Equipment management energy-saving system based on Internet of Things
Through the IoT-based device management energy-saving system, comprehensive monitoring and regulation of plant equipment energy consumption is achieved, and the problem that traditional systems cannot conduct comprehensive energy consumption analysis is solved, energy consumption is reduced and detailed data analysis and equipment management functions are provided.
Patent Information
- Application Number
- CN202510211902.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-25
- Publication Date
- 2025-05-23
AI Technical Summary
Traditional energy monitoring systems cannot fully understand and regulate the energy consumption of factory equipment, and it is difficult to conduct comprehensive energy consumption analysis.
Provides an IoT-based device management energy-saving system, including client, communication module, acquisition module, security module, processing module, equipment control module, energy management module, visual module, alarm module and storage module, through which real-time monitoring and optimization of equipment energy consumption is achieved.
It realizes comprehensive monitoring and regulation of energy consumption of factory equipment, reduces energy consumption, provides detailed data analysis and equipment management functions, ensuring safe and convenient storage and viewing of data.
Smart Images

Figure CN120029153A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of the Internet of Things, and more specifically, to an energy-saving system for device management based on the Internet of Things. Background Art
[0002] With the rapid increase in energy consumption and the continuous rise in the unit price of energy, the globalization trend of the market has made market competition increasingly fierce; First, energy costs are usually an important expenditure in enterprise operations; Second, energy consumption is closely related to environmental impacts, especially for large energy-consuming factories; Third, with fierce market competition, enterprises need to continuously improve efficiency and reduce costs to maintain their competitive advantages; Therefore, it can be seen that the online monitoring of energy consumption is particularly important; Currently in factories, various types of energy are usually used, such as electricity, natural gas, fuel, and steam, etc., to meet the needs of production and operation; However, traditional energy monitoring systems often only monitor the energy of a single type of device and cannot provide a comprehensive understanding and adjustment of the energy consumption of factory devices, making it difficult to conduct comprehensive energy consumption analysis. Summary of the Invention
[0003] Aiming at the deficiencies of the existing technology, the purpose of the present invention is to provide an energy-saving system for device management based on the Internet of Things.
[0004] To achieve the above purpose, the present invention provides the following technical solutions: An energy-saving system for device management based on the Internet of Things includes a client. The signal output end of the client is signal-connected to a communication module. The signal input end of the communication module is signal-connected to a collection module. The signal output end of the communication module is signal-connected to a security module. The signal output end of the security module is signal-connected to a processing module. The signal output end of the processing module is signal-connected to a device control module. The signal output end of the device control module is signal-connected to an energy management module. The signal output end of the energy management module is signal-connected to a visualization module. The signal output end of the visualization module is signal-connected to the input end of the client.
[0005] The present invention is further provided as: The client includes a mobile terminal and a computer terminal. Mobile terminal users can monitor and control devices through mobile phones, and computer terminal users can provide more detailed data analysis and device management functions through a Web interface.
[0006] The present invention is further provided as: The security module includes an encryption module and an authentication module. The signal input end of the encryption module is signal-connected to the signal output end of the authentication module.
[0007] The present invention is further provided as: The device control module includes an automatic control module and a remote control module. The automatic control module can automatically adjust the operating state of the device according to the analysis result, and the remote control module can remotely manage the device through a mobile application or a Web interface.
[0008] The present invention is further configured as follows: the energy management module includes a monitoring module and an adjustment module. The monitoring module can monitor the energy consumption of the equipment in real time. The adjustment module can optimize the operation of the equipment according to the usage mode and external conditions, reduce energy consumption, and adjust the operating parameters of the equipment.
[0009] The present invention is further configured as follows: the signal output end of the monitoring module is signal-connected to the alarm module, and the signal output end of the alarm module is signal-connected to the signal input end of the client.
