An electrically controlled refrigerator compatible with different power supply stability markets and an implementation method thereof
By using a memory chip in the refrigerator to record the duration of power-on and the number of power-offs, and combining this with the judgment logic of the control center, the refrigeration operation rules are automatically switched, solving the problem of the refrigerator's adaptability in different power supply stability areas and achieving compatibility and efficient production and maintenance.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- CHANGHONG MEILING CO LTD
- Filing Date
- 2023-12-20
- Publication Date
- 2026-05-08
AI Technical Summary
The existing refrigerator control program is incompatible with the needs of different power supply stability areas, which leads to complex production and after-sales maintenance, increased manpower and material consumption, and high risk of incorrect installation.
By recording the total power-on time and the number of power outages through a memory chip, and combining this with the judgment logic of the refrigerator control center, the refrigeration operation rules are automatically switched to adapt to the needs of areas with stable power supply or frequent power outages.
It achieves compatibility in different power supply stability areas, reduces production and after-sales maintenance costs, reduces the risk of incorrect installation, and improves work efficiency.
Smart Images

Figure CN117553485B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of refrigerator electronic control methods, specifically to an electronically controlled refrigerator compatible with different power supply stabilization markets and its implementation method. Background Technology
[0002] To adapt to different usage areas and environmental requirements, some of the refrigerator's control logic will differ. For areas with frequent power outages, the requirements for the memory frequency of defrosting performance parameters, cooling power after power is restored, and cooling speed are relatively more stringent. Conversely, for areas with relatively stable power, the impact of power outages is less critical, and more emphasis can be placed on stable temperature control and noise levels after power is restored. Considering the different needs of areas with frequent power outages and areas with relatively stable power, the refrigerator's control rules need to be adjusted accordingly, resulting in differences between usage areas.
[0003] In existing technologies, the relevant control procedures have different requirements, resulting in different material control outcomes. This not only increases the status of refrigerator products, but also requires production and after-sales personnel to adjust the usage status of different areas, which is not conducive to production and after-sales maintenance. It is necessary to add error prevention measures, which increases manpower or material resources. If a misinstallation problem occurs and a complaint arises, it will affect reputation and market satisfaction, and will also cause related maintenance losses. Summary of the Invention
[0004] The purpose of this invention is to provide a refrigerator with electrical control compatible with different power supply stability markets and a method for implementing it, in order to solve the problem that the existing technology cannot meet the needs of refrigerator refrigeration operation control in different usage areas.
[0005] The objective of this invention can be achieved through the following technical solutions:
[0006] A method for implementing an electronically controlled refrigerator compatible with different power supply stabilization markets includes the following steps:
[0007] S10. Based on the refrigerator model and the corresponding area of use, formulate relevant control operation rules, including cooling operation rule one for areas with stable power and cooling operation rule two for areas with frequent power outages.
[0008] S20. The refrigerator records the total power-on time from power-on to stable power-on and the number of power outages within the total power-on time through a memory chip;
[0009] S30. The memory chip performs memory analysis and judgment on the total power-on time and the number of power-offs within the total power-on time. The refrigerator control center gives different judgment result instructions based on the comparison result of the total power-on time with the preset judgment time and the comparison result of the number of power-offs with the preset judgment number.
[0010] S40. Based on the different judgment results given, the refrigerator executes the corresponding control operation rules;
[0011] S50: The refrigerator continuously checks whether it manually switches the control operation rule state. If the manual switch is different from the control operation rule executed in step S40 above, the switch adjustment is performed.
[0012] As a further aspect of the present invention, step S30 includes the following sub-steps:
[0013] Stp1: Determine if the total power-on time is greater than or equal to the first preset determination time. If the total power-on time is greater than or equal to the first preset determination time, proceed to Stp2; otherwise, proceed to Stp5.
[0014] Stp2: Determine whether the number of power outages within the total power-on time is greater than or equal to the first preset number of judgments within the first preset judgment time. If the number of power outages is greater than or equal to the first preset number of judgments, the refrigerator control center will give a judgment result that the refrigerator cooling operation is controlled according to the second cooling operation rule for the frequent power outage area. Otherwise, proceed to Stp3.
[0015] Stp3: Determine whether the total power-on time is greater than or equal to the second preset determination time. If the total power-on time is greater than or equal to the second preset determination time, proceed to Stp4; otherwise, proceed to Stp5.
