Drainage control method and system, apparatus, storage medium, and electronic device
By acquiring drainage monitoring data and automatically analyzing abnormal conditions, and using sensors and controllers to control the drainage system for unblocking or pressurization, the problem of untimely handling caused by the reliance on manual monitoring in existing drainage systems has been solved, and intelligent automated management of the drainage system has been achieved.
Patent Information
- Application Number
- CN202211116840.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-09-14
- Publication Date
- 2025-11-04
- Estimated Expiration
- 2042-09-14
AI Technical Summary
The existing drainage system relies on manual monitoring, which leads to untimely handling of drainage faults and makes it impossible to achieve intelligent management.
By acquiring drainage monitoring data, sensors and controllers are used to automatically analyze abnormal drainage conditions, and the drainage system is controlled to dredge or pressurize according to the corresponding handling strategies. With the support of smart gateways and servers, automated monitoring and handling are achieved.
It enables automated monitoring and timely handling of household drainage systems, reducing manual intervention and improving processing efficiency and user experience.
Smart Images

Figure CN115492205B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of communications, and more specifically, to a drainage control method and system, apparatus, storage medium, and electronic device. Background Technology
[0002] With the continuous development of smart homes, their proportion in household devices has been increasing in recent years, and smart home systems have become increasingly important in people's lives. People's demand for smart home system-related devices is also growing, leading to smart homes becoming more intelligent and complex.
[0003] Existing drainage systems are mostly not intelligent, and monitoring them relies entirely on manual labor. Often, by the time users discover the problem, their homes are already in a mess, requiring significant financial and time expenditure to resolve. Therefore, how to monitor and manage household drainage systems effectively, avoiding delays caused by manual intervention by professionals, has become a pressing technical challenge.
[0004] In related technologies, no effective solutions have yet been proposed to address the aforementioned technical problems. Summary of the Invention
[0005] This invention provides a drainage control method and system, apparatus, storage medium, and electronic device to at least solve the technical problem of untimely handling of drainage faults caused by manual handling by professionals in related technologies.
[0006] According to one embodiment of the present invention, a drainage control method is provided, comprising: acquiring drainage monitoring data, wherein the drainage monitoring data is data obtained by monitoring the water flow through the sewer pipes in the drainage system; and, when the drainage monitoring data indicates that an abnormal drainage condition has been reached, controlling the drainage system to drain water according to a drainage treatment strategy corresponding to the abnormal drainage condition, wherein the drainage treatment strategy is used to indicate the removal of fault factors corresponding to the abnormal drainage condition.
[0007] In one exemplary embodiment, controlling the drainage system to drain water according to the drainage treatment strategy corresponding to the drainage abnormality conditions includes: adding a drain cleaner to the sewer pipe according to the drainage treatment strategy; and pressurizing the sewer pipe according to the drainage treatment strategy.
[0008] In one exemplary embodiment, when controlling the drainage system to drain water according to the drainage treatment strategy corresponding to the drainage abnormality condition, the method further includes: issuing a drainage abnormality alarm message, wherein the drainage abnormality alarm message is used to prompt the user that the drain pipe has malfunctioned.
[0009] In an example embodiment, after the drainage monitoring data is acquired, the method further includes: sending the drainage monitoring data to a server through an intelligent gateway, wherein the server runs a drainage control model, and the drainage control model is used to calculate the drainage treatment strategy; and receiving the drainage treatment strategy returned by the server.
[0010] In an example embodiment, after the drainage monitoring data is acquired, the method further includes: determining that the drainage monitoring data meets the drainage abnormal condition in a case where the drainage monitoring data indicates that the water pressure value of the water flow in the sewer pipe is greater than a first threshold value; and determining that the drainage monitoring data meets the drainage abnormal condition in a case where the drainage monitoring data indicates that the water level value of the water flow in the sewer pipe is greater than a second threshold value.
[0011] In an example embodiment, after the drainage monitoring data is acquired, the method further includes: controlling to start an exhaust device in a space connected to the sewer pipe in a case where an odor is detected in the space.
[0012] In an example embodiment, after the drainage system is controlled to drain water according to the drainage treatment strategy corresponding to the drainage abnormal condition, the method further includes: acquiring a drainage treatment result; generating maintenance notification information in a case where the drainage treatment result indicates a failure, wherein the maintenance notification information is used to notify a maintenance personnel to perform maintenance; and controlling a door access system to open a door and controlling a video acquisition device in the building to collect a picture of the maintenance personnel performing maintenance in a case where it is detected that the maintenance personnel arrives at a doorway of a building where the drainage system is arranged.
[0013] In an example embodiment, after the video acquisition device in the building is controlled to collect the picture of the maintenance personnel performing maintenance, the method further includes: displaying a maintenance settlement interface in a case where it is determined that the drainage system has been successfully repaired; and prompting completion of maintenance in response to a confirmation operation performed on the maintenance settlement interface.
