A sofa-based shoe odor removal method and related products

By incorporating a built-in fan and adsorption box into the sofa, activated carbon adsorption blocks are used to absorb shoe odors. Optional features include heated insoles or the release of fragrance, solving the problem of shoe odor affecting indoor air quality and achieving efficient odor removal and a smart sofa experience.

CN117814608BActive Publication Date: 2026-05-12DONGGUAN AIMU BEDROOM SUPPLIES
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
DONGGUAN AIMU BEDROOM SUPPLIES
Filing Date
2024-01-08
Publication Date
2026-05-12

AI Technical Summary

Technical Problem

鞋子脱在沙发前面时散发的异味影响室内空气质量。

Method used

The sofa has a built-in fan and adsorption box, which uses activated carbon adsorption blocks to absorb odors, and can optionally accelerate odor removal by heating the insoles or releasing perfume.

Benefits of technology

有效清除鞋子异味,提升沙发的智能化程度,改善室内空气质量,提升用户体验。

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the application relates to the technical field of smart home, and discloses a sofa-based shoe odor removing method and related products, and the method and the related products have the following characteristics: the sofa detects that a shoe is placed on the front of the sofa, and a fan built in the base of the sofa is started to make the air on the front of the sofa pass through an air inlet arranged on the front side of the base, is sucked into the base by the fan, is adsorbed by activated carbon adsorption blocks in an adsorption box built in the base, and is output through a wind guide arranged on the sofa. By implementing the embodiment of the application, the odor emitted when the shoe is placed on the front of the sofa can be removed, and the air quality of the indoor environment is avoided.
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Description

Technical Field

[0001] This application relates to the field of smart home technology, specifically to a method for removing shoe odor based on a sofa and related products. Background Technology

[0002] Sofas are a common type of furniture in homes. Often, some people like to take off their shoes and place them in front of the sofa before sitting or lying down. However, it has been observed that shoes left in front of the sofa frequently emit unpleasant odors, thus affecting indoor air quality. Summary of the Invention

[0003] This application discloses a method and related products for removing shoe odor from a sofa, which solves the problem of odors emitted when shoes are taken off in front of the sofa, thereby affecting the air quality of the indoor environment.

[0004] The first aspect of this application discloses a method for removing shoe odor from a sofa. The sofa base has a built-in fan and an adsorption box. The adsorption box contains activated carbon adsorption blocks. A plurality of air inlets are evenly spaced along the length of the base on its front side. Each air inlet is connected to the air input end of the fan through a first pipe built into the base. The air output end of the fan is connected to the air inlet of the adsorption box through a second pipe built into the base. The air outlet of the adsorption box is connected to an air guide vent located on the sofa. The method includes:

[0005] The sofa detects that a shoe has been removed and placed in front of the sofa; the front side of the sofa base is close to the shoe;

[0006] The sofa activates the fan, causing air in front of the sofa to be drawn through the air inlet and sent to the activated carbon adsorption block in the adsorption box for odor adsorption, and then output through the air duct.

[0007] As an optional implementation, in a first aspect of the present application, after the sofa detects that a shoe has been removed and placed in front of the sofa, and before the sofa activates the fan, the method further includes:

[0008] The sofa identifies whether the shoes are shoes with heated insoles; if so, the sofa establishes a wireless connection with the shoes.

[0009] The sofa sends control commands to the shoes via the wireless connection. The control commands instruct the shoes to heat the insoles to accelerate the dissipation of odors from the shoes.

[0010] As another optional implementation, in a first aspect of the present application, after the sofa and the shoes establish a wireless connection, and before the sofa sends control commands to the shoes via the wireless connection, the method further includes:

[0011] The sofa detects the current user value of the user using the sofa.

[0012] The sofa determines the insole heating power value corresponding to the current person's value; wherein, the insole heating power value is directly proportional to the number of the current person's value;

[0013] The control command further includes the insole heating power value; the shoe responds to the control command and determines whether the insole heating power value included in the control command is equal to or higher than the maximum insole heating power value pre-configured for the shoe; if not, the shoe insole is heated according to the insole heating power value to accelerate the dissipation of odor from the shoe.

[0014] As another optional implementation, in the first aspect of the embodiments of this application, at least one aroma outlet is provided between any two adjacent air inlets of a plurality of air inlets equally spaced along the length direction of the base. The base also has a built-in heatable perfume container containing perfume, and each aroma outlet is connected to the perfume evaporation port of the perfume container. After the sofa starts the fan, the method further includes:

[0015] The sofa detects whether the start-up time of the fan has reached the specified duration;

[0016] If the specified time is reached, the sofa turns off the fan and heats the perfume container so that the perfume contained in the perfume container is heated and evaporates from the perfume evaporation port and is output through the fragrance output port.

[0017] As another optional implementation, in a first aspect of the present application, after the sofa sends a control command to the shoes via the wireless connection and before the sofa starts the fan, the method further includes:

[0018] The sofa sends a query command to the shoes via the wireless connection. The query command is used to query the user's daily exercise volume recorded by the shoes.

[0019] The sofa obtains the user's daily exercise volume sent by the shoes through the wireless connection, and determines whether the user's daily exercise volume has reached the specified exercise volume;

[0020] If the specified amount of exercise is reached, the sofa identifies the specific user to whom the shoes belong from among the users.

[0021] The sofa defines the area occupied by the specific user on the sofa;

[0022] The sofa controls the built-in massage heads to move to the occupied area to perform a massage on the specific user, thereby relieving the user's fatigue.

[0023] A second aspect of this application discloses a sofa, the base of which has a built-in fan and an adsorption box. The adsorption box contains activated carbon adsorption blocks. A plurality of air inlets are evenly spaced along the length of the base on its front side. Each air inlet is connected to the air input end of the fan via a first pipe built into the base. The air output end of the fan is connected to the air inlet of the adsorption box via a second pipe built into the base. The air outlet of the adsorption box is connected to an air guide vent on the sofa. The sofa further includes:

[0024] The first detection unit is used to detect that a shoe has been removed and placed in front of the sofa; the front side of the sofa base is close to the shoe;

[0025] The first control unit is used to start the fan so that the air in front of the sofa is drawn into the activated carbon adsorption block in the adsorption box through the air inlet and then output through the air duct.

[0026] As an optional implementation, in a second aspect of the embodiments of this application, the sofa further includes:

[0027] The first identification unit is used to identify whether the shoe is a shoe with a heated insole after the first detection unit detects that a shoe has been taken off and placed in front of the sofa, and before the first control unit starts the fan.

[0028] A connection unit is used to establish a wireless connection with the shoe when the first identification unit identifies the shoe as a shoe with a heated insole;

[0029] An interaction unit is used to send control commands to the shoe via the wireless connection. The control commands are used to instruct the shoe to heat the insole of the shoe to accelerate the dissipation of odor from the shoe.

[0030] As another optional implementation, in a second aspect of the embodiments of this application, the sofa further includes:

[0031] The second detection unit is used to detect the current human value of the user on the sofa after the connection unit establishes a wireless connection with the shoe and before the interaction unit sends a control command to the shoe through the wireless connection.

[0032] A power determination unit is used to determine the insole heating power value corresponding to the current human value; wherein the insole heating power value is directly proportional to the number of the current human value;

[0033] The control command further includes the insole heating power value; the shoe responds to the control command and determines whether the insole heating power value included in the control command is equal to or higher than the maximum insole heating power value pre-configured for the shoe; if not, the shoe insole is heated according to the insole heating power value to accelerate the dissipation of odor from the shoe.

