Drying control method and device, storage medium and electronic equipment
By obtaining the initial ambient temperature of the washing equipment from the cloud server and controlling the temperature of the exhaust gas, the problem of condensate generation during the drying process is solved, resulting in better drying effect and environmental protection.
Patent Information
- Application Number
- CN202410541801.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-04-30
- Publication Date
- 2025-10-31
AI Technical Summary
In the existing technology, the gas discharged from the drying equipment is easily affected by the outdoor ambient temperature, resulting in condensation, which causes furniture to become damp or the ground to accumulate water, affecting users' lives.
The initial ambient temperature of the area where the washing equipment is located is obtained by a cloud server. Big data is used to calculate the condensation temperature threshold, and the temperature of the exhaust gas is controlled to be no higher than the condensation temperature threshold to avoid the generation of condensate.
It improves the accuracy of the initial ambient temperature during the drying process, effectively avoids the generation of condensation, and protects the furniture and the environment from drying.
Smart Images

Figure CN120872055A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of computer technology, and in particular to a drying control method, apparatus, storage medium and electronic device. Background Technology
[0002] Existing technologies, such as dishwashers and steam ovens, can dry items. These technologies often use fans to draw in air and remove moisture from the items. However, during the drying process, the air discharged from the equipment's vents is easily affected by the ambient outdoor temperature, resulting in a large amount of condensation. This condensation can cause furniture such as cabinets to become damp and damaged, or cause water accumulation on the floor, affecting users' daily lives. Therefore, there is a need to propose a drying method that can reduce the generation of condensation. Summary of the Invention
[0003] This application provides a drying control method, apparatus, storage medium, and electronic device. It can obtain the initial ambient temperature of the area where the washing equipment is located through big data from a cloud server, improving the accuracy of the initial ambient temperature and thus performing drying treatment based on the initial ambient temperature, better avoiding the generation of condensate during the drying process. The technical solution is as follows:
[0004] In a first aspect, embodiments of this application provide a drying control method applied to a washing device, the method comprising:
[0005] If a drying instruction is received from the target user, the end time of the last program containing the heating process on the washing device is obtained, and the interval between the end time and the end time is calculated. The program containing the heating process is any sequence of events that causes the cavity temperature of the washing device to rise.
[0006] If the interval is less than the preset time interval, the target area where the washing device is located is determined, the ambient temperature of the target area is queried in the cloud server, and the ambient temperature is confirmed as the initial ambient temperature.
[0007] The washing equipment is controlled to perform a drying process based on the initial ambient temperature.
[0008] Secondly, embodiments of this application provide a drying control method applied to a dishwasher, characterized in that the method includes:
[0009] If a drying instruction is received from the target user, the end time of the last program containing the heating process in the dishwasher is obtained, and the interval between the end time and the end time is calculated. The program containing the heating process is any sequence of events that causes the cavity temperature of the dishwasher to rise.
[0010] If the running interval is less than the preset time interval, the target area where the dishwasher is located is determined, the ambient temperature of the target area is queried in the cloud server, and the ambient temperature is confirmed as the initial ambient temperature.
[0011] The dishwasher is controlled to perform the drying process based on the initial ambient temperature.
[0012] Thirdly, embodiments of this application provide a drying control device, the device comprising:
[0013] An interval time acquisition module is used to acquire the end time of the last run of a program containing a heating process on the washing equipment, and to calculate the interval time from the end time of the run. The program containing the heating process is any sequence of events that causes the cavity temperature of the washing equipment to rise.
[0014] The initial temperature acquisition module is used to determine the target area where the washing device is located if the interval is less than a preset time interval, query the ambient temperature of the target area in the cloud server, and confirm the ambient temperature as the initial ambient temperature.
[0015] A drying module is used to control the washing equipment to perform a drying process based on the initial ambient temperature.
[0016] Fourthly, embodiments of this application provide a computer storage medium storing a plurality of instructions adapted for loading by a processor and executing the above-described method steps.
[0017] Fifthly, embodiments of this application provide an electronic device, which may include: a processor and a memory; wherein the memory stores a computer program adapted to be loaded by the processor and to execute the above-described method steps.
[0018] In one or more embodiments of this application, if a drying instruction is received from a target user, the interval between the last execution end time of a program containing a heating process on the washing device is obtained. If the interval is less than a preset time interval, the target area where the washing device is located is determined. The ambient temperature of the target area is queried from a cloud server and confirmed as the initial ambient temperature. The washing device is then controlled to perform drying based on the initial ambient temperature. Obtaining the initial ambient temperature of the area where the washing device is located through big data from the cloud server improves the accuracy of the initial ambient temperature, thereby better avoiding the generation of condensate during the drying process. Attached Figure Description
[0019] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0020] Figure 1 This is a schematic diagram illustrating an example of interaction between a cloud server and an electronic device, provided in an embodiment of this application.
[0021] Figure 2 This is a schematic flowchart of a drying control method provided in an embodiment of this application;
[0022] Figure 3 This is a schematic flowchart of a drying control method provided in an embodiment of this application;
[0023] Figure 4 This is an example diagram illustrating the determination of areas with large temperature differences provided in an embodiment of this application;
[0024] Figure 5 This is a schematic flowchart of a drying control method provided in an embodiment of this application;
[0025] Figure 6 This is a schematic flowchart of a drying control method provided in an embodiment of this application;
[0026] Figure 7 This is a schematic diagram of the structure of a drying control device provided in an embodiment of this application;
[0027] Figure 8 This is a schematic diagram of the structure of a drying control device provided in an embodiment of this application;
[0028] Figure 9 This is a schematic diagram of the structure of an electronic device provided in an embodiment of this application. Detailed Implementation
[0029] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.
[0030] The drying control method provided in this application embodiment can be implemented using a computer program and can run on a drying control device based on the von Neumann architecture. This computer program can be integrated into the application or run as a standalone tool application. The drying control device can be a washing machine, or a module or application program within the washing machine used to implement the drying control method. The washing machine is an electronic device capable of drying objects, such as a dishwasher. A dishwasher can continue to dry objects after washing them. The washing machine may include a cavity for accommodating the objects being processed. For example, if the washing machine is a dishwasher, the user can place objects into the cavity so that the washing machine can wash the objects inside the cavity and then dry them after washing. Some washing equipment may contain temperature sensors. Temperature sensors can be used to detect the temperature of the washing equipment and use the equipment temperature as the ambient temperature of the environment in which the washing equipment is located. It can be understood that the water inlet of electronic devices such as dishwashers can be used to wash the items contained in the dishwasher. If the washing equipment is an electronic device such as a dishwasher that has water inlet, the temperature sensor can also detect the temperature of the water inlet and use the water inlet temperature as the ambient temperature.