[0014] According to another embodiment of the embodiment of the present application, a drainage control system is also provided, which includes: a sensor configured to acquire drainage monitoring data collected, wherein the drainage monitoring data is data obtained by monitoring water flow through a sewer pipe in a drainage system; and a controller connected to the sensor and configured to control the drainage system to drain water according to a drainage treatment strategy corresponding to a drainage abnormal condition in a case where the drainage monitoring data indicates that the drainage abnormal condition is met, wherein the drainage treatment strategy is used to indicate a fault factor corresponding to the drainage abnormal condition.
[0015] According to another embodiment of the present application, there is further provided a drainage control apparatus comprising: a monitoring module configured to obtain drainage monitoring data, wherein the drainage monitoring data is obtained by monitoring water flow through a sewer pipe in a drainage system; and a control module configured to control the drainage system to drain water according to a drainage treatment strategy corresponding to a drainage abnormal condition, if the drainage monitoring data indicates that the drainage abnormal condition is reached, wherein the drainage treatment strategy is configured to indicate a fault factor corresponding to the drainage abnormal condition.
[0016] According to yet another aspect of the present application, there is further provided a computer readable storage medium having stored therein a computer program configured to perform the drainage control method when executed.
[0017] According to yet another aspect of the present application, there is further provided an electronic device comprising a memory, a processor, and a computer program stored in the memory and executable in the processor, wherein the processor is configured to perform the drainage control method by executing the computer program.
[0018] In the present application, drainage monitoring data is obtained, wherein the drainage monitoring data is obtained by monitoring water flow through a sewer pipe in a drainage system; and the drainage system is controlled to drain water according to a drainage treatment strategy corresponding to a drainage abnormal condition, if the drainage monitoring data indicates that the drainage abnormal condition is reached, wherein the drainage treatment strategy is configured to indicate a fault factor corresponding to the drainage abnormal condition. That is, by analyzing the obtained drainage monitoring data, the drainage system is controlled to drain water according to the corresponding drainage treatment strategy when the drainage monitoring data indicates that the drainage abnormal condition is reached, thereby solving the technical problem of not timely handling of drainage faults caused by manual handling of drainage faults by professionals in the related art, and further achieving that the drainage faults of a household drainage system are handled in time by automatically monitoring the household drainage monitoring system. BRIEF DESCRIPTION OF DRAWINGS
[0019] The accompanying drawings, which are included to provide a further understanding of the application and are incorporated in and constitute a part of this application, illustrate embodiments of the application and together with the description serve to explain the application. In the drawings:
[0020] Figure 1 is a schematic diagram of an application scenario of an optional drainage control method according to an embodiment of the present application;
[0021] Figure 2 is a flowchart of an optional drainage control method according to an embodiment of the present application;
[0022] Figure 3 is a schematic diagram of an optional water drainage control method according to an embodiment of the present application;
[0023] Figure 4 is a schematic diagram of another optional water drainage control method according to an embodiment of the present application;
[0024] Figure 5 is a flowchart of another optional water drainage control method according to an embodiment of the present application;
[0025] Figure 6 is a structural diagram of an optional water drainage control system according to an embodiment of the present application;
[0026] Figure 7 is a structural diagram of another optional water drainage control device according to an embodiment of the present application. DETAILED DESCRIPTION
[0027] In order to make the person skilled in the art better understand the present application, the technical solutions in the embodiments of the present application will be described clearly and completely below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by the person skilled in the art without creative labor should belong to the protection scope of the present application.
[0028] It should be noted that the terms "first", "second", etc. in the specification and claims of the present application and the above-mentioned drawings are used to distinguish similar objects, and do not necessarily mean a specific order or sequence. It should be understood that the data thus used can be interchanged under appropriate circumstances, so that the embodiments of the present application described herein can be implemented in an order other than those illustrated or described herein. In addition, the terms "include" and "have" and any variations thereof are intended to cover non-exclusive inclusion, for example, a process, method, system, product or device including a series of steps or units does not necessarily have to be limited to those steps or units clearly listed, but can include other steps or units not clearly listed or inherent to these processes, methods, products or devices.
[0029] According to an aspect of an embodiment of the present application, a water drainage control method is provided, which can be applied in, but is not limited to, the environment as shown in Figure 1 .
[0030] Take a family as an example, but the method can be applied to the drainage system of multiple families. The drainage monitoring data of the bathroom 101 and the kitchen 102 are transmitted to the cloud server 104 via the smart gateway 103. The cloud server 104 gives the corresponding drainage treatment strategy according to the drainage monitoring data, and the drainage treatment strategy is sent to the drainage system of the bathroom 101 and the kitchen 102 via the smart gateway 103, and the drainage system performs drainage according to the drainage treatment strategy. The user can query the working state, fault processing state and other information of the drainage system from the cloud server 104.
