Equipment operation control method and system, equipment and storage medium

By adjusting the operating control mode of the fan and compressor according to the equipment configuration information, the problem of high noise in space-constrained and high-temperature conditions was solved, resulting in noise reduction and improved user experience.

CN120926680APending Publication Date: 2025-11-11HEFEI HUALING CO LTD +2
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Patent Information

Application Number
CN202410566484.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-05-09
Publication Date
2025-11-11

AI Technical Summary

Technical Problem

The existing equipment's fan control method mainly relies on ambient temperature, which leads to increased noise under space constraints and high ambient temperature conditions, affecting the user experience.

Method used

The operating control mode is determined based on the equipment configuration information, and the corresponding control parameters are obtained to control the operation of the fan unit and compressor, including factors such as target distance, current time, and equipment door status, and to adjust the speed of the fan and compressor.

Benefits of technology

It effectively reduces noise during equipment operation, improves user experience, and does not increase costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an equipment operation control method and system, equipment and a storage medium. The method comprises the following steps: determining an operation control mode of the equipment according to configuration information of the equipment; acquiring a control parameter corresponding to the operation control mode; the fan unit and / or the compressor of the equipment are / is controlled to operate according to the control parameters without increasing cost, corresponding control factors are determined according to the equipment configuration information, operation of the fan unit and the compressor in the equipment is controlled accordingly, and noise is effectively reduced.
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Description

Technical Field

[0001] This invention relates to the field of household appliances, and more specifically to a device operation control method, system, device, and storage medium. Background Technology

[0002] The equipment's fan maintains a stable low temperature inside the equipment, prevents frost formation, and keeps food fresh by circulating air, dissipating heat, and maintaining humidity.

[0003] Current fan control methods primarily rely on ambient temperature as the main single variable. However, to meet the demands of modern home decoration and maximize the utilization of residential space, the placement of some equipment is limited by space constraints, causing ambient temperature sensors to drift. This results in the fan operating at high speed for extended periods, increasing noise. Furthermore, relying solely on ambient temperature monitoring also leads to increased noise in summer or at higher ambient temperatures, negatively impacting the user experience. Summary of the Invention

[0004] The main objective of this invention is to provide a method, system, device, and storage medium for controlling equipment operation without increasing costs. It determines the corresponding control factors based on the equipment configuration information and controls the operation of the fan unit and compressor in the equipment accordingly, effectively reducing noise.

[0005] To achieve the above objectives, the embodiments of this application provide the following technical solutions:

[0006] According to a first aspect of the embodiments of this application, a device operation control method is provided, the method comprising:

[0007] The operating control mode of the device is determined based on the device's configuration information;

[0008] Obtain the control parameters corresponding to the operation control mode;

[0009] The fan unit and / or compressor of the equipment are controlled to operate according to the control parameters.

[0010] Optionally, the operation control modes include no communication mode, no ranging mode, no communication ranging mode, and ranging mode with communication.

[0011] Optionally, the operation control mode is a no-communication mode, which is determined when the configuration information of the device only contains ranging module information;

[0012] The step of controlling the operation of the fan unit and / or compressor of the equipment according to the control parameters includes:

[0013] The operation of the wind turbine unit is controlled based on the target distance and / or the status of the equipment door.

[0014] Optionally, the operation control mode is a distance-free mode; the distance-free mode is determined when the device's configuration information only contains communication module information.

[0015] The step of controlling the operation of the fan unit and / or compressor of the equipment according to the control parameters includes:

[0016] The operation of the fan unit is controlled based on the current time and / or the device door status, and the operation of the compressor is controlled based on the current time.

[0017] Optionally, the operation control mode is a no-communication ranging mode; the no-communication ranging mode is determined when the device's configuration information does not contain ranging module information and communication module information.

[0018] The step of controlling the operation of the fan unit and / or compressor of the equipment according to the control parameters includes:

[0019] The operation of the wind turbine unit is controlled based on the status of the equipment door.

[0020] Optionally, the operation control mode is a ranging mode with communication; the ranging mode with communication is determined when the device's configuration information contains ranging module information and communication module information;

[0021] The step of controlling the operation of the fan unit and / or compressor of the equipment according to the control parameters includes:

[0022] The operation of the fan unit is controlled based on the target distance, current time, and / or equipment door status, and the operation of the compressor is controlled based on the current time.

