Auxiliary smoking cessation box and auxiliary smoking cessation system

By using assisted smoking cessation kits and systems, which utilize counting sensors and locking devices to control the cigarette exhaust pipes, and combining IoT platforms and mobile terminals, the problem of smoking cessation relying on willpower is solved, thus improving the success rate of quitting smoking.

CN223541388UActive Publication Date: 2025-11-14季彦达
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Patent Information

Application Number
CN202420614764.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-03-27
Publication Date
2025-11-14
Estimated Expiration
2034-03-27

AI Technical Summary

Technical Problem

Existing smoking cessation programs rely on individual willpower, which is not effective in helping smokers maintain a long-term smoking cessation habit, resulting in a low success rate of quitting smoking.

Method used

Design an auxiliary smoking cessation box, including a counting sensor, a locking device and a controller. By sensing the number of cigarettes and the time, it controls the opening and closing of the smoke outlet to ensure that the smoker can only smoke under specified conditions. It is supplemented by an Internet of Things platform and mobile terminal for supervision and information management.

Benefits of technology

It helps smokers quit under specified conditions, reduces the risk of relapse, and increases the success rate of quitting smoking. It provides real-time monitoring and information management through IoT platforms and mobile terminals to help them develop good smoking cessation habits.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an auxiliary smoking cessation box and an auxiliary smoking cessation system. The auxiliary smoking cessation system comprises a cloud database, an Internet of Things platform, a mobile terminal and the auxiliary smoking cessation box. The auxiliary smoking cessation box comprises a box body, a smoke outlet pipeline, a counting sensor, a locking device, a switch and a controller. The interior of the box body is divided into a first containing cavity and a second containing cavity in the height direction. The smoke outlet pipeline is arranged in the second accommodating cavity and is communicated with the top of the first accommodating cavity and the top of the box body; the counting sensor is arranged in the second accommodating cavity, and a detection area faces the smoke outlet pipeline; the locking device is arranged in the second containing cavity and used for blocking or opening the smoke outlet pipeline. The switch is arranged on the box body and is exposed out of the outer surface of the box body; the counting sensor, the locking device and the switch are all electrically connected to the controller. According to the scheme, a smoking quitter can take out the cigarette for smoking under the specified condition, the smoking quitter can be reminded to exceed the range, the smoking quitter is helped to keep a good smoking quitting habit, and the success rate of smoking quitting is increased.
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Description

Technical Field

[0001] This utility model belongs to the field of storage device technology, and in particular relates to an auxiliary smoking cessation box and an auxiliary smoking cessation system. Background Technology

[0002] There are billions of smokers worldwide, and behind this number is a large number of smokers who want to or have thought about quitting. The harm of smoking is self-evident, but nicotine and tar are like deep barbs that make it difficult for smokers to break free, and make it difficult for those with weak willpower to quit.

[0003] As the old saying goes, "It's easy to start smoking but hard to quit." Most smoking cessation programs rely on willpower or nicotine-free devices to help people quit. This requires strong willpower to maintain good smoking habits. Otherwise, one may not be able to go for too long and may experience unbearable discomfort, eventually leading to a rebound in smoking and failure to quit. Utility Model Content

[0004] The technical objective of this invention is to provide an auxiliary smoking cessation box and auxiliary smoking cessation system, which aims to help smokers maintain good smoking cessation habits and improve the success rate of quitting smoking.

[0005] To solve the above-mentioned technical problems, this utility model provides an auxiliary smoking cessation box, including a box body, a smoke outlet pipe, a counting sensor, a locking device, a switch, and a controller. The box body is internally divided into a first receiving cavity and a second receiving cavity in the height direction. The smoke outlet pipe is disposed in the second receiving cavity and connects the top of the first receiving cavity to the top of the box body. The counting sensor is disposed in the second receiving cavity with its detection area facing the smoke outlet pipe. The locking device is disposed in the second receiving cavity and is used to block or open the smoke outlet pipe. The switch is disposed in the box body and exposed on the outer surface of the box body. The counting sensor, the locking device, and the switch are all electrically connected to the controller.

[0006] The controller is used to determine whether it is a time for smoke to be emitted based on the sensing data of the counting sensor; if it is a time for smoke to be emitted, the controller controls the locking device to open the smoke outlet pipe after the switch is triggered; if it is not a time for smoke to be emitted, the locking device remains blocked after the switch is triggered.