[0031] Please see also Figure 1This embodiment of the application provides an example of interaction between a cloud server and an electronic device. When a washing machine is drying, it can discharge gas from its cavity into the external environment. If the temperature of the discharged gas does not match the ambient temperature, condensation may occur. This condensation can damage household appliances and cause water accumulation around the equipment, resulting in inconvenience. Therefore, the drying control device needs to obtain the initial ambient temperature of the environment where the washing machine is located. The initial ambient temperature is the temperature of the surrounding environment before the washing machine begins drying. After obtaining the initial ambient temperature, the drying control device can calculate the condensation temperature threshold based on the initial ambient temperature and humidity. The condensation temperature refers to the temperature at which water vapor in a gas condenses into liquid water due to cooling under certain environmental conditions. The condensation temperature threshold is the temperature at which condensation occurs at the initial ambient temperature. Therefore, the drying control device can control the condensation temperature of the discharged gas from the washing machine to not exceed the condensation temperature threshold, thereby ensuring that the discharged gas does not condense in the external environment. Some washing machines may not have temperature sensors installed, or when the washing machine runs twice in a short period of time, the machine temperature and inlet water temperature may both be higher than the ambient temperature due to the heat generated during operation. This means the ambient temperature detected by the temperature sensor at this time differs from the actual ambient temperature and cannot be used as the initial ambient temperature. To eliminate these interference factors, the drying control device can obtain the initial ambient temperature of the environment where the washing machine is located from a cloud server.
[0032] The cloud server can connect and exchange data with all electronic devices, including washing machines. It can also store information about the owners of each electronic device. For example, a target user's electronic devices might include washing machines, electronic device A, and electronic device B; user A's electronic devices might include electronic devices C and D; and user B's electronic devices might include electronic device E. The cloud server can also determine the location of each electronic device. These areas can be divided according to preset rules, which can be initial settings of the drying control device or the cloud server, or settings by the user or relevant personnel. For example, areas can be divided by province, city, district, or by the Internet Protocol (IP) used by the electronic devices. Some electronic devices may have temperature sensors. Therefore, if the washing machine lacks a temperature sensor, or if the washing machine's temperature or inlet water temperature is too high due to continuous operation, the drying control device can obtain the ambient temperature of the target area from the cloud server as the initial ambient temperature. For instance, the cloud server can use the ambient temperature detected by the temperature sensors of other electronic devices in the target area as the ambient temperature of the target area.
[0033] The drying control method provided in this application will be described in detail below with reference to specific embodiments.
[0034] Please see Figure 2 This is a schematic flowchart illustrating a drying control method provided in an embodiment of this application. Figure 2 As shown, the method described in this application embodiment may include the following steps S101-S103.
[0035] S101, if a drying instruction is received from the target user, the end time of the last program containing the heating process on the washing equipment is obtained, and the interval between the end time and the end time is calculated.
[0036] Specifically, when a user wants to use the washing machine to dry items, they can place the items into the washing machine's cavity and then send a drying command to the washing machine. If the drying control device detects that the washing machine has received the drying command from the target user, it can first obtain the end time of the last program containing a heating process on the washing machine. The program containing the heating process can be any program that raises the temperature of the washing machine's cavity, such as washing, drying, or disinfecting and storing items in the cavity. The end time is the time it takes for the entire process containing the heating process to finish. Then, it calculates the interval between this end time and the last program's end time. The interval can be used to determine whether the washing machine is running continuously in a short period of time. The longer the interval, the longer the time since the last program containing the heating process, and the less the washing machine's temperature is affected by the last program containing the heating process. Conversely, the shorter the interval, the shorter the time since the last program containing the heating process, and the greater the influence of the last program on the washing machine's temperature.
[0037] S102, if the interval is less than the preset time interval, determine the target area where the washing equipment is located, query the ambient temperature of the target area in the cloud server and confirm the ambient temperature as the initial ambient temperature.
[0038] Specifically, the drying control device can determine whether the temperature of the washing equipment is affected by the previous program containing a heating process by using a preset time interval. This preset time interval can be the initial setting of the drying control device or set by the user or relevant personnel; for example, it can be 2 hours. If the interval is shorter than the preset time interval, it indicates that the temperature of the washing equipment is affected by the previous program containing a heating process. Even if a temperature sensor exists in the washing equipment, the temperature detected by the sensor cannot be used as the initial ambient temperature. Therefore, the drying control device can first determine the target area where the washing equipment is located. The target area is the area where the washing equipment is located after being divided according to preset division rules. These preset division rules can be the initial settings of the drying control device or cloud server, or they can be set by the user or relevant personnel. For example, the area can be divided according to province, city, district, or the IP address of the electronic device. The drying control device can access the cloud server connected to the washing equipment, query the ambient temperature of the target area, and then confirm this ambient temperature as the initial ambient temperature. The ambient temperature of the target area can be the temperature detected by other electronic devices in the target area. These other electronic devices can be electronic devices belonging to the same target user (excluding the washing equipment) or electronic devices owned by other users besides the target user.
[0039] S103, the drying process is carried out by the washing equipment based on the initial ambient temperature control.
[0040] Specifically, the drying control device can perform drying treatment on the washing equipment based on the initial ambient temperature, that is, dry the objects contained in the cavity, and ensure that the exhaust gas produced by the washing equipment will not condense at the initial ambient temperature and humidity during the drying process. For example, the drying control device can calculate the condensation temperature threshold of the exhaust gas from the washing equipment based on the initial ambient temperature. The condensation temperature threshold is the temperature at which condensation will occur at the initial ambient temperature. Therefore, when performing the drying treatment, the drying control device can control the condensation temperature of the exhaust gas from the washing equipment to not exceed the condensation temperature threshold, thereby ensuring that the exhaust gas will not produce condensation water in the external environment.
[0041] In this embodiment, if a drying command is received from a target user, the time interval between the end time of the program containing the heating process and the start time is obtained. If the time interval is less than a preset time interval, the target area where the washing device is located is determined. The ambient temperature of the target area is queried from the cloud server and confirmed as the initial ambient temperature. The washing device is then controlled to perform the drying process based on the initial ambient temperature. Obtaining the initial ambient temperature of the area where the washing device is located through big data from the cloud server improves the accuracy of the initial ambient temperature, thereby better avoiding the generation of condensate during the drying process.
[0042] Please see Figure 3 This is a schematic flowchart illustrating a drying control method provided in an embodiment of this application. Figure 3 As shown, the method described in this application embodiment may include the following steps S201-S208.
[0043] S201, if a drying instruction is received from the target user, the end time of the last program containing the heating process on the washing equipment is obtained, and the interval between the end time and the end time is calculated.
[0044] Specifically, when a user wants to use the washing machine to dry items, they can place the items into the washing machine's cavity and then send a drying command to the washing machine. If the drying control device detects that the washing machine has received the drying command from the target user, it can first obtain the end time of the last program containing a heating process on the washing machine. The program containing the heating process can be any program that raises the temperature of the washing machine's cavity, such as washing, drying, or disinfecting and storing items in the cavity. The end time is the time when the last program containing the heating process ended. Then, the interval time from this end time is calculated. The interval time can be used to determine whether the washing machine is running continuously in a short period of time. The longer the interval time, the longer the time since the program containing the heating process, and the less the washing machine temperature is affected by the program containing the heating process. Conversely, the shorter the interval time, the shorter the time since the program containing the heating process, and the greater the influence of the program containing the heating process on the washing machine temperature.
