Multi-node configurable cable information online monitoring system

By designing a multi-node configurable online cable information monitoring system, the problem of fixed edge nodes and sensor configurations in the prior art is solved, and the transmission and monitoring efficiency of smart cable data is improved.

CN115941469BActive Publication Date: 2025-05-16GUANGZHOU PANYU CABLE WORKS
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Patent Information

Application Number
CN202211527532.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-11-30
Publication Date
2025-05-16
Estimated Expiration
2042-11-30

AI Technical Summary

Technical Problem

In the prior art, the configuration methods of each edge node and sensor, as well as the edge node and the system central control platform are fixed and single, and there is a lack of reasonable and flexible settings, resulting in low efficiency in transmission and monitoring of smart cable data.

Method used

A multi-node configurable online cable information monitoring system is designed, including a data acquisition module, a configuration information generation module and a configuration sending module. The system obtains the monitoring data reporting volume of each edge node, generates access configuration information based on the reporting volume configuration, and sends it to the edge node and sensor node to make it re-communication connection.

Benefits of technology

Through the flexible configuration of this system, the transmission and monitoring efficiency of smart cable data is improved, and the problem of fixed single edge nodes and sensor configuration methods is solved, achieving more efficient data monitoring and transmission.

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Abstract

The embodiment of the present invention discloses a multi-node configurable cable information online monitoring system, which includes: a data acquisition module, configured to obtain the current monitoring data reporting amount of each edge node, each edge node is connected to multiple sensor nodes for communication, and the sensor nodes collect monitoring data of the corresponding cable; a configuration information generation module, configured to configure the number of sensors accessed by each edge node according to the monitoring data reporting amount to generate access configuration information; a configuration sending module, configured to send the access configuration information to each edge node and the corresponding multiple sensor nodes, so that each edge node and the multiple sensor nodes re-communicate and connect based on the access configuration information. This solution solves the problem that the configuration methods of each edge node and sensor and the edge node and the system control platform in the prior art are fixed and single, and lack reasonable and flexible settings, and improves the transmission and monitoring efficiency of intelligent cable data.
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Description

Technical Field

[0001] The embodiments of the present application relate to the field of intelligent cable technology, and in particular to a multi-node configurable cable information online monitoring system. Background Art

[0002] With the popularization of intelligent cables, the real-time monitoring capability of cables is gradually enhanced. For example, the cable temperature is monitored through implanted sensors to provide corresponding fault warnings. During the specific data transmission process, the system control platform collects cable monitoring data and performs real-time automatic monitoring of the monitoring data.

[0003] In the related art, the system control platform obtains the cable information data collected by each edge node, and the configuration of each edge node and sensor as well as the edge node and the system control platform is fixed and single, lacking reasonable and flexible settings. Summary of the invention

[0004] The embodiment of the present invention provides a multi-node configurable cable information online monitoring system, which solves the problem in the prior art that the configuration methods of various edge nodes and sensors as well as edge nodes and system central control platforms are fixed and single, and lack reasonable and flexible settings, thereby improving the transmission and monitoring efficiency of intelligent cable data.

[0005] In a first aspect, an embodiment of the present invention provides a multi-node configurable cable information online monitoring system, comprising:

[0006] A data acquisition module is configured to acquire the current monitoring data reporting amount of each edge node, wherein each edge node is communicatively connected to a plurality of sensor nodes, and the sensor nodes are used to collect monitoring data of the corresponding cable;

[0007] A configuration information generating module, configured to configure the number of sensor nodes connected to each edge node according to the amount of monitoring data reported, and generate access configuration information;

[0008] The configuration sending module is configured to send the access configuration information to each edge node and a corresponding plurality of sensor nodes, so that each edge node and the plurality of sensor nodes are re-communicated based on the access configuration information.

[0009] Furthermore, the system also includes a wake-up cycle processing module, which is configured to adjust the wake-up cycle of each sensor node based on the currently collected monitoring data before obtaining the current monitoring data reporting amount of each edge node, and send the collected monitoring data to the edge node with communication connection when waking up in each wake-up cycle.

[0010] Furthermore, the configuration information generating module is configured as follows:

[0011] Sorting the edge nodes according to their respective monitoring data reporting amounts;

[0012] The location information of each edge node is obtained, and the number of sensors connected to each edge node is configured based on the location information and the sorting result to generate access configuration information.

[0013] Furthermore, the configuration information generating module is configured as follows:

[0014] Based on the sorting result, performing balanced grouping of edge nodes;

[0015] It is determined whether the balanced allocation condition is met according to the position information of the edge nodes in each balanced group. If the balanced allocation condition is met, the sensor nodes connected to the edge nodes in the balanced group are evenly allocated.