[0010] The present invention is further configured as follows: the signal input end of the client is connected to the storage module, and the signal input end of the storage module is connected to the signal output end of the alarm module and the visualization module. The present invention is further configured as follows: the storage module includes a local storage module and a cloud storage module, the local storage module can temporarily store sensor data, and the cloud storage module can preserve historical data for a long time.
[0011] The advantages of the present invention are: 1. The present invention is based on the device management energy-saving system of the Internet of Things. The energy management module can optimize the operation of the device according to the usage mode and external conditions through the adjustment module, reduce energy consumption, and adjust the operating parameters of the device.
[0012] 2. The device management and energy-saving system based on the Internet of Things of the present invention can transmit an alarm to the abnormal data detected by the monitoring module through the alarm module, so that the user can process the abnormal data in time.
[0013] 3. The device management and energy-saving system based on the Internet of Things of the present invention can organize data through a visualization module to make the data more intuitive to view, and can transmit the data to a client through the visualization module to allow the customer to view it.
[0014] 4. The device management and energy-saving system based on the Internet of Things of the present invention can store data through the storage module and facilitate users to retrieve and view it. The local storage module can temporarily store sensor data, and the cloud storage module can preserve historical data for a long time, which is convenient for users to analyze and trace back later, thereby making data preservation more convenient. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 It is a structural schematic diagram of the device management and energy-saving system based on the Internet of Things of the present invention. DETAILED DESCRIPTION
[0016] It should be noted that, in the absence of conflict, the embodiments and features in the embodiments of the present application may be combined with each other. The present invention will be described in detail below with reference to the accompanying drawings and in combination with the embodiments.
[0017] It should be noted that, unless otherwise specified, all technical and scientific terms used in this application have the same meanings as commonly understood by ordinary technicians in the technical field to which this application belongs.
[0018] Embodiment 1: See also Figure 1 The present invention provides the following technical solutions: an energy-saving device management system based on the Internet of Things, including a client, a signal output terminal of the client is connected to a communication module, and the communication module can be used for data transmission between devices and with a central system through wireless communication: such as Wi-Fi, Zigbee, LoRa, NB-IoT, etc., and wired communication: such as Ethernet, and makes data transmission more convenient. The signal input terminal of the communication module is connected to a collection module, through which the information of the device can be collected, and the environmental parameters such as the temperature, humidity, light, and energy consumption of the environment in which the device is located can be monitored. The signal output terminal of the communication module is connected to a security module, through which the data transmission can be protected, and the signal output terminal of the security module is connected to a signal input terminal of the communication module. A processing module is connected, through which preliminary data processing can be performed on the device side to reduce the transmission burden, and big data analysis can be performed in the cloud to provide deep insights and predictions. The signal output end of the processing module is connected to the device control module, through which the device can be controlled. The signal output end of the device control module is connected to the energy management module, through which the energy required for the device can be controlled. The signal output end of the energy management module is connected to the visualization module, through which the data can be organized to make the data more intuitive to view. The signal output end of the visualization module is connected to the input end signal of the client, and the data can be transmitted to the client through the visualization module for the customer to view.
[0019] The client includes mobile and computer terminals. Mobile users monitor and control devices through mobile phones, and computer users use the Web interface to provide more detailed data analysis and device management functions, and make it more convenient to view device management data.
[0020] Specifically, the security module includes an encryption module and an authentication module. The signal input end of the encryption module is connected to the signal output end of the authentication module. The encryption module encrypts the data and ensures the security of data transmission and storage. The authentication module performs identity authentication to prevent unauthorized access, thereby making data transmission more secure.
[0021] The device control module includes an automatic control module and a remote control module. The automatic control module can automatically adjust the device operation status according to the analysis results, and the remote control module can remotely manage the device through a mobile application or a web interface.
[0022] The energy management module includes a monitoring module and an adjustment module. The monitoring module can monitor the energy consumption of the equipment in real time. The adjustment module can optimize the equipment operation according to the usage mode and external conditions, reduce energy consumption, and adjust the operating parameters of the equipment.