[0023] Optionally, controlling the operation of the wind turbine unit based on the target distance, current time, and / or equipment door status includes:

[0024] In response to a target distance warning command, the wind turbine is controlled to operate within a set speed range; the target distance warning command is generated when the distance between the target object and the equipment is detected to be within the set range; and / or

[0025] In response to a rest mode command, the wind turbine is controlled to operate within a set speed range; the rest mode command is generated upon detecting that the current time is within a set rest period; and / or

[0026] In response to an equipment door opening command, the fan unit is controlled to operate within the set speed range; the equipment door opening command is generated when the freezer door and / or refrigerator door is detected to be open.

[0027] Optionally, the fan unit includes a condenser fan, a refrigeration fan, a chiller fan, and a variable temperature fan. Controlling the fan unit to operate within a set speed range includes:

[0028] The rotational speeds of the condenser fan, the refrigeration fan, the cold storage fan, and the variable temperature fan are controlled to be less than the corresponding set rotational speed thresholds.

[0029] Optionally, controlling the compressor operation based on the current time includes:

[0030] In response to a rest mode command, the compressor speed is adjusted from the non-rest mode speed to the rest mode speed.

[0031] Optionally, before determining the operating control mode of the device based on the device's configuration information, the method further includes:

[0032] Obtain the real-time ambient temperature;

[0033] Based on the real-time ambient temperature being greater than a set temperature threshold, the fan unit is controlled to operate within the set speed range.

[0034] According to a second aspect of the embodiments of this application, a device operation control system is provided, the system comprising:

[0035] The mode determination module is used to determine the operating control mode of the device based on the device's configuration information.

[0036] The parameter determination module is used to obtain the control parameters corresponding to the operation control mode;

[0037] The control module is used to control the operation of the fan unit and / or compressor of the equipment according to the control parameters.

[0038] According to a third aspect of the present application, an electronic device is provided, comprising: a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein the processor executes the computer program to implement the method described in the first aspect above.

[0039] According to a fourth aspect of the embodiments of this application, a computer-readable storage medium is provided having computer-readable instructions stored thereon, the computer-readable instructions being executable by a processor to implement the method described in the first aspect above.

[0040] In summary, the embodiments of this application provide a device operation control method, system, device, and storage medium. By determining the operation control mode of the device based on the device's configuration information, obtaining control parameters corresponding to the operation control mode, and controlling the operation of the fan unit and / or compressor of the device according to the control parameters, no additional cost is required. By determining the corresponding control factors based on the device configuration information and thereby controlling the operation of the fan unit and compressor in the device, noise is effectively reduced. Attached Figure Description

[0041] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.

[0042] The structures, proportions, sizes, etc. illustrated in this specification are only for the purpose of assisting those skilled in the art in understanding and reading the content disclosed herein, and are not intended to limit the conditions under which the present invention can be implemented. Therefore, they have no substantial technical significance. Any modifications to the structure, changes in the proportions, or adjustments to the size, without affecting the effects and objectives that the present invention can produce, should still fall within the scope of the technical content disclosed in the present invention.

[0043] Figure 1 This is a schematic flowchart of a device operation control method provided in an embodiment of this application;

[0044] Figure 2 This is a schematic diagram of the device operation process provided in the embodiments of this application;

[0045] Figure 3 A block diagram of the equipment operation control system provided in the embodiments of this application;

[0046] Figure 4 This illustration shows a structural schematic diagram of an electronic device provided in an embodiment of this application;

[0047] Figure 5 A schematic diagram of a computer-readable storage medium provided in an embodiment of this application is shown.

[0048] The realization of the objective, functional features and advantages of the present invention will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation

[0049] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present invention.

[0050] It should be noted that all directional indications (such as up, down, left, right, front, back, etc.) in the embodiments of the present invention are only used to explain the relative positional relationship and movement of each component in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indication will also change accordingly.

[0051] Furthermore, in this invention, descriptions involving "first," "second," etc., are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one of that feature. In the description of this invention, "a plurality of" means at least two, such as two, three, etc., unless otherwise explicitly specified.

