environmental conditioning device has achieved a good environmental conditioning effect, at this time, according to the change in the state of the environment where the environmental conditioning device is located from a closed state to an open state, the environmental conditioning device is controlled to stop working, thereby reducing energy consumption and providing a better user experience.

[0152] In some embodiments, the control device 10 further includes:

[0153] A display module connected to the control module 12, wherein the display module includes at least one display unit, and one display unit corresponds to one receiving channel of the wireless sensor signal;

[0154] The control module 12 is also used to control the display unit corresponding to the receiving channel of the wireless sensor signal to display in a corresponding state according to the wireless sensor signal; wherein, when the wireless sensor signal represents that the state of the environment where the environmental adjustment device is located is an open state, the display unit corresponding to the receiving channel of the wireless sensor signal displays a first state; when the wireless sensor signal represents that the state of the environment where the environmental adjustment device is located is a closed state, the display unit corresponding to the receiving channel of the wireless sensor signal displays a second state.

[0155] In an embodiment of the present invention, the display module can be any device that can display different information, such as an LED (Light-Emitting Diode) indicator light group, a liquid crystal display screen, etc., and an LED indicator light group is taken as an example here. An LED indicator light is a display unit, corresponding to a receiving channel of a wireless sensor signal. When the wireless sensor signal represents that the state of the environment where the environmental adjustment device is located is an open state, the control module 12 controls the LED indicator light corresponding to the receiving channel of the wireless sensor signal to display a first state; when the wireless sensor signal represents that the state of the environment where the environmental adjustment device is located is a closed state, the control module 12 controls the LED indicator light corresponding to the receiving channel of the wireless sensor signal to display a second state.

[0156] The display unit displays a first state and a second state that are different. For example, the first state of the display unit may be that the LED indicator light is on, and the second state of the display unit may be that the LED indicator light is off.

[0157] In this embodiment, based on the different display states of the display unit corresponding to the receiving channel of the wireless sensor signal, the user can intuitively know the open or closed state of the environment where the environmental conditioning device is located, as well as the state information of whether each wireless sensor signal represents the open or closed state of the environment.

[0158] In some embodiments, the first wireless communication module 11 is further used to receive power information of the wireless sensor device that sends the wireless sensor signal, and send the power information to the control module 12;

[0159] The control module 12 is further configured to execute control according to the power information when the wireless sensing signal sent by the wireless sensing device is not received within a fourth preset time period.

[0160] In an embodiment of the present invention, the wireless sensor device, such as the window magnetic transmitter, sends the window magnetic signal indicating whether the window is opened or closed and also sends the power information of the window magnetic to the first wireless communication module 11 .

[0161] Since the wireless sensor device cannot accurately send out a wireless sensor signal when the wireless sensor device is low on power, the first wireless communication module 11 receives the power information of the wireless sensor device that sends the wireless sensor signal and sends it to the control module 12. The control module 12 can determine whether it is necessary to perform control based on the wireless sensor signal based on the power information to improve the accuracy of control.

[0162] For example, if the control module 12 determines that the wireless sensor device is in a low-battery state based on the power information, and the first wireless sensor module 11 does not receive the wireless sensor signal emitted by the wireless sensor device within a fourth preset time period, it can be considered that the wireless sensor device has run out of power and has stopped working. At this time, after the wireless sensor device is charged, the control module 12 controls the working state of the environmental conditioning device based on the received wireless sensor signal emitted by the charged wireless sensor device.

[0163] In some embodiments, the control module 12 is also used to control the first wireless communication module 11 to disconnect the communication connection with the wireless sensor device when the wireless sensor signal emitted by the wireless sensor device is not received within a fourth preset time period and the power information received last time indicates that the power value of the wireless sensor device is greater than or equal to a preset power threshold.

[0164] In an embodiment of the present invention, when the control module 12 does not receive a wireless sensor signal from the wireless sensor device within a fourth preset time period, and the last received power information indicates that the power value of the wireless sensor device is greater than or equal to the preset power threshold, it means that the wireless sensor device is not in a low power state, and the wireless sensor device can be considered to be faulty. The control module 12 controls the first wireless communication module 11 to disconnect the communication connection with the wireless sensor device to avoid the waste of power and communication resources caused by the first wireless communication module 11 continuously maintaining the communication connection with the faulty wireless sensor device.

[0165] In some embodiments, if the control device 10 includes a display module:

[0166] The control module 12 is also used to control the display unit corresponding to the receiving channel of the wireless sensor signal to display the third state when the wireless sensor signal emitted by the wireless sensor device is not received within a fourth preset time period and the power information received last time indicates that the power value of the wireless sensor device is less than a preset power threshold.

[0167] In an embodiment of the present invention, when the control module 12 does not receive a wireless sensor signal emitted by the wireless sensor device within a fourth preset time period, and the power information received last time indicates that the power value of the wireless sensor device is less than a preset power threshold, it is determined that the wireless sensor device is in a low power state, and the display unit corresponding to the receiving channel of the wireless sensor signal is controlled to display the third state.

[0168] Exemplarily, the display unit may display the third state as a flashing LED indicator light. When the display unit corresponding to the receiving channel of the wireless sensor signal displays the third state, the user can be informed that the wireless sensor device is at low power, so as to remind the user to charge the wireless sensor device in time.

[0169] In some embodiments, the control module 12 is also used to determine whether to control the working state of the environmental conditioning device according to the number of the receiving channels corresponding to the wireless sensor signal received within a fifth preset time period when the control device 10 is operating in a power-on reset state.

[0170] In the embodiment of the present invention, the power-on reset state of the device can be the state after the control device 10 is powered on for the first time after leaving the factory, or it can be the state within a preset time period after the control device 10 is powered on or restarted (for example, within 100 minutes after power-on is in the power-on reset state), which is not limited in this embodiment. The control device 10 enters the working state after being reset, and the control device 10 controls the working state of the environment adjustment device according to the wireless sensor signal in the working state.

[0171] In this embodiment, the door magnetic sensor or window magnetic sensor will periodically (the period is a preset value) send a wireless sensor signal of its own state to the control device 10; when the control device 10 is in a power-on reset state, the control module 12 determines whether to control the working state of the environmental conditioning device according to the number of receiving channels corresponding to the wireless sensor signal received within the fifth preset time length, that is, the control device 10 determines whether it enters the working state. The reason is that the number of receiving channels that receive the wireless sensor signal within the fifth preset time length also represents the communication status between the control device 10 and the wireless sensor device. Exemplarily, in the power-on reset state, the user can control multiple wireless sensor devices to send wireless sensor signals within the fifth preset time length. If the communication status between the control device 10 and the wireless sensor device is good, the wireless sensor signals sent by multiple channels should be detected, wherein one receiving channel corresponds to a communication channel between a wireless sensor device and the control device 10. If the control device 10 does not detect the wireless sensor signals of multiple receiving channels, it means that the communication status between the multiple wireless sensor devices and the control device 10 is poor. At this time, it is necessary to troubleshoot the communication failure between the devices. Therefore, the present invention determines whether to control the working state of the environmental adjustment device according to the number of receiving channels corresponding to the wireless sensor signals received within the fifth preset time period, which can improve the accuracy of control.

