Premade dish preparation temperature testing method and system and intelligent terminal
By obtaining the temperature value and thermostat signal in real time, determining and controlling the temperature adjustment, the problem of difficult to accurately control the temperature in the production of dried spicy beef is solved, and the precise control of the preparation temperature of pre-made dishes is achieved, and the product quality is improved.
Patent Information
- Application Number
- CN202510319906.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-18
- Publication Date
- 2025-06-17
- Estimated Expiration
- 2045-03-18
AI Technical Summary
During the production process of dried hot beef, the temperature is difficult to accurately control during the braised and drying process, which affects the quality of pre-made dishes.
Provide a temperature testing method for preparing pre-made dishes, by obtaining the temperature value and thermostat signal of the test location in real time, determining the temperature control information, and adjusting the temperature through the temperature control information control temperature adjustment device, obtaining adjustment time information, and finally outputting the test result information.
Enable the operator to test and adjust the temperature control conditions of each test position, thereby achieving accurate control of the temperature of each link and improving the quality of pre-made dishes.
Smart Images

Figure CN120161879A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of prefabricated dishes, and in particular to a method, a system and an intelligent terminal for testing the preparation temperature of prefabricated dishes. Background Art
[0002] Prefabricated dishes refer to dishes that have been washed, cut, matched and processed, and are packaged and preserved by a series of methods such as freezing or vacuum. After consumers purchase them, they can be eaten by simply cooking or directly opening the package.
[0003] Prefabricated dishes are a type of prefabricated food. Compared with other prefabricated foods, prefabricated dishes focus more on the production and presentation of traditional dishes. When making dry spicy sauce beef, it is necessary to first blanch evenly sized beef chunks, then stew the beef for marinating, then dry the marinated beef, and make a spicy sauce and mix it with the beef for bagging, thus completing the production of the prefabricated dry spicy sauce beef dish.
[0004] Since temperature plays a crucial role in the processes of marinating and drying during the production of dry spicy sauce beef, it is inconvenient to accurately control the temperature of each process when making prefabricated dishes of dry spicy sauce beef. Summary of the Invention
[0005] In order to facilitate the accurate control of the temperature of each process, the present invention provides a method, a system and an intelligent terminal for testing the preparation temperature of prefabricated dishes.
[0006] In a first aspect, the present invention provides a method for testing the preparation temperature of prefabricated dishes, adopting the following technical solution: A method for testing the preparation temperature of prefabricated dishes includes: Real-time obtaining the collected temperature value and the thermostat signal at the test position; Determining the temperature control information according to the collected temperature value and the thermostat signal; Based on the temperature control information, controlling the temperature adjustment device preset at the test position to adjust the temperature and obtaining the adjustment time information; Determining the test result information according to the temperature control information and the adjustment time information, and outputting the test result information.
[0007] Optionally, the method for determining the temperature control information includes: When the thermostat signal is a preset shutdown signal, taking the collected temperature value as the thermostat shutdown temperature value; Judging whether the thermostat shutdown temperature value is consistent with the preset shutdown reference temperature value; If so, when the thermostat signal is a preset startup signal, taking the collected temperature value as the thermostat startup temperature value; Determine the heating control information according to the consistency between the thermostat startup temperature value and the preset startup reference temperature value, or combine the heating control information with the cooling control information to form the temperature control information; If not, calculate the difference between the thermostat shutdown temperature value and the preset shutdown reference temperature value as the shutdown temperature deviation value; Determine the cooling rate value corresponding to the shutdown temperature deviation value according to the corresponding relationship between the shutdown temperature deviation value and the preset cooling rate value; Determine the cooling control information according to the cooling rate value and the preset cooling reference rate value.
[0008] Optionally, the method for determining the heating control information or combining the heating control information with the cooling control information to form the temperature control information includes: Judge whether the thermostat startup temperature value is consistent with the preset startup reference temperature value; If so, combine the heating control information with the cooling control information to form the temperature control information; If not, calculate the difference between the thermostat startup temperature value and the preset startup reference temperature value as the startup temperature deviation value; Determine the heating rate value corresponding to the startup temperature deviation value according to the corresponding relationship between the startup temperature deviation value and the preset heating rate value; Determine the heating control information according to the heating rate value and the preset heating reference rate value.
[0009] Optionally, the method for determining the heating control information includes: Calculate the difference between the heating rate value and the preset heating reference rate value as the heating rate deviation value; Determine the rate deviation type information according to the heating rate deviation value; Obtain the test position point; Retrieve the adjacent position points based on the test position point; Determine the adjacent link type information corresponding to the adjacent position points according to the corresponding relationship between the adjacent position points and the preset adjacent link type information; Determine the type rate adjustment value according to the consistency between the rate deviation type information and the adjacent link type information; Determine the type rate adjustment information corresponding to the type rate adjustment value according to the corresponding relationship between the type rate adjustment value and the preset type rate adjustment information; Calculate the difference between the heating rate deviation value and the type rate adjustment value as the heating rate correction value; According to the correspondence between the heating rate correction value and the preset heating rate adjustment information, determine the heating rate adjustment information corresponding to the heating rate correction value, and combine the heating rate adjustment information with the type rate adjustment information as the heating control information.
[0010] Optionally, the method for determining the cooling control information includes: Calculate the difference between the cooling rate value and the preset cooling reference rate value as the cooling rate deviation value; According to the correspondence between the cooling rate deviation value and the preset cooling rate adjustment information, determine the cooling rate adjustment information corresponding to the cooling rate deviation value; Obtain the test environment information corresponding to the test location; Determine the cooling rate deviation reference interval according to the test environment information; Judge whether the cooling rate deviation value is within the cooling rate deviation reference interval; If it is, use the cooling rate adjustment information as the cooling control information; If it is not, calculate the difference between the cooling rate deviation value and the cooling rate deviation reference interval as the cooling rate deviation abnormal value; Determine the cooling auxiliary control information according to the cooling rate deviation abnormal value, and use the cooling auxiliary control information and the cooling rate adjustment information as the cooling control information.