[0034] As another optional implementation, in the second aspect of the embodiments of this application, at least one fragrance outlet is provided between any two adjacent air inlets of a plurality of air inlets equally spaced along the length of the base on the front side of the base. The base also has a built-in heatable perfume container containing perfume, and each of the fragrance outlets is connected to the perfume evaporation port of the perfume container. The sofa further includes:

[0035] The third detection unit is used to detect whether the start-up time of the fan has reached a specified time after the first control unit starts the fan.

[0036] A heating unit is used to turn off the fan and heat the perfume container when the third detection unit detects that the start-up time of the fan has reached the specified time, so that the perfume contained in the perfume container is heated and evaporated from the perfume evaporation port and output through the fragrance output port.

[0037] As another optional implementation, in the second aspect of the embodiments of this application:

[0038] The interaction unit is further configured to send a query command to the shoe via the wireless connection after the interaction unit sends a control command to the shoe via the wireless connection, and before the first control unit starts the fan, the query command being used to query the user's daily exercise volume recorded by the shoe; and to obtain the user's daily exercise volume sent by the shoe via the wireless connection.

[0039] The sofa also includes:

[0040] The judgment unit is used to determine whether the user's daily exercise volume has reached the specified exercise volume;

[0041] The second identification unit is used to identify the specific user to whom the shoes belong from the users when the judgment unit determines that the user’s daily exercise volume has reached the specified exercise volume.

[0042] The area determination unit is used to determine the area occupied by the specific user on the sofa;

[0043] The second control unit is used to control the massage head built into the sofa to move to the occupied area to perform a massage on the specific user in order to relieve the user's fatigue.

[0044] A third aspect of this application discloses a sofa, the base of which has a built-in fan and an adsorption box. The adsorption box contains activated carbon adsorption blocks. A plurality of air inlets are evenly spaced along the length of the base on its front side. Each air inlet is connected to the air input end of the fan via a first pipe built into the base. The air output end of the fan is connected to the air inlet of the adsorption box via a second pipe built into the base. The air outlet of the adsorption box is connected to an air guide vent on the sofa. The sofa further includes:

[0045] Memory containing executable program code;

[0046] A processor coupled to the memory;

[0047] The processor calls the executable program code stored in the memory and performs the following steps:

[0048] A shoe was detected being removed and placed in front of the sofa; the front side of the sofa base is close to the shoe;

[0049] The fan is turned on so that the air in front of the sofa is drawn into the activated carbon adsorption block in the adsorption box through the air inlet and then output through the air duct.

[0050] As an optional implementation, in a third aspect of the present application, after detecting that a shoe has been removed and placed in front of the sofa, and before starting the fan, the processor further performs the following steps:

[0051] Identify whether the shoe has a heated insole; if so, establish a wireless connection with the shoe.

[0052] The system sends control commands to the shoes via the wireless connection. These commands instruct the shoes to heat the insole to accelerate the dissipation of odors.

[0053] As another optional implementation, in a third aspect of the present application, after establishing a wireless connection with the shoe and before sending control commands to the shoe via the wireless connection, the processor further performs the following steps:

[0054] Detect the current number of users using the sofa;

[0055] Determine the insole heating power value corresponding to the current human value; wherein, the insole heating power value is directly proportional to the number of the current human values;

[0056] The control command further includes the insole heating power value; in response to the control command, the shoe determines whether the insole heating power value included in the control command is equal to or higher than the maximum insole heating power value pre-configured for the shoe; if not, the shoe insole is heated according to the insole heating power value to accelerate the dissipation of odor from the shoe.

[0057] As another optional implementation, in a third aspect of the present application, at least one aroma outlet is provided between any two adjacent air inlets of a plurality of air inlets equally spaced along the length of the base on the front side of the base. The base also has a built-in heatable perfume container containing perfume, and each aroma outlet is connected to the perfume evaporation port of the perfume container. After the fan is started, the processor further performs the following steps:

[0058] Detect whether the start-up time of the fan has reached the specified duration;

[0059] If the specified time is reached, the fan is turned off and the perfume container is heated so that the perfume contained in the perfume container is heated and evaporated from the perfume evaporation port and output through the fragrance output port.

[0060] The fourth aspect of this application discloses a storage medium storing a computer program thereon, which, when executed by a processor, implements the steps of the sofa-based shoe odor removal method in the first aspect of this application or any optional implementation of the first aspect of this application.

[0061] Compared with the prior art, the embodiments of this application have the following beneficial effects:

[0062] In this embodiment, the sofa can detect when a shoe is removed and placed in front of it, and activate the fan built into the sofa base. This causes the air in front of the sofa to be drawn through the air inlet on the front side of the base and sent to the activated carbon adsorption block in the adsorption box built into the base for odor adsorption. After adsorption, the air is then output through the air duct provided by the sofa, thereby removing the odor emitted when the shoe is removed from the front of the sofa and avoiding affecting the indoor air quality.

[0063] Furthermore, implementing the embodiments of this application can also enhance the intelligence level of the sofa, enabling users to enjoy a better experience when using the sofa, which is conducive to the widespread application of sofas in indoor environments. Attached Figure Description

[0064] To more clearly illustrate the technical solutions in the embodiments of this application, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0065] Figure 1 This is a schematic diagram illustrating an application scenario of an embodiment of this application;

[0066] Figures 2-5 These are schematic flowcharts of the first to fourth embodiments of the sofa-based shoe odor removal method disclosed in this application.

[0067] Figures 6-10 These are schematic diagrams of the first to fourth embodiments of the sofa disclosed in this application. Detailed Implementation

[0068] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0069] It should be noted that the terms "comprising" and "having" and any variations thereof in the embodiments of this application are intended to cover non-exclusive inclusion. For example, a process, method, system, product, or device that includes a series of steps or units is not necessarily limited to those steps or units that are explicitly listed, but may include other steps or units that are not explicitly listed or that are inherent to these processes, methods, products, or devices.

[0070] This application discloses a method and related products for removing shoe odor from a sofa, which can eliminate the odor emitted when shoes are taken off in front of the sofa, thus avoiding impact on indoor air quality. A detailed description is provided below with reference to the accompanying drawings.

[0071] To better understand the embodiments of this application, the application scenarios of these embodiments are first introduced below. Please refer to... Figure 1 , Figure 1 This is a schematic diagram illustrating an application scenario of an embodiment of this application. Figure 1 In the illustrated application scenario, User 1 is sitting on Sofa 2, making User 1 the user of Sofa 2. User 1 takes off their shoes 3 and places them in front of Sofa 2. Assume that the shoes 3, now in front of Sofa 2, emit an unpleasant odor (such as body odor), affecting the indoor air quality. Figure 1 In the application scenario shown, the base 21 of the sofa 2 houses a fan 211 and an adsorption box 212. Activated carbon adsorption blocks a are placed in the adsorption box 212. Several air inlets b (represented by circles) are evenly spaced along the length of the base 21 on its front side. Each air inlet b is connected to the air input end c1 of the fan 211 via a first pipe 213 (represented by dashed lines) built into the base 21. The air output end c2 of the fan 211 is connected to the air inlet d1 of the adsorption box 212 via a second pipe 214 built into the base 21. The air outlet d2 of the adsorption box 212 is connected to the air vent of the sofa. Figure 1 (Not shown) Connections. For example, such as... Figure 1 As shown, the air outlet d2 of the adsorption box 212 can be connected to the air guide port provided on the base 21 via the third pipe 215 built into the base 21. Figure 1 (Not shown) Connected, including the air duct ( Figure 1 (Not shown) can be located on any one of the rear, bottom, left, or right sides of the base 21. It is understood that the air vent ( Figure 1 (Not shown) It can also be placed on the back of the sofa, but this application embodiment does not limit it.