[0031] Optionally, as an optional embodiment, as shown in Figure 2 The above-mentioned drainage control method comprises:
[0032] Step S202, obtaining drainage monitoring data, wherein the above-mentioned drainage monitoring data is data obtained by monitoring the water flow flowing through the sewer pipe in the drainage system;
[0033] Optionally, the embodiment of the present application can include but is not limited to sensors to obtain drainage monitoring data; the acquisition method can include but is not limited to presetting a data acquisition period, and the sensor obtains the drainage monitoring data every data acquisition period; the above-mentioned drainage monitoring data can include but is not limited to the water level, water pressure and flow direction of the sewer pipe and other data.
[0034] For example, the preset data acquisition period is one minute, and the sensor obtains the water level value, water pressure value and flow direction of the sewer pipe every one minute.
[0035] Step S204, in the case that the above-mentioned drainage monitoring data indicates that the drainage abnormal condition is reached, controlling the above-mentioned drainage system to perform drainage according to the drainage treatment strategy corresponding to the above-mentioned drainage abnormal condition, wherein the above-mentioned drainage treatment strategy is used to indicate the removal of the fault factor corresponding to the above-mentioned drainage abnormal condition.
[0036] Optionally, the drainage abnormal condition is preset, and the drainage abnormal condition can include but is not limited to the maximum threshold of the water level, the maximum threshold of the water pressure and the reverse flow of the water flow, and different drainage treatment strategies corresponding to different drainage abnormal conditions are set, and the drainage treatment strategy can include but is not limited to: when the water level exceeds the maximum threshold, the dredging agent is put into the sewer pipe; when the water pressure exceeds the maximum threshold or the water flow reverses, the pressurized tap water is added to the sewer pipe for dredging. After obtaining the drainage monitoring data, the embodiment of the present application can include but is not limited to the controller judging whether the drainage monitoring data meets the set drainage abnormal condition, and when it is met, it is determined that the drainage is abnormal, and the controller automatically processes the abnormal drainage condition according to the set drainage treatment strategy.
[0037] For example, when the obtained monitoring data indicates that the water flow is reversed, the controller pressurizes the tap water in the sewer pipe according to the set strategy to dredge.
[0038] Through the scheme provided in the embodiments of the present application, drainage monitoring data is obtained, wherein the drainage monitoring data is data obtained by monitoring the water flow in the sewer pipe in the drainage system; in the case where the drainage monitoring data indicates that the drainage abnormal condition is reached, the drainage system is controlled to drain according to the drainage treatment strategy corresponding to the drainage abnormal condition, wherein the drainage treatment strategy is used to indicate the removal of the fault factor corresponding to the drainage abnormal condition. That is, by analyzing the obtained drainage monitoring data, when the drainage monitoring data indicates that the drainage abnormal condition is reached, the drainage system is controlled to drain according to the corresponding drainage treatment strategy, thereby solving the technical problem of not timely processing of the drainage fault caused by manual processing of the drainage fault by the professional personnel in the related art, and further realizing the automatic monitoring of the household drainage monitoring system to achieve the timely processing of the drainage fault of the household drainage system.
[0039] In one example embodiment, the controlling the drainage system to drain according to the drainage treatment strategy corresponding to the drainage abnormal condition includes: dispensing a dredging agent into the sewer pipe according to the drainage treatment strategy; and pressurizing the sewer pipe according to the drainage treatment strategy.
[0040] It should be noted that when it is found that the water pressure of the sewer pipe is too high, it indicates that the sewer pipe is blocked, at which time the dredging agent is dispensed into the sewer pipe to dredge to reduce the water pressure; when it is found that the water level of the sewer pipe is too high, it indicates that the sewer pipe is difficult to drain autonomously due to the small pressure, at which time the tap water is pressurized to dredge the sewer pipe to increase the water pressure.
[0041] For example, when the water pressure of the sewer pipe is too high and exceeds the set threshold, the controller determines that the dredging agent needs to be dispensed into the sewer pipe to dredge to reduce the water pressure based on the drainage treatment strategy; when the water level of the sewer pipe is too high and exceeds the set threshold, the controller determines that the tap water needs to be pressurized to dredge the sewer pipe to increase the water pressure based on the drainage treatment strategy.
[0042] Through the scheme provided in the embodiments of the present application, different abnormal conditions correspond to different drainage treatment strategies, the abnormal condition is determined according to the drainage monitoring data, and the sewer pipe is processed according to the drainage treatment strategy, thereby realizing the automatic monitoring and processing of various problems of the household drainage system.
[0043] In an example embodiment, when the drainage system is controlled to drain according to the drainage treatment strategy corresponding to the above-mentioned drainage abnormal condition, the method further comprises: issuing a drainage abnormality warning information, wherein the drainage abnormality warning information is used to prompt the user that the sewer pipe has a fault.
