Multifunctional food processing control system of chef machine
By designing a multi-functional food processing control system in the chef machine, using the collaborative work of food data collection, cooking plan generation, interaction, control and monitoring modules, the problem of traditional chef machines being difficult to adjust the cooking method according to user needs is solved, and flexible cooking and efficient quality control of a variety of ingredients is achieved.
Patent Information
- Application Number
- CN202510062735.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-15
- Publication Date
- 2025-05-06
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The food processing control system of traditional chef machines can only operate according to preset cooking methods, and it is difficult to adjust according to user needs, resulting in the problem that some dish combinations cannot be cooked.
A multifunctional food processing control system is designed, including a food data acquisition module, a cooking plan generation module, an interaction module, a control module and a monitoring module. Through the collaborative work of these modules, suitable cooking plans can be generated based on the acquired food data and user needs, and the cooking process can be monitored and optimized in real time.
It realizes dynamic adjustment of cooking methods according to user needs, can identify multiple types of ingredients and generate appropriate cooking plans, improves the practicality and cooking quality of the chef machine, and solves the problem that traditional chef machines cannot cook certain dish combinations.
Smart Images

Figure CN119937341A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of chef machines, and in particular to a multifunctional food processing control system for a chef machine. Background Art
[0002] The chef machine is a multifunctional kitchen appliance that has brought great convenience to modern kitchens. It uses intelligent equipment to complete the stir-frying of dishes to reduce manual labor, which can not only standardize the production of dishes, but also improve cooking efficiency. It is usually equipped with a stirring paddle or a rotating pot body, driven by a motor, and stir-frying the ingredients in the pot according to the preset program and speed. The design of the stirring paddle can ensure that the ingredients are evenly heated during the stir-frying process to avoid local overheating or overcooking. The intelligent temperature control system is used to monitor the temperature in the pot in real time through the temperature sensor. When the temperature is lower than the preset value, the power of the heating device increases and the temperature is quickly raised; when the temperature reaches or exceeds the preset value, the power of the heating device decreases or stops heating, so as to accurately simulate the heat required for different cooking stages, such as stir-frying with high heat, slow stewing with low heat, etc.
[0003] In the prior art, when using a food processor, the traditional food processing control system can only complete cooking according to the set cooking method. This method is difficult to complete cooking according to the cooking method required by the user, resulting in limitations in the use of the traditional food processor, and some combinations of dishes may not be cooked.
[0004] After searching, it is found that a Chinese patent document discloses an intelligent chef machine, an automatic cooking method, and an application (publication number: CN112716265A). The present invention is applicable to the technical field of kitchen appliances, and provides an intelligent chef machine, an automatic cooking method, and an application. The intelligent chef machine includes a chassis and a rotating pot for making dishes. The intelligent chef machine also includes: a material discharge component, which is arranged at one end of the chassis away from the base; a heating component, which is arranged on one side of the rotating pot; and a control component, which is arranged in the chassis; by transferring the materials to be made into the chassis, controlling the material discharge component to transfer the materials into the rotating pot through the control component and controlling the material transfer sequence and time interval, controlling the heating component to heat the rotating pot through the control component, and controlling the heating time and heating temperature of the heating component, so that the rotating pot mixes, heats, and cooks the materials inside it; the device mechanizes and replaces manual cooking operations, and completes the cooking of ingredients in a standardized manner in a timed and quantitative manner, thereby realizing fully automatic intelligent cooking, thereby reducing the cost of making dishes, but there are still the following defects:
[0005] Although the above-mentioned smart food processors, automatic cooking methods and applications have achieved fully automatic intelligent cooking, thereby reducing the cost of food preparation, there is still the problem that the traditional food processing control system can only complete cooking according to the set cooking method. This method is difficult to complete cooking according to the cooking method required by the user, resulting in limitations in the use of traditional food processors, and some combinations of dishes may not be cooked. Summary of the invention
[0006] The purpose of the invention is to provide a multifunctional food processing control system for a chef machine, which solves the problem that the food processing control system in the background technology can only complete cooking according to the set cooking method, and this method is difficult to complete cooking according to the cooking method required by the user, resulting in limitations in the use of traditional chef machines, and the problem that certain combinations of dishes may not be cooked.
