Method and device for controlling refrigerator, refrigerator and computer readable storage medium
By setting up a thermal conductivity device in the refrigerator, the heat in the compressor cabin is transmitted to the charging device, and the working parameters of the compressor and charging device are adjusted according to the power of the device to be charged or the temperature of the refrigerator room, the problem of condensation in the charging device in high-temperature and high-humidity environment is solved, and a more efficient and reliable charging process is achieved.
Patent Information
- Application Number
- CN202311657276.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-12-05
- Publication Date
- 2025-06-06
AI Technical Summary
In high temperature and high humidity environments, the charging device in the refrigerator may produce condensation, affecting its normal operation.
A refrigerator including a thermal conductivity device is designed, which transmits heat in the compressor compartment to the charging device, and reduces the generation of condensation based on the power of the device to be charged or the temperature of the refrigerator compartment by adjusting the rotation speed of the compressor and the charging power of the charging device.
It effectively reduces the condensation generated by the charging device, and protects the charging device, improving its working efficiency and reliability.
Smart Images

Figure CN120101406A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of smart home appliances, for example, to a method and device for controlling a refrigerator, a refrigerator, and a computer-readable storage medium. Background Art
[0002] As refrigerators continue to upgrade, the types of refrigerators are ever-changing, and the sizes and functions of refrigerators are constantly updated, and they can even be specially customized. In order to meet the different needs of more people, for example, when the power of some of the user's devices is low, they may want to use the refrigerator to charge. Therefore, the design of the refrigerator and the design of the wireless charging module equipped in the refrigerator are particularly important.
[0003] The related technology discloses a refrigerator with a wireless charging function, comprising: a box body, which defines a accommodating cavity and a storage space inside, and the storage space is located below the accommodating cavity; and a charging device, which is arranged in the accommodating cavity and is configured to be opened in a controlled manner to wirelessly charge a device to be charged placed in a preset area on the top of the box body.
[0004] In the process of implementing the embodiments of the present disclosure, it is found that there are at least the following problems in the related art:
[0005] When the charging device is placed in a refrigerator and the refrigerator is operated in a high temperature and high humidity environment, condensation may occur on the charging device due to the low temperature in the refrigerator compartment.
[0006] It should be noted that the information disclosed in the above background technology section is only used to enhance the understanding of the background of the present application, and therefore may include information that does not constitute the prior art known to ordinary technicians in the field. Summary of the invention
[0007] In order to provide a basic understanding of some aspects of the disclosed embodiments, a brief summary is given below. The summary is not an extensive review, nor is it intended to identify key / critical components or delineate the scope of protection of these embodiments, but rather serves as a prelude to the detailed description that follows.
[0008] Embodiments of the present disclosure provide a method and device for controlling a refrigerator, a refrigerator, and a computer-readable storage medium to improve the reduction of condensation generated by a charging device.
[0009] In some embodiments, the refrigerator includes a compressor compartment and a charging device, and further includes: a heat conduction device, which is connected to the compressor compartment and is used to conduct heat in the compressor compartment to the charging device.
[0010] Optionally, the heat conduction device includes a dew removal pipe having a plurality of bends, one end of which is arranged on the peripheral side of the charging device and the other end is connected to the compressor compartment.
[0011] In some embodiments, the method for controlling a refrigerator includes: obtaining the power of a device to be charged or the temperature of a refrigerator compartment; adjusting the speed of a compressor and the charging power of a charging device according to the power of the device to be charged; or adjusting the speed of a compressor and the charging power of a charging device according to the temperature of a refrigerator compartment.
[0012] Optionally, the speed of the compressor and the charging power of the charging device are adjusted according to the power of the device to be charged, including: when the power of the device to be charged is less than or equal to the first power, adjusting the speed of the compressor to the first speed N1, and the charging power of the charging device to the first power P1; or, when the power of the device to be charged is greater than or equal to the second power, adjusting the speed of the compressor to the second speed N2, and the charging power of the charging device to the second power P2; wherein the first power is less than the second power; N1<N2; P1>P2.
[0013] Optionally, adjusting the speed of the compressor and the charging power of the charging device according to the power of the device to be charged also includes: when the power of the device to be charged is greater than the first power and less than the second power, adjusting the speed of the compressor to a third speed N3 and the charging power of the charging device to a third power P3; wherein, N1<N3<N2; P1>P3>P2.
[0014] Optionally, after adjusting the speed of the compressor and the charging power of the charging device according to the power of the device to be charged, it also includes: when the device to be charged is fully charged, adjusting the speed of the compressor to a fourth speed N4, and the charging power of the charging device to a fourth power P4; wherein, N4>N2, P4<P2.