[0052] In this invention, unless otherwise explicitly specified and limited, the terms "connection," "fixed," etc., should be interpreted broadly. For example, "fixed" can mean a fixed connection, a detachable connection, or an integral part; it can mean a mechanical connection or an electrical connection; it can mean a direct connection or an indirect connection through an intermediate medium; it can mean the internal communication of two components or the interaction between two components, unless otherwise explicitly limited. Those skilled in the art can understand the specific meaning of the above terms in this invention according to the specific circumstances.

[0053] Furthermore, the technical solutions of the various embodiments of the present invention can be combined with each other, but only if they are feasible for those skilled in the art. If the combination of technical solutions is contradictory or cannot be implemented, it should be considered that such combination of technical solutions does not exist and is not within the scope of protection claimed by the present invention.

[0054] Figure 1 This application illustrates a device operation control method according to an embodiment of the present application, the method comprising:

[0055] Step 101: Determine the operating control mode of the device based on the device's configuration information;

[0056] Step 102: Obtain the control parameters corresponding to the operation control mode;

[0057] Step 103: Control the operation of the fan unit and / or compressor of the equipment according to the control parameters.

[0058] In one possible implementation, before determining the operating control mode of the device based on the device configuration information in step 101, the method further includes:

[0059] The system acquires the real-time ambient temperature; and controls the fan unit to operate within the set speed range based on the ambient temperature being greater than a set temperature threshold.

[0060] In one possible implementation, the operation control mode includes no communication mode, no ranging mode, no communication ranging mode, and ranging mode with communication.

[0061] In one possible implementation, the operation control mode is determined to be the no-communication mode based on the presence of only ranging module information; the operation control mode is determined to be the no-ranging mode based on the presence of only communication module information; the operation control mode is determined to be the ranging mode with communication based on the presence of both ranging module information and communication module information; and the operation control mode is determined to be the no-communication ranging mode based on the absence of both ranging module information and communication module information.

[0062] In one possible implementation, the operation control mode is determined to be a no-communication mode, which is determined when the device's configuration information only contains ranging module information;

[0063] In step 103, controlling the operation of the fan unit and / or compressor of the equipment according to the control parameters includes:

[0064] The operation of the wind turbine unit is controlled based on the target distance and / or the status of the equipment door.

[0065] In one possible implementation, the operating control mode is a distance-free mode; the distance-free mode is determined when the device's configuration information only contains communication module information.

[0066] In step 103, controlling the operation of the fan unit and / or compressor of the equipment according to the control parameters includes:

[0067] The operation of the fan unit is controlled based on the current time and / or the device door status, and the operation of the compressor is controlled based on the current time.

[0068] In one possible implementation, the operating control mode is a no-range mode; the no-communication range mode is determined when the device's configuration information does not contain range module information and communication module information.

[0069] In step 103, controlling the operation of the fan unit and / or compressor of the equipment according to the control parameters includes:

[0070] The operation of the wind turbine unit is controlled based on the status of the equipment door.

[0071] In one possible implementation, the operation control mode is a communication ranging mode; the communication ranging mode is determined when the device's configuration information contains ranging module information and communication module information.

[0072] In step 103, controlling the operation of the fan unit and / or compressor of the equipment according to the control parameters includes:

[0073] The operation of the fan unit is controlled based on the target distance, current time, and / or equipment door status, and the operation of the compressor is controlled based on the current time.

[0074] In one possible implementation, controlling the operation of the wind turbine unit based on the target distance, current time, and / or equipment door status includes:

[0075] In response to a target distance warning command, the fan unit is controlled to operate within a set speed range; the target distance warning command is generated when the distance between the target object and the equipment is detected to be within the set range; and / or in response to a rest mode command, the fan unit is controlled to operate within the set speed range; the rest mode command is generated when the current time is detected to be within a set rest time; and / or in response to an equipment door opening command, the fan unit is controlled to operate within the set speed range; the equipment door opening command is generated when the freezer door and / or refrigerator door is detected to be open.

[0076] In one possible implementation, the fan unit includes a condenser fan, a refrigeration fan, a refrigerator fan, and a variable-temperature fan; controlling the fan unit to operate within a set speed range includes controlling the speeds of the condenser fan, the refrigeration fan, the refrigerator fan, and the variable-temperature fan to be less than the set speed threshold corresponding to each fan.

[0077] In one possible implementation, controlling the compressor operation based on the current time includes: in response to a rest mode command, controlling the compressor to adjust its speed from the non-rest mode to the rest mode speed.

