Intelligent household heating flow remote control system based on 5G Internet of Things

Through the 5G Internet of Things-based smart home heating flow remote control system, multi-source data is collected and analyzed in real time, precise adjustment and personalized control of home heating systems are achieved, and the problem of lack of intelligent monitoring and remote control in the existing technology is solved, and energy utilization efficiency and user experience are improved.

CN120276291APending Publication Date: 2025-07-08山东水利职业学院
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Patent Information

Application Number
CN202510195012.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-21
Publication Date
2025-07-08

AI Technical Summary

Technical Problem

The existing home heating systems lack intelligent real-time monitoring and remote control, and cannot fully utilize the high-speed and low-latency characteristics of 5G Internet of Things, resulting in the inability to achieve true remote precise control and collaborative work of multiple devices, and cannot meet personalized heating needs.

Method used

The 5G Internet of Things-based smart home heating flow remote control system is adopted, including data acquisition and transmission module, central control module, flow regulation module, environment perception module, user interaction and remote control module and fault detection and alarm module, to collect and analyze multi-source data in real time through the 5G network to achieve accurate traffic regulation and personalized control.

Benefits of technology

It realizes intelligent control of the home environment, ensures that the indoor temperature is always maintained at the best comfort state, reduces energy waste, improves energy utilization efficiency, provides personalized and highly flexible remote control, and improves user quality of life.

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Abstract

The invention relates to the technical field of smart home, in particular to a smart home heating flow remote control system based on the 5G Internet of Things, which comprises a data acquisition and transmission module, a central control module, a flow regulation module, an environment sensing module, a user interaction and remote control module and a fault detection and alarm module. Multi-source data in a home environment is collected in real time and is transmitted to the central control module through a 5G network for analysis and processing. The central control module calculates an optimal heating flow adjusting strategy through an optimization algorithm, controls the flow adjusting module to accurately adjust the flow of hot water or air in the heating system, dynamically adjusts an indoor temperature control strategy through the environment sensing module, monitors the operation state of the system in real time through the fault detection and alarm module, and gives an alarm when an abnormality is found. According to the invention, the energy utilization efficiency is improved, the household energy expenditure and carbon emission are reduced, and the energy-saving effect is obvious.
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Description

Technical Field

[0001] The present invention relates to the technical field of smart home, and particularly to a remote control system for smart home heating flow based on 5G Internet of Things. Background Art

[0002] With the rapid development of Internet of Things technology, smart home has gradually become an important part of modern family life. Especially in the aspect of home heating, traditional heating systems usually rely on basic functions such as timing switches and thermostats, lacking intelligent real-time monitoring and remote control.

[0003] Currently, existing heating systems mostly rely on local sensors and traditional wireless communication methods (such as Wi-Fi, Zigbee, etc.). These systems usually face problems such as incomplete signal coverage, insufficient control accuracy, and poor adaptability in different environments. In addition, existing technologies fail to fully utilize the high-speed and low-latency characteristics of 5G Internet of Things, resulting in the inability to achieve true remote precise control and multi-device collaborative work, and unable to meet personalized heating needs. Summary of the Invention

[0004] The present invention provides a remote control system for smart home heating flow based on 5G Internet of Things.

[0005] The remote control system for smart home heating flow based on 5G Internet of Things includes a data acquisition and transmission module, a central control module, a flow regulation module, an environment perception module, a user interaction and remote control module, and a fault detection and alarm module, wherein:

[0006] The data acquisition and transmission module, through temperature and humidity sensors, flow sensors, and current sensors installed in the heating system, real-time collects multi-source data in the home environment. The multi-source data includes temperature, humidity, power consumption, and hot water flow data, and transmits the collected multi-source data to the central control module in real time through the 5G Internet of Things network;

[0007] The central control module receives the multi-source data from the data acquisition and transmission module, combines the parameters preset by the user (such as target comfort level, energy-saving requirements, etc.), and analyzes and processes the multi-source data through the built-in algorithm to calculate the optimal heating flow regulation strategy;

[0008] The flow regulation module, according to the regulation strategy calculated by the central control module, controls the hot water flow or air heating flow in the home heating system to achieve precise regulation. The flow regulation module includes an intelligent regulating valve and a pump, receives instructions from the central control module through the 5G network, and executes specific regulation actions;

[0009] The environmental perception module installs environmental sensors outdoors, including temperature, humidity, and wind speed, to collect real-time data on external environmental changes and transmit the data to the central control module for adjusting the indoor heating strategy and optimizing energy efficiency.

