Unmanned intelligent cooking facility
The unmanned intelligent cooking room, with its robotic control and automated design, solves the problem of producing high-efficiency, uniform, and delicious dishes in large restaurants and kitchens, while reducing labor costs and keeping the kitchen clean.
Patent Information
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- SHANGHAI AICAN ROBOT GRP CO LTD
- Filing Date
- 2026-01-07
- Publication Date
- 2026-07-30
AI Technical Summary
Existing intelligent cooking machines cannot meet the needs of large restaurants and kitchens for efficient, standardized, and delicious dishes, and they also suffer from problems such as high labor costs, low food production efficiency, and a messy environment.
Design an unattended intelligent cooking room that uses robot-controlled racks and a main control center. The robot is responsible for feeding ingredients, operating the wok, and serving the dishes. It is equipped with transparent walls and a central fume filtration device to achieve automated cooking and cleaning.
It enables efficient, standardized, and flavorful food production in large restaurants and kitchens, reduces labor costs, and ensures a clean kitchen environment and efficient food preparation.
Smart Images

Figure CN2026071067_30072026_PF_FP_ABST
Abstract
Description
Unattended smart cooking room Technical Field
[0001] This invention relates to the field of cooking technology, and more particularly to an unattended intelligent cooking room. Background Technology
[0002] With the continuous development of technology, a large number of household appliances have emerged in daily life, providing great convenience to people. For example, the emergence of intelligent cooking machines allows people to enjoy delicious food without having to cook themselves. However, in today's catering industry, the preparation, seasoning, cooking, and serving of dishes in the kitchen are all done manually. Central kitchens, group meal delivery services, community restaurants, and canteens of government agencies and institutions (hospitals, universities) need to provide meals for a large number of people every day, which makes this business model have disadvantages such as high labor costs, low food production efficiency, and inability to guarantee the accuracy and consistency of dishes. In addition, the kitchens of these restaurants are generally messy and have slippery floors. Existing intelligent cooking machines can no longer meet the needs of kitchens that need to supply a large number of meals. Therefore, how to design an unattended intelligent cooking room is an urgent problem to be solved in the industry. Technical issues
[0003] The technical problem to be solved by the present invention is to provide an unattended intelligent cooking room that is suitable for large restaurants and kitchens, can cook dishes with good consistency, excellent color, aroma and taste, and has high efficiency in serving dishes. Technical solutions
[0004] To solve the above problems, the present invention adopts the following technical solution: an unattended intelligent cooking room, which is an enclosed space for unattended operation. The intelligent cooking room contains a rack assembly and a robot controlled by a main control center. The rack assembly includes several structurally identical and separately arranged rack units. The human-machine interface device of the main control center is located outside the intelligent cooking room. Each rack unit is divided into an upper support, a middle support, and a bottom plate from top to bottom. The upper support is used to install a food dispensing device. The middle support is used to support a wok device for cooking ingredients, which is controlled by the main control center. The bottom plate is used to receive a serving plate for the cooked dishes. Each rack unit is also equipped with a seasoning injection pipe for injecting the required seasonings into the corresponding wok device. The robot, according to instructions from the main control center, places the food container containing the food to be cooked into the food dispensing device or delivers the serving plate containing the cooked dishes to the food retrieval station.
[0005] Preferably, the rack units are arranged in parallel at intervals along a straight line, and the intelligent cooking chamber is equipped with a track for the robot to move, the track being parallel to the line connecting the rack units.
[0006] Preferably, a refrigerated rack for storing several food containers is located on the left or right side of the rack assembly inside the intelligent cooking room. The food containers are equipped with information identification tags that include cooking information such as the name of the dish to be cooked and the type of food container. Each food container in the refrigerated rack is equipped with a reader that reads the information identification tag and records the storage location of the food container.
[0007] Preferably, a food delivery port is provided on the refrigerated display rack, and each food container in the refrigerated display rack can be moved to the food delivery port by a lifting transmission mechanism and a translation transmission mechanism provided on the refrigerated display rack according to the instructions issued by the control center.
[0008] Preferably, the robot moves via an auxiliary track set in front of the food storage rack and grabs the target food storage box placed on the food storage rack.
[0009] Preferably, the rack units are arranged side by side at intervals along the arc direction, the robot is set at the center of the arc, and a conveyor belt is provided in the intelligent cooking room connecting the food delivery port and the dish retrieval position.