[0015] Optionally, adjusting the speed of the compressor and the charging power of the charging device according to the temperature of the refrigerator compartment includes: when the temperature of the refrigerator compartment is greater than or equal to the first temperature threshold, adjusting the speed of the compressor to a fifth speed N5 and the charging power of the charging device to a fifth power P5; or, when the temperature of the refrigerator compartment is less than the first temperature threshold, adjusting the speed of the compressor to a sixth speed N6 and the charging power of the charging device to a sixth power P6; wherein, N5>N6; P5<P6.
[0016] Optionally, after adjusting the speed of the compressor and the charging power of the charging device according to the temperature of the refrigerator compartment, it also includes: when the temperature of the refrigerator compartment reaches a second temperature threshold, adjusting the speed of the compressor to a seventh speed N7, and the charging power of the charging device to a seventh power P7; wherein the second temperature threshold is less than the first temperature threshold; N7<N6; P7>P6.
[0017] In some embodiments, the device for controlling a refrigerator includes a processor and a memory storing program instructions, and the processor is configured to execute the method for controlling a refrigerator as described above when running the program instructions.
[0018] In some embodiments, the refrigerator includes the device for controlling a refrigerator as described above, which is installed in the refrigerator.
[0019] In some embodiments, the computer-readable storage medium stores program instructions, and when the program instructions are executed, the computer executes the method for controlling a refrigerator as described above.
[0020] The method and device for controlling a refrigerator, the refrigerator, and the computer-readable storage medium provided in the embodiments of the present disclosure can achieve the following technical effects:
[0021] In the disclosed embodiment, a heat conducting device is provided in the refrigerator to conduct the heat in the compressor compartment to the charging device, so as to heat the gas in the charging device, thereby reducing the condensation generated by the charging device. In addition, since the charging device also generates heat during operation, the speed of the compressor and the charging power of the charging device are adjusted according to the power of the device to be charged or the temperature of the refrigerator compartment, so as to reduce the impact of the high heat generated by the compressor on the working efficiency of the charging device, and further protect the charging device.
[0022] The above general description and the following description are exemplary and explanatory only and are not intended to limit the present application. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] One or more embodiments are exemplarily described by corresponding drawings, which do not limit the embodiments. Elements with the same reference numerals in the drawings are shown as similar elements, and the drawings do not constitute a scale limitation, and wherein:
[0024] Figure 1 is a structural schematic diagram of a refrigerator provided by an embodiment of the present disclosure;
[0025] Figure 2 is a schematic diagram of a charging device and a heat conducting device of a refrigerator provided in an embodiment of the present disclosure;
[0026] Figure 3 is a schematic diagram of a method for controlling a refrigerator provided by an embodiment of the present disclosure;
[0027] Figure 4 is a schematic diagram of another method for controlling a refrigerator provided by an embodiment of the present disclosure;
[0028] Figure 5is a schematic diagram of another method for controlling a refrigerator provided by an embodiment of the present disclosure;
[0029] Figure 6 is a schematic diagram of another method for controlling a refrigerator provided by an embodiment of the present disclosure;
[0030] Figure 7 is a schematic diagram of another method for controlling a refrigerator provided by an embodiment of the present disclosure;
[0031] Figure 8 is a schematic diagram of a device for controlling a refrigerator provided by an embodiment of the present disclosure;
[0032] Fig. 9 It is a schematic diagram of a refrigerator provided in an embodiment of the present disclosure.
[0033] Figure numerals: 1. refrigerator; 10. charging device; 20. heat conduction device; 30. compressor compartment; 21. dew removal pipe; 300. device for controlling refrigerator; 500. processor; 501. memory; 502; communication interface; 503. bus. DETAILED DESCRIPTION
[0034] In order to be able to understand the features and technical contents of the embodiments of the present disclosure in more detail, the implementation of the embodiments of the present disclosure is described in detail below in conjunction with the accompanying drawings. The attached drawings are for reference only and are not used to limit the embodiments of the present disclosure. In the following technical description, for the convenience of explanation, a full understanding of the disclosed embodiments is provided through multiple details. However, one or more embodiments can still be implemented without these details. In other cases, to simplify the drawings, well-known structures and devices can be simplified for display.
[0035] The terms "first", "second", etc. in the specification and claims of the embodiments of the present disclosure and the above-mentioned drawings are used to distinguish similar objects, and are not necessarily used to describe a specific order or sequence. It should be understood that the terms used in this way can be interchanged where appropriate, so that the embodiments of the embodiments of the present disclosure described herein. In addition, the terms "including" and "having" and any variations thereof are intended to cover non-exclusive inclusions.
