Test chamber, control method for a test chamber, and storage medium

By adopting a first-module and second-module structure in the experimental box and using pins to connect sensors, the problems of limited functionality and high maintenance costs of the experimental box are solved, thereby expanding the experimental scenarios and reducing maintenance costs.

CN116129721BActive Publication Date: 2025-11-21深圳开鸿数字产业发展有限公司
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Patent Information

Application Number
CN202310121055.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-01-31
Publication Date
2025-11-21
Estimated Expiration
2043-01-31

AI Technical Summary

Technical Problem

The existing experimental chambers have limited functionality, are prone to damage, and have high maintenance costs, mainly because the sensors are connected by welding node modules.

Method used

The system adopts a first module and a second module structure. The first module is equipped with a high-level operating system, and the second module is equipped with a low-level operating system. The sensor is connected via a pin connector. The first module determines the target experimental scenario based on the power-on information of the sensor.

Benefits of technology

The experimental scenarios of the experimental box are expanded, maintenance costs are reduced, and the sensor is easy to replace by installing it with a pin, which simplifies the use of the experimental box.

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Abstract

The application discloses an experiment box, a control method of the experiment box and a storage medium, and is characterized in that the provided experiment box comprises a first module and a second module, the first module is installed with an experiment application program storing a plurality of experiment scene information, and the second module is in pluggable connection with a plurality of sensors; wherein when the first module and the second module are in communication connection, power-on information of the plurality of sensors of the second module is sent to the experiment application program, and the first module determines and starts a target experiment scene in the experiment scene information according to the power-on information through the experiment application program. The experiment box provided by the application can greatly expand the experiment scene of the experiment box, and the sensors are easy to replace in the form of plug pins, thereby reducing the maintenance cost of the experiment box.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of experiment boxes, in particular to an experiment box, a control method of the experiment box and a storage medium. BACKGROUND

[0002] At present, many experiment boxes can independently complete relevant classic experiments in their respective fields, so that students can complete various principle learning indoors, greatly exercise the students' hands-on ability and expand the students' thinking ability. The existing experiment boxes are simple to operate, but are single in function since they are developed for specific experiments, and are prone to damage and high in maintenance cost since they connect sensors in a node module welding manner. SUMMARY

[0003] The experiment box, the control method of the experiment box and the storage medium disclosed by the present application solve the problem of easy damage and high maintenance cost of the existing experiment boxes.

[0004] In a first aspect, the present application provides an experiment box, characterized in that the experiment box comprises a first module and a second module, the first module is loaded with a first-level operating system, the second module is loaded with a second-level operating system, the first level is higher than the second level, the first module is installed with an experiment application program, the experiment application program stores a plurality of experiment scene information, and the second module is pluggably connected with a plurality of sensors.

[0005] When the first module and the second module are in communication connection, the power-on information of the plurality of sensors of the second module is sent to the experiment application program, the first module determines a target experiment scene in the experiment scene information according to the power-on information through the experiment application program, and starts the target experiment scene.

[0006] In a second aspect, the present application provides a control method, characterized in that the method comprises:

[0007] When the first module and the second module are in communication connection, the power-on information of the plurality of sensors installed on the second module is sent to the experiment application program installed on the first module;

[0008] The experiment application program determines a target experiment scene in the experiment scene information according to the power-on information;

[0009] The experiment application program starts the target experiment scene.

[0010] In a third aspect, the present application provides a storage medium, and a computer program is stored on the computer readable storage medium provided by the present application. When the computer program is executed by a processor, the processor implements the control method of the experiment box provided by the embodiments of the present application.

[0011] The application provides an experiment box, a control method of the experiment box and a storage medium. The experiment box comprises a first module and a second module. A plurality of sensors are installed on the second module through pins. The first module determines a corresponding target experiment scene according to power-on information of the sensors on the second module. The experiment box provided by the application can greatly expand the experiment scene of the experiment box, and the sensors are easy to replace in the form of pins, thereby reducing the maintenance cost of the experiment box. BRIEF DESCRIPTION OF DRAWINGS

[0012] In order to more clearly illustrate the technical solutions of the embodiments of the application, the drawings needed to be used in the embodiment description will be briefly introduced. Obviously, the drawings in the following description are some embodiments of the application, and other drawings can be obtained by those skilled in the art without creative labor.