[0010] Preferably, the robotic arm has a multi-head structure at its front end, which includes a gripper for grasping the food container, a spray device for cleaning the wok and the surrounding environment, and a cleaning device for adsorbing residue inside the intelligent cooking room.
[0011] Preferably, a first image recognition device is provided above the wok device to detect the position of the liquid level in the wok.
[0012] Preferably, the robot is equipped with a second image recognizer for identifying whether there is residue in the wok device and its surrounding environment.
[0013] Preferably, the frame unit is equipped with a touch screen for maintenance, and the touch screen is electrically connected to the wok device and the food feeding device via a quick-release structure.
[0014] Preferably, a central oil fume adsorption and filtration device is installed outside the intelligent cooking room.
[0015] Preferably, the seasoning injection pipe is connected to a centralized seasoning supply system.
[0016] Preferably, the walls of the smart cooking room are made of transparent building materials. Beneficial effects
[0017] Compared with the prior art, the beneficial effects of the present invention are:
[0018] The intelligent cooking room is equipped with racks and robots controlled by a central control center. Following instructions from the control center, the robots either place food containers filled with ingredients into the food dispensing device or deliver plates containing cooked dishes to the food retrieval station. This intelligent cooking room is suitable for large restaurants and kitchens, capable of providing meals for a large number of diners, producing consistent, flavorful, and visually appealing dishes with high efficiency. Furthermore, the use of robots for ingredient retrieval and delivery ensures a clean and tidy environment. Attached Figure Description
[0019] Figure 1 is a schematic diagram of a smart cooking room with multiple food containers (preferably three);
[0020] Figure 2 is an enlarged view of point A in Figure 1;
[0021] Figure 3 is a schematic diagram of a smart cooking room with multiple food containers (preferably three);
[0022] Figure 4 is a schematic diagram of a smart cooking room with four food storage compartments.
[0023] Figure 5 is an enlarged view of point B in Figure 4;
[0024] Figure 6 is a schematic diagram of a smart cooking room with four food storage compartments.
[0025] Figure 7 is a schematic diagram of an integrated seasoning supply system;
[0026] Figure 8 is a perspective view of the assembly diagram of the food feeding device, the wok device and the frame unit.
[0027] Figure 9 is a front view of the assembly diagram of the food feeding device, the wok device and the frame unit.
[0028] Figure 10 is a schematic diagram of the assembly of the food feeding device, the wok device and the frame unit.
[0029] In the diagram: 10. Frame assembly; 101. Frame unit; 1011. Base plate frame; 1012. Partition; 11. Robot; 12. Food feeding device; 13. Wok device; 14. Serving tray; 15. Food serving box; 16. Vegetable retrieval position; 17. Track; 18. Fresh-keeping rack; 19. Centralized seasoning supply system; 191. Seasoning barrel; 192. Seasoning conveying pipe; 20. Smoke exhaust port; 21. Secondary air duct; 22. Seasoning bottle assembly. The best embodiment of the present invention
[0030] As shown in Figures 1 to 10, the present invention provides an unattended intelligent cooking room (hereinafter referred to as intelligent cooking room), which is an enclosed space for unattended operation. The walls of the intelligent cooking room are preferably made of transparent building materials. Inside the intelligent cooking room, there is a rack assembly 10 and a robot 11 controlled by the main control center of the intelligent cooking room. People can watch and appreciate the entire process of cooking dishes outside the intelligent cooking room.
[0031] I. Rack Group 10
[0032] The rack assembly 10 includes several structurally identical and separately arranged rack units 101. Each rack unit 101 includes multiple crossbeams, longitudinal beams, and columns that are fixedly connected. The rack unit 101 is divided from top to bottom into an upper support, a middle support, and a base plate 1011. The upper support is used to install the food feeding device 12, the middle support is used to support the cooking food and the wok device 13 which is controlled by the main control center, and the base plate 1011 is used to receive the serving tray 14 of the dishes cooked by the wok device 13.
[0033] In order to simplify the structure of the rack unit 101, reduce manufacturing costs, and prevent wastewater from splashing everywhere when cleaning the rack unit 101, the space enclosed by the columns is set as a semi-closed structure, that is, partitions 1012 are provided on the left, right and rear sides enclosed by the four columns.
[0034] To facilitate the robot 11 in taking and placing food containers 15 and plates 14, and to allow people outside the smart cooking room to observe and appreciate them, the front and top of the rack unit 101 are designed as an open structure.