[0011] Optionally, the method for determining the cooling auxiliary control information includes: Retrieve the ambient temperature value and the ambient area value based on the test environment information; According to the correspondence between the ambient area value and the preset ambient cooling equipment type information, determine the ambient cooling equipment type information corresponding to the ambient area value; Retrieve the equipment type rate reference influence value based on the ambient cooling equipment type information; Calculate the product value of the equipment type rate reference influence value and the ambient area value as the equipment type rate comprehensive influence value; Calculate the quotient value of the cooling rate deviation abnormal value and the equipment type rate reference influence value as the equipment type power value; According to the correspondence between the equipment type power value and the preset equipment type control information, determine the equipment type control information corresponding to the equipment type power value, and use the equipment type control information as the cooling auxiliary control information.
[0012] Optionally, the method for determining the test result information includes: Retrieve the heating time value and the cooling time value from the adjustment time information based on the temperature control information; Retrieve the heating rate adjustment times value and the cooling rate adjustment times value based on the temperature control information; Calculate the quotient value between the number of times of heating rate adjustment value and the heating time value, and use it as the number of times per heating unit value; Calculate the quotient value between the number of times of heating rate adjustment value and the cooling time value, and use it as the number of times per cooling unit value; Determine the comprehensive result information per unit number according to the number of times per heating unit value and the number of times per cooling unit value, and use the comprehensive result information per unit number as the test result information.
[0013] Optionally, the method for determining the comprehensive result information per unit number includes: Judge whether the number of times per heating unit value is consistent with the number of times per cooling unit value; If so, output the preset temperature qualified result information and use it as the comprehensive result information per unit number; If not, calculate the difference between the number of times per heating unit value and the number of times per cooling unit value, and use it as the deviation value per unit number; According to the corresponding relationship between the deviation value per unit number and the preset deviation result information per number, determine the deviation result information per number corresponding to the deviation value per unit number; Retrieve the deviation adjustment frequency value based on the deviation value per unit number; According to the corresponding relationship between the deviation adjustment frequency value and the preset deviation adjustment frequency result influence information, determine the deviation adjustment frequency result influence information corresponding to the deviation adjustment frequency value; Based on the deviation adjustment frequency result influence information, adjust the deviation result information per number to form new deviation result adjustment information per number, and use the new deviation result adjustment information per number as the comprehensive result information per unit number.
[0014] In a second aspect, the present invention provides a prefabricated dish preparation temperature testing system, adopting the following technical solution: A prefabricated dish preparation temperature testing system includes: An acquisition module, configured to acquire the collected temperature value, thermostat signal, adjustment time information, test position point, and test environment information; A memory, configured to store a prefabricated dish preparation temperature testing method according to any one of the first aspect; A processor, configured to load and execute the program in the memory.
[0015] In a third aspect, the present invention provides an intelligent terminal, adopting the following technical solution: An intelligent terminal includes a memory and a processor, and a computer program capable of being loaded by the processor is stored on the memory and executes a prefabricated dish preparation temperature testing method according to any one of the first aspect.
[0016] In summary, the present invention includes at least one of the following beneficial technical effects: 1. By acquiring the collected temperature values and thermostat signals and determining the temperature control information, controlling the temperature adjustment device preset at the test position to adjust the temperature through the temperature control information and obtaining the adjustment time information, and determining and outputting the test result information through the temperature control information and the adjustment time information, so that the operator can test and adjust the temperature control situation of each test position, facilitating the precise control of the temperature in each link; 2. By cooling down when the thermostat signal is a preset shutdown signal and then heating up after the cooling is completed, thereby improving the accuracy of testing the temperature control situation of each test position; 3. By using different control methods for the heating control information and the cooling control information respectively to adjust the temperature adjustment rate, thereby further improving the accuracy of testing the temperature control situation of each test position. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 is the flowchart of the method for testing the preparation temperature of prefabricated dishes in an embodiment of the present application; Figure 2 is the flowchart of the method for determining the temperature control information in an embodiment of the present application; Figure 3 is the flowchart of the method for determining the heating control information or combining the heating control information and the cooling control information to form the temperature control information in an embodiment of the present application; Figure 4 is the flowchart of the method for determining the heating control information in an embodiment of the present application; Figure 5 is the flowchart of the method for determining the cooling control information in an embodiment of the present application; Figure 6 is the flowchart of the method for determining the cooling auxiliary control information in an embodiment of the present application; Figure 7 is the flowchart of the method for determining the test result information in an embodiment of the present application; Figure 8 is the flowchart of the method for determining the comprehensive result information per unit time in an embodiment of the present application. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0018] The present invention will be further described in detail below with reference to the drawings and embodiments.
[0019] A method for testing the preparation temperature of prefabricated dishes, by acquiring the collected temperature values, thermostat signals, adjustment time information, test position points and test environment information, thereby testing the temperature control situation of the test position, enabling the operator to adjust according to the test results of the temperature control situation of each test position, facilitating the precise control of the temperature in each subsequent link.
[0020] Referring to Figure 1 , an embodiment of the present invention discloses a method for testing the preparation temperature of prefabricated dishes, which includes: Step S100: Obtain the collected temperature value and the thermostat signal at the test position in real time.
[0021] Among them, the collected temperature value refers to the temperature value obtained by collecting the temperature at the test position, and the collected temperature value is detected and obtained by a temperature sensor preset at the test position. The thermostat signal refers to the operating signal of a controller preset at the test position and used to adjust the temperature, and the thermostat signal is obtained by reading the controller preset at the test position and used to adjust the temperature.
[0022] Step S101: Determine the temperature control information according to the collected temperature value and the thermostat signal.