[0010] The user interaction and remote control module is used to provide an interaction interface for users through a smartphone or tablet, enabling users to view the home environment and the status of the heating system in real time, and set the heating mode and comfortable temperature range.

[0011] The fault detection and alarm module monitors each module of the system in real time, detects whether there are equipment failures or abnormal operating states, and sends fault information or alarm signals to the user device through the 5G Internet of Things network to prompt the user for maintenance or repair.

[0012] Optionally, the data collection and transmission module collects multi-source data in real time through multiple temperature and humidity sensors, flow sensors, and current sensors configured in various areas of the home, and transmits the collected multi-source data to the central control module for processing and analysis through the 5G Internet of Things network. The data transmission uses low-latency 5G communication technology to ensure the real-time and accuracy of the data.

[0013] Optionally, the central control module includes a data analysis unit, a decision-making unit, and an optimization algorithm unit, where:

[0014] The data analysis unit is used to process multi-source data from the data collection and transmission module and preprocess the data, including denoising, standardization, and outlier detection.

[0015] The decision-making unit calculates the optimal heating flow control strategy based on the processed data, combined with the user's preset comfort requirements, energy-saving goals, and indoor and outdoor environmental data.

[0016] The optimization algorithm unit continuously optimizes the decision-making strategy by adopting an artificial intelligence-based algorithm to improve the energy utilization efficiency and comfort of the system.

[0017] Optionally, the flow regulation module includes an intelligent regulating valve and a pump for regulating the hot water flow or the air heating flow, where;

[0018] The intelligent regulating valve precisely controls the flow according to the regulation instructions sent by the central control module.

[0019] The pump adjusts the water circulation speed according to the real-time collected flow data to ensure the consistency of the hot water flow in the heating system with the regulation strategy, thereby avoiding overheating or overcooling phenomena and ensuring the efficient utilization of energy.

[0020] Optionally, the environmental perception module includes an outdoor temperature sensor, a humidity sensor, and a wind speed sensor. The sensors collect external environmental data in real time and transmit the data to the central control module through a 5G Internet of Things network;

[0021] The central control module adjusts the indoor heating strategy according to the external environmental data to improve energy use efficiency and reduce energy waste. The specific adjustment strategy includes automatically adjusting the indoor temperature and humidity according to the changes in the outside air temperature, humidity, and wind speed.

[0022] Optionally, the user interaction and remote control module provides a visual home environment status interface through a smart terminal such as a smartphone or a tablet. Users can view various data of the home environment in real time, including indoor temperature and humidity, hot water flow rate, and power consumption;

[0023] The interaction interface allows users to manually adjust the heating system parameters according to personal needs, set the target temperature, comfort range, and energy-saving mode, and supports the remote control function, enabling users to adjust the home heating system anytime and anywhere.

[0024] Optionally, the fault detection and alarm module includes a real-time monitoring unit, a fault diagnosis unit, and an alarm unit, where;

[0025] The real-time monitoring unit is used to monitor the operating status of each module in the heating system, including temperature, humidity, flow rate, and power consumption;

[0026] The fault diagnosis unit analyzes the operating status of the system in real time according to the monitoring data, identifies potential faults or abnormal conditions, and predicts the occurrence of system faults through intelligent algorithms;

[0027] When the alarm unit detects a system fault or abnormal state, it sends the fault information or alarm signal to the user device through the 5G Internet of Things network to remind the user to perform maintenance or repair.

[0028] Optionally, the central control module adopts an adaptive control algorithm to adjust the heating flow rate adjustment strategy according to real-time environmental changes and home usage patterns. The adaptive control algorithm can dynamically optimize the system according to historical data and user feedback to improve the response speed and energy efficiency of the heating system and achieve continuous optimization over a long period of time.

[0029] Optionally, the flow rate adjustment module is connected to the central control module in real time through a 5G network to ensure accurate adjustment of the heating flow rate. The adjustment module maintains data synchronization with the central control module through a bidirectional communication interface to ensure the timeliness and accuracy of the adjustment action;

[0030] The flow regulation module automatically adjusts the flow regulation strategy based on the target temperature set by the user and the actual temperature difference to ensure the comfort of the indoor environment.

[0031] Advantages of the present invention:

[0032] The present invention realizes the intelligent control of the home heating system based on 5G Internet of Things technology, and can monitor and optimize multi-source data such as temperature and humidity, power consumption, and hot water flow in the home environment in real time. Through accurate data collection and analysis, the system can dynamically adjust the heating flow and the comfortable temperature range to ensure that the indoor temperature always remains in the best comfortable state, while minimizing energy waste. Especially with the cooperation of the environmental perception module, the system can automatically adjust the indoor heating strategy according to changes in the external environment (such as temperature, humidity, and wind speed), thereby improving energy utilization efficiency, reducing household energy expenses and carbon emissions, and having significant energy-saving effects.