[0035] The uprights are used to support the load of the entire frame unit 101. They can be fixedly installed on the indoor ground or installed on a bracket that can move forward, backward, left, and right. The latter is preferred in this invention.
[0036] The preferred arrangement of each rack unit 101 is as follows:
[0037] The first method involves arranging each rack unit 101 in a straight line at intervals, with the distance between each rack unit 101 depending on the size of the smart cooking room.
[0038] The distance between two adjacent rack units 101 should be such that it is convenient for operators to operate when maintaining the rack unit 101. Preferably, the space around the rack unit 101 should be 50cm-80cm.
[0039] In the second type, each rack unit 101 can be arranged side by side at intervals along the arc direction, with the robot 11 set at the center of the arc, and a conveyor belt connecting the food delivery port and the food retrieval position 16 is provided in the intelligent cooking room.
[0040] The arc distance between two adjacent rack units 101 should be such that it is convenient for operators to operate when maintaining the rack unit 101. Preferably, the space distance around the rack unit 101 is 50cm-80cm.
[0041] 1. Food ingredient feeding device 12
[0042] The food feeding device 12 is used to receive the food container 15, and includes a drive mechanism that drives the food container 15 to pour the food therein into the wok of the wok device 13 and is controlled by the control board of the frame unit 101.
[0043] There are two specific ways to drive the food container 15: First, as shown in Figures 1-3 and 8-9, the food container 15 is rotated at a certain angle and tilted to put the ingredients placed in multiple food containers (preferably three) into the wok in sequence according to the program set in the recipe (at this time, the wok opening is facing upward); Second, as shown in Figures 4-6 and 10, the food container 15 is flipped 180 degrees. This type of food container 15 is a box with four compartments. The ingredients placed in the four compartments are put into the wok in sequence according to the program set in the recipe (at this time, the wok opening is facing upward).
[0044] 2. Wok assembly 13
[0045] The wok device 13 includes a wok and a wok drive motor that drives the wok to rotate. The wok is equipped with stirring blades for stir-frying ingredients, thereby realizing automatic stir-frying.
[0046] The wok device 13 is controlled by the main control center to cook according to the recipe program of the dish being cooked. After the cooking is completed according to the recipe program, the present invention also adds another judgment program, namely, judging whether the liquid level of the dish in the wok is appropriate, which is completed by the first image recognition device set above the wok.
[0047] The wok can have graduated lines on its inner wall. The first image recognizer sends the graduated line position signal corresponding to the detected sauce level to the main control center. The main control center compares this signal with pre-stored images of the required sauce levels for the prepared dish to determine if the sauce level is appropriate. If the sauce level is too high, the reduction time can be extended. If the sauce level is too low, the required amount of broth or water can be added to the wok, and the cooking time extended.
[0048] 3. Seasoning injection pipe
[0049] The seasoning injection pipe is installed on each frame unit 101 and is used to inject the required seasonings into the corresponding wok device 13. The front end of the seasoning injection pipe is provided with a seasoning nozzle. The seasoning injection pipe is preferably connected to the centralized seasoning supply system 19 (the seasoning injection pipe can also be connected to the seasoning bottle group 22 installed in each frame unit 101).
[0050] The centralized seasoning supply system 19 includes several seasoning barrels 191 for storing different seasonings (such as oil, soy sauce, sugar water, salt water, vinegar, chicken essence water, etc.) and seasoning conveying pipes 192 adapted to the seasoning barrels 191.
[0051] 3.1, Seasoning container 191
[0052] The seasoning bucket 191 is preferably installed outside the intelligent cooking room. The bottom of each seasoning bucket 191 is connected to the seasoning injection pipe through the seasoning delivery pipe 192. When cooking, the main control center of the intelligent cooking room sends instructions to the seasoning nozzle according to the recipe program of the dish being cooked. The required seasonings are directly injected into the wok of the intelligent cooking machine through the seasoning nozzle.
[0053] The seasoning container 191 is equipped with a liquid level alarm device. When the seasoning in the seasoning container 191 gradually decreases until the liquid level alarm device is triggered, it can remind people to add the corresponding seasoning to the seasoning container 191.