[0023] The signal input terminal of the client is connected to a storage module, and the signal input terminal of the storage module is connected to the signal output terminal of the alarm module and the visualization module. The data can be stored through the storage module, and it is convenient for users to retrieve and view it.
[0024] Embodiment 2: Based on Embodiment 1: The device management and energy-saving system based on the Internet of Things includes a client, and the signal output terminal of the client is connected to a communication module. The communication module can be used for data transmission between devices and with a central system through wireless communication: such as Wi-Fi, Zigbee, LoRa, NB-IoT, etc., and wired communication: such as Ethernet, and makes data transmission more convenient. The signal input terminal of the communication module is connected to a collection module, through which the information of the device can be collected, and the environmental parameters such as temperature, humidity, light, energy consumption, etc. of the environment in which the device is located can be monitored. The signal output terminal of the communication module is connected to a security module, through which the data transmission can be protected, and the signal output terminal of the security module is connected to a processing module. The processing module can perform preliminary data processing on the device side to reduce the transmission burden, and at the same time perform big data analysis on the cloud to provide deep insights and predictions. The signal output end of the processing module is connected to the device control module, and the device can be controlled through the device control module. The signal output end of the device control module is connected to the energy management module, and the energy required for the device can be controlled through the energy management module. The signal output end of the energy management module is connected to the visualization module, and the data can be organized through the visualization module to make the data more intuitive to view. The signal output end of the visualization module is connected to the input end signal of the client, and the data can be transmitted to the client through the visualization module for the customer to view.
[0025] The client includes mobile and computer terminals. Mobile users monitor and control devices through mobile phones, and computer users use the Web interface to provide more detailed data analysis and device management functions, and make it more convenient to view device management data.
[0026] Specifically, the security module includes an encryption module and an authentication module. The signal input end of the encryption module is connected to the signal output end of the authentication module. The encryption module encrypts the data and ensures the security of data transmission and storage. The authentication module performs identity authentication to prevent unauthorized access, thereby making data transmission more secure.
[0027] The device control module includes an automatic control module and a remote control module. The automatic control module can automatically adjust the device operation status according to the analysis results, and the remote control module can remotely manage the device through a mobile application or a web interface.
[0028] The energy management module includes a monitoring module and an adjustment module. The monitoring module can monitor the energy consumption of the equipment in real time. The adjustment module can optimize the equipment operation according to the usage mode and external conditions, reduce energy consumption, and adjust the operating parameters of the equipment.
[0029] The signal output terminal of the monitoring module is connected to the alarm module, and the signal output terminal of the alarm module is connected to the signal input terminal of the client. The alarm module can transmit an alarm for abnormal data detected by the monitoring module, so that the user can process the abnormal data in time.
[0030] The signal input terminal of the client is connected to a storage module, and the signal input terminal of the storage module is connected to the signal output terminal of the alarm module and the visualization module. The data can be stored through the storage module, and it is convenient for users to retrieve and view it.
[0031] The storage module includes a local storage module and a cloud storage module. The local storage module can temporarily store sensor data, and the cloud storage module can preserve historical data for a long time, which is convenient for users' later analysis and backtracking, making data preservation more convenient.
[0032] Working principle: The device management and energy-saving system based on the Internet of Things. When in use, mobile users monitor and control the device through their mobile phones, and computer users use the Web interface: it provides more detailed data analysis and device management functions. The acquisition module can collect device information and monitor the temperature, humidity, light, energy consumption and other environmental parameters of the device environment. The security module encrypts the data through the encryption module and ensures the security of transmitted and stored data. The authentication module performs identity authentication to prevent unauthorized access and can protect data transmission, making data transmission safer. The processing module can perform preliminary data processing on the device side to reduce the transmission burden. At the same time, big data analysis is performed in the cloud to provide deep insights and predictions. The device control module can control the device so that the automatic control module can make adjustments based on the analysis results. Automatically adjust the operating status of the equipment. The remote control module can remotely manage the equipment through mobile applications or Web interfaces. The energy management module can optimize the equipment operation according to the usage mode and external conditions through the adjustment module, reduce energy consumption, and adjust the operating parameters of the equipment. The visualization module can organize the data to make the data more intuitive to view. The visualization module can transmit the data to the client for customers to view. The alarm module can transmit alarms to abnormal data detected by the monitoring module, so that users can process the abnormal data in time. The storage module can store data and facilitate users to retrieve and view it. The local storage module can temporarily store sensor data. The cloud storage module can save historical data for a long time, which is convenient for users to analyze and trace back later, making data storage more convenient.
