Intelligent toilet sensing detection device, method, system and sensing device
By incorporating a combination of signal receiving, control, and display modules into the smart toilet, rapid and accurate detection of the sensing device is achieved, solving the problem of inaccurate detection in existing technologies and improving maintenance efficiency and user satisfaction.
Patent Information
- Application Number
- CN202211354015.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-11-01
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2042-11-01
AI Technical Summary
The detection of smart toilet sensors in existing technologies is not accurate enough, and maintenance personnel are prone to misjudging the quality of the sensors, resulting in inaccurate test results.
Design an intelligent toilet sensor detection device, including a signal receiving module, a first control module, and a display module. The signal receiving module receives the working signal of the sensor, the first control module processes and determines the working status of the sensor, and the display module displays the results in different display modes to achieve fast and accurate detection.
This device allows maintenance personnel to quickly and accurately understand the working status of the sensing device, improving maintenance efficiency and enhancing user satisfaction.
Smart Images

Figure CN115680079B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of intelligent toilet, and particularly to an intelligent toilet sensing detection device, method, system and sensing device. BACKGROUND
[0002] With the development of science and technology and the continuous improvement of people's living standards, intelligent toilets also appear in people's lives, and the sensing mode of intelligent toilets brings great convenience to people's lives. However, as the functions of intelligent toilets become more and more, the frequency of failure of intelligent toilet sensing devices also gradually increases, and the failure of the sensing device of the intelligent toilet needs to be detected and repaired.
[0003] The existing way to determine the good or bad of the sensing device in the intelligent toilet is to manually test the function of the sensing device. In many cases, the poor sensing is not the internal damage of the sensing device, but is caused by the poor state of the control board or wiring. However, the maintenance personnel may misjudge the good or bad of the sensing device, resulting in inaccurate detection results. SUMMARY
[0004] The main purpose of the present application is to provide an intelligent toilet sensing detection device, method, system and sensing device, which aims to solve the technical problem of inaccurate detection of the sensing device of the intelligent toilet in the prior art.
[0005] To achieve the above purpose, the present application provides an intelligent toilet sensing detection device, which comprises:
[0006] The signal receiving module, the first control module and the display module are connected in sequence, and the signal receiving module corresponds to the signal output end of the sensing device in the intelligent toilet;
[0007] The sensing device is used to detect the position signal of the user in the sensing area when connected with the signal receiving module, and send the working signal corresponding to the position signal to the signal receiving module;
[0008] The signal receiving module is used to receive the working signal sent by the signal output end and transmit the working signal to the first control module;
[0009] The first control module is used to process the working signal, determine the working state of the sensing device, and transmit the working state to the display module;
[0010] The display module is used to receive the working state and display the working state in different display modes to complete the detection of the sensing of the intelligent toilet.
[0011] Optionally, the intelligent closestool sensing detection device further comprises a power supply module, which is connected with the first control module.
[0012] The power supply module is used for supplying power to the first control module.
[0013] Optionally, the signal receiving module is connected with the signal output end of the intelligent closestool sensing device through a communication line, and the communication line comprises a power supply line and a signal line.
[0014] The signal output end of the intelligent closestool sensing device sends a working signal to the signal receiving module through the signal line.
[0015] The first control module is further used for supplying power to the intelligent closestool sensing device through the power supply line.
[0016] In addition, in order to achieve the above-mentioned purpose, the application further provides an intelligent closestool sensing detection device, which comprises an inductive component, a second control module and a signal output end connected in sequence.
[0017] The inductive component is used for sensing and detecting a position signal of a user in an inductive area and sending the position signal to the second control module.
[0018] The second control module is used for analyzing the position signal, obtaining a working signal corresponding to the position signal, and transmitting the working signal to the signal output end.
[0019] The signal output end is used for sending the working signal to the signal receiving module.
[0020] In addition, in order to achieve the above-mentioned purpose, the application provides an intelligent closestool sensing detection method, which is applied to the intelligent closestool sensing detection device described above, and the method comprises the following steps.
[0021] The signal receiving module receives a working signal sent by the signal output end and transmits the working signal to the first control module.
[0022] The first control module processes the working signal, determines various working states of the sensing device, and transmits the various working states to the display module.
[0023] The display module receives the various working states and displays the various working states in different display modes, so as to complete the detection of the intelligent closestool sensing.
[0024] Optionally, the first control module processes the working signal, determines respective working states of the inductive device, and transmits the respective working states to the display module, including:
[0025] The first control module processes the working signal, and determines a signal strength of the working signal;
[0026] According to the signal strength of the working signal, respective working states of the inductive device are determined;
[0027] When the signal strength is a first signal strength, it is determined that the working state of the inductive device is a normal working state;
[0028] When the signal strength is a second signal strength, it is determined that the working state of the inductive device is an abnormal working state, wherein the first signal strength is greater than the second signal strength;
[0029] The normal working state or the abnormal working state is transmitted to the display module.
[0030] Optionally, the first control module processes the working signal, determines respective working states of the inductive device, and transmits the respective working states to the display module, including:
[0031] The first control module processes the working signal, and determines a signal frequency of the working signal;
[0032] When the signal frequency is inconsistent with a preset signal frequency, it is determined that the working signal is a frequency abnormal signal;
[0033] Based on the frequency abnormal signal, it is determined that the working state of the inductive device is an interference working state, and the interference working state is transmitted to the display module.