[0033] In the present invention, for the user interaction and remote control module, users can view various data of the home environment in real time through terminals such as smartphones and tablets, and set the target temperature, comfort range, and energy-saving mode according to personal needs. The system supports remote control to ensure that users can control the operation status of the heating system at any time and from any location. This personalized and highly flexible control method enables users to enjoy a higher quality of life and improve home comfort. At the same time, the intelligent characteristics of the system enable users to avoid frequent manual adjustment of settings, reduce operation complexity, and greatly improve the convenience of use. Description of the Drawings

[0034] In order to more clearly illustrate the technical solutions in the present invention or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the drawings in the following description are only those of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0035] Figure 1 It is a schematic diagram of the system flow of the embodiment of the present invention. Detailed Embodiments

[0036] The following will describe the present invention in detail in combination with the drawings and specific embodiments. At the same time, it should be noted here that in order to make the embodiments more detailed, the following embodiments are the best and preferred embodiments. For some well-known technologies, those skilled in the art can also adopt other alternative methods for implementation; and the drawings are only for more specific description of the embodiments, and are not intended to specifically limit the present invention.

[0037] It should be noted that in the specification, terms such as "an embodiment", "embodiment", "exemplary embodiment", "some embodiments", etc. indicate that the described embodiments may include specific features, structures, or characteristics, but not necessarily every embodiment includes such specific features, structures, or characteristics. Additionally, when describing a specific feature, structure, or characteristic in combination with an embodiment, implementing such a feature, structure, or characteristic in combination with other embodiments (whether explicitly described or not) should be within the knowledge of those skilled in the relevant art.

[0038] Generally, terms can be understood at least in part from their use in context. For example, at least in part depending on the context, the term "one or more" as used herein can be used to describe any feature, structure, or characteristic in a singular sense, or can be used to describe a combination of features, structures, or characteristics in a plural sense. Additionally, the term "based on" can be understood as not necessarily intended to convey a set of exclusive factors, but rather can alternatively, at least in part depending on the context, allow for the existence of other factors that may not be explicitly described.

[0039] As Figure 1 shown, the intelligent home heating flow remote control system based on 5G Internet of Things includes a data acquisition and transmission module, a central control module, a flow regulation module, an environment perception module, a user interaction and remote control module, and a fault detection and alarm module, where:

[0040] The data acquisition and transmission module, through temperature and humidity sensors, flow sensors, and current sensors installed in the heating system, real-time collects multi-source data in the home environment. The multi-source data includes temperature, humidity, power consumption, and hot water flow data, and transmits the collected multi-source data to the central control module in real-time through the 5G Internet of Things network;

[0041] The central control module receives the multi-source data from the data acquisition and transmission module, combines the parameters preset by the user (such as target comfort level, energy-saving requirements, etc.), and analyzes and processes the multi-source data through the built-in algorithm to calculate the optimal heating flow regulation strategy;

[0042] The flow regulation module, according to the regulation strategy calculated by the central control module, controls the hot water flow or air heating flow in the home heating system to achieve precise regulation. The flow regulation module includes an intelligent regulating valve and a pump, receives instructions from the central control module through the 5G network, and executes specific regulation actions;

[0043] The environment perception module, by installing environment sensors outdoors, including temperature, humidity, and wind speed, real-time collects external environment change data and transmits the data to the central control module for adjusting the indoor heating strategy and optimizing energy efficiency;

[0044] The user interaction and remote control module is used to provide an interactive interface to the user through a smartphone or tablet, enabling the user to view the home environment and the status of the heating system in real time, and set the heating mode and the comfortable temperature range.

[0045] The fault detection and alarm module monitors each module of the system in real time, detects whether there are equipment failures or abnormal operating states, and sends fault information or alarm signals to the user device through the 5G Internet of Things network to prompt the user for maintenance or repair.

[0046] The data acquisition and transmission module collects multi-source data in real time through multiple temperature and humidity sensors, flow sensors, and current sensors configured in various areas of the home, and transmits the collected multi-source data to the central control module for processing and analysis through the 5G Internet of Things network. The data transmission uses low-latency 5G communication technology to ensure the real-time and accuracy of the data.

[0047] The central control module includes a data analysis unit, a decision-making unit, and an optimization algorithm unit, where:

[0048] The data analysis unit is used to process the multi-source data from the data acquisition and transmission module and preprocess the data, including denoising, standardization, and outlier detection.