[0016] In a second aspect, an embodiment of the present invention further provides a multi-node configurable cable information online monitoring method, comprising:

[0017] Obtaining the current monitoring data reporting amount of each edge node, wherein each edge node is communicatively connected to a plurality of sensor nodes, and the sensor nodes are used to collect monitoring data of the corresponding cable;

[0018] According to the amount of monitoring data reported, configuring the number of sensor nodes accessed by each edge node to generate access configuration information;

[0019] The access configuration information is sent to each edge node and a corresponding plurality of sensor nodes, so that each edge node and the plurality of sensor nodes are re-communicated based on the access configuration information.

[0020] Furthermore, before obtaining the current monitoring data reporting amount of each edge node, the method further includes:

[0021] Each sensor node adjusts the wake-up cycle based on the currently collected monitoring data, and sends the collected monitoring data to the edge node connected to the communication when waking up in each wake-up cycle.

[0022] Furthermore, configuring the number of sensor nodes accessed by each edge node according to the amount of monitoring data reported to generate access configuration information includes:

[0023] Sorting the edge nodes according to their respective monitoring data reporting amounts;

[0024] The location information of each edge node is obtained, and the number of sensors connected to each edge node is configured based on the location information and the sorting result to generate access configuration information.

[0025] Furthermore, configuring the number of sensors connected to each edge node based on the location information and the sorting result to generate access configuration information includes:

[0026] Based on the sorting result, performing balanced grouping of edge nodes;

[0027] It is determined whether the balanced allocation condition is met according to the position information of the edge nodes in each balanced group. If the balanced allocation condition is met, the sensor nodes connected to the edge nodes in the balanced group are evenly allocated.

[0028] In a third aspect, an embodiment of the present invention further provides a multi-node configurable cable information online monitoring device, the device comprising:

[0029] one or more processors;

[0030] a storage device for storing one or more programs,

[0031] When the one or more programs are executed by the one or more processors, the one or more processors implement the multi-node configurable cable information online monitoring method described in the embodiment of the present invention.

[0032] In a fourth aspect, an embodiment of the present invention further provides a storage medium storing computer executable instructions, which, when executed by a computer processor, are used to execute the multi-node configurable cable information online monitoring method described in an embodiment of the present invention.

[0033] In an embodiment of the present invention, a multi-node configurable cable information online monitoring system includes: a data acquisition module, configured to obtain the current monitoring data reporting amount of each edge node, each edge node is connected to multiple sensor nodes for communication, and the sensor nodes collect monitoring data of the corresponding cable; a configuration information generation module, configured to generate access configuration information for the number of sensors accessed by each edge node according to the monitoring data reporting amount; a configuration sending module, configured to send the access configuration information to each edge node and the corresponding multiple sensor nodes, so that each edge node and the multiple sensor nodes re-communicate based on the access configuration information. This solution solves the problem that the configuration methods of each edge node and sensor, as well as the edge node and the system control platform in the prior art are fixed and single, and lack reasonable and flexible settings, and improves the transmission and monitoring efficiency of intelligent cable data. BRIEF DESCRIPTION OF THE DRAWINGS

[0034] Figure 1 A module structure diagram of a multi-node configurable cable information online monitoring system provided by an embodiment of the present invention;

[0035] Figure 2 A module structure diagram of another multi-node configurable cable information online monitoring system provided by an embodiment of the present invention;

[0036] Figure 3 A flowchart of a multi-node configurable cable information online monitoring method provided by an embodiment of the present invention;

[0037] Figure 4 A schematic structural diagram of a multi-node configurable cable information online monitoring device provided by an embodiment of the present invention. DETAILED DESCRIPTION

[0038] The embodiments of the present invention are further described in detail below in conjunction with the accompanying drawings and embodiments. It is to be understood that the specific embodiments described herein are only used to explain the embodiments of the present invention, rather than to limit the embodiments of the present invention. It is also necessary to explain that, for ease of description, only parts related to the embodiments of the present invention are shown in the accompanying drawings, rather than all structures.

[0039] Figure 1 A module structure diagram of a multi-node configurable cable information online monitoring system provided by an embodiment of the present invention, such as Figure 1 As shown, the system specifically includes:

[0040] The data acquisition module 101 is configured to acquire the current monitoring data reporting amount of each edge node, wherein each edge node is communicatively connected with a plurality of sensor nodes, and the sensor nodes are used to collect monitoring data of the corresponding cable;

[0041] The configuration information generating module 102 is configured to configure the number of sensor nodes connected to each edge node according to the amount of monitoring data reported, and generate access configuration information;

[0042] The configuration sending module 103 is configured to send the access configuration information to each edge node and a corresponding plurality of sensor nodes, so that each edge node and the plurality of sensor nodes are re-communicated based on the access configuration information.

