Control method of refrigeration equipment, refrigeration equipment and computer readable storage medium
By obtaining the status and environmental parameters of the stove and hood and automatically adjusting the parameters of the refrigeration equipment, the impact of changes in the state of the hood and hood in the kitchen on the refrigeration effect is solved, and optimized refrigeration is achieved without user intervention, improving the user experience.
Patent Information
- Application Number
- CN202510729786.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-03
- Publication Date
- 2025-07-18
AI Technical Summary
The different opening states of the hood and stove in the kitchen lead to different air circulation states and heat loads, which affects the actual refrigeration effect of the refrigeration equipment. Users need to adjust the refrigeration equipment settings themselves to reduce the user experience.
By obtaining the stove, hood and environmental parameters, combined with preset parameters, the refrigeration parameters of the refrigeration equipment are automatically adjusted to realize the linkage between the stove, hood and refrigeration equipment, and optimize the refrigeration effect.
There is no need for manual adjustment by users to ensure that the refrigeration equipment can maintain good cooling effect when different hoods and stoves are turned on, and improve user experience.
Smart Images

Figure CN120333053A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of refrigeration equipment, and particularly to a control method for refrigeration equipment, a refrigeration equipment and a computer-readable storage medium. Background Art
[0002] In recent years, in order to improve the comfort of cooking, more and more refrigeration equipment such as air conditioners has been installed and used in kitchens to provide a comfortable cooking environment for users. However, during different operation processes such as food preparation and cooking, the opening states of the range hood and the cooking stove in the kitchen are different, resulting in different air circulation states and heat loads in the kitchen, and further having a greater impact on the actual refrigeration effect of the refrigeration equipment. Users need to adjust the relevant settings of the refrigeration equipment by themselves, which is rather cumbersome and reduces the user experience. Summary of the Invention
[0003] In view of this, the present invention provides a control method for refrigeration equipment, a refrigeration equipment and a computer-readable storage medium to solve the problem that different opening states of the range hood and the cooking stove in the kitchen result in different air circulation states and heat loads in the kitchen, and further have a greater impact on the actual refrigeration effect of the refrigeration equipment.
[0004] In a first aspect, the present invention provides a control method for refrigeration equipment, including:
[0005] Obtaining the working state of the cooking stove and the working state of the range hood;
[0006] Obtaining the preset parameters of the refrigeration equipment and obtaining the environmental parameters;
[0007] Obtaining the refrigeration parameters of the refrigeration equipment according to the working state of the cooking stove, the working state of the range hood, the environmental parameters and the preset parameters, and controlling the refrigeration equipment to operate according to the refrigeration parameters.
[0008] Beneficial effects: The refrigeration parameters of the refrigeration equipment are obtained according to the working state of the cooking stove, the working state of the range hood, the environmental parameters and the preset parameters of the refrigeration equipment, realizing the linkage of the cooking stove, the range hood and the refrigeration equipment, fully considering the influence of the opening states of the range hood and the cooking stove on the air circulation state and heat load in the kitchen, avoiding the influence of the range hood and the cooking stove on the refrigeration effect of the refrigeration equipment, ensuring that the refrigeration equipment can have a good refrigeration effect in different opening states of the range hood and the cooking stove, without the need for users to adjust the relevant settings of the refrigeration equipment by themselves, simplifying the operation and improving the user experience.
[0009] In an optional embodiment, the obtaining the preset parameters of the refrigeration equipment and obtaining the environmental parameters includes:
[0010] Obtain the set cooling temperature of the refrigeration device manually set by the user, obtain the set cooling wind speed gear of the refrigeration device manually set by the user; and obtain the ambient temperature.
[0011] Beneficial effects: The set cooling temperature, the set cooling wind speed gear and the ambient temperature are all linked with the working states of the cooking appliance and the range hood, and the linkage of the cooking appliance, the range hood and the refrigeration device can be realized more accurately. Thus, the influence of the opening states of the range hood and the cooking appliance on the air circulation state and the heat load in the kitchen can be considered more fully to obtain a better cooling effect.
[0012] In an alternative embodiment, the step of obtaining the refrigeration parameters of the refrigeration device according to the working state of the cooking appliance, the working state of the range hood, the environmental parameters and the preset parameters, and controlling the refrigeration device to operate according to the refrigeration parameters includes:
[0013] If both the working state of the cooking appliance and the working state of the range hood are in the unopened state;
[0014] Then obtain the first temperature difference between the ambient temperature and the set cooling temperature;
[0015] Obtain the first operating frequency range of the compressor of the refrigeration device according to the first temperature difference;
[0016] Control the refrigeration device to operate according to the first operating frequency range and the set cooling wind speed gear.
[0017] Beneficial effects: When both the cooking appliance and the range hood are not opened, the refrigeration device does not need to be linked with the range hood and the cooking appliance. According to the first temperature difference between the set cooling temperature manually set by the user and the ambient temperature, the first operating frequency range of the compressor is obtained, and the refrigeration device is controlled to operate according to the first operating frequency range and the set cooling wind speed gear manually set by the user, which can better meet the user's demand for air temperature in the current state, enabling each user to perform operations such as preparing dishes without firing in an environment where they feel comfortable and improving the user experience.