[0007] In order to solve the above technical problems, the invention provides the following technical solutions:
[0008] A multifunctional food processing control system for a chef machine, including a multifunctional food cooking control system, wherein the multifunctional food cooking control system includes an ingredient data acquisition module, an ingredient basic data acquisition module, a cooking plan generation module, an interaction module, a control module, a monitoring module and a dynamic monitoring module;
[0009] The food material data collection module is electrically connected to the food material basic data acquisition module, and the food material basic data acquisition module includes a data collection module, and the data collection module is electrically connected to the cooking plan generation module;
[0010] The function of the cooking plan generation module is to generate a cooking plan based on the acquired ingredient data and the weight parameter data of each ingredient data. The cooking plan generation module is electrically connected to the interaction module, and the interaction module is electrically connected to the control module, and the control module is electrically connected to the monitoring module.
[0011] Preferably, the function of the food data collection module is to obtain a number of food data, and the specific steps of the food data collection module to obtain the food data are:
[0012] Step 1: Acquire image data through a picture acquisition device electrically connected to the food data acquisition module;
[0013] Step 2: Performing data image data analysis on the image data acquired by the image acquisition device through the food data acquisition module;
[0014] Step 3: Verify the food data obtained through analysis through the food data collection module;
[0015] Step 4: Determine some food material data.
[0016] Preferably, the function of the food basic data acquisition module is to acquire weight parameter data of each food data from the food data acquired by the food data acquisition module;
[0017] The function of the data collection module is to match the data of each ingredient and the weight parameter data of each ingredient with each other and transmit them to the cooking plan generation module.
[0018] Preferably, the cooking plan generating module generates a cooking plan in the following specific steps:
[0019] S1: The cooking plan generation module receives the food material data and the weight parameter data of each food material data;
[0020] S2: The cooking plan generation module obtains several cooking plans based on the food material data;
[0021] S3: communicating several cooking plans to the operation terminal through the interactive module;
[0022] S4: The cooking plan can be revised or the cooking plan of the ingredient data can be confirmed through the interactive module;
[0023] S5: After confirming the cooking plan of the food material data, the corresponding seasoning weight parameter data is matched according to the weight parameter data of each food material data;
[0024] S6: Complete the generation of the cooking plan and interact with the control module through the interaction module.
[0025] Preferably, in S2, several cooking plans are obtained based on the food material data, and the several cooking plans are obtained in the following manner:
[0026] (1) Obtaining a cooking plan through the cooking plan and ingredient data contained in the food processor;
[0027] (2) If the cooking plan contained in the chef machine cannot be retrieved through the food data, the cooking plan is obtained through the food data through the Internet by using the interactive module and the search engine.
[0028] Preferably, the interaction module is used to interact with the user operation terminal through the operation information generated by the chef machine and the information required for interaction, and to interact with the Internet terminal through the interaction module during the process of generating a cooking plan by the cooking plan generating module.
[0029] Preferably, the control module generates corresponding control instructions according to the cooking plan or optimization instructions transmitted by the monitoring module, and the control instructions all include operation time. At the same time, the control instructions or optimization instructions are transmitted to the corresponding chef electromechanical devices, and then the control module cooperates with the various components of the chef machine to perform corresponding operations according to the cooking plan to complete the cooking operation of the ingredients.
[0030] Preferably, the function of the monitoring module is to complete temperature monitoring of the ingredients being cooked through a laser temperature measuring device arranged on the top of the cooking vessel, and compare the temperature parameter data obtained in real time with the standard temperature values of the ingredients in each standard time period required in the cooking plan. When the temperature parameter data obtained in real time is lower than or higher than the standard temperature values of the ingredients in each standard time period required in the cooking plan, a corresponding optimization instruction is generated and transmitted to the control module, so that the control module completes the optimization with the optimization instruction.