[0016] Stp4: Determine whether the number of power outages within the total power-on time is greater than or equal to the number of power outages within the second preset time. If the number of power outages is greater than or equal to the number of power outages, the refrigerator control center will give a determination result that the refrigerator cooling operation is controlled according to the second cooling operation rule for the frequent power outage zone. Otherwise, proceed to Stp3.
[0017] Stp5, The refrigerator control center provides the judgment result of controlling the refrigerator's cooling operation according to the cooling operation rule of the power stability area;
[0018] Among them, the first preset judgment duration is less than the second preset judgment duration, and the first preset judgment number is less than the second preset judgment number.
[0019] As a further aspect of the present invention: when steps Stp2 and Stp4 respectively give the determination results of controlling the refrigerator's cooling operation according to the frequent power outage area cooling operation rule two, the refrigerator executes the frequent power outage area cooling operation rule two, and determines whether to manually switch the control operation rule state. If yes, the refrigerator is manually switched from executing the power stable area cooling operation rule one to the frequent power outage area cooling operation rule two; otherwise, the process ends.
[0020] As a further aspect of the present invention: when step Stp5 gives the determination result of controlling the refrigerator's cooling operation according to the first power stability zone cooling operation rule, the refrigerator executes the first power stability zone cooling operation rule, and determines whether to manually switch the control operation rule state. If yes, the second frequent power outage zone cooling operation rule is manually switched and adjusted to the refrigerator executing the first power stability zone cooling operation rule; otherwise, the process ends.
[0021] A refrigerator with different power supply stability is available in the market. It includes a display panel, a memory chip and a refrigerator control center. The memory chip is used to record the total power-on time from power-on to stable power-on and the number of power outages within the total power-on time. It performs memory analysis and judgment on the total power-on time and the number of power outages within the total power-on time. The refrigerator control center gives instructions for different judgment results.
[0022] Based on the different judgment results given, the refrigerator executes the corresponding control operation rules and displays the corresponding control operation rule mode on the display panel.
[0023] As a further aspect of the present invention: when the refrigerator control center performs memory analysis and determination, it includes:
[0024] The system determines whether the total power-on time is greater than or equal to the first preset determination time. If the total power-on time is greater than or equal to the first preset determination time, the system determines whether the number of power outages within the total power-on time is greater than or equal to the first preset determination number within the first preset determination time. If the number of power outages is greater than or equal to the first preset determination number, the refrigerator control center provides a determination result that the refrigerator is controlled to operate according to the second rule for refrigeration operation in the frequent power outage zone.
[0025] As a further aspect of the present invention: when the refrigerator control center performs memory analysis and determination, it includes:
[0026] If the total power-on time is greater than or equal to the first preset judgment time, then the number of power outages within the total power-on time is greater than or equal to the first preset judgment number within the first preset judgment time. If the number of power outages is less than the first preset judgment number, then the total power-on time is greater than or equal to the second preset judgment time. If the total power-on time is greater than or equal to the second preset judgment time, then the number of power outages within the total power-on time is greater than or equal to the second preset judgment number within the second preset judgment time. If the number of power outages is greater than or equal to the second preset judgment number, then the refrigerator control center will give a judgment result that the refrigerator cooling operation is controlled according to the cooling operation rule two for the frequent power outage zone.
[0027] Among them, the first preset judgment duration is less than the second preset judgment duration, and the first preset judgment number is less than the second preset judgment number.
[0028] As a further aspect of the present invention: when the refrigerator control center performs memory analysis and determination, it includes:
[0029] The system determines whether the total power-on time is greater than or equal to the first preset determination time. If the total power-on time is less than the first preset determination time, the refrigerator control center provides a determination result that the refrigerator is controlled to operate according to the power stability zone refrigeration operation rule.
[0030] As a further aspect of the present invention: when the refrigerator control center performs memory analysis and determination, it includes:
[0031] The system determines whether the total power-on time is greater than or equal to the first preset determination time. If the total power-on time is greater than or equal to the first preset determination time, it determines whether the number of power outages within the total power-on time is greater than or equal to the first preset determination number within the first preset determination time. If the number of power outages is less than the first preset determination number, it determines whether the total power-on time is greater than or equal to the second preset determination time. If the total power-on time is less than the second preset determination time, the refrigerator control center provides a determination result that the refrigerator is controlled to operate according to the power stability zone refrigeration operation rule one.