[0013] Figure 1 is a structural schematic diagram of an experiment box provided by the embodiment of the application;

[0014] Figure 2a is a structural schematic diagram of an experiment box provided by the embodiment of the application;

[0015] Figure 2b is a structural schematic diagram of an experiment box provided by the embodiment of the application;

[0016] Figure 3 is a connection frame schematic diagram of a first module and a second module provided by the embodiment of the application;

[0017] Figure 4 is a structural schematic diagram of smart agriculture provided by the embodiment of the application;

[0018] Figure 5 is a structural schematic diagram of smart medical treatment provided by the embodiment of the application;

[0019] Figure 6 is a structural schematic diagram of smart home provided by the embodiment of the application;

[0020] Figure 7 is a structural schematic diagram of smart traffic provided by the embodiment of the application;

[0021] Figure 8 is a step schematic flow chart of the control method of the experiment box provided by the embodiment of the application;

[0022] Figure 9 is a schematic block diagram of the experiment box provided by the embodiment of the application.

[0023] Main elements and symbol explanation:

[0024] 10, experimental box; 11, first module; 12, second module; 121, switch unit; 122, power supply unit; 13, sensor; 14, display screen; 15, camera; 16, microphone; 17, buzzer.

[0025] It should be understood that the above general description and the following detailed description are only exemplary and explanatory, and cannot limit the present application. DETAILED DESCRIPTION

[0026] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0027] The flowchart shown in the drawings is only an example and does not necessarily include all the contents and operations / steps, nor does it necessarily execute in the order described. For example, some operations / steps can be further decomposed, combined or partially merged, so the actual execution order can be changed according to the actual situation.

[0028] It should be understood that the terms used in the specification of the present application are only for the purpose of describing specific embodiments and are not intended to limit the present application. As used in the specification and the appended claims of the present application, unless the context clearly indicates otherwise, the singular forms "a", "an" and "the" are intended to include the plural forms.

[0029] It should be understood that, in order to clearly describe the technical solutions of the embodiments of the present application, in the embodiments of the present application, the same items or similar items with basically the same function and role are distinguished by using "first", "second" and the like. For example, the first module and the second module are only to distinguish different modules, and do not limit the order. Those skilled in the art can understand that "first", "second" and the like do not limit the number and execution order, and "first", "second" and the like do not necessarily mean different.

[0030] It should also be understood that the term "and / or" used in the specification and the appended claims means one or more of the associated listed items in any combination and all possible combinations, and includes these combinations.

[0031] In order to facilitate understanding of the embodiments of the present application, some glossaries involved in the embodiments of the present application are briefly explained below.

[0032] 1. Experiment box: the experiment box can be roughly divided into: physical experiment box, chemical experiment box, biological experiment box, natural science experiment box, etc. according to scientific disciplines; According to the different purposes, it can be divided into: new curriculum standard experiment box, inquiry experiment box, classroom experiment box, etc.

[0033] Experiment box will not only become a "treasure box" for students to conduct scientific experiments, but also bring teachers a new teaching concept. Teaching experiment box can make teachers' teaching focus no longer limited to books. Once the experiment box is popularized, it will appear in the classrooms of primary and secondary school students, extracurricular activity rooms and small science stations, encouraging children to break through the limitations of the textbook and exercise their imagination and creativity to create their own works.

[0034] 2. MQTT protocol: Message Queuing Telemetry Transport (MQTT) is a real-time communication protocol developed by International Business Machine (IBM). The protocol supports all platforms and can connect almost all networked items and external connections, and is used as a communication protocol for sensors and actuators (such as connecting houses through Twitter).

[0035] 3. Distributed soft bus: Distributed soft bus is a virtual and "intangible" bus. It can connect all system devices based on KaihongOS system development within the same local area network and has the characteristics of self-discovery, ad hoc networking, high bandwidth and low latency. In addition to connecting hardware devices in the same network protocol, soft bus technology also supports networking for heterogeneous networks with different protocols.