[0007] Furthermore, the counting sensor includes an infrared sensor fixed to the inner wall of the second receiving cavity, and a detection hole is opened on the periphery of the smoke outlet pipe and is directly opposite the sensing side of the infrared sensor.

[0008] Furthermore, the counting sensor is a U-groove infrared sensing module, which has a through-beam infrared module with signal output indication, used to detect whether there is an object passing through the U-groove. The smoke outlet pipe is located in the U-groove of the U-groove infrared sensor, and two detection holes are opened on the outer wall of the smoke outlet pipe, which are respectively opposite to the two side walls of the U-groove.

[0009] Furthermore, the locking device includes a drive body fixed to the inner wall of the second receiving cavity and a telescopic rod connected to the drive body. The smoke outlet pipe has a lock hole that is directly opposite the end of the telescopic rod. The drive body is used to drive the telescopic rod to extend into or withdraw from the smoke outlet pipe through the lock hole.

[0010] Furthermore, the locking device employs an electric push rod.

[0011] Furthermore, the controller includes a control board and an expansion board electrically connected to the control board. The expansion board integrates a battery, and the control board has a built-in Internet of Things (IoT) module, a Wi-Fi module, and a microphone.

[0012] Furthermore, the control panel also integrates a display screen, the control panel is fixed to the side wall of the box, and the display screen is exposed on the outer surface of the box.

[0013] Furthermore, the switch includes a button plate fixed to the inner wall of the second receiving cavity and a button cap movably mounted on the side wall of the housing, the button cap abutting against the trigger area of ​​the button plate.

[0014] Furthermore, the first receiving cavity is provided with a guide structure, which includes a limiting groove that connects to the smoke outlet pipe and guide slopes that are respectively connected to both sides of the opening of the limiting groove. The size of the limiting groove matches the size of the cigarette.

[0015] Furthermore, an assisted smoking cessation system is provided, including a cloud database, an Internet of Things (IoT) platform, a mobile terminal, and an assisted smoking cessation box as described in any of the above, wherein the IoT platform is signal-connected to the cloud database, the mobile terminal, and the controller.

[0016] Compared with the prior art, the advantages of the auxiliary smoking cessation box and auxiliary smoking cessation system in this utility model are as follows:

[0017] The first receiving chamber of the assisted smoking cessation box is used to hold cigarettes. When the locking device blocks the smoke outlet pipe, cigarettes in the first receiving chamber cannot pass through the smoke outlet pipe. When the locking device opens the smoke outlet pipe, cigarettes can pass through. Furthermore, a counting sensor can detect the passage of cigarettes and transmit the sensing information to the controller. When the number of cigarettes discharged within a predetermined time period is within a specified value, it is a smoking opportunity. At this time, if the switch is triggered, the controller can control the locking device to open the smoke outlet pipe. After one cigarette passes through the smoke outlet pipe, the controller controls the locking device to block the smoke outlet pipe. When the number of cigarettes discharged within the predetermined time period equals the specified value, it is a non-smoking opportunity. At this time, even if the switch is triggered, the controller will not control the locking device to open, therefore, cigarettes cannot pass through the smoke outlet pipe. With this assisted smoking cessation box, smokers can only take out cigarettes to smoke under specified conditions. Once the smoking amount reaches the specified value, cigarettes cannot be taken out of the assisted smoking cessation box. This helps remind smokers that they are exceeding the limit, helping them maintain good smoking cessation habits and increasing the success rate of quitting smoking. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the architecture of the assisted smoking cessation system in an embodiment of this utility model;

[0019] Figure 2 This is a three-dimensional structural diagram of the auxiliary smoking cessation box in an embodiment of this utility model;

[0020] Figure 3 This is a partial three-dimensional structural diagram of the auxiliary smoking cessation box from a first-view perspective after the front and left side panels are hidden in an embodiment of this utility model.

[0021] Figure 4 This is a partial three-dimensional structural diagram of the auxiliary smoking cessation box from a second perspective after the front and left side panels are hidden in an embodiment of this utility model.