[0031] Preferably, the function of the dynamic monitoring module is to realize dynamic monitoring by providing a video monitoring camera device disposed vertically above the cooking vessel, thereby exchanging the monitored video parameter data to the operation terminal in real time.
[0032] Preferably, the specific operation process of the multifunctional food cooking control system is as follows:
[0033] (1): First, determine a number of food data through the food data collection module;
[0034] (2): Secondly, the weight parameter data of each food material is determined through the food material basic data acquisition module;
[0035] (3): The cooking plan generation module then receives a number of ingredient data and weight parameter data corresponding to the ingredients;
[0036] (4): Then the cooking plan generation module generates a cooking plan;
[0037] (5): The control module then generates control instructions based on the cooking plan to cook the ingredients through the chef machine;
[0038] (6): Secondly, during the cooking process of the food processor, the monitoring module monitors the temperature parameter data of the food in real time;
[0039] (7): Then, the obtained temperature parameter data of the ingredients during cooking are compared with the standard temperature values of the ingredients in each standard time period required in the cooking plan to generate optimization instructions;
[0040] (8): Sending the optimization instruction to the control module, and then optimizing the cooking operation of the chef machine through the control module;
[0041] (9): The chef machine completes the cooking plan and finishes cooking the ingredients.
[0042] Compared with the prior art, the beneficial effects achieved by the invention are:
[0043] 1. During use, the present invention abandons the traditional chef machine that can only rely on the cooking plan contained in the chef machine to cook ingredients through the provided cooking plan generation module. The provided cooking plan generation module cooperates with the interactive module, which can accurately obtain the operator's needs, such as limited adjustments such as less salt and less sugar, and can obtain more ways to cook ingredients through the interactive Internet terminal, thereby further improving practicality.
[0044] 2. During use, the present invention can intelligently identify multiple types of ingredients and obtain the weight of the ingredients. In this way, the cooking effect is better during the cooking process using the chef machine, and there is no need to manually select parameters such as the type and weight of ingredients. This further improves the practicality of the chef machine during use. Only the required cooking ingredients need to be placed to achieve one-click cooking operations, which can bring users the benefits of convenient operation and improved cooking quality.
[0045] 3. During use, the present invention often adopts the method of interacting with the operating end and displaying real-time cooking data, so that the operator can more intuitively observe the cooking steps of the chef machine, and can promptly judge whether the operation of the chef machine is suitable for the cooking of the current ingredients, which is convenient for timely operation, thereby improving practicality and convenience. BRIEF DESCRIPTION OF THE DRAWINGS
[0046] Figure 1 This is a schematic diagram of the structure of the multifunctional food cooking control system of the present invention;
[0047] Figure 2 This is a schematic diagram of specific steps for the food data acquisition module of the present invention to obtain food data;
[0048] Figure 3 A schematic diagram of specific steps for generating a cooking plan by a cooking plan generating module in the present invention;
[0049] Figure 4 It is a schematic diagram of the specific operation flow of the functional food cooking control system in the present invention. DETAILED DESCRIPTION
[0050] The following will be combined with the drawings in the embodiments of the invention to clearly and completely describe the technical solutions in the embodiments of the invention. Obviously, the described embodiments are only part of the embodiments of the invention, not all of the embodiments. Based on the embodiments in the invention, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the invention.
[0051] Example 1
[0052] See also Figure 1-4 The multifunctional food processing control system of the chef machine includes a multifunctional food cooking control system, which is characterized in that the multifunctional food cooking control system includes a food material data acquisition module, a food material basic data acquisition module, a cooking plan generation module, an interaction module, a control module, a monitoring module and a dynamic monitoring module;
[0053] The food material data collection module is electrically connected to the food material basic data acquisition module, and the food material basic data acquisition module includes a data collection module, and the data collection module is electrically connected to the cooking plan generation module;
[0054] The function of the cooking plan generation module is to generate a cooking plan based on the acquired ingredient data and the weight parameter data of each ingredient data. The cooking plan generation module is electrically connected to the interaction module, and the interaction module is electrically connected to the control module, and the control module is electrically connected to the monitoring module.