[0036] In the traditional scenario, two devices that need Bluetooth transmission must have Bluetooth, and devices that need WIFI transmission must have WIFI. Bluetooth and WIFI cannot communicate with each other. Soft bus proposes a Bluetooth and WIFI fusion network networking technology, which solves the problem of data communication between devices with different protocols. Multiple devices can automatically build a logically fully connected network, and users or business developers do not need to care about the networking method and physical protocol.

[0037] The transmission rate of traditional protocols differs greatly, and the interactive latency and reliability of multiple devices are difficult to guarantee. Soft bus transmission proposes three goals: high bandwidth, low latency, and high reliability. Compared with the traditional 7-layer model, soft bus proposes a 4-layer "extreme protocol" that simplifies the 4-layer protocol in the middle to one layer to improve the effective payload, with an effective bandwidth improvement of 20%. Devices transmit data based on the UDP protocol, abandon the traditional sliding window mechanism, achieve quick recovery of packet loss, and have intelligent network change perception function, which can adapt to flow control and congestion control.

[0038] The following detailed description of some embodiments of this application is provided in conjunction with the accompanying drawings. Unless otherwise specified, the following embodiments and features can be combined with each other.

[0039] Existing teaching experimental kits can independently complete relevant classic experiments in their respective fields, enabling students to learn various principles indoors and greatly improving their hands-on skills and expanding their thinking abilities. Existing experimental kits are easy to operate, but because they are developed for specific experiments, their functions are relatively limited. Furthermore, the sensors are connected by welding node modules, which makes them prone to damage and increases maintenance costs.

[0040] To address the aforementioned issues, embodiments of this application provide an experimental box, a control method for the experimental box, and a storage medium. The provided experimental box includes a first module and a second module. By mounting multiple sensors on the second module via pins, the first module determines the corresponding target experimental scenario based on the power-on information of the sensors on the second module. Using the experimental box provided in this application significantly expands the experimental scenarios available for the experimental box, and the pin-mounted sensors facilitate easy replacement, reducing the maintenance cost of the experimental box.

[0041] like Figure 1 As shown, Figure 1 This is a schematic diagram of the structure of an experimental box 10 provided in an embodiment of this application. The experimental box 10 includes a first module 11 and a second module 12. The first module 11 is equipped with a first-level operating system, and the second module 12 is equipped with a second-level operating system. The first level is higher than the second level. The first module 11 is equipped with an experimental application, which stores multiple experimental scenario information. The second module 12 is pluggably connected to multiple sensors 13. When the first module 11 and the second module 12 are connected in communication, the power-on information of the multiple sensors 13 of the second module 12 is sent to the experimental application. The first module 11 determines the target experimental scenario in the experimental scenario information based on the power-on information through the experimental application and activates the target experimental scenario.

[0042] Specifically, by using pins to connect the sensor 13 to the second module 12 in a pluggable manner, the problem of easy damage and high maintenance costs associated with connecting sensors by soldering node modules can be avoided. This also makes it easier for the experimental box to switch between multiple experimental scenarios and reduces the maintenance cost of the experimental box.

[0043] By acquiring the power-on information of the sensor 13 corresponding to the second module 12, the corresponding target experiment scene can be quickly determined in the experimental application program, and the corresponding experiment scene can be opened for experiment, which greatly facilitates the use process of the teaching personnel and students, and greatly reduces the difficulty of using the experiment box 10 provided in the embodiment of the application.

[0044] Specifically, as shown in Figure 1 The KaihongOS full-scene experiment box 10 product provided in the embodiment of the application contains a KHDVK-3568 unit as the first module 11, a KHDVK-3861B unit as the second module 12, a sensor 13 in the accessory area, a screen 14, a camera 15, a microphone 16, and a master plate under the acrylic panel. The KHDVK-3861B unit part contains a Hi3861 main control board, an LCD display board, an NFC board, a Bluetooth board, an NB-IoT sensing board, a soil humidity sensing board, a soil humidity probe board, a temperature and humidity sensing board, an illumination sensing board, a human body sensing board, a combustible gas sensing board, a flame sensing board, an alcohol sensing board, a color sensing board, a height and Beidou positioning sensing board, a heart rate and blood oxygen sensing board, an infrared temperature measurement sensing board, and a water pump and fan, etc. In addition to the Hi3861 linkage experiment, the full-scene experiment box 10 can also do application development experiment based on the Hongmeng system. It can provide a software and hardware platform from beginner to expert for learning embedded development and APP application development based on Hongmeng.