[0022] In the accompanying drawings, the reference numerals represent: 100, auxiliary smoking cessation box; 200, cloud database; 300, Internet of Things platform; 400, mobile terminal; 1, box body; 2, smoke outlet pipe; 3, counting sensor; 4, locking device; 5, switch; 6, controller; 11, guide structure; 111, limiting groove; 112, guide slope; 51, button cap; 52, button panel; 61, display screen; 62, expansion board. Detailed Implementation

[0023] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain this utility model, and should not be construed as limiting this utility model. All other embodiments obtained by those skilled in the art based on the embodiments of this utility model without inventive effort are within the scope of protection of this utility model.

[0024] In the description of this utility model, it should be understood that the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "circumferential", "radial", etc., indicating the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model.

[0025] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this utility model, "a plurality of" means two or more, unless otherwise explicitly specified.

[0026] In this embodiment, combined with Figure 1 This invention provides an auxiliary smoking cessation system, including a cloud database 200, an Internet of Things platform 300, a mobile terminal 400, and an auxiliary smoking cessation box 100.

[0027] Among them, combined Figure 2-4The auxiliary smoking cessation box 100 includes a box body 1, a smoke outlet pipe 2, a counting sensor 3, a locking device 4, a switch 5, and a controller 6. The box body 1 is divided into a first receiving cavity and a second receiving cavity in the height direction. The smoke outlet pipe 2 is located in the second receiving cavity and connects the top of the first receiving cavity and the top of the box body 1. The counting sensor 3 is located in the second receiving cavity with its detection area facing the smoke outlet pipe 2. The locking device 4 is located in the second receiving cavity and is used to block or open the smoke outlet pipe 2. The switch 5 is located in the box body 1 and is exposed on the outer surface of the box body 1. The counting sensor 3, the locking device 4, and the switch 5 are all electrically connected to the controller 6. The controller 6 is used to determine whether it is a time for smoke to be emitted based on the sensing data of the counting sensor 3. If it is a time for smoke to be emitted, the controller 6 controls the locking device 4 to open the smoke outlet pipe 2 after the switch 5 is triggered. If it is not a time for smoke to be emitted, the controller 6 keeps the locking device 4 blocking the smoke outlet pipe 2 after the switch 5 is triggered. The Internet of Things platform 300 is connected to the cloud database 200, the mobile terminal 400, and the controller 6.

[0028] In this solution, the cloud database 200 stores user smoking cessation information, which may include username, smoking history, smoking frequency, start time of quitting, duration of quitting, and number of cigarettes smoked per day. The IoT platform 300 receives and updates the user smoking cessation information in the cloud database 200. The controller 6 of the assisted smoking cessation box 100 can receive the corresponding user smoking cessation information through the IoT platform 300 and plan the maximum daily smoking amount. The mobile terminal 400 receives and displays the user smoking cessation information through the IoT platform 300. Furthermore, the mobile terminal 400 can control the working mode and actions of the controller 6 in the assisted smoking cessation box 100 through the IoT platform 300. The assisted smoking cessation box 100 can be used by the smoker trying to quit, and the mobile terminal 400 can be used by the supervisor. In this way, the supervisor can view the smoker's smoking information in real time and provide reminders, warnings, and encouragement based on this information, thereby enhancing the smoker's willpower and helping them maintain good smoking cessation habits.

[0029] The first receiving cavity of the auxiliary smoking cessation box 100 is used to receive cigarettes. When the locking device 4 blocks the cigarette outlet pipe 2, the cigarettes in the first receiving cavity cannot pass through the cigarette outlet pipe 2. When the locking device 4 opens the cigarette outlet pipe 2, the cigarettes can pass through the cigarette outlet pipe 2. Moreover, the counting sensor 3 can sense that a cigarette has passed through and transmit the sensing information to the controller 6. When the number of cigarettes emitted within a predetermined time period is within a specified value, it is a cigarette emission opportunity. At this time, if the switch 5 is triggered, the controller 6 can control the locking device 4 to open the cigarette outlet pipe 2. After a cigarette passes through the cigarette outlet pipe 2, the controller 6 controls the locking device 4 to block the cigarette outlet pipe 2. When the number of cigarettes emitted within a predetermined time period is equal to the specified value, it is a non-cigarette emission opportunity. At this time, even if the switch 5 is triggered, the controller 6 will not control the locking device 4 to open, so the cigarettes cannot pass through the cigarette outlet pipe 2. Using the assisted smoking cessation box 100 of this solution, smokers can only take out cigarettes to smoke under specified conditions. Once the smoking amount reaches the specified value, they cannot take out cigarettes from the assisted smoking cessation box 100. This helps remind smokers that they are smoking beyond the limit, helps them maintain good smoking cessation habits, and increases the success rate of quitting smoking.

