Refrigerator, commodity inspection control method and device thereof and storage medium
By obtaining the number of commercial inspections after powering on the refrigerator and controlling the operation of the refrigerator in different commercial inspection modes, the problem of overflow risk during commercial inspection is solved, the detection of bad refrigerators and the safety of the use side is achieved, and the efficiency of commercial inspection is improved.
Patent Information
- Application Number
- CN202510525533.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-24
- Publication Date
- 2025-07-04
AI Technical Summary
In the prior art, it is impossible to determine whether there is water in the ice-making mechanism during commercial inspection, resulting in a risk of overflow during commercial inspection, and it is difficult to detect a defective refrigerator with an ice-making mechanism on the production side.
By obtaining the power-on signal and the number of commodity inspections of the refrigerator, the refrigerator is controlled to operate in different preset commodity inspection modes. The ice-making mechanism performs ice-making operations in the first preset mode, and does not perform ice-making operations in the second preset mode, ensuring that the poor refrigerator is detected on the production side and avoiding the risk of overflow on the use side.
It realizes the detection of poor refrigerators with ice making mechanisms on the production side, and at the same time avoids the risk of overflow during commodity inspection on the use side, which improves commodity inspection efficiency and reduces the operational complexity of the inspectors.
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Figure CN120252287A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of refrigeration equipment, and particularly to a refrigerator, its commodity inspection control method, device, and storage medium. Background Art
[0002] Refrigerators need to undergo commodity inspection during factory testing. When a refrigerator with an ice-making mechanism undergoes commodity inspection, the ice-making operation will be executed. When the ice-making mechanism executes the ice-making operation, after each ice turning, the water inlet pump is first rotated forward to suck water from the water outlet box; then the water inlet pump is rotated backward to drain the water in the water pipe. However, in the prior art, when the refrigerator enters user-side use, every time the refrigerator is powered on, a commodity inspection will be performed; but during the commodity inspection, it is impossible to determine whether there is water in the ice box. Therefore, when the water injection action is performed during the commodity inspection, there is a risk that the water in the ice box will overflow. Therefore, how to detect defective refrigerators with ice-making mechanisms on the production side and avoid the risk of water overflow during commodity inspection of the ice-making mechanism on the user side is a technical problem that needs to be solved in this field. Summary of the Invention
[0003] This application provides a refrigerator, its commodity inspection control method, device, and storage medium, aiming to solve the technical problem of how to detect defective refrigerators with ice-making mechanisms on the production side and avoid the risk of water overflow during commodity inspection of the ice-making mechanism on the user side in the prior art.
[0004] In a first aspect, this application proposes a commodity inspection control method for a refrigerator, where the refrigerator includes an ice-making mechanism, including:
[0005] Obtain the power-on signal of the refrigerator;
[0006] Obtain the number of times of commodity inspection of the refrigerator;
[0007] If the number of times of commodity inspection is 0, then control the refrigerator to operate according to a first preset commodity inspection mode; in the first preset commodity inspection mode, the ice-making mechanism operates according to a first preset operation mode to execute the ice-making operation;
[0008] If not, then control the refrigerator to operate according to a second preset commodity inspection mode; in the second preset commodity inspection mode, the ice-making mechanism operates according to a second preset operation mode and does not execute the ice-making operation.
[0009] Optionally, after the step of if the number of times of commodity inspection is 0, then control the refrigerator to operate according to a first preset commodity inspection mode, the commodity inspection control method includes: memorize that the number of times of commodity inspection is 1.
[0010] Optionally, the commodity inspection control method further includes:
[0011] Obtain the forced instruction for commodity inspection;
[0012] Based on the forced instruction, the inspection times are restored to 0.
[0013] Optionally, after obtaining the power-on signal of the refrigerator, the inspection control method further includes:
[0014] Obtaining the power-on times of the refrigerator;
[0015] Determining whether the power-on times are 1;
[0016] If so, obtaining the inspection times of the refrigerator includes:
[0017] Setting the inspection times of the refrigerator to 0;
[0018] If not, obtaining the inspection times of the refrigerator includes:
[0019] Obtaining the inspection times of the refrigerator after memorization.
[0020] Optionally, if the inspection times are 0, controlling the refrigerator to operate according to the first preset inspection mode includes:
[0021] Obtaining the working state of the sensors and the door state of the refrigerator;
[0022] If the working state of the sensors is normal and the door state is closed, and the inspection times are 0, controlling the refrigerator to operate according to the first preset inspection mode.