[0172] In some embodiments, the control module 12 is also used to control the working state of the environmental conditioning device when the state change is determined according to the wireless sensor signal when all the receiving channels receive the wireless sensor signal within the fifth preset time period; if only some of the receiving channels receive the wireless sensor signal within the fifth preset time period, after the fifth preset time period, the working state of the environmental conditioning device is controlled when the state change is determined according to the wireless sensor signal received by the some of the receiving channels; if none of the receiving channels receives the wireless sensor signal within the fifth preset time period, the working state of the environmental conditioning device is not controlled after the fifth preset time period.

[0173] In an embodiment of the present invention, the control device 10 is in a power-on reset state, and the preset duration of the power-on reset state is the fifth preset duration mentioned above. Exemplarily, assuming that the total number of receiving channels is 5, if within the fifth preset duration, when all five receiving channels receive wireless sensor signals, the control device 10 immediately ends the power-on reset state and enters the working mode; if within the fifth preset duration, only three of the five receiving channels receive wireless sensor signals, after the fifth preset duration, the control module 12 controls the working state of the environment adjustment device according to the wireless sensor signals received by the three channels; if within the fifth preset duration, none of the five receiving channels receive wireless sensor signals, after the fifth preset duration, since the receiving channels cannot receive wireless sensor signals, the control module 12 does not control the working state of the environment adjustment device.

[0174] In the embodiment of the present invention, the control device 10 is in a power-on reset state, and the control module 12 determines the communication status between the control device 10 and the wireless sensor device according to the number of receiving channels that receive the wireless sensor signal within the fifth preset time period, and controls the power-on reset time period of the control device 10 according to the communication status. When all receiving channels receive the wireless sensor signal, it indicates that the communication status between the control device 10 and the wireless sensor device is good, and the control device 10 can immediately stop the power-on reset state and enter the working mode without waiting for the end of the fifth preset time period of the power-on reset, thereby reducing the waiting time for the power-on reset, while ensuring that the communication status between the control device 10 and the wireless sensor device is good, and improving the user experience.

[0175] In some embodiments, the control module 12 is also used to control the display unit corresponding to the receiving channel to display the fourth state at the beginning of the fifth preset time period; within the fifth preset time period, if the receiving channel does not receive the wireless sensor signal, after the fifth preset time period, control the display unit corresponding to the receiving channel to display the fifth state and exit the power-on reset state.

[0176] In the embodiment of the present invention, when the control device 10 is powered on and reset, the control module 12 controls the display units corresponding to all receiving channels to display the fourth state. Exemplarily, the display unit displays the fourth state when the corresponding LED indicator light is off.

[0177] If the receiving channel does not receive a wireless sensor signal within the fifth preset time period after the control device 10 is powered on and reset, after the fifth preset time period, the display unit corresponding to the receiving channel is controlled to display the fifth state and exit the power-on reset state, including if the receiving channel has a corresponding identified wireless sensor device, but does not receive a wireless sensor signal within the fifth preset time period, the control module 12 controls the display unit corresponding to the receiving channel to display the fifth state; illustratively, the display unit can display the fifth state by flashing the corresponding LED indicator. It also includes that if the receiving channel does not have a corresponding identified wireless sensor device within the fifth preset time period after the control device 10 is powered on and reset, the control module 12 controls the corresponding LED indicator of the receiving channel to remain off.

[0178] In an embodiment of the present invention, the control device 10 is in a power-on reset state, and the control module 12 controls the display unit corresponding to the receiving channel to display different states according to the situation of the receiving channel receiving the wireless sensor signal, so as to facilitate the user to intuitively know whether the receiving channel has received the wireless sensor signal normally, so as to determine whether the communication between the control device 10 and the wireless sensor device is normal.

[0179] In some embodiments, the control device 10 further includes:

[0180] A second input module, used for detecting and triggering second input information before the first wireless communication module 11 receives the wireless sensor signal, and sending the second input information to the control module 12;

[0181] The control module 12 is further configured to control the first wireless communication module to communicate with the wireless sensor device that sends the wireless sensor signal according to the second input information, and identify the wireless sensor device according to the communication result.

[0182] In an embodiment of the present invention, the second input module is a physical module that can receive user operation instructions. Taking a button as an example, this embodiment is electrically connected to the control module 12. When the user issues an operation instruction, such as pressing the button for more than 3 seconds, the second input module receives the user instruction (i.e., the second input information) and sends it to the control module 12.

[0183] Since the control module 12 cannot determine which wireless sensor device sent the signal based only on the received wireless sensor signal, the control module 12 needs to identify the wireless sensor device so as to determine the communication status with the wireless sensor device in the working state. In this regard, after receiving the second input information, the present invention controls the first wireless communication module 11 to communicate with the wireless sensor device (a sensor with a state detection function such as a door magnetic sensor, a window magnetic sensor, etc.) that sends the wireless sensor signal so as to identify the wireless sensor device. If the communication result between the wireless sensor device and the first wireless communication module 11 is good, it means that the wireless sensor device is communicating normally, and thus the wireless sensor device can be identified.

[0184] Based on the above identification, for example, when a wireless sensor signal is received, it is possible to accurately know which wireless sensor device sent the wireless sensor signal, so as to improve the accuracy of controlling the environmental conditioning device according to the location of the wireless sensor device. For example, the location of the wireless sensor device represents the degree of influence of the state of a door or window located at that location on the environmental state.

[0185] In some embodiments, the control module 12 is further used to, after receiving the second input information, identify the wireless sensor device that sends the pairing signal based on the pairing signal if a preset number of pairing signals are received from the wireless sensor device and it is determined that the wireless sensor device that sends the pairing signal is not identified.

[0186] It should be noted that, in the process of identifying the wireless sensor device, the wireless sensor signal sent by the wireless sensor device to the first wireless communication module 11 is used as a pairing signal to identify the wireless sensor device that sends the wireless sensor signal, and the control module 12 will not control the working state of the environment adjustment device according to the pairing signal. Exemplarily, when the wireless sensor device is implemented as a window magnetic sensor (such as a light energy window magnetic sensor), the control module 12 enters the pairing mode through a special operation (such as long press 3S operation), and the wireless sensor signal sent by the window magnetic sensor received in this mode is a pairing message (i.e., a pairing signal), which includes pairing request information, a unique ID (Identity Document, identity identification) number information and necessary security verification information, wherein the ID number is the aforementioned identification; after receiving the pairing message, the control module 12 parses and verifies it, and after the verification is passed, the unique ID number information is stored in the data structure inside the control module 12. When the control module 12 is in normal working mode, if a wireless sensor signal is received, the ID number information in the wireless sensor signal is parsed, and it is determined whether the same ID number information has been stored in the local data structure. If so, the wireless sensor signal is considered to be legal, that is, the corresponding window magnetic sensor that sends the wireless sensor signal is a legal device, and the control module 12 identifies the wireless sensor device that sends the wireless sensor signal and performs subsequent operations according to the wireless sensor signal; otherwise, the wireless sensor signal is considered to be illegal and will be ignored, that is, the control module 12 will not identify the wireless sensor device that sends the wireless sensor signal.

