Control method and system of intelligent switch cabinet
By establishing a multi-level communication transmission link in the intelligent switch cabinet, the legality and real-time problems of data reception of intelligent switch cabinets in different application scenarios are solved, and the accurate, safe and timely transmission of data and control instructions is achieved.
Patent Information
- Application Number
- CN202510171743.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-17
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2045-02-17
AI Technical Summary
In different application scenarios, smart switch cabinets may be set in the power distribution room or other locations independent of the power distribution room, making it difficult to guarantee the source of data reception illegality and real-timeness.
By acquiring the position information of the smart switch cabinet and the position information of the on-site monitoring element, a first communication transmission link is established to forward the wireless monitoring data, and a second communication transmission link is established based on the source of the control instructions to ensure the accuracy and security of the data and the timeliness of the control instructions.
It realizes the accuracy and safety of the data received by the intelligent switch cabinet under different application conditions, and ensures the timeliness of communication control instructions, meeting the power distribution, monitoring and communication control needs of the application scenarios where the intelligent switch cabinet is located.
Smart Images

Figure CN120010354A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of intelligent switch cabinets, and in particular to a control method and system for an intelligent switch cabinet. Background Art
[0002] Intelligent switchgear, especially high-voltage intelligent switchgear, is widely used in industrial scenarios and renewable energy power generation scenarios due to its superior control and communication functions. However, due to the differences in usage scenarios, the installed locations of intelligent switchgear are different. For example, in industrial control scenarios such as steel rolling and aluminum rolling, due to the large rolling site and the presence of many high-risk rolling processes, most of the intelligent switchgear in this scenario currently has a separate distribution room to complete the high-voltage distribution function of the rolling site and the communication control function in different rolling process flows. In renewable energy power generation scenarios such as photovoltaic and wind power, due to the remote location of the power plant, multiple distribution rooms will also be configured to complete the power generation and control functions. However, no matter what the application scenario, there may be intelligent switchgear installed in other locations independent of the distribution room to meet the power distribution and communication control needs of the application scenario.
[0003] For smart switch cabinets in different application scenarios, in order to meet application requirements, it is necessary to ensure the legitimacy and real-time nature of the source of the received data. Therefore, for both smart switch cabinets configured in the distribution room and smart switch cabinets in other locations independent of the distribution room, a control solution is needed to ensure that each smart switch cabinet receives data safely and in a timely manner. Summary of the invention
[0004] The object of the present invention is to provide a control method and system for an intelligent switch cabinet, which can ensure the accuracy and security of data received by the intelligent switch cabinet under different application conditions, and can ensure the timeliness of communication control instruction transmission.
[0005] The present invention solves the technical problem and adopts the following technical solution: In one aspect, the present invention provides a control method for an intelligent switch cabinet, comprising the following steps: Obtain the location information of the intelligent switch cabinet in the workshop and the location information of the field monitoring components used to send wireless monitoring data; Sending the wireless monitoring data acquired by the field component for sending the wireless monitoring data to the intelligent switch cabinet closest to it; Based on the wireless monitoring data received by the smart switch cabinet and the location information of the target smart switch cabinet, a first communication transmission link is established between the current smart switch cabinet receiving the wireless monitoring data and the target smart switch cabinet, and the wireless monitoring data is forwarded to the target smart switch cabinet through the first communication transmission link; Obtaining a control instruction of an actuator in the intelligent switch cabinet, and establishing a second communication transmission link for transmitting the control instruction to a target intelligent switch cabinet based on a source of the control instruction; The target intelligent switch cabinet receives the wireless monitoring data and the wired monitoring data connected to the target intelligent switch cabinet by wire, and obtains the on-site monitoring results based on the wireless monitoring data and the wired monitoring data; When the target intelligent switch cabinet receives the control instruction, it obtains the cabinet monitoring result of the cabinet monitoring unit, adjusts the control instruction in combination with the on-site monitoring result, and transmits the adjusted control instruction to the execution element to control the execution element to complete the execution action.