[0054] 3.2, Seasoning conveying pipe 192
[0055] The seasoning delivery pipe 192 consists of food-grade rigid pipes and flexible pipes. The rigid pipes can be made of stainless steel, polyurethane, or PVC and can be located at the front end (near the seasoning container 191 to each frame unit 101). The flexible pipes can be located between the rigid pipes and the seasoning injection pipe. The seasoning delivery pipe 192 consists of a main pipe and multiple branch pipes. The main pipe is equipped with a ball valve for easy maintenance of the seasoning delivery pipe 192 and the seasoning container 191. Each branch pipe is connected to a supply switch, the outlet of which is connected to the seasoning injection pipe. The supply switch is preferably a solenoid valve or a seasoning pump controlled by the main control circuit (a main control circuit composed of multiple intelligent cooking machines). In addition, each branch pipe is equipped with a flow meter located at the inlet of the supply switch, which allows for real-time monitoring of the flow rate on the corresponding branch pipe, enabling precise injection of seasonings into the wok.
[0056] 4. Touch screen
[0057] When the food feeding device 12 or the wok device 13 needs maintenance, action commands (including the movement of the motion mechanism, the effectiveness of the heating device, and the detection of relevant performance parameters) need to be issued to each module of the intelligent cooking machine through the touch screen. After the maintenance is completed, the touch screen can be removed.
[0058] The touchscreen display is electrically connected to the wok unit 13 and the food feeding device 12 via a quick-release structure, and the frame unit 101 is provided with a mounting position for fixing the touchscreen display. Specifically, the touchscreen display has an operating interface, and the quick-release structure preferably uses a male-female connector. In addition, the touchscreen display can also be wirelessly connected to the wok unit 13 and the food feeding device 12, preferably via Bluetooth.
[0059] 5. Base plate frame 1011
[0060] A perforated mesh plate or a solid flat plate is provided on the base plate frame 1011. A drain pipe is provided below the base plate frame 1011. When the intelligent cooking machine finishes cooking a dish, the wok is rotated downwards until the wok is facing down and the dish inside is poured into the serving plate 14 placed on the perforated mesh plate or solid flat plate. Then, the robot 11 sends the serving plate 14 to the dish retrieval position 16 or the conveyor belt of the intelligent cooking machine.
[0061] II. Main Control Center
[0062] The human-machine interface device of the main control center is preferably located outside the intelligent cooking room, and controls the operation of the food feeding device 12, the wok device 13, and the robot 11 via wired or wireless means. The wired connection can be Ethernet transmission or serial communication, while the wireless connection can be Wi-Fi or Bluetooth transmission.
[0063] III. Robot 11
[0064] Robot 11, following instructions from the main control center, places the food container 15 containing the ingredients to be cooked into the food dispensing device 12. Following the recipe, it feeds the main and auxiliary ingredients into the wok via the dispensing device 12. The ingredients are then cooked using the heating components of the wok device 13 (preferably electromagnetic heating or a thick-film heater). Seasonings are injected into the wok through the seasoning injection pipe. The system collects and controls the heating and cooling times, the heat preservation time for each cooking stage, and the corresponding temperature values. After cooking, Robot 11, following instructions from the main control center, delivers the serving tray 14 containing the cooked dish to the food retrieval station 16. This intelligent cooking room is suitable for large restaurants and kitchens, capable of providing meals for a large number of diners, producing consistent, flavorful, and visually appealing dishes with high efficiency.
[0065] The robotic arm of robot 11 has a multi-head structure at its front end, which includes a gripper for grasping the food container 15, a spray device for cleaning the wok device 13 and the environment around the wok device 13, and a cleaning device for adsorbing residue inside the smart cooking room.
[0066] The gripper is used to grab the ingredient container 15 corresponding to the dish to be cooked and place it into the ingredient feeding device 12. The gripper is also used to grab the serving plate 14 containing the cooked dish and transfer it to the dish retrieval position 16.
[0067] The spraying device cleans the inside and around the wok with high-pressure water jets.
[0068] The cleaning device is used to absorb the residue removed during washing.
[0069] To ensure the cleanliness of the smart cooking room, the robot 11 can be scheduled to clean the cooking room regularly via the main control center. Additionally, the robot 11 is equipped with a second image recognition device to identify whether there is residue in the wok unit 13 and its surrounding environment. The main control center stores photo data of the smart cooking room that needs cleaning, and the robot 11 determines when to clean the smart cooking room by comparing the data.