[0187] In the embodiment of the present invention, after the control module 12 receives the second input information, it determines that a preset number of pairing signals are received, which indicates that the communication status between the wireless sensor device and the control device 10 is good. Therefore, after determining that the communication status is good and the wireless sensor device is not identified, the control module 12 identifies the wireless sensor device.

[0188] In this embodiment, setting the number of pairing signal receptions helps to improve the accuracy of determining the communication status with the wireless sensor device.

[0189] In some embodiments, the control module 12 is further configured to control the display unit corresponding to the wireless sensor device to continue displaying in the state before identification after identifying the wireless sensor device.

[0190] In an embodiment of the present invention, before the wireless sensor device is identified, the receiving channel receives the wireless sensor signal sent by the wireless sensor device, and the display unit corresponding to the receiving channel represents the state of the environment in which the environment adjustment device is located according to the wireless sensor signal, and displays the corresponding state. After the wireless sensor device is identified, the display state of the display unit of the receiving channel corresponding to the wireless sensor device is consistent with the display state of the display unit corresponding to the receiving channel before the wireless sensor device is identified.

[0191] Exemplarily, before identifying the wireless sensor device, the wireless sensor signal indicates that the environment where the environmental conditioning device is located is in an open state, and the LED indicator corresponding to the receiving channel is on. Then, after identifying the wireless sensor device, the LED indicator corresponding to the receiving channel remains on. Before identifying the wireless sensor device, the wireless sensor signal indicates that the environment where the environmental conditioning device is located is in a closed state, and the LED indicator corresponding to the receiving channel is off. Then, after identifying the wireless sensor device, the LED indicator corresponding to the receiving channel remains off.

[0192] The display unit corresponding to the receiving channel maintains the same display status before and after identifying the wireless sensor device, that is, the status of the environment where the environmental conditioning device is located is still displayed before and after identification, without having to re-judge the status of the environment where the wireless sensor signal represents the environment where the environmental conditioning device is located, so that the display unit can respond to the environmental status more quickly.

[0193] In some embodiments, the second input module is further used to detect third input information that triggers the stop mark of the wireless sensor device;

[0194] The control module 12 is further configured to control the first wireless communication module 11 and the wireless sensor device that sends the wireless sensor signal to stop communicating according to the third input information, and not to identify the wireless sensor device.

[0195] In an embodiment of the present invention, the second input module receives a user operation instruction. In this embodiment, the second input module takes a button as an example. The button is electrically connected to the control module 12. When the user issues an operation instruction, such as pressing a button that indicates the stop identification of the wireless sensor device, the second input module receives the user instruction (i.e., the third input information) and sends it to the control module 12. After receiving the third input information, the control module 12 controls the first wireless communication module 11 and the wireless sensor device that sends the wireless sensor signal to stop communicating, and does not identify the wireless sensor device. The user can flexibly control the stop of the communication between the first wireless communication module 11 and the wireless sensor device that sends the wireless sensor signal by issuing an operation instruction in the second input module, and does not identify the wireless communication module.

[0196] Exemplarily, if the wireless sensor device is not identified within 30 seconds, the control module 12 automatically stops the communication between the first wireless communication module and the wireless sensor device, and does not identify the wireless sensor device. The display status of the display unit of the receiving channel corresponding to the wireless sensor signal sent by the wireless sensor device remains unchanged.

[0197] In some embodiments, the control device 10 further includes:

[0198] An audio output module connected to the control module 12;

[0199] The control module 12 is further configured to send a corresponding control signal after receiving the second input information or according to the identification result;

[0200] The audio output module is used to output corresponding audio according to the control signal.

[0201] In an embodiment of the present invention, the audio output module is any physical module that can emit audio. In this embodiment, a buzzer is taken as an example. After the control module 12 receives the second input information, that is, when the control device 10 starts to identify the wireless sensor device, the control module 12 controls the buzzer to emit a corresponding audio, such as a short beep (100ms); when the identification is successful, the control module 12 controls the buzzer to emit a corresponding audio, such as a long beep (300ms) of the buzzer; or, after the identification fails, the control module 12 controls the buzzer to emit a corresponding audio, such as two short beeps (100ms) of the buzzer.

[0202] In the embodiment of the present invention, before and after the wireless sensor device is identified, the audio output module is controlled to emit different audios, and the user can learn about the current situation in a timely manner through the different audios.

[0203] In some embodiments, the control device 10 also includes a storage module connected to the control module 12, which is used to store the working status of the environmental conditioning device and the temperature when the environmental conditioning device stops working; the control module 12 is also used to adjust the first preset time length according to the historical temperature when the environmental conditioning device stops working.

[0204] In an embodiment of the present invention, the working state of the environmental conditioning device and the temperature when the environmental conditioning device stops working are stored to facilitate subsequent big data analysis and optimize parameters including the first preset time length, including: after obtaining the first preset time length of the environmental conditioning device working for multiple times, the control module 12 determines that the state of the environment in which the environmental conditioning device is located changes from a closed state to an open state according to the wireless sensor signal, and controls the environmental conditioning device to stop working and the current temperature data. If the temperature data is significantly different from the preset human perceived comfort temperature (such as 15°C to 25°C), the first preset time length is appropriately extended so that when the conditioning device stops working, a better environmental conditioning effect is achieved, thereby improving the user experience.

[0205] Figure 4 The structure of a control device of an environmental conditioning device provided by an embodiment of the present invention is shown. Figure 2 , Figure 4 The functions of each module in the embodiment are as described in the above embodiments and will not be repeated here. Figure 5 The structure of a control device of an environmental conditioning device provided by an embodiment of the present invention is shown. Figure 3 , relative to Figure 4 The aforementioned temperature detection module has been added and will not be described in detail here.

[0206] The embodiment of the present invention provides a control system for an environmental conditioning device, referring to Figure 6 , Figure 6 The control system structure diagram of the environmental conditioning device is shown. The control system includes the control device 10 and the wireless sensor device 20 described in any one of the above embodiments;

[0207] The wireless sensor device 20 includes a second wireless communication module and a sensor module; wherein the sensor module is used to detect whether the state of the environment in which the environment adjustment device is located has changed; the second wireless communication module is used to send a wireless sensor signal indicating that the state of the environment in which the environment adjustment device is located has changed to the control device according to the detection result of the sensor module;

[0208] The control device 10 is used to control the working state of the environment conditioning device when it is determined according to the wireless sensor signal that the state of the environment in which the environment conditioning device is located has changed.

[0209] In an embodiment of the present invention, the sensing module may be the aforementioned window magnet and / or door magnet, which detects whether the environmental state has changed. When the environmental state changes, such as from a closed state to an open state, the sensing module sends a detection result signal representing the change in the environmental state to the second wireless communication module; the second wireless communication module communicates with the first wireless communication module 11 of the control device 10 based on the detection result, and sends a wireless signal representing the change in the environmental state to the first wireless communication module 11.