[0030] Specifically, in this embodiment, the cloud database 200 can use TinyWebDB, which is a network micro-database that can read and write data. After connecting through a program, the data can be permanently stored, and the data can be read even after a power outage to avoid data loss. Of course, the cloud database 200 can be adapted to the actual situation, such as Alibaba Cloud, Baidu Cloud, etc.

[0031] The mobile terminal 400 can be a mobile phone, tablet computer, etc. After the assisted smoking cessation box 100 is connected to the Internet of Things, the mobile terminal 400 can transmit control signals to the assisted smoking cessation box 100 through an APP. The control signals can include opening the smoking cessation box, closing the smoking cessation box, switching modes, etc. The app can also input the smoker's name, smoking history, smoking frequency, etc., and transmit the corresponding information to the cloud database 200 for storage to form user smoking cessation information. The smoking cessation plan can be formed by the APP of the mobile terminal 400, and the smoking cessation plan can also be included in the user smoking cessation information. The smoking cessation plan can also be formed by the controller 6 of the assisted smoking cessation box 100. The smoking cessation plan can be derived from the user's smoking cessation information. For example, it can first determine the smoker's smoking type, such as light smoker, moderate smoker, heavy smoker, high-risk smoker, etc. The prescribed number of cigarettes on the first day for each type can be 5, 10, 15, and 20 cigarettes respectively, from light to high-risk. Afterward, the number can be gradually reduced by 1-3 cigarettes per day, or by 1-3 cigarettes every 1-5 days, thus gradually reducing the smoker's intake without causing excessive discomfort, ultimately achieving the goal of quitting smoking. It should be understood that the smoking cessation plan can be adaptively adjusted according to the actual situation, and no specific limitations are set here.

[0032] The mobile terminal 400 can control the auxiliary smoking cessation box 100 to switch between two modes: a smoking cessation mode and a cigarette-adding mode. In the smoking cessation mode, the smoking cessation plan is executed. In the cigarette-adding mode, the controller 6 controls the locking device 4 to open the cigarette outlet pipe 2, allowing cigarettes to be added into the first receiving chamber. Each time a cigarette is added, it is detected by the counting sensor 3, thus obtaining the current number of cigarettes in the auxiliary smoking cessation box 100. This current number can be included in the user's smoking cessation information. After adding cigarettes, the system switches back to the smoking cessation mode. Since the mobile terminal 400 is used by the supervisor, only the mobile terminal 400 can switch the auxiliary smoking cessation box 100 to the cigarette-adding mode for adding cigarettes. The auxiliary smoking cessation box 100 used by the smoker cannot add cigarettes in the smoking cessation mode. Therefore, it effectively prevents the smoker from adding cigarettes on their own, providing effective supervision and helping the smoker develop good smoking cessation habits. It should be understood that the specific operation actions of the smoking cessation mode and the smoking addition mode can be adaptively adjusted according to the actual situation, and the modes that the mobile terminal 400 can control are not limited to the smoking cessation mode and the smoking addition mode; other modes can be added adaptively.

[0033] Furthermore, the counting sensor 3 includes an infrared sensor fixed to the inner wall of the second receiving cavity, and a detection hole is opened on the periphery of the smoke outlet pipe 2, directly opposite the sensing side of the infrared sensor. Specifically, in this embodiment, the counting sensor 3 is a U-groove infrared sensing module, which has a through-beam infrared module with signal output indication, used to detect whether an object passes through the U-groove. The smoke outlet pipe 2 is located in the U-groove of the U-groove infrared sensor, and two detection holes are opened on the outer wall of the smoke outlet pipe 2, respectively, directly opposite the two side walls of the U-groove. The distance between the opposite sides of the U-groove of the U-groove infrared sensing module is 12mm, matching the diameter of the cigarette, suitable for counting the amount of smoke. One side of the U-groove is an infrared emitting port, and the other side is a receiving port. The emitting port and the receiving port are slit-shaped and directly opposite each other. Correspondingly, the detection hole of the smoke outlet pipe 2 is also slit-shaped. In this way, the entry and exit of the cigarette can be accurately detected, preventing light interference. In some embodiments, the counting sensor 3 can also be a laser sensor, an acoustic sensor, etc.

