Air conditioning apparatus, point control device, control method, control system, and medium
By receiving and determining the priority of target control commands from the air conditioning equipment, and coordinating the control of the air conditioning equipment by multiple point control devices, the problem of control conflicts among multiple point control devices is resolved, thus improving the user experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- GD MIDEA AIR CONDITIONING EQUIP CO LTD
- Filing Date
- 2022-07-29
- Publication Date
- 2026-07-24
Smart Images

Figure CN117515788B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of air conditioning equipment technology, and in particular to an air conditioning device, a point control device, an air conditioning device control method based on the point control device, an air conditioning device control system, and a computer-readable storage medium. Background Technology
[0002] With the advancement of technology, air conditioning equipment technology is also developing rapidly. Currently, the various control operations of air conditioning equipment are changing along with technological advancements. For example, with the development of embedded systems, the operating mode of air conditioning equipment can be set on a button-type control device with independent power supply and wireless communication support, integrating the control parameters of the air conditioning equipment's operating mode onto the control device. Therefore, when controlling the air conditioning equipment and switching operating modes, users no longer need to operate on the remote control, mobile app, or air conditioning equipment display panel; they only need to perform a simple trigger operation on the control device to control the air conditioning equipment.
[0003] However, when an air conditioning unit is connected to multiple point control devices, how to coordinate the control of the same air conditioning unit by multiple point control devices, and how to reduce the control conflicts of multiple point control devices on the same air conditioning unit, have become the technical problems that urgently need to be solved when controlling air conditioning units through point control devices. Summary of the Invention
[0004] The main objective of this invention is to provide an air conditioning device, a point control device, a control method for the air conditioning device and the point control device, an air conditioning device control system, and a computer-readable storage medium, which aims to coordinate the control of the same air conditioning device by multiple point control devices and reduce control conflicts between multiple point control devices on the same air conditioning device.
[0005] To achieve the above objectives, the present invention provides a control method for an air conditioning device, the control method for the air conditioning device and the point control device comprising the following steps:
[0006] Receive scene control commands from the point control device;
[0007] When the air conditioning equipment receives the scene control commands from multiple point control devices within a preset time, the target control command is determined from the received scene control commands.
[0008] The air conditioning equipment operates according to the parameters corresponding to the target control command.
[0009] Optionally, the step of determining the target control command from the received scenario control commands includes:
[0010] The priorities of the different received scenario control commands are obtained, and the scenario control command with the highest priority is determined as the target control command.
[0011] Optionally, the step of obtaining the priority of the received scenario control command includes:
[0012] Based on the pre-set priorities of each of the scenario control commands, the priority of the received scenario control command is obtained; or,
[0013] The priority of the scene control command is determined based on the frequency at which the received scene control command is triggered within a preset time period. The higher the frequency, the higher the priority of the scene control command.
[0014] Optionally, the step of obtaining the priority of the received scenario control command includes:
[0015] Acquire environmental information and human condition information around the air conditioning equipment;
[0016] The probability of the scene corresponding to the received scene control command is determined based on the environmental information and the human body state information, and the priority of the scene control command is determined based on the probability of the scene control command. The higher the probability, the higher the priority of the scene control command.
[0017] Optionally, the step of determining the target control command from the received scenario control commands includes:
[0018] When the air conditioning equipment receives the same scenario control command from multiple point control devices within a preset time, the priority of the point control device that sent the scenario control command is obtained, and the scenario control command sent by the point control device with the highest priority is determined as the target control command.
[0019] Optionally, the step of obtaining the priority of the point control device that sends the scene control command includes:
[0020] The priority of the point-control device sending the scene control command is determined based on the distance between the air conditioning equipment and the point-control device; the closer the distance, the higher the priority of the point-control device. Alternatively...
[0021] The priority of the control device is determined based on the Bluetooth signal strength between the air conditioning equipment and the control device; the higher the Bluetooth signal strength, the higher the priority of the control device. Alternatively...
