Intelligent closestool, dredging processing method and electronic device
By designing a flip-up sewage discharge unit and control unit in the smart toilet, the posture of the sewage pipe can be switched, solving the problem that flip-up flushing toilet unclogging tools cannot work effectively, and ensuring effective unclogging and normal use of the toilet.
Patent Information
- Application Number
- CN202511885302.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-15
- Publication Date
- 2026-02-06
AI Technical Summary
When a flip-flush toilet becomes clogged, unclogging tools cannot effectively target the blockage, and the water seal protection mechanism results in insufficient or absent water flow, hindering the unclogging process.
Design an intelligent toilet that uses a flip-up sewage pipe. The control unit can switch the flip-up position of the sewage pipe. When responding to the unblocking command, the sewage pipe is kept in the second position to maintain a complete sewage discharge state, eliminating the obstruction of unblocking by pipe bends and pipe opening orientation.
It effectively unclogs toilets, avoids tool damage and operational risks, improves the user experience, and ensures the continuity of the drain pipe.
Smart Images

Figure CN121473436A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of intelligent bathroom, in particular to an intelligent toilet, a dredging method and an electronic device. BACKGROUND
[0002] The intelligent toilet in the related art is mainly divided into two types of siphon type and overturning type; among them, the siphon type toilet is difficult to dredge because the pipe diameter is small and the structure is S-shaped, and the toilet often needs to be disassembled; the overturning flushing toilet has a larger sewage pipe diameter (such as the largest 65mm sewage pipe in the industry), but the sewage pipe opening is usually upward to maintain the water seal, and the dredging tool cannot effectively act on the blockage point when blocked. SUMMARY
[0003] One of the purposes of the present application is to provide an intelligent toilet, a dredging method and an electronic device applied to an intelligent toilet with a sewage box assembly.
[0004] The applicant found that the default flushing logic of the overturning flushing toilet has limitations: first, the flushing time is short, which cannot meet the dredging operation requirement; second, the water seal protection mechanism causes the sewage pipe to be unable to overturn when the water inflow signal disappears or the water inflow is insufficient, further hindering dredging; the overturning flushing toilet has dredging problems.
[0005] The causes of the above defects were first discovered by the applicant. On this basis, in order to improve the above-mentioned existing defects and achieve the purpose of the present application, the following technical solutions are adopted to solve the problem: An intelligent toilet, the intelligent toilet comprising: a toilet body having a sewage passage; an overturning sewage unit having a sewage pipe rotatably connected to the sewage passage and operatively rotating, the sewage pipe having a first posture with a sewage opening upward to form a water seal on the toilet body and a second posture with a sewage opening downward to discharge sewage; a control unit electrically connected to the overturning sewage unit; the control unit is configured to: in response to a flushing instruction, control the sewage pipe to overturn from the first posture to the second posture, and after completing sewage discharge, overturn from the second posture to the first posture; in response to a dredging instruction, control the sewage pipe to overturn to the second posture and maintain the second posture.
[0006] On the other hand, the present application also provides an intelligent toilet, the intelligent toilet comprising: a toilet body having a sewage passage; The flip-out sewage unit has a sewage pipe rotatably connected to the sewage channel and operable to rotate, the sewage pipe having a first position with the sewage outlet facing upward to form a water seal on the toilet body and a second position with the sewage outlet facing downward to discharge sewage. The control unit is electrically connected to the tilting sewage discharge unit; the control unit has a first control mode and a second control mode. The first control mode includes: in response to a flushing command, controlling the drain pipe to flip from the first position to the second position, and flipping from the second position back to the first position after the sewage discharge is completed; The second control mode includes: in response to a dredging command, controlling the drain pipe to flip to the second posture and maintaining the second posture.