[0032] The first preset determination time is less than the second preset determination time.
[0033] As a further aspect of the present invention: when the refrigerator control center performs memory analysis and determination, it includes:
[0034] If the total power-on time is greater than or equal to the first preset judgment time, then the number of power outages within the total power-on time is greater than or equal to the first preset judgment number within the first preset judgment time. If the number of power outages is less than the first preset judgment number, then the total power-on time is greater than or equal to the second preset judgment time. If the total power-on time is greater than or equal to the second preset judgment time, then the number of power outages within the total power-on time is greater than or equal to the second preset judgment number within the second preset judgment time. If the number of power outages is less than the second preset judgment number, then the refrigerator control center provides a judgment result indicating that the refrigerator is operating according to the power stability zone refrigeration operation rule one.
[0035] Among them, the first preset judgment duration is less than the second preset judgment duration, and the first preset judgment number is less than the second preset judgment number.
[0036] The present invention provides a refrigerator and its implementation method compatible with different power supply stability markets, which has at least the following beneficial effects: convenient operation and control, no additional investment costs, and compliance with the requirements of universality, modularity and standardization, reducing the manpower and material consumption of material distribution, reducing the risk of incorrect installation and improving work efficiency. Attached Figure Description
[0037] The invention will now be further described with reference to the accompanying drawings.
[0038] Figure 1 This is a flowchart illustrating the implementation method of the present invention for electrically controlled refrigerators compatible with different power supply stabilization markets;
[0039] Figure 2 yes Figure 1 A flowchart illustrating a specific embodiment of the above. Detailed Implementation
[0040] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0041] It should be noted that the terms "first," "second," etc., in the specification, claims, and accompanying drawings of this invention are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. It should be understood that such data can be interchanged where appropriate so that the embodiments of the invention described herein can be implemented in orders other than those illustrated or described herein. Furthermore, the terms "comprising" and "having," and any variations thereof, are intended to cover a non-exclusive inclusion; for example, a process, method, system, product, or apparatus that comprises a series of steps or units is not necessarily limited to those steps or units explicitly listed, but may include other steps or units not explicitly listed or inherent to such processes, methods, products, or apparatus.
[0042] Example 1
[0043] Please see Figure 1 and Figure 2 As shown, this invention provides a method for implementing an electronically controlled refrigerator compatible with different power supply stabilization markets, comprising the following steps:
[0044] S10. Based on the refrigerator model and the corresponding usage area, formulate relevant control operation rules. The control operation rules include cooling operation rule one for areas with stable power and cooling operation rule two for areas with frequent power outages. This allows for the retrieval and use of the formulated cooling operation rule one for areas with stable power and cooling operation rule two for areas with frequent power outages, enabling adaptive adjustment of the refrigerator for different usage areas and conditions.
[0045] S20. The refrigerator records the total power-on time from power-on to stable power-on and the number of power-offs within the total power-on time through a memory chip. The memory chip is set to increase the refrigerator's memory function, so as to accurately obtain the total power-on time from power-on to stable power-on and the number of power-offs within the total power-on time.
[0046] S30: The memory chip performs memory analysis and judgment on the total power-on time and the number of power-offs within the total power-on time. The refrigerator control center gives different judgment result instructions based on the comparison results of the total power-on time and the preset judgment time, as well as the comparison results of the number of power-offs and the preset judgment number.
[0047] S40. Based on the different judgment results given, the refrigerator executes the corresponding control operation rules.
[0048] S50: The refrigerator continuously checks whether it manually switches the control operation rule state. If the manual switch is different from the control operation rule executed in step S40 above, the switch adjustment is performed.
[0049] Step S30 includes the following sub-steps:
[0050] Stp1: Determine if the total power-on time is greater than or equal to the first preset judgment time. If the total power-on time is greater than or equal to the first preset judgment time, proceed to Stp2; otherwise, proceed to Stp5. In this step, the total power-on time is T, and the first preset judgment time is T1. For example, T1 can be the judgment time standard for frequent power outages of 4 hours in the first preset judgment. That is, when T≥T1, proceed to the next judgment step; otherwise, proceed directly to Stp5.