[0043] The use scenario of this technical solution can be to reconfigure the access between the edge node and the sensor according to the data reporting amount of each edge node through the multi-node configurable cable information online monitoring system. Based on the above usage scenario, it can be understood that the executor of this technical solution can be the multi-node configurable cable information online monitoring system, or a smart device integrated with the system, such as a mobile phone, a tablet computer, and a laptop computer, etc., which is not specifically limited here.

[0044] In one embodiment, the edge node can be a business platform built on the edge side of the network close to the user, which can store and calculate network resources, sink some key business applications to the edge of the access network to reduce the width and delay loss caused by network transmission and multi-stage forwarding. Data reporting can be understood as the process of transmitting downstream data to upstream data. In this embodiment, it can be the process of transmitting the monitoring data obtained by the sensor to the edge node. The monitoring data reporting amount can be understood as the number of bits of the sensor data uploaded by the sensor node and received by the edge node. Among them, the monitoring data can be cable parameter data obtained by the sensor node, such as cable temperature, humidity, etc. The sensor node can be understood as the basic functional unit of the wireless sensor network, which is specifically composed of a sensor unit, a processing unit, a communication unit and a power supply part. The sensor node can be used to complete the collection and conversion of monitoring data, data management and processing, and respond to the task request of the aggregation node and node control. The communication connection can be understood as a connection method, which constitutes communication between connected devices through signal transmission interaction.

[0045] In one embodiment, a sensor is set at a preset cable position to obtain corresponding cable parameters to monitor the cable. The sensor includes various types, such as temperature sensors, humidity sensors, and smoke concentration sensors. The edge node is connected to multiple sensor nodes for communication, and they interact through signal transmission. That is, an edge node is used to receive monitoring data from multiple sensor nodes. The data acquisition module 101 obtains the reported amount of monitoring data currently received by the edge node by querying the transmission log of each edge node or through a data volume statistics table or record file pre-stored in a database.

[0046] In one embodiment, the access configuration information may be an association table or a rule file for specifying the edge node and the corresponding sensor node to be connected. The configuration may be a configuration arrangement. Configuring the number of sensor nodes accessed by each edge node may be understood as reallocating the number of sensor nodes accessed by each edge node.

[0047] In one embodiment, the configuration information generation module 102 reconfigures the number of sensor nodes to be connected to the edge node through the amount of monitoring data reported by each edge node, and generates an association table or rule file for specifying the edge node and the corresponding sensor node to be connected. Among them, the access configuration information includes not only the number of sensor nodes to be connected corresponding to each edge node, but also the identification code of each edge node and the number of the corresponding sensor node to be connected. It can be understood that the more sensor nodes there are, the more cable data information is collected. Correspondingly, the more sensor nodes the edge node is connected to, the more monitoring data it receives.

[0048] In a possible embodiment, the configuration information generating module 102 is configured as follows:

[0049] Sorting the edge nodes according to their respective monitoring data reporting amounts;

[0050] The location information of each edge node is obtained, and the number of sensors connected to each edge node is configured based on the location information and the sorting result to generate access configuration information.

[0051] The sorting of the edge nodes according to their respective monitoring data reporting amounts may be to sort the corresponding edge nodes in order of monitoring data amount from large to small or from small to large to generate a sorting result. The location information may be information characterizing the location of each edge node, specifically, longitude and latitude information or coordinate information.

[0052] In a possible embodiment, the configuration information generation module 102 is used to sort the edge nodes according to the monitoring data reporting amount corresponding to each edge node, in the order of the monitoring data reporting from large to small or from small to large, to obtain a sorting result of the edge nodes. The sorting result stores the identification code of each edge node, the monitoring data reporting amount of the edge node, and the sorting sequence number of the edge node in an associated manner.

[0053] The configuration information generation module 102 sends a location information acquisition instruction to each edge node, and the edge node feeds back its own identification code and current location information to the configuration information generation module 102 based on the received location information acquisition instruction. The configuration information generation module 102 associates and stores the identification code of each edge node and the current location information. The configuration information generation module 102 reallocates the sensor nodes connected to each edge node based on the sorting result and location information of each edge node.