[0034] Optionally, the display module receives the respective working states, and displays the respective working states in different display modes, including:
[0035] The display module receives the respective working states, and determines display modes of the respective working states, wherein the display modes include a preset character display and a preset color display;
[0036] Based on the display modes, the respective working states are displayed through a preset communication protocol;
[0037] When the display mode is the preset character display, the respective working states are displayed in different preset characters through the preset communication protocol;
[0038] When the display mode is preset color display, the various working states are displayed by different preset colors through the preset communication protocol.
[0039] Optionally, when the display mode is preset character display, the various working states are displayed by different preset characters through the preset communication protocol, including:
[0040] When the working state is a normal working state, a first preset character is displayed through the preset communication protocol.
[0041] When the working state is an abnormal working state, a second preset character is displayed through the preset communication protocol.
[0042] When the working state is an interference working state, a third preset character is displayed through the preset communication protocol, wherein the first preset character, the second preset character, and the third preset character are different.
[0043] In addition, to achieve the above object, the application further provides a smart toilet sensing detection system, which comprises the smart toilet sensing detection device and a sensing device, and the smart toilet sensing detection device and the sensing device perform data communication.
[0044] The application sets the signal receiving module, the first control module, and the display module connected in sequence in the smart toilet sensing detection device, the signal receiving module corresponds to the signal output end of the sensing device in the smart toilet; the sensing device is used for detecting the position signal of the user in the sensing area when connected with the signal receiving module, and sending the working signal corresponding to the position signal to the signal receiving module; the signal receiving module is used for receiving the working signal sent by the signal output end and transmitting the working signal to the first control module; the first control module is used for processing the working signal, determining the various working states of the sensing device, and transmitting the various working states to the display module; and the display module is used for receiving the various working states and displaying the various working states by different display modes, so as to complete the sensing detection of the smart toilet, detect the sensing device in the smart toilet simply and quickly through the sensing detection device, and quickly and accurately understand the good or bad of the sensing device through the display of the various working states of the sensing device by the display module, thereby improving the work efficiency of the maintenance personnel and the user satisfaction. BRIEF DESCRIPTION OF DRAWINGS
[0045] Figure 1 is a structural schematic view of the first embodiment of the smart toilet sensing detection device of the application;
[0046] Figure 2It is a structure schematic view of the second embodiment of the intelligent toilet sensing detection device of the present application.
[0047] Figure 3 It is a structure schematic view of the first embodiment of the sensing device of the present application.
[0048] Figure 4 It is a flow schematic view of the first embodiment of the intelligent toilet sensing detection method of the present application.
[0049] Figure 5 It is a flow schematic view of the second embodiment of the intelligent toilet sensing detection method of the present application.
[0050] Figure 6 It is a flow schematic view of the third embodiment of the intelligent toilet sensing detection method of the present application.
[0051] Figure 7 It is a flow schematic view of the fourth embodiment of the intelligent toilet sensing detection method of the present application.
[0052] Explanation of the reference signs:
[0053] Reference Name Reference Name 1 Intelligent toilet sensing detection device Signal Signal line 10 Signal receiving module GND Ground wire 101 Connector 2 Sensing device 11 First control module 20 Signal output end 12 Display module 21 Second control module 13 Power supply module 22 Sensing assembly VCC Power supply line
[0054] The implementation, functional features and advantages of the present application will be further explained with reference to the embodiments and the accompanying drawings. DETAILED DESCRIPTION
[0055] It should be understood that the specific embodiments described herein are merely intended to explain the present application and not to limit the present application.
[0056] Reference Figure 1 , Figure 1 It is a structure schematic view of the first embodiment of the intelligent toilet sensing detection device of the present application.
[0057] As shown in Figure 1 , the intelligent toilet sensing detection device 1 comprises a signal receiving module 10, a first control module 11 and a display module 12 connected in sequence, the signal receiving module 10 corresponds to the signal output end 20 of the sensing device 2 in the intelligent toilet.
[0058] It should be noted that the signal receiving module 10 can receive signals and transmit the received signals to the first control module 11 connected thereto. After receiving the signals transmitted by the signal receiving module 10, the first control module 11 processes the signals, so that the working state of the device or equipment corresponding to the sending signal can be determined according to the signals. The signals can be working signals, sensing signals, position signals, etc. of the device or equipment, which are not limited in the embodiment, and the working signals are taken as an example for description. The device or equipment can be a sensing device or a processing device in a smart toilet, which is not limited in the embodiment, and the sensing device in the smart toilet is taken as an example for description.
[0059] In specific implementation, the signal receiving module 10 corresponds to the signal output end 20 of the sensing device 2 in the smart toilet. The signal output end 20 in the sensing device 2 can output working signals, sensing signals, etc. The signal output end 20 outputs working signals as an example for description in the embodiment. The signal output end 20 in the sensing device 2 is used to output working signals when the sensing device 2 is working. The signal receiving module 10 corresponds to the signal output end 20, and the signal receiving module 10 can receive the working signals sent by the signal output end 20. The signal receiving module 10 and the signal output end 20 can be connected by wire or wirelessly, which is not limited in the embodiment. When the signal receiving module 10 and the signal output end 20 are connected by wire, the signal receiving module 10 can be a connector or other wired connection device, which is connected to the signal output end 20 through the connector, which is not limited in the embodiment.
[0060] When the connection mode between the signal receiving module 10 and the signal output end 20 is wireless connection, the signal interaction between the signal receiving module 10 and the signal output end 20 can be realized through wireless communication technology. The signal receiving module 10 can receive the working signals sent by the signal output end 20 through wireless communication technology. When the connection mode between the signal receiving module 10 and the signal output end 20 is wired connection, the signal receiving module 10 can receive the working signals sent by the signal output end 20 through the connector connected to the signal output end 20.