[0072] Optional, in Figure 1 In the application scenario shown, at least one fragrance outlet e (represented by a rhombus) is provided between any two adjacent air inlets b on the front side of the base 21 of the sofa 2. The base 21 also has a built-in heated perfume container 216 containing perfume. Figure 1 (Not shown), and each fragrance outlet e is connected to the fragrance evaporation outlet f of the perfume container 216. For example, as... Figure 1As shown, each fragrance outlet e is connected to the fragrance evaporation port f of the perfume container 216 via a fourth pipe 217 (indicated by a double-dotted line) built into the base 21.

[0073] exist Figure 1 In the application scenario shown, the sofa 2 detects that the shoe 3 has been removed and placed in front of the sofa 2, and activates the fan 211 built into the base 21 of the sofa 2. This causes the air in front of the sofa 2 to be drawn by the fan 211 through the air inlet b on the front side of the base 21 to the activated carbon adsorption block a in the adsorption box 212 built into the base 21 for odor adsorption. After adsorption, the air is output through the air duct (such as the air duct on the rear side of the base 21), thereby removing the odor emitted when the shoe 3 is removed from the front of the sofa 2 and avoiding affecting the indoor air quality.

[0074] Please see Figure 2 , Figure 2 This is a flowchart illustrating the first embodiment of the sofa-based shoe odor removal method disclosed in this application. Figure 2 In the described sofa-based shoe odor removal method, the sofa base has a built-in fan and an adsorption box containing activated carbon adsorption blocks. Several air inlets are evenly spaced along the length of the base's front side. Each air inlet is connected to the fan's input end via a first pipe built into the base. The fan's output end is connected to the adsorption box's inlet via a second pipe built into the base. The adsorption box's outlet is connected to an air vent located on the sofa (e.g., the adsorption box's outlet is connected to an air vent located on the rear side of the base via a third pipe built into the base). Figure 2 As shown, this sofa-based shoe odor removal method includes:

[0075] 201. The sofa detects that a shoe has been removed and placed in front of the sofa; wherein the front side of the sofa base is close to the shoe.

[0076] As an optional implementation, the sofa uses a camera module to detect when a shoe is removed and placed in front of the sofa. For example, the camera module can be located on the front side of the sofa base, or it can be mounted on the ceiling above the sofa.

[0077] 202. The sofa starts the fan so that the air in front of the sofa is drawn into the activated carbon adsorption block in the adsorption box through the air inlet and then output through the air duct.

[0078] In this embodiment of the application, after the sofa starts the fan, the air in front of the sofa is drawn in by the fan through the several air inlets and the first pipe, and then sent to the activated carbon adsorption block in the adsorption box through the second pipe for odor adsorption before being output through the air duct. This can remove the odor emitted when the shoes are taken off in front of the sofa and avoid affecting the air quality of the indoor environment.

[0079] It is evident that implementation Figure 2 The described method can eliminate the odor emitted when the shoes are taken off in front of the sofa, thus avoiding any impact on the indoor air quality.

[0080] In addition, implementation Figure 2 The described method can also enhance the intelligence of sofas, allowing users to enjoy a better experience when using them, and is conducive to the widespread application of sofas in indoor environments.

[0081] Please see Figure 3 , Figure 3 This is a flowchart illustrating the second embodiment of the sofa-based shoe odor removal method disclosed in this application. Figure 3 In the described sofa-based shoe odor removal method, the sofa base has a built-in fan and an adsorption box containing activated carbon adsorption blocks. Several air inlets are evenly spaced along the length of the base's front side. Each air inlet is connected to the fan's input end via a first pipe built into the base. The fan's output end is connected to the adsorption box's inlet via a second pipe built into the base. The adsorption box's outlet is connected to an air vent located on the sofa (e.g., the adsorption box's outlet is connected to an air vent located on the rear side of the base via a third pipe built into the base). Figure 3 As shown, this sofa-based shoe odor removal method includes:

[0082] 301. The sofa detects that a shoe has been removed and placed in front of the sofa; wherein the front side of the sofa base is close to the shoe.

[0083] As an optional implementation, the sofa uses a camera module to detect when a shoe is removed and placed in front of the sofa.

[0084] 302. The sofa identifies whether the shoe has a heated insole; if yes, proceed to steps 303 to 305; if no, proceed directly to step 305.

[0085] As an optional implementation, the camera module is mounted on the indoor ceiling above the sofa, and the shoe has a brand logo on its upper. The sofa uses the camera module to capture an image of the shoe, identifies the brand logo from the image, and uses the image and logo as search indexes to retrieve descriptive information about the shoe's style and function, describing the type of function. The sofa then uses this descriptive information to determine whether the shoe has a heated insole. If so, it determines that the shoe has a heated insole and proceeds to steps 303-305; otherwise, it determines that the shoe does not have a heated insole and proceeds directly to step 305.

[0086] As an alternative implementation, the camera module is mounted on the ceiling above the sofa, and the insole of the shoe is printed with a coded image (such as a QR code). The coded image contains the shoe's brand logo and a description of the shoe's features. Accordingly, the sofa uses the camera module to scan the coded image printed on the insole of the shoe to obtain the corresponding shoe brand logo and the description of the shoe's features. Based on the description of the shoe's features, the sofa identifies whether the shoe has a heated insole. If so, the shoe is determined to have a heated insole, and steps 303 to 305 are executed. If not, the shoe is determined not to have a heated insole, and step 305 is executed directly.

[0087] 303. The sofa and the shoe establish a wireless connection.

[0088] Generally, the shoes placed in front of the sofa include the left shoe and the right shoe.

[0089] As an optional implementation, the sofa can establish a wireless connection with the shoe in the following ways: the sofa establishes a wireless connection with the left shoe and the sofa establishes a wireless connection with the right shoe.

[0090] For example, the sofa establishes a wireless connection with the left shoe included in the shoe as follows:

[0091] The sofa broadcast includes the shoe brand mark (i.e., logo), the "L" mark on the left shoe, the sofa's hotspot name, and the first hotspot access prompt message with the sofa's valid hotspot access key;

[0092] Correspondingly, when the left shoe detects the hotspot access first prompt message and recognizes that the left shoe is pre-configured with the brand mark (i.e., logo) and the mark "L" of the left shoe included in the hotspot access first prompt message, the left shoe accesses the sofa's hotspot according to the sofa's hotspot name and the sofa's hotspot valid access key, thereby establishing a wireless connection between the sofa and the left shoe.

[0093] For example, the sofa establishes a wireless connection with the right shoe included in the shoe as follows:

[0094] The sofa broadcast includes the shoe brand mark (i.e., logo), the "R" mark on the right shoe, the sofa's hotspot name, and a second hotspot access prompt message with the sofa's valid hotspot access key;

[0095] Correspondingly, when the right shoe of the shoe hears the second hotspot access prompt message, and recognizes that the right shoe is pre-configured with the brand mark (i.e., logo) of the shoe and the mark "R" of the right shoe included in the second hotspot access prompt message, the right shoe accesses the hotspot of the sofa according to the hotspot name of the sofa and the hotspot's valid access key, thereby establishing a wireless connection between the sofa and the right shoe.

[0096] 304. The sofa sends a control command to the shoe via the wireless connection. The control command is used to instruct the shoe to heat the insole of the shoe in order to accelerate the dissipation of the shoe's odor.

[0097] Optionally, the sofa sends a first control command to the left shoe via a wireless connection between the sofa and the left shoe, the first control command being used to instruct the left shoe to heat the insole of the left shoe to accelerate the dissipation of odor from the left shoe; and the sofa sends a second control command to the right shoe via a wireless connection between the sofa and the right shoe, the second control command being used to instruct the right shoe to heat the insole of the right shoe to accelerate the dissipation of odor from the right shoe.

[0098] 305. The sofa starts the fan so that the air in front of the sofa is drawn into the activated carbon adsorption block in the adsorption box through the air inlet and then output through the air duct.

