Intelligent control system applied to socket

By designing an intelligent control system applied to sockets, the problem that students in open laboratories may forget to lose power is solved, and data statistics and management of laboratory equipment use are realized without networking, reducing safety risks.

CN119937386APending Publication Date: 2025-05-06HEBEI UNIV OF SCI & TECH
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Patent Information

Application Number
CN202510017449.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-01-06
Publication Date
2025-05-06

AI Technical Summary

Technical Problem

The power consumption management of existing open laboratories cannot be managed and monitored separately for each countertop, resulting in students who may forget to lose power and it is difficult to conduct effective data statistics and management without Internet connection.

Method used

An intelligent control system applied to sockets is designed, including a power supply start unit, a device power supply unit, a data acquisition unit, a device management unit, a data transmission unit, an alarm feedback unit and a core processing unit. Through these modules, intelligent control and data management of laboratory power equipment are realized.

Benefits of technology

It effectively avoids students forgetting to lose power, reduces safety risks, and realizes data statistics and management of laboratory equipment use without networking.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an intelligent control system applied to a socket, and belongs to the technical field of laboratory power consumption management. Comprising a power supply starting unit, an equipment power supply unit, a data acquisition unit, an equipment management unit, a data transmission unit, an alarm feedback unit and a core processing unit. After the alarm sending interval time is preset, the alarm sending module sends an alarm every preset alarm sending interval time, and the instruction generation module transmits data of related results to the core processing unit according to whether feedback is received or not within one minute; and if feedback is received within one minute, the instruction generation module generates an instruction for continuing power supply, otherwise, the instruction generation module generates an instruction for stopping power supply, so that the situation that power is forgotten to be cut off after the laboratory is used can be avoided, and potential safety hazards caused by forgotten power supply are reduced.
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Description

Technical Field

[0001] The invention relates to the technical field of laboratory electricity management, and in particular to an intelligent control system applied to sockets. Background Art

[0002] The electricity management of existing open laboratories is unified, and it is impossible to manage and monitor each electrical device on each table separately. When students use open laboratories, they may forget to disconnect the power socket when leaving the laboratory table, which is difficult to effectively manage through other management methods. In addition, some laboratories do not have Internet access, and it is impossible to perform effective data statistics on students' use of laboratory equipment. Summary of the invention

[0003] Purpose of the invention: The purpose of the present invention is to provide an intelligent control system for sockets; it can solve the problem that students forget to disconnect the power socket when leaving the laboratory table during the use of an open laboratory.

[0004] Technical solution: To solve the above technical problems, according to one aspect of the present invention, more specifically, an intelligent control system applied to a socket includes: a power supply start unit, a device power supply unit, a data acquisition unit, a device management unit, a data transmission unit, an alarm feedback unit and a core processing unit;

[0005] Power supply start unit: used to generate secret keys and passwords, and control the equipment power supply unit to supply power to the laboratory electrical equipment after the secret keys and passwords are correctly entered, and at the same time control the equipment power supply unit to stop supplying power to the laboratory electrical equipment according to the instructions issued by the core processing unit;

[0006] Equipment power supply unit: used to supply power to the electrical equipment in the laboratory;

[0007] Data acquisition unit: used to collect various data required by the intelligent control system;

[0008] Equipment management unit: used to add, delete and input rated power of laboratory electrical equipment;

[0009] Data transmission unit: used to transmit various data required by the intelligent control system collected by the data acquisition unit, the addition and deletion of laboratory electrical equipment by the equipment management unit, the rated power of the electrical equipment input, and the feedback data received by the alarm feedback unit to the core processing unit;

[0010] Alarm feedback unit: used to preset the interval time for alarm issuance, issue alarms based on the set alarm time, and receive behavioral feedback on the alarm issuance;

[0011] Core processing unit: used to receive various data required by the intelligent control system collected by the data acquisition unit, the addition, deletion and input of the rated power of the laboratory electrical equipment by the equipment management unit, and the feedback data received by the alarm feedback unit, analyze and process the received data, and generate corresponding instructions according to the analysis and processing results.