[0078] The above method can be applied to the operation control of refrigerator equipment. The refrigerator operation control method provided in the embodiments of this application will be described in detail below.

[0079] Phase 1: Determine the refrigerator's operating control mode based on its configuration information. The operating control mode includes no communication mode, no ranging mode, no communication ranging mode, and communication ranging mode. The configuration information may include communication module information and / or ranging module information. The communication module may be a Wi-Fi module, and the ranging module may be a radar module.

[0080] Determine if the target refrigerator has a ranging module or a communication module; if it does not have a communication module, it cannot enter the rest mode based on time; if it does not have a ranging module, it cannot sense the distance between the target object and the refrigerator, and can only control the rotation speed by opening and closing the refrigerator door and whether it is in rest mode.

[0081] Second stage: Obtain the control parameters corresponding to the operation control mode.

[0082] If the operation control mode is a no-communication mode, the control parameters are the target distance and / or the refrigerator door status. If the operation control mode is a no-range measurement mode, the control parameters are the current time and / or the refrigerator door status. If the operation control mode is a no-communication range measurement mode, the control parameter is the refrigerator door status. If the operation control mode is a range measurement mode with communication, the control parameters are the target distance, the current time, and / or the refrigerator door status.

[0083] The third stage: Control the operation of the refrigerator's fan unit and / or compressor according to the control parameters.

[0084] During the control process, the real-time ambient temperature is acquired; if the real-time ambient temperature is greater than the set temperature threshold, the fan unit is controlled to operate within the set speed range.

[0085] The operation control mode is non-communication mode, and the fan unit is controlled based on user distance and / or refrigerator door status.

[0086] The operating control mode is a distance-free mode, which controls the operation of the fan unit based on the current time and / or the refrigerator door status, and controls the operation of the compressor based on the current time.

[0087] The operation control mode is a non-communication ranging mode, and the fan unit is controlled based on the refrigerator door status.

[0088] The operation control mode is a communication ranging mode, which controls the operation of the fan unit based on the user distance, the current time and / or the refrigerator door status, and controls the operation of the compressor based on the current time.

[0089] In one possible implementation, the operation of the fan unit is controlled based on user distance, current time, and / or refrigerator door status, specifically including:

[0090] In response to a distance warning command, the rotation speeds of the condenser fan, the freezer fan, the refrigerator fan, and the variable temperature fan are controlled to be lower than the corresponding set rotation speed thresholds; the distance warning command is generated when the user is detected to be within a set range around the refrigerator.

[0091] In response to the rest mode command, the rotation speeds of the condenser fan, the refrigeration fan, the refrigerator fan, and the variable temperature fan are controlled to be less than the set rotation speed thresholds corresponding to the respective fans; the rest mode command is generated when the current time is detected to be within the set rest time.

[0092] In response to a refrigerator door opening command, the rotational speeds of the condenser fan, the freezer fan, the refrigerator fan, and the variable-temperature fan are controlled to be lower than the corresponding set speed thresholds. The refrigerator door opening command is generated when the freezer door and / or the refrigerator door is detected to be open.

[0093] In one possible implementation, controlling the compressor operation based on the current time includes:

[0094] In response to a rest mode command, the compressor speed is adjusted from the non-rest mode speed to the rest mode speed. In other words, the compressor control is only affected by the rest mode.

[0095] Figure 2 A schematic diagram of a refrigerator control process provided in an embodiment of this application is shown, including the following steps:

[0096] Step 1: Obtain the real-time ambient temperature T1.

[0097] Step 2: Determine whether the real-time ambient temperature T1 is greater than the set ambient temperature threshold, which can be 27℃; if it is greater than the set ambient temperature threshold, proceed to step 3; if it is less than or equal to the set ambient temperature threshold, control the fan unit to operate within the set speed range, which is less than 800 rpm.

[0098] Step 3-1: In response to the target distance warning command, indicating that the user's distance from the refrigerator is less than the set distance, which can be 1m; then control the fan unit to run within the set speed range until the distance is >1m, after which the program proceeds according to the original program.

[0099] Step 3-2: In response to the rest mode command, indicating that the current time is within the set rest time, control the fan unit to run within the set speed range until the rest time ends; and control the compressor to adjust its speed from the non-rest mode to the rest mode speed.