[0018] In an alternative embodiment, the step of obtaining the refrigeration parameters of the refrigeration device according to the working state of the cooking appliance, the working state of the range hood, the environmental parameters and the preset parameters, and controlling the refrigeration device to operate according to the refrigeration parameters includes:
[0019] If the working state of the cooking appliance is in the opened state and linked with the refrigeration device, and the working state of the range hood is in the opened state and not linked with the refrigeration device;
[0020] Then obtain the first temperature difference between the ambient temperature and the set cooling temperature;
[0021] Obtain the set range hood wind force gear manually set by the user;
[0022] According to the first temperature difference and the set range hood wind force gear, obtain the second operating frequency range of the compressor of the refrigeration device;
[0023] Control the refrigeration device to operate according to the second operating frequency range and the set refrigeration wind force gear.
[0024] Beneficial effects: If both the cooking stove and the range hood are turned on, but only the cooking stove is linked with the refrigeration device, while the range hood is not linked with the refrigeration device, according to the first temperature difference between the set refrigeration temperature manually set by the user and the ambient temperature, and the set range hood wind force gear manually set by the user, obtain the second operating frequency range of the compressor of the refrigeration device, and control the refrigeration device to operate according to the second operating frequency range and the set refrigeration wind force gear manually set by the user, then it is possible to fully consider the influence of the on-off states of the range hood and the cooking stove on the air circulation state and heat load in the kitchen, make the operation of the refrigeration device more in line with the user's demand for air temperature in the current state, enable each user to perform cooking operations in a comfortable environment, without the user having to repeatedly adjust the refrigeration device, and improve the user experience.
[0025] In an alternative embodiment, the step of obtaining the refrigeration parameters of the refrigeration device according to the cooking stove working state, the range hood working state, the environmental parameters and the preset parameters, and controlling the refrigeration device to operate according to the refrigeration parameters includes:
[0026] If both the cooking stove working state and the range hood working state are in the on state and linked with the refrigeration device;
[0027] Then obtain the first temperature difference between the ambient temperature and the set refrigeration temperature;
[0028] Obtain the set fire power gear and the set range hood wind force gear manually set by the user;
[0029] According to the first temperature difference, the set fire power gear and the set range hood wind force gear, obtain the third operating frequency range of the compressor of the refrigeration device;
[0030] Control the refrigeration device to operate according to the third operating frequency range and the set refrigeration wind force gear.
[0031] Beneficial effects: If both the cooking appliance and the range hood are turned on and are linked with the refrigeration device, according to the first temperature difference between the set refrigeration temperature manually set by the user and the ambient temperature, the set firepower level and the set range hood wind level manually set by the user, obtain the third operating frequency range of the compressor of the refrigeration device, and control the refrigeration device to operate according to the third operating frequency range and the set refrigeration wind level manually set by the user, then it is possible to fully consider the influence of the on / off states of the range hood and the cooking appliance on the air circulation state and heat load in the kitchen, making the operation of the refrigeration device more in line with the user's demand for air temperature in the current state, enabling each user to perform cooking operations in an environment where they feel comfortable, without the user having to repeatedly adjust the refrigeration device, and improving the user experience.
[0032] In an alternative embodiment, the obtaining the preset parameters of the refrigeration device and obtaining the environmental parameters includes:
[0033] Obtaining the preset refrigeration temperature preset in the refrigeration device and obtaining the ambient temperature.
[0034] Beneficial effects: Both the preset refrigeration temperature and the ambient temperature are linked with the working states of the cooking appliance and the range hood, which can more precisely realize the linkage of the cooking appliance, the range hood and the refrigeration device, thereby more fully considering the influence of the on / off states of the range hood and the cooking appliance on the air circulation state and heat load in the kitchen, so as to obtain a better refrigeration effect.
[0035] In an alternative embodiment, the obtaining the refrigeration parameters of the refrigeration device according to the working state of the cooking appliance, the working state of the range hood, the environmental parameters and the preset parameters, and controlling the refrigeration device to operate according to the refrigeration parameters includes:
[0036] If both the working state of the cooking appliance and the working state of the range hood are in the off state;
[0037] Then obtain the second temperature difference between the ambient temperature and the preset refrigeration temperature;
[0038] Obtain the fourth operating frequency range of the compressor of the refrigeration device and the first operating wind level of the refrigeration device according to the second temperature difference;
[0039] Control the refrigeration device to operate according to the fourth operating frequency range and the first operating wind level.
[0040] Beneficial effects: When neither the cooking appliance nor the range hood is turned on, the refrigeration device does not need to be linked with the range hood and the cooking appliance. According to the first temperature difference between the set refrigeration temperature manually set by the user and the ambient temperature, the first operating frequency range of the compressor is obtained, and the refrigeration device is controlled to operate according to the first operating frequency range and the set refrigeration wind force gear, which can better meet the user's demand for air temperature in the current state, enabling each user to perform operations such as food preparation without firing in an environment where they feel comfortable, thus improving the user experience.
[0041] In an optional implementation manner, the obtaining the refrigeration parameters of the refrigeration device according to the working state of the cooking appliance, the working state of the range hood, the environmental parameters and the preset parameters, and controlling the refrigeration device to operate according to the refrigeration parameters includes:
[0042] If the working state of the cooking appliance is on and in a state of being linked with the refrigeration device, and the working state of the range hood is on and not in a state of being linked with the refrigeration device;
[0043] Then obtain the second temperature difference between the ambient temperature and the preset refrigeration temperature;
[0044] Obtain the set range hood wind force gear manually set by the user;
[0045] According to the second temperature difference and the set range hood wind force gear, obtain the fifth operating frequency range of the compressor of the refrigeration device and the second operating wind force gear of the refrigeration device;
[0046] Control the refrigeration device to operate according to the fifth operating frequency range and the second operating wind force gear.