[0033] Obviously, the above-described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work should fall within the scope of protection of the present invention.
[0034] It should be noted that the terms used herein are only for describing specific embodiments and are not intended to limit the exemplary embodiments according to the present application. As used herein, unless the context clearly indicates otherwise, the singular form is also intended to include the plural form. In addition, it should be understood that when the terms "comprise" and / or "include" are used in this specification, it indicates the presence of features, steps, operations, devices, components and / or combinations thereof.
[0035] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. For those skilled in the art, the present invention may have various modifications and variations. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.
Claims
1. The device management energy-saving system based on the Internet of Things includes a client, which is characterized by: The signal output end of the client is signal-connected with a communication module, the signal input end of the communication module is signal-connected with an acquisition module, the signal output end of the communication module is signal-connected with a security module, the signal output end of the security module is signal-connected with a processing module, the signal output end of the processing module is signal-connected with a device control module, the signal output end of the device control module is signal-connected with an energy management module, the signal output end of the energy management module is signal-connected with a visualization module, and the signal output end of the visualization module is signal-connected with the input end of the client.
2. The device management and energy-saving system based on the Internet of Things according to claim 1 is characterized in that: The client includes a mobile terminal and a computer terminal. Mobile terminal users monitor and control the device through a mobile phone, and computer terminal users provide more detailed data analysis and device management functions through a Web interface.
3. The device management and energy-saving system based on the Internet of Things according to claim 1 is characterized in that: The security module comprises an encryption module and an authentication module, and a signal input terminal of the encryption module is signal-connected with a signal output terminal of the authentication module.
4. The device management and energy-saving system based on the Internet of Things according to claim 1 is characterized in that: The device control module includes an automatic control module and a remote control module. The automatic control module can automatically adjust the device operation status according to the analysis results, and the remote control module can remotely manage the device through a mobile application or a Web interface.
5. The device management and energy-saving system based on the Internet of Things according to claim 4 is characterized in that: The energy management module includes a monitoring module and an adjustment module. The monitoring module can monitor the energy consumption of the equipment in real time. The adjustment module can optimize the operation of the equipment according to the usage mode and external conditions, reduce energy consumption, and adjust the operating parameters of the equipment.
6. The device management and energy-saving system based on the Internet of Things according to claim 5 is characterized in that: The signal output terminal of the monitoring module is signal-connected to the alarm module, and the signal output terminal of the alarm module is signal-connected to the signal input terminal of the client.
7. The device management and energy-saving system based on the Internet of Things according to claim 6 is characterized in that: The signal input end of the client is signal-connected with the storage module, and the signal input end of the storage module is signal-connected with the signal output ends of the alarm module and the visualization module.
8. The device management and energy-saving system based on the Internet of Things according to claim 7 is characterized in that: The storage module includes a local storage module and a cloud storage module. The local storage module can temporarily store sensor data, and the cloud storage module can store historical data for a long time.
Citation Information
Patent Citations
Energy management equipment monitoring platform
CN116257011A
Internet of Things equipment management system and method based on cloud edge collaboration
CN118101412A
Intelligent building equipment based on Internet of Things and equipment management system
CN118295279A
Intelligent energy storage system
CN118713293A
Home Network Control Node for Device Control and Energy Conservation
US20100194524A1