[0061] In specific implementation, the working signals sent by the signal output end 20 are working signals corresponding to the position signals detected by the sensing device 2. The position signals refer to the signals generated when the user touches or approaches different positions of the smart toilet.
[0062] In specific implementation, the sensing device 2 is used to detect the position signals of the user in the sensing area when connected to the signal receiving module 10, and send the working signals corresponding to the position signals to the signal receiving module 10.
[0063] In the embodiment, the inductive device 2 can be arranged on the inner side of the ceramic of the intelligent toilet, and is connected with the main control board arranged in the toilet cover of the intelligent toilet through a wire harness inside the intelligent toilet for communication and power supply. When the inductive device 2 is not connected with the signal receiving module 10, the inductive device is connected with the main control board arranged in the toilet cover, and the inductive device 2 senses the corresponding signal and transmits the signal to the main control board. The main control board controls the intelligent toilet according to the signal, and the main control board sends corresponding instructions to perform the actions of turning the cover, turning the circle, or flushing water.
[0064] It should be understood that the inductive device 2 can detect the position signal of the user in the sensing area when the signal receiving module 10 is connected with the signal output end 20 through the connecting head. The sensing area can be a specified area on the ceramic of the intelligent toilet, for example, the lower left corner or the lower right corner of the intelligent toilet, and the embodiment is not limited thereto. When the user stands in front of or beside the intelligent toilet, the specified sensing area of the ceramic wall at the bottom of the intelligent toilet is triggered, so that the inductive device 2 arranged on the inner side of the ceramic wall of the intelligent toilet is triggered. The inductive device 2 detects the position signal of the user in the sensing area, detects the external capacitance change, determines the working signal corresponding to the position signal, and sends the working signal to the signal receiving module 10 through the signal output end 20.
[0065] Further, in addition to detecting the position signal of the user in the sensing area, the inductive device 2 can also receive the control signal of the user, generate a working signal through the control signal, for example, the user controls the inductive device 2 to turn the cover through the controller. After the inductive device 2 receives the control signal for turning the cover, the inductive device 2 can generate a working signal corresponding to turning the cover, and send the working signal for turning the cover to the signal receiving module 10 for sensing detection of the intelligent toilet.
[0066] In the embodiment, the signal receiving module 10 is used for receiving the working signal sent by the signal output end 20 and transmitting the working signal to the first control module 11. The first control module 11 is used for processing the working signal, determining the working state of the inductive device 2, and transmitting the working state to the display module 12. The display module 12 is used for receiving the working state and displaying the working state in different display modes to complete the sensing detection of the intelligent toilet.
[0067] It can be understood that the signal receiving module 10 is connected to the signal output end 20 through the connecting head, receives the working signal sent by the signal output end 20, and transmits the received working signal to the first control module 11. When the first control module 11 receives the working signal, the first control module 11 analyzes and processes the working signal, so as to determine the working state of the sensing device 2. The first control module 11 can be a single-chip microcomputer, which analyzes and processes the working signal through the single-chip microcomputer to obtain the working state of the sensing device 2.
[0068] It should be noted that the working state of the sensing device 2 can be a normal working state, an abnormal working state or an interference working state, and the present embodiment does not limit the same. The interference working state is the working state corresponding to the signal that the sensing device 2 senses the external trigger signal frequency disorder. After the first control module 11 obtains the working state of the sensing device 2, the working state is transmitted to the display module 12, and the display module 12 can display the working state in different display modes, so that the maintenance personnel can quickly and accurately understand the working state of the sensing device 2, and thus targeted maintenance processing can be performed. Different display modes can be preset color display, preset display character display, preset sound playing and the like, and can also include other display modes, which are not limited by the present embodiment.
[0069] The present embodiment provides an intelligent toilet sensing detection device 1, which comprises a signal receiving module 10, a first control module 11 and a display module 12 connected in sequence, the signal receiving module 10 corresponds to a signal output end 20 of a sensing device 2 in the intelligent toilet; the sensing device 2 is used for detecting a position signal of a user in a sensing area when connected to the signal receiving module 10, and sending a working signal corresponding to the position signal to the signal receiving module 10; the signal receiving module 10 is used for receiving the working signal sent by the signal output end 20, and transmitting the working signal to the first control module 11; the first control module 11 is used for processing the working signal, determining the working state of the sensing device 2, and transmitting the working state to the display module 12; the display module 12 is used for receiving the working state and displaying the working state in different display modes, so as to complete the detection of the intelligent toilet sensing. The intelligent toilet sensing detection device 1 can quickly and simply detect the sensing device 2 in the intelligent toilet, and the display module 12 can display the working state of the sensing device 2, so that the working state of the sensing device 2 can be quickly and accurately understood, the working efficiency of the maintenance personnel is improved, and the user satisfaction is improved.
[0070] Reference Figure 2 , Figure 2It is a structural schematic view of the second embodiment of the intelligent toilet sensing detection device.
[0071] Based on the first embodiment, the second embodiment of the intelligent toilet sensing detection device is provided, in which the intelligent toilet sensing detection device 1 further comprises a power supply module 13 connected with the first control module 11; the power supply module 13 is used for supplying power to the first control module 11.
[0072] In the embodiment, the power supply module 13 can provide a power supply, and the first control module 11 is powered by the power supply. The power supply can be an external power supply or an internal power supply. The external power supply can be a power bank or a power supply for the main control board inside the toilet cover of the intelligent toilet. The internal power supply can be a built-in storage battery, etc. The embodiment is not limited in this regard.