[0049] Based on the processed data, the decision-making unit calculates the optimal heating flow control strategy in combination with the user's preset comfort requirements, energy-saving goals, and indoor and outdoor environmental data.

[0050] The optimization algorithm unit continuously optimizes the decision-making strategy by adopting artificial intelligence-based algorithms to improve the energy utilization efficiency and comfort of the system.

[0051] The flow regulation module includes an intelligent regulating valve and a pump, which are used to regulate the hot water flow or the air heating flow, where:

[0052] The intelligent regulating valve precisely controls the flow according to the regulation instructions sent by the central control module.

[0053] The pump adjusts the water circulation speed according to the real-time collected flow data to ensure the consistency of the hot water flow in the heating system with the regulation strategy, thereby avoiding overheating or overcooling phenomena and ensuring the efficient use of energy.

[0054] The environmental perception module includes an outdoor temperature sensor, a humidity sensor, and a wind speed sensor. The sensors collect external environmental data in real time and transmit the data to the central control module through the 5G Internet of Things network.

[0055] The central control module adjusts the indoor heating strategy according to the external environment data to improve energy use efficiency and reduce energy waste. The specific adjustment strategies include automatically adjusting the indoor temperature and humidity according to the changes in the outside air temperature, humidity, and wind speed.

[0056] The user interaction and remote control module provides a visual home environment status interface through intelligent terminals such as smartphones or tablets. Users can view various data of the home environment in real time, including indoor temperature and humidity, hot water flow rate, and power consumption.

[0057] The interaction interface allows users to manually adjust the heating system parameters according to personal needs, set the target temperature, comfort range, and energy-saving mode, and supports the remote control function, enabling users to adjust the home heating system anytime and anywhere.

[0058] The fault detection and alarm module includes a real-time monitoring unit, a fault diagnosis unit, and an alarm unit, where;

[0059] The real-time monitoring unit is used to monitor the operating status of each module in the heating system, including temperature, humidity, flow rate, and power consumption.

[0060] The fault diagnosis unit analyzes the operating status of the system in real time based on the monitoring data, identifies potential faults or abnormal conditions, and predicts the occurrence of system faults through intelligent algorithms.

[0061] When the alarm unit detects a system fault or abnormal state, it sends the fault information or alarm signal to the user device through the 5G Internet of Things network to remind the user to perform maintenance or repair.

[0062] The central control module adopts an adaptive control algorithm to adjust the heating flow rate adjustment strategy according to the real-time environmental changes and home usage patterns. The adaptive control algorithm can dynamically optimize the system based on historical data and user feedback to improve the response speed and energy efficiency of the heating system and achieve continuous optimization over a long period.

[0063] The flow rate adjustment module is connected to the central control module in real time through the 5G network to ensure the precise adjustment of the heating flow rate. The adjustment module maintains data synchronization with the central control module through a bidirectional communication interface to ensure the timeliness and accuracy of the adjustment actions.

[0064] The flow rate adjustment module automatically adjusts the flow rate adjustment strategy based on the target temperature set by the user and the actual temperature difference to ensure the comfort of the indoor environment.

[0065] The present invention encompasses any alternatives, modifications, equivalent methods, and solutions within the spirit and scope of the present invention. For the public to have a thorough understanding of the present invention, specific details are described in detail in the following preferred embodiments of the present invention. However, those skilled in the art can fully understand the present invention even without the description of these details. Additionally, well-known methods, processes, procedures, components, and circuits, etc., are not described in detail to avoid unnecessary confusion to the essence of the present invention.

[0066] The above description is only a preferred embodiment of the present invention. It should be noted that for those of ordinary skill in the art, without departing from the principle of the present invention, several improvements and refinements can be made, and these improvements and refinements should also be regarded as within the protection scope of the present invention.

Claims

1. The intelligent home heating traffic remote control system based on 5G Internet of Things is characterized in that It includes a data acquisition and transmission module, a central control module, a flow regulation module, an environmental perception module, a user interaction and remote control module, and a fault detection and alarm module. Among them: The data acquisition and transmission module uses temperature and humidity sensors, flow sensors, and current sensors installed in the heating system to collect multi-source data in the home environment in real time. The multi-source data includes temperature, humidity, power consumption, and hot water flow data, and transmits the collected multi-source data to the central control module in real time through the 5G Internet of Things network; The central control module receives multi-source data from the data acquisition and transmission module, combines the parameters preset by the user, and analyzes and processes the multi-source data through the built-in algorithm to calculate the optimal heating flow regulation strategy; The flow regulation module controls the hot water flow or air heating flow in the home heating system according to the regulation strategy calculated by the central control module to achieve precise regulation. The flow regulation module includes an intelligent regulating valve and a pump, receives instructions from the central control module through the 5G network, and executes specific regulation actions; The environmental perception module installs environmental sensors outdoors, including temperature, humidity, and wind speed, to collect external environmental change data in real time, and transmits the data to the central control module for adjusting the indoor heating strategy and optimizing energy efficiency; The user interaction and remote control module is used to provide an interaction interface for the user through a smartphone or tablet computer, so that the user can view the home environment and the status of the heating system in real time, and set the heating mode and comfortable temperature range; The fault detection and alarm module monitors each module of the system in real time, detects whether there are equipment failures or abnormal operating states, and sends fault information or alarm signals to the user equipment through the 5G Internet of Things network to prompt the user to perform maintenance or repair.