[0045] Optionally, the drying process can be a program that includes a heating process. If the washing equipment is a dishwasher or other washing machine, the user often washes the objects in the cavity first and then dries them. Therefore, when the drying control device receives the user's washing instruction, it can control the washing equipment to wash the objects. During the washing process, it can obtain the interval time and the initial ambient temperature. After the washing process is completed, the drying process is then carried out.
[0046] Optionally, users can directly send drying commands to the washing machine. When the drying control device detects the user's drying command, it can obtain the initial ambient temperature and perform the drying process. It is understood that the washing machine may have function buttons corresponding to washing and drying commands, which users can press to send these commands.
[0047] S202, determine whether the interval duration is less than the preset time interval.
[0048] Specifically, the drying control device can determine whether the temperature of the washing equipment is affected by a program containing a heating process by using a preset time interval. The preset time interval can be the initial setting of the drying control device or can be set by the user or relevant personnel, for example, it can be 4 hours. If yes, then step S203 is executed; otherwise, step S207 is executed.
[0049] Optionally, the preset time interval can be a fixed value or determined based on the previous program that included a heating process. It's understandable that even if all programs include a heating process, the temperature and duration used during heating can differ, thus affecting the temperature of the next drying process differently. For example, if the previous program included a heating process that washed and dried the object inside the cavity, the preset time interval could be 6 hours; if it included a rapid washing process, the preset time interval could be 1 hour; if it included a strong washing process, the preset time interval could be 2 hours; and if it included a gentle washing process, the preset time interval could be 3 hours. Among them, quick wash, strong wash, and gentle wash are all methods by which washing equipment washes objects inside the cavity. The washing time, washing water temperature, and washing intensity can vary. For example, the washing time of quick wash can be shorter, such as 20 minutes, the washing intensity of strong wash can be stronger, and the washing intensity of gentle wash can be weaker but the washing time is longer.
[0050] S203, Determine the target area where the washing equipment is located.
[0051] Specifically, if the interval is less than the preset time interval, it means that the temperature of the washing equipment will be affected by the program containing the heating process. Even if there is a temperature sensor in the washing equipment, the temperature detected by the temperature sensor cannot be used as the initial ambient temperature. Therefore, the drying control device can first determine the target area where the washing equipment is located. The target area is the area where the washing equipment is located after the area is divided according to the preset division rules. The preset division rules can be the initial settings of the drying control device or the cloud server, or they can be set by the user or relevant personnel. For example, the area can be divided according to the province, city, district, or the IP address of the electronic device.
[0052] S204, determine whether the target area is an area with a large temperature difference.
[0053] Specifically, the drying control device can access the cloud server to determine whether the target area is an area with a large temperature difference. If so, it executes step S205; otherwise, it executes step S206.
[0054] Optionally, the drying control device can query the temperature of the target area within a preset number of days via a cloud server. If the average temperature varies significantly each day within the preset number of days, or if the maximum and minimum temperatures vary significantly each day, the target area can be identified as an area with a large temperature difference. The average temperature is the average of all detected temperatures for that day, the maximum temperature can be the maximum value of all detected temperatures for that day, and the minimum temperature can be the minimum value of all detected temperatures for that day. For example, if the difference between the average temperatures of any two days within the preset number of days is greater than or equal to a first temperature difference, or if the difference between the maximum and minimum temperatures of any day within the preset number of days is greater than or equal to a second temperature difference, the target area can be identified as an area with a large temperature difference. The preset number of days, the first temperature difference, and the second temperature difference can be initial settings for the drying control device or can be set by the user or relevant personnel. The preset number of days can be 7 days, meaning the washing equipment can query the temperature of the target area over the past seven days via the cloud server. The first and second temperature differences can be the same or different; for example, both the first and second temperature differences can be 10 degrees Celsius.
[0055] Optionally, the drying control device can query the temperature of the target area within a preset number of days from the cloud server, provide the weather forecast for the target area within the preset number of days, or query the temperature detected by other electronic devices in the target area, excluding washing equipment, within the preset number of days from the cloud server.
[0056] Please see also Figure 4 This embodiment of the application provides an example of determining a region with a large temperature difference. If the drying control device receives the drying instruction on October 6th, and the preset number of days is 5, the drying control device can obtain the temperature of the target area from October 1st to October 5th through a cloud server. This temperature can include the highest and lowest temperatures detected each day, as well as the average temperature each day, which can be the average of the highest and lowest temperatures. If the first temperature difference is 10 degrees Celsius and the second temperature difference is 5 degrees Celsius, since the difference between the highest and lowest temperatures on October 1st is 10 degrees Celsius, which is equal to the first temperature difference, the target area can be determined to be a region with a large temperature difference. Furthermore, the difference between the average temperature on October 3rd and the average temperature on October 4th is 6 degrees Celsius, which is greater than the second temperature difference, so the target area can also be determined to be a region with a large temperature difference.
[0057] S205, obtain the historical initial ambient temperature corresponding to the previous preset number of drying processes, and determine the minimum value among the historical initial ambient temperatures as the initial ambient temperature.
[0058] Specifically, if the target area is not an area with a large temperature difference, it means that the daily temperature difference in the target area is small and the temperature change is small throughout the day. In this case, the drying control device can obtain the historical initial ambient temperature used by the washing equipment during the previous preset number of drying processes. The historical initial ambient temperature is the initial ambient temperature used by the drying control device to control the washing equipment during the drying process in the past. The drying control device can directly determine the minimum value of the historical initial ambient temperature as the initial ambient temperature used by the washing equipment in this washing process. The preset number of times can be the initial setting of the drying control device or can be set by the user or relevant personnel, for example, it can be 5 times.
[0059] Optionally, after acquiring the initial ambient temperature before each drying process, the drying control device can save the initial ambient temperature in local storage as a historical initial ambient temperature. This allows for direct retrieval of the historical initial ambient temperature from local storage when the target area is not an area with a large temperature difference. To save local storage space, the drying control device can also upload the initial ambient temperature to a cloud server for storage as a historical initial ambient temperature after acquiring the initial ambient temperature before each drying process. When the target area is not an area with a large temperature difference, the drying control device can retrieve the historical initial ambient temperature from the cloud server.
[0060] S206, query the ambient temperature of the target area in the cloud server and confirm the ambient temperature as the initial ambient temperature.
[0061] Specifically, if the target area has a large temperature difference, it means that the daily temperature difference or the temperature change within a day is large in the target area recently, making it impossible to calculate the initial ambient temperature based on historical initial ambient temperatures. In this case, the drying control device queries the ambient temperature of the target area from the cloud server and then confirms this ambient temperature as the initial ambient temperature. The ambient temperature of the target area can be the temperature detected by other electronic devices in the target area. These other electronic devices can be electronic devices belonging to the target user other than the washing equipment, or electronic devices owned by other users besides the target user.