[0036] Unless otherwise stated, the term "plurality" means two or more.
[0037] In the embodiment of the present disclosure, the character " / " indicates that the preceding and following objects are in an "or" relationship. For example, A / B indicates: A or B.
[0038] The term "and / or" is a description of the association relationship between objects, indicating that three relationships can exist. For example, A and / or B means: A or B, or, A and B.
[0039] The term "correspondence" may refer to an association relationship or a binding relationship. The correspondence between A and B means that there is an association relationship or a binding relationship between A and B.
[0040] Combining a wireless charging device with a refrigerator can meet the user's need to charge the charging device in time and improve the user experience. However, if the charging device is placed in the refrigerator, condensation may occur on the charging device due to the low temperature in the refrigerator's refrigerator compartment, which may affect the electronic components in the charging device.
[0041] Combination Figure 1 As shown, the embodiment of the present disclosure provides a refrigerator 1, including a compressor compartment 30 and a charging device 10, and also including a heat conduction device 20. The heat conduction device 20 is connected to the compressor compartment 30, and is used to conduct the heat in the compressor compartment 30 to the charging device 10.
[0042] During the refrigeration process of the refrigerator 1, the operation of the compressor generates a large amount of heat, and the air in the compressor compartment 30 is also heated. The heat conducting device 20 can be used to conduct the residual heat in the compressor compartment 30 to the charging device 10, so that the air temperature near the charging device 10 is increased, thereby reducing the occurrence of condensation.
[0043] Optionally, combined Figure 2 As shown, the heat transfer device 20 includes a de-condensation pipe 21. The de-condensation pipe 21 has a plurality of bends, one end of which is disposed on the peripheral side of the charging device 10, and the other end of which is communicated with the compressor compartment 30.
[0044] The heat conduction device 20 is configured as a de-condensation pipe 21, which is connected to the compressor compartment 30 and can discharge the hot air in the compressor compartment 30. One end of the de-condensation pipe 21 is arranged on the peripheral side of the charging device 10. After the hot air is discharged from the compressor compartment 30, the air near the charging device 10 can be heated to reduce the occurrence of condensation. The de-condensation pipe 21 is configured to have multiple bends, which can improve the heat exchange efficiency between the hot air in the de-condensation pipe 21 and the air near the charging device 10.
[0045] Optionally, the refrigerator 1 further includes an indicator light, which is arranged on the surface of the refrigerator 1 and is used to display different lights according to the power level of the device to be charged.
[0046] An indicator light is provided on the surface of the refrigerator 1, and a user can quickly obtain the power of the device to be charged according to the light of the indicator light, thereby improving the user experience.
[0047] Optionally, the refrigerator 1 further includes a bar. The bar defines an accommodation cavity inside. The charging device 10 and the heat conducting device 20 are arranged in the accommodation cavity.
[0048] The refrigerator provided by the embodiment of the present disclosure utilizes the heat generated by the charging device and the compressor to heat the air near the charging device to reduce the generation of condensation. In addition, the embodiment of the present disclosure also provides a method for controlling the refrigerator, which can reduce the situation of excessive temperature near the charging device by linking and adjusting the working state of the charging device and the compressor through the processor, thereby reducing the impact on the charging device and further protecting the charging device.
[0049] Combination Figure 3 As shown, the method for controlling a refrigerator provided by the embodiment of the present disclosure includes:
[0050] S001, the processor obtains the power of the device to be charged or the temperature of the refrigerator compartment.
[0051] S002, the processor adjusts the speed of the compressor and the charging power of the charging device according to the power of the device to be charged.
[0052] S003, the processor adjusts the speed of the compressor and the charging power of the charging device according to the temperature of the refrigerator compartment.
[0053] In the embodiment of the present disclosure, after the heat generated by the compressor is transferred to the charging device, the air temperature near the charging device is increased. Since the charging device also generates heat during operation, it is necessary to adjust the speed of the compressor and the charging power of the charging device to reduce the impact on the working efficiency of the charging device when the heat generated by the compressor is high. According to different application scenarios, the refrigerator provided in the embodiment of the present disclosure can give priority to meeting the charging needs of the device to be charged or the refrigeration needs of the refrigerator. In different usage situations, the demand settings of the refrigerator can be reasonably adjusted to improve the user experience.
[0054] Optionally, the speed of the compressor and the charging power of the charging device are adjusted according to the power of the device to be charged, including: when the power of the device to be charged is less than or equal to the first power, adjusting the speed of the compressor to the first speed N1, and the charging power of the charging device to the first power P1; or, when the power of the device to be charged is greater than or equal to the second power, adjusting the speed of the compressor to the second speed N2, and the charging power of the charging device to the second power P2; wherein the first power is less than the second power; N1<N2; P1>P2.