[0045] It should be noted that the operating system provided in the embodiment of the application should be an OS system supporting OpenHarmony, and the specific category is not limited by the embodiment and the drawings, and KaihongOS is taken as an example for introduction below.

[0046] For example, the permission level of the device in KaihongOS is divided into six levels, which are L0 to L5, L5 is the highest level, and L0 is the lowest level. By making the permission level of the first module 11 in KaihongOS be the first level higher than the second level of the second module 12, the control method of the experiment box 10 provided in the embodiment of the application can be realized. The permission level of the first module 11 and the second module 12 in KaihongOS is not limited by the embodiment and the drawings, and the first module 11 permission level is taken as L2 and the second module 12 permission level is taken as L0 as an example for introduction below.

[0047] In some embodiments, the hardware of the first module 11 uses RK3568, and is provided with an independent power switch, a lamp source indication and a toggle switch beside it, which can be turned off when not in use. The screen 14 uses a 10.1-inch capacitive touch screen with LVDS1280x800, and is provided with an independent power switch, a lamp source indication and a toggle switch beside it, which can be turned off when not in use. The software part inherits KaihongOS baseline, and supports functions such as desktop, settings, boot animation, camera, music, gallery, clock, system UI, file management, multi-mode input, call, SMS, browser, audio and video stream conversion, and wireless projection.

[0048] In some embodiments, the second module 12 includes a Hi3861 master board and 16 sensing boards, which are connected to the power supply board through pins. At the same time, all modules of the Hi3861 are provided with an independent power switch, a lamp source indication and a toggle switch beside it, which can be turned off when not in use. In this way, the modules can be replaced with each other, which is convenient for realizing the combination of one or more modules, and thus achieving different teaching purposes. At the same time, when a certain functional module is damaged, it will not affect the normal work of other functional modules, and the damaged module can be updated and replaced in time and has good expansibility.

[0049] In some embodiments, as shown in Figure 2a , Figure 2a is a schematic diagram of the silk screen structure of the experiment box 10 provided by the embodiments of the present application.

[0050] In some embodiments, as shown in Figure 2b , Figure 2b is a schematic diagram of the panel silk screen structure of the experiment box 10 provided by the embodiments of the present application. In Figure 2b , the panel uses an acrylic panel, which contains a master plate and an RK3568 board below. The functional area of the panel is reasonably arranged, and the accessory area can conveniently store accessories for the user. The hook ring part on the accessory area panel can better facilitate the user to open the accessory panel. The silk screen mark on the panel can guide the user to correctly install each functional board. The indicator light on the panel clearly indicates the open / close state of the functional board, which is convenient for the user to identify.

[0051] In some embodiments, the second module 12 includes a plurality of switch units 121 and a power supply unit 122, and the sensor 13 is connected to the switch unit 121 and the power supply unit 122. The sensor 13 generates power-on information of the sensor 13 according to the conduction and shutdown of the switch unit 121.

[0052] As shown in Figure 3 , Figure 3is the first module 11 and the second module 12 provided by the embodiment of the connection frame diagram, by obtaining the power-on information of each sensor 13, and then the first module 11 can determine the type of the sensor 13 connected to the second module 12 at this time, and then quickly realize the control of the experiment box 10 provided by the embodiment of the application.

[0053] In some embodiments, before the first module and the second module are in communication connection, the first module releases a connection hotspot, and the second module connects the connection hotspot to establish a local area network connection with the first module.

[0054] Through the power-on of the second module 12, the Wi-Fi connects the hotspot released by the first module 11, and then further performs the MQTT connection. If the connection is successful, the corresponding scene is combined according to the power-on state, and the data is reported to the experiment application, so that the linkage between the L0 and L2 devices can be realized.