[0044] Optionally, when the drainage system fails to automatically handle, causing the sewer to back up, the embodiment of the present application can include but is not limited to an alarm to timely issue a warning information to the user to prompt the user that the sewer pipe has a fault. The above-mentioned warning information can include but is not limited to display information, sound information, etc. Or the alarm sends a rescue information to a pre-set rescue agency.
[0045] For example, when the drainage treatment system fails to automatically handle, causing the sewer to back up, the alarm displays a warning information on the screen or issues a warning information through sound to prompt the user that the sewer pipe has a fault. Or the alarm directly sends a rescue information to a rescue agency.
[0046] Through the scheme provided by the embodiment of the present application, when the drainage treatment system fails to automatically handle, the user can be prompted in time through the drainage abnormality warning information, so that the user can discover and handle the drainage abnormality in time, and the processing efficiency is improved.
[0047] In an example embodiment, after the drainage monitoring data is obtained, the method further comprises: sending the drainage monitoring data to a server through an intelligent gateway, wherein the server runs a drainage control model, the drainage control model is used to calculate and generate the drainage treatment strategy; receiving the drainage treatment strategy returned by the server.
[0048] It should be noted that after the sensor obtains the drainage monitoring data, the sensor sends the drainage monitoring data to the server through the intelligent gateway. The server stores a drainage control model, which can include but is not limited to a neural network model. The server inputs the drainage monitoring data into the drainage control model. When the drainage monitoring data does not meet the drainage abnormal condition, the drainage control model outputs "no abnormality"; when the drainage monitoring data meets the drainage abnormal condition, the drainage control model outputs the corresponding drainage treatment strategy, which is sent to the drainage monitoring system by the server through the intelligent gateway.
[0049] For example, when the water pressure, water level and flow direction in the drainage monitoring data do not meet the abnormal condition, the drainage control model outputs "no abnormality"; when the water pressure in the drainage monitoring data exceeds a set threshold, the drainage control model outputs "depositing a dredging agent into the sewer pipe"; when the water level in the drainage monitoring data exceeds a set threshold or the water flow is reversed, the drainage control model outputs "pressurizing tap water into the sewer pipe".
[0050] By means provided by the embodiment of the present application, the drainage control model arranged in the server is used to give corresponding drainage treatment strategy according to the drainage monitoring data, so as to realize automatic monitoring and processing of the drainage monitoring system.
[0051] In one example embodiment, after the drainage monitoring data is acquired, the method further includes:
[0052] 1) In the case that the drainage monitoring data indicates that the water pressure value of the water flow in the sewer pipe is greater than the first threshold value, it is determined that the drainage monitoring data reaches the drainage abnormal condition;
[0053] 2) In the case that the drainage monitoring data indicates that the water level value of the water flow in the sewer pipe is greater than the second threshold value, it is determined that the drainage monitoring data reaches the drainage abnormal condition.
[0054] It should be noted that the first threshold value of the water pressure value and the second threshold value of the water level value are set in advance, and the acquired drainage monitoring data is compared with the first threshold value and the second threshold value respectively, when the water pressure value of the water flow in the sewer pipe is greater than the first threshold value, it is determined that the drainage monitoring data reaches the drainage abnormal condition; when the water level value of the water flow in the sewer pipe is greater than the second threshold value, it is determined that the drainage monitoring data reaches the drainage abnormal condition.
[0055] For example, as shown in Figure 3 , it is assumed that the threshold value of the water pressure value set in advance is 300kpa, when the water pressure value in the acquired monitoring data is 350kpa, since the actual water pressure value exceeds the preset threshold value, it indicates that the drainage is abnormal at this time.
[0056] For example, as shown in Figure 4 , it is assumed that the threshold value of the water level value set in advance is 0.5m, when the water level value in the acquired monitoring data is 0.6m, since the actual water level value exceeds the preset threshold value, it indicates that the drainage is abnormal at this time.
[0057] By means provided by the embodiment of the present application, the threshold value of each drainage monitoring data is set in advance, after the drainage monitoring data is acquired, the drainage monitoring data is compared with the preset threshold value, according to the comparison result, whether the drainage is abnormal can be automatically judged, so as to realize automatic monitoring of the drainage monitoring system.
[0058] In one example embodiment, after the drainage monitoring data is acquired, the method further includes: in the case that an odor is detected in the space connected by the sewer pipe, the exhaust device in the space is controlled to be started.
[0059] Optionally, the embodiment of the present application can include but is not limited to that the controller controls the exhaust device to be automatically started according to the data acquired by the sensor when the sensor detects that an odor appears indoors or someone enters the toilet.
[0060] For example, when the sensor detects that a foul smell appears in the room or someone enters the bathroom, the obtained data is sent to the controller, and the controller sends an opening control signal to the exhaust device to control the exhaust device to automatically open.
[0061] Through the scheme provided in the embodiments of the present application, by automatically opening the exhaust device when detecting an odor, a good home environment experience can be provided to the user.