[0062] Optionally, the drying control device can query a cloud server for first electronic devices owned by the target user, excluding washing equipment. The number of first electronic devices is an integer of at least one, and each first electronic device has a temperature sensor or the ability to detect ambient temperature; for example, it can be an air conditioner or other electronic device. The drying control device can obtain the first ambient temperature detected by the first electronic device for the target area, and then confirm the first ambient temperature as the initial ambient temperature. The first ambient temperature can be the current temperature detected by the first electronic device for the target area. For example, the drying control device can send a temperature detection command to the first electronic device via the cloud server. After receiving the temperature detection command, the first electronic device can detect the current ambient temperature as the first ambient temperature, and then send the first ambient temperature to the drying control device via the cloud server.
[0063] Optionally, if there are multiple first electronic devices, the acquired first ambient temperature can be multiple different values. The drying control device can calculate a first average temperature of the first ambient temperature, which is the average of all first ambient temperatures, and confirm the first average temperature as the initial ambient temperature; or, calculate a first median temperature of the first ambient temperature, which is the median of all first ambient temperatures, and confirm the first median temperature as the initial ambient temperature; or, calculate a first minimum temperature of the first ambient temperature, which is the smallest value among all first ambient temperatures, and confirm the first minimum temperature as the initial ambient temperature.
[0064] Optionally, the drying control device can query the cloud server for second electronic devices held by users other than the target user within the target area. The number of second electronic devices can be an initial setting of the drying control device or set by the user or relevant personnel. The second electronic devices can belong to the same user or different users. The drying control device can obtain the second ambient temperature detected by the second electronic device for the target area and then confirm the second ambient temperature as the initial ambient temperature. The second ambient temperature can be the current temperature detected by the second electronic device for the target area. For example, the drying control device can send a temperature detection command to the second electronic device through the cloud server. After receiving the temperature detection command, the second electronic device can detect the current ambient temperature as the second ambient temperature and then send the first ambient temperature to the drying control device via the cloud server.
[0065] Optionally, the drying control device may calculate a second average temperature of the second ambient temperature, which is the average of all second ambient temperatures, and use the second average temperature as the initial ambient temperature; or, it may calculate a second median temperature of the second ambient temperature, which is the median of all second ambient temperatures, and use the second median temperature as the initial ambient temperature; or, it may calculate a second minimum temperature of the second ambient temperature, which is the smallest value among all second ambient temperatures, and use the second minimum temperature as the initial ambient temperature.
[0066] Optionally, the drying control device can also determine the initial ambient temperature by combining the first ambient temperature and the second ambient temperature. The drying control device can calculate a third temperature average of the first ambient temperature and the second ambient temperature, where the third temperature average is the average of all first ambient temperatures and all second ambient temperatures, and confirm the third temperature average as the initial ambient temperature. Alternatively, it can calculate the third temperature median of the first ambient temperature and the second ambient temperature, where the third temperature median is the median of all first ambient temperatures and all second ambient temperatures, and confirm the third temperature median as the initial ambient temperature. Or, it can calculate the third temperature minimum of the first ambient temperature and the second ambient temperature, where the third temperature minimum is the smallest value among all first ambient temperatures and all second ambient temperatures, and confirm the third temperature minimum as the initial ambient temperature.
[0067] S207 performs temperature detection processing on the inlet water of the washing equipment to obtain the inlet water temperature and determines the inlet water temperature as the initial ambient temperature.
[0068] Specifically, if the interval is longer than the preset time interval, it means that the temperature of the washing equipment will not be affected by the program containing the heating process. If there is a temperature sensor in the washing equipment, the drying control device can detect the temperature of the water entering the washing equipment to obtain the water temperature, and then directly determine the water temperature as the initial ambient temperature.
[0069] Optionally, since there is water inlet in the cavity, the washing device may also include a bottom water cup. The bottom water cup is placed below the cavity and can collect the water accumulated due to water inlet in the cavity. A temperature sensor may also be installed on the bottom water cup of the washing device. Since washing devices such as dishwashers can recycle water, the inlet water will flow into the bottom water cup. Therefore, the washing device can use the temperature sensor installed on the bottom water cup to detect the temperature of the water in the bottom water cup to obtain the inlet water temperature.
[0070] S208, calculates the condensation temperature threshold of the gas discharged from the washing equipment based on the initial ambient temperature, and controls the washing equipment to perform drying treatment based on the condensation temperature threshold.
[0071] Specifically, the drying control device can dry the washing equipment based on the initial ambient temperature, that is, dry the objects contained in the cavity, and ensure that the exhaust gas produced by the washing equipment will not condense at the initial ambient temperature and humidity during the drying process. The drying control device can calculate the condensation temperature threshold of the exhaust gas from the washing equipment based on the initial ambient temperature. The condensation temperature threshold is the temperature at which condensation will occur at the initial ambient temperature. Therefore, when the drying control device performs the drying process, it can control the condensation temperature of the exhaust gas from the washing equipment to not exceed the condensation temperature threshold, thereby ensuring that the exhaust gas will not produce condensation water in the external environment.
[0072] In this embodiment, if a drying command is received from the target user, the time interval since the last execution of a program containing a heating process is obtained. Based on the interval, it is determined whether the temperature of the washing equipment is affected by the temperature of the program containing the heating process. If the interval is longer than a preset time interval, the temperature of the water entering the washing equipment is detected to obtain the water temperature, which is then determined as the initial ambient temperature. If there is no continuous operation, the washing equipment temperature can be directly detected without accessing a remote server, saving data transmission and data calculation costs and achieving a rapid response in the drying process. If the interval is shorter than the preset time interval, it is further determined whether the target area where the washing equipment is located is a high-temperature area. If not, the historical initial ambient temperature corresponding to the previous preset number of drying processes is obtained, and the minimum value among the historical initial ambient temperatures is determined as the initial ambient temperature. The current initial ambient temperature is inferred from the previous historical initial ambient temperatures of the washing equipment, further improving the rapid response of the drying process. If the historical initial ambient temperature is not suitable, the ambient temperature of the target area can be queried in the cloud server and confirmed as the initial ambient temperature. Then, the condensation temperature threshold of the gas discharged from the washing equipment is calculated based on the initial ambient temperature. The washing equipment is then controlled to perform drying treatment based on the condensation temperature threshold. By obtaining the initial ambient temperature of the area where the washing equipment is located through big data in the cloud server, the accuracy of the initial ambient temperature is improved. Thus, the drying treatment is performed based on the initial ambient temperature, which better avoids the generation of condensate during the drying process.
[0073] Please see Figure 5 This is a schematic flowchart illustrating a drying control method provided in an embodiment of this application. Figure 5 As shown, the method described in this application embodiment is applied to a dishwasher and may include the following steps S301-S303.
[0074] S301, if a drying instruction is received from the target user, the end time of the last program in the dishwasher that included a heating process is obtained, and the interval between the end time and the end time is calculated.