[0055] After obtaining the power of the device to be charged or the temperature of the refrigerator compartment, if the power of the device to be charged is low or the temperature of the refrigerator compartment is low, it can be judged that the charging demand of the device to be charged needs to be prioritized. After connecting the device to be charged, first obtain the power of the device to be charged. If the power of the device to be charged is low, first charge the device to be charged with a higher charging power, and adjust the speed of the compressor to a low speed. At this time, since the charging device is in a high-power working state and generates a high amount of heat, it is necessary to reduce the speed of the compressor to reduce the heat conducted from the compressor compartment to the charging device and reduce the situation where the temperature at the charging device is too high. As the charging process proceeds, when the power of the device to be charged is high, charge the device to be charged with a lower charging power, and adjust the speed of the compressor to a high speed. Use the heat from the compressor compartment to heat the air near the charging device to reduce condensation.
[0056] Optionally, the value range of the first power level includes [20%, 40%]. More specifically, the value of the first power level is equal to 25%, 30% or 35%.
[0057] Optionally, the value range of the second current includes [60%, 80%]. More specifically, the value of the second electrical quantity is equal to 65%, 70% or 75%.
[0058] The values of the first electric quantity and the second electric current can be set according to the user's habits, so that the charging function of the charging device for the charging equipment can better meet the user's expectations.
[0059] Optionally, the value range of N1 includes [1200 rpm, 1600 rpm]. More specifically, N1=1200 rpm, 1400 rpm or 1600 rpm.
[0060] Optionally, the value range of N2 includes [3000 rpm, 3500 rpm]. More specifically, N1=3100 rpm, 3200 rpm or 3300 rpm.
[0061] Optionally, the value range of P1 includes [60W, 70W]. More specifically, P1=62W, 64W or 66W.
[0062] Optionally, the value range of P2 includes [20W, 30W]. More specifically, P1 = 20W, 25W or 30W.
[0063] Optionally, adjusting the speed of the compressor and the charging power of the charging device according to the power of the device to be charged also includes: when the power of the device to be charged is greater than the first power and less than the second power, adjusting the speed of the compressor to a third speed N3 and the charging power of the charging device to a third power P3; wherein, N1<N3<N2; P1>P3>P2.
[0064] In some embodiments, when the device to be charged is just connected to the charging device, the power of the device to be charged is greater than the first power and less than the second power. At this time, a corresponding charging power P3 can be set to charge the device to be charged, and the speed of the compressor can be adjusted to N3 to make the power change during the charging process smoother.
[0065] Optionally, the value range of N3 includes [2000 rpm, 2500 rpm]. More specifically, N1=2100 rpm, 2200 rpm or 2300 rpm.
[0066] Optionally, the value range of P3 includes [40W, 50W]. More specifically, P1 = 40W, 45W or 50W.
[0067] Optionally, after adjusting the speed of the compressor and the charging power of the charging device according to the power of the device to be charged, it also includes: when the device to be charged is fully charged, adjusting the speed of the compressor to a fourth speed N4, and the charging power of the charging device to a fourth power P4; wherein, N4>N2, P4<P2.
[0068] When the device to be charged is fully charged, the charging device only needs to maintain the power of the device to be charged, so it can use the lowest power P4 to reduce damage to the device to be charged. At the same time, the speed of the compressor is increased to N4 to increase the heat generated by the compressor and reduce condensation at the charging device.
[0069] Optionally, the value range of N4 includes [4000 rpm, 4500 rpm]. More specifically, N1=4100 rpm, 4200 rpm or 4300 rpm.
[0070] Optionally, the value range of P4 includes [10W, 15W]. More specifically, P1 = 10W, 12W or 15W.
[0071] Optionally, adjusting the speed of the compressor and the charging power of the charging device according to the temperature of the refrigerator compartment includes: when the temperature of the refrigerator compartment is greater than or equal to the first temperature threshold, adjusting the speed of the compressor to a fifth speed N5 and the charging power of the charging device to a fifth power P5; or, when the temperature of the refrigerator compartment is less than the first temperature threshold, adjusting the speed of the compressor to a sixth speed N6 and the charging power of the charging device to a sixth power P6; wherein, N5>N6; P5<P6.
