Air compressor control method, equipment control method, device and equipment

By obtaining production plan data in real time and generating control information, digital management of air compressors is realized, the problem of low air compressor management efficiency is solved, equipment management efficiency and energy consumption utilization are improved, and equipment service life is extended.

CN116146473BActive Publication Date: 2025-08-08ALIBABA (CHINA) CO LTD
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Patent Information

Application Number
CN202310149758.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-02-14
Publication Date
2025-08-08
Estimated Expiration
2043-02-14

AI Technical Summary

Technical Problem

The management efficiency of the prior art air compressors is low, the manpower investment is large, and it is difficult to achieve accurate power switch control, resulting in waste of energy consumption and shortened equipment service life.

Method used

By obtaining the factory's production plan data in real time, generating control information based on the production plan data, and sending it to the air compressor to perform corresponding control actions, digital management of the air compressor and remote control is achieved using the control terminal.

Benefits of technology

It improves the factory's digitalization level and equipment management efficiency, reduces energy consumption and waste, extends the service life of the air compressor, and reduces the manpower investment of equipment management and control personnel.

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Abstract

The embodiments of the present application provide a control method, equipment control method, device, and equipment for an air compressor. The method comprises: acquiring the production plan data of the factory in real time, obtaining control information for the air compressor in the factory based on the production plan data, and sending the control information to the air compressor so that the air compressor performs corresponding control actions according to the control information. The present application realizes the digital management of the air compressor in the factory, improves the degree of intelligent transformation of the factory, enhances the digital level of the factory, can reduce the manpower input of equipment control personnel in managing the air compressor, and improves the efficiency of equipment management.
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Description

Technical Field

[0001] The present application relates to the field of control technology, and in particular to a control method, equipment control method, device and equipment for an air compressor. Background Art

[0002] An air compressor (short for air compressor) is a device that can systematically provide compressed air to production equipment in manufacturing factories. It can ensure the normal operation of various types of equipment that require compressed air. It can serve as an auxiliary equipment for production line equipment in manufacturing factories, providing a high-pressure air source for the factory production line.

[0003] Typically, equipment management personnel need to operate buttons on the air compressor to control it. However, this method has the problems of high manpower investment and low equipment management efficiency. Summary of the Invention

[0004] The embodiments of the present application provide an air compressor control method, equipment control method, device and equipment to solve the problems of large manpower investment and low equipment management efficiency in the prior art.

[0005] In a first aspect, an embodiment of the present application provides a method for controlling an air compressor, comprising:

[0006] Obtain the factory's production plan data in real time;

[0007] Based on the production plan data, obtaining control information for the air compressor in the factory;

[0008] The control information is sent to the air compressor, so that the air compressor performs corresponding control actions according to the control information.

[0009] In a second aspect, an embodiment of the present application provides a method for controlling an air compressor, comprising:

[0010] Acquiring control information, wherein the control terminal acquires production plan data of the factory in real time, obtains control information for the air compressor in the factory based on the production plan data, and sends the control information to the air compressor;

[0011] Execute corresponding control actions according to the control information.

[0012] In a third aspect, an embodiment of the present application provides a device control method, including:

[0013] Display device control controls, each device control control corresponds to a controlled device, and the device control control has corresponding pairing information, wherein the pairing information is pairing information between the first signal transceiver of the control terminal and the second signal transceiver of the controlled device corresponding to the device control control;

[0014] Obtaining control information through the device control widget;

[0015] The control information is sent to the controlled device via a communication connection with the controlled device, so that the controlled device performs a corresponding control action according to the control information, and the communication connection is established using pairing information corresponding to the device control component.

[0016] In a fourth aspect, an embodiment of the present application provides a device control method, including:

[0017] Obtaining power on / off control information, where the power on / off control information is obtained by a control terminal through a display device control control, where each device control control corresponds to one controlled device, and where the device control control has corresponding pairing information, where the pairing information is pairing information between a first signal transceiver of the control terminal and a second signal transceiver of the controlled device; obtaining control information through the device control control, and sending the control information to the controlled device through a communication connection with the controlled device, where the communication connection is established using the pairing information corresponding to the device control control;

[0018] Execute corresponding control actions according to the control information.

[0019] In a fifth aspect, an embodiment of the present application provides a control device for an air compressor, comprising:

[0020] Acquisition module, used to obtain the factory's production plan data in real time;

[0021] A control module, configured to obtain control information for the air compressor in the factory based on the production plan data;

[0022] The sending module is used to send the control information to the air compressor, so that the air compressor performs corresponding control actions according to the control information.

[0023] In a sixth aspect, an embodiment of the present application provides a control device for an air compressor, comprising:

[0024] an acquisition module, configured to acquire control information, wherein the control information is obtained by a control terminal by acquiring production plan data of a factory in real time, obtaining control information for an air compressor in the factory based on the production plan data, and sending the control information to the air compressor;

[0025] An execution module is used to execute corresponding control actions according to the control information.

[0026] In a seventh aspect, an embodiment of the present application provides a device control apparatus, comprising:

[0027] A display module is configured to display a device control control, wherein each device control control corresponds to a controlled device, and each device control control has corresponding pairing information, wherein the pairing information is pairing information between a first signal transceiver of the control terminal and a second signal transceiver of the controlled device corresponding to the device control control;

[0028] An acquisition module, configured to acquire control information through the device control widget;

[0029] A sending module is used to send the control information to the controlled device through a communication connection between the controlled device, so that the controlled device performs a corresponding control action according to the control information, and the communication connection is established using pairing information corresponding to the device control control.

[0030] In an eighth aspect, an embodiment of the present application provides a device control apparatus, comprising:

[0031] an acquisition module, configured to acquire control information, wherein the control information is obtained by a control terminal through a display device control control, wherein each device control control corresponds to a controlled device, and wherein corresponding pairing information exists for the device control control, and wherein the pairing information is pairing information between a first signal transceiver of the control terminal and a second signal transceiver of the controlled device corresponding to the device control control; the control information is acquired through the device control control, and the control information is sent to the controlled device through a communication connection with the controlled device, wherein the communication connection is established using the pairing information corresponding to the device control control;

[0032] An execution module is used to execute corresponding control actions according to the control information.

[0033] In the ninth aspect, an embodiment of the present application provides a control terminal comprising: a memory and a processor; wherein the memory stores one or more computer operations, wherein when the one or more computer operations are executed by the processor, the method as described in any one of the first and third aspects is implemented.

[0034] In the tenth aspect, an embodiment of the present application provides an electronic device, comprising: a memory and a processor; wherein the memory stores one or more computer operations, wherein the one or more computer operations, when executed by the processor, implement the method as described in any one of the second and fourth aspects.

[0035] In the eleventh aspect, an embodiment of the present application provides a computer-readable storage medium having a computer program stored thereon. When the computer program is executed, the method as described in any one of the first to fourth aspects is implemented.

[0036] An embodiment of the present application further provides a computer program, which, when executed by a computer, is used to implement the method as described in any one of the first to fourth aspects.

[0037] In an embodiment of the present application, the production plan data of the factory can be obtained in real time, and based on the production plan data, control information for the air compressor in the factory can be obtained, and the control information can be sent to the air compressor so that the air compressor performs corresponding control actions according to the control information, thereby realizing digital management of the air compressor in the factory, improving the degree of intelligent transformation of the factory, and improving the digital level of the factory, so that equipment control personnel can manage the air compressor through the operation terminal, without the need for equipment control personnel to go to the location of the controlled equipment, thereby reducing the manpower input of equipment control personnel in managing the air compressor and improving equipment management efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0038] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, a brief introduction will be given below to the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.