[0012] Furthermore, the power supply start-up unit includes: a secret key generation module, a secret key input module, a password generation module, a password input module and a power supply control module;

[0013] Key generation module: used to generate a random key after the system is powered on;

[0014] Key input module: used to input the random key generated by the key generation module;

[0015] Password generation module: used to generate a password after the random key generated by the key generation module is input into the key input module;

[0016] Password input module: used to input the password generated by the password generation module;

[0017] Power supply control module: used to control the device power supply unit to supply power to the laboratory electrical equipment after the correct password is entered in the password input module, and to control the device power supply unit to cut off the power to the laboratory electrical equipment after receiving the instruction generated by the core processing unit.

[0018] Furthermore, the data acquisition unit includes: a voltage acquisition module and a current acquisition module;

[0019] Voltage collection module: used to collect the voltage used during the use of laboratory sockets in real time;

[0020] Current collection module: used to collect the current used by the laboratory socket in real time during use.

[0021] Furthermore, the alarm feedback unit includes: a time preset module, an alarm issuing module and a feedback receiving module;

[0022] Time preset module: used to preset the interval time for alarm issuance;

[0023] Alarm issuing module: used to issue an alarm based on the alarm issuing interval preset by the time preset module;

[0024] Feedback receiving module: used to receive behavioral feedback on the alarms issued by the alarm issuing module.

[0025] Furthermore, the core processing unit includes: a data receiving module, an analysis and processing module, and an instruction generating module;

[0026] Data receiving module: used to receive various data required by the intelligent control system collected by the data acquisition unit, the addition and deletion of laboratory electrical equipment by the equipment management unit, the rated power of the electrical equipment input, and the behavioral feedback data received by the alarm feedback unit for the issuance of an alarm;

[0027] Analysis and processing module: used for analyzing and processing various data required by the intelligent control system collected by the data collection unit received by the data receiving module, and the rated power of the electrical equipment added, deleted, and input by the equipment management unit to obtain the analysis and processing results;

[0028] Instruction generation module: used to generate corresponding instructions based on the data of behavioral feedback on the issuance of an alarm received by the data receiving module and the analysis and processing results of the analysis and processing module.

[0029] Furthermore, after the time preset module pre-sets the interval for issuing the alarm, the alarm issuing module issues an alarm at every preset interval for issuing the alarm, and the feedback receiving module transmits the data of the relevant results to the instruction generation module of the core processing unit according to whether the feedback is received within one minute. If the feedback is received within one minute, the instruction generation module generates an instruction to continue power supply; otherwise, the instruction generation module generates an instruction to stop power supply.

[0030] Furthermore, the analysis and processing module determines whether there is illegal use of electricity based on the collected voltage and current used during the use of the laboratory socket and the rated power of the laboratory electrical equipment:

[0031] like:

[0032]

[0033] If the situation of illegal electricity use exists, the instruction generation module will issue a power supply stop instruction according to the analysis and processing results. Otherwise, it is determined that there is no illegal electricity use, and the instruction generation module will not generate a power supply stop instruction. i is the rated power of each laboratory electrical equipment, n is the number of laboratory electrical equipment, U is the real-time voltage of the laboratory socket during use, and I is the real-time current of the laboratory socket during use.

[0034] Beneficial effect: After the interval time for alarm issuance is preset, the alarm issuance module issues an alarm at the preset interval time for alarm issuance, and the feedback receiving transmits the data of the relevant results to the instruction generation module of the core processing unit according to whether the feedback is received within one minute. If the feedback is received within one minute, the instruction generation module generates an instruction to continue power supply, otherwise, the instruction generation module generates an instruction to stop power supply, which can avoid the situation of forgetting to turn off the power after using the laboratory, thereby reducing the safety hazards caused by forgetting to turn off the power. At the same time, it can determine whether there is illegal use of electricity based on the voltage and current used during the use of the collected laboratory sockets and the rated power of the laboratory electrical equipment. When it is determined that there is illegal use of electricity, the instruction generation module issues a stop power supply instruction based on the analysis and processing results, thereby avoiding the safety hazards caused by illegal use of electricity. Through the intelligent control system, data statistics and management of students' use of laboratory equipment can be achieved even without networking. BRIEF DESCRIPTION OF THE DRAWINGS

[0035] Figure 1 It is a schematic diagram of the system structure;

[0036] Figure 2 It is a schematic diagram of the system principle. DETAILED DESCRIPTION

[0037] In order to make the technical solution of the present invention clearer, the present invention is further described in detail below with reference to the accompanying drawings and specific embodiments.