[0051] Stp2: Determine whether the number of power outages within the total power-on time is greater than or equal to the first preset judgment number within the first preset judgment time. If the number of power outages is greater than or equal to the first preset judgment number, the refrigerator control center will give a judgment result that the refrigerator is controlled according to the second rule for cooling operation in the frequent power outage zone. Otherwise, proceed to Stp3. In this step, the number of power outages within the total power-on time is N, and the first preset judgment number within the first preset judgment time is N1. The first preset judgment number N1 can be the standard for the number of 6 frequent power outages. That is, when N≥N1, the refrigerator control center will give a judgment result that the refrigerator is controlled according to the second rule for cooling operation in the frequent power outage zone. Otherwise, proceed to the next judgment step.
[0052] Stp3: Determine if the total power-on time is greater than or equal to the second preset judgment time. If the total power-on time is greater than or equal to the second preset judgment time, proceed to Stp4; otherwise, proceed to Stp5. In this step, the second preset judgment time is T2. For example, T2 can be the judgment time standard for frequent power outages within one day. That is, if T≥T2, proceed to the next judgment step; otherwise, proceed directly to Stp5.
[0053] Stp4: Determine whether the number of power outages within the total power-on time is greater than or equal to the second preset judgment number within the second preset judgment time. If the number of power outages is greater than or equal to the second preset judgment number, the refrigerator control center will give a judgment result that the refrigerator is controlled according to the second rule for cooling operation in the frequent power outage zone. Otherwise, proceed to Stp3. In this step, the second preset judgment number is N2. The second preset judgment number N2 can be the standard for the number of frequent power outages of 15. That is, when N≥N2, the refrigerator control center will give a judgment result that the refrigerator is controlled according to the second rule for cooling operation in the frequent power outage zone. Otherwise, proceed to the next step.
[0054] Stp5, the refrigerator control center gives the judgment result of controlling the refrigerator's cooling operation according to the first rule of cooling operation in the power stable area; in this step, if the judgment criteria of steps Stp1 to Stp4 do not meet the condition of executing the second rule of cooling operation in the frequent power outage area, the first rule of cooling operation in the power stable area will be uniformly executed.
[0055] In this specific embodiment, when steps Stp2 and Stp4 respectively give the judgment result of controlling the refrigerator's cooling operation according to the frequent power outage area cooling operation rule two, the refrigerator executes the frequent power outage area cooling operation rule two, and determines whether to manually switch the control operation rule state. If yes, the refrigerator is manually switched from executing the power stable area cooling operation rule one to the frequent power outage area cooling operation rule two; otherwise, the process ends.
[0056] In this specific embodiment, when step Stp5 gives the determination result of controlling the refrigerator's cooling operation according to the first cooling operation rule of the power stable area, the refrigerator executes the first cooling operation rule of the power stable area, and determines whether to manually switch the control operation rule state. If yes, the second cooling operation rule of the frequent power outage area is manually switched and adjusted to the refrigerator executing the first cooling operation rule of the power stable area; otherwise, the process ends.
[0057] It should be understood that the established cooling operation rules one for areas with stable power and cooling operation rules two for areas with frequent power outages can also be controlled by manually switching modes. The operation of manually switching cooling operation rules includes, but is not limited to, long button and combination button. The operation mode of using long button or adding combination button is used to increase the difficulty of manual button switching operation and prevent users from accidentally switching the state during use, which would affect the user experience.
[0058] It should be understood that this implementation method can be achieved through networked refrigerator operation. By obtaining relevant information such as power on and off times through the network, the timing and number of power outages can be determined more accurately, thereby entering the corresponding control logic state and meeting the control needs of electric refrigerators in different power supply stability markets.
[0059] Example 2
[0060] Combination Figure 1 and Figure 2 As shown, a refrigerator with compatible power supply stability in various markets includes a display panel, a memory chip, and a refrigerator control center. The memory chip records the total power-on time from power-on to stable power supply and the number of power outages within that time. It performs memory analysis and judgment on the read total power-on time and the number of power outages, and the refrigerator control center issues different judgment result instructions. Based on these instructions, the refrigerator executes corresponding control operation rules and displays the corresponding control operation rule mode on the display panel. Under different regional usage conditions, the refrigerator with this application can acquire and record the total power-on time and number of power outages for memory analysis and judgment. Based on the judgment results, it automatically adjusts the refrigerator to meet the execution control operation rule mode. This technical solution requires no additional investment and meets the requirements for universality, modularity, and standardization, reducing manpower and material consumption for material sorting, reducing the risk of mis-installation, and improving work efficiency.