[0023] Optionally, obtaining the inspection times of the refrigerator includes:
[0024] Obtaining the inspection times of the refrigerator within a preset time period;
[0025] The inspection control method further includes:
[0026] If the inspection times of the refrigerator are not obtained within the preset time period, controlling the refrigerator to skip the first preset inspection mode or the second preset inspection mode and enter the preset detection mode for operation.
[0027] Optionally, when controlling the refrigerator to operate according to the first preset inspection mode or controlling the refrigerator to operate according to the second preset inspection mode, the inspection control method further includes:
[0028] Obtaining the working state of the sensors and the door state;
[0029] If the working state is abnormal or the door state is open, controlling the refrigerator to stop the first preset inspection mode or the second preset inspection mode;
[0030] If the working state is the normal state and the door state is the closed state, control the refrigerator to operate according to the first preset commodity inspection mode or control the refrigerator to continue to operate according to the second preset commodity inspection mode.
[0031] In a second aspect, an embodiment of the present application further provides a refrigerator, including a controller, and the controller is configured to execute the steps to implement the commodity inspection control method described above.
[0032] In a third aspect, an embodiment of the present application further provides a commodity inspection control device for a refrigerator. The refrigerator includes an ice making mechanism, and includes:
[0033] An acquisition module, which acquires the power-on signal of the refrigerator;
[0034] The acquisition module acquires the number of times of commodity inspection of the refrigerator;
[0035] A control module, configured to control the refrigerator to operate according to the first preset commodity inspection mode if the number of times of commodity inspection is 0; in the first preset commodity inspection mode, the ice making mechanism operates according to the first preset operation mode to perform an ice making operation;
[0036] The control module is configured to, if not, control the refrigerator to operate according to the second preset commodity inspection mode; in the second preset commodity inspection mode, the ice making mechanism operates according to the second preset operation mode and does not perform an ice making operation.
[0037] In a fourth aspect, the present application further provides a computer-readable storage medium, on which a computer program is stored, and the computer program is loaded by a processor to execute the steps of the commodity inspection control method described above.
[0038] In the technical solution of the embodiment of the present application, after the refrigerator is powered on, a power-on signal of the refrigerator is obtained, and then the number of commodity inspections is obtained; if the number of commodity inspections is 0, the refrigerator is controlled to perform commodity inspection in the first preset commodity inspection mode; when the number of commodity inspections is not 0, the refrigerator performs commodity inspection according to the second preset commodity inspection mode. If the number of commodity inspections is 0, it means that the refrigerator has not been inspected; on the production side, all refrigerators need to be inspected; therefore, after the refrigerator is powered on and the number of commodity inspections is 0, it means that the refrigerator needs to be inspected on the production side, so it operates according to the first preset commodity inspection mode. In the first preset commodity inspection mode, the ice-making mechanism operates according to the first preset operation mode to perform ice-making operations, and does not need to consider the risk of water overflow on the user side, so it can detect refrigerators with defective ice-making mechanisms. If the number of commodity inspections is not 0, it means that the refrigerator has been inspected. Therefore, when used on the customer side, after the refrigerator is powered on and the number of commodity inspections is not 0, the refrigerator performs commodity inspection according to the second preset commodity inspection mode. In the second preset commodity inspection mode, the ice-making mechanism operates according to the second preset operation mode and does not perform ice-making operations, so there will be no risk of water overflow in the ice-making mechanism. Therefore, the technical solution of the embodiment of the present application can not only detect refrigerators with defective ice-making mechanisms on the production side, but also avoid the risk of water overflow in the ice-making mechanism during inspection on the user side. BRIEF DESCRIPTION OF THE DRAWINGS
[0039] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the drawings in the following description are only some embodiments of the present invention. For those skilled in the art, without creative efforts, other drawings can be obtained based on these drawings.
[0040] Figure 1 is the first flow chart of the commodity inspection control method of the refrigerator provided in the embodiment of the present application;
[0041] Figure 2 is the second flow chart of the commodity inspection control method of the refrigerator provided in the embodiment of the present application;
[0042] Figure 3 is the third flow chart of the commodity inspection control method of the refrigerator provided in the embodiment of the present application;
[0043] Figure 4 is the fourth flow chart of the commodity inspection control method of the refrigerator provided in the embodiment of the present application;
[0044] Figure 5 is the structural diagram of the commodity inspection control device of the refrigerator provided in the embodiment of the present application. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0045] Next, the technical solutions in the embodiments of the present application will be described compulsorily and completely in combination with the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative efforts shall fall within the protection scope of the present invention.