[0062] In one example embodiment, after the above-mentioned drainage system is controlled to perform drainage according to the drainage treatment strategy corresponding to the above-mentioned abnormal drainage condition, the method further comprises: obtaining a drainage treatment result; in the case that the drainage treatment result indicates that the treatment fails, generating maintenance notification information, wherein the maintenance notification information is used to notify a maintenance personnel to perform maintenance; in the case that it is detected that the maintenance personnel arrives at the entrance of a building where the drainage system is configured, controlling an access control system to open the door and controlling a video acquisition device in the building to acquire a picture of the maintenance personnel performing a maintenance operation.
[0063] Optionally, when the automatic treatment of the drainage system fails and a maintenance personnel needs to come for maintenance, a maintenance notification information is generated to notify the maintenance personnel to come for maintenance, and the maintenance notification information can include but is not limited to fault information, home address, contact information, expected time for coming for maintenance, and the like. When the maintenance personnel arrives at the entrance, the access control system automatically opens the door through linkage with the intelligent door lock. After the maintenance personnel enters, the video acquisition device also acquires a picture of the maintenance personnel performing the whole maintenance operation.
[0064] For example, when the automatic treatment of the drainage system fails, a maintenance notification information is sent to the maintenance personnel, and the maintenance notification information includes that the sewer is blocked, the address is XXX, the door code is 111111, and the expected time for coming for maintenance is from 17:00 to 19:00. When the maintenance personnel arrives at the entrance of the unit, the access control system automatically opens the door through linkage with the intelligent door lock.
[0065] Through the scheme provided in the embodiments of the present application, by sending the maintenance notification information to the maintenance personnel, the maintenance personnel can be prompted to actively come for maintenance, and the processing efficiency is improved.
[0066] In one example embodiment, after the above-mentioned video acquisition device in the building is controlled to acquire the picture of the maintenance personnel performing the maintenance operation, the method further comprises: in the case that it is determined that the drainage system has been successfully repaired, displaying a maintenance settlement interface; and in response to a confirmation operation performed on the maintenance settlement interface, prompting that the maintenance is completed.
[0067] Optionally, when the maintenance personnel successfully repair the drainage system and click on the "fault has been repaired" on the drainage system, the drainage system automatically presents a maintenance settlement interface, and sends the settlement interface to the user's mobile phone to prompt the user to settle. When the user settles, the drainage system displays a prompt information that the maintenance has been completed.
[0068] For example, when the maintenance personnel clears the fault of the drainage system, they will click on "fault has been repaired" on the drainage system. At this time, the drainage system automatically presents a maintenance settlement interface, and sends the settlement interface to the user's mobile phone to prompt the user to settle. When the user settles through the mobile phone, the drainage system displays a prompt information that the maintenance has been completed.
[0069] Through the scheme provided by the embodiment of the application, the settlement is automatically completed after the maintenance, and the processing efficiency is improved.
[0070] In order to better understand the process of the above drainage control method, the implementation method flow of the above drainage control will be described in combination with optional embodiments below, but not used to limit the technical scheme of the embodiment of the application.
[0071] In the embodiment, a drainage control method is provided, Figure 5 is a schematic diagram of the drainage control method according to the embodiment of the application, as Figure 5 shown, wherein the sensor, the controller and the alarm are located in the same drainage device, and specifically include the following steps:
[0072] Step S501, the sensor acquires drainage monitoring data, wherein the drainage monitoring data is data obtained by monitoring the water flow flowing through the sewer pipe in the drainage system;
[0073] Step S502, the sensor sends the drainage monitoring data to the server through the intelligent gateway, wherein the server runs a drainage control model, and the drainage control model is used to calculate and generate the drainage treatment strategy;
[0074] Step S503, in the case that the drainage monitoring data indicates that the drainage abnormal condition is reached, the server sends the drainage treatment strategy to the controller through the intelligent gateway;
[0075] Step S504, in the case that the drainage monitoring data indicates that the water pressure value of the water flow in the sewer pipe is greater than the first threshold value, the controller pours the dredging agent into the sewer pipe according to the drainage treatment strategy; in the case that the drainage monitoring data indicates that the water level value of the water flow in the sewer pipe is greater than the second threshold value, the controller performs pressure treatment on the sewer pipe according to the drainage treatment strategy;
[0076] Step S505, in the case that the drainage treatment fails, the alarm sends a drainage abnormal alarm information to the user;
[0077] Step S506, in the case of a failed drainage treatment, the controller sends a maintenance notification message to the maintenance personnel;
[0078] Step S507, in the case of a successful repair of the above drainage system, the controller sends a maintenance settlement information to the user.