[0038] Example 1

[0039] First, the key generation module, key input module, password generation module, and password input module of the power supply start unit are used to generate and input keys and generate and input passwords. After the password is successfully entered, the laboratory electrical equipment is powered on through power supply control. At the same time, the laboratory electrical equipment can be added, deleted, and the rated power input of the electrical equipment can be performed through the equipment management unit.

[0040] Then, the voltage acquisition module and the current acquisition module of the data acquisition unit collect the voltage and current used during the use of the laboratory socket in real time. At the same time, the interval for issuing the alarm can be preset through the time preset module of the alarm feedback unit. The alarm issuing module issues an alarm at the preset interval. The feedback receiving module transmits the data of the relevant results to the instruction generation module of the core processing unit according to whether the feedback is received within one minute.

[0041] After the time preset module pre-sets the interval for issuing the alarm, the alarm issuing module issues an alarm at the preset interval for issuing the alarm. The feedback receiving module transmits the data of the relevant results to the instruction generation module of the core processing unit according to whether the feedback is received within one minute. If the feedback is received within one minute, the instruction generation module generates an instruction to continue power supply. Otherwise, the instruction generation module generates an instruction to stop power supply.

[0042] Then, the data receiving module of the core processing unit receives the various data required for the intelligent control system collected by the data acquisition unit, the rated power of the electrical equipment added, deleted and input by the equipment management unit for the laboratory electrical equipment, and the data of behavioral feedback on the issuance of the alarm received by the alarm feedback unit, and analyzes and processes the various data required for the intelligent control system collected by the data acquisition unit and the rated power of the electrical equipment added, deleted and input by the equipment management unit received by the data receiving module of the analysis and processing module to obtain the analysis and processing results. At the same time, the instruction generation module generates corresponding instructions according to the analysis and processing results of the analysis and processing module.

[0043] The analysis and processing module determines whether there is illegal electricity use based on the collected voltage and current used during the use of the laboratory socket and the rated power of the laboratory electrical equipment:

[0044] like:

[0045]

[0046] If the situation of illegal electricity use exists, the instruction generation module will issue a power supply stop instruction according to the analysis and processing results. Otherwise, it is determined that there is no illegal electricity use, and the instruction generation module will not generate a power supply stop instruction. i is the rated power of each laboratory electrical equipment, n is the number of laboratory electrical equipment, U is the real-time voltage of the laboratory socket during use, and I is the real-time current of the laboratory socket during use.

[0047] The above-mentioned embodiments only express several implementation methods of the present invention, and the description thereof is relatively specific and detailed, but it cannot be understood as limiting the scope of the patent of the present invention. It should be pointed out that, for ordinary technicians in this field, several variations and improvements can be made without departing from the concept of the present invention, which all belong to the protection scope of the present invention. Therefore, the protection scope of the patent of the present invention shall be subject to the attached claims.