[0034] Furthermore, the locking device 4 includes a drive body fixed to the inner wall of the second receiving cavity and a telescopic rod connected to the drive body. A lock hole is provided in the smoke outlet pipe 2, directly opposite the end of the telescopic rod. The drive body is used to drive the telescopic rod to extend into or withdraw from the smoke outlet pipe 2 through the lock hole. In this embodiment, the locking device 4 uses an electric push rod, specifically a 5V 10mm electric push rod, which can be extended after being energized, with a range of 10mm. The main body of the electric push rod is fixedly connected to the bottom of the second receiving cavity. The lock hole is slightly larger than the rod portion of the electric push rod. Thus, the electric push rod can extend into the smoke outlet pipe 2 from the lock hole, at which point the cigarette is blocked, i.e., the smoke outlet pipe 2 is in a blocked state. When the electric push rod is withdrawn from the lock hole from the smoke outlet pipe 2, the cigarette is not blocked, i.e., the smoke outlet pipe 2 is in an open state. In some embodiments, the locking device 4 can also be configured in other forms. For example, the locking device 4 can be in the form of a linear motor driving the push rod, or it can be in the form of an electromagnetic valve. As long as the opening or blocking of the smoke outlet pipe 2 can be achieved, it is within the scope of protection of this application.

[0035] Furthermore, the controller 6 includes a control board and an expansion board 62 electrically connected to the control board. The expansion board 62 integrates a battery, while the control board has built-in IoT, WIFI modules, and a microphone. The control board is a control board integrating an ESP32 main control chip and incorporates various sensors such as IoT, WIFI modules, and a microphone. The control board also integrates a display screen 61. The control board is fixed to the side wall of the housing 1, and the display screen 61 is exposed on the outer surface of the housing 1. The display screen 61 displays the number of cigarettes smoked today, the remaining amount available for the day, etc., in the user's smoking cessation information. The battery in the expansion board 62 powers the controller 6, the locking device 4, and the counting sensor 3. To achieve sustainable use, the battery can be a rechargeable battery, and the housing 1 can be equipped with a charging interface for easy battery charging.

[0036] Furthermore, the switch 5 includes a button plate 52 fixed to the inner wall of the second receiving cavity and a button cap 51 movably mounted on the side wall of the housing 1. The button cap 51 abuts against the trigger area of ​​the button plate 52. Specifically, the button plate 52 has a button, the housing 1 has a movable hole, the button cap 51 is embedded in the movable hole, and the inner side of the button cap 51 abuts against the button on the button plate 52. Thus, pressing the button cap 51 can trigger the switch 5 to operate. In some embodiments, the switch 5 can also be configured as a capacitive switch 5, a pressure switch 5, etc.

[0037] Furthermore, a guide structure 11 is provided within the first receiving cavity. The guide structure 11 includes a limiting groove 111 communicating with the smoke outlet pipe 2 and guide ramps 112 respectively connected to both sides of the opening of the limiting groove 111. The size of the limiting groove 111 matches the size of the cigarette. The limiting groove 111 is vertically arranged and can only hold one cigarette at a time. When the cigarette is in the limiting groove 111, the end of the cigarette is directly opposite the bottom of the smoke outlet pipe 2. This makes it easier to pour out the cigarette and prevents multiple cigarettes from being discharged at once or from blocking each other. The distance between the two guide ramps 112 decreases towards the limiting groove 111. The two guide ramps 112 make it easier for the cigarette inside to enter the limiting groove 111, preventing the cigarette from being misaligned with the smoke outlet pipe 2. It should be understood that the position of the limiting groove 111 can be adaptively adjusted according to the setting position of the smoke outlet pipe 2. Generally speaking, the smoke outlet pipe 2 is set at the middle position of one end of the top side, and the limiting groove 111 is set at the corresponding middle position. When the smoke outlet pipe 2 is set at the corner position of one end of the top side, the limiting groove 111 is also set at the corresponding corner position. At this time, one side of the limiting groove 111 can be connected to the side of the first receiving cavity, and the other side is connected to a guide slope 112, thereby realizing the guiding function of guiding the cigarette to the limiting groove 111.