[0079] For example, the preset data collection period is one minute, and the sensor acquires the water level value, water pressure value, and water flow direction of the sewer every minute. The sensor sends the acquired drainage monitoring data to the server through the intelligent gateway. The server stores a drainage control model, and the server inputs the drainage monitoring data into the drainage control model. When the water pressure, water level, and water flow direction in the drainage monitoring data do not meet the abnormal conditions, the drainage control model outputs “no abnormality”; when the water pressure (for example, 350 kpa) in the drainage monitoring data exceeds the set threshold value 300 kpa, the drainage control model outputs “putting the dredging agent into the sewer”; when the water level (for example, 0.6 m) in the drainage monitoring data exceeds the set threshold value 0.5 m or the water flow is reversed, the drainage control model outputs “pressurizing the tap water into the sewer”. The server sends the drainage control strategy output by the drainage control model to the controller. The controller puts the dredging agent into the sewer or performs pressurization treatment according to the drainage control strategy. When the automatic treatment of the drainage system fails, causing the sewer to back up, the alarm sends an alarm information to the user in time to prompt the user that the sewer is malfunctioning. The above alarm information can include display information, sound information, and the like. At this time, the drainage system also sends a maintenance notification message to the maintenance personnel, which includes the sewer blockage, Beijing Haidian District XXX Street XXX Community XX Building XX Unit XXX Door, 139XXXXXXXX, 17:00-19:00, access code 111111. When the maintenance personnel arrives at the unit door and inputs 111111, the access control system automatically opens the door. When the maintenance personnel clears the fault of the drainage system, he / she clicks “fault repaired” on the drainage system, at which time the drainage system automatically displays a maintenance settlement interface and sends the settlement interface to the user's mobile phone to prompt the user to settle. When the user settles through the mobile phone, the drainage system displays a prompt information that the maintenance has been completed.
[0080] In the embodiment of the present application, drainage monitoring data is acquired, wherein the drainage monitoring data is data obtained by monitoring water flow through a sewer pipe in a drainage system; and in a case where the drainage monitoring data indicates that a drainage abnormal condition is reached, the drainage system is controlled to drain water according to a drainage treatment strategy corresponding to the drainage abnormal condition, wherein the drainage treatment strategy is used to instruct to remove a fault factor corresponding to the drainage abnormal condition. That is, by analyzing the acquired drainage monitoring data, when the drainage monitoring data indicates that the drainage abnormal condition is reached, the drainage system is controlled to drain water according to the corresponding drainage treatment strategy, thereby solving the technical problem of not timely processing of drainage faults caused by manual processing of drainage faults by professionals in the related art, and thereby realizing automatic monitoring of a household drainage monitoring system to achieve timely processing of drainage faults of a household drainage system.
[0081] Through the above description of the embodiments, those skilled in the art can clearly understand that the method according to the above embodiments can be implemented by means of software and a necessary general hardware platform, and of course, it can also be implemented by hardware, but in many cases, the former is a better implementation. Based on such understanding, the technical solutions of the present application can be embodied in the form of a software product, which is stored in a storage medium (such as a ROM / RAM, a magnetic disk, or an optical disk), and includes a plurality of instructions for causing a terminal device (which can be a mobile phone, a computer, a server, or a network device) to execute the method of each embodiment of the present application.
[0082] Figure 6 is a structural block diagram of a drainage control system according to an embodiment of the present application; as shown in Figure 6 , it includes:
[0083] a sensor 601 configured to acquire drainage monitoring data, wherein the drainage monitoring data is data obtained by monitoring water flow through a sewer pipe in a drainage system;
[0084] a controller 602 configured to, in a case where the drainage monitoring data indicates that a drainage abnormal condition is reached, control the drainage system to drain water according to a drainage treatment strategy corresponding to the drainage abnormal condition, wherein the drainage treatment strategy is used to instruct to remove a fault factor corresponding to the drainage abnormal condition.
[0085] In the embodiment of the present application, drainage monitoring data is acquired, wherein the drainage monitoring data is data obtained by monitoring water flow through a sewer pipe in a drainage system; and in a case where the drainage monitoring data indicates that a drainage abnormal condition is reached, the drainage system is controlled to perform drainage according to a drainage treatment strategy corresponding to the drainage abnormal condition, wherein the drainage treatment strategy is used to instruct to remove a fault factor corresponding to the drainage abnormal condition. That is, by analyzing the acquired drainage monitoring data, when the drainage monitoring data indicates that the drainage abnormal condition is reached, the drainage system is controlled to perform drainage according to the corresponding drainage treatment strategy, thereby solving the technical problem of not timely processing caused by manual processing of drainage faults by professionals in the related art, and thereby realizing automatic monitoring of a household drainage monitoring system to achieve timely processing of drainage faults of a household drainage system.
[0086] In an example embodiment, the sensor comprises:
[0087] a water level processing component configured to drop a dredging agent into the sewer pipe according to the drainage treatment strategy;
[0088] a pressure processing component configured to perform pressure processing on the sewer pipe according to the drainage treatment strategy.