[0100] Step 3-3: In response to the refrigerator door opening command, indicating that the freezer door and / or refrigerator door are open, control the fan unit to operate within the set speed range.

[0101] Controlling the fan unit to operate within a set speed range includes: controlling the speeds of the condenser fan, the refrigeration fan, the refrigerator fan, and the variable-temperature fan to be lower than the corresponding set speed thresholds for each fan. To reduce noise, the fan unit, including the condenser fan, the refrigeration fan, the refrigerator fan, and the variable-temperature fan, operates at speeds less than 800 rpm.

[0102] The triggering conditions for the instructions in the above embodiments can be summarized as follows:

[0103] Target distance warning command trigger condition: If the user distance is detected to be less than 1m, the wind turbine speed will be less than 800rpm until the distance is greater than 1m.

[0104] Rest mode command trigger conditions: If the current time is rest time, the fan unit speed is <800rpm, and the compressor speed is adjusted from the speed in non-rest mode to the speed in rest mode.

[0105] Refrigerator door opening command trigger conditions: If the freezer / refrigerator door is detected to be open, the fan unit speed will be <800rpm, and will continue for >5s after the door is closed, with the speed following the original program.

[0106] In summary, this application provides a refrigerator operation control method. The method determines the refrigerator's operation control mode based on the refrigerator's configuration information; obtains control parameters corresponding to the operation control mode; and controls the refrigerator's fan unit and / or compressor operation according to the control parameters without increasing costs. It also determines corresponding control factors based on the refrigerator's configuration information and uses these factors to control the operation of the fan unit and compressor in the refrigerator, effectively reducing noise.

[0107] Based on the same technical concept, embodiments of this application also provide a device operation control system, such as... Figure 3 As shown, the system includes:

[0108] The mode determination module 301 is used to determine the operating control mode of the device based on the device's configuration information.

[0109] The parameter determination module 302 is used to obtain control parameters corresponding to the operation control mode;

[0110] The control module 303 is used to control the operation of the fan unit and / or compressor of the equipment according to the control parameters.

[0111] This application also provides an electronic device corresponding to the method provided in the foregoing embodiments. Please refer to... Figure 4 The diagram illustrates an electronic device provided by some embodiments of this application. The electronic device 20 may include: a processor 200, a memory 201, a bus 202, and a communication interface 203, wherein the processor 200, the communication interface 203, and the memory 201 are connected via the bus 202; the memory 201 stores a computer program that can run on the processor 200, and when the processor 200 runs the computer program, it executes the method provided by any of the foregoing embodiments of this application.

[0112] The memory 201 may include high-speed random access memory (RAM) or non-volatile memory, such as at least one disk storage device. Communication between this system network element and at least one other network element is achieved through at least one physical port 203 (which can be wired or wireless), such as the Internet, wide area network, local area network, or metropolitan area network.

[0113] Bus 202 can be an ISA bus, PCI bus, or EISA bus, etc. The bus can be divided into an address bus, a data bus, a control bus, etc. The memory 201 is used to store programs. After receiving an execution instruction, the processor 200 executes the program. The method disclosed in any of the foregoing embodiments of this application can be applied to the processor 200, or implemented by the processor 200.

[0114] The processor 200 may be an integrated circuit chip with signal processing capabilities. In implementation, each step of the above method can be completed by the integrated logic circuitry in the hardware of the processor 200 or by instructions in software form. The processor 200 may be a general-purpose processor, including a central processing unit (CPU), a network processor (NP), etc.; it may also be a digital signal processor (DSP), an application-specific integrated circuit (ASIC), an off-the-shelf programmable gate array (FPGA), or other programmable logic devices, discrete gate or transistor logic devices, or discrete hardware components. It can implement or execute the methods, steps, and logic block diagrams disclosed in the embodiments of this application. The general-purpose processor may be a microprocessor or any conventional processor. The steps of the methods disclosed in the embodiments of this application can be directly embodied in the execution of a hardware decoding processor, or executed by a combination of hardware and software modules in the decoding processor. The software modules may reside in random access memory, flash memory, read-only memory, programmable read-only memory, electrically erasable programmable memory, registers, or other mature storage media in the art. The storage medium is located in memory 201. The processor 200 reads the information in memory 201 and, in conjunction with its hardware, completes the steps of the above method.