[0075] S302, if the interval is less than the preset time interval, determine the target area where the dishwasher is located, query the ambient temperature of the target area in the cloud server and confirm the ambient temperature as the initial ambient temperature.
[0076] S303, a dishwasher that controls the drying process based on the initial ambient temperature.
[0077] Specifically, the washing device can be a dishwasher, and steps S301-S303 of this embodiment can be found above. Figure 2 The specific descriptions of steps S101-S103 in the illustrated embodiment will not be repeated here.
[0078] In this embodiment, if a drying command is received from a target user, the time interval between the end time of the program containing the heating process and the target area is obtained. If the time interval is less than a preset time interval, the target area of the dishwasher is determined, the ambient temperature of the target area is queried from the cloud server, and the ambient temperature is confirmed as the initial ambient temperature. The dishwasher is then controlled to perform the drying process based on the initial ambient temperature. Obtaining the initial ambient temperature of the area where the dishwasher is located through big data from the cloud server improves the accuracy of the initial ambient temperature, thereby better avoiding the generation of condensate during the drying process.
[0079] Please see Figure 6 This is a schematic flowchart illustrating a drying control method provided in an embodiment of this application. Figure 6 As shown, the method described in this application embodiment is applied to a dishwasher and may include the following steps S401-S408.
[0080] S401, if a drying instruction is received from the target user, the end time of the last program in the dishwasher that included a heating process is obtained, and the interval between the end time and the end time is calculated.
[0081] S402, determine whether the interval duration is less than the preset time interval.
[0082] Specifically, if yes, proceed to step S403; otherwise, proceed to step S407.
[0083] S403, Determine the target area where the dishwasher is located.
[0084] S404, determine whether the target area is an area with a large temperature difference.
[0085] Specifically, if yes, proceed to step S405; otherwise, proceed to step S406.
[0086] S405, obtain the historical initial ambient temperature corresponding to the previous preset number of drying processes, and determine the minimum value among the historical initial ambient temperatures as the initial ambient temperature.
[0087] S406 queries the ambient temperature of the target area in the cloud server and confirms the ambient temperature as the initial ambient temperature.
[0088] S407 performs temperature detection processing on the water entering the dishwasher to obtain the water temperature and determines the water temperature as the initial ambient temperature.
[0089] S408 calculates the condensation temperature threshold of the dishwasher exhaust gas based on the initial ambient temperature, and controls the dishwasher to perform drying treatment based on the condensation temperature threshold.
[0090] Specifically, the washing device can be a dishwasher, and steps S401-S408 of this embodiment can be found above. Figure 3 The specific descriptions of steps S201-S208 in the illustrated embodiment will not be repeated here.
[0091] In this embodiment, if a drying command is received from the target user, the time interval since the last execution of a program containing a heating process is obtained. Based on the interval, it is determined whether the dishwasher temperature is affected by the temperature of the program containing the heating process. If the interval is longer than a preset time interval, the inlet water temperature is detected and determined as the initial ambient temperature. If there is no continuous operation, the dishwasher temperature can be detected directly without accessing a remote server, saving data transmission and data calculation costs and achieving rapid response in the drying process. If the interval is shorter than the preset time interval, it is further determined whether the target area where the dishwasher is located is a high-temperature area. If not, the historical initial ambient temperature corresponding to the previous preset number of drying processes is obtained, and the minimum value among the historical initial ambient temperatures is determined as the initial ambient temperature. The current initial ambient temperature is inferred from the previous historical initial ambient temperatures of the dishwasher, further improving the rapid response of the drying process. If the historical initial ambient temperature is not suitable, the ambient temperature of the target area can be queried in the cloud server and confirmed as the initial ambient temperature. Then, the condensation temperature threshold of the dishwasher exhaust gas is calculated based on the initial ambient temperature. The dishwasher is then controlled to perform drying treatment based on the condensation temperature threshold. By obtaining the initial ambient temperature of the area where the dishwasher is located through big data in the cloud server, the accuracy of the initial ambient temperature is improved. Thus, the drying treatment is performed based on the initial ambient temperature, which better avoids the generation of condensate during the drying process.
[0092] The following will be combined with the appendix Figure 7 - Appendix Figure 8This application provides a detailed description of the drying control device provided in its embodiments. It should be noted that the appendix... Figure 7 - Appendix Figure 8 The drying control device in the present application is used to perform the drying control device. Figure 2 and Figure 3 The methods shown in the embodiments are for illustrative purposes only, illustrating the parts relevant to the embodiments of this application. For specific technical details not disclosed, please refer to this application. Figure 2 and Figure 3 The example shown.
[0093] Please see Figure 7 The diagram illustrates a schematic representation of a drying control device provided in an exemplary embodiment of this application. This drying control device can be implemented as all or part of a device through software, hardware, or a combination of both. The device 1 includes an interval time acquisition module 11, an initial temperature acquisition module 12, and a drying processing module 13.
[0094] The interval time acquisition module 11 is used to acquire the end time of the last run of the program containing the heating process on the washing device if a drying instruction is received from the target user, and to calculate the interval time from the end time of the run. The program containing the heating process is any sequence of events that causes the cavity temperature of the washing device to rise.
[0095] The initial temperature acquisition module 12 is used to determine the target area where the washing device is located if the interval is less than a preset time interval, query the ambient temperature of the target area in the cloud server, and confirm the ambient temperature as the initial ambient temperature.
[0096] The drying module 13 is used to control the washing equipment to perform drying based on the initial ambient temperature.
[0097] In this embodiment, if a drying command is received from the target user, the interval between the last execution end time of the program containing the heating process is obtained. If the interval is less than a preset time interval, the target area where the washing device is located is determined. The ambient temperature of the target area is queried from the cloud server and confirmed as the initial ambient temperature. The washing device is then controlled to perform the drying process based on the initial ambient temperature. Obtaining the initial ambient temperature of the area where the washing device is located through big data from the cloud server improves the accuracy of the initial ambient temperature, thereby better avoiding the generation of condensate during the drying process.
[0098] Please see Figure 8This illustration shows a schematic diagram of a drying control device provided in an exemplary embodiment of this application. The drying control device can be implemented as all or part of a device through software, hardware, or a combination of both. The device 1 includes an interval time acquisition module 11, an initial temperature acquisition module 12, an inlet water temperature detection module 14, and a drying processing module 13.
[0099] The interval time acquisition module 11 is used to acquire the end time of the last run of the program containing the heating process on the washing device if a drying instruction is received from the target user, and to calculate the interval time from the end time of the run. The program containing the heating process is any sequence of events that causes the cavity temperature of the washing device to rise.
[0100] The initial temperature acquisition module 12 is used to determine the target area where the washing device is located if the interval is less than a preset time interval, query the ambient temperature of the target area in the cloud server, and confirm the ambient temperature as the initial ambient temperature.
[0101] Optionally, the initial temperature acquisition module 12 is specifically used to acquire the historical initial ambient temperature corresponding to the previous preset number of drying processes if the target area is not a large temperature difference area, and determine the minimum value among the historical initial ambient temperatures as the initial ambient temperature.