[0047] In an optional implementation manner, the obtaining the refrigeration parameters of the refrigeration device according to the working state of the cooking appliance, the working state of the range hood, the environmental parameters and the preset parameters, and controlling the refrigeration device to operate according to the refrigeration parameters includes:
[0048] If both the working state of the cooking appliance and the working state of the range hood are on and in a state of being linked with the refrigeration device;
[0049] Then obtain the second temperature difference between the ambient temperature and the preset refrigeration temperature;
[0050] Obtain the set fire power gear and the set range hood wind force gear manually set by the user;
[0051] According to the second temperature difference, the set fire power gear and the set range hood wind force gear, obtain the sixth operating frequency range of the compressor of the refrigeration device and the third operating wind force gear of the refrigeration device;
[0052] Control the refrigeration device to operate according to the sixth operating frequency range and the third operating wind speed gear.
[0053] In a second aspect, the present invention also provides a computer-readable storage medium storing computer instructions, which, when executed, implement the control method of the refrigeration device described above.
[0054] In a third aspect, the present invention also provides a refrigeration device, comprising:
[0055] A first signal acquisition component for acquiring the working state of the cooking appliance;
[0056] A second signal acquisition component for acquiring the working state of the range hood;
[0057] A third signal acquisition component for acquiring the preset parameters of the refrigeration device;
[0058] A fourth signal acquisition component for acquiring environmental parameters;
[0059] A calculation module communicatively connected to the first signal acquisition component, the second signal acquisition component, the third signal acquisition component, and the fourth signal acquisition component; the calculation module is configured to execute the control method of the refrigeration device described above to obtain the refrigeration parameters of the refrigeration device;
[0060] A controller communicatively connected to the first signal acquisition component, the second signal acquisition component, the third signal acquisition component, the fourth signal acquisition component, and the calculation module; for controlling the refrigeration device to operate according to the refrigeration parameters. Description of the Drawings
[0061] In order to more clearly illustrate the specific embodiments of the present invention or the technical solutions in the related art, the following will briefly introduce the drawings required to be used in the description of the specific embodiments or the related art. Obviously, the drawings in the following description are some embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.
[0062] Figure 1 It is the first flow chart of the control method of the refrigeration device according to the embodiment of the present invention;
[0063] Figure 2 It is the second flow chart of the control method of the refrigeration device according to the embodiment of the present invention;
[0064] Figure 3 It is the third flow chart of the control method of the refrigeration device according to the embodiment of the present invention;
[0065] Figure 4 The fourth schematic flow chart of the control method of the refrigeration equipment according to the embodiment of the present invention;
[0066] Figure 5 The fifth schematic flow chart of the control method of the refrigeration equipment according to the embodiment of the present invention;
[0067] Figure 6 The sixth schematic flow chart of the control method of the refrigeration equipment according to the embodiment of the present invention;
[0068] Figure 7 The seventh schematic flow chart of the control method of the refrigeration equipment according to the embodiment of the present invention;
[0069] Figure 8 The eighth schematic flow chart of the control method of the refrigeration equipment according to the embodiment of the present invention;
[0070] Figure 9 The ninth schematic flow chart of the control method of the refrigeration equipment according to the embodiment of the present invention;
[0071] Figure 10 The tenth schematic flow chart of the control method of the refrigeration equipment according to the embodiment of the present invention;
[0072] Figure 11 The eleventh schematic flow chart of the control method of the refrigeration equipment according to the embodiment of the present invention;
[0073] Figure 12 The twelfth schematic flow chart of the control method of the refrigeration equipment according to the embodiment of the present invention. Detailed implementation manners
[0074] To make the objectives, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Apparently, the described embodiments are some but not all of the embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0075] The following combines with Figures 1 to 12 to describe the embodiments of the present invention.
[0076] According to an embodiment of the present invention, on the one hand, a control method of a refrigeration equipment is provided, including:
[0077] S1. Obtain the working state of the cooking appliance and the working state of the range hood. The working state of the cooking appliance includes: the state of being turned on and linked with the refrigeration device, and the state of not being turned on. The working state of the range hood includes: the state of being turned on and linked with the refrigeration device, the state of being turned on and not linked with the refrigeration device, and the state of not being turned on. The cooking appliance can be a gas stove or an induction cooker, etc. In this embodiment, it is preferably a gas stove. The range hood is an oil fume extractor used in the kitchen to absorb the fumes during cooking.
[0078] S2. Obtain the preset parameters of the refrigeration device and obtain the environmental parameters.
[0079] S3. Obtain the refrigeration parameters of the refrigeration device according to the working state of the cooking appliance, the working state of the range hood, the environmental parameters and the preset parameters, and control the refrigeration device to operate according to the refrigeration parameters.
[0080] Obtain the refrigeration parameters of the refrigeration device according to the working state of the cooking appliance, the working state of the range hood, the environmental parameters and the preset parameters of the refrigeration device, realize the linkage of the cooking appliance, the range hood and the refrigeration device, fully consider the influence of the opening states of the range hood and the cooking appliance on the air circulation state and heat load in the kitchen, avoid the influence of the range hood and the cooking appliance on the refrigeration effect of the refrigeration device, ensure that the refrigeration device can have a good refrigeration effect in different opening states of the range hood and the cooking appliance, without the user having to adjust the relevant settings of the refrigeration device by himself, simplify the operation and improve the user experience. Moreover, in this embodiment, through the linkage of the range hood, the cooking appliance and the refrigeration device, not only can a suitable refrigeration capacity be output to meet different cooling requirements, but also a more comfortable noise experience can be obtained.