[0070] In order to clean the dead corners around the food feeding device 12 and the wok device 13 in the rack unit 101, fixed water and / or steam spray heads can be installed on multiple columns. The spray heads are connected to an external water purification supply system through pipes extending downward along the columns and hard water pipes laid under the smart cooking chamber. Smart water valves controlled by the main control center are installed on the pipes.
[0071] IV. Track 17
[0072] The track 17 is installed inside the intelligent cooking chamber and is used for the movement of the robot 11. The track 17 is parallel to the line connecting each rack unit 101, and the distance between the track 17 and each rack unit 101 is 0.8m-1m. Specifically, the track 17 can be installed on the floor of the intelligent cooking chamber, suspended in the air by a bracket, or installed on the top of the intelligent cooking chamber. In this invention, it is preferably installed on the floor of the intelligent cooking chamber.
[0073] V. 18 Fresh-keeping racks
[0074] The food preservation rack 18 is located on the left or right side of the rack assembly 10 inside the smart cooking room, and is perpendicular or parallel to the track 17. The food preservation rack 18 is equipped with storage compartments for storing several food containers 15. These containers can be placed in the smart cooking room in advance, or they can be transported from outside the smart cooking room into the smart cooking room by a smart transfer vehicle.
[0075] The food container 15 is equipped with an information identification label (which can be an electronic tag, QR code, barcode, or magnetic barcode) containing cooking information including the name of the dish to be cooked, the type of ingredient, and the type of food container 15 (different models of smart cooking machines have different food container 15 configurations). The storage compartment contains a reader that reads the information identification label and records the location of the food container 15. Because the reader is connected to the main control center, the robot 11 can grab the food container 15 for the dishes to be cooked from different models of smart cooking machines according to the instructions from the main control center.
[0076] The method for removing food container 15 is as follows:
[0077] The first method involves providing a food delivery port on the refrigerated display rack 18. Each food container 15 in the refrigerated display rack 18 can be moved to the food delivery port according to the instructions issued by the control center via a lifting transmission mechanism and a translation transmission mechanism (refer to existing technologies in other industries, such as intelligent multi-level parking lots) set in the refrigerated display rack 18.
[0078] In the second method, robot 11 moves along an auxiliary track positioned in front of the food storage rack 18 and grabs the target food container 15 placed on the food storage rack 18. Specifically, when the food storage rack 18 is perpendicular to the track 17, the auxiliary track is perpendicular to the track 17 and has the same length as the food storage rack 18; when the food storage rack 18 is parallel to the track 17, the auxiliary track is connected to the track 17 and has the same length as the food storage rack 18.
[0079] VI. Centralized oil fume adsorption and filtration device (hereinafter referred to as the central filtration device)
[0080] The central filtration unit includes a primary filtration module, a secondary filtration module, and a fan. The primary filtration module and the secondary filtration module are integrated in a sealed enclosure. The air inlet of the fan is connected to the air outlet of the secondary filtration module. The entire central filtration unit is preferably installed outside the smart cooking room.
[0081] Smoke vents 20 are provided at the top of the smart cooking room and above each rack unit 101 and on the rear partition 1012 of each rack unit 101. The smoke vents 20 are connected to the main air duct located outside the smart cooking room through their respective secondary air ducts 21. The air outlet of the main air duct is connected to the air inlet of the primary filter module.
[0082] 1. Primary Filtering Module
[0083] It consists of a box with an opening at the top and a cover that can be quickly attached and detached from the box.
[0084] Preferably, in this invention, the box body is made of plastic and has an integral molding structure. The box body is divided into two parts: a groove whose outer contour projection on the horizontal plane is a "U" shape and a flat rectangular body extending downward along the rear bottom surface of the groove. The top opening of the groove is the top opening of the box body.
[0085] The flat rectangular body contains an oil fume channel through which oil fume flows from right to left in an "N" shape, or through which oil fume flows from bottom to top in an "S" shape (not shown in the figure). Preferably, the flat rectangular body contains a liquid filter medium (hydrophilic or oleophilic liquid), and the tank contains a filter medium such as steel wool or water mist sponge.
[0086] 2. Re-filtering module
[0087] The re-filtration device is located above the tank and is used to re-filter the oil fume gas discharged from the tank after primary filtration.
[0088] Specifically, the re-filtration module consists of a rectangular housing with an open top surface and a top plate that can be quickly installed and removed from the opening of the housing. A sealing structure is provided between the top plate and the housing. The sealing structure can be a sealing gasket located on the lower surface of the top plate or a sealing ring located along the outer perimeter of the top plate.