[0007] Furthermore, this application also provides a method for unclogging a smart toilet. The smart toilet includes a toilet body and a tilting and flushing unit. The toilet body has a flushing channel, and the tilting and flushing unit has a flushing pipe rotatably connected to and operablely rotating on the flushing channel. The flushing pipe has a first position with the flushing outlet facing upward to form a water seal on the toilet body and a second position with the flushing outlet facing downward to discharge waste, including: Determine the type of instruction received to control the tilting and tilting of the sewage discharge unit; When the received instruction type for controlling the tilting of the sewage discharge unit is a dredging instruction, the sewage discharge pipe is tilted to the second posture and maintained in the second posture.
[0008] Furthermore, embodiments of this application also provide an electronic device, the electronic device comprising: At least one processor; and A memory communicatively connected to the at least one processor; wherein, The memory stores a computer program that can be executed by the at least one processor, which enables the at least one processor to perform the above-described unblocking method.
[0009] This disclosed embodiment of the smart toilet includes a flip-over sewage discharge unit. The flip-over sewage discharge unit has a sewage pipe rotatably connected to and operablely rotating on the sewage discharge channel. The sewage pipe has a first position with the sewage outlet facing upward to form a water seal on the toilet body and a second position with the sewage outlet facing downward to discharge waste. In response to a dredging command, the sewage pipe is controlled to flip to the second position and maintain the second position, locking the sewage pipe in a fully discharged state. By locking the fully discharged state, the sewage pipe is kept in a connected state, eliminating the obstruction to dredging caused by pipe bends and pipe outlet orientation in the smart toilet including the flip-over sewage discharge unit, and providing technical support for toilet dredging.
[0010] Other features and advantages of this application will be set forth in the following description, and will be apparent in part from the description, or may be learned by practicing the application. Other advantages of this application can be realized and obtained by means of the solutions described in the description and the accompanying drawings. Attached Figure Description
[0011] The accompanying drawings are used to provide an understanding of the technical solutions of this application and constitute a part of the specification. They are used together with the embodiments of this application to explain the technical solutions of this application and do not constitute a limitation on the technical solutions of this application.
[0012] Figure 1 This is a structural block diagram of a smart toilet according to an embodiment of the present disclosure; Figure 2 This is a structural block diagram of the unblocking treatment device according to an embodiment of the present disclosure; Figure 3 This is a flowchart illustrating the unblocking method according to an embodiment of the present disclosure. Detailed Implementation
[0013] This application describes several embodiments, but these descriptions are exemplary and not restrictive, and it will be apparent to those skilled in the art that many more embodiments and implementations are possible within the scope of the embodiments described herein. Although many possible combinations of features are shown in the drawings and discussed in the detailed description, many other combinations of the disclosed features are also possible. Unless specifically limited, any feature or element of any embodiment may be used in combination with, or may replace, any feature or element of any other embodiment.
[0014] This application includes and contemplates combinations of features and elements known to those skilled in the art. The embodiments, features, and elements disclosed in this application can also be combined with any conventional features or elements to form unique inventive solutions. Any feature or element of any embodiment can also be combined with features or elements from other inventive solutions to form another unique inventive solution. Therefore, it should be understood that any feature shown and / or discussed in this application can be implemented individually or in any suitable combination. Therefore, the embodiments are not limited except by the limitations imposed by the appended claims and their equivalents. Furthermore, various modifications and changes can be made within the scope of the appended claims.
[0015] Furthermore, in describing representative embodiments, the specification may have presented methods and / or processes as a specific sequence of steps. However, the method or process should not be limited to the specific order of steps described herein, to the extent that it does not depend on such a specific order. As will be understood by those skilled in the art, other sequences of steps are also possible. Therefore, the specific order of steps set forth in the specification should not be construed as a limitation of the claims. Moreover, the claims concerning the method and / or process should not be limited to the steps performed in the written order, and those skilled in the art will readily understand that these orders can be varied and still remain within the spirit and scope of the embodiments of this application.
[0016] Smart toilet: Figure 1 This is a structural block diagram of a smart toilet according to an embodiment of the present disclosure, as shown below. Figure 1 As shown, the smart toilet includes a toilet body 1, a tilting and flushing unit 2, a control unit 3, and a water circuit unit.