[0081] In one embodiment, the obtaining the preset parameters of the refrigeration device and obtaining the environmental parameters includes:
[0082] S21. Obtain the set refrigeration temperature of the refrigeration device manually set by the user, obtain the set refrigeration wind force level manually set by the user; and obtain the environmental temperature.
[0083] In this embodiment, the user manually sets the preset parameters of the refrigeration device, specifically including setting the refrigeration temperature and setting the refrigeration wind force level. The set refrigeration temperature, the set refrigeration wind force level and the environmental temperature are all linked with the working state of the cooking appliance and the working state of the range hood, which can more accurately realize the linkage of the cooking appliance, the range hood and the refrigeration device, so as to more fully consider the influence of the opening states of the range hood and the cooking appliance on the air circulation state and heat load in the kitchen, in order to obtain a better refrigeration effect.
[0084] In one embodiment, obtaining the refrigeration parameters of the refrigeration device according to the cooking appliance working state, the range hood working state, the environmental parameters, and the preset parameters, and controlling the refrigeration device to operate according to the refrigeration parameters includes:
[0085] S311. If both the cooking appliance working state and the range hood working state are in the unactivated state. For example, when the user is preparing food, there is no need to activate the cooking appliance and the range hood. In this case, it is necessary to separately activate the refrigeration device to provide a comfortable environment for the user.
[0086] S312. Then obtain the first temperature difference between the environmental temperature and the set refrigeration temperature.
[0087] S313. Obtain the first operating frequency range of the compressor of the refrigeration device according to the first temperature difference.
[0088] S314. Control the refrigeration device to operate according to the first operating frequency range and the set refrigeration wind force level.
[0089] When both the cooking appliance and the range hood are not activated, the refrigeration device does not need to be linked with the range hood and the cooking appliance. According to the first temperature difference between the set refrigeration temperature manually set by the user and the environmental temperature, the obtained first operating frequency range of the compressor is used to control the refrigeration device to operate according to the first operating frequency range and the set refrigeration wind force level manually set by the user, which can better meet the user's demand for air temperature in the current state, enabling each user to perform operations without firing, such as preparing food, in a comfortable environment and improving the user experience.
[0090] In a specific embodiment, the set refrigeration temperature can be selected as a fixed value between 20°C and 30°C, and the user can set it according to their own feeling; in this embodiment, the set refrigeration temperature is preferably 22°C. There is a first parameter table preset in the refrigeration device, and the corresponding first operating frequency range and its maximum value can be obtained from the first parameter table according to the first temperature difference. Refer to Table 1 below. When the first temperature difference is 8°C, in the range of 5°C ≤ ΔT1 < 10°C, the first operating frequency range of the compressor corresponds to a maximum of 60 Hz. At this time, control the compressor of the refrigeration device to operate at a maximum of 60 Hz and execute according to the set refrigeration wind force level.
[0091] Table 1. First Parameter Table
[0092] <![CDATA[First temperature difference ΔT1]]> The maximum value of the first operating frequency range of the compressor <![CDATA[0℃≤ΔT1<5℃]]> 40Hz <![CDATA[5℃≤ΔT1<10℃]]> 60Hz <![CDATA[10℃≤ΔT1<15℃]]> 80Hz <![CDATA[15℃≤ΔT1<20℃]]> 100Hz <![CDATA[20℃≤ΔT1]]> 120Hz
[0093] In one embodiment, obtaining the refrigeration parameters of the refrigeration device according to the cooking appliance working state, the range hood working state, the environmental parameters, and the preset parameters, and controlling the refrigeration device to operate according to the refrigeration parameters includes:
[0094] S321. If the working state of the cooker is on and in a state of being linked with the refrigeration device, and the working state of the range hood is on and not linked with the refrigeration device;
[0095] S322. Then obtain the first temperature difference between the ambient temperature and the set refrigeration temperature;
[0096] S323. Obtain the set range hood wind force level manually set by the user;
[0097] S324. According to the first temperature difference and the set range hood wind force level, obtain the second operating frequency range of the compressor of the refrigeration device;
[0098] S325. Control the refrigeration device to operate according to the second operating frequency range and the set refrigeration wind force level.
[0099] When both the cooker and the range hood are on, but only the cooker is linked with the refrigeration device and the range hood is not linked with the refrigeration device, according to the first temperature difference between the set refrigeration temperature manually set by the user and the ambient temperature, and the set range hood wind force level manually set by the user, obtain the second operating frequency range of the compressor of the refrigeration device, and control the refrigeration device to operate according to the second operating frequency range and the set refrigeration wind force level manually set by the user, which can fully consider the influence of the on states of the range hood and the cooker on the air circulation state and heat load in the kitchen, make the operation of the refrigeration device more in line with the user's demand for air temperature in the current state, enable each user to perform cooking operations in a comfortable environment, without the user having to repeatedly adjust the refrigeration device, and improve the user experience.
[0100] In a specific embodiment, the set refrigeration temperature can be selected as a fixed value between 20°C and 30°C, and the user can set it according to their own feeling; in this embodiment, the set refrigeration temperature can be preferably 22°C. There is a second parameter table preset in the refrigeration device, and the corresponding second operating frequency range and its maximum value can be obtained in the second parameter table according to the first temperature difference and the set range hood wind force level. Refer to Table 2 below. When the first temperature difference is 8°C, it is in the range of 5°C ≤ ΔT1 < 10°C. If the set range hood wind force level is low, the second operating frequency range of the compressor corresponds to a maximum of 80Hz. At this time, control the compressor of the refrigeration device to run at a maximum of 80Hz and execute according to the set refrigeration wind force level; if the set range hood wind force level is high, the second operating frequency range of the compressor corresponds to a maximum of 120Hz. At this time, control the compressor of the refrigeration device to run at a maximum of 120Hz and execute according to the set refrigeration wind force level.