[0046] In the description of the present invention, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it cannot be understood as a limitation to the present invention. In addition, the terms "first" and "second" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include one or more of the described features. In the description of the present invention, "a plurality" means two or more, unless otherwise specifically defined.
[0047] In the present application, the term "exemplary" is used to mean "serving as an example, illustration, or explanation". Any embodiment described as "exemplary" in the present application is not necessarily to be construed as more preferred or more advantageous than other embodiments. The following description is provided to enable any person skilled in the art to make and use the present invention. In the following description, details are set forth for the purpose of explanation. It should be understood that those of ordinary skill in the art can recognize that the present invention can be practiced without these specific details. In other instances, well-known structures and processes are not described in detail to avoid unnecessary details from obscuring the description of the present invention. Therefore, the present invention is not intended to be limited to the embodiments shown, but is to be accorded the widest scope consistent with the principles and features disclosed in the present application.
[0048] An embodiment of the present application provides a refrigerator and its commodity inspection control method, device, and storage medium, which will be described in detail below. In the embodiment, the refrigerator includes a controller, and the controller is configured to execute the steps of the commodity inspection control method in the embodiment of the present application. The refrigerator further includes an ice maker. The ice maker mainly includes a control box, an ice probe, a temperature sensor, an ice-making container, and a water pump. When discharging ice, the motor in the control box drives the ice-making container to rotate. After rotating to a certain position, the ice-making container is distorted and deformed to discharge the ice cubes. After each ice turning, the ice-making mechanism first rotates the water inlet pump forward to suck water from the water outlet box; then rotates the water inlet pump in reverse to empty the water in the water pipe.
[0049] In the prior art, during normal ice-making operation, the normal ice-making mechanism first executes the ice-turning process. After ensuring that there is no water in the ice box, it injects water for n0 seconds and then rotates in reverse for n1 seconds. However, in the commodity inspection process, it is impossible to determine whether there is water in the ice box. Therefore, performing the water injection operation during commodity inspection has a high risk of causing the water in the ice box to overflow in the user's home. For this reason, the embodiment of the present application proposes a commodity inspection control method for the refrigerator, which can not only meet the factory commodity inspection of the refrigerator but also avoid the risk of water overflow during commodity inspection of the ice-making mechanism on the user side.
[0050] Refer to Figure 1 As shown, the embodiment of the present application proposes a commodity inspection control method for a refrigerator. The refrigerator includes an ice-making mechanism, including:
[0051] S100, obtaining the power-on signal of the refrigerator;
[0052] S300, obtaining the number of commodity inspections of the refrigerator;
[0053] S410, if the number of commodity inspections is 0, controlling the refrigerator to operate according to a first preset commodity inspection mode; in the first preset commodity inspection mode, the ice-making mechanism operates according to a first preset operation mode to perform the ice-making operation;
[0054] S420, if not, controlling the refrigerator to operate according to a second preset commodity inspection mode; in the second preset commodity inspection mode, the ice-making mechanism operates according to a second preset operation mode and does not perform the ice-making operation.
[0055] In the technical solution of the embodiment of the present application, after the refrigerator is powered on, a power-on signal of the refrigerator is obtained, and then the number of commodity inspections is obtained. If the number of commodity inspections is 0, the refrigerator is controlled to perform commodity inspection in the first preset commodity inspection mode. When the number of commodity inspections is not 0, the refrigerator performs commodity inspection according to the second preset commodity inspection mode. If the number of commodity inspections is 0, it means that the refrigerator has not been inspected. On the production side, all refrigerators need to be inspected. Therefore, after the refrigerator is powered on and the number of commodity inspections is 0, it means that the refrigerator needs to be inspected on the production side, so it operates according to the first preset commodity inspection mode. In the first preset commodity inspection mode, the ice-making mechanism operates according to the first preset operation mode to perform ice-making operations, without considering the risk of water overflow on the user side. If the number of commodity inspections is not 0, it means that the refrigerator has been inspected. Therefore, when the refrigerator is used on the customer side and the number of commodity inspections is not 0 after the refrigerator is powered on, the refrigerator performs commodity inspection according to the second preset commodity inspection mode. In the second preset commodity inspection mode, the ice-making mechanism operates according to the second preset operation mode and does not perform ice-making operations, so there will be no risk of water overflow in the ice-making mechanism. Therefore, the technical solution of the embodiment of the present application can not only detect defective refrigerators with an ice-making mechanism on the production side, but also avoid the risk of water overflow in the ice-making mechanism during detection on the user side.