[0039] Figure 1A and Figure 1B A schematic diagram of a device control system provided in an embodiment of the present application;

[0040] Figure 2 A flow chart of a method for controlling an air compressor provided in one embodiment of the present application;

[0041] Figure 3 A schematic diagram of an air compressor corresponding to a device control control provided in an embodiment of the present application;

[0042] Figure 4 A flow chart of a method for controlling an air compressor provided in another embodiment of the present application;

[0043] Figure 5 A flow chart of a method for controlling an air compressor provided in another embodiment of the present application;

[0044] Figure 6 A flow chart of a device control method provided in one embodiment of the present application;

[0045] Figure 7 A schematic flow chart of a device control method provided in another embodiment of the present application;

[0046] Figure 8 A schematic diagram of a device control system provided in one embodiment of the present application;

[0047] Figure 9 A schematic structural diagram of a control device for an air compressor provided in one embodiment of the present application;

[0048] Figure 10 A schematic diagram of the structure of a control terminal provided in one embodiment of the present application;

[0049] Figure 11 A schematic structural diagram of a control device for an air compressor provided in another embodiment of the present application;

[0050] Figure 12 A schematic diagram of the structure of an electronic device provided in one embodiment of the present application;

[0051] Figure 13 A schematic diagram of the structure of a device control device provided in one embodiment of the present application;

[0052] Figure 14 A schematic diagram of the structure of a control terminal provided in another embodiment of the present application;

[0053] Figure 15 A schematic structural diagram of a device control device provided in another embodiment of the present application;

[0054] Figure 16 A schematic structural diagram of an electronic device provided in another embodiment of the present application. DETAILED DESCRIPTION

[0055] To make the purpose, technical solutions, and advantages of the embodiments of this application more clear, the technical solutions in the embodiments of this application will be clearly and completely described below in conjunction with the drawings in the embodiments of this application. Obviously, the described embodiments are part of the embodiments of this application, not all of the embodiments. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.

[0056] The terms used in the examples of this application are for the purpose of describing specific embodiments only and are not intended to limit this application. The singular forms "a," "the," and "the" used in the examples of this application and the appended claims are also intended to include plural forms, and unless the context clearly indicates otherwise, "a plurality" generally includes at least two, but does not exclude the inclusion of at least one.

[0057] It should be understood that the term "and / or" as used herein is merely a description of the relationship between associated objects, indicating that three possible relationships exist. For example, "A and / or B" can represent: A exists alone, A and B exist simultaneously, or B exists alone. Furthermore, the character " / " in this document generally indicates that the associated objects are in an "or" relationship.

[0058] As used herein, the words "if" and "if" may be interpreted as "at the time of" or "when" or "in response to determining" or "in response to detecting," depending on the context. Similarly, the phrases "if it is determined" or "if (stated condition or event) is detected" may be interpreted as "when it is determined" or "in response to the determination" or "when detecting (stated condition or event)" or "in response to detecting (stated condition or event)," depending on the context.

[0059] It should also be noted that the terms "include," "comprises," or any other variations thereof are intended to encompass non-exclusive inclusion, such that a product or system comprising a series of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such product or system. In the absence of further limitations, an element defined by the phrase "comprises a..." does not exclude the presence of other identical elements in the product or system comprising the element.

[0060] In addition, the step sequence in the following method embodiments is only an example and not a strict limitation.

[0061] In order to facilitate those skilled in the art to understand the technical solution provided by the embodiments of the present application, the technical environment in which the technical solution is implemented is described below.

[0062] Air compressors are essential auxiliary equipment for the normal operation of production line equipment in manufacturing plants. Their purpose is to provide a systematic high-pressure air source for production equipment. Typically, equipment management personnel control the air compressor by operating buttons on the compressor. However, since this method requires the personnel to be physically present at the compressor location to operate, it results in high manpower investment and low equipment management efficiency.

[0063] In order to solve the technical problems in the prior art of high manpower input of equipment control personnel in controlling air compressors and low equipment management efficiency, in an embodiment of the present application, the production plan data of the factory can be obtained in real time, and based on the production plan data, control information for the air compressors in the factory can be obtained, and the control information is sent to the air compressor so that the air compressor performs corresponding control actions according to the control information, thereby realizing digital management of the air compressors in the factory, improving the degree of intelligent transformation of the factory, and improving the digital level of the factory, so that equipment control personnel can manage the air compressor through the operation terminal, without the need for equipment control personnel to go to the location of the controlled equipment, thereby reducing the manpower input of equipment control personnel in managing the air compressor and improving equipment management efficiency.

[0064] Since air compressors are extremely energy-intensive equipment in factories, equipment control personnel are required to turn them on and off in a timely manner during non-working hours to ensure that they can meet the normal needs of the factory on time without generating waste.

[0065] However, in actual factory applications, in order to meet the normal gas supply needs of the factory production line on time, various auxiliary equipment and lighting are generally turned on a little in advance before the factory starts work. When the equipment control personnel arrive at the air compressor location to start the air compressor, since the start-up time depends on the time when the equipment control personnel arrive at the air compressor location, it is difficult for the equipment control personnel to accurately control the start-up time. Usually, it is 0.3-0.5 hours in advance, while the air compressor only needs to be started 3 minutes in advance to meet the normal gas supply of the factory, which will result in energy waste. Controlling the start-up of the air compressor through the control terminal can also make it easier for the equipment control personnel to accurately control the start-up time of the air compressor, thereby reducing the situation of starting the air compressor for a long time in advance and reducing energy waste.

[0066] Similarly, air compressors are generally shut down after factory production hours. When equipment control personnel arrive at the compressor location to shut down the compressor, it is difficult for them to shut down the compressor in a timely manner because the shutdown time depends on the time the equipment control personnel arrive at the compressor location. Usually, the shutdown is delayed for a period of time, causing the compressor to delay operation when the factory is not operating, resulting in energy waste. Shutting down the air compressor through the control terminal can also facilitate equipment control personnel to shut down the air compressor in a timely manner, thereby reducing the situation of delayed air compressor operation and reducing energy waste.

[0067] In addition, since the normal use time of the air compressor is generally fixed and limited, turning the air compressor on and off in time can also shorten the working time of the equipment. This can greatly increase the service life of the air compressor over a long period of time.

[0068] The following describes some embodiments of the present application in detail with reference to the accompanying drawings. Unless there is a conflict, the following embodiments and features in the embodiments may be combined with each other.

[0069] Figure 1A A schematic diagram of a device control system provided in an embodiment of the present application, such as Figure 1A As shown, the system may include: a control terminal 11 and controlled equipment 12 in the factory. The control terminal 11 can be used by equipment control personnel, who can use the control terminal 11 to control the controlled equipment 12, such as power on / off control, parameter control, etc.

[0070] The control terminal 11 can be, for example, a mobile phone, tablet computer, wearable device, etc. One control terminal 11 can control one or more controlled devices 12. The multiple controlled devices controlled by the same control terminal 11 can be controlled devices in the same factory or in different factories, such as controlled devices in different factories in the same industrial park. The multiple controlled devices 12 controlled by the same control terminal 11 are devices from different factories, allowing a single person to manage devices in multiple factories, improving the efficiency of device management and control, and resolving the issue of having to assign dedicated personnel to manage devices in each factory due to the large distances between devices in different factories.

[0071] It should be noted that the number of controlled devices 12 in FIG. 1 is only an example.

[0072] In one embodiment, the control terminal 11 can control the controlled device 12 through the Internet of Things. In this case, both the control terminal 11 and the controlled device 12 can include a signal transceiver for implementing wireless communication of the Internet of Things. Figure 1B As shown, the control terminal 11 may include a first signal transceiver T1, and the controlled device 12 may include a second signal transceiver T2 for pairing with the first signal transceiver. The second signal transceiver T2 may be installed on the controlled device 12, for example. The control terminal 11 and the controlled device 12 can communicate wirelessly through the first signal transceiver T1 and the second signal transceiver T2. The first signal transceiver T1 and the first signal transceiver T2 may be, for example, Wireless Fidelity (WiFi) modules.

[0073] It should be noted that the controlled device 12 in this application can be any type of equipment in a factory that requires digital management. In one embodiment, the controlled device 12 can include an air compressor. Optionally, the controlled device 12 can also include an air filter for filtering the gas generated by the air compressor. The following description mainly uses the controlled device 12 as an example to describe the air compressor.

[0074] Figure 2 A flow chart of a method for controlling an air compressor according to an embodiment of the present application is shown as follows: Figure 2 As shown, the method provided in this embodiment may include:

[0075] Step 21, the control terminal obtains the factory's production plan data in real time;

[0076] Step 22: The control terminal obtains control information for the air compressor in the factory based on the production plan data;

[0077] Step 23, the control terminal sends the control information to the air compressor;

[0078] In step 24, the air compressor performs corresponding control actions according to the control information.

[0079] In an embodiment of the present application, the control terminal can obtain the factory's production plan data in real time. The production plan data refers to data used to describe the factory's production plan. The production plan data may, for example, include production lines planned to operate in a future period of time and the planned production time of each production line.

[0080] Since air compressors serve as auxiliary equipment for factory production lines, providing a high-pressure air source, the factory's production plan data determines the control requirements for the air compressors. Therefore, control information for the factory's air compressors can be obtained based on the production plan data. This control information can include power-on / off control information and / or parameter control information. The power-on / off control information can specifically be any type of information used to control the air compressor's power on and off, while the parameter control information can specifically be information used to control the compressor's operating parameters (e.g., power).