Claims

1. An intelligent control system applied to a socket, characterized in that: include: Power supply start-up unit, equipment power supply unit, data acquisition unit, equipment management unit, data transmission unit, alarm feedback unit and core processing unit; Power supply start unit: used to generate secret keys and passwords, and control the equipment power supply unit to supply power to the laboratory electrical equipment after the secret keys and passwords are correctly entered, and at the same time control the equipment power supply unit to stop supplying power to the laboratory electrical equipment according to the instructions issued by the core processing unit; Equipment power supply unit: used to supply power to the electrical equipment in the laboratory; Data acquisition unit: used to collect various data required by the intelligent control system; Equipment management unit: used to add, delete and input rated power of laboratory electrical equipment; Data transmission unit: used to transmit various data required by the intelligent control system collected by the data acquisition unit, the addition and deletion of laboratory electrical equipment by the equipment management unit, the rated power of the electrical equipment input, and the feedback data received by the alarm feedback unit to the core processing unit; Alarm feedback unit: used to preset the interval time for alarm issuance, issue alarms based on the set alarm time, and receive behavioral feedback on the alarm issuance; Core processing unit: used to receive various data required by the intelligent control system collected by the data acquisition unit, the addition, deletion and input of the rated power of the laboratory electrical equipment by the equipment management unit, and the feedback data received by the alarm feedback unit, analyze and process the received data, and generate corresponding instructions according to the analysis and processing results.

2. According to claim 1, the intelligent control system for sockets is characterized in that: The power supply startup unit includes: a secret key generation module, a secret key input module, a password generation module, a password input module and a power supply control module; Key generation module: used to generate a random key after the system is powered on; Key input module: used to input the random key generated by the key generation module; Password generation module: used to generate a password after the random key generated by the key generation module is input into the key input module; Password input module: used to input the password generated by the password generation module; Power supply control module: used to control the device power supply unit to supply power to the laboratory electrical equipment after the correct password is entered in the password input module, and to control the device power supply unit to cut off the power to the laboratory electrical equipment after receiving the instruction generated by the core processing unit.

3. According to claim 1, the intelligent control system for sockets is characterized in that: The data acquisition unit includes: a voltage acquisition module and a current acquisition module; Voltage collection module: used to collect the voltage used during the use of laboratory sockets in real time; Current collection module: used to collect the current used by the laboratory socket in real time during use.

4. According to claim 1, the intelligent control system for sockets is characterized in that: The alarm feedback unit includes: a time preset module, an alarm issuing module and a feedback receiving module; Time preset module: used to preset the interval time for alarm issuance; Alarm issuing module: used to issue an alarm based on the alarm issuing interval preset by the time preset module; Feedback receiving module: used to receive behavioral feedback on the alarms issued by the alarm issuing module.

5. The intelligent control system for sockets according to claim 4, characterized in that: The core processing unit includes: a data receiving module, an analysis and processing module and an instruction generating module; Data receiving module: used to receive various data required by the intelligent control system collected by the data acquisition unit, the addition and deletion of laboratory electrical equipment by the equipment management unit, the rated power of the electrical equipment input, and the behavioral feedback data received by the alarm feedback unit for the issuance of an alarm; Analysis and processing module: used for analyzing and processing various data required by the intelligent control system collected by the data collection unit received by the data receiving module, and the rated power of the electrical equipment added, deleted, and input by the equipment management unit to obtain the analysis and processing results; Instruction generation module: used to generate corresponding instructions based on the data of behavioral feedback on the issuance of an alarm received by the data receiving module and the analysis and processing results of the analysis and processing module.

6. The intelligent control system for sockets according to claim 5, characterized in that: After the time preset module pre-sets the interval time for issuing the alarm, the alarm issuing module issues an alarm at the preset interval time for issuing the alarm, and the feedback receiving module transmits the data of the relevant results to the instruction generation module of the core processing unit according to whether the feedback is received within one minute. If the feedback is received within one minute, the instruction generation module generates an instruction to continue power supply, otherwise, the instruction generation module generates an instruction to stop power supply.

7. The intelligent control system for sockets according to claim 5, characterized in that: The analysis and processing module determines whether there is illegal use of electricity based on the collected voltage and current used during the use of the laboratory socket and the rated power of the laboratory electrical equipment: like: If the situation of illegal electricity use exists, the instruction generation module will issue a power supply stop instruction according to the analysis and processing results. Otherwise, it is determined that there is no illegal electricity use, and the instruction generation module will not generate a power supply stop instruction. i is the rated power of each laboratory electrical equipment, n is the number of laboratory electrical equipment, U is the real-time voltage of the laboratory socket during use, and I is the real-time current of the laboratory socket during use.