[0006] Further, the field monitoring element for transmitting wireless monitoring data includes an image acquisition device and a temperature sensor associated with the intelligent switch cabinet; The image acquisition device associated with the intelligent switch cabinet is used to obtain the cabinet door switch state information of the intelligent switch cabinet and the information of the person who performs the cabinet door switch action; The temperature sensor associated with the intelligent switch cabinet is used to collect temperature information before and after the cabinet door is opened and closed.
[0007] Furthermore, each of the intelligent switch cabinets receiving wireless monitoring data is provided with a receiving data threshold; When the intelligent switch cabinet receives the cabinet door switch status information and the information of the person who executes the cabinet door switch action and / or the temperature information before and after the cabinet door switch action is executed, the received information is converted into a unified format, and the size of the space occupied by the data of the unified format information is calculated. When the size of the space occupied by the data is greater than the receiving data threshold, the intelligent switch cabinet is used as a communication node of the first communication transmission link.
[0008] Furthermore, the step of establishing a first communication transmission link between the current smart switch cabinet receiving the wireless monitoring data and the target smart switch cabinet includes: Acquire a communication node of a first communication transmission link; Based on the location information of the communication node in the workshop, setting a first standard communication distance; When the distance between the current smart switch cabinet receiving the wireless monitoring data and the target smart switch cabinet is less than the first standard communication distance, a first communication transmission link is established for direct communication transmission between the current smart switch cabinet and the target smart switch cabinet, and the wireless monitoring data received by the current smart switch cabinet is directly sent to the target smart switch cabinet.
[0009] Furthermore, the step of establishing a first communication transmission link between the current smart switch cabinet receiving the wireless monitoring data and the target smart switch cabinet further includes: When the distance between the current smart switch cabinet receiving the wireless monitoring data and the target smart switch cabinet is greater than the first standard communication distance, the smart switch cabinet closest to the target smart switch cabinet is obtained and used as the first intermediate communication node, and the distance between the first intermediate communication node and the target smart switch cabinet is less than the first standard communication distance; Determine whether the distance between the current smart switch cabinet and the first intermediate communication node is less than the first standard communication distance. If so, establish a first communication transmission link for communication transmission between the current smart switch cabinet, the first intermediate communication node and the target smart switch cabinet, and send the wireless monitoring data received by the current smart switch cabinet to the target smart switch cabinet through the first intermediate communication node.
[0010] Furthermore, the step of establishing a first communication transmission link between the current smart switch cabinet receiving the wireless monitoring data and the target smart switch cabinet further includes: When the distance between the current intelligent switch cabinet and the first intermediate communication node is greater than the first standard communication distance, the intelligent switch cabinet closest to the first intermediate communication node is obtained and used as the second intermediate communication node, and the distance between the second intermediate communication node and the first communication node is less than the first standard communication distance; Determine whether the distance between the current smart switch cabinet and the second intermediate communication node is less than the first standard communication distance. If it is less than the first standard communication distance, establish a first communication transmission link for communication transmission between the current smart switch cabinet, the first intermediate communication node, the second intermediate communication node and the target smart switch cabinet, and send the wireless monitoring data received by the current smart switch cabinet to the target smart switch cabinet through the second intermediate communication node and the first intermediate communication node.
[0011] Furthermore, when the distance between the current smart switch cabinet and the second intermediate communication node is greater than the first standard communication distance, the smart switch cabinet closest to the second intermediate communication node continues to be acquired and used as an additional intermediate communication node until the distance between the current smart switch cabinet and the additional intermediate communication node is less than the first standard communication distance, and the distance between the additional intermediate communication node and the second communication node is less than the first standard communication distance.
[0012] Furthermore, taking the location information of the target smart switch cabinet as the starting point and the location information of the current smart switch cabinet as the end point, a straight line is drawn between the starting point and the end point. If there are multiple intermediate communication nodes obtained, the smart switch cabinet closest to the straight line is selected as the intermediate communication node.