[0081] For example, taking tomorrow as an example, suppose a factory has 8 identical production lines and 4 air compressors, and every 2 production lines share high-pressure gas provided by 1 air compressor. The real-time production plan data of the factory describes that all 8 production lines are planned to operate tomorrow, and the planned operation time is all from 9 am to 5 pm. Then, the control requirements for the air compressors obtained based on the production plan data can be, for example: requiring the 4 air compressors of the factory to start at 8:55 am on the day corresponding to tomorrow and to shut down at 5:05 pm.

[0082] For another example, taking tomorrow as an example, suppose a factory has 8 identical production lines and 4 air compressors, and every 2 production lines share the high-pressure gas provided by 1 air compressor. The real-time production plan data of the factory describes that 7 of the 8 production lines are scheduled to operate tomorrow, and the planned operation time is all from 9 am to 5 pm. Then, the control requirements for the air compressors obtained based on the production plan data can be, for example: requiring all 4 air compressors in the factory to be turned on at 8:55 am and turned off at 5:05 pm on the corresponding day tomorrow, and the gas demand for one of the 4 air compressors is half of that of the other three. This air compressor is the air compressor corresponding to the production line that is not scheduled to operate among the 8 production lines.

[0083] Optionally, the control terminal may automatically determine to control the air compressor based on the acquired production plan data.

[0084] Alternatively, the control terminal can display the acquired production plan data to the user, allowing the user to control the air compressor. In one embodiment, step 22 may specifically include: displaying the production plan data to the user; and obtaining user control information for the air compressor in the factory. In one embodiment, control information can be obtained interactively through a user interface (UI), making device operation easier and more user-friendly, thereby improving the user experience.

[0085] Based on this, in one embodiment, obtaining the user's control information for the air compressor in the factory may specifically include: displaying a device control control, where the same device control control corresponds to an air compressor in the factory, and the device control control has corresponding pairing information, where the pairing information is pairing information between a first signal transceiver of the control terminal and a second signal transceiver of the air compressor corresponding to the device control control; and obtaining the control information through the device control control. Step 23 may specifically include: sending the control information to the air compressor via a communication connection with the air compressor, where the communication connection is established using the pairing information corresponding to the device control control;

[0086] The control terminal can display the device control controls, for example, the device control controls can be device control buttons. The number of device control controls displayed on the control terminal can be one or more, and different device control controls can correspond to different air compressors. Figure 3 As shown, assuming that the device control controls include device control controls X and device control controls Y, and device control controls X corresponds to the air compressor 12A, and device control controls Y corresponds to the air compressor 12B, then the pairing information corresponding to the device control controls X is the pairing information between the first signal transceiver T1 and the second signal transceiver T2A on the air compressor 12A, and the pairing information corresponding to the device control controls Y is the pairing information between the first signal transceiver T1 and the second signal transceiver T2B on the air compressor 12B.

[0087] In one embodiment, the pairing information corresponding to the device control control may be obtained through manual input. For example, the pairing information input by the user corresponding to the device control control X may be stored in correspondence with the device control control X.

[0088] In another embodiment, the pairing information corresponding to the device control control can be obtained by automatic acquisition. Based on this, in one embodiment, the second signal transceiver can serve as a wireless access point (AP). The method provided in this embodiment may also include: establishing a communication connection with the target network based on user input corresponding to the device control control, and the target network is the network corresponding to the second signal transceiver of the air compressor. If the communication connection is successfully established, the pairing information between the first signal transceiver and the second signal transceiver of the air compressor is stored corresponding to the device control control.

[0089] Among them, the second signal transceiver of the air compressor can broadcast its own network name as a wireless access point. The network name can be represented by a service set identifier (SSID). The network name can be related to the location of the air compressor where the second signal transceiver is located, for example, it can be device No. 1 in the East District.

[0090] The target network can be selected by the user from a network list. In actual applications, a network search can be performed in response to a network search operation. In one embodiment, if a corresponding air compressor does not exist for a device control control, the triggering operation of the device control control can be used as a network search operation. Based on this, establishing a communication connection with the target network based on the user input corresponding to the device control control can specifically include: performing a network search in response to the triggering operation of the device control control and displaying a list of searched networks; and establishing a communication connection with the target network in response to selecting a target network from the network list. The triggering operation of the device control control can be, for example, a click operation on the device control control.

[0091] For example, when there is no corresponding air compressor for device control control X, the control terminal can obtain a trigger operation for device control control X. In response to the trigger operation, the control terminal can perform a network search through the first signal transceiver installed thereon, and can also display the searched network names in the form of a network list. The control terminal can obtain the network name when the user selects the second signal transceiver on the air compressor 12A in the network list as the AP. The network represented by the network name is the target network. When a password is required for access to the target network, the control terminal can obtain the network password in response to the selection operation and use the obtained network password to establish a communication connection with the target network. If the communication connection is successfully established, the control terminal can store the pairing information between the first signal transceiver and the second signal transceiver on the air compressor 12A in correspondence with the device control control X, thereby realizing the correspondence between the device control control X and the air compressor 12A.

[0092] Optionally, the user may be provided with a function for setting the name of the device control so that the user can intuitively identify the air compressor corresponding to the device control. Based on this, the method provided in this embodiment may further include: obtaining a name setting operation for the device control, and setting the name of the device control in response to the name setting operation. For example, the name of the device control may be related to the location of the corresponding air compressor, such as "East District No. 1 Device."

[0093] After displaying the device control widget, the control terminal can obtain control information through the device control widget. For example, for device control widget X, since device control widget X corresponds to air compressor 12A, the control information for air compressor 12A can be obtained through device control widget X and sent to air compressor 12A via the communication connection with air compressor 12A.

[0094] It should be understood that after obtaining the control information for the air compressor 12A through the device control control X, if the communication with the air compressor 12A is disconnected, a communication connection can be established with the air compressor 12A based on the pairing information stored corresponding to the device control control X, and after the communication connection is successfully established, the control information can be sent to the air compressor 12A through the communication connection between the air compressors 12A; after obtaining the control information for the air compressor 12A, if the communication connection is established with the air compressor 12A, the control information can be sent to the air compressor 12A directly through the communication connection between the air compressor 12A.

[0095] In one embodiment, for the power on / off control information, a power on / off control interface may be displayed in response to a triggering operation on a device control component, and the power on / off control information may be obtained through the power on / off control interface.

[0096] In another embodiment, the power on / off control information can be directly used as the power on / off control information by directly using the triggering operation of the device control control, thereby simplifying the user's control operation. Based on this, the control information obtained through the device control control can specifically include: obtaining a first triggering operation of the device control control, where the operation information of the first triggering operation is the power on / off control information. For example, if the device control control is a button control, the first triggering operation can be a long press operation, and the long press operation for controlling the air compressor to start up can have a different duration than the long press operation for controlling the air compressor to shut down.

[0097] For example, if the air compressor 12A is powered off, after receiving a long-press operation on the device control X, power-on / off control information for controlling power on can be sent to the air compressor 12A, and the air compressor 12A can perform the power-on operation based on the power-on / off control information. For another example, if the air compressor 12A is powered on, after receiving a long-press operation on the device control X, power-on / off control information for controlling power off can be sent to the air compressor 12A.

[0098] In another embodiment, when the air compressor includes a touch screen for touch-operating the air compressor, the control terminal can provide the user with an interface that is consistent with the electrical operation interface of the air compressor. Based on this, and / or optionally, obtaining control information through the device control control can specifically include, in response to a second trigger operation on the device control control, obtaining the screen content of the touch screen of the air compressor through a communication connection with the air compressor, the screen content including the parameter control, displaying the screen content, obtaining touch information of the touch parameter control, and the touch information being the parameter control information. Taking the device control control as a button control as an example, the second trigger operation can be, for example, a click operation, and the parameter control can be used to control the operating parameters of the air compressor, such as power, etc.

[0099] For example, when the device control control X is already corresponding to the air compressor 12A, in response to the click operation of the device control control X, the screen content of the touch screen of the air compressor 12A can be obtained through the communication connection between the air compressor 12A, the screen content includes the parameter control, the screen content is displayed, the touch information of the touch parameter control is obtained, and the touch information is sent to the air compressor 12A.