[0072] After obtaining the power of the device to be charged or the temperature of the refrigerator compartment, if the power of the device to be charged is high or the temperature of the refrigerator compartment is low, it can be determined that the refrigeration demand of the refrigerator needs to be prioritized. When the temperature of the refrigerator compartment is greater than or equal to the first temperature threshold, the refrigeration demand of the refrigerator is high, the compressor runs at a high speed, and the charging power of the charging device is reduced. When the temperature of the refrigerator compartment is less than the first temperature threshold, the refrigeration demand of the refrigerator is low, the speed of the compressor can be reduced, and the charging power of the charging device can be increased. In this way, the heat generated by the compressor and the charging device can be effectively balanced, the condensation of the charging device can be reduced, and the over-high temperature at the charging device can be reduced, effectively protecting the charging device.
[0073] Optionally, the value range of the first temperature threshold includes [6°C, 8°C]. More specifically, the first temperature threshold is equal to 6°C, 7°C or 8°C.
[0074] Optionally, the value range of N5 includes [3500 rpm, 4500 rpm]. More specifically, N1 = 3500 rpm, 4000 rpm or 4500 rpm.
[0075] Optionally, the value range of N6 includes [2000 rpm, 3000 rpm]. More specifically, N1 = 2000 rpm, 2500 rpm or 3000 rpm.
[0076] Optionally, the value range of P5 includes [15W, 25W]. More specifically, P1 = 15W, 20W or 25W.
[0077] Optionally, the value range of P6 includes [30W, 50W]. More specifically, P1 = 35W, 40W or 45W.
[0078] Optionally, after adjusting the speed of the compressor and the charging power of the charging device according to the temperature of the refrigerator compartment, it also includes: when the temperature of the refrigerator compartment reaches a second temperature threshold, adjusting the speed of the compressor to a seventh speed N7, and the charging power of the charging device to a seventh power P7; wherein the second temperature threshold is less than the first temperature threshold; N7<N6; P7>P6.
[0079] As the temperature of the refrigerator continues to drop, after reaching the second temperature threshold, there is no need to continue cooling the refrigerator. At this time, the speed of the compressor can be reduced and the charging power of the charging device can be increased.
[0080] Optionally, the value range of the first temperature threshold includes [2°C, 4°C]. More specifically, the first temperature threshold is equal to 2°C, 3°C or 4°C.
[0081] Optionally, the value range of N7 includes [1000 rpm, 1500 rpm]. More specifically, N1=1000 rpm, 1200 rpm or 1500 rpm.
[0082] Optionally, the value range of P7 includes [60W, 70W]. More specifically, P1=62W, 65W or 68W.
[0083] Optionally, the method for controlling a refrigerator further includes: obtaining the power of the device to be charged; and changing the state of the indicator light according to the power of the device to be charged.
[0084] The power level of the device to be charged is directly displayed through the indicator light. The user can quickly obtain the power level of the device to be charged through the different states of the indicator light, thereby improving the user experience.
[0085] Optionally, after obtaining the power of the device to be charged or the temperature of the refrigerator compartment, it also includes: determining whether the power of the device to be charged is greater than a first power, or determining whether the temperature of the refrigerator compartment is less than a first temperature threshold.
[0086] Combination Figure 4 As shown, the embodiment of the present disclosure provides another method for controlling a refrigerator, comprising:
[0087] S101: The processor obtains the power of the device to be charged.
[0088] S102: When the power of the device to be charged is less than or equal to the first power, the processor adjusts the speed of the compressor to the first speed and the charging power of the charging device to the first power.
[0089] S103, the processor determines whether the power of the device to be charged is greater than the second power, if not, executes S102; if yes, executes S104.
[0090] S104: The processor adjusts the rotation speed of the compressor to a second rotation speed and the charging power of the charging device to a second power.
[0091] S105, the processor determines whether the device to be charged is fully charged, if not, executes S104; if yes, executes S106.
[0092] S106: The processor adjusts the rotation speed of the compressor to a fourth rotation speed and the charging power of the charging device to a fourth power.
[0093] After obtaining the power of the device to be charged, if the power of the device to be charged is less than or equal to the first power, the charging demand of the device to be charged needs to be prioritized, and the speed of the compressor and the charging power of the charging device need to be adjusted according to the power of the device to be charged.
[0094] Combination Figure 5As shown, the embodiment of the present disclosure provides another method for controlling a refrigerator, comprising:
[0095] S201: The processor obtains the power of the device to be charged.
[0096] S202: When the power of the device to be charged is greater than a first power, the processor obtains the temperature of the refrigerator compartment.
[0097] S203, the processor determines whether the temperature of the refrigerator compartment is less than the first temperature threshold, if not, executes S204; if yes, executes S205.
[0098] S204: The processor adjusts the speed of the compressor to the fifth speed, the charging power of the charging device to the fifth power, and executes S203.
[0099] S205, the processor determines whether the temperature of the refrigerator compartment reaches the second temperature threshold, if not, executes S206; if yes, executes S207.