[0022] The priority of the point control device corresponding to the scene control command is determined based on the frequency of the scene control command being triggered within a preset time period. The higher the frequency, the higher the priority of the point control device.
[0023] Furthermore, in order to achieve the above objectives, the present invention also proposes an air conditioning device, the air conditioning device including a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein the computer program, when executed by the processor, implements the various steps of the air conditioning device control method based on the point control device as described in any of the preceding claims.
[0024] Furthermore, to achieve the above objectives, the present invention also proposes a point control device, which includes a housing, a scene function button on the housing, a communication module and a control module inside the housing, the communication module controlling the air conditioning equipment and establishing a communication connection, and the control module controlling the communication module to control and communicate with the air conditioning equipment according to the triggering of the scene function button.
[0025] In addition, to achieve the above objectives, the present invention also proposes an air conditioning equipment control system, which includes the air conditioning equipment as described above and the point control device as described above.
[0026] In addition, to achieve the above objectives, this application also proposes a computer-readable storage medium storing a computer program that, when executed by a processor, implements the steps of the air conditioning equipment control method based on the point control device as described in any of the preceding claims.
[0027] The present invention provides an air conditioning device, a point control device, an air conditioning device control method based on the point control device, an air conditioning device control system, and a computer-readable storage medium, comprising: receiving scene control commands from the point control device; when the air conditioning device receives scene control commands from multiple point control devices within a preset time, determining a target control command from the received scene control commands; and operating the air conditioning device according to the air conditioning device parameters corresponding to the target control command.
[0028] After the air conditioning unit completes its association with multiple point control devices, the point control devices can control the air conditioning unit through simple trigger operations. After receiving scene control commands from multiple point control devices within a preset time, the air conditioning unit determines the target control command from the scene control commands and operates according to the air conditioning unit parameters corresponding to the target control command.
[0029] Among the associated point control devices that have sent scenario control commands, the target control command is determined based on the scenario control command and the priority of the associated point control devices, and the air conditioning equipment operates according to the parameters corresponding to the target control command. This coordinates the control of the same air conditioning equipment by multiple point control devices, reduces control conflicts between multiple point control devices on the same air conditioning equipment, and ultimately improves the user experience of using point control devices to control air conditioning equipment. Attached Figure Description
[0030] Figure 1 This is a schematic diagram of the structure of the operating device of the hardware operating environment involved in the embodiments of the present invention;
[0031] Figure 2 This is a flowchart illustrating an embodiment of a control method for an air conditioning device and a point control device according to the present invention;
[0032] Figure 3 This is a schematic diagram of the control method for an air conditioning device and a point control device according to the present invention.
[0033] The realization of the objective, functional features and advantages of the present invention will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation
[0034] It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
[0035] In scenarios where multiple point control devices control the same air conditioning unit, if the control between the air conditioning unit and the point control devices is not negotiated and coordinated, the control between multiple point control devices simultaneously controlling the same air conditioning unit will conflict due to the air conditioning unit's selection and determination logic for multiple scenario control commands. This will prevent the air conditioning unit from performing normal control operations with the point control devices, affecting the normal use of the air conditioning unit after it is associated with the point control device and remotely controlled.
[0036] The main solution of this invention is: the air conditioning equipment receives scene control commands from the point control device; when the air conditioning equipment receives scene control commands from multiple point control devices within a preset time, it determines a target control command from the received scene control commands; and operates the air conditioning equipment according to the parameters corresponding to the target control command.
[0037] This invention provides the above-described solution, whereby after the air conditioning equipment completes its association with multiple point control devices, the point control devices can control the air conditioning equipment through simple triggering operations. After receiving scene control commands from multiple point control devices within a preset time, the air conditioning equipment determines the target control command from the scene control commands and operates according to the air conditioning equipment parameters corresponding to the target control command.