[0013] Furthermore, the second communication transmission link for transmitting the control instruction to the target intelligent switch cabinet is established based on the source of the control instruction, including: All intelligent switch cabinets in the workshop receive control instructions from the remote control terminal in real time, and set the second standard communication distance between each intelligent switch and the target intelligent switch cabinet; If the source of the control instruction of the actuator in the intelligent switch cabinet is a remote control terminal, all intelligent switch cabinets within the second standard communication distance from the target intelligent switch cabinet are obtained, and the intelligent switch cabinet that receives the control instruction earliest is used as the communication node of the second communication transmission link, and the control instruction received by the communication node is forwarded to the target intelligent switch cabinet; If the source of the control instruction of the actuator in the intelligent switch cabinet is the field control terminal, the location information of the field control terminal is obtained, and it is determined whether the distance between the field control terminal and the target intelligent switch cabinet is less than the second standard communication distance. If it is less, the control instruction is directly sent to the target intelligent switch cabinet. Otherwise, the midpoint position information of the direct connection between the target intelligent switch cabinet and the field control terminal is selected, and the intelligent switch cabinet closest to the middle position information is selected as the forwarding communication node, and a second communication transmission link is established between the field control terminal, the forwarding communication node and the target intelligent switch cabinet, and the control instruction is forwarded to the target intelligent switch cabinet through the forwarding communication node.
[0014] On the other hand, the present invention further provides a control system of an intelligent switch cabinet, which is applied to the control method of the intelligent switch cabinet, comprising: A location acquisition unit, used to acquire the location information of the intelligent switch cabinet in the workshop and the location information of the field monitoring element used to send wireless monitoring data; An information sending unit, used to send the wireless monitoring data acquired by the field element used to send the wireless monitoring data to the intelligent switch cabinet closest to it; A first communication transmission link establishing unit, configured to establish a first communication transmission link between a current smart switch cabinet receiving the wireless monitoring data and a target smart switch cabinet based on the wireless monitoring data received by the smart switch cabinet and the location information of the target smart switch cabinet, and forward the wireless monitoring data to the target smart switch cabinet through the first communication transmission link; A second communication transmission link establishing unit, which obtains a control instruction of an actuator in the intelligent switch cabinet, and establishes a second communication transmission link for transmitting the control instruction to a target intelligent switch cabinet based on a source of the control instruction; An on-site monitoring result acquisition unit, configured to receive wireless monitoring data through a target intelligent switch cabinet, receive wired monitoring data connected to the target intelligent switch cabinet by wire, and acquire on-site monitoring results based on the wireless monitoring data and the wired monitoring data; The execution unit is used to obtain the in-cabinet monitoring results of the in-cabinet monitoring unit when the target intelligent switch cabinet receives the control command, adjust the control command in combination with the on-site monitoring results, and transmit the adjusted control command to the execution element to control the execution element to complete the execution action.
[0015] The beneficial effects of the present invention are: it can ensure the source security and accuracy of the wireless monitoring data received in the workshop by establishing the first communication transmission link, and at the same time, it can also ensure the timeliness of the control instructions received by the actuators in the intelligent switch cabinet, thereby meeting the power distribution, monitoring and communication control requirements of the application scenarios of the intelligent switch cabinet. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 This is a flow chart of a control method for an intelligent switch cabinet in Embodiment 1 of the present invention. DETAILED DESCRIPTION
[0017] In order to make the purpose, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are part of the embodiments of the present invention, not all of the embodiments. Generally, the components of the embodiments of the present invention described and shown in the drawings here can be arranged and designed in various different configurations. Example 1
[0018] This embodiment provides a control method for an intelligent switch cabinet, and its flow chart is shown in Figure 1 , wherein the method comprises the following steps: S1. Obtaining the location information of the intelligent switch cabinet in the workshop and the location information of the field monitoring element used to send wireless monitoring data; S2, sending the wireless monitoring data acquired by the field component for sending the wireless monitoring data to the intelligent switch cabinet closest to it; S3, based on the wireless monitoring data received by the smart switch cabinet and the location information of the target smart switch cabinet, establish a first communication transmission link between the current smart switch cabinet receiving the wireless monitoring data and the target smart switch cabinet, and forward the wireless monitoring data to the target smart switch cabinet through the first communication transmission link; S4, obtaining a control instruction of an actuator in the intelligent switch cabinet, and establishing a second communication transmission link for transmitting the control instruction to a target intelligent switch cabinet based on a source of the control instruction; S5, the target intelligent switch cabinet receives the wireless monitoring data, receives the wired monitoring data connected to the target intelligent switch cabinet, and obtains the on-site monitoring results based on the wireless monitoring data and the wired monitoring data; S6. When the target intelligent switch cabinet receives the control instruction, it obtains the in-cabinet monitoring result of the in-cabinet monitoring unit, adjusts the control instruction in combination with the on-site monitoring result, and transmits the adjusted control instruction to the execution element to control the execution element to complete the execution action.