[0100] S206, the processor adjusts the speed of the compressor to a sixth speed, the charging power of the charging device to a sixth power, and executes S205.
[0101] S207, the processor adjusts the speed of the compressor to the seventh speed and the charging power of the charging device to the seventh power.
[0102] After obtaining the power of the device to be charged, if the power of the device to be charged is greater than the first power, the refrigeration demand of the refrigerator can be given priority, and the speed of the compressor and the charging power of the charging device can be adjusted according to the temperature of the refrigerator compartment.
[0103] Combination Figure 6 As shown, the embodiment of the present disclosure provides another method for controlling a refrigerator, comprising:
[0104] S301, the processor obtains the temperature of the refrigerator compartment.
[0105] S302: When the temperature of the refrigerator compartment is greater than or equal to the first temperature threshold, the processor adjusts the speed of the compressor to a fifth speed and the charging power of the charging device to a fifth power.
[0106] S303, the processor determines whether the temperature of the refrigerator compartment is less than the first temperature threshold, if not, executes S302; if yes, executes S304.
[0107] S304: The processor adjusts the speed of the compressor to a sixth speed and the charging power of the charging device to a sixth power.
[0108] S305, the processor determines whether the temperature of the refrigerator compartment reaches the second temperature threshold, if not, executes S304; if yes, executes S306.
[0109] S306: The processor adjusts the speed of the compressor to the seventh speed and the charging power of the charging device to the seventh power.
[0110] After obtaining the refrigerator compartment temperature, if the refrigerator compartment temperature is greater than or equal to the first temperature threshold, the refrigeration demand of the refrigerator needs to be prioritized, and the speed of the compressor and the charging power of the charging device are adjusted according to the refrigerator compartment temperature.
[0111] Combination Figure 7 As shown, the embodiment of the present disclosure provides another method for controlling a refrigerator, comprising:
[0112] S401, the processor obtains the temperature of the refrigerator compartment.
[0113] S402: When the temperature of the refrigerator compartment is lower than a first temperature threshold, the processor obtains the power of the device to be charged.
[0114] S403, the processor determines whether the power of the device to be charged is less than the first power, if so, executes S404; if not, executes S405.
[0115] S404: The processor adjusts the speed of the compressor to a first speed, the charging power of the charging device to a first power, and executes S403.
[0116] S405, the processor determines whether the power of the device to be charged is less than the second power, if so, executes S406; if not, executes S407.
[0117] S406, the processor adjusts the speed of the compressor to a third speed, the charging power of the charging device to a third power, and executes S405.
[0118] S407, the processor determines whether the charging device is fully charged, if not, executes S408; if yes, executes S409.
[0119] S408, the processor adjusts the speed of the compressor to the second speed, the charging power of the charging device to the second power, and executes S407.
[0120] S409: The processor adjusts the rotation speed of the compressor to a fourth rotation speed and the charging power of the charging device to a fourth power.
[0121] After obtaining the temperature of the refrigerator compartment, if the temperature of the refrigerator compartment is less than the first temperature threshold, the charging demand of the device to be charged can be prioritized, and the speed of the compressor and the charging power of the charging device can be adjusted according to the power of the device to be charged.
[0122] The refrigerator provided by the embodiment of the present disclosure is provided with a charging device and has a wireless charging function. A heat conducting device is also provided, which can utilize the heat in the compressor compartment to reduce the condensation generated by the charging device. The method for controlling the refrigerator provided by the embodiment of the present disclosure can also adjust the rotation speed of the compressor and the charging power of the charging device in a linked manner, utilize the heat in the compressor compartment and the heat generated by the charging device itself, while reducing the condensation generated by the charging device, it can also reduce the situation where the temperature in the charging device is too high, and further protect the charging device.
[0123] Combination Figure 8 As shown, the embodiment of the present disclosure provides a device 300 for controlling a refrigerator, including a processor 500 and a memory 501. Optionally, the device may also include a communication interface 502 and a bus 503. The processor 500, the communication interface 502, and the memory 501 may communicate with each other through the bus 503. The communication interface 502 may be used for information transmission. The processor 500 may call the logic instructions in the memory 501 to execute the method for controlling a refrigerator of the above embodiment.
[0124] In addition, the logic instructions in the memory 501 described above can be implemented in the form of software functional units and can be stored in a computer-readable storage medium when sold or used as an independent product.
[0125] The memory 501 is a computer-readable storage medium that can be used to store software programs and computer-executable programs, such as program instructions / modules corresponding to the method in the embodiment of the present disclosure. The processor 500 executes the function application and data processing by running the program instructions / modules stored in the memory 501, that is, the method for controlling the refrigerator in the above embodiment is implemented.