[0038] Among the associated point control devices that have sent scenario control commands, the target control command is determined based on the scenario control command and the priority of the associated point control devices, and the air conditioning equipment operates according to the parameters corresponding to the target control command. This coordinates the control of the same air conditioning equipment by multiple point control devices, reduces control conflicts between multiple point control devices on the same air conditioning equipment, and ultimately improves the user experience of using point control devices to control air conditioning equipment.
[0039] Reference Figure 1 , Figure 1 This is a schematic diagram of the operating device of the hardware operating environment involved in the embodiments of the present invention.
[0040] like Figure 1 As shown, the operating device may include: a processor 1001, such as a central processing unit (CPU), a communication bus 1002, a user interface 1003, a network interface 1004, and a memory 1005. The communication bus 1002 is used to enable communication between these components. The user interface 1003 may include a display screen or an input unit such as a keyboard; optionally, the user interface 1003 may also include a standard wired interface or a wireless interface. The network interface 1004 may optionally include a standard wired interface or a wireless interface (such as a Wi-Fi interface). The memory 1005 may be a high-speed random access memory (RAM) or a stable non-volatile memory (NVM), such as a disk drive. The memory 1005 may also optionally be a storage device independent of the aforementioned processor 1001.
[0041] Those skilled in the art will understand that Figure 1 The structure shown does not constitute a limitation on the operating equipment and may include more or fewer components than shown, or combine certain components, or have different component arrangements.
[0042] like Figure 1As shown, the memory 1005, which serves as a storage medium, may include an operating system, a data storage module, a network communication module, a user interface module, and computer programs.
[0043] exist Figure 1 In the illustrated operating device, the network interface 1004 is mainly used for data communication with other devices; the user interface 1003 is mainly used for data interaction with the user; the processor 1001 and memory 1005 in the operating device of the present invention can be installed in the operating device, and the operating device calls the computer program stored in the memory 1005 through the processor 1001 and performs the following operations:
[0044] Receive scene control commands from the point control device;
[0045] When the air conditioning equipment receives the scene control commands from multiple point control devices within a preset time, the target control command is determined from the received scene control commands.
[0046] The air conditioning equipment operates according to the parameters corresponding to the target control command.
[0047] Furthermore, the processor 1001 can call a computer program stored in the memory 1005 and also perform the following operations:
[0048] The step of determining the target control command from the received scenario control commands includes:
[0049] The priorities of the different received scenario control commands are obtained, and the scenario control command with the highest priority is determined as the target control command.
[0050] Furthermore, the processor 1001 can call a computer program stored in the memory 1005 and also perform the following operations:
[0051] The step of obtaining the priority of the received scenario control command includes:
[0052] Based on the pre-set priorities of each of the scenario control commands, the priority of the received scenario control command is obtained; or,
[0053] The priority of the scene control command is determined based on the frequency at which the received scene control command is triggered within a preset time period. The higher the frequency, the higher the priority of the scene control command.
[0054] Furthermore, the processor 1001 can call a computer program stored in the memory 1005 and also perform the following operations:
[0055] The step of obtaining the priority of the received scenario control command includes:
[0056] Acquire environmental information and human condition information around the air conditioning equipment;
[0057] The probability of the scene corresponding to the received scene control command is determined based on the environmental information and the human body state information, and the priority of the scene control command is determined based on the probability of the scene control command. The higher the probability, the higher the priority of the scene control command.
[0058] Furthermore, the processor 1001 can call a computer program stored in the memory 1005 and also perform the following operations:
[0059] The step of determining the target control command from the received scenario control commands includes:
[0060] When the air conditioning equipment receives the same scenario control command from multiple point control devices within a preset time, the priority of the point control device that sent the scenario control command is obtained, and the scenario control command sent by the point control device with the highest priority is determined as the target control command.
[0061] Furthermore, the processor 1001 can call a computer program stored in the memory 1005 and also perform the following operations:
[0062] The step of obtaining the priority of the point control device that sends the scene control command includes:
[0063] The priority of the point-control device sending the scene control command is determined based on the distance between the air conditioning equipment and the point-control device; the closer the distance, the higher the priority of the point-control device. Alternatively...