[0210] In this embodiment, a sensor detects whether the state of the environment in which the environmental conditioning device is located has changed, and the second wireless communication module sends a wireless sensor signal representing the change in the state of the environment in which the environmental conditioning device is located to the control device based on the detection result; the control device 10 flexibly controls the working state of the environmental conditioning device based on the state of the environment in which the environmental conditioning device is located, thereby effectively reducing energy consumption.

[0211] In some embodiments, reference Figure 7 , Figure 7 A structure diagram of a wireless sensor device is shown. The wireless sensor device 20 also includes:

[0212] A power detection module, used to detect the power information of the wireless sensor device;

[0213] The second wireless communication module is used to send the power information of the wireless sensor device to the control device;

[0214] The control device 10 is further configured to perform control according to the power information.

[0215] The present invention provides a control method for an environmental conditioning device, which is applied to a control device 10. Figure 8 A flow chart of a control method for an environmental conditioning device provided by an embodiment of the present invention is shown. Figure 8 As shown, the control method of the environmental conditioning device includes the following steps:

[0216] S101, receiving a wireless sensor signal, where the wireless sensor signal is used to indicate that a state of an environment where the environment adjustment device is located has changed;

[0217] S102: When it is determined according to the wireless sensor signal that the state of the environment in which the environment conditioning device is located has changed, control the working state of the environment conditioning device.

[0218] According to the wireless sensor signal representing the change in the state of the environment in which the environmental conditioning device is located, the working state of the environmental conditioning device can be flexibly controlled. For example, the environmental conditioning device can be controlled to be turned off according to the wireless sensor signal to reduce energy consumption, and the environmental conditioning device can be controlled to restart working according to the wireless sensor signal without the need for manual control by the user, thereby improving intelligence.

[0219] In some embodiments, in step S102, when it is determined according to the wireless sensor signal that the state of the environment in which the environment conditioning device is located changes, controlling the working state of the environment conditioning device includes:

[0220] When it is determined according to the wireless sensor signal that the state of the environment where the environmental conditioning device is located changes from a closed state to an open state, the environmental conditioning device is controlled to stop working; or, when it is determined according to the wireless sensor signal that the state of the environment where the environmental conditioning device is located changes from the open state to the closed state, the environmental conditioning device is controlled to restart working.

[0221] When the state of the environment where the environmental conditioning device is located changes from an open state to a closed state, taking the window magnet as an example, when the window magnet is closed, the window magnet sends out a wireless sensor signal indicating that the window is closed. According to the wireless sensor signal, it is determined that the state of the environment where the environmental conditioning device is located has changed from an open state to a closed state, and the environmental conditioning device is controlled to restart working without manual control by the user, thereby improving intelligence.

[0222] In some embodiments, when it is determined according to the wireless sensor signal that the state of the environment in which the environment conditioning device is located changes from a closed state to an open state, controlling the environment conditioning device to stop working includes:

[0223] After the environment conditioning device has been operating for a first preset time period, when it is determined according to the wireless sensor signal that the state of the environment in which the environment conditioning device is located changes from the closed state to the open state, the environment conditioning device is controlled to stop operating.

[0224] In an embodiment of the present invention, after the environmental conditioning device has worked for the first preset period of time, the environment in which the environmental conditioning device is located may have achieved a better conditioning effect. Therefore, when it is determined based on the wireless sensor signal that the state of the environment in which the environmental conditioning device is located has changed from a closed state to an open state, the environmental conditioning device is controlled to stop working, which can reduce energy consumption caused by using the environmental conditioning device in an open environment while taking into account user experience.

[0225] In some embodiments, the wireless sensing signal includes a plurality of;

[0226] When it is determined according to the wireless sensor signal that the state of the environment where the environment conditioning device is located changes from the closed state to the open state, controlling the environment conditioning device to stop working includes:

[0227] When only one of the wireless sensor signals indicates that the state of the environment in which the environment regulating device is located changes from the closed state to the open state, controlling the environment regulating device to stop working after a second preset time period;

[0228] When two or more of the wireless sensor signals represent that the state of the environment where the environment conditioning device is located changes from the closed state to the open state, the environment conditioning device is controlled to stop working immediately.

[0229] In an embodiment of the present invention, the degree of openness of the environment in which the environment conditioning device is located can be reflected by multiple wireless sensor signals. When only one wireless sensor signal represents that the state of the environment in which the environment conditioning device is located has changed from a closed state to an open state, the degree of openness of the environment in which the environment conditioning device is located is relatively low. Therefore, in order to take into account the user experience, the environment conditioning device can be controlled to stop working after the second preset time to reduce energy consumption.

[0230] In an embodiment of the present invention, when two or more wireless sensor signals represent that the state of the environment where the environmental conditioning device is located has changed from a closed state to an open state, the degree of openness of the environment where the environmental conditioning device is located is relatively high. At this time, even if the environmental conditioning device does not stop working, the environmental conditioning effect of the environmental conditioning device on the environment will be relatively poor. Therefore, in this case, controlling the environmental conditioning device to stop working immediately can not only effectively reduce energy consumption but also reduce ineffective regulation.

[0231] In an embodiment of the present invention, the degree of openness of the environment in which the environmental conditioning device is located is determined based on the number of wireless signals that characterize the change in the state of the environment in which the environmental conditioning device is located from a closed state to an open state, and the timing when the environmental conditioning device stops working is controlled, thereby taking into account both user experience and reducing energy consumption.

[0232] In some embodiments, the method further comprises:

[0233] receiving first input information indicating that the environmental conditioning device is operating;

[0234] When the currently received wireless sensor signal indicates that the state of the environment where the environment conditioning device is located changes from the open state to the closed state, the environment conditioning device is controlled to restart working according to the first input information.

[0235] In an embodiment of the present invention, when the currently received wireless sensor signal indicates that the state of the environment in which the environmental conditioning device is located has changed from an open state to a closed state, the environmental conditioning device is controlled to restart work according to the first input information without the user having to issue a restart instruction again, thereby reducing user operations and providing a good user experience.

[0236] In some embodiments, when the currently received wireless sensor signal indicates that the state of the environment in which the environment conditioning device is located changes from the open state to the closed state, controlling the environment conditioning device to restart operation according to the first input information includes:

[0237] The environment adjustment device is controlled to restart working after a third preset time period according to the first input information.

[0238] In an embodiment of the present invention, since the acquired wireless sensor signal may be temporarily unstable due to a device failure such as a window sensor or a door sensor, after obtaining the first input information indicating that the environmental conditioning device is working, when the state of the environment in which the environmental conditioning device is located changes from an open state to a closed state according to the last wireless sensor signal received within a third preset time period, the environmental conditioning device is controlled to restart working, thereby improving the accuracy of control.

[0239] In some embodiments, the method further comprises:

[0240] Detecting the temperature of the environment in which the environmental conditioning device is located;

[0241] When it is determined according to the wireless sensor signal that the state of the environment in which the environment conditioning device is located changes from the closed state to the open state, and the temperature reaches a preset temperature threshold, the environment conditioning device is controlled to stop working.