[0099] In this embodiment, after the sofa starts the fan, the air in front of the sofa is drawn in by the fan through the several air inlets and the first pipe, and then sent to the activated carbon adsorption block in the adsorption box through the second pipe for odor adsorption before being output through the air duct. This can quickly remove the odor emitted when the shoes are taken off in front of the sofa, thus avoiding affecting the air quality of the indoor environment.

[0100] It is evident that implementation Figure 3 The described method can quickly remove the odor emitted when the shoes are taken off in front of the sofa, thus avoiding affecting the indoor air quality.

[0101] In addition, implementation Figure 3 The described method can also enhance the intelligence of sofas, allowing users to enjoy a better experience when using them, and is conducive to the widespread application of sofas in indoor environments.

[0102] Please see Figure 4 , Figure 4 This is a flowchart illustrating the third embodiment of the sofa-based shoe odor removal method disclosed in this application. The sofa base houses a fan and an adsorption box containing activated carbon adsorption blocks. Several air inlets are evenly spaced along the length of the base's front side. Each air inlet is connected to the fan's input end via a first pipe embedded in the base. The fan's output end is connected to the adsorption box's inlet via a second pipe embedded in the base. The adsorption box's outlet is connected to an air vent located on the sofa (e.g., the adsorption box's outlet is connected to an air vent located on the rear side of the base via a third pipe embedded in the base). Figure 4 As shown, this sofa-based shoe odor removal method includes:

[0103] 401. The sofa detects that a shoe has been removed and placed in front of the sofa; wherein the front side of the sofa base is close to the shoe.

[0104] The implementation of step 401 can refer to the implementation of step 301 in the previous embodiment, and will not be repeated here.

[0105] 402. The sofa identifies whether the shoe has a heated insole; if yes, proceed to steps 403 to 408; if no, proceed directly to step 413.

[0106] The implementation of step 402 can refer to the implementation of step 302 in the previous embodiment, and will not be repeated here.

[0107] 403. The sofa and the shoe establish a wireless connection.

[0108] The implementation of step 403 can refer to the implementation of step 303 in the previous embodiment, and will not be repeated here.

[0109] 404. This function detects the current user value of the user currently using the sofa.

[0110] As an optional implementation, the sofa utilizes a camera module mounted on the indoor ceiling above the sofa to detect the current human data of the user using the sofa.

[0111] 405. The sofa determines the insole heating power value corresponding to the current person's value; wherein the insole heating power value is directly proportional to the number of the current person's value.

[0112] The heating power of the insole is directly proportional to the current value of the person: the larger the current value of the person, the larger the heating power of the insole; conversely, the smaller the current value of the person, the smaller the heating power of the insole.

[0113] As an optional implementation, the sofa can determine the insole heating power value corresponding to the current human body using the following formula:

[0114] P = k * n;

[0115] Where n represents the current value, k is a coefficient, and the unit of k is watts; P represents the insole heating power value corresponding to the current value; for example, when k = 1.5 watts and n = 1, P takes the value of 1.5 watts; when k = 1.5 watts and n = 2, P takes the value of 3 watts; when k = 1.5 watts and n = 3, P takes the value of 4.5 watts.

[0116] 406. The sofa sends a control command to the shoe via the wireless connection. The control command includes the insole heating power value. The control command is used to instruct the shoe to heat the insole of the shoe to accelerate the dissipation of the shoe's odor. In response to the control command, the shoe determines whether the insole heating power value included in the control command is equal to or higher than the shoe's pre-configured maximum insole heating power value. If not, the shoe heats the insole of the shoe according to the insole heating power value to accelerate the dissipation of the shoe's odor.

[0117] Optionally, the sofa sends a first control command to the left shoe via a wireless connection between the sofa and the left shoe. The first control command includes the insole heating power value and is used to instruct the left shoe to heat the insole of the left shoe to accelerate the dissipation of odor. Correspondingly, the left shoe responds to the first control command and determines whether the insole heating power value included in the first control command is equal to or higher than the maximum insole heating power value preset by the left shoe. If not, the insole of the left shoe is heated according to the insole heating power value to accelerate the dissipation of odor; if so, the insole of the left shoe is heated according to the maximum insole heating power value to accelerate the dissipation of odor.

[0118] Furthermore, the sofa sends a second control command to the right shoe via a wireless connection between the sofa and the right shoe. The second control command includes the insole heating power value and is used to instruct the right shoe to heat the insole of the right shoe to accelerate the dissipation of odor. Correspondingly, the right shoe responds to the second control command and determines whether the insole heating power value included in the second control command is equal to or higher than the maximum insole heating power value pre-configured for the right shoe. If not, the insole of the right shoe is heated according to the insole heating power value to accelerate the dissipation of odor; if so, the insole of the right shoe is heated according to the maximum insole heating power value to accelerate the dissipation of odor.

[0119] 407. The sofa sends a query command to the shoe via the wireless connection. The query command is used to query the user's daily exercise volume recorded by the shoe.

[0120] Optionally, the sofa can send a query command to the left shoe via a wireless connection between the sofa and the left shoe, which is used to query the user's daily exercise volume recorded by the left shoe.

[0121] Alternatively, the sofa can send a query command to the right shoe via a wireless connection between the sofa and the right shoe, which is used to query the user's daily exercise volume recorded by the right shoe.

[0122] 408. The sofa obtains the user's daily exercise data sent by the shoe through the wireless connection.

[0123] Optionally, if the sofa sends a query command to the left shoe via a wireless connection between the sofa and the left shoe, the sofa obtains the user's daily exercise data sent by the left shoe.

[0124] Alternatively, if the sofa sends a query command to the right shoe via a wireless connection between the sofa and the right shoe, the sofa obtains the user's daily exercise data sent by the right shoe.

[0125] For example, the user's daily activity level could be the total number of steps taken or the total number of kilometers walked.

[0126] 409. The sofa determines whether the user's daily exercise volume has reached the specified amount; if yes, proceed to steps 410 to 413; if no, proceed to step 413.

[0127] As an optional implementation, the sofa's armrests are equipped with touchscreens, allowing the sofa's administrator to pre-configure the specified amount of exercise. For example, this specified amount of exercise could be a specified total number of steps or a specified total number of kilometers walked.

[0128] 410. The sofa identifies the specific user to whom the shoes belong from among the users using the sofa.

[0129] As an optional implementation, when the current number of users is 1, the sofa identifies the user on the sofa as the specific user to whom the shoe belongs.

[0130] As an alternative implementation, when the current user value is greater than or equal to 2, the sofa first queries the shoe for the pre-configured user name via the wireless connection between the sofa and the shoe. Then, the sofa plays a prompt voice containing the user name through a speaker on the armrest, which prompts the user corresponding to the user name to raise their hand. Finally, the sofa uses a camera module mounted on the ceiling above the sofa to capture a user who raises their hand among the users on the sofa as the specific user to whom the shoe belongs.

[0131] For example, when the current user value is greater than or equal to 2, the sofa can first query the left shoe for the pre-configured username of the left shoe through the wireless connection between the sofa and the left shoe; or, when the current user value is greater than or equal to 2, the sofa can first query the right shoe for the pre-configured username of the right shoe through the wireless connection between the sofa and the right shoe; wherein the pre-configured username of the right shoe is the same as the pre-configured username of the left shoe.

[0132] 411. The sofa determines the area occupied by the specific user on the sofa.

[0133] As an optional implementation, the sofa utilizes a camera module mounted on the indoor ceiling above the sofa to detect the area occupied by the specific user on the sofa.

[0134] 412. The sofa controls the built-in massage head to move to the occupied area to perform a massage on the specific user in order to relieve the user's fatigue.