[0019] In this embodiment, the control of the intelligent switch cabinet in the steel rolling workshop is taken as an example for detailed description. Specifically, in this embodiment, for the steel rolling workshop, there are both intelligent switch cabinets installed in the power distribution room and intelligent switch cabinets in other locations independent of the power distribution room.
[0020] Generally speaking, in the application scenario of the present embodiment, in order to monitor whether the operation of the intelligent switch cabinet operation panel is illegal, whether the opening and closing state of the intelligent switch cabinet door is normal, and whether there are any hidden dangers of operation for nearby staff, most intelligent switch cabinets may be equipped with image acquisition devices. However, many intelligent switch cabinets may have too high a temperature inside the cabinet due to the simultaneous operation of the internal actuators, and the cabinet door needs to be opened for heat dissipation, so that the temperature around the power distribution room or the temperature of the location of the intelligent switch cabinet independent of the power distribution room is higher than that of other locations. Therefore, temperature sensors are also set for the power distribution room and the location of the intelligent switch cabinet independent of the power distribution room to monitor the temperature. Since the steel rolling site itself has many cables, For the image acquisition device and the temperature sensor, using cables for data transmission may increase the difficulty of maintenance, and improper cable installation may also lead to data loss or safety hazards. Therefore, whether it is the image acquisition device or the temperature sensor, it may send the relevant monitoring data to the corresponding smart switch cabinet in a wireless form. Therefore, in this embodiment, the field monitoring element for sending wireless monitoring data includes an image acquisition device and a temperature sensor associated with the smart switch cabinet; here, the image acquisition device associated with the smart switch cabinet is used to obtain the door switch status information of the smart switch cabinet and the information of the person who executes the door switch action; the temperature sensor associated with the smart switch cabinet is used to collect temperature information before and after the door switch action is executed.
[0021] Since the image acquisition device acquires image information and the temperature sensor acquires temperature information, the two forms of information are not the same, and image information requires a longer transmission time and processing time. In order not to add additional data memory or cache burden to the intelligent switch cabinet, when selecting the communication node of the first communication transmission link, it cannot be guaranteed that all intelligent switch cabinets meet the requirements of being communication nodes. Therefore, in this embodiment, a receiving data threshold is set for each intelligent switch cabinet that needs to receive these two types of information to ensure the timeliness of data transmission. Therefore, in this embodiment, each intelligent switch cabinet that receives wireless monitoring data is provided with a receiving data threshold; when the intelligent switch cabinet receives the cabinet door switch status information and the information of the person who executes the cabinet door switch action and / or the temperature information before and after the cabinet door switch action is executed, the received information is converted into a unified format, and the size of the space occupied by the data of the unified format is calculated. When the size of the space occupied by the data is greater than the receiving data threshold, the intelligent switch cabinet is used as the communication node of the first communication transmission link.
[0022] Here, no matter which smart switch cabinet is selected as the communication node of the first communication transmission link, the image information and temperature information it receives should be within a similar data size range after being unified in format. If there is other wireless data access, it means that the data source may be illegal. Therefore, setting the receiving data threshold can also avoid the access of other irrelevant wireless data.