[0089] In an example embodiment, the controller comprises:
[0090] an alarm configured to issue drainage abnormal alarm information, wherein the drainage abnormal alarm information is used to prompt a user that a fault has occurred in the sewer pipe.
[0091] In an example embodiment, the drainage control system further comprises:
[0092] an intelligent gateway configured to send the drainage monitoring data to a server;
[0093] the server is configured to calculate and generate the drainage treatment strategy.
[0094] The embodiment of the present application also provides a drainage control device, as shown in Figure 7 The drainage control device comprises:
[0095] a monitoring module 701 configured to acquire drainage monitoring data, wherein the drainage monitoring data is data obtained by monitoring water flow through a sewer pipe in a drainage system;
[0096] The control module 702 is configured to control the drainage system to drain water according to a drainage treatment strategy corresponding to the drainage abnormal condition when the drainage monitoring data indicates that the drainage abnormal condition is reached, and the drainage treatment strategy is used to indicate to remove a fault factor corresponding to the drainage abnormal condition.
[0097] The embodiment of the present application further provides a storage medium, which comprises a stored program, and the program performs any of the above methods when executed.
[0098] Optionally, in the embodiment, the storage medium can be configured to store program code for performing the following steps:
[0099] S1, obtaining drainage monitoring data, wherein the drainage monitoring data is obtained by monitoring water flow in a sewer pipe of a drainage system;
[0100] S2, controlling the drainage system to drain water according to a drainage treatment strategy corresponding to the drainage abnormal condition when the drainage monitoring data indicates that the drainage abnormal condition is reached, and the drainage treatment strategy is used to indicate to remove a fault factor corresponding to the drainage abnormal condition.
[0101] The embodiment of the present application further provides an electronic device, which comprises a memory and a processor, the memory stores a computer program, and the processor is configured to execute the computer program to perform the steps in any of the above method embodiments.
[0102] Optionally, the electronic device can further comprise a transmission device and an input / output device, wherein the transmission device is connected with the processor, and the input / output device is connected with the processor.
[0103] Optionally, in the embodiment, the processor can be configured to execute the following steps through the computer program:
[0104] S1, obtaining drainage monitoring data, wherein the drainage monitoring data is obtained by monitoring water flow in a sewer pipe of a drainage system;
[0105] S2, controlling the drainage system to drain water according to a drainage treatment strategy corresponding to the drainage abnormal condition when the drainage monitoring data indicates that the drainage abnormal condition is reached, and the drainage treatment strategy is used to indicate to remove a fault factor corresponding to the drainage abnormal condition.
[0106] Optionally, in the embodiment, the storage medium can include, but is not limited to, a U disk, a read-only memory (ROM), a random access memory (RAM), a mobile hard disk, a magnetic disk or an optical disk, and various storage medium capable of storing program codes.
[0107] Optionally, the specific examples in the embodiment can refer to the examples described in the above embodiments and optional implementation manners, and the embodiment will not be described here.
[0108] Obviously, those skilled in the art should understand that the modules or steps of the present application described above can be realized by general computing devices, which can be concentrated on a single computing device or distributed on a network composed of multiple computing devices, and optionally, they can be realized by program codes executable by the computing devices, so that they can be stored in the storage devices and executed by the computing devices, and in some cases, the steps shown or described can be executed in different order, or they can be manufactured into individual integrated circuit modules, or multiple modules or steps among them can be manufactured into a single integrated circuit module. Thus, the present application is not limited to any specific combination of hardware and software.
[0109] The above only describes the preferred embodiments of the present application and is not intended to limit the present application. Those skilled in the art can make various modifications and changes to the present application. Any modification, equivalent replacement, improvement, etc. within the principles of the present application shall be included in the protection scope of the present application.
Claims
1. A drainage control method, characterized in that, include: Obtain drainage monitoring data, wherein the drainage monitoring data is data obtained by monitoring the water flow through the sewer pipes in the drainage system; When the drainage monitoring data indicates that drainage abnormality conditions have been reached, the drainage system is controlled to drain water according to the drainage treatment strategy corresponding to the drainage abnormality conditions. The drainage treatment strategy is used to indicate the removal of fault factors corresponding to the drainage abnormality conditions. The drainage abnormal conditions include: maximum water level threshold, maximum water pressure threshold, and backflow of water. Different drainage abnormal conditions correspond to different drainage treatment strategies, which include: when the water level exceeds the maximum water level threshold, adding a drain cleaner to the drain pipe; when the water pressure exceeds the maximum water pressure threshold or backflow of water occurs, pressurizing tap water to unclog the drain pipe.
2. The drainage control method according to claim 1, characterized in that, Controlling the drainage system to drain water according to the drainage treatment strategy corresponding to the drainage anomaly includes: According to the drainage treatment strategy described above, a drain cleaner is applied to the sewer pipe; The drainage pipes are pressurized according to the drainage treatment strategy described above.