[0135] In this embodiment of the application, the occupied area may be only the occupied area of ​​the base; or, the occupied area may be the occupied area of ​​the base and the backrest.

[0136] As an optional implementation, the base has a built-in first drive device that can move the built-in base massage head forward, backward, up, down, left and right. When the occupied area is only the occupied area of ​​the base, the sofa can control the first drive device to move the base massage head to the occupied area of ​​the base to perform base massage on the specific user, so as to relieve the user's fatigue.

[0137] As an optional implementation, the backrest has a built-in second drive device that can move the built-in backrest massage head forward, backward, up, down, left, and right. When the occupied area is the area occupied by the base and the backrest, the sofa can control the first drive device to move the base massage head to the occupied area of ​​the base to perform a massage operation on the specific user, and control the second drive device to move the backrest massage head to the occupied area of ​​the backrest to perform a base and backrest massage operation on the specific user, so as to relieve the user's fatigue.

[0138] 413. The sofa starts the fan so that the air in front of the sofa is drawn into the activated carbon adsorption block in the adsorption box through the air inlet and then output through the air duct.

[0139] In this embodiment, after the sofa starts the fan, the air in front of the sofa is drawn in by the fan through the several air inlets and the first pipe, and then sent to the activated carbon adsorption block in the adsorption box through the second pipe for odor adsorption before being output through the air duct. This can quickly remove the odor emitted when the shoes are taken off in front of the sofa, thus avoiding affecting the air quality of the indoor environment.

[0140] It is evident that implementation Figure 4 The described method can not only quickly remove the odor emitted when the shoes are taken off in front of the sofa, thus avoiding affecting the indoor air quality, but also provide a massage effect to the specific user of the shoes on the sofa, relieving their fatigue.

[0141] In addition, implementation Figure 4 The described method can also enhance the intelligence of sofas, allowing users to enjoy a better experience when using them, and is conducive to the widespread application of sofas in indoor environments.

[0142] Please see Figure 5 , Figure 5This is a flowchart illustrating the fourth embodiment of the sofa-based shoe odor removal method disclosed in this application. The sofa base houses a fan and an adsorption box containing activated carbon adsorption blocks. Several air inlets are evenly spaced along the length of the base's front side. Each air inlet is connected to the fan's input end via a first pipe embedded in the base. The fan's output end is connected to the adsorption box's inlet via a second pipe embedded in the base. The adsorption box's outlet is connected to an air vent located on the sofa (e.g., the adsorption box's outlet is connected to an air vent located on the rear side of the base via a third pipe embedded in the base). Furthermore, on the front side of the base, at least one aroma outlet is provided between any two adjacent air inlets of a plurality of air inlets evenly spaced along the length of the base. The base also contains a built-in heatable perfume container filled with perfume, and each aroma outlet is connected to the perfume evaporation port of the perfume container (e.g., each aroma outlet is connected to the perfume evaporation port of the perfume container via a fourth pipe built into the base). Figure 5 As shown, this sofa-based shoe odor removal method includes:

[0143] Steps 501 to 513 are the same as steps 401 to 413 in the previous embodiment, and will not be repeated here.

[0144] 514. The sofa detects whether the start-up time of the fan has reached the specified time; if yes, proceed to step 515; if no, end this process.

[0145] As an optional implementation, the sofa's administrator can pre-configure the specified duration for the sofa via a touchscreen located on the sofa's armrests. For example, the specified duration could be 5 minutes or 10 minutes.

[0146] 515. The sofa turns off the fan and heats the perfume container so that the perfume contained in the perfume container is heated and evaporates from the perfume evaporation port and is output through the fragrance outlet.

[0147] Steps 514 and 515 can quickly remove the odor emitted when the shoes are taken off in front of the sofa, and then further release perfume in front of the sofa to make the air in front of the sofa fresher and make people feel more comfortable in the indoor environment.

[0148] It is evident that implementation Figure 5 The described method can not only quickly remove the odor emitted when the shoes are taken off in front of the sofa, thus avoiding affecting the indoor air quality, but also provide a massage effect to the specific user of the shoes on the sofa, relieving their fatigue.

[0149] In addition, implementation Figure 5 The described method can also enhance the intelligence of sofas, allowing users to enjoy a better experience when using them, and is conducive to the widespread application of sofas in indoor environments.

[0150] Please see Figure 6 , Figure 6 This is a schematic diagram of the structure of the first embodiment of the sofa disclosed in this application. The sofa base houses a fan and an adsorption box containing activated carbon adsorption blocks. Several air inlets are evenly spaced along the length of the base's front side. Each air inlet is connected to the fan's input end via a first pipe built into the base. The fan's output end is connected to the adsorption box's inlet via a second pipe built into the base. The adsorption box's outlet is connected to an air guide on the sofa (e.g., the adsorption box's outlet is connected to an air guide on the rear side of the base via a third pipe built into the base). Figure 6 As shown, the sofa also includes:

[0151] The first detection unit 601 is used to detect that a shoe has been taken off and placed in front of the sofa; wherein the front side of the sofa base is close to the shoe;

[0152] The first control unit 602 is used to start the fan so that the air in front of the sofa is drawn into the activated carbon adsorption block in the adsorption box through the air inlet and then output through the air duct.

[0153] As an optional implementation, the first detection unit 601 uses a camera module to detect that a shoe has been removed and placed in front of the sofa. For example, the camera module is located on the front side of the sofa base, or it is located on the ceiling above the sofa.

[0154] In this embodiment of the application, after the first control unit 602 starts the fan, the air in front of the sofa is drawn in by the fan through the plurality of air inlets and the first pipe, and then sent to the activated carbon adsorption block in the adsorption box through the second pipe for odor adsorption before being output through the air duct. This can remove the odor emitted when the shoes are taken off in front of the sofa and avoid affecting the air quality of the indoor environment.

[0155] It is evident that implementation Figure 6 The sofa shown can eliminate the odor emitted when the shoes are taken off in front of the sofa, thus preventing it from affecting the indoor air quality.

[0156] In addition, implementation Figure 6The sofa shown can also enhance its intelligence, allowing users to enjoy a better experience when using it, which is conducive to the widespread application of sofas in indoor environments.

[0157] Please see Figure 7 , Figure 7 This is a schematic diagram of the structure of the second embodiment of the sofa disclosed in this application. Figure 7 The sofa shown is made of Figure 6 The sofa shown was optimized. Figure 6 Compared to the sofa shown, Figure 7 The sofa shown also includes:

[0158] The first identification unit 603 is used to identify whether the shoe is a shoe with a heated insole after the first detection unit 601 detects that a shoe has been taken off and placed in front of the sofa, and before the first control unit 602 starts the fan.

[0159] The connection unit 604 is used to establish a wireless connection with the shoe when the first identification unit 603 identifies the shoe as a shoe with a heated insole;

[0160] The interaction unit 605 is used to send control commands to the shoe via the wireless connection. The control commands are used to instruct the shoe to heat the insole of the shoe in order to accelerate the dissipation of the shoe's odor.

[0161] As an optional implementation, the camera module is mounted on the indoor ceiling above the sofa, and the shoe has a brand logo on its upper. Correspondingly, the first identification unit 603 uses the camera module to capture an image of the shoe, identifies the brand logo from the image, and uses the image and logo as search indexes to retrieve descriptive information about the shoe's style and function, describing the type of function. The first identification unit 603 then identifies whether the shoe has a heated insole based on the descriptive information. If yes, the shoe is determined to have a heated insole; otherwise, it is determined not to have a heated insole.