[0023] Among them, the temperature control information refers to the control information used to control the temperature adjustment device preset at the test position to adjust the temperature. The temperature adjustment device can be a heating device such as an electric heating wire, and no redundant description will be made here. By analyzing the collected temperature value and the thermostat signal, the temperature control information is determined, which is convenient for subsequent use. The specific steps for determining the temperature control information refer to Step S200 to Step S206.
[0024] Step S102: Based on the temperature control information, control the temperature adjustment device preset at the test position to adjust the temperature and obtain the adjustment time information.
[0025] Among them, the adjustment time information refers to the time information corresponding to controlling the temperature adjustment device to adjust the temperature. By controlling the temperature adjustment device preset at the test position to adjust the temperature according to the temperature control information, and obtaining the time corresponding to each adjustment situation during the cooling or heating adjustment and combining them as the adjustment time information, which is convenient for subsequent use.
[0026] Step S103: Determine the test result information according to the temperature control information and the adjustment time information, and output the test result information.
[0027] Among them, the test result information refers to the result information obtained after testing the temperature control situation at the test position. By analyzing the temperature control information and the adjustment time information, the test result information is determined, and the test result information is output, so that the operator can make adjustments according to the test results of the temperature control situations at each test position, which is convenient for subsequent precise control of the temperature in each link. The specific steps for determining the test result information refer to Step S700 to Step S704.
[0028] In Figure 1In step S101 shown above, in order to further ensure the reasonableness of the temperature control information, it is necessary to perform further separate analysis and calculation on the temperature control information. Specifically, it will be described in detail through Figure 2 the steps shown below.
[0029] Referring to Figure 2 , the method for determining the temperature control information includes the following steps: Step S200: When the thermostat signal is a preset shutdown signal, the collected temperature value is taken as the thermostat shutdown temperature value.
[0030] Among them, the shutdown signal refers to the signal when the controller for adjusting the temperature is in the shutdown state, and the shutdown signal is obtained through pre-input. The thermostat shutdown temperature value refers to the temperature value when the controller is in the shutdown state. When the thermostat signal is a preset shutdown signal, it means that the controller for adjusting the temperature is in the shutdown state at this time, so the test starts and the thermostat shutdown temperature value is defined for subsequent use.
[0031] Step S201: Determine whether the thermostat shutdown temperature value is consistent with the preset shutdown reference temperature value. If it is, execute step S202; if not, execute step S204.
[0032] Among them, the shutdown reference temperature value refers to the temperature value corresponding to the normal shutdown of the controller for adjusting the temperature, and the shutdown reference temperature value is obtained through pre-input. By judging whether the thermostat shutdown temperature value is consistent with the preset shutdown reference temperature value, it is possible to judge whether the temperature reduction is completed at this time.
[0033] Step S202: When the thermostat signal is a preset startup signal, the collected temperature value is taken as the thermostat startup temperature value.
[0034] Among them, the startup signal refers to the signal when the controller for adjusting the temperature is in the startup state, and the startup signal is obtained through pre-input. The thermostat startup temperature value refers to the temperature value when the controller is in the startup state. When the thermostat shutdown temperature value is consistent with the preset shutdown reference temperature value, it means that the temperature reduction is completed at this time. Therefore, it is judged whether the thermostat signal is a preset startup signal at this time. When the thermostat signal is a preset startup signal, the thermostat startup temperature value is defined for subsequent use.
[0035] Step S203: According to the consistency between the thermostat startup temperature value and the preset startup reference temperature value, determine the heating control information or combine the heating control information with the cooling control information to form the temperature control information.
[0036] Among them, the startup reference temperature value refers to the temperature value corresponding to the controller that adjusts the temperature when it is running normally after startup, and the startup reference temperature value is obtained through pre-input. The heating control information refers to the control information used to control the temperature increase, and the cooling control information refers to the control information used to control the temperature decrease. By analyzing the consistency between the thermostat startup temperature value and the preset startup reference temperature value, the heating control information is determined, or the heating control information is combined with the cooling control information to form temperature control information, thereby improving the accuracy of the obtained temperature control information.
[0037] Step S204: Calculate the difference between the thermostat shutdown temperature value and the preset shutdown reference temperature value and use it as the shutdown temperature deviation value.
[0038] Among them, the shutdown temperature deviation value refers to the deviation value when there is a deviation in the temperature at which the thermostat shuts down at the current time. When the thermostat shutdown temperature value is inconsistent with the preset shutdown reference temperature value, it indicates that the cooling has not been completed at this time. Therefore, the difference between the thermostat shutdown temperature value and the preset shutdown reference temperature value is calculated and used as the shutdown temperature deviation value for subsequent use.
[0039] Step S205: Determine the cooling rate value corresponding to the shutdown temperature deviation value according to the corresponding relationship between the shutdown temperature deviation value and the preset cooling rate value.
[0040] Among them, the cooling rate value refers to the rate value when cooling is carried out based on the shutdown temperature deviation value. Different shutdown temperature deviation values correspond to different cooling rate values. The cooling rate value is obtained by querying from a database that stores different shutdown temperature deviation values and the corresponding cooling rate values, and this database is obtained through pre-input. Determining the cooling rate value by querying the shutdown temperature deviation value is convenient for subsequent use.
[0041] Step S206: Determine the cooling control information according to the cooling rate value and the preset cooling reference rate value.
[0042] Among them, the cooling control information refers to the control information used to control the cooling. By analyzing the cooling rate value and the preset cooling reference rate value, the cooling control information is determined, improving the accuracy of the obtained cooling control information. The specific determination steps of the cooling control information refer to Step S500 to Step S507.
[0043] In Figure 2 In the shown Step S203, in order to further ensure the rationality of the heating control information or combining the heating control information with the cooling control information to form temperature control information, it is necessary to perform further separate analysis and calculation on the heating control information or combining the heating control information with the cooling control information to form temperature control information. Specifically, through Figure 3The steps shown are described in detail.