[0102] If the target area is an area with a large temperature difference, then the ambient temperature of the target area is queried in the cloud server and confirmed as the initial ambient temperature.
[0103] Optionally, the initial temperature acquisition module 12 is specifically used to query the first electronic device held by the target user, other than the washing device, in the cloud server;
[0104] The first ambient temperature detected by the first electronic device for the target area is obtained, and the first ambient temperature is confirmed as the initial ambient temperature.
[0105] Optionally, the initial temperature acquisition module 12 is specifically used to calculate a first average temperature of the first ambient temperature, and to confirm the first average temperature as the initial ambient temperature, or...
[0106] Calculate the first median temperature of the first ambient temperature, and use the first median temperature as the initial ambient temperature, or...
[0107] Calculate the first minimum temperature value of the first ambient temperature, and confirm the first minimum temperature value as the initial ambient temperature.
[0108] Optionally, the initial temperature acquisition module 12 is specifically used to query the cloud server for second electronic devices held by users other than the target user within the target area;
[0109] The second ambient temperature detected by the second electronic device for the target area is obtained, and the second ambient temperature is confirmed as the initial ambient temperature.
[0110] Optionally, the initial temperature acquisition module 12 is specifically used to calculate the second average temperature of the second ambient temperature, and confirm the second average temperature as the initial ambient temperature, or...
[0111] Calculate the second median temperature of the second ambient temperature, and use the second median temperature as the initial ambient temperature, or...
[0112] Calculate the second minimum temperature value of the second ambient temperature, and confirm the second minimum temperature value as the initial ambient temperature.
[0113] The inlet water temperature detection module 14 is used to perform temperature detection processing on the inlet water of the washing equipment to obtain the inlet water temperature if the interval duration is greater than the preset time interval.
[0114] The inlet water temperature is defined as the initial ambient temperature.
[0115] Optionally, the washing device is a dishwasher, which includes a bottom water cup and a temperature sensor is provided on the bottom water cup;
[0116] The inlet water temperature detection module 14 is specifically used to use the temperature sensor to detect the temperature of the water in the bottom cup and obtain the inlet water temperature.
[0117] The drying module 13 is used to control the washing equipment to perform drying based on the initial ambient temperature.
[0118] Optionally, the drying module 13 is specifically used to calculate the condensation temperature threshold of the gas discharged from the washing equipment based on the initial ambient temperature;
[0119] The washing equipment is controlled to perform drying treatment based on the dew temperature threshold, wherein when the washing equipment is controlled to perform drying treatment, the dew temperature of the discharged gas is controlled not to be higher than the dew temperature threshold.
[0120] In this embodiment, if a drying command is received from the target user, the interval between the last execution time of the program containing the heating process is obtained. Based on the interval, it is determined whether the temperature of the washing equipment is affected by the temperature of the last drying process. If the interval is longer than a preset time interval, the temperature of the water entering the washing equipment is detected to obtain the water temperature, which is then determined as the initial ambient temperature. If there is no continuous operation, the washing equipment temperature can be detected directly without accessing a remote server, saving data transmission and data calculation costs and achieving the goal of rapid response in the drying process. If the interval is shorter than the preset time interval, it is further determined whether the target area where the washing equipment is located is a high-temperature area. If not, the historical initial ambient temperature corresponding to the previous preset number of drying processes is obtained, and the minimum value among the historical initial ambient temperatures is determined as the initial ambient temperature. The current initial ambient temperature is inferred from the previous historical initial ambient temperatures of the washing equipment, further improving the rapid response of the drying process. If the historical initial ambient temperature is not suitable, the ambient temperature of the target area can be queried in the cloud server and confirmed as the initial ambient temperature. Then, the condensation temperature threshold of the gas discharged from the washing equipment is calculated based on the initial ambient temperature. The washing equipment is then controlled to perform drying treatment based on the condensation temperature threshold. By obtaining the initial ambient temperature of the area where the washing equipment is located through big data in the cloud server, the accuracy of the initial ambient temperature is improved. Thus, the drying treatment is performed based on the initial ambient temperature, which better avoids the generation of condensate during the drying process.
[0121] It should be noted that the drying control device provided in the above embodiments is only illustrated by the division of the above functional modules when executing the drying control method. In actual applications, the above functions can be assigned to different functional modules as needed, that is, the internal structure of the equipment can be divided into different functional modules to complete all or part of the functions described above. In addition, the drying control device and the drying control method embodiments provided in the above embodiments belong to the same concept, and the implementation process is detailed in the method embodiments, which will not be repeated here.
[0122] The sequence numbers of the embodiments in this application are for descriptive purposes only and do not represent the superiority or inferiority of the embodiments.
[0123] This application also provides a computer storage medium that can store multiple instructions, which are adapted to be loaded and executed by a processor as described above. Figures 1-4 The drying control method described in the illustrated embodiment can be found in the following document for a detailed execution process. Figures 1-4 The specific details of the illustrated embodiments will not be elaborated here.
[0124] This application also provides a computer program product storing at least one instruction, which is loaded and executed by the processor as described above. Figures 1-4 The drying control method described in the illustrated embodiment can be found in the following document for a detailed execution process. Figures 1-4 The specific details of the illustrated embodiments will not be elaborated here.
[0125] Please refer to Figure 9 This diagram illustrates a structural block diagram of an electronic device provided in an exemplary embodiment of this application. The electronic device in this application may include one or more components such as a processor 110, a memory 120, an input device 130, an output device 140, and a bus 150. The processor 110, memory 120, input device 130, and output device 140 may be connected via the bus 150.
[0126] Processor 110 may include one or more processing cores. Processor 110 connects to various parts of the electronic device using various interfaces and lines, and executes various functions of terminal 100 and processes data by running or executing instructions, programs, code sets, or instruction sets stored in memory 120, and by calling data stored in memory 120. Optionally, processor 110 may be implemented using at least one hardware form of Digital Signal Processing (DSP), Field-Programmable Gate Array (FPGA), or Programmable Logic Array (PLA). Processor 110 may integrate one or more of the following: Central Processing Unit (CPU), Graphics Processing Unit (GPU), and modem. The CPU primarily handles the operating system, user page, and applications; the GPU is responsible for rendering and drawing the displayed content; and the modem handles wireless communication. It is understood that the modem may also not be integrated into processor 110 and may be implemented separately using a communication chip.
[0127] The memory 120 may include random access memory (RAM) or read-only memory (ROM). Optionally, the memory 120 may include non-transitory computer-readable storage medium. The memory 120 may be used to store instructions, programs, code, code sets, or instruction sets. The memory 120 may include a program storage area and a data storage area, wherein the program storage area may store instructions for implementing an operating system, instructions for implementing at least one function (such as touch function, sound playback function, image playback function, etc.), instructions for implementing the various method embodiments described above, etc. The operating system may be the Android system, including systems deeply developed based on the Android system, the iOS system developed by Apple Inc., including systems deeply developed based on the iOS system, or other systems.