[0055] For example, in some embodiments, after the second module 12 connects the connection hotspot, the first module 11 and the second module 12 establish an MQTT communication connection to realize data transmission between the first module 11 and the second module 12.

[0056] In some embodiments, after the target experiment scene is started, the second module 12 sends the sensor 13 parameters corresponding to the target experiment scene to the experiment application in a preset format, and the experiment application generates configuration parameters according to the sensor 13 parameters and sends them to the second module 12, to complete the configuration of the sensor corresponding to the target experiment scene.

[0057] The experiment application stores a plurality of experiment scenes and corresponding sensor 13 parameter formats, such as sensor 13 threshold setting, sensor 13 combination threshold setting, target sensor data display condition, special scene trigger condition, and flag setting method, to ensure that the determined target sensor 13 can meet the various contents of the preset experiment scene.

[0058] In some embodiments, as shown in Figure 1 The experiment box 10 further includes a display screen 14, which is in communication connection with the first module 11 and the second module 12, and is used to obtain the running state information of the first module 11 and the second module 12.

[0059] The first module 11 replaces the built-in experimental application program of the mobile phone, displays the connection number of the sensor 13 of the second module 12 and controls the same, the second module 12 acts as an external device, is controlled by the first module 11 and is displayed in the display screen 14, thereby forming a large-screen terminal to realize the integration of double-device data display.

[0060] In some embodiments, the experimental scene information includes scene sensor 13 information; and the experimental application program determines a target experimental scene in the experimental scene information according to the power-on information, including: the first module 11 acquires the information of the turned-on sensor 13 according to the power-on information, matches the information of the turned-on sensor 13 in the scene sensor information, and determines that the experimental scene corresponding to the matched scene sensor 13 information is the target experimental scene.

[0061] By matching the sensor 13 information corresponding to multiple experimental scenes, the multiple experimental scenes stored in the experimental application program can be well applied to the experiment box 10 provided in the embodiments of the present application, and the use content of the experiment box is enriched.

[0062] In some embodiments, the experiment box includes a buzzer 16, the experimental application program stores the safe running condition of the sensor 13; after the power-on information of the multiple sensors 13 connected to the second module 12 is sent to the experimental application program; further including: the first module 11 judges whether the power-on information of the sensor 13 conforms to the safe running condition through the experimental application program, and when the experimental application program monitors that the power-on information of the sensor 13 does not conform to the safe running condition, controls the buzzer 16 to open to prompt the user to maintain the sensor 13 through the experimental application program.

[0063] For example, in some embodiments, as shown in Figure 4 , Figure 4 is a structural schematic diagram of a smart agriculture scene provided by the embodiments of the present application, in Figure 4 , the experimental scene can be a smart agriculture experimental scene; in some embodiments, as shown in Figure 5 , Figure 5 is a structural schematic diagram of a smart medical scene provided by the embodiments of the present application, in Figure 5 , the experimental scene can be a smart medical experimental scene; in some embodiments, as shown in Figure 6 , Figure 6 is a structural schematic diagram of a smart home scene provided by the embodiments of the present application, in Figure 6 , the experimental scene can be a smart agriculture experimental scene; in some embodiments, as shown in Figure 7 , Figure 7is a structural schematic diagram of a smart traffic scene provided by an embodiment of the present application, in Figure 7 In the embodiment, the experimental scene can be a smart traffic experimental scene. The experimental application program can store a plurality of experimental scenes, and the plurality of experimental scenes can be implemented by the experimental box 10 provided by the embodiment of the present application, and therefore the specific category of the experimental scene is not limited by the embodiment of the present application and the accompanying drawings.

[0064] Since a plurality of experimental boxes 10 can exist in a classroom, it will bring a large workload to repair them one by one, and therefore the repair process of the experimental box 10 can be greatly simplified by the buzzer 16, and the safe operation of the experiment can be ensured.