[0017] The toilet body 1 includes a pot surface and a drain channel connected to the pot surface for discharging waste.
[0018] The tilting drain unit 2 includes a drain pipe and a drive device. One end of the drain pipe is connected to the drain channel, and the drain pipe rotates relative to the drain channel. The drive device includes a motor electrically connected to the control unit 3, which applies a rotational force to the drain pipe to drive it to rotate. In other embodiments, the drive device may include a drive element for providing movement or rotation and a transmission mechanism for applying a rotational force to the drain pipe. The drain pipe is driven to rotate upward by the drive device, thereby forming a first posture with the drain outlet facing upward. In this first posture, the height of the drain outlet is higher than that of the drain channel, thereby forming a water seal on the pot surface. The drain pipe is driven to rotate downward by the drive device, thereby forming a second posture with the drain outlet facing downward to discharge waste. The drive device can control the operation of the motor and the transmission mechanism according to the flushing or unblocking command from the control unit 3 to process the drain pipe to rotate to the first or second posture.
[0019] The water system unit is connected to a municipal water source or a water tank, which can be installed on the toilet body or separately from the toilet. The water system unit includes an inlet pipe with a switch valve installed on it. The switch valve is electrically connected to a control unit and opens or closes under the control of the control unit to supply water to the toilet or discharge wastewater. The switch valve can be a solenoid valve or other valve assembly capable of opening or closing the water circuit or controlling the water flow.
[0020] Control unit 3 is electrically connected to flip-over sewage discharge unit 2; control unit includes processor and memory, memory stores computer program of dredging treatment method, processor implements the following dredging treatment method when executing computer program.
[0021] Conventional sewage control methods: When the user is using the flushing function of the smart toilet normally, if a flushing command is received, the water inlet flow rate is obtained through the pre-set flow acquisition unit 4. Before flushing according to the flushing command, water enters the water inlet pipe, and the water inlet flow rate is sufficient to flush the dirt on the toilet body 1. When flushing according to the flushing command, the flip-out sewage discharge unit 2 located at the sewage outlet of the toilet body 1 is connected to the sewage outlet through the shifter assembly 5. The water inlet flow rate is released through the brush ring water inlet nozzle 6 to flush the sewage pipe that has rotated to the second position, so as to achieve sewage discharge. After sewage discharge, the sewage pipe rotates and returns to the first position, and water enters the water inlet pipe, and the water inlet flow rate is sufficient to form a water seal at the target height in the toilet body 1.
[0022] The method for unblocking and dredging in this embodiment is as follows: Example 1: S11, in response to the flushing command, controls the drain pipe to flip from the first position to the second position, and flips from the second position back to the first position after the draining is completed; S11, in response to the unblocking command, controls the drain pipe to flip to the second position and maintain the second position.
[0023] In this embodiment of the smart toilet, the control unit responds to a dredging command by controlling the drain pipe to flip to a second position and maintaining the second position, locking the drain pipe in a fully drained state. By locking the fully drained state, the drain pipe remains connected, eliminating the obstruction to dredging caused by pipe bends and pipe opening orientation in the smart toilet containing the flipping drain unit, thus providing support for toilet dredging.
[0024] In response to a dredging command, when the drain pipe is flipped to a second position and maintained in the second position, it is equivalent to forcibly releasing the water seal protection mechanism, providing control logic for toilet dredging. In this embodiment, the dredging command can be input through a pre-set button or generated by combining existing buttons on the smart toilet. For example, the command can be generated by repeatedly pressing the button to input the flushing command, and the interval between repeated presses is less than the preset time interval.