[0064] The priority of the control device is determined based on the Bluetooth signal strength between the air conditioning equipment and the control device; the higher the Bluetooth signal strength, the higher the priority of the control device. Alternatively...
[0065] The priority of the point control device corresponding to the scene control command is determined based on the frequency of the scene control command being triggered within a preset time period. The higher the frequency, the higher the priority of the point control device.
[0066] This invention provides a control method for an air conditioning device and a point control device, referring to... Figure 2 , Figure 2 This is a flowchart illustrating an embodiment of the control method for an air conditioning device and a point control device according to the present invention.
[0067] In this embodiment, the control method for the air conditioning equipment and the point control device includes the following steps:
[0068] Step S10: Receive the scene control command from the point control device.
[0069] The point control device can be an independent hardware button with its own power supply and wireless communication support, or a mobile control device that carries specific air conditioning equipment scene control. It can be pasted or magnetically attached to or placed in various locations in the room.
[0070] Reference Figure 3 , Figure 3 This is a schematic diagram illustrating the control method of an air conditioning device and a point-control device according to the present invention. Performing pre-set actions such as clicking or long-pressing on the associated point-control device triggers the sending of scene control commands to the associated air conditioning device.
[0071] The scenario control command can be generated in several ways. First, a separate associated button can be set on the control device, triggered by a user's single-click, double-click, or long-press operation, causing the control device to send the scenario control command to the associated air conditioning device. Second, it can be based on existing buttons on the control device, reusing their operations to send the scenario control command to the associated air conditioning device. For example, an existing switch button on the control device typically operates by clicking it to turn the scenario mode controlled by the control device on or off. In this embodiment, a 3-second long-press operation on the switch button can be set to trigger the control device to send the scenario control command to the associated air conditioning device. Third, a preset operation can be performed on a device with wired or wireless communication with the control device to send the scenario control command to the associated air conditioning device. For example, this could be done on a smart mobile device connected to the control device, via the control device's application (APP) to send the scenario control command to the associated air conditioning device.
[0072] The system can send scene control commands to the associated air conditioning device via Bluetooth or WIFI communication, or via infrared, sound waves, etc. The infrared receiver or microphone on the air conditioning device will receive the scene control commands in the preset data format.
[0073] In this embodiment, the scene control command is an air conditioning command. The air conditioning device to which the air conditioning command is sent can be an air conditioner, humidifier, fresh air unit, air purifier, and electric heater, etc., and one or more air conditioning devices can operate to achieve the corresponding scene mode. The air conditioning command can actually be sent directly by the point control device to each associated air conditioning device, or it can be sent by the point control device to the central device, such as air conditioning device A, and then air conditioning device A forwards it to other associated air conditioning devices. Alternatively, it can be sent by the point control device to the server (or through an associated air conditioning device, such as air conditioning device B), and then the server (or associated air conditioning device B) distributes it to all associated air conditioning devices.
[0074] Step S20: When the air conditioning equipment receives the scene control commands from multiple point control devices within a preset time, the target control command is determined from the received scene control commands.
[0075] When the air conditioning equipment receives scene control commands from multiple point control devices within a preset time, it will determine the target control command from the received scene control commands according to the priority of the different scene control commands; or, among the multiple point control devices that have sent the same scene control command, it will determine the scene control command sent by the point control device with the highest priority as the target control command according to the priority of the point control devices.
[0076] Step S30: Operate the air conditioning equipment according to the parameters corresponding to the target control command.