[0044] Referring to Figure 3 , the method for determining the temperature increase control information or combining the temperature increase control information with the temperature decrease control information to form the temperature control information includes the following steps: Step S300: Determine whether the temperature value at which the thermostat is turned on is the same as the preset benchmark temperature value at startup. If so, execute Step S301; if not, execute Step S302.
[0045] Among them, by determining whether the temperature value at which the thermostat is turned on is the same as the preset benchmark temperature value at startup, it is determined whether the temperature increase is completed at this time.
[0046] Step S301: Combine the temperature increase control information with the temperature decrease control information to form the temperature control information.
[0047] Among them, when the temperature value at which the thermostat is turned on is the same as the preset benchmark temperature value at startup, it indicates that the temperature increase is completed at this time. Therefore, the temperature increase control information and the temperature decrease control information are combined to form the temperature control information, thereby improving the accuracy of the obtained temperature control information.
[0048] Step S302: Calculate the difference between the temperature value at which the thermostat is turned on and the preset benchmark temperature value at startup and use it as the startup temperature deviation value.
[0049] Among them, the startup temperature deviation value refers to the deviation value when there is a deviation in the temperature at which the thermostat is turned on at the current time. When the temperature value at which the thermostat is turned on is not the same as the preset benchmark temperature value at startup, it indicates that the temperature increase is not completed at this time. Therefore, the difference between the temperature value at which the thermostat is turned on and the preset benchmark temperature value at startup is calculated and used as the startup temperature deviation value for subsequent use.
[0050] Step S303: Determine the temperature increase rate value corresponding to the startup temperature deviation value according to the corresponding relationship between the startup temperature deviation value and the preset temperature increase rate value.
[0051] Among them, the temperature increase rate value refers to the rate value when increasing the temperature based on the startup temperature deviation value. Different startup temperature deviation values correspond to different temperature increase rate values. The temperature increase rate value is obtained by querying from a database that stores different startup temperature deviation values and the corresponding temperature increase rate values, and this database is obtained through pre-input. Querying and determining the temperature increase rate value through the startup temperature deviation value is convenient for subsequent use.
[0052] Step S304: Determine the temperature increase control information according to the temperature increase rate value and the preset benchmark temperature increase rate value.
[0053] Among them, by analyzing the heating rate value and the preset reference heating rate value, the heating control information is determined, thereby improving the accuracy of the obtained heating control information. The specific determination steps of the heating control information refer to step S400 to step S408.
[0054] In Figure 3 In step S304 shown, in order to further ensure the rationality of the heating control information, it is necessary to perform a further separate analysis and calculation on the heating control information, specifically through Figure 4 the steps shown are described in detail.
[0055] Referring to Figure 4 , the determination method of the heating control information includes the following steps: Step S400: Calculate the difference between the heating rate value and the preset reference heating rate value and use it as the heating rate deviation value.
[0056] Among them, the reference heating rate value refers to the reference rate value that needs to be in when heating, and the reference heating rate value is obtained through pre-input. The heating rate deviation value refers to the deviation value when there is a deviation in the heating rate. By calculating the difference between the heating rate value and the preset reference heating rate value and using it as the heating rate deviation value, it is convenient for subsequent use.
[0057] Step S401: Determine the rate deviation type information according to the heating rate deviation value.
[0058] Among them, the rate deviation type information refers to the type information that can be used for auxiliary adjustment when there is a rate deviation. By analyzing the positive and negative situations of the heating rate deviation value and retrieving the corresponding auxiliary adjustment type according to the positive and negative situations of the heating rate deviation value as the rate deviation type information. For example, when the heating rate deviation value is positive, the rate deviation type information is the type of slowing down the rate.
[0059] Step S402: Obtain the test position point.
[0060] Among them, the test position point refers to the position point where the temperature test is carried out, and the test position point is obtained through pre-input by the tester.
[0061] Step S403: Retrieve the adjacent position points based on the test position point.
[0062] Among them, the adjacent position points refer to the position points adjacent to the test position point. By retrieving the positions of the adjacent links of the test position point and using them as the adjacent position points, it is convenient for subsequent use.
[0063] Step S404: Determine the adjacent link type information corresponding to the adjacent position points according to the correspondence between the adjacent position points and the preset adjacent link type information.
[0064] Among them, the adjacent link type information refers to the type information that can be used for auxiliary adjustment corresponding to the links in adjacent positions. Different adjacent position points correspond to different adjacent link type information. The adjacent link type information is obtained by querying from a database that stores different adjacent position points and the corresponding adjacent link type information, and this database is obtained through pre-input. Querying and determining the adjacent link type information through the adjacent position points is convenient for subsequent use.
[0065] Step S405: Determine the type rate adjustment value according to the consistency between the rate deviation type information and the adjacent link type information.
[0066] Among them, the type rate adjustment value refers to the adjustment value corresponding to the rate adjustment according to the type. By analyzing the consistency between the rate deviation type information and the adjacent link type information, when the rate deviation type information is consistent with the adjacent link type information, it indicates that at this time, the temperature of the adjacent link can be used to assist in adjusting the rate. Therefore, the type rate database is queried through the adjacent link type information to obtain the type rate adjustment value. The type rate database prestores different adjacent link type information and the corresponding type rate adjustment values. When the rate deviation type information is inconsistent with the adjacent link type information, it indicates that at this time, the temperature of the adjacent link cannot be used to assist in adjusting the rate. Therefore, the preset type reference adjustment value is output and used as the type rate adjustment value. The type reference adjustment value refers to the adjustment value corresponding to the situation where the links in adjacent positions do not perform rate adjustment, and the type reference adjustment value is obtained through pre-input.
[0067] Step S406: Determine the type rate adjustment information corresponding to the type rate adjustment value according to the corresponding relationship between the type rate adjustment value and the preset type rate adjustment information.