[0101] Table 2. Second Parameter Table
[0102]
[0103]
[0104] In one embodiment, obtaining the refrigeration parameter of the refrigeration device according to the cooking appliance working state, the range hood working state, the environmental parameter and the preset parameter, and controlling the refrigeration device to operate according to the refrigeration parameter includes:
[0105] S331. If both the cooking appliance working state and the range hood working state are in an on state and linked to the refrigeration device;
[0106] S332. Then obtain a first temperature difference between the environmental temperature and the set refrigeration temperature;
[0107] S333. Obtain a set firepower level and a set range hood wind power level manually set by the user;
[0108] S334. According to the first temperature difference, the set firepower level and the set range hood wind power level, obtain a third operating frequency range of the compressor of the refrigeration device;
[0109] S335. Control the refrigeration device to operate according to the third operating frequency range and the set refrigeration wind power level.
[0110] If both the cooking appliance and the range hood are on and linked to the refrigeration device, according to the first temperature difference between the set refrigeration temperature manually set by the user and the environmental temperature, the set firepower level manually set by the user and the set range hood wind power level, obtain a third operating frequency range of the compressor of the refrigeration device, and control the refrigeration device to operate according to the third operating frequency range and the set refrigeration wind power level manually set by the user, which can fully consider the influence of the on states of the range hood and the cooking appliance on the air circulation state and heat load in the kitchen, make the operation of the refrigeration device more in line with the user's demand for air temperature in the current state, enable each user to perform cooking operations in a comfortable environment, and eliminate the need for the user to repeatedly adjust the refrigeration device, thus improving the user experience.
[0111] In a specific embodiment, the set refrigeration temperature can be selected as a fixed value between 20°C and 30°C, and the user can set it according to their own feeling; in this embodiment, the set refrigeration temperature can preferably be 22°C. There is a third parameter table preset in the refrigeration device. According to the first temperature difference, the set firepower level, and the set range hood wind speed level, the corresponding third operating frequency range and its maximum value can be obtained from the third parameter table. Referring to Table 3 below, when the first temperature difference is 8°C, it is in the range of 5°C ≤ ΔT1 < 10°C. If the set firepower level is 1st gear and the corresponding set range hood wind speed level is low gear, the maximum third operating frequency range of the compressor is 80Hz. At this time, control the compressor of the refrigeration device to run at a maximum of 80Hz and execute according to the set refrigeration wind speed level; if the set firepower level is 3rd gear and the corresponding set range hood wind speed level is high gear, the third operating frequency range of the compressor corresponds to a maximum of 120Hz. At this time, control the compressor of the refrigeration device to run at a maximum of 120Hz and execute according to the set refrigeration wind speed level.
[0112] Table 3, Third Parameter Table
[0113]
[0114] In one embodiment, obtaining the preset parameters of the refrigeration device and obtaining the environmental parameters includes:
[0115] S22. Obtain the preset refrigeration temperature preset in the refrigeration device and obtain the environmental temperature.
[0116] In this embodiment, the preset refrigeration temperature is preset in the refrigeration device. When the user does not manually set the set refrigeration temperature of the refrigeration device, the refrigeration device automatically obtains the preset refrigeration temperature and automatically obtains the environmental temperature. Both the preset refrigeration temperature and the environmental temperature are linked to the working states of the stove and the range hood, which can more accurately realize the linkage of the stove, the range hood, and the refrigeration device, so as to more fully consider the influence of the opening states of the range hood and the stove on the air circulation state and heat load in the kitchen to obtain a better refrigeration effect.
[0117] In one embodiment, obtaining the refrigeration parameters of the refrigeration device according to the working state of the stove, the working state of the range hood, the environmental parameters, and the preset parameters, and controlling the refrigeration device to operate according to the refrigeration parameters includes:
[0118] S341. If both the working state of the stove and the working state of the range hood are in the unopened state;
[0119] S342. Then obtain the second temperature difference between the environmental temperature and the preset refrigeration temperature;
[0120] S343. Obtain the fourth operating frequency range of the compressor of the refrigeration device and the first operating wind speed gear of the refrigeration device according to the second temperature difference;
[0121] S344. Control the refrigeration device to operate according to the fourth operating frequency range and the first operating wind speed gear.
[0122] When neither the cooker nor the range hood is turned on, the refrigeration device does not need to be linked with the range hood and the cooker. According to the second temperature difference between the preset refrigeration temperature of the refrigeration device and the ambient temperature, obtain the fourth operating frequency range of the compressor and the first operating wind speed gear, and control the refrigeration device to operate according to the fourth operating frequency range and the first operating wind speed gear, which can better meet the user's demand for air temperature in the current state, so that each user can perform operations such as preparing dishes without firing in an environment where they feel comfortable, improving the user experience.
[0123] In a specific embodiment, the preset refrigeration temperature can be a fixed value between 20°C and 30°C; in this embodiment, the preset refrigeration temperature can preferably be 22°C. There is a fourth parameter table preset in the refrigeration device. According to the second temperature difference, the corresponding fourth operating frequency range, the highest frequency value and the first operating wind speed gear can be obtained in the fourth parameter table. Refer to Table 4 below. When the second temperature difference is 8°C, in the range of 5°C ≤ ΔT2 < 10°C, the fourth operating frequency range of the compressor corresponds to a maximum of 60 Hz, and the first operating wind speed gear corresponds to the medium wind speed gear. At this time, control the compressor of the refrigeration device to operate at a maximum of 60 Hz and execute according to the medium wind speed gear.