[0077] In other words, when different scenario control commands control the same air conditioner, the priorities of these different scenario control commands are obtained, and the scenario control command with the highest priority is selected as the target control command. Based on the air conditioning equipment parameters corresponding to the target control command, the air conditioning equipment is controlled to operate. Alternatively, when multiple point control devices for the same scenario control the same air conditioner with multiple identical scenario control commands, the priorities of these multiple point control devices for that air conditioning equipment are obtained, and the scenario control command sent by the point control device with the highest priority is selected as the target control command. Based on the air conditioning equipment parameters corresponding to the target control command, the air conditioning equipment is controlled to operate. This achieves mutual exclusion operations for the same air conditioning equipment by point control devices with different priorities for scenario control commands or the same scenario control command. This coordinates the control of the same air conditioning equipment by multiple point control devices, reduces control conflicts between multiple point control devices on the same air conditioning equipment, and ultimately improves the user experience of using point control devices to control air conditioning equipment.
[0078] In this embodiment, the system receives scene control commands from point control devices; when the air conditioning equipment receives scene control commands from multiple point control devices within a preset time, it determines a target control command from the received scene control commands; and operates the air conditioning equipment according to the parameters corresponding to the target control command.
[0079] After the air conditioning unit completes its association with multiple point control devices, the point control devices can control the air conditioning unit through simple trigger operations. After receiving scene control commands from multiple point control devices within a preset time, the air conditioning unit determines the target control command from the scene control commands and operates according to the air conditioning unit parameters corresponding to the target control command.
[0080] Among the associated point control devices that have sent scenario control commands, the target control command is determined based on the scenario control command and the priority of the associated point control devices, and the air conditioning equipment operates according to the parameters corresponding to the target control command. This coordinates the control of the same air conditioning equipment by multiple point control devices, reduces control conflicts between multiple point control devices on the same air conditioning equipment, and ultimately improves the user experience of using point control devices to control air conditioning equipment.
[0081] Optionally, step S20 above: determining the target control command from the received scenario control commands includes:
[0082] The priorities of the different received scenario control commands are obtained, and the scenario control command with the highest priority is determined as the target control command.
[0083] When an air conditioning unit receives multiple scene control commands from point control devices within a preset time, it determines the target control command based on the priority of the different scene control commands. When different scene control commands control the same air conditioner, the priority of these different scene control commands is obtained, and the scene control command with the highest priority is selected as the target control command. Based on the air conditioning unit parameters corresponding to the target control command, the air conditioning unit is controlled to operate.
[0084] Optionally, the step of obtaining the priority of the received scenario control command includes:
[0085] Based on the pre-set priorities of each of the scenario control commands, the priority of the received scenario control command is obtained; or,
[0086] The priority of the scene control command is determined based on the frequency at which the received scene control command is triggered within a preset time period. The higher the frequency, the higher the priority of the scene control command.
[0087] In this embodiment, when different scenario control commands control the same air conditioner, the priority of each scenario control command is determined according to the pre-set priority of each scenario control command, or according to the frequency of triggering of the received scenario control commands within a preset time period. Specifically, different scenario control commands can be preset in the air conditioning device, and the same scenario control command can be set to different priorities in different air conditioning devices. For example, in a certain air conditioning device, the priority of the sleep scenario control command can be set to > the priority of the home scenario control command, and the priority of the child scenario control command can be set to > the priority of the adult scenario control command.
[0088] Assume, a) Homecoming scenario control device 1, set parameters (temperature 26℃, fan speed 60);
[0089] b. Sleep scenario control device 2, set parameters (temperature 27℃, fan speed 40);
[0090] e. Air conditioning equipment A receives scene control commands from point control device 1 and point control device 2 simultaneously / within a certain period of time (preset duration);
[0091] f. Query the priority of the scene control commands of point control device 1 and point control device 2. The priority of the sleep scene control command is greater than the priority of the home scene control command.
[0092] g. Therefore, according to the air conditioning equipment parameters (temperature 27℃, fan speed 40) corresponding to the sleep scenario control command, control the air conditioning equipment A to operate;
[0093] Alternatively, the priority of each scenario control command can be determined based on the trigger frequency of each scenario control command within a preset time period. The higher the frequency, the higher the priority of the scenario control command. For example, the priority of each scenario control command can be determined based on the trigger frequency of each scenario control command in the past 24 hours, or based on the trigger frequency of each scenario control command in the past week or month. Again, the higher the frequency, the higher the priority of the scenario control command.