[0242] Since the ambient temperature has reached the preset temperature threshold, that is, the environmental conditioning device has achieved a good environmental conditioning effect, at this time, the state of the environment in which the environmental conditioning device is located changes from a closed state to an open state, and the environmental conditioning device is controlled to stop working, thereby reducing energy consumption and providing a better user experience.

[0243] In some embodiments, the control device includes at least one display unit, and one display unit corresponds to one receiving channel of the wireless sensor signal;

[0244] The method further comprises:

[0245] According to the wireless sensor signal, the display unit corresponding to the receiving channel of the wireless sensor signal is controlled to display in a corresponding state; wherein, when the wireless sensor signal represents that the state of the environment where the environmental adjustment device is located is an open state, the display unit corresponding to the receiving channel of the wireless sensor signal is displayed in a first state; when the wireless sensor signal represents that the state of the environment where the environmental adjustment device is located is a closed state, the display unit corresponding to the receiving channel of the wireless sensor signal is displayed in a second state.

[0246] In this embodiment, based on the different display states of the display unit corresponding to the receiving channel of the wireless sensor signal, the user can intuitively know the open or closed state of the environment where the environmental conditioning device is located, as well as the state information of whether each wireless sensor signal represents the open or closed state of the environment.

[0247] In some embodiments, the method further comprises:

[0248] Receiving power information of the wireless sensor device that sends the wireless sensor signal;

[0249] When the wireless sensing signal sent by the wireless sensing device is not received within a fourth preset time period, control is performed according to the power information.

[0250] Since the wireless sensor device cannot accurately send out wireless sensor signals when the power is insufficient, the power information of the wireless sensor device that sends the wireless sensor signal is received, and whether control is required according to the wireless sensor signal is determined according to the power information to improve the accuracy of control.

[0251] In some embodiments, when the wireless sensing signal sent by the wireless sensing device is not received within a fourth preset time period, executing control according to the power information includes:

[0252] When the wireless sensor signal sent by the wireless sensor device is not received within a fourth preset time period, and the power information received last time indicates that the power value of the wireless sensor device is greater than or equal to a preset power threshold, control to disconnect the communication connection with the wireless sensor device.

[0253] If no wireless sensor signal is received from the wireless sensor device within the fourth preset time period, and the last received power information indicates that the power value of the wireless sensor device is greater than or equal to the preset power threshold, it means that the wireless sensor device is not in a low power state, and the wireless sensor device can be considered to be faulty. Disconnect the communication connection with the wireless sensor device to avoid wasting power and communication resources caused by maintaining a communication connection with the faulty wireless sensor device.

[0254] In some embodiments, when the wireless sensing signal sent by the wireless sensing device is not received within a fourth preset time period, executing control according to the power information includes:

[0255] When the wireless sensor signal emitted by the wireless sensor device is not received within a fourth preset time period, and the power information received last time indicates that the power value of the wireless sensor device is less than a preset power threshold, the display unit corresponding to the receiving channel of the wireless sensor signal is controlled to display the third state.

[0256] When the display unit corresponding to the wireless sensor signal displays the third state, the user can be informed that the wireless sensor device is in low power, so as to remind the user to charge the wireless sensor device in time.

[0257] In some embodiments, the method further comprises:

[0258] When the control device operates in a power-on reset state, it is determined whether to control the working state of the environment adjustment device according to the number of the receiving channels corresponding to the wireless sensor signals received within a fifth preset time period.

[0259] The number of receiving channels that receive wireless sensor signals within the fifth preset time period represents the communication status between the wireless sensor device and the wireless sensor device. Therefore, the present invention determines whether to control the working state of the environmental adjustment equipment based on the number of receiving channels corresponding to the wireless sensor signals received within the fifth preset time period, thereby improving the accuracy of control.

[0260] In some embodiments, when the control device is operating in a power-on reset state, determining whether to control the working state of the environment conditioning device according to the number of the receiving channels corresponding to the wireless sensor signal received within a fifth preset time period includes:

[0261] Within the fifth preset time period, when all the receiving channels receive the wireless sensor signal, when determining the state change according to the wireless sensor signal, controlling the working state of the environment conditioning device;

[0262] If only part of the receiving channels receive the wireless sensor signal within a fifth preset time period, after the fifth preset time period, when the state change is determined according to the wireless sensor signal received by the part of the receiving channels, the working state of the environment conditioning device is controlled;

[0263] If the receiving channel does not receive the wireless sensor signal within the fifth preset time period, the working state of the environmental conditioning device will not be controlled after the fifth preset time period.

[0264] When all receiving channels receive wireless sensor signals, it indicates that the communication status with the wireless sensor device is good. The working status of the environmental conditioning equipment can be controlled without waiting for the end of the fifth preset time of power-on reset. While ensuring good communication status with the wireless sensor device, the user experience is improved.

[0265] In some embodiments, the method further comprises:

[0266] At the start time of the fifth preset duration, controlling the display unit corresponding to the receiving channel to display a fourth state;

[0267] If the receiving channel does not receive the wireless sensor signal within the fifth preset time period, the display unit corresponding to the receiving channel is controlled to display a fifth state and exit the power-on reset state after the fifth preset time period.

[0268] In an embodiment of the present invention, according to the situation of receiving the wireless sensor signal by the receiving channel, the display unit corresponding to the receiving channel is controlled to display different states, so that the user can intuitively know whether the receiving channel has received the wireless sensor signal normally, so as to determine whether the communication with the wireless sensor device is normal.

[0269] In some embodiments, the method further comprises:

[0270] Before receiving the wireless sensing signal, detecting triggering second input information;

[0271] According to the second input information, the communication with the wireless sensor device that sends the wireless sensor signal is controlled, and the wireless sensor device is identified according to the communication result.

[0272] In this embodiment, the wireless sensor device is identified, and when a wireless sensor signal is received, it can be accurately known which wireless sensor device sent the wireless sensor signal, so as to improve the accuracy of controlling the environmental conditioning device according to the location of the wireless sensor device. For example, the location of the wireless sensor device represents the degree of influence of the state of the door or window located at the location on the environmental state.

[0273] In some embodiments, controlling communication with the wireless sensor device that sends the wireless sensor signal according to the second input information, and identifying the wireless sensor device according to the communication result, includes:

[0274] After receiving the second input information, if a preset number of pairing signals sent by the wireless sensor device are received and it is determined that the wireless sensor device sending the pairing signal is not identified, the wireless sensor device sending the pairing signal is identified according to the pairing signal.

[0275] In this embodiment, setting the number of pairing signal receptions helps to improve the accuracy of determining the communication status with the wireless sensor device.

[0276] In some embodiments, the method further comprises:

[0277] After the wireless sensor device is identified, the display unit corresponding to the receiving channel is controlled to continue displaying in the state before identification.

[0278] The display unit corresponding to the receiving channel maintains the same display status before and after identifying the wireless sensor device, that is, the status of the environment where the environmental conditioning device is located is still displayed before and after identification, without having to re-judge the status of the environment where the wireless sensor signal represents the environment where the environmental conditioning device is located, so that the display unit can respond to the environmental status more quickly.