[0061] The following text will describe in detail how different judgment results can be obtained based on different judgment criteria.
[0062] In this embodiment, when the refrigerator control center performs memory analysis and judgment, it determines whether the total power-on time is greater than or equal to the first preset judgment time. If the total power-on time is greater than or equal to the first preset judgment time, it determines whether the number of power outages within the total power-on time is greater than or equal to the first preset judgment number within the first preset judgment time. If the number of power outages is greater than or equal to the first preset judgment number, the refrigerator control center provides a judgment result of controlling the refrigerator's cooling operation according to the second rule for cooling operation in the frequent power outage zone. For example, if the total power-on time is T, the number of power outages is N, the first preset judgment time is T1, where T1 can be the judgment time standard for 4 hours of frequent power outages, and the first preset judgment number is N1, where N1 can be the judgment number standard for 6 frequent power outages, that is, when T≥T1 and N≥N1, the judgment result of controlling the refrigerator's cooling operation according to the second rule for cooling operation in the frequent power outage zone can be obtained.
[0063] In this embodiment, when the refrigerator control center performs memory analysis and determination, it judges whether the total power-on duration is greater than or equal to the first preset determination duration. If the total power-on duration is greater than or equal to the first preset determination duration, it judges whether the number of power-off times within the total power-on duration is greater than or equal to the first preset determination number within the first preset determination duration. If the number of power-off times is less than the first preset determination number, it judges whether the total power-on duration is greater than or equal to the second preset determination duration. If the total power-on duration is greater than or equal to the second preset determination duration, it judges whether the number of power-off times within the total power-on duration is greater than or equal to the second preset determination number within the second preset determination duration. If the number of power-off times is greater than or equal to the second preset determination number, the refrigerator control center gives a determination result to control the refrigerator refrigeration operation according to the refrigeration operation rule two in the frequently power-off area; for example, the second preset determination duration is T2, T2 can be the determination time standard for frequent power-off in one day, and the second preset determination number is N2, N2 can be the determination number standard for 15 times of frequent power-off. That is, when T≥T1, N<N1, T≥T2, and N≥N2, the refrigerator control center can give a determination result to control the refrigerator refrigeration operation according to the refrigeration operation rule two in the frequently power-off area.
[0064] In this embodiment, when the refrigerator control center performs memory analysis and determination, it judges whether the total power-on duration is greater than or equal to the first preset determination duration. If the total power-on duration is less than the first preset determination duration, the refrigerator control center gives a determination result to control the refrigerator refrigeration operation according to the refrigeration operation rule one in the power-stable area; for example, when T<T1, the refrigerator control center directly gives a determination result to control the refrigerator refrigeration operation according to the refrigeration operation rule one in the power-stable area.
[0065] In this embodiment, when the refrigerator control center performs memory analysis and determination, it judges whether the total power-on duration is greater than or equal to the first preset determination duration. If the total power-on duration is greater than or equal to the first preset determination duration, it judges whether the number of power-off times within the total power-on duration is greater than or equal to the first preset determination number within the first preset determination duration. If the number of power-off times is less than the first preset determination number, it judges whether the total power-on duration is greater than or equal to the second preset determination duration. If the total power-on duration is less than the second preset determination duration, the refrigerator control center gives a determination result to control the refrigerator refrigeration operation according to the refrigeration operation rule one in the power-stable area; for example, when T≥T1, N<N1, and T<T2, the refrigerator control center can give a determination result to control the refrigerator refrigeration operation according to the refrigeration operation rule one in the power-stable area.