[0124] Table 4. Fourth Parameter Table
[0125]
[0126]
[0127] In one embodiment, the obtaining the refrigeration parameters of the refrigeration device according to the working state of the cooker, the working state of the range hood, the environmental parameters and the preset parameters, and controlling the refrigeration device to operate according to the refrigeration parameters includes:
[0128] S351. If the working state of the cooker is on and in a state of being linked with the refrigeration device, and the working state of the range hood is on and not in a state of being linked with the refrigeration device;
[0129] S352. Then obtain the second temperature difference between the ambient temperature and the preset refrigeration temperature;
[0130] S353. Obtain the set range hood wind speed gear manually set by the user;
[0131] S354. Obtain the fifth operating frequency range of the compressor of the refrigeration device and the second operating wind speed gear of the refrigeration device according to the second temperature difference and the set range hood wind speed gear.
[0132] S355. Control the refrigeration device to operate according to the fifth operating frequency range and the second operating wind speed gear.
[0133] If both the cooker and the range hood are turned on, but only the cooker is linked with the refrigeration device and the range hood is not linked with the refrigeration device, according to the second temperature difference between the preset refrigeration temperature and the ambient temperature preset in the refrigeration device, and the set range hood wind speed gear manually set by the user, obtain the fifth operating frequency range of the compressor of the refrigeration device and the second operating wind speed gear, and control the refrigeration device to operate according to the fifth operating frequency range and the second operating wind speed gear, which can fully consider the influence of the on-off states of the range hood and the cooker on the air circulation state and heat load in the kitchen, make the operation of the refrigeration device more in line with the user's demand for air temperature in the current state, enable each user to perform cooking operations in a comfortable environment, and eliminate the need for the user to repeatedly adjust the refrigeration device, thus improving the user experience.
[0134] In a specific embodiment, the preset refrigeration temperature can be a fixed value between 20°C and 30°C; in this embodiment, the preset refrigeration temperature is preferably 22°C. The fifth operating frequency can be the highest frequency at which the compressor operates. There is a fifth parameter table preset in the refrigeration device, and the corresponding fifth operating frequency range, the highest frequency value, and the second operating wind speed gear can be obtained from the fifth parameter table according to the second temperature difference and the set range hood wind speed gear. Refer to Table 5 below. When the second temperature difference is 8°C and it is in the range of 5°C ≤ ΔT2 < 10°C, if the set range hood wind speed gear is the low gear, the fifth operating frequency range of the compressor corresponds to a maximum of 80 Hz, and the second operating wind speed gear corresponds to the high wind gear. At this time, control the compressor of the refrigeration device to operate at a maximum of 80 Hz and execute according to the high wind gear.
[0135] Table 5. Fifth Parameter Table
[0136]
[0137] In one embodiment, the obtaining the refrigeration parameters of the refrigeration device according to the cooker working state, the range hood working state, the environmental parameters, and the preset parameters, and controlling the refrigeration device to operate according to the refrigeration parameters includes:
[0138] S361. If both the cooker working state and the range hood working state are in the on state and linked with the refrigeration device;
[0139] S362. Then obtain the second temperature difference between the ambient temperature and the preset refrigeration temperature;
[0140] S363. Obtain the set fire power level and the set range hood wind power level manually set by the user;
[0141] S364. According to the second temperature difference, the set fire power level and the set range hood wind power level, obtain the sixth operating frequency range of the compressor of the refrigeration device and the third operating wind power level of the refrigeration device;
[0142] S365. Control the refrigeration device to operate according to the sixth operating frequency range and the third operating wind power level.
[0143] If both the stove and the range hood are turned on and linked with the refrigeration device, according to the second temperature difference between the preset refrigeration temperature and the ambient temperature preset in the refrigeration device, the set fire power level manually set by the user, and the set range hood wind power level, obtain the sixth operating frequency range of the compressor of the refrigeration device and the third operating wind power level of the refrigeration device, and control the refrigeration device to operate according to the sixth operating frequency range and the third operating wind power level, then the influence of the on-off states of the range hood and the stove on the air circulation state and the heat load in the kitchen can be fully considered, making the operation of the refrigeration device more in line with the user's demand for the air temperature in the current state, enabling each user to perform cooking operations in a comfortable environment without the user having to repeatedly adjust the refrigeration device, thus improving the user experience.
[0144] In a specific embodiment, the preset refrigeration temperature can be a fixed value between 20°C and 30°C; in this embodiment, the preset refrigeration temperature can be preferably 22°C. There is a sixth parameter table preset in the refrigeration device, and the corresponding sixth operating frequency range, the highest frequency value, and the third operating wind power level can be obtained from the sixth parameter table according to the second temperature difference, the set fire power level, and the set range hood wind power level. Refer to Table 6 below. When the second temperature difference is 8°C, in the range of 5°C ≤ ΔT2 < 10°C, if the set fire power level is 1st gear and the corresponding set range hood wind power level is the low gear, then the sixth operating frequency range of the compressor corresponds to a maximum of 80 Hz, and the third operating wind power level corresponds to the high wind gear. At this time, control the compressor of the refrigeration device to operate at a maximum of 80 Hz and execute according to the high wind gear.