[0023] It should be pointed out that, in this embodiment, since the locations of the intelligent switch cabinets may be relatively scattered and the rolling site working conditions are high, even if the first communication transmission link is established, the transmission distance between the communication nodes may be relatively far and data transmission may be delayed. Therefore, it is necessary to establish a standard communication distance, that is, a first standard communication distance. Therefore, in this embodiment, the establishment of the first communication transmission link between the current intelligent switch cabinet receiving wireless monitoring data and the target intelligent switch cabinet may include: Acquire a communication node of a first communication transmission link; Based on the location information of the communication node in the workshop, setting a first standard communication distance; When the distance between the current smart switch cabinet receiving the wireless monitoring data and the target smart switch cabinet is less than the first standard communication distance, a first communication transmission link is established for direct communication transmission between the current smart switch cabinet and the target smart switch cabinet, and the wireless monitoring data received by the current smart switch cabinet is directly sent to the target smart switch cabinet.
[0024] Therefore, in each communication node of the first communication transmission link, it is necessary to compare the communication transmission distance between the communication nodes with the first standard communication distance to meet the timeliness of wireless monitoring data transmission.
[0025] Therefore, the step of establishing a first communication transmission link between the current smart switch cabinet receiving wireless monitoring data and the target smart switch cabinet may further include: When the distance between the current smart switch cabinet receiving the wireless monitoring data and the target smart switch cabinet is greater than the first standard communication distance, the smart switch cabinet closest to the target smart switch cabinet is obtained and used as the first intermediate communication node, and the distance between the first intermediate communication node and the target smart switch cabinet is less than the first standard communication distance; Determine whether the distance between the current smart switch cabinet and the first intermediate communication node is less than the first standard communication distance. If so, establish a first communication transmission link for communication transmission between the current smart switch cabinet, the first intermediate communication node and the target smart switch cabinet, and send the wireless monitoring data received by the current smart switch cabinet to the target smart switch cabinet through the first intermediate communication node.
[0026] At the same time, the establishing of a first communication transmission link between the current smart switch cabinet receiving the wireless monitoring data and the target smart switch cabinet may also include: When the distance between the current intelligent switch cabinet and the first intermediate communication node is greater than the first standard communication distance, the intelligent switch cabinet closest to the first intermediate communication node is obtained and used as the second intermediate communication node, and the distance between the second intermediate communication node and the first communication node is less than the first standard communication distance; Determine whether the distance between the current smart switch cabinet and the second intermediate communication node is less than the first standard communication distance. If it is less than the first standard communication distance, establish a first communication transmission link for communication transmission between the current smart switch cabinet, the first intermediate communication node, the second intermediate communication node and the target smart switch cabinet, and send the wireless monitoring data received by the current smart switch cabinet to the target smart switch cabinet through the second intermediate communication node and the first intermediate communication node.
[0027] It should be pointed out that in this embodiment, when the distance between the current smart switch cabinet and the second intermediate communication node is greater than the first standard communication distance, the smart switch cabinet closest to the second intermediate communication node continues to be obtained and used as an additional intermediate communication node until the distance between the current smart switch cabinet and the additional intermediate communication node is less than the first standard communication distance, and the distance between the additional intermediate communication node and the second communication node is less than the first standard communication distance.
[0028] It should be pointed out that when there are multiple intermediate communication nodes, only one smart switch cabinet needs to be selected. At this time, the location information of the target smart switch cabinet is used as the starting point, and the location information of the current smart switch cabinet is used as the end point. A straight line is drawn between the starting point and the end point. If the number of intermediate communication nodes obtained is multiple, the smart switch cabinet closest to the straight line is selected as the intermediate communication node.