[0065] In some embodiments, the experimental box 10 further comprises a plurality of devices 17, such as a water spraying device required in a smart agricultural system, a lighting device required in a smart home system, and the like. By setting the triggering conditions of the devices 17 in different experimental scenes, the richness of the experimental content of the experimental box 10 provided by the embodiment of the present application can be further enriched.

[0066] The present application provides an experimental box, which comprises a first module and a second module. A plurality of sensors are installed on the second module through pins, and the first module determines a corresponding target experimental scene according to power-on information of the sensors on the second module. The experimental box provided by the present application can greatly expand the experimental scene of the experimental box, and the sensors are installed in the form of pins, which is easy to replace and reduces the maintenance cost of the experimental box.

[0067] Please refer to Figure 8 , Figure 8 is a step schematic flowchart of a control method of the experimental box provided by the embodiment of the present application.

[0068] As shown in Figure 8 , the control method of the experimental box specifically comprises steps S101 to S103.

[0069] S101. When the first module and the second module are in communication connection, power-on information of a plurality of sensors installed on the second module is sent to an experimental application program installed on the first module, and the experimental application program stores a plurality of experimental scene information.

[0070] S102. The experimental application program determines a target experimental scene in the experimental scene information according to the power-on information.

[0071] S103. The experimental application program starts the target experimental scene.

[0072] Specifically, according to the power-on information of the experimental box, the first module can determine a corresponding target experimental scene in the experimental application program according to the sensors connected to the second module, which can greatly simplify the use steps of the teaching staff and the students.

[0073] The application provides a control method of an experiment box. The control method of the experiment box is provided by acquiring power-on information of sensors connected to a second module, so that a first module determines and opens a corresponding target experiment scene. The user can use various different types of experiment scenes in the experiment process, which greatly enriches the use range of the experiment box and improves the user experience.

[0074] The application provides an experiment box. As shown in Figure 9 Figure 9 The application provides an experiment box 10.

[0075] The experiment box 10 can include a processor, a memory and a network interface. The processor, the memory and the network interface are connected through a system bus, such as an I2C (Inter-integrated Circuit) bus.

[0076] Specifically, the processor can be a microcontroller unit (MCU), a central processing unit (CPU) or a digital signal processor (DSP), etc.

[0077] Specifically, the memory can be a flash chip, a read-only memory (ROM) disk, an optical disk, a U disk or a mobile hard disk, etc.

[0078] The network interface is used for network communication, such as sending assigned tasks, etc. Those skilled in the art can understand that Figure 9 The structure shown in the figure is only a block diagram of part of the structure related to the scheme of the application, and does not constitute a limitation on the terminal device to which the scheme of the application is applied. The specific experiment box can include more or fewer components than those shown in the figure, or combine certain components, or have a different component arrangement.

[0079] The processor is used to run a computer program stored in the memory, and when the computer program is executed, the corresponding steps in any one of the control methods of the experiment box provided by the embodiments of the application are implemented.

[0080] The experiment box provided in the example is used for the following steps:

[0081] When the first module and the second module are in communication connection, the power-on information of the plurality of sensors installed on the second module is sent to the experiment application program installed on the first module, and the experiment application program stores a plurality of experiment scene information;​

[0082] The experiment application program determines a target experiment scene in the experiment scene information according to the power-on information.

[0083] The experiment application program starts the target experiment scene.

[0084] It should be noted that the specific working process of the computer device described above can be clearly understood by those skilled in the art, and for the convenience and brevity of description, reference can be made to the corresponding process in the foregoing experiment box control method embodiment, which will not be repeated here.

[0085] In an embodiment of the present application, a computer readable storage medium is also provided, which stores a computer program, and the computer program includes program instructions. The processor executes the program instructions to implement the steps of the experiment box control method provided in the foregoing embodiments. For example, the computer program is loaded by the processor and can execute the following steps:

[0086] When the first module is in communication connection with the second module, the power-on information of the plurality of sensors installed on the second module is sent to the experiment application program installed on the first module, and the experiment application program stores a plurality of experiment scene information.

[0087] The experiment application program determines a target experiment scene in the experiment scene information according to the power-on information.

[0088] The experiment application program starts the target experiment scene.