[0066] In this embodiment, when the refrigerator control center performs memory analysis and determination, it judges whether the total power-on duration is greater than or equal to the first preset determination duration. If the total power-on duration is greater than or equal to the first preset determination duration, it judges whether the number of power-off times within the total power-on duration is greater than or equal to the first preset determination number within the first preset determination duration. If the number of power-off times is less than the first preset determination number, it judges whether the total power-on duration is greater than or equal to the second preset determination duration. If the total power-on duration is greater than or equal to the second preset determination duration, it judges whether the number of power-off times within the total power-on duration is greater than or equal to the second preset determination number within the second preset determination duration. If the number of power-off times is less than the second preset determination number, the refrigerator control center gives a determination result to control the refrigerator refrigeration operation according to the first refrigeration operation rule in the power stable area; for example, when T≥T1, N<N1, T≥T2, and N<N2, a determination result can be obtained that the refrigerator control center gives to control the refrigerator refrigeration operation according to the first refrigeration operation rule in the power stable area.
[0067] It should be understood that there are indicator lights corresponding to the operation modes on the display panel, namely blue and red; where blue indicates that the refrigerator is controlled to operate according to the first refrigeration operation rule in the power stable area; the red light indicates that the refrigerator is controlled to operate according to the second refrigeration operation rule in the frequent power-off area, and the indicator lights of the operation modes should only be displayed under special circumstances, such as: maintenance status or within a specified time after the operation rule is switched.
[0068] The above has described a detailed description of an embodiment of the present invention, but the content described is only a preferred embodiment of the present invention and cannot be considered as limiting the scope of implementation of the present invention. All equal changes and improvements made according to the scope of the present invention application should still fall within the patent coverage scope of the present invention.
Claims
1. A method for implementing an electronically controlled refrigerator compatible with different power supply stabilization markets, characterized in that, Includes the following steps: S10. Based on the refrigerator model and the corresponding area of use, formulate relevant control operation rules, including cooling operation rule one for areas with stable power and cooling operation rule two for areas with frequent power outages. S20. The refrigerator records the total power-on time from power-on to stable power-on and the number of power outages within the total power-on time through a memory chip; S30. The memory chip performs memory analysis and judgment on the total power-on time and the number of power-offs within the total power-on time. The refrigerator control center gives different judgment result instructions based on the comparison result of the total power-on time with the preset judgment time and the comparison result of the number of power-offs with the preset judgment number. S40. Based on the different judgment results given, the refrigerator executes the corresponding control operation rules; S50: The refrigerator continuously detects whether it manually switches the control operation rule state. If the manual switch is different from the control operation rule executed in step S40 above, the switch is adjusted. Step S30 includes the following sub-steps: Stp1: Determine if the total power-on time is greater than or equal to the first preset determination time. If the total power-on time is greater than or equal to the first preset determination time, proceed to Stp2; otherwise, proceed to Stp5. Stp2: Determine whether the number of power outages within the total power-on time is greater than or equal to the first preset number of judgments within the first preset judgment time. If the number of power outages is greater than or equal to the first preset number of judgments, the refrigerator control center will give a judgment result that the refrigerator cooling operation is controlled according to the second cooling operation rule for the frequent power outage area. Otherwise, proceed to Stp3. Stp3: Determine whether the total power-on time is greater than or equal to the second preset determination time. If the total power-on time is greater than or equal to the second preset determination time, proceed to Stp4; otherwise, proceed to Stp5. Stp4: Determine whether the number of power outages within the total power-on time is greater than or equal to the number of power outages within the second preset judgment time. If the number of power outages is greater than or equal to the number of power outages, the refrigerator control center will give a judgment result that the refrigerator cooling operation is controlled according to the second cooling operation rule for the frequent power outage zone. Otherwise, proceed to Stp5. Stp5, The refrigerator control center provides the judgment result of controlling the refrigerator's cooling operation according to the cooling operation rule of the power stability area; Among them, the first preset judgment duration is less than the second preset judgment duration, and the first preset judgment number is less than the second preset judgment number.
2. The method for implementing a refrigerator compatible with different power supply stabilization markets according to claim 1, characterized in that, When Steps Stp2 and Stp4 respectively give the judgment result of controlling the refrigerator's cooling operation according to the frequent power outage area cooling operation rule two, the refrigerator executes the frequent power outage area cooling operation rule two, and determines whether to manually switch the control operation rule state. If yes, the refrigerator is manually switched from the power stable area cooling operation rule one to the frequent power outage area cooling operation rule two; otherwise, the process ends.