[0073] In the embodiment, the signal receiving module 10 and the signal output end 20 of the sensing device 2 in the intelligent toilet are connected through a communication line, which comprises a power supply line VCC and a signal line Signal; the signal output end 20 of the sensing device 2 in the intelligent toilet sends a working signal to the signal receiving module 10 through the signal line Signal; the first control module 11 is also used for supplying power to the sensing device 2 in the intelligent toilet through the power supply line VCC.
[0074] It should be understood that the signal receiving module 10 and the signal output end 20 of the sensing device 2 in the intelligent toilet are connected through a communication line, the signal receiving module 10 comprises a connector 101, the first end of the communication line is connected through the connector 101, and the second end of the communication line is connected with the signal output end 20 in the sensing device 2. The communication line comprises a power supply line VCC and a signal line Signal, one end of the power supply line VCC is connected with the first control module 11 through the connector 101, and the other end of the power supply line VCC is connected with the signal output end 20. The first end of the signal line Signal is connected with the signal output end 20, and the other end of the signal line Signal is connected with the connector 101, and the working signal is transmitted to the first control module 11 through the connector 101. The communication line further comprises a ground wire GND, and the communication mode between the signal line Signal and the signal output end 20 and the connector 101 comprises single-wire communication or serial communication, etc. The embodiment is not limited in this regard.
[0075] The embodiment is characterized in that the power supply module 13 is further arranged in the intelligent toilet sensing detection device 1, the power supply module 13 is connected with the first control module 11, and the power supply module 13 is used for supplying power to the first control module 11. The power supply module 13 supplies power to the first control module 11, so that the first control module 11 can quickly process the received working signal, the working state of the sensing device 2 can be quickly and simply determined, and the maintenance personnel can quickly determine the fault condition of the intelligent toilet.
[0076] Referring to Figure 3 , Figure 3 FIG. 1 is a structural schematic diagram of a sensing device according to a first embodiment of the present application.
[0077] As Figure 3 shown, based on the first and second embodiments of the intelligent toilet sensing detection device, the sensing device 2 according to the embodiment of the present application comprises, in sequence, a sensing assembly 22, a second control module 21 and a signal output end 20. The sensing assembly 22 is used for sensing and detecting a position signal of a user in a sensing area and sending the position signal to the second control module 21. The second control module 21 is used for analyzing the position signal to obtain a working signal corresponding to the position signal and transmitting the working signal to the signal output end 20. The signal output end 20 is used for sending the working signal to the signal receiving module 10.
[0078] It should be noted that the sensing assembly 22 can be mounted on the inner side of the intelligent toilet ceramic and closely attached to the inner side of the intelligent toilet ceramic. The sensing assembly 22 can be an induction sensor, including a pressure sensor or a distance sensor. The induction sensor is used for sensing and detecting a position signal of a user in a sensing area. When the user approaches the area where the sensing assembly 22 is mounted on the intelligent toilet, for example, by touching or approaching the area with his foot, the sensing assembly 22 senses the change amount of the external capacitance through the ceramic medium, thereby generating a change in the electric level to obtain a corresponding position signal and sending the position signal to the second control module 21. The second control module 21 analyzes the position signal to obtain a working signal corresponding to the position signal. The working signal includes a cover turning, a circle turning or a flushing working signal.
[0079] It should be understood that the sensing device 2 can receive a control signal of a user in addition to detecting a position signal of a user in a sensing area. The control signal is used for generating a working signal. For example, the user controls the sensing device 2 to turn the cover through a controller. After the sensing device 2 receives the control signal for turning the cover, the sensing device 2 can generate a corresponding working signal for turning the cover and send the working signal for turning the cover to the signal receiving module 10, so as to detect the intelligent toilet.
[0080] In a specific implementation, the second control module 21 can be a single-chip microcomputer. The single-chip microcomputer analyzes the position signal, obtains a corresponding working signal of the sensing device 2, and transmits the working signal to the signal output end 20. The signal output end 20 sends the working signal to the first control module 11 in the intelligent toilet sensing detection device through the signal line Signal and the connecting head 101 in sequence, so that the first control module 11 analyzes the working signal and obtains the working state of the sensing device 2. The signal output end 20 also connects the first control module 11 and the second control module 21 through the power supply line VCC in the communication line, and supplies power to the second control module 21 through the power supply line VCC. The sensing device 2 and the intelligent toilet sensing detection device 1 communicate with each other, so that the intelligent toilet sensing detection device 1 receives the working signal sent by the sensing device 2, analyzes the working signal, quickly determines the working state of the sensing device 2, and facilitates maintenance personnel to perform maintenance processing.
[0081] In the embodiment, the sensing device comprises a sensing assembly 22, a second control module 21 and a signal output end 20 connected in sequence. The sensing assembly 22 is configured to sense a position signal of a user in a sensing area and transmit the position signal to the second control module 21. The second control module 21 is configured to analyze the position signal and obtain a corresponding working signal of the position signal, and transmit the working signal to the signal output end 20. The signal output end 20 is configured to transmit the working signal to the signal receiving module 10. The sensing assembly 22 senses the position signal of the user in the corresponding sensing area, transmits the position signal to the second control module 21, and the second control module 21 analyzes the position signal, so that the working signal of the sensing device 2 at this time can be determined, and the working signal is transmitted to the intelligent toilet sensing detection device 1 through the signal output end 20, so that the intelligent toilet sensing detection device 1 quickly and accurately determines the working state of the current sensing device 2, improves the speed of maintenance detection, improves the work efficiency of maintenance personnel, and improves the user satisfaction.
[0082] In addition, to achieve the above object, the embodiment of the present application provides an intelligent toilet sensing detection method, which refers to Figure 4 , Figure 4 The flowchart of the first embodiment of the intelligent toilet sensing detection method of the present application is shown.