[0055] The function of the food material data collection module is to obtain some food material data.
[0056] The function of the food basic data acquisition module is to obtain the weight parameter data of each food data from the food data acquired by the food data acquisition module, and the weight parameter data of each food data is obtained by using a weight sensor arranged at the bottom of the placing container, and transmit each food data and the weight parameter data of each food data to the data collection module included in the food basic data acquisition module;
[0057] The function of the data collection module is to match the data of each ingredient and the weight parameter data of each ingredient with each other and transmit them to the cooking plan generation module.
[0058] The role of the interaction module is to complete the interaction between the operation information generated by the chef machine and the information required for interaction and the user operation terminal, and in the process of the cooking plan generation module generating a cooking plan, the interaction module interacts with the Internet terminal through the interaction module, and the operation information generated by the chef machine and the information required for interaction and the user operation terminal are specifically used in the following ways:
[0059] (1) Manual input interaction mode: manually input text through mobile devices or keyboards to complete the interactive task;
[0060] (2) Acquire the voice data interaction of the user operation end, obtain the voice parameter data generated by the user at the operation end, capture the keywords contained in the voice parameter data, and then complete the interaction operation.
[0061] During the process of voice data interaction in the interactive module, the voice data processing module contained in the interactive module will perform voice enhancement processing, interference reduction processing and echo cancellation processing.
[0062] The control module generates corresponding control instructions according to the cooking plan or optimization instructions transmitted by the monitoring module, and the control instructions all include operation time. At the same time, the control instructions or optimization instructions are transmitted to the corresponding chef machine electrical and mechanical devices. Then the control module cooperates with the various components of the chef machine to perform corresponding operations according to the cooking plan to complete the cooking operation of the ingredients.
[0063] The function of the monitoring module is to complete the temperature monitoring of the ingredients being cooked through the laser temperature measuring device installed on the top of the cooking vessel, and compare the temperature parameter data obtained in real time with the standard temperature values of the ingredients in each standard time period required in the cooking plan. When the temperature parameter data obtained in real time is lower than or higher than the standard temperature values of the ingredients in each standard time period required in the cooking plan, a corresponding optimization instruction is generated and transmitted to the control module, so that the control module completes the optimization with the optimization instruction.
[0064] The function of the dynamic monitoring module is to realize dynamic monitoring by providing a video monitoring camera device arranged vertically above the cooking vessel, thereby exchanging the monitored video parameter data to the operation terminal in real time.
[0065] Example 2
[0066] See also Figure 2 The multifunctional food processing control system of the chef machine includes a food data collection module. The specific steps of obtaining food data by the food data collection module are as follows:
[0067] Step 1: Acquire image data through a picture acquisition device electrically connected to the food data acquisition module;
[0068] Step 2: Performing data image data analysis on the image data acquired by the image acquisition device through the food data acquisition module;
[0069] Step 3: Verify the food data obtained through analysis through the food data collection module;
[0070] Step 4: Determine some food material data.
[0071] In step one, the image acquisition device is a camera structure, and the image acquisition device is located vertically above a number of food placement containers, with the placement containers as image acquisition frames. The function of the food placement containers is to place the required cooking ingredients in the placement containers according to their classification.
[0072] In step 2, the food data acquisition module performs data image data analysis on the image data acquired by the image acquisition device, and acquires food data by means of a training model, and the training model includes a number of food image data sets.
[0073] In step three, the food data acquired through analysis is verified by the food data collection module by using a deep learning framework to build a convolutional neural network, and verifying the food data through convolutional neural network training.