[0279] In some embodiments, the method further comprises:

[0280] Detecting third input information of the wireless sensor device that triggers the stop mark;

[0281] According to the third input information, the wireless sensor device that sends the wireless sensor signal is controlled to stop communicating, and the wireless sensor device is not identified.

[0282] The user can issue an operation instruction to allow the control device to receive the third input information, and flexibly control the communication of the wireless sensor device that stops sending wireless sensor signals according to the third input information, and does not identify the wireless communication device.

[0283] In some embodiments, the method further comprises:

[0284] After receiving the second input information, or according to the identification result, sending a corresponding control signal;

[0285] The corresponding audio is output according to the control signal.

[0286] In the embodiment of the present invention, different audios are sent out according to the identification result, and the user can learn the identification status of the wireless sensor device in time through the different audios.

[0287] In some embodiments, the working state of the environment conditioning device and the temperature when the environment conditioning device stops working are stored, and the first preset duration is adjusted according to the temperature when the environment conditioning device stops working in history. After obtaining the first preset duration of the environment conditioning device working for multiple times, when it is determined according to the wireless sensor signal that the state of the environment where the environment conditioning device is located changes from a closed state to an open state, the environment conditioning device is controlled to stop working and the current temperature data is controlled. If the temperature data is significantly different from the preset human body perceived comfort temperature (such as 15°C to 25°C), the first preset duration is appropriately extended so that when the conditioning device stops working, a better environment conditioning effect has been achieved, thereby improving the user experience.

[0288] Fig. 9 A schematic diagram of the physical structure of a control device for an environmental conditioning device according to an embodiment of the present invention is shown. Fig. 9 As shown, an embodiment of the present invention provides a control device for an environment adjustment device, which may include: a processor 01, a memory 02 storing instructions executable by the processor 01, a communication interface 03, and a bus 04 for connecting the processor 01, the memory 02, and the communication interface 03. The processor 01 is used to execute a control program of the environment adjustment device stored in the memory to implement the following steps:

[0289] receiving a wireless sensor signal, wherein the wireless sensor signal is used to indicate that a state of an environment in which the environment conditioning device is located has changed;

[0290] When it is determined according to the wireless sensor signal that the state of the environment in which the environment conditioning device is located changes, the working state of the environment conditioning device is controlled.

[0291] In an embodiment of the present invention, the processor 01 may be at least one of an Application Specific Integrated Circuit (ASIC), a Digital Signal Processor (DSP), a Digital Signal Processing Device (DSPD), a Programmable Logic Device (PLD), a Field Programmable Gate Array (FPGA), a CPU, a controller, a microcontroller, and a microprocessor. It is understandable that for different devices, the electronic device used to implement the function of the processor may also be other, and the embodiment of the present invention does not specifically limit it. The terminal may also include a memory 02, which may be connected to the processor 01, wherein the memory 02 is used to store a semantic analysis program code, the program code includes computer operation instructions, and the memory 02 may include a high-speed RAM memory, and may also include a non-volatile memory, for example, at least two disk memories.

[0292] In practical applications, the memory 02 may be a volatile memory, such as a random access memory (RAM); or a non-volatile memory, such as a read-only memory (ROM), a flash memory, a hard disk (HDD) or a solid-state drive (SSD); or a combination of the above types of memories, and provide instructions and data to the processor 01.

[0293] In addition, each functional module in this embodiment can be integrated into one processing unit, or each unit can exist physically separately, or two or more units can be integrated into one unit. The above integrated unit can be implemented in the form of hardware or software functional modules.

[0294] If the integrated unit is implemented in the form of a software function module and is not sold or used as an independent product, it can be stored in a computer-readable storage medium. Based on this understanding, the technical solution of this embodiment is essentially or the part that contributes to the prior art or the whole or part of the technical solution can be embodied in the form of a software product. The computer software product is stored in a storage medium, including several instructions for a computer device (which can be a personal computer, server, or network device, etc.) or a processor to perform all or part of the steps of the method of this embodiment. The aforementioned storage medium includes: U disk, mobile hard disk, read-only memory (ROM), random access memory (RAM), disk or optical disk, etc., various media that can store program codes.

[0295] An embodiment of the present invention provides a storage medium, wherein the computer storage medium stores computer executable instructions; after the computer executable instructions are executed by a processor, the control method of the environment adjustment device provided by one or more of the above technical solutions can be implemented, for example, Figure 6 At least one of the control methods of the environmental conditioning device shown.

[0296] In the several embodiments provided by the present invention, it should be understood that the disclosed devices and methods can be implemented in other ways. The device embodiments described above are only schematic. For example, the division of the modules is only a logical function division. There may be other division methods in actual implementation, such as: multiple modules or components can be combined, or can be integrated into another system, or some features can be ignored, or not executed. In addition, the coupling, direct coupling, or communication connection between the components shown or discussed can be through some interfaces, and the indirect coupling or communication connection of the devices or units can be electrical, mechanical or other forms.

[0297] The modules described above as separate components may or may not be physically separated, and the components displayed as modules may or may not be physical modules, that is, they may be located in one place or distributed on multiple network modules; some or all of the modules may be selected according to actual needs to achieve the purpose of the present embodiment.

[0298] In addition, all functional modules in the embodiments of the present invention can be integrated into one processing module, or each module can be a separate module, or two or more modules can be integrated into one module; the above integrated modules can be implemented in the form of hardware or in the form of hardware plus software functional modules. A person of ordinary skill in the art can understand that all or part of the steps of implementing the above method embodiments can be completed by hardware related to program instructions, and the aforementioned program can be stored in a computer-readable storage medium, which, when executed, executes the steps of the above method embodiments; and the aforementioned storage medium includes: mobile storage devices, read-only memory (ROM, Read-Only Memory), random access memory (RAM, Random Access Memory), disks or optical disks, and other media that can store program codes.

[0299] The methods disclosed in the several method embodiments provided by the present invention can be arbitrarily combined without conflict to obtain new method embodiments.

[0300] The features disclosed in several device embodiments provided by the present invention can be arbitrarily combined without conflict to obtain new device embodiments.

[0301] The features disclosed in several method or device embodiments provided by the present invention can be arbitrarily combined without conflict to obtain new method embodiments or device embodiments.

[0302] The above is only a specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art can easily think of changes or substitutions within the technical scope disclosed by the present invention, which should be included in the protection scope of the present invention. Therefore, the protection scope of the present invention should be based on the protection scope of the claims.

Claims

1. A control device for an environmental conditioning device, characterized in that: The control device includes a control module, and a first wireless communication module connected to the control module; The first wireless communication module is used to receive the wireless sensor signal and send it to the control module, and is also used to receive the power information of the wireless sensor device that sends the wireless sensor signal, and send the power information to the control module; wherein the wireless sensor signal is used to indicate that the state of the environment in which the environment conditioning device is located has changed; The control module is used to control the working state of the environmental conditioning device when it is determined that the state of the environment in which the environmental conditioning device is located has changed based on the wireless sensor signal; and is also used to control the first wireless communication module to disconnect the communication connection with the wireless sensor device when the wireless sensor signal emitted by the wireless sensor device is not received within a fourth preset time period and the power information received last time indicates that the power value of the wireless sensor device is greater than or equal to a preset power threshold.