[0089] The specific implementation of each operation can be referred to the foregoing embodiments, which will not be repeated here.

[0090] The computer readable storage medium can be an internal storage unit of the computer device, such as a hard disk or a memory of the computer device. The computer readable storage medium can also be an external storage device of the computer device, such as a plug-in hard disk, a smart media card (SMC), a secure digital (SD) card, a flash card, etc.

[0091] Since the computer program stored in the computer readable storage medium can execute any one of the experiment box control methods provided in the embodiments of the present application, the beneficial effects of any one of the experiment box control methods provided in the embodiments of the present application can be achieved. Details are described in the foregoing embodiments, which will not be repeated here.

[0092] The above-mentioned serial numbers of the embodiments of the present application are only for description, and do not represent the advantages and disadvantages of the embodiments. The above is only a specific implementation of the present application, but the protection scope of the present application is not limited thereto. Any person skilled in the art can easily think of various equivalent modifications or replacements within the technical range disclosed by the present application, and these modifications or replacements should be covered in the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.

Claims

1. An experimental chamber, characterized in that, The experimental box includes a first module and a second module. The first module is equipped with a first-level operating system, and the second module is equipped with a second-level operating system. The first level is higher than the second level. The first module is equipped with an experimental application, which stores multiple experimental scenario information. The second module is pluggably connected to multiple sensors. When the first module and the second module are connected, the power-on information of the multiple sensors of the second module is sent to the experimental application. The first module determines the target experimental scenario in the experimental scenario information based on the power-on information through the experimental application and starts the target experimental scenario.

2. The experimental chamber according to claim 1, characterized in that, The second module includes multiple switching units and a power supply unit. The sensor is connected to the power supply unit via the switching units. The sensor generates power-on information based on the on and off states of the switching units.

3. The experimental chamber according to claim 1, characterized in that, Before the first module and the second module establish a communication connection, the method further includes: The first module releases the connection hotspot, and the second module connects to the connection hotspot to establish a local area network connection with the first module.

4. The experimental chamber according to claim 3, characterized in that, After the second module connects to the connection hotspot, it also includes: The first module establishes an MQTT communication connection with the second module to enable data transmission between the first module and the second module.

5. The experimental chamber according to claim 1, characterized in that, After activating the target experimental scenario, the following is also included: The second module sends the sensor parameters corresponding to the target experimental scenario to the experimental application in a preset format. The experimental application generates configuration parameters based on the sensor parameters and sends them to the second module to complete the configuration of the sensors corresponding to the target experimental scenario.

6. The experimental chamber according to claim 1, characterized in that, The experimental box also includes a display screen, which is communicatively connected to the first module and the second module to obtain the operating status information of the first module and the second module.

7. The experimental chamber according to claim 1, characterized in that, The experimental scenario information includes scenario sensor information; the experimental application determines the target experimental scenario from the experimental scenario information based on the power-on information, including: The first module obtains the information of the activated sensors based on the power-on information, matches the activated sensor information with the scene sensor information, and determines the experimental scene corresponding to the successfully matched scene sensor information as the target experimental scene.

8. The experimental chamber according to claim 1, characterized in that, The experimental box includes a buzzer, and the experimental application stores the safe operating conditions of the sensors; after the power-on information of the multiple sensors connected to the second module is sent to the experimental application, it also includes: The first module uses the experimental application to determine whether the power-on information of the sensor meets the safe operating conditions. When the experimental application detects that the power-on information of the sensor does not meet the safe operating conditions, it controls the buzzer to turn on to prompt the user to inspect the sensor.

9. A control method for an experimental chamber, characterized in that, The method includes: When the first module and the second module are connected, the power-on information of multiple sensors installed on the second module is sent to the experimental application installed on the first module. The experimental application stores multiple experimental scenario information. The experimental application determines the target experimental scenario from the experimental scenario information based on the power-on information; The experimental application starts the target experimental scenario.

10. A computer-readable storage medium, characterized in that, The computer-readable storage medium stores a computer program that, when executed by a processor, causes the processor to implement the method of using the experimental box as described in claim 9.

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