[0145] Table 6. Sixth Parameter Table
[0146]
[0147]
[0148] According to an embodiment of the present invention, on the other hand, there is also provided a computer-readable storage medium storing computer instructions, and when the computer instructions are executed, the above control method of the refrigeration device is implemented.
[0149] The computer-readable storage medium improved in this embodiment has all the technical effects of the above control method of the refrigeration device by adopting the above control method of the refrigeration device.
[0150] According to an embodiment of the present invention, on the other hand, a refrigeration device is further provided, including a first signal acquisition component, a second signal acquisition component, a third signal acquisition component, a fourth signal acquisition component, a calculation module, and a controller: The first signal acquisition component is used to acquire the working state of the cooking appliance; the second signal acquisition component is used to acquire the working state of the range hood; the third signal acquisition component is used to acquire the preset parameters of the refrigeration device; the fourth signal acquisition component is used to acquire the environmental parameters; the calculation module is communicatively connected to the first signal acquisition component, the second signal acquisition component, the third signal acquisition component, and the fourth signal acquisition component; the calculation module is used to execute the above control method of the refrigeration device to obtain the refrigeration parameters of the refrigeration device; the controller is communicatively connected to the first signal acquisition component, the second signal acquisition component, the third signal acquisition component, the fourth signal acquisition component, and the calculation module; and is used to control the refrigeration device to operate according to the refrigeration parameters.
[0151] The refrigeration parameters of the refrigeration device are obtained according to the working state of the cooking appliance acquired by the first signal acquisition component, the working state of the range hood acquired by the second signal acquisition component, the environmental parameters acquired by the fourth signal acquisition component, and the preset parameters of the refrigeration device acquired by the third signal acquisition component, realizing the linkage of the cooking appliance, the range hood, and the refrigeration device, fully considering the influence of the opening states of the range hood and the cooking appliance on the air circulation state and heat load in the kitchen, avoiding the influence of the range hood and the cooking appliance on the refrigeration effect of the refrigeration device, ensuring that the refrigeration device can have a good refrigeration effect in different opening states of the range hood and the cooking appliance, without the user having to adjust the relevant settings of the refrigeration device by themselves, simplifying the operation, and improving the user experience. Moreover, in this embodiment, through the linkage of the range hood, the cooking appliance, and the refrigeration device, not only can an appropriate refrigeration capacity be output to meet different cooling requirements, but also a more comfortable noise experience can be obtained.
[0152] Specifically, the first signal acquisition component and the cooking appliance can be interconnected wirelessly through wifi, Bluetooth, etc., or can be uniformly connected to the smart home platform through a smart device, and the linkage rules can be set through an APP, a voice assistant, etc., or can also be connected to each other by wire, and the linkage rules can be set with a hand controller, a control panel, etc.
[0153] The second signal acquisition component and the range hood can be interconnected wirelessly through wifi, Bluetooth, etc., or can be uniformly connected to the smart home platform through a smart device, and the linkage rules can be set through an APP, a voice assistant, etc., or can also be connected to each other by wire, and the linkage rules can be set with a hand controller, a control panel, etc.
[0154] The third signal acquisition component and the storage module of the refrigeration equipment can be interconnected through wireless methods such as WiFi and Bluetooth, or can be connected to the smart home platform through smart devices, and linkage rules can be set through APP, voice assistants, etc., or they can be connected to each other through wired methods, and linkage rules can be set using a hand operator, control panel, etc.
[0155] The fourth signal component and environmental sensing modules such as temperature sensors can be interconnected through wireless methods such as WiFi and Bluetooth, or can be connected to the smart home platform through smart devices, and linkage rules can be set through APP, voice assistants, etc., or they can be connected to each other through wired methods, and linkage rules can be set using hand operators, control panels, etc.
[0156] Furthermore, the refrigeration equipment also includes a storage module, which can store a preset refrigeration temperature. The storage module also stores the above-mentioned first parameter table, second parameter table, third parameter table, fourth parameter table, fifth parameter table and sixth parameter table. The calculation module can calculate the first temperature difference and the second temperature difference, and bring the first temperature difference or the second temperature difference and other parameters into the corresponding table to obtain the refrigeration parameters corresponding to the refrigeration equipment.
[0157] Specifically, the refrigeration equipment is an air conditioner.
[0158] Although the embodiments of the present invention have been described in conjunction with the accompanying drawings, those skilled in the art may make various modifications and variations without departing from the spirit and scope of the present invention, and such modifications and variations are all within the scope defined by the present application.
Claims
1. A control method for a refrigeration device, characterized in that, Including: Obtain the working state of the cooking appliance and the working state of the range hood. Obtain the preset parameters of the refrigeration device and obtain the environmental parameters. Obtain the refrigeration parameters of the refrigeration device according to the working state of the cooking appliance, the working state of the range hood, the environmental parameters and the preset parameters, and control the refrigeration device to operate according to the refrigeration parameters.
2. The control method of the refrigeration equipment according to claim 1, wherein, The obtaining the preset parameters of the refrigeration device and obtaining the environmental parameters includes: Obtain the set refrigeration temperature of the refrigeration device manually set by the user, obtain the set refrigeration wind force level of the refrigeration device manually set by the user; and obtain the environmental temperature.