[0162] As an alternative implementation, the camera module is mounted on the indoor ceiling above the sofa, and the insole of the shoe is printed with a coded image (such as a QR code). The coded image contains the shoe brand mark (i.e., logo) and the description information of the shoe's style and function. Accordingly, the first identification unit 603 uses the camera module to scan the coded image printed on the insole of the shoe, obtains the shoe brand mark (i.e., logo) and the description information of the shoe's style and function, and identifies whether the shoe has a heated insole function based on the description information of the shoe's style and function. If yes, it determines that the shoe has a heated insole; if no, it determines that the shoe does not have a heated insole.

[0163] Generally, the shoes placed in front of the sofa include the left shoe and the right shoe.

[0164] As an optional implementation, the connection unit 604 establishes a wireless connection with the shoe in the following ways: the connection unit 604 establishes a wireless connection with the left shoe included in the shoe, and the sofa establishes a wireless connection with the right shoe included in the shoe.

[0165] For example, the connection unit 604 establishes a wireless connection with the left shoe included in the shoe in the following way:

[0166] The connection unit 604 broadcasts a first hotspot access prompt message including the shoe brand mark (i.e., logo), the mark "L" on the left shoe, the hotspot name of the sofa, and the hotspot access key of the sofa;

[0167] Correspondingly, when the left shoe of the shoe hears the hotspot access first prompt message, and recognizes that the left shoe is pre-configured with the brand mark (i.e., logo) of the shoe and the mark "L" of the left shoe included in the hotspot access first prompt message, the left shoe accesses the hotspot of the sofa according to the hotspot name of the sofa and the hotspot valid access key of the sofa, thereby establishing a wireless connection between the connection unit 604 and the left shoe.

[0168] For example, the connection unit 604 establishes a wireless connection with the right shoe included in the shoe in the following way:

[0169] The connection unit 604 broadcasts a second hotspot access prompt message including the shoe brand mark (i.e., logo), the mark "R" on the right shoe, the hotspot name of the sofa, and the hotspot valid access key of the sofa;

[0170] Correspondingly, when the right shoe of the shoe hears the second hotspot access prompt message, and recognizes that the right shoe is pre-configured with the brand mark (i.e., logo) of the shoe and the mark "R" of the right shoe included in the second hotspot access prompt message, the right shoe accesses the hotspot of the sofa according to the hotspot name of the sofa and the hotspot's valid access key, thereby establishing a wireless connection between the connection unit 604 and the right shoe.

[0171] Optionally, the interaction unit 605 sends a first control command to the left shoe via a wireless connection between the connection unit 604 and the left shoe. The first control command is used to instruct the left shoe to heat the insole of the left shoe to accelerate the dissipation of odor from the left shoe. Additionally, the interaction unit 605 sends a second control command to the right shoe via a wireless connection between the connection unit 604 and the right shoe. The second control command is used to instruct the right shoe to heat the insole of the right shoe to accelerate the dissipation of odor from the right shoe.

[0172] As an optional implementation method, Figure 7 The sofa shown also includes:

[0173] The second detection unit 606 is used to detect the current number of users on the sofa after the connection unit 604 establishes a wireless connection with the shoe and before the interaction unit 605 sends control commands to the shoe through the wireless connection.

[0174] The power determination unit 607 is used to determine the insole heating power value corresponding to the current human value; wherein the insole heating power value is directly proportional to the number of the current human value;

[0175] The control command also includes the insole heating power value; correspondingly, the shoe responds to the control command by determining whether the insole heating power value included in the control command is equal to or higher than the maximum insole heating power value pre-configured for the shoe. If not, the shoe insole is heated according to the insole heating power value to accelerate the dissipation of the shoe's odor.

[0176] For example, the shoe is pre-configured to have a maximum insole heating power of 7 watts.

[0177] As an optional implementation, the second detection unit 606 uses a camera module mounted on the indoor ceiling above the sofa to detect the current number of users on the sofa.

[0178] As an optional implementation, the power determination unit 607 uses the following formula to determine the insole heating power value corresponding to the current human value, namely:

[0179]

[0180] Where n represents the current value, k is a coefficient, and the unit of k is watts; P represents the insole heating power value corresponding to the current value; for example, when k = 1.5 watts and n = 1, P takes the value of 1.5 watts; when k = 1.5 watts and n = 2, P takes the value of 3 watts; when k = 1.5 watts and n = 3, P takes the value of 4.5 watts.

[0181] Optionally, the interaction unit 605 sends a first control command to the left shoe via a wireless connection between the connection unit 604 and the left shoe included in the shoe. The first control command includes the insole heating power value. The first control command is used to instruct the left shoe to heat the insole of the left shoe to accelerate the dissipation of odor from the left shoe. Correspondingly, in response to the first control command, the left shoe determines whether the insole heating power value included in the first control command is equal to or higher than the maximum insole heating power value (e.g., 7 watts) pre-configured for the left shoe. If not, the insole of the left shoe is heated according to the insole heating power value to accelerate the dissipation of odor from the left shoe. If yes, the insole of the left shoe is heated according to the maximum insole heating power value to accelerate the dissipation of odor from the left shoe.

[0182] Furthermore, the interaction unit 605 sends a second control command to the right shoe via the wireless connection between the connection unit 604 and the right shoe included in the shoe. The second control command includes the insole heating power value. The second control command is used to instruct the right shoe to heat the insole of the right shoe to accelerate the dissipation of the odor of the right shoe. Correspondingly, in response to the second control command, the right shoe determines whether the insole heating power value included in the second control command is equal to or higher than the maximum insole heating power value (e.g., 7 watts) pre-configured for the right shoe. If not, the insole of the right shoe is heated according to the insole heating power value to accelerate the dissipation of the odor of the right shoe. If yes, the insole of the right shoe is heated according to the maximum insole heating power value to accelerate the dissipation of the odor of the right shoe.

[0183] It is evident that implementation Figure 7 The sofa shown can quickly remove the odor emitted when shoes are taken off in front of the sofa, thus avoiding affecting the indoor air quality.

[0184] Please see Figure 8 , Figure 8 This is a structural schematic diagram of the third embodiment of the sofa disclosed in this application. Figure 8 The sofa shown is made of Figure 7 The sofa shown was optimized. Figure 7 Compared to the sofa shown, Figure 8The sofa shown also includes: a judgment unit 608, a second identification unit 609, a region determination unit 610, and a second control unit 611, wherein:

[0185] The interaction unit 605 is also used to send a query command to the shoe via the wireless connection after sending a control command to the shoe via the wireless connection and before the first control unit 602 starts the fan. The query command is used to query the user's daily exercise volume recorded by the shoe; and to obtain the user's daily exercise volume sent by the shoe via the wireless connection.

[0186] The judgment unit 608 is used to determine whether the user's daily exercise volume has reached the specified exercise volume;

[0187] The second identification unit 609 is used to identify the specific user to whom the shoes belong from the users on the sofa when the judgment unit 608 determines that the user’s daily exercise volume has reached the specified exercise volume.

[0188] The area determination unit 610 is used to determine the area occupied by the specific user on the sofa; for example, the occupied area may be only the area occupied by the base, or the occupied area may be only the area occupied by the base and the backrest.

[0189] The second control unit 611 is used to control the massage head of the sofa to move to the occupied area to perform a massage operation on the specific user in order to relieve the user's fatigue.

[0190] Optionally, the interaction unit 605 sends a query command to the left shoe via a wireless connection between the connection unit 604 and the left shoe included in the shoe. The query command is used to query the user's daily exercise volume recorded by the left shoe.

[0191] Alternatively, the interaction unit 605 can send a query command to the right shoe via the wireless connection between the connection unit 604 and the right shoe included in the shoe. The query command is used to query the user's daily exercise volume recorded by the right shoe.