[0068] Among them, the type rate adjustment information refers to the control information for adjusting the connection situation between adjacent position links according to the type rate adjustment value. Different type rate adjustment values correspond to different type rate adjustment information. The type rate adjustment information is obtained by querying from a database that stores different type rate adjustment values and the corresponding type rate adjustment information, and this database is obtained through pre-input. Querying and determining the type rate adjustment information through the type rate adjustment value is convenient for subsequent use.
[0069] Step S407: Calculate the difference between the heating rate deviation value and the type rate adjustment value and use it as the heating rate correction value.
[0070] Among them, the heating rate correction value refers to the rate value corresponding to the adjusted heating rate. By calculating the difference between the heating rate deviation value and the type rate adjustment value and using it as the heating rate correction value, it is convenient for subsequent use.
[0071] Step S408: According to the correspondence between the heating rate correction value and the preset heating rate adjustment information, determine the heating rate adjustment information corresponding to the heating rate correction value, and combine the heating rate adjustment information with the type rate adjustment information as the heating control information.
[0072] Among them, the heating rate adjustment information refers to the control information for adjusting the heating rate correction value. Different heating rate correction values correspond to different heating rate adjustment information. The heating rate adjustment information is obtained by querying a database that stores different heating rate correction values and their corresponding heating rate adjustment information, and this database is obtained through pre-input. By querying the heating rate correction value to determine the heating rate adjustment information and combining the heating rate adjustment information with the type rate adjustment information as the heating control information, the accuracy of the obtained heating control information is improved.
[0073] In Figure 2 In the step S206 shown, in order to further ensure the rationality of the cooling control information, it is necessary to perform further separate analysis and calculation on the cooling control information. Specifically, it is described in detail through the Figure 5 steps shown.
[0074] Referring to Figure 5 , the method for determining the cooling control information includes the following steps: Step S500: Calculate the difference between the cooling rate value and the preset cooling reference rate value and use it as the cooling rate deviation value.
[0075] Among them, the cooling reference rate value refers to the reference rate value that needs to be maintained during cooling, and the cooling reference rate value is obtained through pre-input. The cooling rate deviation value refers to the deviation value corresponding to the deviation of the cooling rate. By calculating the difference between the cooling rate value and the preset cooling reference rate value and using it as the cooling rate deviation value, it is convenient for subsequent use.
[0076] Step S501: According to the correspondence between the cooling rate deviation value and the preset cooling rate adjustment information, determine the cooling rate adjustment information corresponding to the cooling rate deviation value.
[0077] Among them, the cooling rate adjustment information refers to the adjustment information corresponding to the adjustment based on the cooling rate deviation value. Different cooling rate deviation values correspond to different cooling rate adjustment information. The cooling rate adjustment information is obtained by querying from a database that stores different cooling rate deviation values and the corresponding cooling rate adjustment information. This database is obtained through pre-input. Querying and determining the cooling rate adjustment information through the cooling rate deviation value is convenient for subsequent use.
[0078] Step S502: Obtain the test environment information corresponding to the test location.
[0079] Among them, the test environment information refers to information such as the environmental area and environmental temperature of the test location. The test environment information includes the environmental temperature value and the environmental area value. The environmental temperature value refers to the temperature value corresponding to the environment of the test location, and the environmental temperature value is obtained by a temperature sensor preset at the test location. The environmental area value refers to the area value corresponding to the environment of the test location, and the environmental area value is obtained through pre-input.
[0080] Step S503: Determine the cooling rate deviation reference interval according to the test environment information.
[0081] Among them, the cooling rate deviation reference interval refers to the reference deviation interval corresponding to the normal adjustment of the rate deviation according to the environment of the test location during cooling. The environmental temperature value and the environmental area value are retrieved through the test environment information, and the cooling reference deviation database is queried through the environmental temperature value and the environmental area value to obtain the cooling rate deviation reference interval. The cooling reference deviation database pre-stores different environmental temperature values, environmental area values, and the corresponding cooling rate deviation reference intervals.
[0082] Step S504: Determine whether the cooling rate deviation value is within the cooling rate deviation reference interval. If it is, execute Step S505; if not, execute Step S506.
[0083] Among them, by determining whether the cooling rate deviation value is within the cooling rate deviation reference interval, it is thus determined whether adjustment by auxiliary equipment is required.
[0084] Step S505: Use the cooling rate adjustment information as the cooling control information.
[0085] Among them, when the cooling rate deviation value is within the cooling rate deviation reference interval, it indicates that adjustment by auxiliary equipment is not required at this time. Therefore, the cooling rate adjustment information is used as the cooling control information, thereby improving the accuracy of the obtained cooling control information.
[0086] Step S506: Calculate the difference between the cooling rate deviation value and the cooling rate deviation reference interval and use it as the cooling rate abnormal deviation value.
[0087] Among them, the abnormal value of the cooling rate deviation refers to the deviation value corresponding to the abnormal deviation of the cooling rate. When the cooling rate deviation value is not within the reference interval of the cooling rate deviation, it indicates that adjustment needs to be made through auxiliary equipment at this time. Therefore, the difference between the cooling rate deviation value and the reference interval of the cooling rate deviation is calculated and used as the abnormal value of the cooling rate deviation for subsequent use.
[0088] Step S507: Determine the cooling auxiliary control information according to the abnormal value of the cooling rate deviation, and use the cooling auxiliary control information and the cooling rate adjustment information as the cooling control information.
[0089] Among them, the cooling auxiliary control information refers to the control information for controlling the auxiliary equipment to cool down during cooling. By analyzing the abnormal value of the cooling rate deviation, the cooling auxiliary control information is determined, and the cooling auxiliary control information and the cooling rate adjustment information are used as the cooling control information, thereby improving the accuracy of the obtained cooling control information. The specific determination steps of the cooling auxiliary control information refer to Step S600 to Step S605.
[0090] In Figure 5 In Step S507 shown, in order to further ensure the rationality of the cooling auxiliary control information, further separate analysis and calculation of the cooling auxiliary control information are required. Specifically, it is described in detail through Figure 6 the steps shown.