2. The control device according to claim 1, characterized in that: The control module is also used to control the environmental conditioning device to stop working when it is determined according to the wireless sensor signal that the state of the environment where the environmental conditioning device is located changes from a closed state to an open state; or to control the environmental conditioning device to restart working when it is determined according to the wireless sensor signal that the state of the environment where the environmental conditioning device is located changes from the open state to the closed state.

3. The control device according to claim 2, characterized in that: The control module is also used to control the environment conditioning device to stop working when it is determined according to the wireless sensor signal that the state of the environment in which the environment conditioning device is located changes from the closed state to the open state after the environment conditioning device has worked for a first preset time period.

4. The control device according to claim 2, characterized in that: The wireless sensing signal includes multiple; The control module is also used to control the environment conditioning device to stop working after a second preset time period when only one of the wireless sensor signals represents that the state of the environment where the environment conditioning device is located has changed from the closed state to the open state; and to control the environment conditioning device to stop working immediately when two or more of the wireless sensor signals represent that the state of the environment where the environment conditioning device is located has changed from the closed state to the open state.

5. The control device according to claim 2, characterized in that: The control device also includes: A first input module, connected to the control module, for receiving first input information indicating the operation of the environment conditioning device, and sending the first input information to the control module; The control module is further configured to control the environment conditioning device to restart operation according to the first input information when the currently received wireless sensor signal indicates that the state of the environment in which the environment conditioning device is located changes from the open state to the closed state.

6. The control device according to claim 5, characterized in that: The control module is further used to control the environment adjustment device to restart working after a third preset time period according to the first input information.

7. The control device according to claim 2, characterized in that: The control device also includes: A temperature detection module, connected to the control module, for detecting the temperature of the environment in which the environment conditioning device is located, and sending the temperature to the control module; The control module is further used to control the environment conditioning device to stop working when it is determined according to the wireless sensor signal that the state of the environment where the environment conditioning device is located changes from the closed state to the open state and the temperature reaches a preset temperature threshold.

8. The control device according to claim 1, characterized in that: The control device also includes: A display module connected to the control module, wherein the display module includes at least one display unit, and one display unit corresponds to one receiving channel of the wireless sensor signal; The control module is also used to control the display unit corresponding to the receiving channel of the wireless sensor signal to display in a corresponding state according to the wireless sensor signal; wherein, when the wireless sensor signal represents that the state of the environment where the environmental adjustment device is located is an open state, the display unit corresponding to the receiving channel of the wireless sensor signal displays a first state; when the wireless sensor signal represents that the state of the environment where the environmental adjustment device is located is a closed state, the display unit corresponding to the receiving channel of the wireless sensor signal displays a second state.

9. The control device according to claim 1, characterized in that: If the control device includes a display module: The control module is also used to control the display unit corresponding to the receiving channel of the wireless sensor signal to display the third state when the wireless sensor signal emitted by the wireless sensor device is not received within a fourth preset time period and the power information received last time indicates that the power value of the wireless sensor device is less than a preset power threshold.

10. The control device according to claim 1, characterized in that: The wireless sensor signal includes at least one of the following: Window magnetic signal; Door magnetic signal.

11. The control device according to claim 8, characterized in that: The control module is also used to determine whether to control the working state of the environmental conditioning device according to the number of the receiving channels corresponding to the wireless sensor signal received within a fifth preset time period when the control device is working in a power-on reset state.

12. The control device according to claim 11, characterized in that: The control module is further configured to control the working state of the environment conditioning device when the state change is determined according to the wireless sensor signal within the fifth preset time period when all the receiving channels receive the wireless sensor signal; If only part of the receiving channels receive the wireless sensor signal within a fifth preset time period, after the fifth preset time period, when the state change is determined according to the wireless sensor signal received by the part of the receiving channels, the working state of the environment conditioning device is controlled; If the receiving channel does not receive the wireless sensor signal within the fifth preset time period, the working state of the environmental conditioning device will not be controlled after the fifth preset time period.

13. The control device according to claim 11, characterized in that: The control module is also used to control the display unit corresponding to the receiving channel to display the fourth state at the beginning of the fifth preset time period; within the fifth preset time period, if the receiving channel does not receive the wireless sensor signal, after the fifth preset time period, control the display unit corresponding to the receiving channel to display the fifth state and exit the power-on reset state.

14. The control device according to claim 1, characterized in that: The control device also includes: A second input module, used for detecting second input information and sending the second input information to the control module before the first wireless communication module receives the wireless sensor signal; The control module is further used to control the first wireless communication module to communicate with the wireless sensor device that sends the wireless sensor signal according to the second input information, and identify the wireless sensor device according to the communication result.

15. The control device according to claim 14, characterized in that: The control module is further configured to, after receiving the second input information, identify the wireless sensor device that sends the pairing signal based on the pairing signal if a preset number of pairing signals sent by the wireless sensor device are received and it is determined that the wireless sensor device that sends the pairing signal is not identified.

16. The control device according to claim 14, characterized in that: The control module is further used to control the display unit corresponding to the wireless sensor device to continue displaying in the state before identification after identifying the wireless sensor device.

17. The control device according to claim 14, characterized in that: The second input module is further used to detect third input information that triggers the stop mark of the wireless sensor device; The control module is further used to control the first wireless communication module and the wireless sensor device that sends the wireless sensor signal to stop communicating according to the third input information, and not to identify the wireless sensor device.

18. The control device according to claim 14, characterized in that: The control device also includes: An audio output module connected to the control module; The control module is further configured to send a corresponding control signal after receiving the second input information or according to the identification result; The audio output module is used to output corresponding audio according to the control signal.

19. A control system for an environmental conditioning device, characterized in that: The control system comprises a control device as claimed in any one of claims 1 to 18 and a wireless sensor device; The wireless sensor device comprises a second wireless communication module and a sensor module; wherein the sensor module is used to detect whether the state of the environment where the environment conditioning device is located has changed; the second wireless communication module is used to send a wireless sensor signal indicating that the state of the environment where the environment conditioning device is located has changed to the control device according to the detection result of the sensor module; The control device is used to control the working state of the environment conditioning device when it is determined according to the wireless sensor signal that the state of the environment in which the environment conditioning device is located has changed.

20. The control system according to claim 19, characterized in that: The wireless sensor device also includes: A power detection module, used to detect the power information of the wireless sensor device; The second wireless communication module is used to send the power information of the wireless sensor device to the control device; The control device is further used to perform control according to the power information.

21. A method for controlling an environmental conditioning device, characterized in that: Applied in a control device, the method comprises: Receive a wireless sensor signal and receive power information of a wireless sensor device that sends the wireless sensor signal, wherein the wireless sensor signal is used to indicate that a state of an environment in which the environmental conditioning device is located has changed; when it is determined according to the wireless sensor signal that a state of an environment in which the environmental conditioning device is located has changed, control the working state of the environmental conditioning device; and when the wireless sensor signal emitted by the wireless sensor device is not received within a fourth preset time period, and the power information received last time indicates that a power value of the wireless sensor device is greater than or equal to a preset power threshold, control disconnection of the communication connection with the wireless sensor device.