3. The control method of the refrigeration equipment according to claim 2, characterized in that The obtaining the refrigeration parameters of the refrigeration device according to the working state of the cooking appliance, the working state of the range hood, the environmental parameters and the preset parameters, and controlling the refrigeration device to operate according to the refrigeration parameters includes: If both the working state of the cooking appliance and the working state of the range hood are in the unopened state; Then obtain the first temperature difference between the environmental temperature and the set refrigeration temperature; and obtain the set range hood wind force level manually set by the user; Obtain the first operating frequency range of the compressor of the refrigeration device according to the first temperature difference; Control the refrigeration device to operate according to the first operating frequency range and the set refrigeration wind force level.
4. The control method of the refrigeration equipment according to claim 2, characterized in that, The obtaining the refrigeration parameters of the refrigeration device according to the working state of the cooking appliance, the working state of the range hood, the environmental parameters and the preset parameters, and controlling the refrigeration device to operate according to the refrigeration parameters includes: If the working state of the cooking appliance is in the opened state and is in a state of being linked with the refrigeration device, and the working state of the range hood is in the opened state and is not in a state of being linked with the refrigeration device; Then obtain the first temperature difference between the environmental temperature and the set refrigeration temperature; Obtain the set range hood wind force level manually set by the user; Obtain the second operating frequency range of the compressor of the refrigeration device according to the first temperature difference and the set range hood wind force level; Control the refrigeration device to operate according to the second operating frequency range and the set refrigeration wind force level.
5. The control method of the refrigeration device according to claim 2, characterized in that, The obtaining the refrigeration parameters of the refrigeration device according to the working state of the cooking appliance, the working state of the range hood, the environmental parameters and the preset parameters, and controlling the refrigeration device to operate according to the refrigeration parameters includes: If both the working state of the cooking appliance and the working state of the range hood are in the opened state and are in a state of being linked with the refrigeration device; Then obtain the first temperature difference between the environmental temperature and the set refrigeration temperature; Obtain the set fire power level and the set range hood wind force level manually set by the user; Obtain the third operating frequency range of the compressor of the refrigeration device according to the first temperature difference, the set fire power level and the set range hood wind force level; Control the refrigeration device to operate according to the third operating frequency range and the set refrigeration wind force level.
6. The control method of the refrigeration equipment according to claim 1, characterized in that, The obtaining the preset parameters of the refrigeration device and obtaining the environmental parameters includes: Obtain the preset refrigeration temperature preset in the refrigeration device, and obtain the environmental temperature.
7. The control method of the refrigeration equipment according to claim 6, characterized in that, Obtaining the refrigeration parameters of the refrigeration device according to the working state of the cooking appliance, the working state of the range hood, the environmental parameters, and the preset parameters, and controlling the refrigeration device to operate according to the refrigeration parameters includes: If both the working state of the cooking appliance and the working state of the range hood are in the off state; Then obtain the second temperature difference between the environmental temperature and the preset refrigeration temperature; Obtain the fourth operating frequency range of the compressor of the refrigeration device and the first operating wind speed gear of the refrigeration device according to the second temperature difference; Control the refrigeration device to operate according to the fourth operating frequency range and the first operating wind speed gear.
8. The control method of the refrigeration equipment according to claim 6, characterized in that, Obtaining the refrigeration parameters of the refrigeration device according to the working state of the cooking appliance, the working state of the range hood, the environmental parameters, and the preset parameters, and controlling the refrigeration device to operate according to the refrigeration parameters includes: If the working state of the cooking appliance is in the on state and is linked with the refrigeration device, and the working state of the range hood is in the on state and is not linked with the refrigeration device; Then obtain the second temperature difference between the environmental temperature and the preset refrigeration temperature; Obtain the set range hood wind speed gear manually set by the user; Obtain the fifth operating frequency range of the compressor of the refrigeration device and the second operating wind speed gear of the refrigeration device according to the second temperature difference and the set range hood wind speed gear; Control the refrigeration device to operate according to the fifth operating frequency range and the second operating wind speed gear.
9. The control method of the refrigeration device according to claim 6, characterized in that, Obtaining the refrigeration parameters of the refrigeration device according to the working state of the cooking appliance, the working state of the range hood, the environmental parameters, and the preset parameters, and controlling the refrigeration device to operate according to the refrigeration parameters includes: If both the working state of the cooking appliance and the working state of the range hood are in the on state and are linked with the refrigeration device; Then obtain the second temperature difference between the environmental temperature and the preset refrigeration temperature; Obtain the set fire power gear and the set range hood wind speed gear manually set by the user; Obtain the sixth operating frequency range of the compressor of the refrigeration device and the third operating wind speed gear of the refrigeration device according to the second temperature difference, the set fire power gear, and the set range hood wind speed gear; Control the refrigeration device to operate according to the sixth operating frequency range and the third operating wind speed gear.
10. A computer-readable storage medium, characterized in that, The computer-readable storage medium stores computer instructions, and when the computer instructions are executed, the control method of the refrigeration device according to any one of claims 1 to 9 above is implemented.
11. A refrigeration device, characterized in that, Including: The first signal acquisition component is used to acquire the working state of the cooking appliance; The second signal acquisition component is used to acquire the working state of the range hood; The third signal acquisition component is used to acquire the preset parameters of the refrigeration device; The fourth signal acquisition component is used to acquire environmental parameters; The calculation module is communicatively connected to the first signal acquisition component, the second signal acquisition component, the third signal acquisition component, and the fourth signal acquisition component; the calculation module is used to execute the control method of the refrigeration device according to any one of claims 1 to 9 to obtain the refrigeration parameters of the refrigeration device; A controller, communicatively connected to the first signal acquisition component, the second signal acquisition component, the third signal acquisition component, the fourth signal acquisition component, and the calculation module; configured to control the refrigeration device to operate according to the refrigeration parameters.