[0025] This embodiment of the invention controls the drain pipe to flip to and maintain a second position, including: a drive device controlling a motor and transmission mechanism to operate according to a dredging command, causing the drain pipe to flip to the second position. At this time, the internal pipes of the toilet, the shifter assembly, and the household drain pipe form a smooth, straight channel. After the drain pipe maintains the second position, this embodiment of the invention can prompt the user to perform dredging; this includes prompting the user to perform dredging through one or any combination of the following preset methods: preset audio, preset warning light, and preset display pattern. This embodiment of the invention can add corresponding prompting components to the smart toilet according to different prompting methods. For example, when prompting via audio, a player connected to the control unit is added to the smart toilet, and after the drain pipe maintains the second position, the player plays a preset prompt sound. When using lights to provide a prompt, an LED light connected to the control unit is added to the smart toilet. After the drain pipe maintains its second position, the LED light is controlled to display a preset color to achieve the prompting effect. Alternatively, a translucent panel with an image indicating unclogging can be covered over the LED light; when the LED light is on, the image indicating unclogging is highlighted under the light. This embodiment of the disclosure can be configured with different indication methods depending on the type of smart toilet and the application scenario.
[0026] In one exemplary instance, after the step of controlling the drain pipe to flip to and maintain the second position, embodiments of this disclosure further include: In response to the unlock and reset command, the drain pipe is controlled to rotate to the first position to replenish the water seal.
[0027] The unlocking and reset command in this embodiment may include a restart command for the smart toilet or other predetermined commands to perform the unlocking operation; the unlocking and reset command ends the locking of the drain pipe in the fully drained state, and after the unblocking is completed, the drain pipe is controlled to rotate to the first position to replenish the water seal, thereby restoring the normal function of the smart toilet.
[0028] In one exemplary instance, maintaining the second posture according to this disclosure embodiment includes: When any command to reset the drain pipe is received, other than the unlock reset command, the drain pipe is maintained in the second position; among them, the commands to reset the drain pipe include: flushing command and drain pipe reset command.
[0029] This embodiment of the present disclosure stipulates that when any command other than the unlocking and reset command is received to reset the drain pipe, the drain pipe is maintained in the second position. This clarifies the triggering condition for the drain pipe reset, avoids tool damage or operational risks caused by accidental reset of the drain pipe during the unblocking process, and improves the user experience of the smart toilet.
[0030] Example 2: S21, determine the current operating mode of the smart toilet, wherein the operating mode includes a first control mode and a second control mode; S22, when it is determined that the smart toilet is in the first control mode, in response to the flushing command, the drain pipe is controlled to flip from the first position to the second position, and after the sewage discharge is completed, it flips from the second position back to the first position. S23, when it is determined that the smart toilet is in the second control mode, in response to the unblocking command, the drain pipe is controlled to flip to the second position and maintain the second position.
[0031] This disclosed embodiment of the smart toilet distinguishes different control modes. In the first control mode, it responds to the flushing command and performs normal sewage discharge. The sewage pipe switches and returns between a first posture and a second posture based on the flushing command. In the second mode, the control unit responds to the unblocking command, controls the sewage pipe to flip to the second posture and maintains the second posture, locking the sewage pipe in a fully discharged state. By locking the fully discharged state, the sewage pipe is kept in a connected state, eliminating the obstruction to unblocking caused by pipe bends and pipe opening orientation in the smart toilet including the flipping sewage discharge unit, and providing technical support for toilet unblocking.
[0032] In this embodiment, different control modes can be switched using a preset switching button. After the mode switch is completed, the dredging command can be input based on the input flushing command button. The dredging command can also be input using the button in Embodiment 1.
[0033] In one exemplary instance, embodiments of this disclosure further include: When the smart toilet processes the second control mode, in response to the unlock and reset command, it controls the drain pipe to rotate to the first position to replenish the water seal, and switches the control mode from the second control mode back to the first control mode; or, When the smart toilet is in the second control mode, in response to the unlock and reset command, the control mode is switched from the second control mode to the first control mode. In the first control mode, after the sewage pipe finishes discharging, it flips from the second position to the first position and performs water seal replenishment.