[0029] In this embodiment, the second communication transmission link is a communication transmission link for the intelligent switch cabinet to receive control instructions, and the control instructions may come from a remote control terminal or from an on-site control terminal. Therefore, in this embodiment, the second communication transmission link for establishing the control instructions based on the source of the control instructions to transmit the control instructions to the target intelligent switch cabinet may include: All intelligent switch cabinets in the workshop receive control instructions from the remote control terminal in real time, and set the second standard communication distance between each intelligent switch and the target intelligent switch cabinet; If the source of the control instruction of the actuator in the intelligent switch cabinet is a remote control terminal, all intelligent switch cabinets within the second standard communication distance from the target intelligent switch cabinet are obtained, and the intelligent switch cabinet that receives the control instruction earliest is used as the communication node of the second communication transmission link, and the control instruction received by the communication node is forwarded to the target intelligent switch cabinet; If the source of the control instruction of the actuator in the intelligent switch cabinet is the field control terminal, the location information of the field control terminal is obtained, and it is determined whether the distance between the field control terminal and the target intelligent switch cabinet is less than the second standard communication distance. If it is less, the control instruction is directly sent to the target intelligent switch cabinet. Otherwise, the midpoint position information of the direct connection between the target intelligent switch cabinet and the field control terminal is selected, and the intelligent switch cabinet closest to the middle position information is selected as the forwarding communication node, and a second communication transmission link is established between the field control terminal, the forwarding communication node and the target intelligent switch cabinet, and the control instruction is forwarded to the target intelligent switch cabinet through the forwarding communication node.
[0030] It should be pointed out that no matter the control instruction comes from the remote control terminal or the on-site control terminal, due to the setting of the second standard communication distance, the second communication transmission link can be established, and the position difference between the intelligent switch cabinet receiving the instruction and the target intelligent switch cabinet is used as a communication node and compared with the second standard communication distance, and the position difference between the on-site control terminal and the target intelligent switch cabinet is compared with the second standard communication distance, so as to transmit the control instruction to the target intelligent switch cabinet through the corresponding second communication transmission link. Therefore, the timeliness of the target intelligent switch cabinet receiving the control instruction can be guaranteed. Example 2
[0031] Based on Example 1, this embodiment provides a control system for an intelligent switch cabinet, including: A location acquisition unit, used to acquire the location information of the intelligent switch cabinet in the workshop and the location information of the field monitoring element used to send wireless monitoring data; An information sending unit, used to send the wireless monitoring data acquired by the field element used to send the wireless monitoring data to the intelligent switch cabinet closest to it; A first communication transmission link establishing unit, configured to establish a first communication transmission link between a current smart switch cabinet receiving the wireless monitoring data and a target smart switch cabinet based on the wireless monitoring data received by the smart switch cabinet and the location information of the target smart switch cabinet, and forward the wireless monitoring data to the target smart switch cabinet through the first communication transmission link; A second communication transmission link establishing unit, which obtains a control instruction of an actuator in the intelligent switch cabinet, and establishes a second communication transmission link for transmitting the control instruction to a target intelligent switch cabinet based on a source of the control instruction; An on-site monitoring result acquisition unit, configured to receive wireless monitoring data through a target intelligent switch cabinet, receive wired monitoring data connected to the target intelligent switch cabinet by wire, and acquire on-site monitoring results based on the wireless monitoring data and the wired monitoring data; The execution unit is used to obtain the in-cabinet monitoring results of the in-cabinet monitoring unit when the target intelligent switch cabinet receives the control command, adjust the control command in combination with the on-site monitoring results, and transmit the adjusted control command to the execution element to control the execution element to complete the execution action.
[0032] According to the description of Example 1, the application conditions and implementation principles of this embodiment are consistent with those of Example 1, and therefore will not be described in detail.