[0100] It should be understood that after obtaining the click operation on the device control control X, if the communication with the air compressor 12A is disconnected, a communication connection can be established with the air compressor 12A based on the pairing information stored corresponding to the device control control X, and after the communication connection is successfully established, the screen content of the touch screen on the air compressor 12A can be obtained; after obtaining the click operation on the device control control X, if the communication is connected with the air compressor 12A, the screen content of the touch screen on the air compressor 12A can be directly obtained through the communication connection between the air compressor 12A.

[0101] By providing users with an interface consistent with the air compressor's electrical operation interface, the control terminal enables IoT-based control of the compressor's operating parameters, ensuring that the equipment operates according to production requirements. Compared to traditional technologies that require equipment control personnel to visit the equipment site to debug and set equipment parameters, this reduces the manpower and time invested in debugging and setting equipment parameters, thereby improving equipment utilization. Furthermore, by accessing and displaying the contents of the air compressor's touchscreen via the control terminal, users can more easily and intuitively monitor status information that was previously displayed on the touchscreen, such as operating hours, daily energy consumption, and current operating status.

[0102] In an embodiment of the present application, after the control terminal sends control information to the air compressor, the air compressor can perform corresponding control actions based on the control information. For example, if the control information is specifically information for controlling the air compressor to start up, the air compressor can perform a power-on action based on the control information; if the control information is specifically information for controlling the air compressor to shut down, the air compressor can perform a shutdown action based on the control information; and if the control information is specifically information for controlling air compressor parameters, the air compressor can perform a parameter adjustment action based on the control information.

[0103] In the embodiment of the present application, optionally, the method provided in this embodiment may further include: counting the working time of the air compressor within the target time, the target time being the time between the time of the most recent maintenance and the current time, and outputting a prompt message for prompting the air compressor to be repaired and maintained when the working time of the air compressor exceeds the time threshold. This can avoid the traditional method of only waiting for the air compressor to start maintenance when it has a direct working condition, failure, excessive energy consumption, or displays a fault code, etc., which affects the startup and use of the equipment. This greatly increases the service life and limited utilization rate of the equipment, and at the same time avoids the situation where maintenance is required after the equipment has suffered excessive wear and tear, thereby achieving the effect of reducing the investment in maintenance costs.

[0104] The air compressor control method provided in this embodiment obtains the production plan data of the factory in real time, obtains control information for the air compressor in the factory based on the production plan data, and sends the control information to the air compressor, so that the air compressor performs corresponding control actions according to the control information, thereby realizing digital management of the air compressor in the factory, improving the degree of intelligent transformation of the factory, and improving the digital level of the factory, so that equipment control personnel can manage the air compressor through the operation terminal, without the need for equipment control personnel to go to the location of the controlled equipment, thereby reducing the manpower input of equipment control personnel in managing the air compressor and improving equipment management efficiency.

[0105] Figure 4 This is a flow chart of a method for controlling an air compressor according to another embodiment of the present application. The method provided in this embodiment can be performed by Figure 1AThe control terminal 11 in the execution, such as Figure 4 As shown, the method provided in this embodiment may include:

[0106] Step 41, obtaining the factory's production plan data in real time;

[0107] Step 42: obtaining control information for air compressors in the factory based on the production plan data;

[0108] Step 43: Send the control information to the air compressor so that the air compressor performs corresponding control actions according to the control information.

[0109] It should be noted that for the specific implementation of the control terminal, please refer to Figure 2 The relevant contents in the illustrated embodiment will not be repeated here.

[0110] The air compressor control method provided in this embodiment obtains the factory's production plan data in real time, obtains control information for the air compressor in the factory based on the production plan data, and sends the control information to the air compressor, thereby enabling equipment control personnel to manage the air compressor through an operating terminal without the need for equipment control personnel to go to the location of the controlled equipment, thereby reducing the manpower input of equipment control personnel in managing the air compressor and improving equipment management efficiency.

[0111] Figure 5 This is a flow chart of a control method for an air compressor provided in another embodiment of the present application. The method provided in this embodiment can be executed by an air compressor, such as Figure 5 As shown, the method provided in this embodiment may include:

[0112] Step 51: Acquire control information. The control information is obtained by the control terminal by acquiring the production plan data of the factory in real time, obtaining control information for the air compressor in the factory based on the production plan data, and sending the control information to the air compressor;

[0113] Step 52: Execute corresponding control actions according to the control information.

[0114] It should be noted that for the specific implementation of the air compressor, please refer to Figure 2 The relevant contents in the illustrated embodiment will not be repeated here.

[0115] The control method for an air compressor provided in this embodiment obtains control information and executes corresponding control actions according to the control information, wherein the control information is obtained by a control terminal through real-time acquisition of the factory's production plan data, and based on the production plan data, the control information for the air compressor in the factory is obtained, and the control information is sent to the air compressor. This enables the equipment control personnel to manage the air compressor through the operation terminal without the need for the equipment control personnel to go to the location of the controlled equipment, thereby reducing the manpower input of the equipment control personnel in managing the air compressor and improving the equipment management efficiency.

[0116] Figure 6 FIG. 1 is a flow chart of a device control method according to an embodiment of the present application. The method according to this embodiment can be executed by the control terminal 11 in FIG. 1 . Figure 6 As shown, the method provided in this embodiment may include:

[0117] Step 61: Display the device control widget. Each device control widget corresponds to a controlled device. The device control widget has corresponding pairing information. The pairing information is pairing information between the first signal transceiver of the control terminal and the second signal transceiver of the controlled device corresponding to the device control widget.

[0118] Step 62, obtaining control information through the device control control;

[0119] Step 63: Send the control information to the controlled device via the communication connection with the controlled device, so that the controlled device performs the corresponding control action according to the control information. The communication connection is established using the pairing information corresponding to the device control component.

[0120] In one embodiment, the method provided in this embodiment may further include: the control terminal establishes a communication connection with the target network based on the user input corresponding to the device control control, the target network is the network corresponding to the second signal transceiver of the controlled device, and if the communication connection is successfully established, the pairing information between the first signal transceiver and the second signal transceiver of the controlled device is stored corresponding to the device control control.

[0121] In one embodiment, establishing a communication connection with a target network based on user input corresponding to a device control control includes: performing a network search in response to a triggering operation of the device control control, and displaying a list of searched networks; and establishing a communication connection with the target network in response to a selection operation of a target network in the network list.

[0122] In one embodiment, obtaining control information through a device control control includes: obtaining a first trigger operation on the device control control, where the operation information of the first trigger operation is power on / off control information.

[0123] In one embodiment, obtaining control information through a device control control includes: in response to a second trigger operation on the device control control, obtaining the screen content of the touch screen of the controlled device through a communication connection with the controlled device, the screen content including parameter controls, displaying the screen content, and obtaining touch information of the touch parameter controls, where the touch information is the parameter control information.

[0124] It should be noted that for the specific implementation of the control terminal, please refer to Figure 2 Relevant content about the control terminal in the illustrated embodiment.

[0125] The device control method provided in this embodiment displays a device control control. The same device control control corresponds to a controlled device. The device control control has corresponding pairing information. The control information is obtained through the device control control and sent to the controlled device through a communication connection with the controlled device, so that the controlled device performs a corresponding control action according to the control information. The communication connection is established using the pairing information corresponding to the device control control, so that the device control personnel can manage the controlled device through the operation terminal.

[0126] Figure 7 This is a flow chart of a device control method provided by another embodiment of the present application. The method provided by this embodiment can be Figure 1A The control terminal 11 in the execution, such as Figure 6 As shown, the method provided in this embodiment may include:

[0127] Step 71: Acquire control information. The control information is obtained by the control terminal through the display device control control. Each device control control corresponds to a controlled device. The device control control has corresponding pairing information. The pairing information is pairing information between the first signal transceiver of the control terminal and the second signal transceiver of the device control control corresponding to the controlled device. The control information is obtained through the device control control and sent to the controlled device through a communication connection with the controlled device. The communication connection is established using the pairing information corresponding to the device control control.

[0128] Step 72: Execute corresponding control actions according to the control information.

[0129] It should be noted that for the specific implementation of the controlled device, please refer to Figure 2 Relevant content about the air compressor in the illustrated embodiment.

[0130] The device control method provided in this embodiment obtains control information and executes corresponding control actions according to the control information, wherein the control information is the control terminal through the display device control control, the same device control control corresponds to a controlled device, and the device control control has corresponding pairing information. The pairing information is the pairing information between the first signal transceiver of the control terminal and the second signal transceiver of the device control control corresponding to the controlled device. The control information is obtained through the device control control and sent to the controlled device through the communication connection between the device and the controlled device. The communication connection is established using the pairing information corresponding to the device control control, so that the device control personnel can manage the controlled device by operating the terminal.