[0074] Example 3
[0075] See also Figure 3 The multifunctional food processing control system of the chef machine includes a cooking plan generating module. The specific steps of generating a cooking plan by the cooking plan generating module are as follows:
[0076] S1: The cooking plan generation module receives the food material data and the weight parameter data of each food material data;
[0077] S2: The cooking plan generation module obtains several cooking plans based on the food material data;
[0078] S3: communicating several cooking plans to the operation terminal through the interactive module;
[0079] S4: The cooking plan can be revised or the cooking plan of the ingredient data can be confirmed through the interactive module;
[0080] S5: After confirming the cooking plan of the food material data, the corresponding seasoning weight parameter data is matched according to the weight parameter data of each food material data;
[0081] S6: Complete the generation of the cooking plan and interact with the control module through the interaction module.
[0082] In S2, several cooking plans are obtained based on the food material data, and the several cooking plans are obtained in the following manner:
[0083] (1) Obtaining a cooking plan through the cooking plan and ingredient data contained in the food processor;
[0084] (2) If the cooking plan contained in the chef machine cannot be retrieved through the food data, the cooking plan is obtained through the food data through the Internet by using the interactive module and the search engine.
[0085] In S4, the corresponding ingredient data or cooking plan may be added with restriction conditions through the interactive module. After the corresponding ingredient data or cooking plan is added with restriction conditions through the interactive module, the cooking plan generation module regenerates the cooking plan.
[0086] In S6, the cooking plan needs to include the cooking steps of ingredients and seasonings, the cooking temperature and duration in each time period during the cooking process of the ingredients, and the specific operation requirements for the ingredients in each time period.
[0087] Example 4
[0088] See also Figure 4 The multifunctional food processing control system of the chef machine includes a multifunctional food cooking control system. The specific operation process of the multifunctional food cooking control system is as follows:
[0089] (1): First, determine a number of food data through the food data collection module;
[0090] (2): Secondly, the weight parameter data of each food material is determined through the food material basic data acquisition module;
[0091] (3): The cooking plan generation module then receives a number of ingredient data and weight parameter data corresponding to the ingredients;
[0092] (4): Then the cooking plan generation module generates a cooking plan;
[0093] (5): The control module then generates control instructions based on the cooking plan to cook the ingredients through the chef machine;
[0094] (6): Secondly, during the cooking process of the food processor, the monitoring module monitors the temperature parameter data of the food in real time;
[0095] (7): Then, the obtained temperature parameter data of the ingredients during cooking are compared with the standard temperature values of the ingredients in each standard time period required in the cooking plan to generate optimization instructions;
[0096] (8): Sending the optimization instruction to the control module, and then optimizing the cooking operation of the chef machine through the control module;
[0097] (9): The chef machine completes the cooking plan and finishes cooking the ingredients.
[0098] Although embodiments of the invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and alterations may be made to the embodiments without departing from the principles and spirit thereof, and the scope of the invention is defined by the appended claims and their equivalents.
Claims
1. A multifunctional food processing control system for a chef machine, including a multifunctional food cooking control system, characterized in that: The multifunctional food cooking control system includes an ingredient data acquisition module, an ingredient basic data acquisition module, a cooking plan generation module, an interaction module, a control module, a monitoring module and a dynamic monitoring module; The food material data collection module is electrically connected to the food material basic data acquisition module, and the food material basic data acquisition module includes a data collection module, and the data collection module is electrically connected to the cooking plan generation module; The function of the cooking plan generation module is to generate a cooking plan based on the acquired ingredient data and weight parameter data of each ingredient data. The cooking plan generation module is electrically connected to the interaction module, and the interaction module is electrically connected to the control module, and the control module is electrically connected to the monitoring module.
2. The multifunctional food processing control system for a chef machine according to claim 1, characterized in that: The function of the food material data collection module is to obtain a number of food material data. The specific steps of the food material data collection module to obtain food material data are as follows: Step 1: Acquire image data through a picture acquisition device electrically connected to the food data acquisition module; Step 2: Performing data image data analysis on the image data acquired by the image acquisition device through the food data acquisition module; Step 3: Verify the food data obtained through analysis through the food data collection module; Step 4: Determine some food material data.