[0056] In addition, in the technical solution of the embodiment of the present application, when the refrigerator undergoes factory commodity inspection, by obtaining the power-on signal and the number of commodity inspections and controlling the refrigerator to perform commodity inspection, it helps to improve the efficiency of commodity inspection and reduce the complexity of the operations of the inspectors. And when the refrigerator is used on the customer side, since there is no need to perform ice-making operations, it is conducive to efficient detection after power-on, enabling the refrigerator to quickly enter the normal refrigeration mode operation and facilitating the preservation of food ingredients.
[0057] As an alternative implementation of the above embodiment, as Figure 2 shown, after controlling the refrigerator to operate in the first preset commodity inspection mode when the number of commodity inspections is 0, the commodity inspection control method includes:
[0058] S500, remember that the number of commodity inspections is 1.
[0059] In the embodiment, when the refrigerator operates in the first preset commodity inspection mode, it means that the refrigerator has been inspected on the production side. At this time, the number of commodity inspections is remembered as 1. When the refrigerator is used on the user side and the number of commodity inspections obtained after the refrigerator is powered on is 1, the power-on detection of the refrigerator is the detection of the second preset commodity inspection mode, and there will be no risk of water overflow in the ice-making mechanism.
[0060] As Figure 3 shown, as an alternative implementation of the above embodiment, the commodity inspection control method further includes:
[0061] S600, obtain a forced instruction for commodity inspection;
[0062] S700, based on the forced instruction, restore the commodity inspection times to 0.
[0063] In this embodiment, during the production-side commodity inspection, when a refrigerator that needs to be repaired and reworked is detected, the commodity inspection times is 1; therefore, the technical personnel on the production side send a forced instruction to the refrigerator through a dedicated device. After obtaining the forced instruction for commodity inspection, the commodity inspection times is restored to 0, and then the repaired refrigerator is inspected after being powered on.
[0064] For another example, in some cases, when it is necessary to detect the ice-making mechanism during the customer-side maintenance, first drain the water in the ice-making box; then send a forced instruction to the refrigerator through the maintenance equipment. After obtaining the forced instruction for commodity inspection, the commodity inspection times is restored to 0, and then the refrigerator that needs to be repaired can detect the ice-making mechanism after being powered on.
[0065] In some embodiments, the above dedicated device or maintenance equipment is configured on the production side. Two different buttons are provided on the dedicated device or maintenance equipment, and by performing a combined operation on the buttons, the purpose of sending a forced instruction to the refrigerator is achieved. For example, the dedicated device or maintenance equipment is a remote control. There are two buttons, "Intelligent" and "Internet", on the remote control. Press and hold the "Intelligent" and "Internet" buttons for more than 2 s to send a forced instruction and clear the commodity inspection times at the same time. The display screen stays on for 2 s and then displays AC, and AC is displayed for a maximum of 5 min. Displaying AC is used to indicate entering the forced commodity inspection process.
[0066] In addition, in some embodiments, a trigger button for forcibly entering the commodity inspection mode can also be set on the display board of the refrigerator. To avoid accidental touch, the trigger button usually requires a combined operation. For example, after the repaired ice-making machine refrigerator is repaired on the repair line, the maintenance personnel can manually control the refrigerator to perform forced commodity inspection through the combined keys on the display board of the refrigerator, and automatically set the memory times of forced commodity inspection to 0.
[0067] As an alternative implementation of the above embodiment, as Figure 4 shown, after obtaining the power-on signal of the refrigerator, the commodity inspection control method further includes:
[0068] S200, obtain the power-on times of the refrigerator;
[0069] Judge whether the power-on times is 1;
[0070] If so, the steps for obtaining the commodity inspection times of the refrigerator include:
[0071] S310, set the commodity inspection times of the refrigerator to 0;
[0072] If not, the steps for obtaining the commodity inspection times of the refrigerator include:
[0073] S320, obtain the memorized commodity inspection times of the refrigerator.
[0074] In this embodiment, after the refrigerator is powered on, if the power-on count is 1, it indicates that the refrigerator is powered on for the first time. At this time, the commodity inspection count of the refrigerator is set to 0, and then the first preset commodity inspection mode is entered; if the power-on count is not 1, it indicates that the refrigerator has been powered on at least once before, and the refrigerator may have undergone commodity inspection. At this time, the commodity inspection count after the refrigerator's memory is obtained to determine whether the refrigerator enters the first preset commodity inspection mode or the second preset commodity inspection mode for operation.