[0131] Figure 8 This is a schematic diagram of a device control system provided in one embodiment of the present application. For example, the number of controlled devices is 4, 3 of which are air compressors and 1 is an air filter. Figure 8 As shown, the equipment control system may include air compressor 81, air compressor 82, air compressor 83, air filter 84 and control terminal 85. Air compressor 81, air compressor 82 and air compressor 83 can be started independently to generate high-pressure gas for use as a power source for factory production equipment. Air filter 84 can filter the air generated by air compressor 81, air compressor 82 and air compressor 83 to avoid a small amount of water in the air, which affects the normal use of subsequent production equipment.

[0132] The control terminal 85 includes a first signal transceiver 85A. The air compressor 81 is equipped with a second signal transceiver 81A for pairing with the first signal transceiver 85A. The air compressor 82 is equipped with a second signal transceiver 82A for pairing with the first signal transceiver 85A. The air compressor 83 is equipped with a second signal transceiver 83A for pairing with the first signal transceiver 85A. The air filter 84 is equipped with a second signal transceiver 84A for pairing with the first signal transceiver 85A. The air compressor 81 includes a touch screen 81B, the air compressor 81 includes a touch screen 82B, the air compressor 83 includes a touch screen 83B, and the air filter 84 includes a touch screen 84B. The touch screens 81B, 82B, 83B, and 84B can display electrical operation interfaces.

[0133] Air compressor 81, air compressor 82 and air compressor 83 are all connected to air filter 84 by air pipes. The compressed gas generated is filtered by air filter 84 to obtain water-free dry air for use by factory production equipment. The compressed gas generated by air compressor 81 can be filtered by air filter 84 and output through air pipe F1, for example; the compressed gas generated by air compressor 82 can be filtered by air filter 84 and output through air pipe F2, for example; the compressed gas generated by air compressor 83 can be filtered by air filter 84 and output through air pipe F3, for example.

[0134] Taking the control terminal as a mobile phone and the control of the controlled device by an application (Application, App) as an example, the second signal transceivers of air compressor 81, air compressor 82, air compressor 83 and air filter 84 can be used to wirelessly connect to the mobile phone App.

[0135] First, the equipment control personnel can install an App software on their mobile phones to remotely and wirelessly connect to the air compressors 81, 82, 83, and air filters 84 in the factory covered by the digital Internet of Things.

[0136] Then, the device control controls a, b, c and d on the App control interface can be respectively matched to the four controlled devices. For example, the device control control a can correspond to the air compressor 81, the device control control b can correspond to the air compressor 82, the device control control c can correspond to the air compressor 83, and the device control control d can correspond to the air filter 84.

[0137] Afterwards, the equipment control personnel can long-press the equipment control controls a, b, c, and d on the App control interface to respectively start or shut down the air compressor 81, air compressor 82, air compressor 83, and air filter 84. This can (1) reduce the amount of manpower required for on-site equipment maintenance personnel to start up and wait for equipment to be put into operation before the factory to meet production needs; (2) reduce the amount of manpower required by the factory to arrange for manpower to go to the site to shut down the equipment after get off work; (3) improve the effective utilization rate of equipment and the service life of equipment; and (4) significantly reduce the energy consumption of equipment during ineffective working time.

[0138] In addition, equipment control personnel can also click on the device control controls a, b, c, and d on the App control interface to enter their respective independent control interfaces. Each independent control interface is consistent with the original electrical operation interface of the corresponding controlled device and can be interconnected via wireless network signals. This allows the required operating parameters of air compressor 81, air compressor 82, air compressor 83, and air filter 84 to be set from the mobile phone to ensure that the equipment operates according to production requirements. Compared with traditional technologies that require equipment control personnel to go to the equipment site to debug and set equipment parameters, this can reduce the manpower time invested in debugging and setting equipment parameters and improve the effective utilization rate of equipment.

[0139] In addition, equipment control personnel can also use the mobile phone app to flexibly choose the number of air compressors to turn on and off in a short period of time based on the number of production lines opened in the factory, avoiding the traditional practice of turning on the air compressors uniformly when going to work every day and turning them off uniformly after get off work. As a result, during the working day, when only some production lines are temporarily opened due to production mode adjustments, all air compressors are still turned on and turned off at the end of the day, resulting in a large amount of energy loss and lowering the equipment utilization rate.

[0140] Figure 9 This is a schematic diagram of the structure of the air compressor control device provided in one embodiment of the present application, see the attached Figure 9 As shown, this embodiment provides a control device for an air compressor, which can perform the above Figure 4 The method provided in the embodiment shown, specifically, the device may include:

[0141] Acquisition module 91, used to obtain the production plan data of the factory in real time;

[0142] A control module 92, configured to obtain control information for the air compressors in the factory based on the production plan data;

[0143] The sending module 93 is used to send the control information to the air compressor, so that the air compressor performs corresponding control actions according to the control information.

[0144] In one embodiment, the control module 92 is specifically used to: display the production plan data to the user; and obtain the user's control information for the air compressor in the factory.

[0145] In one embodiment, the control module 92 is configured to obtain user control information for the air compressor in the factory, including: displaying a device control control, where the same device control control corresponds to an air compressor in the factory, and the device control control has corresponding pairing information, where the pairing information is pairing information between a first signal transceiver of a control terminal and a second signal transceiver of the air compressor corresponding to the device control control; and obtaining control information through the device control control;

[0146] The sending module 93 is used to send the control information to the air compressor, including: sending the control information to the air compressor through a communication connection with the air compressor, and the communication connection is established using pairing information corresponding to the device control component.

[0147] In one embodiment, the device provided in this embodiment may further include a corresponding module for establishing a communication connection with a target network based on user input corresponding to the device control control, where the target network is the network corresponding to the second signal transceiver of the air compressor. If the communication connection is successfully established, the pairing information between the first signal transceiver and the second signal transceiver of the air compressor is stored corresponding to the device control control.

[0148] In one embodiment, the corresponding module is used to establish a communication connection with the target network based on the user input corresponding to the device control control, including: performing a network search in response to a trigger operation of the device control control, and displaying a list of searched networks; and establishing a communication connection with the target network in response to a selection operation of the target network in the network list.

[0149] In one embodiment, the control module 92 is configured to obtain control information through the device control control, including obtaining a first trigger operation on the device control control, where the operation information of the first trigger operation is the power on / off control information.

[0150] In one embodiment, the control module 92 is used to obtain control information through the device control control, including: in response to a second trigger operation on the device control control, obtaining the screen content of the touch screen of the air compressor through a communication connection with the air compressor, the screen content including parameter controls, displaying the screen content, and obtaining touch information of touching the parameter controls, wherein the touch information is parameter control information.

[0151] Figure 9 The device shown can perform Figure 4 The method provided in the embodiment shown in the figure, for the part not described in detail in this embodiment, please refer to Figure 4 The implementation process and technical effects of this technical solution can be found in Figure 4 The description in the illustrated embodiment will not be repeated here.

[0152] In one possible implementation, Figure 9 The structure of the device shown can be realized as a control terminal. Figure 10 As shown, the control terminal may include: a processor 101 and a memory 102. The memory 102 stores the data that supports the controller to execute the above Figure 4 The processor 101 is configured to execute the program stored in the memory 102 according to the method provided in the illustrated embodiment.

[0153] The program includes one or more computer instructions, wherein when the one or more computer instructions are executed by the processor 101, the following steps can be implemented:

[0154] Obtain the factory's production plan data in real time;

[0155] Based on the production plan data, obtaining control information for the air compressor in the factory;

[0156] The control information is sent to the air compressor, so that the air compressor performs corresponding control actions according to the control information.

[0157] Optionally, the processor 101 is further configured to execute the aforementioned Figure 4 All or part of the steps in the illustrated embodiments.

[0158] The structure of the control terminal may further include a communication interface 103 for controlling the terminal to communicate with other devices or a communication network.

[0159] Figure 11 This is a structural diagram of the air compressor control device provided in another embodiment of the present application, see the attached Figure 11 As shown, this embodiment provides a control device for an air compressor, which can perform the above Figure 5 The method provided in the embodiment shown, specifically, the device may include:

[0160] An acquisition module 111 is configured to acquire control information, wherein the control information is obtained by a control terminal by acquiring production plan data of a factory in real time, obtaining control information for an air compressor in the factory based on the production plan data, and sending the control information to the air compressor;

[0161] The execution module 112 is configured to execute corresponding control actions according to the control information.