[0034] In this embodiment of the present disclosure, the unlocking and reset command is received in the second control mode. The drain pipe is rotated to the first position to perform water seal replenishment, and the control mode is switched from the second control mode to the first control mode. Alternatively, the control mode is switched from the second control mode to the first control mode so that after the drain pipe completes the sewage discharge in the first control mode, it flips from the second position to the first position and performs water seal replenishment, thereby restoring the normal function of the smart toilet after the toilet is unblocked.
[0035] In one exemplary instance, the present disclosure embodiment refers to embodiment 1 for the process of maintaining the second posture.
[0036] Figure 2 This is a structural block diagram of a dredging and treatment device according to an embodiment of the present disclosure, applied to a smart toilet. The smart toilet includes a toilet body and a tilting and draining unit. The toilet body has a drain channel, and the tilting and draining unit has a drain pipe rotatably connected to and operable to rotate on the drain channel. The drain pipe has a first position with the drain outlet facing upward to form a water seal on the toilet body and a second position with the drain outlet facing downward to discharge waste. Figure 2 As shown, it includes: The instruction type determination unit is configured to determine the type of instruction received that controls the posture of the reverse sewage discharge unit; The sewage treatment unit is configured to control the sewage pipe to flip to a second posture and maintain the second posture when the received instruction type for controlling the posture of the sewage treatment unit is a dredging instruction.
[0037] This embodiment of the present disclosure determines the type of instruction received to control the posture of the rotating sewage discharge unit. When the type of instruction received is a dredging instruction, the sewage pipe is controlled to rotate to a second posture and maintained in the second posture, locking the sewage pipe in a fully discharged state. By locking the fully discharged state, the sewage pipe is kept in a connected state, eliminating the obstruction to dredging caused by pipe bends and pipe opening orientation in the smart toilet containing the rotating sewage discharge unit, and providing technical support for toilet dredging.
[0038] In one exemplary instance, the wastewater treatment unit of this disclosure embodiment is further configured as follows: When the received instruction type for controlling the orientation of the sewage discharge unit is a flushing instruction, the sewage discharge pipe is controlled to flip from the first orientation to the second orientation, and after the sewage discharge is completed, it is flipped from the second orientation back to the first orientation.
[0039] When the smart toilet in this embodiment receives a flushing command, it performs the conventional sewage discharge process of the smart toilet in accordance with relevant technologies.
[0040] In one exemplary embodiment, this disclosure further includes a reset processing unit configured as follows: When the received instruction type for controlling the tilting and reversing of the sewage discharge unit is an unlock / reset instruction, in response to the unlock / reset instruction, the sewage discharge pipe is controlled to rotate to the first position to replenish the water seal.
[0041] The unlocking and reset command in this embodiment may include a restart command for the smart toilet or other predetermined commands to perform the unlocking operation; the unlocking and reset command ends the locking of the drain pipe in the fully drained state, and after the unblocking is completed, the drain pipe is controlled to rotate to the first position to replenish the water seal, thereby restoring the normal function of the smart toilet.
[0042] In one exemplary instance, the sewage treatment unit of this disclosure embodiment is configured to control the sewage pipe to flip to a second posture and maintain the second posture, including: After the drain pipe is flipped to the second position, when any command other than the unlock reset command is received to reset the drain pipe, the drain pipe is kept in the second position. The instructions for resetting the sewage pipe include: flushing instructions and sewage pipe reset instructions.
[0043] This embodiment of the present disclosure stipulates that when any command other than the unlocking and reset command is received to reset the drain pipe, the drain pipe is maintained in the second position. This clarifies the triggering condition for the drain pipe reset, avoids tool damage or operational risks caused by accidental reset of the drain pipe during the unblocking process, and improves the user experience of the smart toilet.