[0094] Optionally, the step of obtaining the priority of the received scenario control command includes:
[0095] Acquire environmental information and human condition information around the air conditioning equipment;
[0096] The probability of the scene corresponding to the received scene control command is determined based on the environmental information and the human body state information, and the priority of the scene control command is determined based on the probability of the scene control command. The higher the probability, the higher the priority of the scene control command.
[0097] In this embodiment, when different scenario control commands control the same air conditioner, in addition to determining the priority of different scenario control commands based on the priority of each scenario control command set in advance, or based on the frequency of the scenario control commands received within a preset time period, the probability of each scenario control command running in the scenario corresponding to the environmental information and human status information around the air conditioning device can also be determined based on the environmental information and human status information around the air conditioning device. The scenario control command with the higher probability has a higher priority.
[0098] For example, the ambient temperature around the air conditioner is 32℃ and the relative humidity is 75%. Human body status information can be read from smart wearable devices, or by the user inputting settings in the control device's APP or the air conditioner's APP. The air conditioner can obtain human body status information from smart mobile devices or smart wearable devices that have been pre-connected. For example, human body status information such as heart rate of 145 BPM (Beats Per Minute), current activity is running, current running distance is 7.5 kilometers, current distance between the user and the air conditioner is 500 meters, and the current distance between the user and the air conditioner is trending towards closer, etc.
[0099] At this time, the air conditioning equipment can determine, based on the environmental information and human condition information around the air conditioning equipment, that it is currently hot weather and the user is on their way home while running. Therefore, it can determine that among different scenario control commands, the scenario control command that quickly reduces the temperature and humidity in the room corresponds to the state in which the air conditioning equipment is most likely to operate. This scenario control command is the highest priority scenario control command.
[0100] Alternatively, it can be a smart mobile device or smart wearable device that has a pre-established communication connection with the air conditioning equipment. It can acquire environmental information about the surrounding environment of the air conditioning equipment collected by the air conditioning equipment, determine the operating probability of the scenario corresponding to each scenario control command, and then send the unique identifier information corresponding to the target control command with the highest probability and highest priority to the air conditioning equipment, so that the air conditioning equipment can operate with the air conditioning equipment parameters corresponding to the target control command.
[0101] In this implementation, the method by which air conditioning equipment, smart mobile devices, or smart wearable devices determine the operating probability of each scenario control command based on the environmental information and human status information around the air conditioning equipment is not limited.
[0102] Optionally, step S20 above: determining the target control command from the received scenario control commands includes:
[0103] When the air conditioning equipment receives the same scenario control command from multiple point control devices within a preset time, the priority of the point control device that sent the scenario control command is obtained, and the scenario control command sent by the point control device with the highest priority is determined as the target control command.
[0104] Among multiple point control devices that send the same scenario control command, the scenario control command sent by the highest priority point control device is determined as the target control command. When multiple point control devices for the same scenario control the same air conditioner with multiple identical scenario control commands, the priorities of these multiple point control devices for the air conditioning equipment are obtained, and the scenario control command sent by the highest priority point control device is selected as the target control command. The air conditioning equipment is then controlled to operate according to the air conditioning equipment parameters corresponding to the target control command.
[0105] Optionally, the step of obtaining the priority of the point control device that sends the scene control command includes:
[0106] The priority of the point-control device sending the scene control command is determined based on the distance between the air conditioning equipment and the point-control device; the closer the distance, the higher the priority of the point-control device. Alternatively...
[0107] The priority of the control device is determined based on the Bluetooth signal strength between the air conditioning equipment and the control device; the higher the Bluetooth signal strength, the higher the priority of the control device. Alternatively...
[0108] The priority of the point control device corresponding to the scene control command is determined based on the frequency of the scene control command being triggered within a preset time period. The higher the frequency, the higher the priority of the point control device.