[0038] In this embodiment, the box 1, used as an experimental sample, comprises seven plate-like structures: front, rear, left, right, top, and bottom plates, as well as partitions. Each plate-like structure is made of linden wood using laser cutting. Protrusions, notches, or openings are provided at the joints of adjacent plates, which are then fixed together by snap-fit ​​and adhesive. The front, rear, left, right, top, and bottom plates together constitute the box 1. The partitions divide the inner cavity of the box 1 into a first receiving cavity and a second receiving cavity. The smoke exhaust pipe 2, counting sensor 3, locking device 4, switch 5, and controller 6 are fixed using screws, adhesives, etc. Electrical connections are achieved through wires. It should be understood that this sample is merely an example. In practical applications, the box 1 can be made of sheet metal, plastic, etc., and the fixed positions, fixing methods, and shapes of its internal structures, such as the smoke exhaust pipe 2, counting sensor 3, locking device 4, switch 5, and controller 6, can be adaptively adjusted and are not limited here.

[0039] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A smoking cessation aid box, characterized in that, The device includes a housing, a smoke outlet pipe, a counting sensor, a locking device, a switch, and a controller. The housing is internally divided into a first receiving cavity and a second receiving cavity along its height. The smoke outlet pipe is located within the second receiving cavity and connects the top of the first receiving cavity to the top of the housing. The counting sensor is located in the second receiving cavity with its detection area facing the smoke outlet pipe. The locking device is located in the second receiving cavity and is used to block or open the smoke outlet pipe. The switch is located within the housing and exposed on its outer surface. The counting sensor, the locking device, and the switch are all electrically connected to the controller. The controller is used to determine whether it is a time for smoke to be emitted based on the sensing data of the counting sensor; if it is a time for smoke to be emitted, the controller controls the locking device to open the smoke outlet pipe after the switch is triggered; if it is not a time for smoke to be emitted, the locking device remains blocked after the switch is triggered.

2. The smoking cessation aid box according to claim 1, characterized in that, The counting sensor includes an infrared sensor fixed to the inner wall of the second receiving cavity, and a detection hole is opened on the periphery of the smoke outlet pipe, which is directly opposite the sensing side of the infrared sensor.

3. The smoking cessation aid box according to claim 2, characterized in that, The counting sensor is a U-groove infrared sensing module, which has a through-beam infrared module with signal output indication, used to detect whether there is an object passing through the U-groove. The smoke outlet pipe is located in the U-groove of the U-groove infrared sensor, and two detection holes are opened on the outer wall of the smoke outlet pipe, which are respectively opposite to the two side walls of the U-groove.

4. The smoking cessation aid box according to claim 1, characterized in that, The locking device includes a drive body fixed to the inner wall of the second receiving cavity and a telescopic rod connected to the drive body. The smoke outlet pipe has a lock hole that is directly opposite the end of the telescopic rod. The drive body is used to drive the telescopic rod to extend into or withdraw from the smoke outlet pipe through the lock hole.

5. The smoking cessation aid box according to claim 4, characterized in that, The locking device uses an electric push rod.

6. The smoking cessation aid box according to claim 1, characterized in that, The controller includes a control board and an expansion board electrically connected to the control board. The expansion board integrates a battery, and the control board has a built-in Internet of Things (IoT) module, a Wi-Fi module, and a microphone.

7. The smoking cessation aid box according to claim 6, characterized in that, The control panel also integrates a display screen. The control panel is fixed to the side wall of the box, and the display screen is exposed on the outer surface of the box.

8. The smoking cessation aid box according to claim 1, characterized in that, The switch includes a keypad fixed to the inner wall of the second receiving cavity and a button cap movably mounted on the side wall of the housing, the button cap abutting against the trigger area of ​​the keypad.

9. The smoking cessation aid box according to claim 1, characterized in that, The first receiving cavity is provided with a guide structure, which includes a limiting groove that connects to the smoke outlet pipe and guide slopes that are respectively connected to both sides of the opening of the limiting groove. The size of the limiting groove matches the size of the cigarette.

10. An assisted smoking cessation system, characterized in that, It includes a cloud database, an Internet of Things (IoT) platform, a mobile terminal, and an auxiliary smoking cessation box as described in any one of claims 1-9, wherein the IoT platform is signal-connected to the cloud database, the mobile terminal, and the controller.