[0126] The memory 501 may include a program storage area and a data storage area, wherein the program storage area may store an operating system and an application required for at least one function; the data storage area may store data created according to the use of the terminal device, etc. In addition, the memory 501 may include a high-speed random access memory and may also include a non-volatile memory.
[0127] Combination Fig. 9As shown, an embodiment of the present disclosure provides a refrigerator 1, including a charging device 10 and a heat conduction device (not shown in the figure), and a device 300 for controlling a refrigerator as described above. The device 300 for controlling a refrigerator is installed in the refrigerator. The installation relationship described here is not limited to placement inside the refrigerator, but also includes installation connections with other components of the refrigerator, including but not limited to physical connections, electrical connections, or signal transmission connections. It can be understood by those skilled in the art that the device 300 for controlling a refrigerator can be adapted to a feasible refrigerator body, thereby realizing other feasible embodiments.
[0128] An embodiment of the present disclosure provides a computer-readable storage medium storing computer-executable instructions, wherein the computer-executable instructions are configured to execute the above-mentioned method for controlling a refrigerator.
[0129] The technical solution of the embodiment of the present disclosure can be embodied in the form of a software product, which is stored in a storage medium and includes one or more instructions for enabling a computer device (which may be a personal computer, a server, or a network device, etc.) to execute all or part of the steps of the method described in the embodiment of the present disclosure. The aforementioned storage medium may be a non-transient storage medium, including: a USB flash drive, a mobile hard disk, a read-only memory (ROM), a random access memory (RAM), a magnetic disk or an optical disk, and other media that can store program codes.
[0130] The above description and the accompanying drawings fully illustrate the embodiments of the present disclosure so that those skilled in the art can practice them. Other embodiments may include structural, logical, electrical, process and other changes. The embodiments represent only possible changes. Unless explicitly required, separate components and functions are optional, and the order of operation may vary. The parts and features of some embodiments may be included in or replace the parts and features of other embodiments. Moreover, the words used in this application are only used to describe the embodiments and are not used to limit the claims. As used in the description of the embodiments and the claims, unless the context clearly indicates, the singular forms of "a", "an" and "the" are intended to include plural forms as well. Similarly, the term "and / or" as used in this application refers to any and all possible combinations of listings containing one or more associated ones. In addition, when used in the present application, the term "comprise" and its variants "comprises" and / or comprising refer to the presence of stated features, wholes, steps, operations, elements, and / or components, but do not exclude the presence or addition of one or more other features, wholes, steps, operations, elements, components and / or groups thereof. In the absence of further restrictions, the elements defined by the sentence "comprising a ..." do not exclude the presence of other identical elements in the process, method or device comprising the elements. In this article, each embodiment may focus on the differences from other embodiments, and the same and similar parts between the various embodiments may refer to each other. For the methods, products, etc. disclosed in the embodiments, if they correspond to the method part disclosed in the embodiments, then the relevant parts can refer to the description of the method part.
[0131] Those skilled in the art will appreciate that the units and algorithm steps of each example described in conjunction with the embodiments disclosed herein can be implemented in electronic hardware, or a combination of computer software and electronic hardware. Whether these functions are performed in hardware or software may depend on the specific application and design constraints of the technical solution. The technicians may use different methods for each specific application to implement the described functions, but such implementations should not be considered to exceed the scope of the embodiments of the present disclosure. The technicians may clearly understand that, for the convenience and simplicity of description, the specific working processes of the systems, devices and units described above may refer to the corresponding processes in the aforementioned method embodiments, and will not be repeated here.
[0132] In the embodiments disclosed herein, the disclosed methods and products (including but not limited to devices, equipment, etc.) can be implemented in other ways. For example, the device embodiments described above are only schematic. For example, the division of the units can be only a logical function division. There may be other division methods in actual implementation, such as multiple units or components can be combined or integrated into another system, or some features can be ignored or not executed. In addition, the coupling or direct coupling or communication connection between each other shown or discussed can be through some interfaces, indirect coupling or communication connection of devices or units, which can be electrical, mechanical or other forms. The units described as separate components may or may not be physically separated, and the components displayed as units may or may not be physical units, that is, they may be located in one place, or they may be distributed on multiple network units. Some or all of the units may be selected according to actual needs to implement this embodiment. In addition, each functional unit in the embodiment of the present disclosure may be integrated in a processing unit, or each unit may exist physically alone, or two or more units may be integrated in one unit.