[0083] In the embodiment, the intelligent toilet sensing detection method comprises the following steps:
[0084] Step S10: The signal receiving module 10 receives the working signal transmitted by the signal output end 20, and transmits the working signal to the first control module 11.
[0085] It should be noted that the signal receiving module 10 can receive a signal and transmit the received signal to the first control module 11 connected thereto. After receiving the signal transmitted by the signal receiving module 10, the first control module 11 processes the signal, so that the working state of the device or equipment corresponding to the signal can be determined according to the signal. The signal can be a working signal, a sensing signal, a position signal, etc. of the device or equipment, which is not limited in the embodiment, and the working signal is taken as an example for description. The device or equipment can be a sensing device, a processing device, etc. in the intelligent toilet, which is not limited in the embodiment, and the sensing device 2 in the intelligent toilet is taken as an example for description.
[0086] In a specific implementation, the signal receiving module 10 corresponds to the signal output end 20 of the sensing device 2 in the intelligent toilet. The signal output end 20 in the sensing device 2 can output a working signal, a sensing signal, etc. The signal output end 20 in the sensing device 2 is used to output a working signal when the sensing device 2 is working. The signal receiving module 10 corresponds to the signal output end 20, and the signal receiving module 10 can receive the working signal sent by the signal output end 20. The signal receiving module 10 and the signal output end 20 can be connected by a wired connection or a wireless connection, which is not limited in the embodiment. When the signal receiving module 10 and the signal output end 20 are connected by a wired connection, the signal receiving module 10 can be a connector or other wired connection device, which is connected to the signal output end 20 through the connector, which is not limited in the embodiment.
[0087] When the connection mode between the signal receiving module 10 and the signal output end 20 is a wireless connection, the signal receiving module 10 and the signal output end 20 can realize signal interaction through wireless communication technology. The signal receiving module 10 can receive the working signal sent by the signal output end 20 through wireless communication technology. When the connection mode between the signal receiving module 10 and the signal output end 20 is a wired connection, the signal receiving module 10 can receive the working signal sent by the signal output end 20 through the connector connected to the signal output end 20.
[0088] Step S20: The first control module 11 processes the working signal, determines each working state of the sensing device 2, and transmits the each working state to the display module 12.
[0089] It can be understood that the signal receiving module 10 receives the working signal sent by the signal output end 20 through the connection head connected to the signal output end 20, and transmits the received working signal to the first control module 11. When the first control module 11 receives the working signal, the first control module 11 analyzes and processes the working signal, thereby determining the working state of the sensing device 2. The first control module 11 can be a single-chip microcomputer, which analyzes and processes the working signal through the single-chip microcomputer to obtain the working state of the sensing device 2.
[0090] Step S30: The display module 12 receives the working state and displays the working state in different display modes to complete the detection of the sensing of the intelligent toilet.
[0091] It should be noted that the working state of the sensing device 2 can be a normal working state, an abnormal working state, or an interference working state, etc., which is not limited in the embodiment. The interference working state is the working state corresponding to the signal that the sensing device 2 senses the external trigger signal frequency disorder. After the first control module 11 obtains the working state of the sensing device 2, the working state is transmitted to the display module 12, and the display module 12 can display the working state in different display modes, so that the maintenance personnel can quickly and accurately understand the working state of the sensing device 2, thereby targeted maintenance processing can be performed. Different display modes can be preset color display, preset display character display, preset sound playing, etc., and can also include other display modes, which are not limited in the embodiment.
[0092] The embodiment is characterized in that the signal receiving module 10, the first control module 11 and the display module 12 are sequentially connected in the intelligent toilet sensing detection device 1, the signal receiving module 10 corresponds to the signal output end 20 of the sensing device 2 in the intelligent toilet, the sensing device 2 is used for detecting the position signal of the user in the sensing area and sending the working signal corresponding to the position signal to the signal receiving module 10 when connected with the signal receiving module 10, the signal receiving module 10 is used for receiving the working signal sent by the signal output end 20 and transmitting the working signal to the first control module 11, the first control module 11 is used for processing the working signal, determining the working state of the sensing device 2 and transmitting the working state to the display module 12, and the display module 12 is used for receiving the working state and displaying the working state in different display modes, so as to complete the sensing detection of the intelligent toilet, detect the sensing device 2 in the intelligent toilet through the intelligent toilet sensing detection device 1, display the working state of the sensing device 2 through the display module 12, quickly and accurately know the good or bad of the sensing device 2, improve the work efficiency of the maintenance personnel, and improve the user satisfaction.
[0093] Reference Figure 5 , Figure 5 The second embodiment of the intelligent toilet sensing detection method is a flowchart.
[0094] Based on the first embodiment of the intelligent toilet sensing detection method, the step S20 of the intelligent toilet sensing detection method comprises the following steps.
[0095] In step S201, the first control module 11 processes the working signal and determines the signal strength of the working signal.
[0096] It should be noted that the signal strength of the working signal includes normal signal strength, weak signal strength or no signal, and the working signal can be analyzed and processed by the first control module 11, so as to obtain the current signal strength of the sensing device.
[0097] In step S202, the working state of the sensing device 2 is determined according to the signal strength of the working signal.
[0098] In the specific implementation, when the signal strength of the working signal is normal signal strength, the working state of the sensing device 2 is determined as normal working state. When the signal strength of the working signal is weak signal strength or no signal, the working state of the sensing device 2 is determined as abnormal working state.
[0099] Step S203: when the signal strength is the first signal strength, determining that the working state of the inductive device 2 is a normal working state.