[0162] Figure 11 The device shown can perform Figure 5 The method provided in the embodiment shown in the figure, for the part not described in detail in this embodiment, please refer to Figure 5 The implementation process and technical effects of this technical solution can be found in Figure 5 The description in the illustrated embodiment will not be repeated here.

[0163] In one possible implementation, Figure 11 The structure of the device shown can be realized as an electronic device, which can be an air compressor. Figure 12 As shown, the electronic device may include: a processor 121 and a memory 122. The memory 122 stores the processor 121 and the memory 122 supports the controller to execute the above Figure 5 The processor 121 is configured to execute the program stored in the memory 122 according to the method provided in the illustrated embodiment.

[0164] The program includes one or more computer instructions, wherein when the one or more computer instructions are executed by the processor 121, the following steps can be implemented:

[0165] Acquiring control information, wherein the control terminal acquires production plan data of the factory in real time, obtains control information for the air compressor in the factory based on the production plan data, and sends the control information to the air compressor;

[0166] Execute corresponding control actions according to the control information.

[0167] Optionally, the processor 121 is further configured to execute the aforementioned Figure 5 All or part of the steps in the illustrated embodiments.

[0168] The structure of the electronic device may further include a communication interface 123 for the electronic device to communicate with other devices or a communication network.

[0169] Figure 13 This is a schematic diagram of the structure of the device control device provided in one embodiment of the present application; Figure 13 As shown, this embodiment provides a device control device, which can perform the above Figure 6 The method provided in the embodiment shown, specifically, the device may include:

[0170] A display module 131 is configured to display device control controls. Each device control control corresponds to a controlled device. The device control control has corresponding pairing information, which is pairing information between the first signal transceiver of the control terminal and the second signal transceiver of the controlled device corresponding to the device control control.

[0171] An acquisition module 132 is configured to acquire control information through the device control widget;

[0172] The sending module 133 is used to send the control information to the controlled device through a communication connection with the controlled device, so that the controlled device performs a corresponding control action according to the control information. The communication connection is established using pairing information corresponding to the device control control.

[0173] Optionally, the apparatus provided in this embodiment further includes a corresponding module, which is used to: when the device control control does not correspond to the controlled device, establish a communication connection with the target network based on user input corresponding to the device control control, and the target network is the network corresponding to the second signal transceiver of the controlled device. If the communication connection is successfully established, the pairing information between the first signal transceiver and the second signal transceiver of the controlled device is stored corresponding to the device control control.

[0174] Optionally, the corresponding module is used to establish a communication connection with the target network based on the user input corresponding to the device control control, including: performing a network search in response to the triggering operation of the device control control, and displaying a list of searched networks; in response to the selection operation of the target network in the network list, establishing a communication connection with the target network.

[0175] Optionally, the acquisition module 132 is configured to acquire control information through the device control control, specifically including: acquiring a first trigger operation on the device control control, where the operation information of the first trigger operation is power on / off control information.

[0176] Optionally, the acquisition module 132 is used to obtain control information through the device control control, specifically including: in response to a second trigger operation on the device control control, obtaining the screen content of the touch screen of the controlled device through a communication connection with the controlled device, the screen content including parameter controls, displaying the screen content, and obtaining touch information of touching the parameter controls, wherein the touch information is parameter control information.

[0177] Optionally, the device provided in this embodiment also includes a prompt module, which is used to: count the working time of the air compressor within a target time, where the target time is the time between the time of the most recent maintenance and the current time, and when the working time of the air compressor exceeds a time threshold, output a prompt message for prompting the air compressor to be repaired and maintained.

[0178] Optionally, the controlled device includes an air compressor.

[0179] Figure 13 The device shown can perform Figure 6 The method provided in the embodiment shown in the figure, for the part not described in detail in this embodiment, please refer to Figure 6 The implementation process and technical effects of this technical solution can be found in Figure 6 The description in the illustrated embodiment will not be repeated here.

[0180] In one possible implementation, Figure 13 The structure of the device shown can be realized as a control terminal. Figure 14 As shown, the electronic device may include: a processor 141 and a memory 142. The memory 142 stores the data that supports the controller to execute the above Figure 6 The processor 141 is configured to execute the program stored in the memory 142 , which is a program of the method provided in the illustrated embodiment.

[0181] The program includes one or more computer instructions, wherein when the one or more computer instructions are executed by the processor 141, the following steps can be implemented:

[0182] Display device control controls, each device control control corresponds to a controlled device, and the device control control has corresponding pairing information, wherein the pairing information is pairing information between the first signal transceiver of the control terminal and the second signal transceiver of the controlled device corresponding to the device control control;

[0183] Obtaining control information through the device control widget;

[0184] The control information is sent to the controlled device via a communication connection with the controlled device, so that the controlled device performs a corresponding control action according to the control information, and the communication connection is established using pairing information corresponding to the device control component.

[0185] Optionally, the processor 141 is further configured to execute the aforementioned Figure 6 All or part of the steps in the illustrated embodiments.

[0186] The structure of the control terminal may further include a communication interface 143 for controlling the terminal to communicate with other devices or a communication network.

[0187] Figure 15 This is a structural diagram of a device control device provided in another embodiment of the present application; Figure 15 As shown, this embodiment provides a device control device, which can perform the above Figure 7 The method provided in the embodiment shown, specifically, the device may include:

[0188] An acquisition module 151 is configured to acquire control information, wherein the control information is obtained by a control terminal through a display device control control, wherein each device control control corresponds to a controlled device, and wherein the device control control has corresponding pairing information, wherein the pairing information is pairing information between a first signal transceiver of the control terminal and a second signal transceiver of the controlled device corresponding to the device control control; the control information is acquired through the device control control, and the control information is sent to the controlled device through a communication connection with the controlled device, wherein the communication connection is established using the pairing information corresponding to the device control control;

[0189] The execution module 152 is configured to execute corresponding control actions according to the control information.

[0190] Figure 15 The device shown can perform Figure 7 The method provided in the embodiment shown in the figure, for the part not described in detail in this embodiment, please refer to Figure 7 The implementation process and technical effects of this technical solution can be found in Figure 7The description in the illustrated embodiment will not be repeated here.

[0191] In one possible implementation, Figure 15 The structure of the device shown can be realized as an electronic device, which can be used as Figure 1A The controlled device 12 in Figure 16 As shown, the electronic device may include: a processor 161 and a memory 162. The memory 162 stores the data that supports the controller to execute the above Figure 7 The processor 161 is configured to execute the program stored in the memory 162 according to the method provided in the illustrated embodiment.

[0192] The program includes one or more computer instructions, wherein when the one or more computer instructions are executed by the processor 161, the following steps can be implemented:

[0193] Obtaining control information, where the control information is a control terminal controlling a display device, where the same device control control corresponds to a controlled device, and the device control control has corresponding pairing information, where the pairing information is pairing information between a first signal transceiver of the control terminal and a second signal transceiver of the controlled device corresponding to the device control control, obtaining the control information through the device control control, and sending the control information to the controlled device through a communication connection with the controlled device, where the communication connection is established using the pairing information corresponding to the device control control;

[0194] Execute corresponding control actions according to the control information.

[0195] Optionally, the processor 161 is further configured to execute the aforementioned Figure 7 All or part of the steps in the illustrated embodiments.

[0196] The structure of the electronic device may further include a communication interface 163 for the electronic device to communicate with other devices or a communication network.

[0197] In addition, the present invention also provides a control system for an air compressor, including: Figure 10 The control terminal and Figure 12 Electronic devices shown.

[0198] The present application also provides a device control system, including: Figure 14 The control terminal and Figure 16 Electronic devices shown.

[0199] The present application also provides a computer-readable storage medium having a computer program stored thereon. When the computer program is executed, the following is achieved: Figure 4 The method of the embodiment shown.

[0200] The present application also provides a computer-readable storage medium having a computer program stored thereon. When the computer program is executed, the following is achieved: Figure 5 The method of the embodiment shown.

[0201] The present application also provides a computer-readable storage medium having a computer program stored thereon. When the computer program is executed, the following is achieved: Figure 6 The method of the embodiment shown.

[0202] The present application also provides a computer-readable storage medium having a computer program stored thereon. When the computer program is executed, the following is achieved: Figure 7 The method of the embodiment shown.

[0203] The device embodiments described above are merely illustrative. The units described as separate components may or may not be physically separate, and the components shown as units may or may not be physical units, that is, they may be located in one place or distributed across multiple network units. Some or all of the modules may be selected based on actual needs to achieve the objectives of the present embodiment. Persons of ordinary skill in the art will be able to understand and implement the present embodiment without inventive effort.