[0109] In this embodiment, when multiple point control devices in the same scenario control the same air conditioner with multiple identical scenario control commands, the priority of multiple point control devices with the same scenario control commands is determined based on the distance between the air conditioning device and the point control device, the Bluetooth signal strength between the air conditioning device and the point control device, or the frequency of the scenario control commands received within a preset time period.
[0110] Specifically, the closer the distance, the higher the priority of the control device; the stronger the Bluetooth signal, the higher the priority of the control device; and the more frequently it is triggered, the higher the priority of the control device.
[0111] When the air conditioning unit communicates with multiple point control devices via Bluetooth, the distance between the air conditioning unit and the multiple point control devices can be obtained based on Bluetooth 5.0's AOA (Angle of Arrival) positioning technology to determine the priority of each point control device; alternatively, the priority can be determined based on the Bluetooth signal strength of each point control device; or, the priority can be determined based on the operation frequency and trigger frequency of each point control device within a certain period of time (preset duration), such as based on the historical trigger frequency of each point control device within 24 hours, or based on the historical trigger frequency of each point control device within a week or a month.
[0112] Assume that: 1. Homecoming scenario control device 1, set parameters (temperature 26℃, fan speed 60), on the male homeowner (just arrived home);
[0113] 2. Homecoming scenario control device 2, set parameters (temperature 27℃, fan speed 40), on the female homeowner (already at home);
[0114] 3. Air conditioning equipment B received scene control commands from point control device 1 and point control device 2 simultaneously / within a certain period of time (preset duration);
[0115] 4. Check the priority (e.g., distance) of air conditioning equipment B to point control device 1 and point control device 2, and determine that the distance to point control device 2 is less than the distance to point control device 1 (the closer the distance, the higher the priority).
[0116] 5. Therefore, according to the air conditioning equipment parameters (temperature 27℃, fan speed 40) corresponding to the scenario control command of point control device 2, control the operation of air conditioning equipment B;
[0117] Furthermore, suppose that 6. Sleep scenario control device 1, with set parameters (temperature 26℃, fan speed 60), is placed in the master bedroom;
[0118] 7. Sleep scenario control device 2, set parameters (temperature 27℃, fan speed 40), placed in the guest bedroom;
[0119] 8. Air conditioning unit C (master bedroom) received scene control commands from point control device 1 and point control device 2 simultaneously / for a period of time (preset duration);
[0120] 9. As above, query the priority (e.g., distance) of air conditioning equipment C with point control device 1 and point control device 2, determine that the distance to point control device 1 is less than the distance to point control device 2 (the closer the distance, the higher the priority), and control air conditioning equipment C to operate according to the air conditioning equipment parameters (temperature 26℃, fan speed 60) corresponding to the scenario control command of point control device 1.
[0121] 10. Air conditioning unit B (guest bedroom) received scene control commands from point control device 1 and point control device 2 simultaneously / within a certain period of time (preset duration);
[0122] 11. As above, query the priority (e.g., distance) of air conditioning equipment C with point control device 1 and point control device 2, determine that the distance to point control device 2 is less than the distance to point control device 1 (the closer the distance, the higher the priority), and control air conditioning equipment C to operate according to the air conditioning equipment parameters (temperature 27℃, fan speed 40) corresponding to the scenario control command of point control device 2.
[0123] Furthermore, embodiments of the present invention also provide an air conditioning device, including a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein the computer program, when executed by the processor, implements the various steps of the air conditioning device control method based on the point control device as described in any of the preceding claims.
[0124] Furthermore, this embodiment of the invention also provides a point control device, including a housing, on which a scene function button is provided, and a communication module and a control module are provided inside the housing. The communication module is paired with an air conditioning device and establishes a communication connection. The control module controls the communication module to pair and communicate with the air conditioning device according to the triggering of the scene function button.