22. The control method according to claim 21, characterized in that: When it is determined according to the wireless sensor signal that the state of the environment in which the environment conditioning device is located changes, controlling the working state of the environment conditioning device comprises: When it is determined according to the wireless sensor signal that the state of the environment where the environmental conditioning device is located changes from a closed state to an open state, the environmental conditioning device is controlled to stop working; or, when it is determined according to the wireless sensor signal that the state of the environment where the environmental conditioning device is located changes from the open state to the closed state, the environmental conditioning device is controlled to restart working.

23. The control method according to claim 22, characterized in that: When it is determined according to the wireless sensor signal that the state of the environment where the environment conditioning device is located changes from a closed state to an open state, controlling the environment conditioning device to stop working comprises: After the environment conditioning device has been operating for a first preset time period, when it is determined according to the wireless sensor signal that the state of the environment in which the environment conditioning device is located changes from the closed state to the open state, the environment conditioning device is controlled to stop operating.

24. The control method according to claim 22, characterized in that: The wireless sensing signal includes multiple; When it is determined according to the wireless sensor signal that the state of the environment where the environment conditioning device is located changes from the closed state to the open state, controlling the environment conditioning device to stop working includes: When only one of the wireless sensor signals indicates that the state of the environment in which the environment regulating device is located changes from the closed state to the open state, controlling the environment regulating device to stop working after a second preset time period; When two or more of the wireless sensor signals represent that the state of the environment where the environment conditioning device is located changes from the closed state to the open state, the environment conditioning device is controlled to stop working immediately.

25. The control method according to claim 22, characterized in that: The method further comprises: receiving first input information indicating that the environmental conditioning device is operating; When the currently received wireless sensor signal indicates that the state of the environment where the environment conditioning device is located changes from the open state to the closed state, the environment conditioning device is controlled to restart working according to the first input information.

26. The control method according to claim 25, characterized in that: When the currently received wireless sensor signal indicates that the state of the environment where the environment conditioning device is located changes from the open state to the closed state, controlling the environment conditioning device to restart working according to the first input information includes: The environment adjustment device is controlled to restart working after a third preset time period according to the first input information.

27. The control method according to claim 22, characterized in that: The method further comprises: Detecting the temperature of the environment in which the environmental conditioning device is located; When it is determined according to the wireless sensor signal that the state of the environment in which the environment conditioning device is located changes from the closed state to the open state, and the temperature reaches a preset temperature threshold, the environment conditioning device is controlled to stop working.

28. The control method according to claim 21, characterized in that: The control device comprises at least one display unit, and one display unit corresponds to one receiving channel of the wireless sensor signal; The method further comprises: According to the wireless sensor signal, the display unit corresponding to the receiving channel of the wireless sensor signal is controlled to display in a corresponding state; wherein, when the wireless sensor signal represents that the state of the environment where the environmental adjustment device is located is an open state, the display unit corresponding to the receiving channel of the wireless sensor signal is displayed in a first state; when the wireless sensor signal represents that the state of the environment where the environmental adjustment device is located is a closed state, the display unit corresponding to the receiving channel of the wireless sensor signal is displayed in a second state.

29. The control method according to claim 21, characterized in that: When the wireless sensor signal sent by the wireless sensor device is not received within the fourth preset time period, executing control according to the power information includes: When the wireless sensor signal emitted by the wireless sensor device is not received within a fourth preset time period, and the power information received last time indicates that the power value of the wireless sensor device is less than a preset power threshold, the display unit corresponding to the receiving channel of the wireless sensor signal is controlled to display the third state.

30. The control method according to claim 28, characterized in that: The method further comprises: When the control device operates in a power-on reset state, it is determined whether to control the working state of the environment adjustment device according to the number of the receiving channels corresponding to the wireless sensor signals received within a fifth preset time period.

31. The control method according to claim 30, characterized in that: When the control device is operating in a power-on reset state, determining whether to control the working state of the environment adjustment device according to the number of the receiving channels corresponding to the wireless sensor signal received within a fifth preset time period includes: Within the fifth preset time period, when all the receiving channels receive the wireless sensor signal, when determining the state change according to the wireless sensor signal, controlling the working state of the environment conditioning device; If only part of the receiving channels receive the wireless sensor signal within a fifth preset time period, after the fifth preset time period, when the state change is determined according to the wireless sensor signal received by the part of the receiving channels, the working state of the environment conditioning device is controlled; If the receiving channel does not receive the wireless sensor signal within the fifth preset time period, the working state of the environmental conditioning device will not be controlled after the fifth preset time period.

32. The control method according to claim 30, characterized in that: The method further comprises: At the start time of the fifth preset duration, controlling the display unit corresponding to the receiving channel to display a fourth state; If the receiving channel does not receive the wireless sensor signal within the fifth preset time period, the display unit corresponding to the receiving channel is controlled to display a fifth state and exit the power-on reset state after the fifth preset time period.

33. The control method according to claim 28, characterized in that: The method further comprises: Before receiving the wireless sensor signal, detecting second input information; According to the second input information, the communication with the wireless sensor device that sends the wireless sensor signal is controlled, and the wireless sensor device is identified according to the communication result.

34. The control method according to claim 33, characterized in that: The controlling, according to the second input information, to communicate with the wireless sensor device that sends the wireless sensor signal, and identifying the wireless sensor device according to the communication result, comprises: After receiving the second input information, if a preset number of pairing signals sent by the wireless sensor device are received and it is determined that the wireless sensor device sending the pairing signal is not identified, the wireless sensor device sending the pairing signal is identified according to the pairing signal.

35. The control method according to claim 33, characterized in that: The method further comprises: After the wireless sensor device is identified, the display unit corresponding to the receiving channel is controlled to continue displaying in the state before identification.

36. The control method according to claim 33, characterized in that: The method further comprises: Detecting third input information of the wireless sensor device that triggers the stop mark; According to the third input information, the wireless sensor device that sends the wireless sensor signal is controlled to stop communicating, and the wireless sensor device is not identified.

37. The control method according to claim 33, characterized in that: The method further comprises: After receiving the second input information, or according to the identification result, sending a corresponding control signal; The corresponding audio is output according to the control signal.

38. A control device for an environmental conditioning device, characterized in that: The device comprises: A memory for storing computer executable instructions; A processor, connected to the memory, configured to implement the method described in any one of claims 21 to 37 by executing the computer executable instructions.

39. A computer-readable storage medium, characterized in that: The computer-readable storage medium stores computer-executable instructions, and the computer-executable instructions are configured to execute the control method provided in any one of claims 21 to 37 above.

Citation Information

Patent Citations

  • Processing method of working environment state of air conditioner, system and air conditioner

    CN104930648A

  • Environment regulating equipment control method and device

    CN106765934A