[0033] The above are only preferred embodiments of the present invention and are 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. A control method for an intelligent switch cabinet, characterized in that: The steps include: Obtain the location information of the intelligent switch cabinet in the workshop and the location information of the field monitoring components used to send wireless monitoring data; Sending the wireless monitoring data acquired by the field component for sending the wireless monitoring data to the intelligent switch cabinet closest to it; Based on the wireless monitoring data received by the smart switch cabinet and the location information of the target smart switch cabinet, a first communication transmission link is established between the current smart switch cabinet receiving the wireless monitoring data and the target smart switch cabinet, and the wireless monitoring data is forwarded to the target smart switch cabinet through the first communication transmission link; Obtaining a control instruction of an actuator in the intelligent switch cabinet, and establishing a second communication transmission link for transmitting the control instruction to a target intelligent switch cabinet based on a source of the control instruction; The target intelligent switch cabinet receives the wireless monitoring data and the wired monitoring data connected to the target intelligent switch cabinet by wire, and obtains the on-site monitoring results based on the wireless monitoring data and the wired monitoring data; When the target intelligent switch cabinet receives the control instruction, it obtains the cabinet monitoring result of the cabinet monitoring unit, adjusts the control instruction in combination with the on-site monitoring result, and transmits the adjusted control instruction to the execution element to control the execution element to complete the execution action.
2. The control method of an intelligent switch cabinet according to claim 1, characterized in that: The field monitoring element for sending wireless monitoring data includes an image acquisition device and a temperature sensor associated with the intelligent switch cabinet; The image acquisition device associated with the intelligent switch cabinet is used to obtain the cabinet door switch state information of the intelligent switch cabinet and the information of the person who performs the cabinet door switch action; The temperature sensor associated with the intelligent switch cabinet is used to collect temperature information before and after the cabinet door is opened and closed.
3. The control method of an intelligent switch cabinet according to claim 1, characterized in that: Each of the intelligent switch cabinets receiving wireless monitoring data is provided with a receiving data threshold; When the intelligent switch cabinet receives the cabinet door switch status information and the information of the person who executes the cabinet door switch action and / or the temperature information before and after the cabinet door switch action is executed, the received information is converted into a unified format, and the size of the space occupied by the data of the unified format information is calculated. When the size of the space occupied by the data is greater than the receiving data threshold, the intelligent switch cabinet is used as a communication node of the first communication transmission link.
4. The control method of an intelligent switch cabinet according to claim 3, characterized in that: The step of establishing a first communication transmission link between the current smart switch cabinet receiving wireless monitoring data and the target smart switch cabinet includes: Acquire a communication node of a first communication transmission link; Based on the location information of the communication node in the workshop, setting a first standard communication distance; When the distance between the current smart switch cabinet receiving the wireless monitoring data and the target smart switch cabinet is less than the first standard communication distance, a first communication transmission link is established for direct communication transmission between the current smart switch cabinet and the target smart switch cabinet, and the wireless monitoring data received by the current smart switch cabinet is directly sent to the target smart switch cabinet.
5. The control method of an intelligent switch cabinet according to claim 4, characterized in that: The step of establishing a first communication transmission link between the current smart switch cabinet receiving wireless monitoring data and the target smart switch cabinet further includes: When the distance between the current smart switch cabinet receiving the wireless monitoring data and the target smart switch cabinet is greater than the first standard communication distance, the smart switch cabinet closest to the target smart switch cabinet is obtained and used as the first intermediate communication node, and the distance between the first intermediate communication node and the target smart switch cabinet is less than the first standard communication distance; Determine whether the distance between the current smart switch cabinet and the first intermediate communication node is less than the first standard communication distance. If so, establish a first communication transmission link for communication transmission between the current smart switch cabinet, the first intermediate communication node and the target smart switch cabinet, and send the wireless monitoring data received by the current smart switch cabinet to the target smart switch cabinet through the first intermediate communication node.
6. The control method of an intelligent switch cabinet according to claim 5, characterized in that: The step of establishing a first communication transmission link between the current smart switch cabinet receiving wireless monitoring data and the target smart switch cabinet further includes: When the distance between the current intelligent switch cabinet and the first intermediate communication node is greater than the first standard communication distance, the intelligent switch cabinet closest to the first intermediate communication node is obtained and used as the second intermediate communication node, and the distance between the second intermediate communication node and the first communication node is less than the first standard communication distance; Determine whether the distance between the current smart switch cabinet and the second intermediate communication node is less than the first standard communication distance. If it is less than the first standard communication distance, establish a first communication transmission link for communication transmission between the current smart switch cabinet, the first intermediate communication node, the second intermediate communication node and the target smart switch cabinet, and send the wireless monitoring data received by the current smart switch cabinet to the target smart switch cabinet through the second intermediate communication node and the first intermediate communication node.