[0125] Furthermore, embodiments of the present invention also provide an air conditioning equipment control system, including the air conditioning equipment as described above, and the point control device as described above.
[0126] Furthermore, embodiments of the present invention also provide a computer-readable storage medium storing a computer program, which, when executed by a processor, implements the steps of the control method for the air conditioning equipment and the point control device as described above.
[0127] It should be noted that, in this document, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or system that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or system. Unless otherwise specified, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or system that includes that element.
[0128] The sequence numbers of the above embodiments of the present invention are for descriptive purposes only and do not represent the superiority or inferiority of the embodiments.
[0129] Through the above description of the embodiments, those skilled in the art can clearly understand that the methods of the above embodiments can be implemented by means of software plus necessary general-purpose hardware platforms. Of course, they can also be implemented by hardware, but in many cases the former is a better implementation method. Based on this understanding, the technical solution of the present invention, or the part that contributes to the prior art, can be embodied in the form of a software product. This computer software product is stored in a storage medium (such as ROM / RAM, magnetic disk, optical disk) as described above, and includes several instructions to cause a terminal device (which may be a mobile phone, computer, server, or network device, etc.) to execute the methods described in the various embodiments of the present invention.
[0130] The above are merely preferred embodiments of the present invention and do not limit the scope of the patent. Any equivalent structural or procedural transformations made based on the description and drawings of the present invention, or direct or indirect applications in other related technical fields, are similarly included within the scope of patent protection of the present invention.
Claims
1. A control method for air conditioning equipment based on a point-control device, characterized in that, The method includes the following steps: Receive scene control commands from the point control device; When the air conditioning equipment receives the scene control commands from multiple point control devices within a preset time, the target control command is determined from the received scene control commands. Operate according to the air conditioning equipment parameters corresponding to the target control command; The step of determining the target control instruction from the received scenario control instructions includes: When different scenario control commands control the air conditioning device, the priorities of the received different scenario control commands are obtained, and the scenario control command with the highest priority is determined as the target control command; wherein, the step of obtaining the priorities of the received different scenario control commands includes: obtaining environmental information and human status information around the air conditioning device; determining the operating probability of the scenario corresponding to the received scenario control command based on the environmental information and the human status information, and determining the priority of the scenario control command based on the operating probability, wherein the higher the operating probability, the higher the priority of the scenario control command; When the air conditioning equipment receives the same scenario control command from multiple point control devices within a preset time, the priority of the point control device that sent the scenario control command is obtained, and the scenario control command sent by the point control device with the highest priority is determined as the target control command.
2. The air conditioning equipment control method based on a point-control device as described in claim 1, characterized in that, The step of obtaining the priority of the point control device that sends the scene control command includes: The priority of the point-control device sending the scene control command is determined based on the distance between the air conditioning equipment and the point-control device; the closer the distance, the higher the priority of the point-control device. Alternatively... The priority of the control device is determined based on the Bluetooth signal strength between the air conditioning equipment and the control device; the higher the Bluetooth signal strength, the higher the priority of the control device. Alternatively... The priority of the point control device corresponding to the scene control command is determined based on the frequency of the scene control command being triggered within a preset time period. The higher the frequency, the higher the priority of the point control device.
3. An air conditioning device, characterized in that, It includes a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein the computer program, when executed by the processor, implements the various steps of the air conditioning equipment control method based on a point-control device as described in any one of claims 1 to 2.
4. An air conditioning equipment control system, characterized in that, Includes the air conditioning equipment as described in claim 3, and a point control device; The point control device includes a housing with scene function buttons on it. The housing contains a communication module and a control module. The communication module is paired with the air conditioning equipment and establishes a communication connection. The control module controls the communication module to pair and communicate with the air conditioning equipment according to the triggering of the scene function buttons.
5. A computer-readable storage medium, characterized in that, The computer-readable storage medium stores a computer program, which, when executed by a processor, implements the steps of the air conditioning equipment control method based on a point-control device as described in any one of claims 1 to 2.