3. The method for implementing a refrigerator compatible with different power supply stabilization markets according to claim 1, characterized in that, When step Stp5 gives the judgment result that the refrigerator is controlled to operate according to the first power stable area cooling operation rule, the refrigerator executes the first power stable area cooling operation rule and determines whether to manually switch the control operation rule state. If yes, the second power outage area cooling operation rule is manually switched to the refrigerator executing the first power stable area cooling operation rule. Otherwise, the process ends.
4. A refrigerator with compatible power supply stability in the market, using the implementation method described in claim 1, characterized in that, It includes a display panel, a memory chip, and a refrigerator control center. The memory chip is used to record the total power-on time from power-on to stable power-on and the number of power-offs within the total power-on time. It performs memory analysis and judgment on the total power-on time and the number of power-offs within the total power-on time, and the refrigerator control center gives instructions for different judgment results. Based on the different judgment results given, the refrigerator executes the corresponding control operation rules and displays the corresponding control operation rule mode on the display panel.
5. A refrigerator compatible with different power supply stabilization markets according to claim 4, characterized in that, When the refrigerator control center performs memory analysis and judgment, it includes: The system determines whether the total power-on time is greater than or equal to the first preset determination time. If the total power-on time is greater than or equal to the first preset determination time, the system determines whether the number of power outages within the total power-on time is greater than or equal to the first preset determination number within the first preset determination time. If the number of power outages is greater than or equal to the first preset determination number, the refrigerator control center provides a determination result that the refrigerator is controlled to operate according to the second rule for refrigeration operation in the frequent power outage zone.
6. A refrigerator compatible with different power supply stabilization markets according to claim 4, characterized in that, When the refrigerator control center performs memory analysis and judgment, it includes: If the total power-on time is greater than or equal to the first preset judgment time, then the number of power outages within the total power-on time is greater than or equal to the first preset judgment number within the first preset judgment time. If the number of power outages is less than the first preset judgment number, then the total power-on time is greater than or equal to the second preset judgment time. If the total power-on time is greater than or equal to the second preset judgment time, then the number of power outages within the total power-on time is greater than or equal to the second preset judgment number within the second preset judgment time. If the number of power outages is greater than or equal to the second preset judgment number, then the refrigerator control center will give a judgment result that the refrigerator cooling operation is controlled according to the cooling operation rule two for the frequent power outage zone. Among them, the first preset judgment duration is less than the second preset judgment duration, and the first preset judgment number is less than the second preset judgment number.
7. A refrigerator compatible with different power supply stabilization markets according to claim 4, characterized in that, When the refrigerator control center performs memory analysis and judgment, it includes: The system determines whether the total power-on time is greater than or equal to the first preset determination time. If the total power-on time is less than the first preset determination time, the refrigerator control center provides a determination result that the refrigerator is controlled to operate according to the power stability zone refrigeration operation rule.
8. A refrigerator compatible with different power supply stabilization markets according to claim 4, characterized in that, When the refrigerator control center performs memory analysis and judgment, it includes: The system determines whether the total power-on time is greater than or equal to the first preset determination time. If the total power-on time is greater than or equal to the first preset determination time, it determines whether the number of power outages within the total power-on time is greater than or equal to the first preset determination number within the first preset determination time. If the number of power outages is less than the first preset determination number, it determines whether the total power-on time is greater than or equal to the second preset determination time. If the total power-on time is less than the second preset determination time, the refrigerator control center provides a determination result that the refrigerator is controlled to operate according to the power stability zone refrigeration operation rule one. The first preset determination time is less than the second preset determination time.
9. A refrigerator compatible with different power supply stabilization markets according to claim 4, characterized in that, When the refrigerator control center performs memory analysis and judgment, it includes: If the total power-on time is greater than or equal to the first preset judgment time, then the number of power outages within the total power-on time is greater than or equal to the first preset judgment number within the first preset judgment time. If the number of power outages is less than the first preset judgment number, then the total power-on time is greater than or equal to the second preset judgment time. If the total power-on time is greater than or equal to the second preset judgment time, then the number of power outages within the total power-on time is greater than or equal to the second preset judgment number within the second preset judgment time. If the number of power outages is less than the second preset judgment number, then the refrigerator control center provides a judgment result indicating that the refrigerator is operating according to the power stability zone refrigeration operation rule one. Among them, the first preset judgment duration is less than the second preset judgment duration, and the first preset judgment number is less than the second preset judgment number.
Citation Information
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