[0075] As an alternative implementation of the above embodiment, if the commodity inspection count is 0, controlling the refrigerator to operate according to the first preset commodity inspection mode includes:
[0076] Obtain the working status of the sensors of the refrigerator and the door body status;
[0077] If the working status of the sensors is normal, the door body status is closed, and the commodity inspection count is 0, then control the refrigerator to operate according to the first preset commodity inspection mode.
[0078] In this embodiment, when the working status of the sensors is normal and the door body is closed, if the commodity inspection count is 0, then control the refrigerator to operate according to the first preset commodity inspection mode; otherwise, control the refrigerator to exit the first preset commodity inspection mode and perform some simple operations, such as closing the air damper once. In this embodiment, the door body includes a refrigerating door body and a freezing door body.
[0079] As an alternative implementation of the above embodiment, obtaining the commodity inspection count of the refrigerator includes:
[0080] Obtain the commodity inspection count of the refrigerator within a preset time period;
[0081] The commodity inspection control method further includes:
[0082] If the commodity inspection count of the refrigerator is not obtained within the preset time period, then control the refrigerator to skip the first preset commodity inspection mode or the second preset commodity inspection mode and enter the preset detection mode for operation.
[0083] In the embodiment, if the commodity inspection count of the refrigerator is not obtained within the preset time period after the refrigerator is powered on, then control the refrigerator to skip the first preset commodity inspection mode or the second preset commodity inspection mode and enter the preset detection mode for operation, such as performing a detection operation of closing the air damper once. The preset time period is three minutes.
[0084] As an alternative implementation of the above embodiment, when controlling the refrigerator to operate according to the first preset commodity inspection mode or controlling the refrigerator to operate according to the second preset commodity inspection mode, the commodity inspection control method further includes:
[0085] Obtain the working status of the sensor and the door body status;
[0086] If the working status is an abnormal status or the door body status is an open status, then control the refrigerator to stop the first preset commodity inspection mode or the second preset commodity inspection mode;
[0087] If the working status is a normal status and the door body status is a closed status, then control the refrigerator to operate according to the first preset commodity inspection mode or control the refrigerator to continue to operate according to the second preset commodity inspection mode.
[0088] In this embodiment, when the refrigerator operates according to the first preset commodity inspection mode or controls the refrigerator to operate according to the second preset commodity inspection mode, if the door is opened or the sensor is abnormal, the commodity inspection is terminated; after the abnormality is eliminated and the door is closed, the refrigerator is controlled to enter the commodity inspection through a forced instruction. If when the refrigerator operates according to the first preset commodity inspection mode or controls the refrigerator to operate according to the second preset commodity inspection mode, the door is closed and the sensor is normal, the refrigerator then operates according to the first preset commodity inspection mode or controls the refrigerator to continue to operate according to the second preset commodity inspection mode until the refrigerator completes the corresponding commodity inspection action and completes the commodity inspection.
[0089] In the above embodiments, the sensor abnormality mainly includes the abnormality of the sensor itself and the communication abnormality. The abnormality of the sensor itself includes inability to measure; the communication abnormality is inability to communicate with the controller.
[0090] A specific commodity inspection control method of the present application includes:
[0091] Power on the refrigerator;
[0092] Before the preset power-on duration, obtain the number of commodity inspection times;
[0093] If the number of commodity inspection times is 0, the sensor is normal, and the door is closed, then control the refrigerator to enter the first preset commodity inspection mode for operation; when operating in the first preset commodity inspection mode, the sensor is normal and the door is closed until the refrigerator completes the established commodity inspection action, and remember that the number of commodity inspection times is 1.
[0094] A specific commodity inspection control method of the present application further includes:
[0095] Power on the refrigerator;
[0096] Before the preset power-on duration, obtain the number of commodity inspection times;
[0097] If the number of commodity inspection times is 1, the sensor is normal, and the door is closed, then control the refrigerator to enter the second preset commodity inspection mode for operation; when operating in the second preset commodity inspection mode, the sensor is normal and the door is closed until the refrigerator completes the established commodity inspection action.
[0098] A specific commodity inspection control method of the present application further includes:
[0099] The refrigerator is powered on;
[0100] When the preset duration of power-on operation is reached and the commodity inspection count is not obtained, the refrigerator is controlled to perform some established operations.