[0128] The memory 120 can be divided into operating system space and user space. The operating system runs in the operating system space, while native and third-party applications run in user space. To ensure that different third-party applications can achieve good running performance, the operating system allocates corresponding system resources for each application. However, different application scenarios within the same third-party application have different requirements for system resources. For example, in local resource loading scenarios, third-party applications have high requirements for disk read speed; in animation rendering scenarios, third-party applications have high requirements for GPU performance. Since the operating system and third-party applications are independent of each other, the operating system often cannot promptly perceive the current application scenario of a third-party application, resulting in the operating system's inability to adapt system resources accordingly.
[0129] In order for the operating system to distinguish the specific application scenarios of third-party applications, it is necessary to establish data communication between the third-party applications and the operating system. This would allow the operating system to obtain the current scenario information of the third-party applications at any time, and then perform targeted system resource adaptation based on the current scenario.
[0130] The input device 130 is used to receive input instructions or data, and includes, but is not limited to, a keyboard, mouse, camera, microphone, or touch device. The output device 140 is used to output instructions or data, and includes, but is not limited to, a display device and a speaker. In one example, the input device 130 and the output device 140 can be combined, and the input device 130 and the output device 140 can be a touch display screen.
[0131] The touch display screen can be designed as a full-screen, curved screen, or irregularly shaped screen. It can also be designed as a combination of a full-screen and a curved screen, or a combination of an irregularly shaped screen and a curved screen; however, this application does not limit the specific design in this regard.
[0132] In addition, those skilled in the art will understand that the structure of the electronic device shown in the above figures does not constitute a limitation on the electronic device. The electronic device may include more or fewer components than shown, or combine certain components, or have different component arrangements. For example, the electronic device may also include radio frequency circuits, input units, sensors, audio circuits, Wireless Fidelity (WiFi) modules, power supplies, Bluetooth modules, etc., which will not be described in detail here.
[0133] exist Figure 9 In the illustrated electronic device, the processor 110 can be used to call the drying control application stored in the memory 120 and specifically perform the following operations:
[0134] If a drying instruction is received from the target user, the end time of the last program containing the heating process on the washing device is obtained, and the interval between the end time and the end time is calculated. The program containing the heating process is any sequence of events that causes the cavity temperature of the washing device to rise.
[0135] If the interval is less than the preset time interval, the target area where the washing device is located is determined, the ambient temperature of the target area is queried in the cloud server, and the ambient temperature is confirmed as the initial ambient temperature.
[0136] The washing equipment is controlled to perform a drying process based on the initial ambient temperature.
[0137] In one embodiment, when the processor 110 queries the ambient temperature of the target area in the cloud server and confirms the ambient temperature as the initial ambient temperature, it specifically performs the following operations:
[0138] If the target area is not a region with a large temperature difference, the historical initial ambient temperature corresponding to the previous preset number of drying processes is obtained, and the minimum value among the historical initial ambient temperatures is determined as the initial ambient temperature.
[0139] If the target area is an area with a large temperature difference, then the ambient temperature of the target area is queried in the cloud server and confirmed as the initial ambient temperature.
[0140] In one embodiment, when the processor 110 queries the ambient temperature of the target area in the cloud server and confirms the ambient temperature as the initial ambient temperature, it specifically performs the following operations:
[0141] Query the cloud server for the first electronic device owned by the target user, excluding the washing device;
[0142] The first ambient temperature detected by the first electronic device for the target area is obtained, and the first ambient temperature is confirmed as the initial ambient temperature.
[0143] In one embodiment, when the processor 110 confirms the first ambient temperature as the initial ambient temperature, it specifically performs the following operations:
[0144] Calculate the first average temperature of the first ambient temperature, and confirm the first average temperature as the initial ambient temperature, or...
[0145] Calculate the first median temperature of the first ambient temperature, and use the first median temperature as the initial ambient temperature, or...
[0146] Calculate the first minimum temperature value of the first ambient temperature, and confirm the first minimum temperature value as the initial ambient temperature.
[0147] In one embodiment, when the processor 110 queries the ambient temperature of the target area in the cloud server and confirms the ambient temperature as the initial ambient temperature, it specifically performs the following operations:
[0148] Query the cloud server for second electronic devices held by users other than the target user within the target area;
[0149] The second ambient temperature detected by the second electronic device for the target area is obtained, and the second ambient temperature is confirmed as the initial ambient temperature.
[0150] In one embodiment, when the processor 110 confirms the second ambient temperature as the initial ambient temperature, it specifically performs the following operations:
[0151] Calculate the second average temperature of the second ambient temperature, and confirm the second average temperature as the initial ambient temperature, or...
[0152] Calculate the second median temperature of the second ambient temperature, and use the second median temperature as the initial ambient temperature, or...
[0153] Calculate the second minimum temperature value of the second ambient temperature, and confirm the second minimum temperature value as the initial ambient temperature.
[0154] In one embodiment, when executing the drying control method, the processor 110 also performs the following operations:
[0155] If the interval duration is longer than the preset time interval, then the water inlet of the washing equipment is subjected to temperature detection processing to obtain the water inlet temperature;
[0156] The inlet water temperature is defined as the initial ambient temperature.
[0157] In one embodiment, the washing device is a dishwasher, which includes a bottom water cup and a temperature sensor is provided on the bottom water cup;
[0158] When the processor 110 performs temperature detection processing on the inlet water of the washing device to obtain the inlet water temperature, it specifically performs the following operations:
[0159] The temperature sensor is used to detect the temperature of the water in the bottom cup to obtain the inlet water temperature.
[0160] In one embodiment, when the processor 110 performs the drying process of the washing device based on the initial ambient temperature, it specifically performs the following operations:
[0161] The condensation temperature threshold of the gas discharged from the washing equipment is calculated based on the initial ambient temperature.
[0162] The washing equipment is controlled to perform drying treatment based on the dew temperature threshold, wherein when the washing equipment is controlled to perform drying treatment, the dew temperature of the discharged gas is controlled not to be higher than the dew temperature threshold.
[0163] In this embodiment, if a drying command is received from the target user, the interval between the last execution time of the program containing the heating process is obtained. Based on the interval, it is determined whether the temperature of the washing equipment is affected by the temperature of the last drying process. If the interval is longer than a preset time interval, the temperature of the water entering the washing equipment is detected to obtain the water temperature, which is then determined as the initial ambient temperature. If there is no continuous operation, the washing equipment temperature can be detected directly without accessing a remote server, saving data transmission and data calculation costs and achieving the goal of rapid response in the drying process. If the interval is shorter than the preset time interval, it is further determined whether the target area where the washing equipment is located is a high-temperature area. If not, the historical initial ambient temperature corresponding to the previous preset number of drying processes is obtained, and the minimum value among the historical initial ambient temperatures is determined as the initial ambient temperature. The current initial ambient temperature is inferred from the previous historical initial ambient temperatures of the washing equipment, further improving the rapid response of the drying process. If the historical initial ambient temperature is not suitable, the ambient temperature of the target area can be queried in the cloud server and confirmed as the initial ambient temperature. Then, the condensation temperature threshold of the gas discharged from the washing equipment is calculated based on the initial ambient temperature. The washing equipment is then controlled to perform drying treatment based on the condensation temperature threshold. By obtaining the initial ambient temperature of the area where the washing equipment is located through big data in the cloud server, the accuracy of the initial ambient temperature is improved. Thus, the drying treatment is performed based on the initial ambient temperature, which better avoids the generation of condensate during the drying process.