2. The remote control system for smart home heating flow based on 5G Internet of Things according to claim 1, characterized in that, The data acquisition and transmission module uses multiple temperature and humidity sensors, flow sensors, and current sensors configured in each area of the home to collect multi-source data in real time, and transmits the collected multi-source data to the central control module for processing and analysis through the 5G Internet of Things network.

3. The remote control system for smart home heating traffic based on 5G Internet of Things according to claim 2, wherein The central control module includes a data analysis unit, a decision-making unit, and an optimization algorithm unit. Among them: The data analysis unit is used to process multi-source data from the data acquisition and transmission module and preprocess the data, including denoising, standardization, and outlier detection; The decision-making unit calculates the optimal heating flow control strategy based on the processed data, combined with the comfort requirements, energy-saving goals, and indoor and outdoor environmental data preset by the user; The optimization algorithm unit continuously optimizes the decision-making strategy by adopting an artificial intelligence-based algorithm to improve the energy utilization efficiency and comfort of the system.

4. The remote control system for smart home heating flow based on 5G Internet of Things according to claim 3, wherein, The flow regulation module includes an intelligent regulating valve and a pump for regulating the hot water flow or air heating flow. Among them; The intelligent regulating valve precisely controls the flow according to the regulation instructions sent by the central control module; The pump adjusts the water circulation speed according to the flow data collected in real time.

5. The remote control system for smart home heating flow based on 5G Internet of Things according to claim 4, characterized in that, The environmental perception module includes an outdoor temperature sensor, a humidity sensor, and a wind speed sensor. The sensors collect external environmental data in real time and transmit the data to the central control module through the 5G Internet of Things network; The central control module adjusts the indoor heating strategy according to the external environmental data. The specific adjustment strategies include automatically adjusting the indoor temperature and humidity according to the changes in the external temperature, humidity, and wind speed.

6. The remote control system for smart home heating flow based on 5G Internet of Things according to claim 5, characterized in that, The user interaction and remote control module provides a visual home environment status interface through intelligent terminals such as smartphones or tablets. Users can view various data of the home environment in real time, including indoor temperature and humidity, hot water flow, and power consumption. The interaction interface allows users to manually adjust the heating system parameters according to personal needs, set the target temperature, comfort range, and energy-saving mode, and supports the remote control function.

7. The remote control system for smart home heating flow based on 5G Internet of Things according to claim 6, characterized in that The fault detection and alarm module includes a real-time monitoring unit, a fault diagnosis unit, and an alarm unit, where; The real-time monitoring unit is used to monitor the operating status of each module in the heating system, including temperature, humidity, flow, and power consumption. The fault diagnosis unit analyzes the operating status of the system in real time based on the monitoring data, identifies potential faults or abnormal conditions, and predicts the occurrence of system faults through intelligent algorithms. When detecting a system fault or abnormal state, the alarm unit sends the fault information or alarm signal to the user device through the 5G Internet of Things network.

8. The remote control system for smart home heating flow based on 5G Internet of Things according to claim 7, characterized in that, The central control module adopts an adaptive control algorithm to adjust the heating flow regulation strategy according to the real-time environmental changes and home usage patterns. The adaptive control algorithm can dynamically optimize the system based on historical data and user feedback to improve the response speed and energy efficiency of the heating system and achieve continuous optimization over a long period.

9. The remote control system for the smart home heating flow based on the 5G Internet of Things according to claim 8, wherein, The flow regulation module is connected to the central control module in real time through the 5G network to ensure the accurate regulation of the heating flow. The regulation module maintains data synchronization with the central control module through a bidirectional communication interface to ensure the timeliness and accuracy of the regulation action. The flow regulation module automatically adjusts the flow regulation strategy based on the target temperature set by the user and the actual temperature difference to ensure the comfort of the indoor environment.

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