[0133] The flowchart and block diagram in the accompanying drawings show the possible architecture, function and operation of the system, method and computer program product according to the embodiment of the present disclosure. In this regard, each box in the flowchart or block diagram can represent a module, a program segment or a part of the code, and the module, the program segment or a part of the code contains one or more executable instructions for realizing the specified logical function. In some alternative implementations, the functions marked in the box can also occur in a different order from the order marked in the accompanying drawings. For example, two consecutive boxes can actually be executed substantially in parallel, and they can sometimes be executed in the opposite order, which can depend on the functions involved. In the description corresponding to the flowchart and the block diagram in the accompanying drawings, the operations or steps corresponding to different boxes can also occur in a different order from the order disclosed in the description, and sometimes there is no specific order between different operations or steps. For example, two consecutive operations or steps can actually be executed substantially in parallel, and they can sometimes be executed in the opposite order, which can depend on the functions involved. Each block in the block diagrams and / or flowcharts, and combinations of blocks in the block diagrams and / or flowcharts, may be implemented by a dedicated hardware-based system that performs the specified functions or actions, or may be implemented by a combination of dedicated hardware and computer instructions.
Claims
1. A method for controlling a refrigerator, the refrigerator comprising a compressor compartment and a charging device, It is characterized in that The refrigerator further comprises: a heat conducting device, which is in communication with the compressor compartment and is used to conduct heat in the compressor compartment to the charging device; the method comprises: Get the power level of the device to be charged or the temperature of the refrigerator compartment; Adjust the speed of the compressor and the charging power of the charging device according to the power of the device to be charged; or, The speed of the compressor and the charging power of the charging device are adjusted according to the temperature of the refrigerator compartment.
2. The method according to claim 1, It is characterized in that The speed of the compressor and the charging power of the charging device are adjusted according to the power of the device to be charged, including: When the power of the device to be charged is less than or equal to the first power, the speed of the compressor is adjusted to the first speed N1, and the charging power of the charging device is adjusted to the first power P1; or, When the power of the device to be charged is greater than or equal to the second power, the speed of the compressor is adjusted to the second speed N2, and the charging power of the charging device is the second power P2; The first electrical quantity is smaller than the second electrical quantity; N1<N2; P1>P2.
3. The method according to claim 2, It is characterized in that The speed of the compressor and the charging power of the charging device are adjusted according to the power of the device to be charged, and also include: When the power of the device to be charged is greater than the first power but less than the second power, the speed of the compressor is adjusted to a third speed N3, and the charging power of the charging device is a third power P3; Among them, N1<N3<N2; P1>P3>P2.
4. The method according to claim 3, It is characterized in that After adjusting the speed of the compressor and the charging power of the charging device according to the power of the device to be charged, it also includes: When the device to be charged is fully charged, the speed of the compressor is adjusted to a fourth speed N4, and the charging power of the charging device is a fourth power P4; Among them, N4>N2, P4<P2.
5. The method according to claim 1, It is characterized in that Adjust the speed of the compressor and the charging power of the charging device according to the temperature of the refrigerator compartment, including: When the temperature of the refrigerator compartment is greater than or equal to the first temperature threshold, adjusting the speed of the compressor to a fifth speed N5 and the charging power of the charging device to a fifth power P5; or, When the temperature of the refrigerator compartment is lower than the first temperature threshold, the speed of the compressor is adjusted to a sixth speed N6, and the charging power of the charging device is adjusted to a sixth power P6; Among them, N5>N6; P5<P6.
6. The method according to claim 5, It is characterized in that After adjusting the speed of the compressor and the charging power of the charging device according to the temperature of the refrigerator compartment, it also includes: When the temperature of the refrigerator compartment reaches the second temperature threshold, the speed of the compressor is adjusted to the seventh speed N7, and the charging power of the charging device is adjusted to the seventh power P7; Among them, the second temperature threshold is less than the first temperature threshold; N7<N6; P7>P6.
7. A device for controlling a refrigerator, comprising a processor and a memory storing program instructions, It is characterized in that The processor is configured to execute the method for controlling a refrigerator according to any one of claims 1 to 6 when running the program instructions.
8. A refrigerator comprising a compressor compartment and a charging device, It is characterized in that Also includes: The heat conducting device is connected to the compressor compartment and is used for conducting the heat in the compressor compartment to the charging device.
9. The refrigerator according to claim 8, It is characterized in that The heat conduction device includes: The dew removal pipe has a plurality of bent portions, one end of which is arranged on the peripheral side of the charging device, and the other end of which is communicated with the compressor compartment.
10. The refrigerator according to claim 8 or 9, It is characterized in that Also includes: The device for controlling a refrigerator as claimed in claim 7 is installed in a refrigerator.
11. A computer-readable storage medium storing program instructions, It is characterized in that When the program instructions are executed, the computer is used to execute the method for controlling a refrigerator as described in any one of claims 1 to 6.