[0091] Referring to Figure 6 , the method for determining the cooling auxiliary control information includes the following steps: Step S600: Retrieve the environmental temperature value and the environmental area value based on the test environment information.
[0092] Among them, retrieving the environmental temperature value and the environmental area value through the test environment information is convenient for subsequent use.
[0093] Step S601: Determine the environmental cooling equipment type information corresponding to the environmental area value according to the correspondence between the environmental area value and the preset environmental cooling equipment type information.
[0094] Among them, the environmental cooling equipment type information refers to the type information corresponding to the auxiliary cooling equipment that can be used based on the environmental area value. The auxiliary cooling equipment refers to equipment such as a hair dryer that can perform auxiliary cooling. Different environmental area values correspond to different environmental cooling equipment type information, and the environmental cooling equipment type information is obtained by querying from a database storing different environmental area values and the corresponding environmental cooling equipment type information, and this database is obtained through pre-input. Querying and determining the environmental cooling equipment type information through the environmental area value is convenient for subsequent use.
[0095] Step S602: Retrieve the device type rate baseline impact value based on the environmental cooling device type information.
[0096] The device type rate baseline impact value refers to the baseline impact degree value on the rate per unit area during the use of unit power of the type to which the auxiliary cooling device belongs. The device type rate baseline impact value is retrieved by querying the preset device type rate database through the environmental cooling device type information. The device type rate database pre-stores different environmental cooling device type information and the corresponding device type rate baseline impact values.
[0097] Step S603: Calculate the product value between the device type rate baseline impact value and the environmental area value and use it as the device type rate comprehensive impact value.
[0098] The device type rate comprehensive impact value refers to the comprehensive impact degree value on the rate when the type to which the auxiliary cooling device belongs is used at the position of the environmental area value. By calculating the product value between the device type rate baseline impact value and the environmental area value and using it as the device type rate comprehensive impact value, it is convenient for subsequent use.
[0099] Step S604: Calculate the quotient value between the cooling rate deviation abnormal value and the device type rate baseline impact value and use it as the device type power value.
[0100] The device type power value refers to the power value required for the operation of the auxiliary cooling device under the device type rate baseline impact value. By calculating the quotient value between the cooling rate deviation abnormal value and the device type rate baseline impact value and using it as the device type power value, it is convenient for subsequent use.
[0101] Step S605: According to the correspondence between the device type power value and the preset device type control information, determine the device type control information corresponding to the device type power value, and use the device type control information as the cooling auxiliary control information.
[0102] The device type control information refers to the control information for controlling the operation of the auxiliary cooling device. Different device type power values correspond to different device type control information. The device type control information is obtained by querying from the database that stores different device type power values and the corresponding device type control information, and this database is obtained through pre-input. Determine the device type control information by querying through the device type power value, and use the device type control information as the cooling auxiliary control information, thereby improving the accuracy of the obtained cooling auxiliary control information.
[0103] In Figure 1In step S103 shown above, in order to further ensure the rationality of the test result information, it is necessary to perform further separate analysis and calculation on the test result information. Specifically, it is described in detail through Figure 7 the steps shown below.
[0104] Referring to Figure 7 , the method for determining the test result information includes the following steps: Step S700: Retrieve the heating time value and the cooling time value from the adjustment time information based on the temperature control information.
[0105] Among them, the heating time value refers to the comprehensive time value corresponding to heating, and the cooling time value refers to the comprehensive time value corresponding to cooling. The overall time corresponding to the heating control information is retrieved from the adjustment time information as the heating time value, and the overall time corresponding to the cooling control information is retrieved from the adjustment time information as the cooling time value for subsequent use.
[0106] Step S701: Retrieve the number of heating rate adjustment times value and the number of cooling rate adjustment times value based on the temperature control information.
[0107] Among them, the number of heating rate adjustment times value refers to the number of times the rate is adjusted during heating, and the number of cooling rate adjustment times value refers to the number of times the rate is adjusted during cooling. The number of times of heating rate adjustment is retrieved through the temperature control information as the number of heating rate adjustment times value, and the number of times of cooling rate adjustment is retrieved as the number of cooling rate adjustment times value for subsequent use.
[0108] Step S702: Calculate the quotient value between the number of heating rate adjustment times value and the heating time value as the heating unit times value.
[0109] Among them, the heating unit times value refers to the number of times the heating rate is adjusted per unit time. By calculating the quotient value between the number of heating rate adjustment times value and the heating time value as the heating unit times value for subsequent use.
[0110] Step S703: Calculate the quotient value between the number of heating rate adjustment times value and the cooling time value as the cooling unit times value.
[0111] Among them, the cooling unit times value refers to the number of times the cooling rate is adjusted per unit time. By calculating the quotient value between the number of heating rate adjustment times value and the cooling time value as the cooling unit times value for subsequent use.
[0112] Step S704: Determine the unit times comprehensive result information based on the heating unit times value and the cooling unit times value, and use the unit times comprehensive result information as the test result information.
[0113] Among them, the comprehensive result information per unit time refers to the test result information obtained based on the number of heating and cooling adjustments per unit time. By analyzing the heating unit time value and the cooling unit time value, the comprehensive result information per unit time is determined, and the comprehensive result information per unit time is used as the test result information to improve the accuracy of the obtained test result information. The specific determination steps of the comprehensive result information per unit time refer to Step S800 to Step S806.
[0114] In Figure 7 In the step S704 shown, in order to further ensure the rationality of the comprehensive result information per unit time, it is necessary to perform a further separate analysis and calculation on the comprehensive result information per unit time, which is specifically described in detail through the steps shown in Figure 8 shown.
[0115] Referring to Figure 8 , the determination method of the comprehensive result information per unit time includes the following steps: Step S800: Determine whether the heating unit time value is consistent with the cooling unit time value. If it is, execute Step S801; if not, execute Step S802.