[0101] A specific commodity inspection control method of the present application further includes:
[0102] The refrigerator is powered on;
[0103] Before the preset power-on duration, the commodity inspection count is obtained;
[0104] If the commodity inspection count is 0 or 1, and the sensor is abnormal or the door is opened, the refrigerator is controlled to perform some established operations.
[0105] A specific commodity inspection control method of the present application further includes:
[0106] The refrigerator is powered on;
[0107] Before the preset power-on duration, the commodity inspection count is obtained;
[0108] If the commodity inspection count is 0 or 1, and the sensor is normal and the door is closed, the refrigerator is controlled to enter the first preset commodity inspection mode or the second preset commodity inspection mode for operation; when the refrigerator operates according to the first preset commodity inspection mode or controls the refrigerator to operate according to the second preset commodity inspection mode, if the door is opened or the sensor is abnormal, the commodity inspection is terminated; after the abnormality is eliminated and the door is closed, the refrigerator is controlled to enter the commodity inspection through a forced instruction.
[0109] In the technical solution of the embodiment of the present application, when the first preset commodity inspection mode and the second preset commodity inspection mode are operating, the difference in the commodity inspection actions completed by the refrigerator is that: the second preset commodity inspection mode does not perform ice-making operations. The commodity inspection actions corresponding to the first preset commodity inspection mode and the second preset commodity inspection mode are specifically set according to the electrical components inside the refrigerator. For example, in some embodiments, in the first preset commodity inspection mode, the refrigerator sequentially performs the following actions:
[0110] 1) The door light is turned on for Check00s and turned off for Check01s;
[0111] 2) The negative ion device is turned on for Check10s and turned off for Check11s;
[0112] 3) The air damper is opened and maintained for Check20s, and the air damper is closed and maintained for Check21s;
[0113] 4) The air damper heating wire is turned on for Check30s and turned off for Check31s;
[0114] 5) The defrost heater is turned on for Check40s and turned off for Check41s;
[0115] 6) The refrigeration fan runs for Check50s and then stops for Check51s;
[0116] 7) The condenser fan runs for Check60s and then stops for Check61s;
[0117] 8) The ice maker is reset once and stops for Check71s;
[0118] 9) The inlet pipe heater runs for Check80s and then stops for Check81s;
[0119] 10) The inlet water pump runs forward (discharging water) for Check90s and then stops for Check91s;
[0120] 11) The inlet water pump runs in reverse (not discharging water) for CheckA0s and then stops for CheckA1s;
[0121] 12) All loads remain off for CheckB s;
[0122] 13) The refrigerator refrigerates both the chilled and frozen compartments for CheckC minutes;
[0123] 14) The freezer compartment refrigerates alone for CheckD minutes;
[0124] 15) The low-power detection program ends and the normal operation program is entered.
[0125] For example, in some embodiments, in the second preset commodity inspection mode, the refrigerator sequentially performs the following actions:
[0126] 1) The door light turns on for Check00s and then turns off for Check01s;
[0127] 2) The negative ion device turns on for Check10s and then turns off for Check11s;
[0128] 3) The air damper is kept open for Check20s and then kept closed for Check21s;
[0129] 4) The air damper heating wire turns on for Check30s and then turns off for Check31s;
[0130] 5) The defrost heater turns on for Check40s and then turns off for Check41s;
[0131] 6) The refrigeration fan runs for Check50s and then stops for Check51s;
[0132] 7) The condenser fan runs for Check60s and then stops for Check61s;
[0133] 8) The ice maker is reset once and stops for Check71s;
[0134] 9) Keep all loads off. Check the preset time;
[0135] 10) Refrigerate and freeze simultaneously. Check the preset time;
[0136] 11) Freeze independently. Check the preset time;
[0137] 12) The low - power detection program ends, and enters the normal operation program.
[0138] To better implement the commodity inspection control method of the refrigerator in the embodiments of the present application, based on the commodity inspection control method of the refrigerator, an apparatus for controlling the commodity inspection of a refrigerator is further provided in the embodiments of the present application, as Figure 5 shown. The apparatus for controlling the commodity inspection of the refrigerator includes:
[0139] An acquisition module 01, which acquires the power - on signal of the refrigerator;
[0140] The acquisition module acquires the number of times of commodity inspection of the refrigerator;
[0141] A control module 02, which is configured to control the refrigerator to operate according to a first preset commodity inspection mode if the number of times of commodity inspection is 0; in the first preset commodity inspection mode, the ice - making mechanism operates according to a first preset operation mode to perform the ice - making operation;
[0142] The control module is configured to control the refrigerator to operate according to a second preset commodity inspection mode if not; in the second preset commodity inspection mode, the ice - making mechanism operates according to a second preset operation mode and does not perform the ice - making operation.