[0192] As an optional implementation, the second identification unit 609 identifies the user on the sofa as the specific user to whom the shoes belong in the following way:

[0193] When the current number of users is 1, the sofa recognizes that the user on the sofa is the specific user to whom the shoe belongs;

[0194] Alternatively, when the current user value is greater than or equal to 2, the system first queries the shoe for the pre-configured username of the shoe through the wireless connection between the connection unit 604 and the shoe, and plays a prompt voice containing the username through the speaker installed on the armrest of the sofa. The prompt voice is used to prompt the user corresponding to the username to raise their hand. The system also uses the camera module installed on the indoor ceiling above the sofa to capture a user on the sofa who raises their hand as the specific user to whom the shoe belongs.

[0195] For example, when the current user value is greater than or equal to 2, the system first queries the left shoe for the pre-configured username of the left shoe via the wireless connection between the connection unit 604 and the left shoe; or, when the current user value is greater than or equal to 2, the system first queries the right shoe for the pre-configured username of the right shoe via the wireless connection between the connection unit 604 and the right shoe; wherein the pre-configured username of the right shoe is the same as the pre-configured username of the left shoe.

[0196] As an optional implementation, the area determination unit 610 uses the camera module installed on the indoor ceiling above the sofa to detect the area occupied by the specific user on the sofa.

[0197] As an optional implementation, the base has a built-in first drive device that can move the built-in base massage head forward, backward, up, down, left and right. When the occupied area is only the occupied area of ​​the base, the second control unit 611 can control the first drive device to move the base massage head to the occupied area of ​​the base to perform base massage on the specific user, so as to relieve the user's fatigue.

[0198] As an optional implementation, the backrest has a built-in second drive device that can move the built-in backrest massage head forward, backward, up, down, left, and right. When the occupied area is the area occupied by the base and the backrest, the second control unit 611 can control the first drive device to move the base massage head to the occupied area of ​​the base to perform a massage operation on the specific user, and control the second drive device to move the backrest massage head to the occupied area of ​​the backrest to perform a base and backrest massage operation on the specific user, so as to relieve the user's fatigue.

[0199] It is evident that implementation Figure 8 The sofa shown can not only quickly remove the odor emitted when the shoes are taken off in front of the sofa, thus avoiding affecting the indoor air quality, but it can also provide a massage to the specific user of the shoes on the sofa, relieving their fatigue.

[0200] Please see Figure 9 , Figure 9 This is a structural schematic diagram of the fourth embodiment of the sofa disclosed in this application. Figure 9 The sofa shown is made of Figure 8 The sofa shown is an optimized version. Furthermore, on the front side of the base, among the several air inlets evenly spaced along its length, at least one fragrance outlet is located between any two adjacent air inlets. The base also houses a heated perfume container containing perfume, and each fragrance outlet is connected to the perfume evaporation port of the perfume container (e.g., each fragrance outlet is connected to the perfume evaporation port of the perfume container via a fourth pipe built into the base). Figure 8 Compared to the sofa shown, Figure 9 The sofa shown also includes:

[0201] The third detection unit 612 is used to detect whether the start-up time of the fan has reached the specified time after the first control unit 602 starts the fan.

[0202] The heating unit 613 is used to turn off the fan and heat the perfume container when the third detection unit 612 detects that the start-up time of the fan has reached a specified time, so that the perfume contained in the perfume container is heated and evaporated from the perfume evaporation port and output through the fragrance output port.

[0203] It is evident that implementation Figure 9 The sofa shown can quickly eliminate the odor emitted when shoes are taken off in front of the sofa, and then further release fragrance in front of the sofa to make the air in front of the sofa fresher and make people feel more comfortable in the indoor environment.

[0204] Please see Figure 10 , Figure 10 This is a structural schematic diagram of the fifth embodiment of the sofa disclosed in this application. The sofa base houses a fan and an adsorption box containing activated carbon adsorption blocks. Several air inlets are evenly spaced along the length of the base's front side. Each air inlet is connected to the fan's input end via a first pipe built into the base. The fan's output end is connected to the adsorption box's inlet via a second pipe built into the base. The adsorption box's outlet is connected to an air guide vent on the sofa. Figure 10 As shown, the sofa includes:

[0205] Memory 1001 storing executable program code;

[0206] Processor 1002 coupled to memory 1001;

[0207] Processor 1002 calls the executable program code stored in memory 1001 and performs the following steps:

[0208] A shoe was detected being removed and placed in front of the sofa; the front side of the sofa base is close to the shoe.

[0209] Turn on the fan so that the air in front of the sofa is drawn into the activated carbon adsorption block in the adsorption box, where it adsorbs odors and is then output through the air vent.

[0210] As an optional implementation, after detecting that a shoe has been removed and placed in front of the sofa, and before starting the fan, the processor 1002 further performs the following steps:

[0211] Identify whether the shoe has a heated insole; if so, establish a wireless connection with the shoe.

[0212] The system sends control commands to the shoe via the wireless connection. These commands instruct the shoe to heat the insole to accelerate the dissipation of odors.

[0213] As an optional implementation, after establishing a wireless connection with the shoe and before sending control commands to the shoe via the wireless connection, the processor 1002 further performs the following steps:

[0214] Detect the current number of users using the sofa;

[0215] Determine the insole heating power value corresponding to the current human value; wherein, the insole heating power value is directly proportional to the number of the current human value;

[0216] The control command also includes the insole heating power value; correspondingly, the shoe responds to the control command by determining whether the insole heating power value included in the control command is equal to or higher than the maximum insole heating power value pre-configured for the shoe. If not, the shoe insole is heated according to the insole heating power value to accelerate the dissipation of the shoe's odor.

[0217] As an optional implementation, at least one aroma outlet is provided between any two adjacent air inlets of the plurality of air inlets evenly spaced along the length of the base on the front side of the base. The base also has a built-in heatable perfume container containing perfume, and each aroma outlet is connected to the perfume evaporation port of the perfume container. After the fan is started, the processor 1002 further performs the following steps:

[0218] Check whether the start-up time of the fan has reached the specified duration;

[0219] If the specified time is reached, the fan is turned off and the perfume container is heated so that the perfume contained in the perfume container is heated and evaporated from the perfume evaporation port and output through the fragrance outlet.

[0220] As an optional implementation, after sending control commands to the shoe via the wireless connection and before starting the fan, the processor 1002 further performs the following steps:

[0221] The wireless connection is used to send a query command to the shoe, which is used to query the user's daily exercise volume recorded by the shoe.

[0222] The system obtains the user's daily exercise volume sent by the shoe through the wireless connection and determines whether the user's daily exercise volume has reached the specified amount.

[0223] If the specified amount of exercise is reached, the specific user to whom the shoes belong is identified from among the users on the sofa;

[0224] Determine the area occupied by the specific user on the sofa;

[0225] The built-in massage head of the sofa is controlled to move to the occupied area to perform a massage on the specific user in order to relieve the user's fatigue.

[0226] It is evident that implementation Figure 10 The sofa shown can not only quickly remove the odor emitted when the shoes are taken off in front of the sofa, thus avoiding affecting the indoor air quality, but it can also provide a massage to the specific user of the shoes on the sofa, relieving their fatigue.

[0227] In addition, implementation Figure 10 The sofa shown can also enhance its intelligence, allowing users to enjoy a better experience when using it, which is conducive to the widespread application of sofas in indoor environments.

[0228] This application further discloses a storage medium storing a computer program thereon, which, when executed by a processor, implements all or part of the steps in the preceding method embodiments.

[0229] The above provides a detailed description of a method for removing shoe odor based on a sofa and related products disclosed in the embodiments of this application. Specific examples have been used to illustrate the principles and implementation methods of this application. The description of the above embodiments is only for the purpose of helping to understand the method and core ideas of this application. At the same time, for those skilled in the art, there will be changes in the specific implementation methods and application scope based on the ideas of this application. Therefore, the content of this specification should not be construed as a limitation of the application.