[0115] The electronic devices and methods provided in the embodiments of this application are based on the same inventive concept and have the same beneficial effects as the methods they employ, operate, or implement.

[0116] This application also provides a computer-readable storage medium corresponding to the method provided in the foregoing embodiments. Please refer to... Figure 5 The computer-readable storage medium shown is an optical disc 30, on which a computer program (i.e., a program product) is stored, which, when run by a processor, executes the methods provided in any of the foregoing embodiments.

[0117] It should be noted that examples of the computer-readable storage medium may also 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 optical and magnetic storage media, which will not be elaborated here.

[0118] The computer-readable storage medium provided in the above embodiments of this application and the method provided in the embodiments of this application are based on the same inventive concept and have the same beneficial effects as the methods adopted, run or implemented by the applications stored therein.

[0119] It should be noted that:

[0120] The algorithms and displays provided herein are not inherently related to any particular computer, virtual device, or other equipment. Various general-purpose devices can also be used in conjunction with the teachings herein. The required structure for constructing such devices is apparent from the above description. Furthermore, this application is not directed to any particular programming language. It should be understood that the content of this application described herein can be implemented using various programming languages, and the above description of specific languages ​​is for the purpose of disclosing the best mode of implementation of this application.

[0121] Numerous specific details are set forth in the specification provided herein. However, it will be understood that embodiments of this application may be practiced without these specific details. In some instances, well-known methods, structures, and techniques have not been shown in detail so as not to obscure the understanding of this specification.

[0122] Similarly, it should be understood that, in order to simplify this application and aid in understanding one or more of the various inventive aspects, in the above description of exemplary embodiments of this application, various features of this application are sometimes grouped together into a single embodiment, figure, or description thereof. However, this method of disclosure should not be construed as reflecting an intention that the claimed application requires more features than are expressly recited in each claim. Rather, as reflected in the following claims, inventive aspects lie in fewer than all features of a single foregoing disclosed embodiment. Therefore, the claims following the detailed description are hereby expressly incorporated into that detailed description, wherein each claim itself is a separate embodiment of this application.

[0123] Those skilled in the art will understand that modules in the device of the embodiments can be adaptively changed and placed in one or more devices different from that embodiment. Modules, units, or components in the embodiments can be combined into a single module, unit, or component, and further, they can be divided into multiple sub-modules, sub-units, or sub-components. Except where at least some of such features and / or processes or units are mutually exclusive, any combination can be used to combine all features disclosed in this specification (including the accompanying claims, abstract, and drawings) and all processes or units of any method or device so disclosed. Unless expressly stated otherwise, each feature disclosed in this specification (including the accompanying claims, abstract, and drawings) may be replaced by an alternative feature that serves the same, equivalent, or similar purpose.

[0124] Furthermore, those skilled in the art will understand that although some embodiments described herein include certain features but not others included in other embodiments, combinations of features from different embodiments are intended to be within the scope of this application and form different embodiments. For example, in the following claims, any of the claimed embodiments can be used in any combination.

[0125] The various component embodiments of this application can be implemented in hardware, or as software modules running on one or more processors, or a combination thereof. Those skilled in the art will understand that microprocessors or digital signal processors (DSPs) can be used in practice to implement some or all of the functions of some or all of the components in the virtual machine creation apparatus according to embodiments of this application. This application can also be implemented as a device or apparatus program (e.g., a computer program and computer program product) for performing part or all of the methods described herein. Such an implementation of this application can be stored on a computer-readable medium, or can be in the form of one or more signals. Such signals can be downloaded from an Internet website, provided on a carrier signal, or provided in any other form.

[0126] It should be noted that the above embodiments are illustrative of this application and not restrictive, and that those skilled in the art can devise alternative embodiments without departing from the scope of the appended claims. In the claims, any reference signs placed between parentheses should not be construed as limiting the claims. The word "comprising" does not exclude the presence of elements or steps not listed in the claims. The word "a" or "an" preceding an element does not exclude the presence of a plurality of such elements. This application can be implemented by means of hardware comprising several different elements and by means of a suitably programmed computer. In the unit claims enumerating several means, several of these means may be embodied by the same item of hardware. The use of the words first, second, and third, etc., does not indicate any order. These words can be interpreted as names.

[0127] The above description is merely a preferred embodiment of this application, but the scope of protection of this application is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in this application should be included within the scope of protection of this application. Therefore, the scope of protection of this application should be determined by the scope of the claims.