[0116] Among them, by determining whether the heating unit time value is consistent with the cooling unit time value, it is determined whether the temperature adjustment meets the requirements.
[0117] Step S801: Output the preset temperature qualified result information and use it as the comprehensive result information per unit time.
[0118] Among them, the temperature qualified result information refers to the result information when the temperature adjustment is qualified, and the temperature qualified result information is obtained through pre-input. When the heating unit time value is consistent with the cooling unit time value, it indicates that the temperature adjustment meets the requirements at this time. Therefore, the preset temperature qualified result information is output and used as the comprehensive result information per unit time, thereby improving the accuracy of the obtained comprehensive result information per unit time.
[0119] Step S802: Calculate the difference between the heating unit time value and the cooling unit time value and use it as the unit time deviation value.
[0120] Among them, the unit time deviation value refers to the deviation value corresponding to the deviation in the number of heating and cooling adjustments. When the heating unit time value is not consistent with the cooling unit time value, it indicates that the temperature adjustment does not meet the requirements at this time. Therefore, the difference between the heating unit time value and the cooling unit time value is calculated and used as the unit time deviation value for subsequent use.
[0121] Step S803: Determine the corresponding number deviation result information corresponding to the unit time deviation value according to the corresponding relationship between the unit time deviation value and the preset number deviation result information.
[0122] Among them, the number deviation result information refers to the initial test result information corresponding to the deviation in the number of heating and cooling adjustments. Different unit number deviation values correspond to different number deviation result information. The number deviation result information is obtained by querying from a database that stores different unit number deviation values and the corresponding number deviation result information. This database is obtained through pre-input. Querying and determining the number deviation result information through the unit number deviation value facilitates subsequent use.
[0123] Step S804: Retrieve the deviation adjustment frequency value based on the unit number deviation value.
[0124] Among them, the deviation adjustment frequency value refers to the frequency value that needs to be adjusted among the number of times of heating and cooling adjustments with deviations. The corresponding adjustment frequency is retrieved from the temperature control information through the unit number deviation value and used as the deviation adjustment frequency value, which facilitates subsequent use.
[0125] Step S805: Determine the deviation adjustment frequency result influence information corresponding to the deviation adjustment frequency value according to the corresponding relationship between the deviation adjustment frequency value and the preset deviation adjustment frequency result influence information.
[0126] Among them, the deviation adjustment frequency result influence information refers to the influence information corresponding to the influence on the test result based on the deviation adjustment frequency value. Different deviation adjustment frequency values correspond to different deviation adjustment frequency result influence information. The deviation adjustment frequency result influence information is obtained by querying from a database that stores the deviation adjustment frequency value and the corresponding deviation adjustment frequency result influence information. This database is obtained through pre-input. Querying and determining the deviation adjustment frequency result influence information through the deviation adjustment frequency value facilitates subsequent use.
[0127] Step S806: Adjust the number deviation result information based on the deviation adjustment frequency result influence information to form new number deviation result adjustment information, and use the new number deviation result adjustment information as the unit number comprehensive result information.
[0128] Among them, by adjusting the number deviation result information with the deviation adjustment frequency result influence information, new number deviation result adjustment information is formed, and the new number deviation result adjustment information is used as the unit number comprehensive result information, thereby improving the accuracy of the obtained unit number comprehensive result information.
[0129] Based on the same inventive concept, an embodiment of the present invention provides a prefabricated dish preparation temperature test system, including: An acquisition module for acquiring the collected temperature value, thermostat signal, adjustment time information, test position point, and test environment information; A memory for storing a method for testing the preparation temperature of a prefabricated dish as described above; A processor for loading and executing the program in the memory.
[0130] Based on the same inventive concept, an embodiment of the present invention provides an intelligent terminal, including a memory and a processor. A computer program capable of being loaded and executed by the processor, which is a method for testing the preparation temperature of a prefabricated dish as described above, is stored on the memory.
[0131] Those skilled in the art can clearly understand that for the convenience and brevity of description, only the above division of each functional module is used as an example. In practical applications, the above functions can be allocated to different functional modules according to needs, that is, the internal structure of the device is divided into different functional modules to complete all or part of the functions described above. The specific working processes of the systems, devices, and units described above can refer to the corresponding processes in the foregoing method embodiments and will not be elaborated here.
[0132] The above are only the preferred embodiments of the present invention, and the protection scope of the present invention is not limited to the above embodiments. All technical solutions falling within the inventive concept of the present invention belong to the protection scope of the present invention. It should be noted that for those of ordinary skill in the art, several improvements and refinements made without departing from the principle of the present invention should also be regarded as within the protection scope of the present invention.
Claims
1. A method for testing the preparation temperature of pre-made dishes, characterized in that: include: Acquire the collected temperature value and thermostat signal at the test location in real time; Determine temperature control information based on collected temperature values and temperature controller signals; Based on the temperature control information, a temperature adjustment device preset at the test position is controlled to adjust the temperature and obtain adjustment time information; The test result information is determined according to the temperature control information and the adjustment time information, and the test result information is output.
2. A method for testing the preparation temperature of a pre-made dish according to claim 1, characterized in that: The method for determining the temperature control information includes: When the thermostat signal is the preset shutdown signal, the collected temperature value is used as the thermostat shutdown temperature value; Determine whether the shutdown temperature value of the thermostat is consistent with the preset shutdown reference temperature value; If yes, when the thermostat signal is the preset power-on signal, the collected temperature value is used as the thermostat power-on temperature value; According to the consistency between the startup temperature value of the thermostat and the preset startup reference temperature value, the temperature increase control information is determined, or the temperature increase control information is combined with the temperature decrease control information to form the temperature control information; If not, the difference between the shutdown temperature value of the thermostat and the preset shutdown reference temperature value is calculated and used as the shutdown temperature deviation value; According to the corresponding relationship between the shutdown temperature deviation value and the preset cooling rate value, the cooling rate value corresponding to the shutdown temperature deviation value is determined; The cooling control information is determined according to the cooling rate value and a preset cooling reference rate value.