[0044] Figure 3 This is a flowchart illustrating the unblocking method according to an embodiment of the present disclosure, as shown below. Figure 3 As shown, it includes: Step 301: The control unit forcibly releases the water seal protection mechanism according to the unblocking command; Step 302: Control the sewage pipe motor to start according to the unblocking command, and flip it from the first position to the second position and maintain the second position; at this time, the sewage pipe is locked in the second position, that is, locked in the sewage discharge state; Step 303: Prompt the user to perform unblocking procedures; Step 304: Upon receiving the unlock and reset command, in response to the unlock and reset command, start the drain pipe motor to rotate the drain pipe to the first position for water seal replenishment.
[0045] This embodiment of the disclosure can restore the smart toilet to normal working mode by default when an unlock and reset command is received, including performing normal sewage discharge based on the sewage discharge command.
[0046] This disclosure also provides an electronic device, which includes: At least one processor; and A memory that is communicatively connected to at least one processor; wherein, The memory stores a computer program that can be executed by at least one processor, such that the at least one processor can perform the above-described unblocking method.
[0047] The electronic device in this embodiment can be an upgrade to the control unit of a smart toilet, a replacement of the control unit of a smart toilet, or an electrical connection to an existing control unit. The electronic device establishes a communication connection with the following components of the smart toilet via the control unit or directly: a flow meter, a switching valve, a brush ring inlet nozzle, and a tilting drain unit. The electronic device determines whether a draining command has been received. If a draining command is received, the electronic device controls the drain pipe to tilt to a second position and maintains this position so that the user can perform the unclogging process. After controlling the drain pipe to tilt to the second position, if the electronic device receives any command other than an unlock / reset command to reset the drain pipe, it maintains the drain pipe in the second position to avoid tool damage or operational risks caused by accidental reset of the drain pipe during unclogging, thus improving the user experience of the smart toilet. When an unlock / reset command is received, the locking of the drain pipe in the fully drained state is lifted, and the drain pipe is controlled to rotate to the first position to replenish the water seal, restoring the normal function of the smart toilet and further improving the user experience.
[0048] It will be understood by those skilled in the art that all or some of the steps, systems, or apparatuses disclosed above, and their functional modules / units, can be implemented as software, firmware, hardware, or suitable combinations thereof. In hardware implementations, the division between functional modules / units mentioned above does not necessarily correspond to the division of physical components; for example, a physical component may have multiple functions, or a function or step may be performed collaboratively by several physical components. Some or all components may be implemented as software executed by a processor, such as a digital signal processor or microprocessor, or as hardware, or as an integrated circuit, such as an application-specific integrated circuit (ASIC). Such software may be distributed on a computer-readable medium, which may include computer storage media (or non-transitory media) and communication media (or transient media). As is known to those skilled in the art, the term "computer storage medium" includes volatile and non-volatile, removable and non-removable media implemented in any method or technology for storing information (such as computer-readable instructions, data structures, program modules, or other data). Computer storage media include, but are not limited to, RAM, ROM, EEPROM, flash memory or other memory technologies, CD-ROM, digital versatile disc (DVD) or other optical disc storage, magnetic cartridges, magnetic tape, disk storage or other magnetic storage devices, or any other medium that can be used to store desired information and can be accessed by a computer. Furthermore, it is well known to those skilled in the art that communication media typically contain computer-readable instructions, data structures, program modules, or other data in modulated data signals such as carrier waves or other transmission mechanisms, and may include any information delivery medium.
Claims
1. A smart toilet, characterized in that, include: The toilet body has a sewage discharge channel; The flip-out sewage unit has a sewage pipe rotatably connected to the sewage channel and operable to rotate, the sewage pipe having a first position with the sewage outlet facing upward to form a water seal on the toilet body and a second position with the sewage outlet facing downward to discharge sewage. The control unit is electrically connected to the tilting sewage discharge unit; the control unit is configured as follows: In response to a flushing command, the drain pipe is controlled to flip from the first position to the second position, and after the flushing is completed, it flips from the second position back to the first position. In response to the unblocking command, the drain pipe is controlled to flip to the second position and maintain the second position.