[0128] The above description is only a preferred embodiment of the present invention and does not limit the patent scope of the present invention. All equivalent structural transformations made under the concept of the present invention using the contents of the present invention specification and drawings, or direct / indirect applications in other related technical fields, are included within the patent protection scope of the present invention.

Claims

1. A method for controlling equipment operation, characterized in that, The method includes: The operating control mode of the device is determined based on the device's configuration information; Obtain the control parameters corresponding to the operation control mode; The fan unit and / or compressor of the equipment are controlled to operate according to the control parameters.

2. The method as described in claim 1, characterized in that, The operation control modes include no communication mode, no ranging mode, no communication ranging mode, and ranging mode with communication.

3. The method as described in claim 2, characterized in that, The operation control mode is a no-communication mode, which is determined when the device's configuration information only contains ranging module information; The step of controlling the operation of the fan unit of the equipment according to the control parameters includes: The operation of the wind turbine unit is controlled based on whether the user is within a preset distance range and / or the status of the equipment door.

4. The method as described in claim 2, characterized in that, The operating control mode is a distance-free mode; the distance-free mode is determined when the device's configuration information only contains communication module information. The step of controlling the operation of the fan unit and / or compressor of the equipment according to the control parameters includes: The operation of the fan unit is controlled based on the current time and / or the device door status, and the operation of the compressor is controlled based on the current time.

5. The method as described in claim 2, characterized in that, The operating control mode is a no-communication ranging mode; the no-communication ranging mode is determined when the device's configuration information does not contain ranging module information and communication module information. The step of controlling the operation of the fan unit of the equipment according to the control parameters includes: The operation of the wind turbine unit is controlled based on the status of the equipment door.

6. The method as described in claim 2, characterized in that, The operating control mode is a communication ranging mode; the communication ranging mode is determined when the device's configuration information contains ranging module information and communication module information. The step of controlling the operation of the fan unit and / or compressor of the equipment according to the control parameters includes: The operation of the fan unit is controlled based on whether the user is within a preset distance range, the current time, and / or the status of the equipment door, and the operation of the compressor is controlled based on the current time.

7. The method as described in claim 6, characterized in that, The method of controlling the operation of the wind turbine unit based on whether the user is within a preset distance range, the current time, and / or the status of the equipment door includes: In response to a target distance warning command, the wind turbine is controlled to operate within a set speed range; the target distance warning command is generated when the distance between the user and the equipment is detected to be within the set range; and / or In response to a rest mode command, the wind turbine is controlled to operate within a set speed range; the rest mode command is generated upon detecting that the current time is within a set rest period; and / or In response to an equipment door opening command, the fan unit is controlled to operate within the set speed range; the equipment door opening command is generated when the freezer door and / or refrigerator door is detected to be open.

8. The method as described in claim 7, characterized in that, The fan unit includes a condenser fan, a refrigeration fan, a chiller fan, and a variable temperature fan. Controlling the fan unit to operate within a set speed range includes: The rotational speeds of the condenser fan, the refrigeration fan, the cold storage fan, and the variable temperature fan are controlled to be less than the corresponding set rotational speed thresholds.

9. The method as described in claim 6, characterized in that, The method of controlling compressor operation based on the current time includes: In response to a rest mode command, the compressor speed is adjusted from the non-rest mode speed to the rest mode speed.

10. The method as described in claim 1, characterized in that, Before determining the operating control mode of the device based on the device's configuration information, the method further includes: Obtain the real-time ambient temperature; Based on the real-time ambient temperature being greater than a set temperature threshold, the fan unit is controlled to operate within the set speed range.

11. A device operation control system, characterized in that, The system includes: The mode determination module is used to determine the operating control mode of the device based on the device's configuration information. The parameter determination module is used to obtain the control parameters corresponding to the operation control mode; The control module is used to control the operation of the fan unit and / or the compressor of the equipment according to the control parameters.

12. An electronic device, comprising: A memory, a processor, and a computer program stored in the memory and executable on the processor, characterized in that, when the processor runs the computer program, it performs an action to implement the method as claimed in any one of claims 1-10.

13. A computer-readable storage medium, characterized in that, It stores computer-readable instructions that can be executed by a processor to implement the method as described in any one of claims 1-10.