3. A method for testing the preparation temperature of a pre-made dish according to claim 2, characterized in that: The method for determining the temperature control information or combining the temperature control information with the temperature control information to form the temperature control information includes: Determine whether the startup temperature value of the thermostat is consistent with the preset startup reference temperature value; If yes, the temperature increase control information is combined with the temperature decrease control information to form the temperature control information; If not, the difference between the thermostat startup temperature value and the preset startup reference temperature value is calculated and used as the startup temperature deviation value; According to the corresponding relationship between the startup temperature deviation value and the preset temperature rise rate value, the temperature rise rate value corresponding to the startup temperature deviation value is determined; The temperature rise control information is determined according to the temperature rise rate value and a preset temperature rise reference rate value.
4. A method for testing the preparation temperature of a pre-made dish according to claim 3, characterized in that: The method for determining the temperature rise control information includes: Calculate the difference between the heating rate value and the preset heating reference rate value and use it as the heating rate deviation value; Determine rate deviation type information according to the heating rate deviation value; Get the test location point; Retrieving adjacent position points based on the test position point; According to the correspondence between the adjacent position point and the preset adjacent link type information, the adjacent link type information corresponding to the adjacent position point is determined; According to the consistency between the rate deviation type information and the adjacent link type information, the type rate adjustment value is determined; According to the correspondence between the type rate adjustment value and the preset type rate adjustment information, the type rate adjustment information corresponding to the type rate adjustment value is determined; Calculate the difference between the heating rate deviation value and the type rate adjustment value and use it as the heating rate correction value; According to the correspondence between the heating rate correction value and the preset heating rate adjustment information, the heating rate adjustment information corresponding to the heating rate correction value is determined, and the heating rate adjustment information is combined with the type rate adjustment information as the heating control information.
5. A method for testing the preparation temperature of a pre-made dish according to claim 2, characterized in that: The method for determining the cooling control information includes: Calculate the difference between the cooling rate value and the preset cooling reference rate value and use it as the cooling rate deviation value; According to the correspondence between the cooling rate deviation value and the preset cooling rate adjustment information, the cooling rate adjustment information corresponding to the cooling rate deviation value is determined; Obtain the test environment information corresponding to the test location; Determine the reference range of the cooling rate deviation according to the test environment information; Determine whether the cooling rate deviation value is within the cooling rate deviation reference range; If yes, the cooling rate adjustment information is used as the cooling control information; If not, the difference between the cooling rate deviation value and the cooling rate deviation reference interval is calculated and used as the cooling rate deviation abnormal value; The cooling auxiliary control information is determined according to the abnormal value of the cooling rate deviation, and the cooling auxiliary control information and the cooling rate adjustment information are used as the cooling control information.
6. A method for testing the preparation temperature of a pre-made dish according to claim 5, characterized in that: The method for determining the cooling auxiliary control information includes: Retrieve the ambient temperature value and ambient area value based on the test environment information; According to the correspondence between the environmental area value and the preset environmental cooling equipment type information, the environmental cooling equipment type information corresponding to the environmental area value is determined; Based on the type information of the ambient cooling equipment, retrieve the rate benchmark impact value of the equipment type; Calculate the product of the equipment type rate benchmark impact value and the environmental area value and use it as the equipment type rate comprehensive impact value; Calculate the quotient between the cooling rate deviation abnormal value and the equipment type rate benchmark impact value and use it as the equipment type power value; According to the correspondence between the device type power value and the preset device type control information, the device type control information corresponding to the device type power value is determined, and the device type control information is used as the cooling auxiliary control information.
7. A method for testing the preparation temperature of a pre-made dish according to claim 1, characterized in that: Methods for determining test result information include: Based on the temperature control information, a heating time value and a cooling time value are retrieved from the adjustment time information; Retrieve the heating rate adjustment times and the cooling rate adjustment times based on the temperature control information; Calculate the quotient between the heating rate adjustment times and the heating time and use it as the heating unit times; Calculate the quotient between the heating rate adjustment times and the cooling time and use it as the cooling unit times; The unit times comprehensive result information is determined according to the heating unit times value and the cooling unit times value, and the unit times comprehensive result information is used as the test result information.
8. A method for testing the preparation temperature of a pre-made dish according to claim 7, characterized in that: Methods for determining the unit frequency comprehensive result information include: Determine whether the heating unit frequency value is consistent with the cooling unit frequency value; If yes, the preset temperature qualified result information is output as the unit number comprehensive result information; If not, the difference between the heating unit times value and the cooling unit times value is calculated and used as the unit times deviation value; According to the correspondence between the unit frequency deviation value and the preset frequency deviation result information, the frequency deviation result information corresponding to the unit frequency deviation value is determined; Based on the unit number deviation value, the deviation adjustment frequency value is retrieved; According to the correspondence between the deviation adjustment frequency value and the preset deviation adjustment frequency result impact information, the deviation adjustment frequency result impact information corresponding to the deviation adjustment frequency value is determined; The frequency deviation result information is adjusted based on the deviation adjustment frequency result influence information to form new number deviation result adjustment information, and the new number deviation result adjustment information is used as the unit number comprehensive result information.
9. A system for testing the temperature of a prepared dish, characterized in that: include: The acquisition module is used to acquire the collected temperature value, the thermostat signal, the adjustment time information, the test location point and the test environment information; A memory for storing a method for testing the temperature of preparing a pre-made dish according to any one of claims 1 to 8; The processor loads and executes the program in the memory.
10. An intelligent terminal, characterized in that: The invention comprises a memory and a processor, wherein the memory stores a computer program that can be loaded by the processor and executes a method for testing the preparation temperature of a prefabricated dish as claimed in any one of claims 1 to 8.
Citation Information
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