3. The multifunctional food processing control system for a chef machine according to claim 1, characterized in that: The function of the food basic data acquisition module is to obtain the weight parameter data of each food data from the food data acquired by the food data acquisition module; The function of the data collection module is to match the data of each ingredient and the weight parameter data of each ingredient with each other and transmit them to the cooking plan generation module.
4. The multifunctional food processing control system for a chef machine according to claim 1, characterized in that: The specific steps of generating a cooking plan by the cooking plan generating module are as follows: S1: The cooking plan generation module receives the food material data and the weight parameter data of each food material data; S2: The cooking plan generation module obtains several cooking plans based on the food material data; S3: communicating several cooking plans to the operation terminal through the interactive module; S4: The cooking plan can be revised or the cooking plan of the ingredient data can be confirmed through the interactive module; S5: After confirming the cooking plan of the food material data, the corresponding seasoning weight parameter data is matched according to the weight parameter data of each food material data; S6: Complete the generation of the cooking plan and interact with the control module through the interaction module.
5. The multifunctional food processing control system for a chef machine according to claim 4, characterized in that: In S2, several cooking plans are obtained based on the food material data, and the several cooking plans are obtained in the following manner: (1) Obtaining a cooking plan through the cooking plan and ingredient data contained in the food processor; (2) If the cooking plan contained in the chef machine cannot be retrieved through the food data, the cooking plan is obtained through the food data through the Internet by using the interactive module and the search engine.
6. The multifunctional food processing control system for a chef machine according to claim 1, characterized in that: The function of the interaction module is to complete the interaction between the operation information generated by the chef machine and the information required for interaction and the user operation end, and to interact with the Internet end through the interaction module during the process of the cooking plan generation module generating the cooking plan.
7. The multifunctional food processing control system for a chef machine according to claim 1, characterized in that: The control module generates corresponding control instructions according to the cooking plan or optimization instructions transmitted by the monitoring module, and the control instructions all include operation time. At the same time, the control instructions or optimization instructions are transmitted to the corresponding chef machine electrical and mechanical devices. Then the control module cooperates with the various components of the chef machine to perform corresponding operations according to the cooking plan to complete the cooking operation of the ingredients.
8. The multifunctional food processing control system for a chef machine according to claim 1, characterized in that: The function of the monitoring module is to monitor the temperature of the ingredients being cooked through a laser temperature measuring device arranged on the top of the cooking vessel, and compare the temperature parameter data obtained in real time with the standard temperature values of the ingredients in each standard time period required in the cooking plan. When the temperature parameter data obtained in real time is lower than or higher than the standard temperature values of the ingredients in each standard time period required in the cooking plan, a corresponding optimization instruction is generated and transmitted to the control module, so that the control module completes the optimization with the optimization instruction.
9. The multifunctional food processing control system for a chef machine according to claim 1, characterized in that: The function of the dynamic monitoring module is to realize dynamic monitoring by providing a video monitoring camera device arranged vertically above the cooking vessel, thereby exchanging the monitored video parameter data to the operation terminal in real time.
10. The multifunctional food processing control system for a chef machine according to claim 1, characterized in that: The specific operation process of the multifunctional food cooking control system is shown as follows: (1): First, determine a number of food data through the food data collection module; (2): Secondly, the weight parameter data of each food material is determined through the food material basic data acquisition module; (3): The cooking plan generation module then receives a number of ingredient data and weight parameter data corresponding to the ingredients; (4): Then the cooking plan generation module generates a cooking plan; (5): The control module then generates control instructions based on the cooking plan to cook the ingredients through the chef machine; (6): Secondly, during the cooking process of the food processor, the monitoring module monitors the temperature parameter data of the food in real time; (7): Then, the obtained temperature parameter data of the ingredients during cooking are compared with the standard temperature values of the ingredients in each standard time period required in the cooking plan to generate optimization instructions; (8): Sending the optimization instruction to the control module, and then optimizing the cooking operation of the chef machine through the control module; (9): The chef machine completes the cooking plan and finishes cooking the ingredients.
Citation Information
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