2. The smart toilet according to claim 1, characterized in that, The control unit is configured to: after the step of controlling the sewage pipe to flip to the second posture and maintain the second posture, the control unit is further configured to: In response to the unlock and reset command, the drain pipe is controlled to rotate to the first position to perform water seal replenishment.
3. The smart toilet according to claim 2, characterized in that, Maintaining the second posture includes: When any command other than the unlock reset command is received to reset the drain pipe, the drain pipe shall be maintained in the second position. The instructions for resetting the sewage pipe include: a flushing instruction and a sewage pipe reset instruction.
4. A smart toilet, characterized in that, include: The toilet body has a sewage discharge channel; The flip-out sewage unit has a sewage pipe rotatably connected to the sewage channel and operable to rotate, the sewage pipe having a first position with the sewage outlet facing upward to form a water seal on the toilet body and a second position with the sewage outlet facing downward to discharge sewage. The control unit is electrically connected to the tilting sewage discharge unit; The control unit has a first control mode and a second control mode; The first control mode includes: in response to a flushing command, controlling the drain pipe to flip from the first position to the second position, and flipping from the second position back to the first position after the sewage discharge is completed; The second control mode includes: in response to a dredging command, controlling the drain pipe to flip to the second posture and maintaining the second posture.
5. The smart toilet according to claim 3, characterized in that, The control unit is also configured to: In the second control mode, in response to the unlock and reset command, the sewage pipe is controlled to rotate to the first posture to perform water seal replenishment, and the control mode is switched from the second control mode to the first control mode. or, In the second control mode, in response to the unlock and reset command, the control mode is switched from the second control mode to the first control mode, so that after the sewage pipe completes the sewage discharge in the first control mode, it flips from the second posture to the first posture and performs water seal replenishment.
6. The smart toilet according to claim 4 or 5, characterized in that, Maintaining the second posture includes: When any command other than the unlock reset command is received to reset the drain pipe, the drain pipe shall be maintained in the second position. The instructions for resetting the sewage pipe include: a flushing instruction and a sewage pipe reset instruction.
7. A method for unclogging a smart toilet, the smart toilet comprising a toilet body and a tilting and flushing unit, the toilet body having a flushing channel, the tilting and flushing unit having a flushing pipe rotatably connected to and operablely rotating on the flushing channel, the flushing pipe having a first position with the flushing outlet facing upward to form a water seal on the toilet body and a second position with the flushing outlet facing downward to discharge waste, characterized in that... include: Determine the type of instruction received to control the tilting and tilting posture of the sewage discharge unit; When the received instruction type for controlling the tilting of the sewage discharge unit is a dredging instruction, the sewage discharge pipe is tilted to the second posture and maintained in the second posture.
8. The dredging control method according to claim 7, characterized in that, The unblocking method also includes: When the received instruction type for controlling the tilting of the sewage discharge unit is a flushing instruction, the sewage discharge pipe is controlled to tilt from the first posture to the second posture, and after the sewage discharge is completed, it is tilted from the second posture back to the first posture.
9. The dredging control method according to claim 7 or 8, characterized in that, The unblocking method also includes: When the received instruction type for controlling the tilting and reversing of the sewage discharge unit is an unlocking and resetting instruction, in response to the unlocking and resetting instruction, the sewage discharge pipe is controlled to rotate to the first posture to perform water seal replenishment.
10. The dredging control method according to claim 9, characterized in that, The control of the sewage pipe to flip to the second position and maintain the second position includes: After the control drain pipe is flipped to the second position, when any command other than the unlock reset command is received to reset the drain pipe, the drain pipe shall be maintained in the second position. The instructions for resetting the sewage pipe include: a flushing instruction and a sewage pipe reset instruction.
11. An electronic device, characterized in that, The electronic device includes: At least one processor; and A memory communicatively connected to the at least one processor; wherein, The memory stores a computer program that can be executed by the at least one processor, the computer program being executed by the at least one processor to enable the at least one processor to perform the unblocking method according to any one of claims 7-10.