[0204] Through the description of the above embodiments, those skilled in the art can clearly understand that each embodiment can be implemented by adding a necessary general hardware platform, and of course can also be implemented by combining hardware and software. Based on this understanding, the above technical solution is essentially or the part that contributes to the prior art can be embodied in the form of a computer product. This application can take the form of a computer program product implemented on one or more computer-usable storage media (including but not limited to disk storage, CD-ROM, optical storage, etc.) containing computer-usable program code.

[0205] The present application is described with reference to the flowchart and / or block diagram of the method, device (system), and computer program product according to the embodiment of the present application. It should be understood that each process and / or box in the flowchart and / or block diagram, and the combination of the process and / or box in the flowchart and / or block diagram can be realized by computer program instructions. These computer program instructions can be provided to a processor of a general-purpose computer, a special-purpose computer, an embedded processing machine or other programmable device to produce a machine, so that the instructions executed by the processor of the computer or other programmable device produce a device for realizing the function specified in one process or multiple processes in the flowchart and / or one box or multiple boxes in the block diagram.

[0206] These computer program instructions may also be stored in a computer-readable memory that can direct a computer or other programmable device to operate in a specific manner, so that the instructions stored in the computer-readable memory produce a product including an instruction device that implements the functions specified in one or more processes in the flowchart and / or one or more boxes in the block diagram.

[0207] These computer program instructions may also be loaded onto a computer or other programmable device so that a series of operational steps are executed on the computer or other programmable device to produce a computer-implemented process, whereby the instructions executed on the computer or other programmable device provide steps for implementing the functions specified in one or more processes in the flowchart and / or one or more boxes in the block diagram.

[0208] In a typical configuration, a computing device includes one or more processors (CPUs), input / output interfaces, network interfaces, and memory.

[0209] Memory may include non-permanent storage in a computer-readable medium, random access memory (RAM) and / or non-volatile memory in the form of read-only memory (ROM) or flash RAM. Memory is an example of a computer-readable medium.

[0210] Computer-readable media includes permanent and non-permanent, removable and non-removable media that can be implemented by any method or technology to store information. The information can be computer-readable instructions, linked lists, program modules, or other data. Examples of computer storage media include, but are not limited to, phase-change memory (PRAM), static random access memory (SRAM), dynamic random access memory (DRAM), other types of random access memory (RAM), read-only memory (ROM), electrically erasable programmable read-only memory (EEPROM), flash memory or other memory technology, compact disc read-only memory (CD-ROM), digital versatile disc (DVD) or other optical storage, magnetic cassettes, magnetic tape, magnetic disk storage or other magnetic storage devices, or any other non-transmission media that can store information that can be accessed by a computing device. As defined herein, computer-readable media does not include transitory computer-readable media (transitory media), such as modulated data signals and carrier waves.

[0211] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present application, rather than to limit them. Although the present application has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some or all of the technical features therein. These modifications or replacements do not deviate the essence of the corresponding technical solutions from the scope of the technical solutions of the embodiments of the present application.

Claims

1. A method for controlling an air compressor, characterized in that: Applicable to a scenario including a control terminal and multiple air compressors, the control terminal includes a first signal transceiver, the air compressor includes a second signal transceiver, and the second signal transceiver of the air compressor broadcasts its service set identifier as a wireless access point, including: Obtain the factory's production plan data in real time; Displaying the production plan data to a user; Displaying a plurality of device control buttons, for each device control button, whether a corresponding air compressor exists or does not exist, and if the corresponding air compressor exists for the device control button, storing pairing information for establishing a communication connection between the first signal transceiver and the second signal transceiver of the air compressor corresponding to the device control button; Obtaining a triggering operation for any device control button among the multiple device control buttons; In the event that no air compressor corresponds to any of the device control buttons, a network search is performed and a searched network list is displayed, wherein the network list includes the second signal transceivers of the plurality of air compressors as service set identifiers of respective wireless access points, and in response to a selection operation of a target service set identifier in the network list, a communication connection is established between the first signal transceiver and the second signal transceiver corresponding to the target service set identifier. If the communication connection is successfully established, pairing information for establishing the communication connection between the first signal transceiver and the second signal transceiver corresponding to the target service set identifier is stored in correspondence with the any of the device control buttons; In the case that there is a corresponding air compressor for any of the device control buttons, control information for the air compressor corresponding to any of the device control buttons is obtained, and the control information is sent to the air compressor by using the pairing information stored corresponding to the any of the device control buttons and the communication connection established between the second signal transceiver and the air compressor corresponding to the any of the device control buttons, so that the air compressor performs corresponding control actions according to the control information.

2. The method according to claim 1, characterized in that When any of the device control buttons corresponds to a device control button for an air compressor, the trigger operation is a first trigger operation, the control information is switch control information, and the operation information of the first trigger operation is switch control information.

3. The method according to claim 1, characterized in that When any of the device control buttons is a device control button corresponding to an air compressor, the trigger operation is a second trigger operation, the control information is parameter control information, and obtaining the control information for the air compressor corresponding to the any of the device control buttons includes: Through the communication connection between the second signal transceiver of the air compressor corresponding to any of the device control buttons, the screen content of the touch screen of the air compressor is obtained, the screen content includes parameter controls, the screen content is displayed, and touch information of touching the parameter controls is obtained, and the touch information is the parameter control information.

4. A method for controlling an air compressor, characterized in that: Applicable to a scenario including a control terminal and multiple air compressors, the control terminal includes a first signal transceiver, the air compressor includes a second signal transceiver, and the second signal transceiver of the air compressor broadcasts its service set identifier as a wireless access point, including: Acquire control information, the control information is acquired and sent by the control terminal in the following manner: acquire the production plan data of the factory in real time, display the production plan data to the user, display multiple device control buttons, for any device control button, it has a corresponding air compressor or no corresponding air compressor, if any device control button has a corresponding air compressor, any device control button stores pairing information for establishing a communication connection between the first signal transceiver and the second signal transceiver of the air compressor corresponding to the any device control button, acquire a trigger operation for any device control button among the multiple device control buttons, and when any device control button does not have a corresponding air compressor, perform a network search and display a searched network list, wherein the network list includes the second signal transceivers of multiple air compressors as wireless access points for serving the respective services. a target service set identifier, and in response to a selection operation on a target service set identifier in the network list, establishes a communication connection between the first signal transceiver and the second signal transceiver corresponding to the target service set identifier; if the communication connection is successfully established, stores pairing information for establishing a communication connection between the first signal transceiver and the second signal transceiver corresponding to the target service set identifier in correspondence with any device control button; and in a case where any device control button has a corresponding air compressor, obtains control information for the air compressor corresponding to any device control button; and sends the control information to the air compressor by using the pairing information stored in correspondence with the any device control button and the communication connection established between the second signal transceiver and the air compressor corresponding to the any device control button, so that the air compressor performs a corresponding control action according to the control information; Execute corresponding control actions according to the control information.

5. A device control method, characterized in that: Applicable to a scenario including a control terminal and multiple controlled devices, the control terminal including a first signal transceiver, the controlled device including a second signal transceiver, the second signal transceiver of the controlled device broadcasting itself as a service set identifier of a wireless access point, including: Displaying a plurality of device control buttons, for each device control button, whether a corresponding controlled device exists or does not exist, and if a corresponding controlled device exists for each device control button, storing pairing information for establishing a communication connection between the first signal transceiver and a second signal transceiver of the device corresponding to the device control button; Obtaining a triggering operation for any device control button among the multiple device control buttons; In a case where no controlled device corresponds to any of the device control buttons, a network search is performed, and a searched network list is displayed, wherein the network list includes signal transceivers of a plurality of controlled devices as service set identifiers of respective wireless access points, and in response to a selection operation of a target service set identifier in the network list, a communication connection is established through the first signal transceiver with a second signal transceiver corresponding to the target service set identifier, and if the communication connection is successfully established, pairing information used for establishing the communication connection between the first signal transceiver and the second signal transceiver corresponding to the target service set identifier is stored in correspondence with the any of the device control buttons; In the case that there is a corresponding controlled device for any of the device control buttons, control information for the air compressor corresponding to any of the device control buttons is obtained, and the control information is sent to the controlled device by using the pairing information stored corresponding to the any of the device control buttons and the communication connection established between the second signal transceiver and the controlled device corresponding to the any of the device control buttons, so that the controlled device performs corresponding control actions according to the control information.