[0100] It should be understood that the first signal strength is a normal signal strength, and the normal strength can be set to a strength value, for example, the normal strength is 10T, and when the signal strength is 10T, it is determined that the current working state of the inductive device 2 is a normal working state.
[0101] Step S204: when the signal strength is the second signal strength, determining that the working state of the inductive device 2 is an abnormal working state, wherein the first signal strength is greater than the second signal strength.
[0102] It should be noted that the second signal strength is a strength value lower than the normal signal strength, for example, the normal signal strength is 10T, and when the second signal strength is less than 10T, it is determined that the working state of the inductive device 2 is an abnormal working state, for example, the second signal strength is 5T, which proves that the inductive device 2 can sense the externally triggered signal, but the signal is weak, or the second signal strength is 0T, which proves that the inductive device 2 cannot sense the externally triggered signal. When the inductive device 2 cannot sense the externally triggered signal or the sensed signal is lower than the normal signal strength, the working state of the inductive device 2 is an abnormal working state. When the signal strength of the inductive device 2 is weak, it indicates that the inductive component 22 of the ceramic internal inductive device of the intelligent toilet may not be tightly attached. When the inductive device 2 senses no signal, it proves that the inductive component 22 of the inductive device 2 may be damaged, and therefore the working state of the inductive device can be determined according to the signal strength of the inductive device 2.
[0103] Step S205: transmitting the normal working state or the abnormal working state to the display module 12.
[0104] In a specific implementation, after the working state of the inductive device 2 is analyzed, in order to facilitate maintenance personnel to understand and determine the working state and damage degree of the inductive device 2, each working state of the inductive device 2 can be sent to the display module 12, so that the display module 12 displays different working states in different display modes. For example, when the display mode is character display, when the working state of the inductive device 2 is a normal working state, display character 1, and when the working state of the inductive device 2 is an abnormal working state, the signal strength corresponding to the abnormal working state can be determined, if the inductive device 2 is weak, character 2 can be displayed on the display module 12. If the inductive device 2 has no signal, the display module 12 does not display any content.
[0105] The embodiment determines the signal intensity of the working signal by processing the working signal through the first control module 11, determines the working state of the sensing device 2 according to the signal intensity of the working signal, determines that the working state of the sensing device 2 is a normal working state when the signal intensity is a first signal intensity, determines that the working state of the sensing device 2 is an abnormal working state when the signal intensity is a second signal intensity, wherein the first signal intensity is greater than the second signal intensity, and transmits the normal working state or the abnormal working state to the display module 12. The first control module 11 can quickly analyze the signal of the sensing device 2, thereby determining the working state of the sensing device 2, facilitating the maintenance personnel to quickly understand the working condition of the sensing device 2, and improving the maintenance efficiency.
[0106] Reference Figure 6 , Figure 6 The flowchart of the third embodiment of the intelligent toilet sensing detection method is shown.
[0107] Based on the first embodiment of the intelligent toilet sensing detection method, the step S20 of the intelligent toilet sensing detection method specifically includes the following steps.
[0108] Step S201 ′ The first control module 11 processes the working signal and determines the signal frequency of the working signal.
[0109] It should be noted that the first control module 11 can analyze the frequency of the working signal of the sensing device 2, determine the signal frequency of the current working signal of the sensing device 2, set the frequency range of the sensing device 2 when sensing the user's triggering operation in advance, i.e., the preset signal frequency, for example, the range of the preset signal frequency is 50HZ-80HZ, process the working signal to determine the signal frequency of the working signal, and compare the signal frequency of the working signal with the preset signal frequency, thereby determining whether the sensing device 2 is disturbed.
[0110] Step S202': when the signal frequency and the preset signal frequency are inconsistent, the working signal is determined to be a frequency abnormal signal.
[0111] In the embodiment, when the signal frequency is not within the range of the preset signal frequency, it is determined that the signal frequency and the preset signal frequency are inconsistent, and it is determined that the working signal corresponding to the signal frequency is a frequency abnormal signal. When the signal frequency is within the range of the preset signal frequency, it is determined that the signal frequency and the preset signal frequency are consistent, and it is determined that the working signal corresponding to the signal frequency is a frequency normal signal.
[0112] Step S203': determining, based on the frequency abnormal signal, that the working state of the sensing device 2 is an interference working state, and transmitting the interference working state to the display module 12.
[0113] It should be understood that when the working signal is the frequency abnormal signal, the corresponding working state of the sensing device 2 can be determined to be the interference working state based on the frequency abnormal signal. The interference working state refers to that the sensing device 2 senses that the frequency of the external trigger signal is disordered, which does not belong to the signal triggered when the intelligent closestool is normally used by a human, and there may be a child or an animal mis-touching, etc., and it is determined that the sensing device 2 may be interfered by the outside. When it is determined that the working state of the sensing device 2 is the interference working state, the interference working state can be transmitted to the display module 12 for corresponding display.
[0114] It should be understood that when the working signal is the frequency normal signal, the corresponding working state of the sensing device 2 can be determined to be the normal working state based on the frequency normal signal. Then the normal working state can be transmitted to the display module 12 for corresponding display.
[0115] In the embodiment, the first control module 11 processes the working signal to determine the signal frequency of the working signal, determines that the working signal is the frequency abnormal signal when the signal frequency is inconsistent with the preset signal frequency, and determines that the working state of the sensing device 2 is the interference working state based on the frequency abnormal signal and transmits the interference working state to the display module. By analyzing the frequency of the working signal through the first control module 11, it can be quickly determined whether the current working frequency of the sensing device 2 is interfered by the outside, and the detection efficiency is improved.
[0116] Reference Figure 7 , Figure 7 FIG. 4 is a flowchart of a fourth embodiment of the intelligent closestool sensing detection method.