3. The drainage control method according to claim 1, characterized in that, When controlling the drainage system to drain water according to the drainage treatment strategy corresponding to the drainage anomaly conditions, the method further includes: Issue a drainage abnormality alarm message, which is used to notify the user that the drainage pipe has malfunctioned.
4. The drainage control method according to claim 1, characterized in that, After acquiring the drainage monitoring data, the following is also included: The drainage monitoring data is sent to the server through a smart gateway. The server runs a drainage control model, which is used to calculate and generate the drainage treatment strategy. Receive the drainage treatment strategy returned by the server.
5. The drainage control method according to claim 1, characterized in that, After acquiring the drainage monitoring data, the following is also included: If the drainage monitoring data indicates that the water pressure in the sewer pipe is greater than a first threshold, it is determined that the drainage monitoring data has reached the drainage abnormality condition. If the drainage monitoring data indicates that the water level in the sewer pipe is greater than a second threshold, it is determined that the drainage monitoring data has reached the drainage abnormality condition.
6. The drainage control method according to claim 1, characterized in that, After acquiring the drainage monitoring data, the following is also included: If an odor is detected in the space connected by the drain pipe, the exhaust system in the space will be activated.
7. The drainage control method according to claim 1, characterized in that, After controlling the drainage system to drain water according to the drainage treatment strategy corresponding to the drainage anomaly conditions, the method further includes: Obtain the drainage treatment results; If the drainage treatment result indicates that the treatment has failed, a maintenance notification message is generated, wherein the maintenance notification message is used to notify maintenance personnel to carry out maintenance; Upon detecting that maintenance personnel have arrived at the entrance of the building where the drainage system is configured, the access control system is controlled to open the door, and the video capture equipment inside the building is controlled to capture footage of the maintenance personnel performing maintenance operations.
8. The drainage control method according to claim 7, characterized in that, After the video capture device within the building captures footage of the maintenance personnel performing maintenance operations, the system further includes: If the drainage system has been successfully repaired, the maintenance settlement interface will be displayed. In response to the confirmation operation performed on the repair settlement interface, a prompt will appear indicating that the repair is complete.
9. A drainage control system, characterized in that, include: A sensor is used to acquire collected drainage monitoring data, wherein the drainage monitoring data is data obtained by monitoring the water flow through the sewer pipes in the drainage system; A controller, connected to the sensor, is used to control the drainage system to drain water according to a drainage treatment strategy corresponding to the drainage anomaly condition when the drainage monitoring data indicates that an abnormal drainage condition has been reached. The drainage treatment strategy is used to indicate the removal of fault factors corresponding to the abnormal drainage condition. The abnormal drainage condition includes: a maximum water level threshold, a maximum water pressure threshold, and backflow of water. Different abnormal drainage conditions correspond to different drainage treatment strategies. The drainage treatment strategy includes: when the water level exceeds the maximum water level threshold, adding a drain cleaner to the drain pipe; when the water pressure exceeds the maximum water pressure threshold or backflow of water occurs, pressurizing tap water to unclog the drain pipe.
10. The drainage control system according to claim 9, characterized in that, The sensor includes at least one of the following: A water level treatment component is used to dispensing a drain cleaner into the sewer pipe in accordance with the drainage treatment strategy. A pressure treatment component for pressurizing the sewer pipe in accordance with the drainage treatment strategy.
11. The drainage control system according to claim 9, characterized in that, The controller includes: An alarm is used to issue a drainage abnormality alarm message, which is used to notify the user that the sewer pipe has malfunctioned.
12. The drainage control system according to claim 9, characterized in that, Also includes: The smart gateway is used to send the drainage monitoring data to the server; The server is used to calculate and generate the drainage treatment strategy.
13. A drainage control device, characterized in that, include: The monitoring module is used to acquire drainage monitoring data, wherein the drainage monitoring data is data obtained by monitoring the water flow through the sewer pipes in the drainage system; The control module is used to control the drainage system to drain water according to a drainage treatment strategy corresponding to the drainage abnormality condition when the drainage monitoring data indicates that an abnormal drainage condition has been reached. The drainage treatment strategy is used to instruct the removal of fault factors corresponding to the drainage abnormality condition. The drainage abnormality condition includes: a maximum water level threshold, a maximum water pressure threshold, and backflow of water. Different drainage abnormalities correspond to different drainage treatment strategies. The drainage treatment strategy includes: when the water level exceeds the maximum water level threshold, adding a drain cleaner to the drain pipe; when the water pressure exceeds the maximum water pressure threshold or backflow of water occurs, pressurizing tap water to unclog the drain pipe.
14. A computer-readable storage medium, characterized in that, The computer-readable storage medium includes a stored program, wherein the program, when executed, performs the method described in any one of claims 1 to 8.
15. An electronic device comprising a memory and a processor, characterized in that, The memory stores a computer program, and the processor is configured to execute the method described in any one of claims 1 to 8 through the computer program.
Citation Information
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