[0143] The embodiments of the present application also propose a commodity inspection control system of a refrigerator, including: one or more processors; a memory; and one or more application programs, wherein the one or more application programs are stored in the memory and are configured to be executed by the processor to implement the commodity inspection control method of the refrigerator as described above.
[0144] Generally, the commodity inspection control system of the refrigerator includes: at least one processor, at least one memory, and a control program of the commodity inspection control system of the refrigerator stored on the memory and operable on the processor, and the control program of the commodity inspection control system of the refrigerator is configured to implement the steps of the control method as described above.
[0145] The processor may include one or more processing cores, such as a 4-core processor, an 8-core processor, etc. The processor may be implemented in at least one hardware form of DSP (Digital Signal Processing), FPGA (Field-Programmable Gate Array), or PLA (Programmable Logic Array). The processor may also include a main processor and a coprocessor. The main processor is a processor used to process data in the wake state, also known as the CPU (Central Processing Unit); the coprocessor is a low-power processor used to process data in the standby state. In some embodiments, the processor may be integrated with a GPU (Graphics Processing Unit), and the GPU is responsible for rendering and drawing the content to be displayed on the display screen. The processor may also include an AI (Artificial Intelligence) processor, which is used to process the control method operations of the inspection and quarantine control system of the refrigerator, so that the control method model of the inspection and quarantine control system of the refrigerator can be autonomously trained and learned to improve efficiency and accuracy.
[0146] The memory may include one or more computer-readable storage media, and the computer-readable storage media may be non-transitory. The memory may also include high-speed random access memory and non-volatile memory, such as one or more disk storage devices and flash storage devices. In some embodiments, the non-transitory computer-readable storage media in the memory is used to store at least one instruction, and the at least one instruction is used to be executed by the processor to implement the inspection and quarantine method of the refrigerator provided in the method embodiment of the present application for the inspection and quarantine control system of the refrigerator:
[0147] Obtain the power-on signal of the refrigerator;
[0148] Obtain the number of times of inspection and quarantine of the refrigerator;
[0149] If the number of times of inspection and quarantine is 0, control the refrigerator to operate according to the first preset inspection and quarantine mode; in the first preset inspection and quarantine mode, the ice-making mechanism operates according to the first preset operation mode to perform ice-making operations;
[0150] Otherwise, control the refrigerator to operate according to the second preset inspection and quarantine mode; in the second preset inspection and quarantine mode, the ice-making mechanism operates according to the second preset operation mode and does not perform ice-making operations.
[0151] As an alternative implementation of the above embodiment, after it is determined that if the inspection number is 0 and the refrigerator is controlled to operate according to the first preset inspection mode, the inspection control method includes: memorizing that the inspection number is 1.
[0152] As an alternative implementation of the above embodiment, the inspection control method further includes:
[0153] Obtaining a forced instruction for inspection;
[0154] Based on the forced instruction, restoring the inspection number to 0.
[0155] As an alternative implementation of the above embodiment, after obtaining the power-on signal of the refrigerator, the inspection control method further includes:
[0156] Obtaining the number of power-on times of the refrigerator;
[0157] Determining whether the number of power-on times is 1;
[0158] If so, setting the inspection number of the refrigerator to 0;
[0159] If not, the obtaining of the inspection number of the refrigerator includes:
[0160] Obtaining the memorized inspection number of the refrigerator.
[0161] As an alternative implementation of the above embodiment, if the inspection number is 0, controlling the refrigerator to operate according to the first preset inspection mode includes:
[0162] Obtaining the working state of the sensors of the refrigerator and the door state;
[0163] If the working state of the sensors is normal, the door state is closed, and the inspection number is 0, then control the refrigerator to operate according to the first preset inspection mode.
[0164] As an alternative implementation of the above embodiment, the obtaining of the inspection number of the refrigerator includes:
[0165] Obtaining the inspection number of the refrigerator within a preset time period;
[0166] The inspection control method further includes:
[0167] If the inspection number of the refrigerator is not obtained within the preset time period, then control the refrigerator to skip the first preset inspection mode or the second preset inspection mode and enter the preset detection mode for operation.