Claims

1. A method for removing shoe odor based on a sofa, characterized in that, The sofa base has a built-in fan and an adsorption box. The adsorption box contains activated carbon adsorption blocks. Several air inlets are evenly spaced along the length of the base's front side. Each air inlet is connected to the fan's input end via a first pipe built into the base. The fan's output end is connected to the adsorption box's inlet via a second pipe built into the base. The adsorption box's outlet is connected to an air vent located on the sofa. The method includes: The sofa detects that a shoe has been removed and placed in front of the sofa; the front side of the sofa base is close to the shoe; The sofa identifies whether the shoes are shoes with heated insoles; if so, it establishes a wireless connection with the shoes; and sends a control command to the shoes through the wireless connection, the control command being used to instruct the shoes to heat the insoles of the shoes to accelerate the dissipation of odors from the shoes; The sofa activates the fan, causing air in front of the sofa to be drawn through the air inlet and sent to the activated carbon adsorption block in the adsorption box for odor adsorption, and then output through the air duct.

2. The method for removing shoe odor based on a sofa according to claim 1, characterized in that, After the sofa and the shoes establish a wireless connection, and before the sofa sends control commands to the shoes via the wireless connection, the method further includes: The sofa detects the current user value of the user using the sofa. The sofa determines the insole heating power value corresponding to the current person's value; wherein, the insole heating power value is directly proportional to the number of the current person's value; The control command further includes the insole heating power value; the shoe responds to the control command and determines whether the insole heating power value included in the control command is equal to or higher than the maximum insole heating power value pre-configured for the shoe; if not, the shoe insole is heated according to the insole heating power value to accelerate the dissipation of odor from the shoe.

3. The method for removing shoe odor based on a sofa according to claim 2, characterized in that, The base has at least one aroma outlet between any two adjacent air inlets of a plurality of air inlets evenly spaced along its length. The base also has a built-in heatable perfume container filled with perfume. Each aroma outlet is connected to a perfume evaporation port of the perfume container. After the sofa starts the fan, the method further includes: The sofa detects whether the start-up time of the fan has reached the specified duration; If the specified time is reached, the sofa turns off the fan and heats the perfume container so that the perfume contained in the perfume container is heated and evaporates from the perfume evaporation port and is output through the fragrance output port.

4. The method for removing shoe odor based on a sofa according to claim 2 or 3, characterized in that, After the sofa sends a control command to the shoes via the wireless connection, and before the sofa starts the fan, the method further includes: The sofa sends a query command to the shoes via the wireless connection. The query command is used to query the user's daily exercise volume recorded by the shoes. The sofa obtains the user's daily exercise volume sent by the shoes through the wireless connection, and determines whether the user's daily exercise volume has reached the specified exercise volume; If the specified amount of exercise is reached, the sofa identifies the specific user to whom the shoes belong from among the users. The sofa defines the area occupied by the specific user on the sofa; The sofa controls the built-in massage heads to move to the occupied area to perform a massage on the specific user, thereby relieving the user's fatigue.

5. A sofa, characterized in that, The sofa's base houses a built-in fan and an adsorption box containing activated carbon adsorption blocks. Several air inlets are evenly spaced along the length of the base's front side. Each air inlet is connected to the fan's input end via a first pipe embedded in the base. The fan's output end is connected to the adsorption box's inlet via a second pipe embedded in the base. The adsorption box's outlet is connected to an air vent on the sofa. The sofa also includes: The first detection unit is used to detect that a shoe has been removed and placed in front of the sofa; the front side of the sofa base is close to the shoe; The first identification unit is used to identify whether the shoe is a shoe with a heated insole; A connection unit is used to establish a wireless connection with the shoe when the first identification unit identifies the shoe as a shoe with a heated insole; An interaction unit is used to send control commands to the shoe via the wireless connection. The control commands are used to instruct the shoe to heat the insole of the shoe to accelerate the dissipation of odor from the shoe. The first control unit is used to start the fan so that the air in front of the sofa is drawn into the activated carbon adsorption block in the adsorption box through the air inlet and then output through the air duct.

6. The sofa according to claim 5, characterized in that, Also includes: The second detection unit is used to detect the current human value of the user on the sofa after the connection unit establishes a wireless connection with the shoe and before the interaction unit sends a control command to the shoe through the wireless connection. A power determination unit is used to determine the insole heating power value corresponding to the current human value; wherein the insole heating power value is directly proportional to the number of the current human value; The control command further includes the insole heating power value; the shoe responds to the control command and determines whether the insole heating power value included in the control command is equal to or higher than the maximum insole heating power value pre-configured for the shoe; if not, the shoe insole is heated according to the insole heating power value to accelerate the dissipation of odor from the shoe.

7. A sofa, characterized in that, The sofa's base houses a built-in fan and an adsorption box containing activated carbon adsorption blocks. Several air inlets are evenly spaced along the length of the base's front side. Each air inlet is connected to the fan's input end via a first pipe embedded in the base. The fan's output end is connected to the adsorption box's inlet via a second pipe embedded in the base. The adsorption box's outlet is connected to an air vent on the sofa. The sofa also includes: A memory storing executable program code; a processor coupled to the memory; the processor calling the executable program code stored in the memory to perform the following steps: A shoe was detected being removed and placed in front of the sofa; the front side of the sofa base is close to the shoe; Identify whether the shoe has a heated insole; if so, establish a wireless connection with the shoe. The control command is sent to the shoe via the wireless connection. The control command is used to instruct the shoe to heat the insole of the shoe to accelerate the dissipation of the shoe's odor. The fan is turned on so that the air in front of the sofa is drawn into the activated carbon adsorption block in the adsorption box through the air inlet and then output through the air duct.

8. The sofa according to claim 7, characterized in that, After establishing a wireless connection with the shoe, and before sending control commands to the shoe via the wireless connection, the processor also performs the following steps: Detect the current number of users using the sofa; Determine the insole heating power value corresponding to the current human value; wherein, the insole heating power value is directly proportional to the number of the current human values; The control command further includes the insole heating power value; the shoe responds to the control command and determines whether the insole heating power value included in the control command is equal to or higher than the maximum insole heating power value pre-configured for the shoe; if not, the shoe insole is heated according to the insole heating power value to accelerate the dissipation of odor from the shoe.

9. The sofa according to claim 8, characterized in that, At least one aroma outlet is provided between any two adjacent air inlets of the plurality of air inlets evenly spaced along the length of the base. The base also has a built-in heatable perfume container containing perfume, and each aroma outlet is connected to the perfume evaporation port of the perfume container. After the fan is started, the processor also performs the following steps: Detect whether the start-up time of the fan has reached the specified duration; If the specified time is reached, the fan is turned off and the perfume container is heated so that the perfume contained in the perfume container is heated and evaporated from the perfume evaporation port and output through the fragrance output port.

10. The sofa according to claim 8 or 9, characterized in that, After sending control commands to the shoe via the wireless connection, and before starting the fan, the processor also performs the following steps: A query command is sent to the shoes via the wireless connection, and the query command is used to query the user's daily exercise volume recorded by the shoes. The user's daily exercise volume is obtained through the wireless connection and the user's daily exercise volume is determined to be the specified amount. If the specified amount of exercise is achieved, the specific user to whom the shoes belong is identified from among the users. Determine the area occupied by the specific user on the sofa; The massage heads built into the sofa are controlled to move to the occupied area to perform a massage on the specific user, thereby relieving the user's fatigue.

11. A storage medium having a computer program stored thereon, characterized in that, When the computer program is executed by the processor, it implements the steps of the sofa-based shoe odor removal method as described in any one of claims 1 to 4.