[0117] Based on the first embodiment of the intelligent closestool sensing detection method, the step S30 of the intelligent closestool sensing detection method of the embodiment specifically includes the following steps.
[0118] Step S301: The display module 12 receives the various working states and determines the display mode of the various working states, wherein the display mode includes preset character display and preset color display.
[0119] It should be noted that when the display module 12 receives the working state of the sensing device, the display mode of each working state can be determined, the display mode is selected, and the display mode includes preset character display or preset color display, and the preset sound can also be played, etc. The display module 12 can include a speaker and a display screen, etc. The present embodiment is not limited in this regard. The preset character display refers to displaying different numbers or characters on the display module 12. The preset color display refers to displaying different colors on the display module 12. When the display mode is the preset character display, different characters can be displayed according to different working states, for example, the normal working state is displayed as 1, the abnormal working state is displayed as 2, etc. The present embodiment is not limited in this regard.
[0120] Step S302: Displaying each working state based on the display mode through a preset communication protocol.
[0121] In a specific implementation, the preset communication protocol can send corresponding communication data to the display module 12 according to the working state of the sensing device 2, so that the display module 12 displays the corresponding data.
[0122] Step S303: When the display mode is the preset character display, displaying each working state by using different preset characters through the preset communication protocol.
[0123] When the display mode is the preset character display, different communication data can be sent through the working state to make the display module 12 display different characters. For example, the working state of the sensing device 2 is the normal working state, and then the data content of “let the display module display character 1” is sent to the display module 12 through the preset communication protocol. After the display module 12 receives the data content, the character “1” is displayed, indicating that the working state of the sensing device 2 is the normal working state. For example, the working state of the sensing device 12 is the abnormal working state, and then the corresponding character display can be performed according to the sensing intensity of the sensing device 2. When the sensing device 2 can sense the external signal, but the signal is weak, the display module 12 displays the character “2” according to the preset communication protocol. When the sensing device 2 has no sensing signal, the display module 12 does not display any content according to the communication protocol. When the sensing device 2 is in the interference working state, the display module 12 displays the character “3” according to the preset communication protocol.
[0124] Further, when the working state is the normal working state, a first preset character is displayed through the preset communication protocol; when the working state is the abnormal working state, a second preset character is displayed through the preset communication protocol; and when the working state is the interference working state, a third preset character is displayed through the preset communication protocol, wherein the first preset character, the second preset character, and the third preset character are different.
[0125] It should be noted that the first preset character refers to the character indicating that the sensor 2 is in normal working condition, such as the character 1. This embodiment does not limit this. When the working condition is abnormal, if the sensor 2 can detect the trigger signal, the display module 12 displays the second preset character, such as the character 2. If the sensor 2 cannot detect the trigger signal, the display module 12 does not display any content. If the sensor 2 is functioning normally but detects an erroneous external signal frequency, the display module 12 displays the third preset character, such as the character 3. By displaying different characters according to the different working conditions of the sensor 2, maintenance personnel can quickly locate the working condition of the sensor, improving the efficiency of detection and maintenance.
[0126] Step S304: When the display mode is preset color display, the various working states are displayed using different preset colors through the preset communication protocol.
[0127] In specific implementation, when the display mode is a preset color display, different data content can be sent to the display module 12 through a preset communication protocol according to the working state of the sensing device 2, so that the display module 12 displays different colors according to the preset display color. For example, when the working state of the sensing device 2 is normal, the preset communication protocol is used to make the display module 12 display a green light. When the working state of the sensing device 2 is abnormal and the sensing signal is weak, the preset communication protocol is used to make the display module 12 flash red and green lights alternately. When the working state of the sensing device 2 is abnormal and there is no sensing signal, the preset communication protocol is used to make the display module 12 not display any content. If the working state of the sensing device 2 is interfering, the preset communication protocol is used to make the display module 12 keep the red light on. When the display mode is a sound display, if the working state of the sensing device 2 is interfering, the display module 12 can be controlled to emit sound through a buzzer, etc. This embodiment does not limit this.
[0128] This embodiment receives the various working states through the display module 12 and determines the display mode for each working state. The display mode includes: preset character display and preset color display. Based on the display mode, the various working states are displayed through a preset communication protocol. When the display mode is preset character display, the various working states are displayed using different preset characters through the preset communication protocol. When the display mode is preset color display, the various working states are displayed using different preset colors through the preset communication protocol. Different display modes are determined according to different working states of the sensing device 2, enabling maintenance personnel to quickly locate the working state of the sensing device 2 and improve the efficiency of detection and maintenance.
[0129] In addition, in order to achieve the above object, the application further provides a smart toilet sensing detection system, which comprises the smart toilet sensing detection device 1 and the sensing device 2, and the smart toilet sensing detection device 1 communicates data with the sensing device 2.
[0130] Since the smart toilet sensing detection system adopts all the technical solutions of the above-mentioned embodiments, it has all the beneficial effects brought by the technical solutions of the above-mentioned embodiments, which will not be repeated here.
[0131] It should be understood that the above is only for illustration, and does not constitute any limitation on the technical solutions of the application. In specific applications, those skilled in the art can set it up according to the needs, and the application does not limit this.
[0132] It should be noted that the above-described workflow is only illustrative and does not limit the scope of protection of the application. In actual application, those skilled in the art can select part or all of them to achieve the purpose of the embodiment scheme according to the actual needs, which is not limited here.
[0133] In addition, technical details not described in detail in this embodiment can be referred to the smart toilet sensing detection method provided by any embodiment of the application, which will not be repeated here.