[0168] As an alternative implementation of the above embodiments, when controlling the refrigerator to operate in the first preset commodity inspection mode or controlling the refrigerator to operate in the second preset commodity inspection mode, the commodity inspection control method further includes:
[0169] Obtain the working state of the sensor and the door state;
[0170] If the working state is an abnormal state or the door state is an open state, control the refrigerator to stop the first preset commodity inspection mode or the second preset commodity inspection mode;
[0171] If the working state is a normal state and the door state is a closed state, control the refrigerator to operate in the first preset commodity inspection mode or control the refrigerator to continue operating in the second preset commodity inspection mode.
[0172] The above has introduced in detail a refrigerator and its commodity inspection control method, device and storage medium provided by the embodiments of the present application. Specific examples are used in this article to elaborate on the principles and implementation manners of the present invention. The description of the above embodiments is only used to help understand the method and its core idea of the present invention; at the same time, for those skilled in the art, according to the idea of the present invention, there will be changes in the specific implementation manners and application scopes. In summary, the content of this specification should not be construed as a limitation to the present invention.
Claims
1. A commodity inspection control method for a refrigerator, the refrigerator including an ice-making mechanism, characterized in that, Including: Obtain the power-on signal of the refrigerator; Obtain the inspection times of the refrigerator; If the inspection times is 0, control the refrigerator to operate according to the first preset inspection mode; in the first preset inspection mode, the ice-making mechanism operates according to the first preset operation mode to perform the ice-making operation; If not, control the refrigerator to operate according to the second preset inspection mode; In the second preset inspection mode, the ice-making mechanism operates according to the second preset operation mode and does not perform the ice-making operation.
2. The commodity inspection control method according to claim 1, wherein After "if the inspection times is 0, control the refrigerator to operate according to the first preset inspection mode", the inspection control method includes: memorize the inspection times as 1.
3. The commodity inspection control method according to claim 2, characterized in that, The inspection control method further includes: Obtain the forced instruction for inspection; Based on the forced instruction, restore the inspection times to 0.
4. The commodity inspection control method according to claim 1, characterized in that, After "obtain the power-on signal of the refrigerator", the inspection control method further includes: Obtain the power-on times of the refrigerator; Judge whether the power-on times is 1; If so, the obtaining of the inspection times of the refrigerator includes: Set the inspection times of the refrigerator to 0; If not, the obtaining of the inspection times of the refrigerator includes: Obtain the memorized inspection times of the refrigerator.
5. The commodity inspection control method according to claim 1, characterized in that If the inspection times is 0, the control of the refrigerator to operate according to the first preset inspection mode includes: Obtain the working state of the sensor of the refrigerator and the door state; If the working state of the sensor is the normal state and the door state is the closed state, and the inspection times is 0, control the refrigerator to operate according to the first preset inspection mode.
6. The commodity inspection control method according to claim 1, characterized in that, The obtaining of the inspection times of the refrigerator includes: Obtain the inspection times of the refrigerator within a preset time period; The inspection control method further includes: If the inspection times of the refrigerator is not obtained within the preset time period, control the refrigerator to skip the first preset inspection mode or the second preset inspection mode and enter the preset detection mode for operation.
7. The commodity inspection control method according to claim 1, characterized in that, When controlling the refrigerator to operate according to the first preset inspection mode or controlling the refrigerator to operate according to the second preset inspection mode, the inspection control method further includes: Obtain the working state of the sensor and the door state; If the working state is the abnormal state or the door state is the open state, control the refrigerator to stop the first preset inspection mode or the second preset inspection mode; If the working state is the normal state and the door state is the closed state, control the refrigerator to continue to operate according to the first preset inspection mode or control the refrigerator to operate according to the second preset inspection mode.
8. A refrigerator, characterized in that, Including a controller, the controller is used to execute to implement the steps of the inspection control method described in any one of claims 1 to 7.
9. An inspection and control device for a refrigerator, the refrigerator including an ice-making mechanism, characterized in that, Including: An obtaining module, which obtains the power-on signal of the refrigerator; The obtaining module, which obtains the inspection times of the refrigerator; A control module, which is used to control the refrigerator to operate according to the first preset inspection mode if the inspection times is 0; in the first preset inspection mode, the ice-making mechanism operates according to the first preset operation mode to perform the ice-making operation; The control module, which is used to control the refrigerator to operate according to the second preset inspection mode if not; In the second preset commodity inspection mode, the ice making mechanism operates according to the second preset operation mode and does not perform ice making operations.
10. A computer-readable storage medium, characterized in that, A computer program is stored thereon, and the computer program is loaded by a processor to execute the steps of the commodity inspection control method according to any one of claims 1 to 7.