7. The control method of an intelligent switch cabinet according to claim 6, characterized in that: When the distance between the current smart switch cabinet and the second intermediate communication node is greater than the first standard communication distance, continue to obtain the smart switch cabinet closest to the second intermediate communication node and use it as an additional intermediate communication node until the distance between the current smart switch cabinet and the additional intermediate communication node is less than the first standard communication distance, and the distance between the additional intermediate communication node and the second communication node is less than the first standard communication distance.
8. A control method for an intelligent switch cabinet according to any one of claims 4 to 7, characterized in that: Taking the location information of the target intelligent switch cabinet as the starting point and the location information of the current intelligent switch cabinet as the end point, a straight line is drawn between the starting point and the end point. If there are multiple intermediate communication nodes obtained, the intelligent switch cabinet closest to the straight line is selected as the intermediate communication node.
9. The control method of an intelligent switch cabinet according to claim 1, characterized in that: The second communication transmission link for transmitting the control instruction to the target intelligent switch cabinet based on the source of the control instruction is established, including: All intelligent switch cabinets in the workshop receive control instructions from the remote control terminal in real time, and set the second standard communication distance between each intelligent switch and the target intelligent switch cabinet; If the source of the control instruction of the actuator in the intelligent switch cabinet is a remote control terminal, all intelligent switch cabinets within the second standard communication distance from the target intelligent switch cabinet are obtained, and the intelligent switch cabinet that receives the control instruction earliest is used as the communication node of the second communication transmission link, and the control instruction received by the communication node is forwarded to the target intelligent switch cabinet; If the source of the control instruction of the actuator in the intelligent switch cabinet is the field control terminal, the location information of the field control terminal is obtained, and it is determined whether the distance between the field control terminal and the target intelligent switch cabinet is less than the second standard communication distance. If it is less, the control instruction is directly sent to the target intelligent switch cabinet. Otherwise, the midpoint position information of the direct connection between the target intelligent switch cabinet and the field control terminal is selected, and the intelligent switch cabinet closest to the middle position information is selected as the forwarding communication node, and a second communication transmission link is established between the field control terminal, the forwarding communication node and the target intelligent switch cabinet, and the control instruction is forwarded to the target intelligent switch cabinet through the forwarding communication node.
10. A control system for an intelligent switch cabinet, applied to a control method for an intelligent switch cabinet according to any one of claims 1 to 9, characterized in that: include: A location acquisition unit, used to acquire the location information of the intelligent switch cabinet in the workshop and the location information of the field monitoring element used to send wireless monitoring data; An information sending unit, used to send the wireless monitoring data acquired by the field element used to send the wireless monitoring data to the intelligent switch cabinet closest to it; A first communication transmission link establishing unit, configured to establish a first communication transmission link between a current smart switch cabinet receiving the wireless monitoring data and a target smart switch cabinet based on the wireless monitoring data received by the smart switch cabinet and the location information of the target smart switch cabinet, and forward the wireless monitoring data to the target smart switch cabinet through the first communication transmission link; A second communication transmission link establishing unit, which obtains a control instruction of an actuator in the intelligent switch cabinet, and establishes a second communication transmission link for transmitting the control instruction to a target intelligent switch cabinet based on a source of the control instruction; An on-site monitoring result acquisition unit, configured to receive wireless monitoring data through a target intelligent switch cabinet, receive wired monitoring data connected to the target intelligent switch cabinet by wire, and acquire on-site monitoring results based on the wireless monitoring data and the wired monitoring data; The execution unit is used to obtain the in-cabinet monitoring results of the in-cabinet monitoring unit when the target intelligent switch cabinet receives the control command, adjust the control command in combination with the on-site monitoring results, and transmit the adjusted control command to the execution element to control the execution element to complete the execution action.
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