[0134] In addition, it should be noted that in this paper, the term "includes", "contains" or any other variant thereof is intended to cover non-exclusive inclusion, so that the process, method, article or system including a series of elements not only includes those elements, but also includes other elements not explicitly listed, or includes elements inherent to such process, method, article or system. Without more limitations, the element defined by the sentence "includes a" does not exclude the existence of other identical elements in the process, method, article or system including the element.
[0135] The above-mentioned application embodiment serial number is only for description, not representing the advantages and disadvantages of the embodiments.
[0136] Those skilled in the art can clearly understand the above-mentioned embodiment method can be realized by means of software and the necessary general hardware platform, of course, can also be through hardware, but in many cases the former is a better embodiment. Based on such understanding, the technical solutions of the present application essentially or say the part of the prior art contribution can be embodied in the form of software products, the computer software product is stored in a storage medium (such as read only memory (Read Only Memory, ROM) / RAM, disk, optical disk), including a number of instructions to make a terminal device (may be a mobile phone, computer, server, or network equipment, etc.) executes the method described in various embodiments of the present application.
[0137] The above is only the preferred embodiment of the present application, not therefore limit the patent scope of the present application, any equivalent structure or equivalent flow transformation made by using the content of the present application specification and drawings, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present application.
Claims
1. A smart toilet sensing detection device, characterized in that, The intelligent toilet sensing detection device comprises a signal receiving module, a first control module and a display module connected in sequence, the signal receiving module corresponds to a signal output end of a sensing device in the intelligent toilet; The sensing device is used for detecting a position signal of a user in a sensing area and sending a working signal corresponding to the position signal to the signal receiving module when connected with the signal receiving module; The signal receiving module is used for receiving the working signal sent by the signal output end and transmitting the working signal to the first control module; The first control module is used for processing the working signal, determining various working states of the sensing device and transmitting the various working states to the display module; The display module is used for receiving the various working states and displaying the various working states in different display modes to complete the sensing detection of the intelligent toilet.
2. The intelligent toilet sensing detection device of claim 1, wherein, The intelligent toilet sensing detection device further comprises a power supply module connected with the first control module; The power supply module is used for supplying power to the first control module.
3. The intelligent toilet sensing detection device of claim 1, wherein, The signal receiving module and the signal output end of the sensing device in the intelligent toilet are connected through a communication line, and the communication line comprises a power supply line and a signal line; The signal output end of the sensing device in the intelligent toilet sends the working signal to the signal receiving module through the signal line; The first control module is further used for supplying power to the sensing device in the intelligent toilet through the power supply line.
4. A method for sensing detection of a smart toilet, characterized by, The intelligent toilet sensing detection method is applied to the intelligent toilet sensing detection device in any one of claims 1-3, and the method comprises: The signal receiving module receives the working signal sent by the signal output end and transmits the working signal to the first control module; The first control module processes the working signal, determines various working states of the sensing device and transmits the various working states to the display module; The display module receives the various working states and displays the various working states in different display modes to complete the sensing detection of the intelligent toilet; The display module receives the various working states and displays the various working states in different display modes, which comprises: The display module receives the various working states and determines the display modes of the various working states, wherein the display modes comprise preset character display and preset color display; The various working states are displayed based on the display modes through a preset communication protocol; When the display mode is preset character display, the various working states are displayed in different preset characters through the preset communication protocol; When the display mode is preset color display, the various working states are displayed in different preset colors through the preset communication protocol.
5. The method of claim 4, wherein the step of detecting the user's presence comprises the steps of: detecting the user's presence by using a sensor; and detecting the user's presence by using a camera. The first control module processes the working signal, determines various working states of the sensing device and transmits the various working states to the display module, which comprises: The first control module processes the working signal and determines the signal strength of the working signal; determining a respective working state of the sensing device according to the signal strength of the working signal; when the signal strength is a first signal strength, determining that the working state of the sensing device is a normal working state; when the signal strength is a second signal strength, determining that the working state of the sensing device is an abnormal working state, wherein the first signal strength is greater than the second signal strength; transmitting the normal working state or the abnormal working state to the display module.
6. The method of claim 4, wherein the sensing and detecting of the smart toilet is characterized by, The first control module processes the working signal, determines respective working states of the sensing device, and transmits the respective working states to the display module, including: The first control module processes the working signal, determines a signal frequency of the working signal; when the signal frequency is inconsistent with a preset signal frequency, determining that the working signal is a frequency abnormal signal; based on the frequency abnormal signal, determining that the working state of the sensing device is an interference working state, and transmitting the interference working state to the display module.
7. The method of claim 4, wherein the sensing and detecting of the user's body is performed by using a plurality of sensors installed in the toilet bowl. when the display mode is preset character display, displaying the respective working states by using different preset characters through a preset communication protocol, including: when the working state is a normal working state, displaying a first preset character through a preset communication protocol; when the working state is an abnormal working state, displaying a second preset character through the preset communication protocol; when the working state is an interference working state, displaying a third preset character through the preset communication protocol, wherein the first preset character, the second preset character, and the third preset character are different.
8. A smart toilet sensing detection system, characterized in that, The intelligent toilet sensing detection system includes a sensing device and the intelligent toilet sensing detection device of any one of claims 1-3, and the intelligent toilet sensing detection device and the sensing device perform data communication.
Citation Information
Patent Citations
Rapid detection device of feces collector
CN108227681A
Intelligent full-automatic closestool
CN110984330A
Trying on clothes from dynamic testing of closestool handle button connecting plate button drive circuit is put
CN206479836U
Electric circuit board automatic testing and signal waveform contrast equipment
CN2378737Y