6. A device control method, characterized in that: Applicable to a scenario including a control terminal and multiple controlled devices, the control terminal including a first signal transceiver, the controlled device including a second signal transceiver, the second signal transceiver of the controlled device broadcasting itself as a service set identifier of a wireless access point, including: Acquire control information, where the control information is acquired and sent by the control terminal in the following manner: display multiple device control buttons, for any device control button, there is a corresponding controlled device or there is no corresponding controlled device, if any device control button has a corresponding controlled device, the any device control button stores pairing information for establishing a communication connection between the first signal transceiver and the second signal transceiver of the controlled device corresponding to the any device control button, acquire a trigger operation for any device control button among the multiple device control buttons, and when no corresponding controlled device exists for any device control button, perform a network search and display a searched network list, wherein the network list includes the signal transceivers of the multiple controlled devices as service set identifiers of the wireless access points, and responds to the network An operation of selecting a target service set identifier in the list is performed, and a communication connection is established between the first signal transceiver and the second signal transceiver corresponding to the target service set identifier. If the communication connection is successfully established, pairing information used to establish a communication connection between the first signal transceiver and the second signal transceiver corresponding to the target service set identifier is stored corresponding to any device control button. If a controlled device corresponds to any device control button, control information for the air compressor corresponding to any device control button is obtained, and the control information is sent to the controlled device by using the pairing information stored corresponding to the any device control button and the communication connection established with the second signal transceiver corresponding to the controlled device corresponding to the any device control button, so that the controlled device performs a corresponding control action according to the control information. Execute corresponding control actions according to the control information.

7. A control device for an air compressor, characterized in that: Applicable to a scenario including a control terminal and multiple air compressors, the control terminal includes a first signal transceiver, the air compressor includes a second signal transceiver, and the second signal transceiver of the air compressor broadcasts its service set identifier as a wireless access point, including: Acquisition module, used to obtain the factory's production plan data in real time; A control module is used to display the production plan data to the user; display multiple device control buttons, for any device control button, there is a corresponding air compressor or no corresponding air compressor, if any device control button has a corresponding air compressor, any device control button stores pairing information for establishing a communication connection between the first signal transceiver and the second signal transceiver corresponding to the air compressor of any device control button; obtain a trigger operation for any device control button among the multiple device control buttons; if any device control button does not have a corresponding air compressor, perform a network search, display the searched network list, and The network list includes the second signal transceivers of multiple air compressors as service set identifiers of respective wireless access points, and in response to a selection operation of a target service set identifier in the network list, a communication connection is established between the first signal transceiver and the second signal transceiver corresponding to the target service set identifier. If the communication connection is successfully established, pairing information used to establish a communication connection between the first signal transceiver and the second signal transceiver corresponding to the target service set identifier is stored in correspondence with any of the device control buttons; if any of the device control buttons has a corresponding air compressor, control information for the air compressor corresponding to any of the device control buttons is obtained; The sending module sends control information to the air compressor by using the pairing information stored corresponding to the control button of any device and establishing a communication connection between the second signal transceiver of the air compressor corresponding to the control button of any device, so that the air compressor performs corresponding control actions according to the control information.

8. A control device for an air compressor, characterized in that: Applicable to a scenario including a control terminal and multiple air compressors, the control terminal includes a first signal transceiver, the air compressor includes a second signal transceiver, and the second signal transceiver of the air compressor broadcasts its service set identifier as a wireless access point, including: An acquisition module is used to acquire control information, and the control information is acquired and sent by the control terminal in the following manner: real-time acquisition of the factory's production plan data, displaying the production plan data to the user, and displaying multiple device control buttons. For any device control button, there is a corresponding air compressor or no corresponding air compressor. If there is a corresponding air compressor for any device control button, the pairing information for establishing a communication connection between the first signal transceiver and the second signal transceiver of the air compressor corresponding to the any device control button is stored in the any device control button, and a trigger operation for any device control button among the multiple device control buttons is acquired. If there is no corresponding air compressor for any device control button, a network search is performed and a searched network list is displayed, wherein the network list includes the second signal transceivers of multiple air compressors as wireless access points. another service set identifier, and in response to a selection operation on a target service set identifier in the network list, establish a communication connection between the first signal transceiver and the second signal transceiver corresponding to the target service set identifier; if the communication connection is successfully established, store the pairing information used to establish the communication connection between the first signal transceiver and the second signal transceiver corresponding to the target service set identifier in correspondence with any one of the device control buttons; if there is an air compressor corresponding to any one of the device control buttons, obtain control information for the air compressor corresponding to any one of the device control buttons; and send the control information to the air compressor by using the pairing information stored corresponding to any one of the device control buttons and the communication connection established between the second signal transceiver and the air compressor corresponding to any one of the device control buttons, so that the air compressor performs a corresponding control action according to the control information; An execution module is used to execute corresponding control actions according to the control information.

9. A device control device, characterized in that: Applicable to a scenario including a control terminal and multiple controlled devices, the control terminal including a first signal transceiver, the controlled device including a second signal transceiver, the second signal transceiver of the controlled device broadcasting itself as a service set identifier of a wireless access point, including: a display module for displaying a plurality of device control buttons, wherein for any device control button, a corresponding controlled device exists or does not exist, and if any device control button exists, pairing information for establishing a communication connection between the first signal transceiver and a second signal transceiver of the device corresponding to the device control button is stored corresponding to the device control button; an acquisition module, configured to acquire a triggering operation for any device control button among the plurality of device control buttons; a corresponding module, configured to, if no corresponding controlled device exists for any of the device control buttons, perform a network search and display a searched network list, the network list including signal transceivers of a plurality of controlled devices as service set identifiers of respective wireless access points, and, in response to a selection operation of a target service set identifier in the network list, establish a communication connection between the first signal transceiver and a second signal transceiver corresponding to the target service set identifier, and if the communication connection is successfully established, store pairing information used for establishing the communication connection between the first signal transceiver and the second signal transceiver corresponding to the target service set identifier in correspondence with the any of the device control buttons; The acquisition module is further configured to acquire control information of the air compressor corresponding to any device control button when there is a corresponding controlled device for any device control button; a sending module, configured to send the control information to the controlled device by using the pairing information stored corresponding to the control button of any device and establishing a communication connection between the second signal transceiver of the controlled device corresponding to the control button of any device, so that the controlled device performs a corresponding control action according to the control information.

10. A device control device, characterized in that: Applicable to a scenario including a control terminal and multiple controlled devices, the control terminal including a first signal transceiver, the controlled device including a second signal transceiver, the second signal transceiver of the controlled device broadcasting itself as a service set identifier of a wireless access point, including: An acquisition module is used to acquire control information, where the control information is acquired and sent by the control terminal in the following manner: displaying multiple device control buttons, for any device control button, there is a corresponding controlled device or there is no corresponding controlled device, if there is a corresponding controlled device for any device control button, the any device control button stores pairing information for establishing a communication connection between the first signal transceiver and the second signal transceiver of the controlled device corresponding to the any device control button, acquiring a trigger operation for any device control button among the multiple device control buttons, and when there is no corresponding controlled device for any device control button, performing a network search and displaying a searched network list, wherein the network list includes the signal transceivers of the multiple controlled devices as service set identifiers of the wireless access points, and responding to the control operation of the controlled device. a selection operation of the target service set identifier in the network list, establishing a communication connection between the first signal transceiver and the second signal transceiver corresponding to the target service set identifier; if the communication connection is successfully established, storing pairing information used to establish a communication connection between the first signal transceiver and the second signal transceiver corresponding to the target service set identifier in correspondence with the any device control button; and, if a controlled device exists corresponding to the any device control button, obtaining control information for the air compressor corresponding to the any device control button; and sending the control information to the controlled device by using the pairing information stored corresponding to the any device control button and the established communication connection with the second signal transceiver corresponding to the controlled device corresponding to the any device control button, so that the controlled device performs a corresponding control action according to the control information; The execution module is used to execute corresponding control machine actions according to the control information.

11. A control terminal, characterized in that: include: A memory, a processor; wherein the memory stores one or more computer instructions, wherein when the one or more computer instructions are executed by the processor, the method according to any one of claims 1 to 3 and 5 is implemented.

12. An electronic device, characterized in that: include: A memory, a processor; wherein the memory stores one or more computer instructions, wherein when the one or more computer instructions are executed by the processor, the method according to claim 4 or 6 is implemented.

13. A computer-readable storage medium, characterized in that A computer program is stored thereon, and when the computer program is executed, the method according to any one of claims 1 to 6 is implemented.

Citation Information

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