[0089] Furthermore, a fan mounting position is provided on the left side of the housing, and the fan of the central filter device is fixedly installed in this fan mounting position.
[0090] Under the action of the fan, the oil fume gas, after being initially filtered by the housing, enters the housing and is filtered again through the oil fume channel formed from right to left in the housing. Finally, it is discharged from the exhaust port of the fan to the outside of the smart cooking room. Preferably, the oil fume channel in the housing is equipped with activated carbon sponge and HEPA mesh.
[0091] To increase the ventilation power, a relay fan can be installed on the secondary air duct 21 in the smart cooking room.
[0092] The above are merely preferred embodiments of the present invention and are not intended to limit the present invention in any way. Therefore, any modifications, equivalent changes, and alterations made to the above embodiments based on the technical essence of the present invention without departing from the scope of the present invention shall still fall within the scope of the present invention.
Claims
1. An unattended intelligent cooking room, characterized in that, It is an unmanned, enclosed space containing a rack assembly and a robot controlled by a main control center within the intelligent cooking room. The rack assembly comprises several structurally identical but separately arranged rack units. The human-machine interface device of the main control center is located outside the intelligent cooking room. Each rack unit is divided into an upper support, a middle support, and a bottom plate from top to bottom. The upper support is used to install the food dispensing device, the middle support is used to support the cooking food and the wok device controlled by the main control center, and the bottom plate is used to receive the serving tray of the cooked food. Each rack unit is also equipped with a seasoning injection pipe for injecting the required seasonings into the corresponding wok device. The robot, according to the instructions of the main control center, places the food container containing the food to be cooked into the food dispensing device or delivers the serving tray containing the cooked food to the food retrieval station.
2. The unattended intelligent cooking room according to claim 1, characterized in that, The rack units are arranged in parallel along a straight line at intervals. The intelligent cooking room is equipped with a track for the robot to move along, and the track is parallel to the line connecting the rack units.
3. The unattended intelligent cooking room according to claim 2, characterized in that, Inside the intelligent cooking room, on the left or right side of the rack assembly, there is a refrigerated rack for storing several food containers. Each food container has an information identification mark that includes cooking information such as the name of the dish to be cooked and the type of food container. Each storage compartment in the refrigerated rack that holds each food container is equipped with a reader that reads the information identification mark and records the storage location of the food container.
4. The unattended intelligent cooking room according to claim 3, characterized in that, A food delivery port is provided on the refrigerated display rack. Each food container in the refrigerated display rack can be moved to the food delivery port according to the instructions issued by the control center through the lifting and translation transmission mechanism set on the refrigerated display rack.
5. The unattended intelligent cooking room according to claim 3, characterized in that, The robot moves along an auxiliary track set in front of the food storage rack and grabs the target food container placed on the food storage rack.
6. The unattended intelligent cooking room according to claim 1, characterized in that, Each rack unit is arranged in parallel at intervals along the arc direction, and the robot is set at the center of the arc. A conveyor belt is provided in the intelligent cooking room connecting the food delivery port and the dish retrieval position.
7. The unattended intelligent cooking room according to any one of claims 1-6, characterized in that, The robot's robotic arm has a multi-head structure at its front end, which includes a gripper for grasping the food container, a spray device for cleaning the wok and the surrounding environment, and a cleaning device for adsorbing residue inside the intelligent cooking room.
8. The unattended intelligent cooking room according to claim 7, characterized in that, The wok device is equipped with a first image recognition device above it, which can detect the position of the liquid level in the wok.
9. The unattended intelligent cooking room according to claim 8, characterized in that, The robot is equipped with a second image recognition device for identifying whether there is residue in the wok device and its surrounding environment.
10. The unattended intelligent cooking room according to any one of claims 1-6, characterized in that, The frame unit is equipped with a touch screen for maintenance, and the touch screen is electrically connected to the wok device and the food feeding device via a quick-release structure.
11. The unattended intelligent cooking room according to claim 7, characterized in that, A central fume adsorption and filtration device is installed outside the smart cooking room.
12. The unattended intelligent cooking room according to claim 7, characterized in that, The seasoning injection pipe is connected to a centralized seasoning supply system.
13. The unattended intelligent cooking room according to claim 12, characterized in that, The walls of this smart cooking room are made of transparent building materials.