[0164] It should be noted that the information (including but not limited to user device information, user personal information, etc.), data (including but not limited to data used for analysis, stored data, displayed data, etc.), and signals involved in the embodiments of this specification are all authorized by the user or fully authorized by all parties, and the collection, use, and processing of related data must comply with the relevant laws, regulations, and standards of the relevant countries and regions. For example, the interval duration, target area, and initial ambient temperature involved in this specification were all obtained under full authorization.
[0165] Those skilled in the art will understand that all or part of the processes in the above embodiments can be implemented by a computer program instructing related hardware. The program can be stored in a computer-readable storage medium, and when executed, it can include the processes of the embodiments of the above methods. The storage medium can be a magnetic disk, optical disk, read-only memory, or random access memory, etc.
[0166] The above-disclosed embodiments are merely preferred embodiments of this application and should not be construed as limiting the scope of this application. Therefore, any equivalent variations made in accordance with the claims of this application shall still fall within the scope of this application.
Claims
1. A drying control method applied to washing equipment, characterized in that, The method includes: If a drying instruction is received from the target user, the end time of the last program containing the heating process on the washing device is obtained, and the interval between the end time and the end time is calculated. The program containing the heating process is any sequence of events that causes the cavity temperature of the washing device to rise. If the running interval is less than the preset time interval, the target area where the washing equipment is located is determined, the ambient temperature of the target area is queried in the cloud server, and the ambient temperature is confirmed as the initial ambient temperature. The washing equipment is controlled to perform a drying process based on the initial ambient temperature.
2. The method according to claim 1, characterized in that, The step of querying the ambient temperature of the target area in the cloud server and confirming the ambient temperature as the initial ambient temperature includes: If the target area is not a region with a large temperature difference, the historical initial ambient temperature corresponding to the previous preset number of drying processes is obtained, and the minimum value among the historical initial ambient temperatures is determined as the initial ambient temperature. If the target area is an area with a large temperature difference, then the ambient temperature of the target area is queried in the cloud server and confirmed as the initial ambient temperature.
3. The method according to claim 1 or 2, characterized in that, The step of querying the ambient temperature of the target area in the cloud server and confirming the ambient temperature as the initial ambient temperature includes: Query the cloud server for the first electronic device owned by the target user, excluding the washing device; The first ambient temperature detected by the first electronic device for the target area is obtained, and the first ambient temperature is confirmed as the initial ambient temperature.
4. The method according to claim 3, characterized in that, The step of confirming the first ambient temperature as the initial ambient temperature includes: Calculate the first average temperature of the first ambient temperature, and confirm the first average temperature as the initial ambient temperature, or... Calculate the first median temperature of the first ambient temperature, and use the first median temperature as the initial ambient temperature, or... Calculate the first minimum temperature value of the first ambient temperature, and confirm the first minimum temperature value as the initial ambient temperature.
5. The method according to claim 1 or 2, characterized in that, The step of querying the ambient temperature of the target area in the cloud server and confirming the ambient temperature as the initial ambient temperature includes: Query the cloud server for second electronic devices held by users other than the target user within the target area; The second ambient temperature detected by the second electronic device for the target area is obtained, and the second ambient temperature is confirmed as the initial ambient temperature.
6. The method according to claim 5, characterized in that, The step of confirming the second ambient temperature as the initial ambient temperature includes: Calculate the second average temperature of the second ambient temperature, and confirm the second average temperature as the initial ambient temperature, or... Calculate the second median temperature of the second ambient temperature, and use the second median temperature as the initial ambient temperature, or... Calculate the second minimum temperature value of the second ambient temperature, and confirm the second minimum temperature value as the initial ambient temperature.
7. The method according to claim 1, characterized in that, The method further includes: If the interval duration is longer than the preset time interval, then the water inlet of the washing equipment is subjected to temperature detection processing to obtain the water inlet temperature; The inlet water temperature of the washing equipment is determined as the initial ambient temperature.
8. The method according to claim 7, characterized in that, The washing device is a dishwasher, which includes a bottom water cup and a temperature sensor is installed on the bottom water cup. The step of performing temperature detection processing on the inlet water of the washing equipment to obtain the inlet water temperature includes: The temperature sensor is used to detect the temperature of the water in the bottom cup to obtain the inlet water temperature.
9. The method according to claim 1, characterized in that, The process of controlling the drying process of the washing equipment based on the initial ambient temperature includes: The condensation temperature threshold of the gas discharged from the washing equipment is calculated based on the initial ambient temperature. The washing equipment is controlled to perform drying treatment based on the dew temperature threshold, wherein when the washing equipment is controlled to perform drying treatment, the dew temperature of the discharged gas is controlled not to be higher than the dew temperature threshold.
10. A drying control method applied to a dishwasher, characterized in that, The method includes: If a drying instruction is received from the target user, the end time of the last program containing the heating process in the dishwasher is obtained, and the interval between the end time and the end time is calculated. The program containing the heating process is any sequence of events that causes the cavity temperature of the dishwasher to rise. If the running interval is less than the preset time interval, the target area where the dishwasher is located is determined, the ambient temperature of the target area is queried in the cloud server, and the ambient temperature is confirmed as the initial ambient temperature. The dishwasher is controlled to perform the drying process based on the initial ambient temperature.
11. A drying control device, characterized in that, The device includes: An interval time acquisition module is used to acquire the end time of the last program containing a heating process on the washing device if a drying instruction is received from the target user, and to calculate the interval time from the end time of the program containing the heating process. The program containing the heating process is any sequence of events that causes the cavity temperature of the washing device to rise. The initial temperature acquisition module is used to determine the target area where the washing device is located if the interval is less than a preset time interval, query the ambient temperature of the target area in the cloud server, and confirm the ambient temperature as the initial ambient temperature. A drying module is used to control the washing equipment to perform a drying process based on the initial ambient temperature.
12. A computer storage medium, characterized in that, The computer storage medium stores a plurality of instructions adapted for loading by a processor and executing the method steps as claimed in any one of claims 1 to 9 or 10.
13. An electronic device, characterized in that, include: A processor and a memory; wherein the memory stores a computer program adapted to be loaded by the processor and to execute the method steps as claimed in any one of claims 1 to 9 or 10.
Citation Information
Patent Citations
Air conditioner and dehumidification control method thereof
CN109855184A
Cloud anti-condensation control device for refrigerator and control method thereof
CN112944785A
Anti-condensation device for cabinet
CN209546182U
Dishwasher / Dryer
JP1998328114A
Dishwasher
JP2008061854A