[0054] In a possible embodiment, the configuration information generating module 102 is configured as follows:

[0055] Based on the sorting result, performing balanced grouping of edge nodes;

[0056] It is determined whether the balanced allocation condition is met according to the position information of the edge nodes in each balanced group. If the balanced allocation condition is met, the sensor nodes connected to the edge nodes in the balanced group are evenly allocated.

[0057] Among them, the balanced grouping of the edge nodes can be to group the edge node ranked first with the edge node ranked last, to group the edge node ranked second with the edge node ranked second to last, and so on. It can be understood that if the total number of edge nodes is an odd number, an edge node located in the middle of the ranking does not need to be grouped. The balanced distribution condition can be that the distance between the two edge nodes is less than a preset distance. The balanced distribution can be understood as an average distribution, for example, the sensor nodes connected to the edge node ranked first and the edge node ranked last are evenly distributed according to the amount of monitoring data reported.

[0058] In a possible embodiment, the configuration information generating module 102 groups the edge node ranked first with the edge node ranked last, and groups the edge node ranked second with the edge node ranked second to last, and so on until all edge nodes are grouped. Determine whether the distance between the edge nodes in the same group is less than a preset distance.

[0059] If the distance between edge nodes in the same group is greater than or equal to the preset distance, all edge nodes that do not meet the grouping conditions will be divided again based on the location information, and balanced based on the location information; or, the groups that do not meet the grouping conditions will be grouped for the second time, and the grouping conditions of the second time will not overlap with the first time, and so on, until the grouping meets the balanced allocation conditions.

[0060] If the distance between edge nodes in the same group is less than the preset distance, the sensor nodes connected to the edge nodes in the balanced group are evenly distributed. For example, evenly distributing the edge node ranked first and the edge node ranked last can be to determine the average value of the monitoring and reporting data volume of the two edge nodes as a, determine the difference between the monitoring data reporting volume corresponding to the edge node ranked first and the average value as b, and determine the number of sensor nodes corresponding to the difference. Among them, the way to determine the number of sensor nodes can be to divide the monitoring data reporting volume m corresponding to the edge node ranked first by the number of connected sensor nodes n, and determine the basic monitoring data volume uploaded by a single sensor node as m / n. By dividing the above difference with the basic monitoring data volume, that is, b / (m / n), the number of sensor nodes to be adjusted is determined to be z, and the z sensor nodes connected to the edge node ranked first are connected to the edge node ranked last. Exemplarily, the monitoring data reporting volume of the two edge nodes can also be firstly subtracted, and then the number of sensors to be adjusted can be determined by the difference. For example, the amount of monitoring data reported by edge node X is a, the amount of monitoring data reported by edge node Y is b, and the difference between the two is ab. Then node a needs to allocate the sensor nodes corresponding to the amount of data (ab) / 2 to node Y.

[0061] As can be seen from the above, based on the sorting results, the edge nodes are balanced grouped. This grouping method minimizes the number of replacements of the overall sensors and nodes and saves resources. Determine whether the balanced allocation condition is met based on the location information of the edge nodes in each balanced group. If the balanced allocation condition is met, the sensor nodes connected to the edge nodes in the balanced group are evenly allocated. The edge nodes within the preset range are evenly allocated. On the one hand, the instability of data transmission caused by excessive distance is avoided. On the other hand, the transmission and monitoring efficiency of the intelligent cable data is improved by balanced allocation.

[0062] In one embodiment, the configuration sending module 103 sends the access configuration information to each edge node and the multiple sensor nodes connected to it. Each sensor node queries whether the edge node it wants to access is consistent with the current one based on the received access configuration information, which can be determined specifically by the identification code of the edge node. If they are consistent, the current connection state is maintained; if they are inconsistent, the currently connected edge node is disconnected, the edge node is searched based on the identification code of the edge node to be connected, and a communication connection is established. After the sensor node completes the reconnection, each edge node confirms whether the number of currently connected sensor nodes and the numbers of the multiple connected sensor nodes comply with the access configuration information. If not, the sensor node that does not comply with the regulations is disconnected to reconnect it to the correct edge node; if it complies, the configuration process ends.

[0063] As can be seen from the above, the embodiment of the present invention discloses a multi-node configurable cable information online monitoring system, which includes: a data acquisition module, configured to obtain the current monitoring data reporting amount of each edge node, each edge node is connected to multiple sensor nodes for communication, and the sensor nodes collect monitoring data of the corresponding cable; a configuration information generation module, configured to configure the number of sensors accessed by each edge node according to the monitoring data reporting amount to generate access configuration information; a configuration sending module, configured to send the access configuration information to each edge node and the corresponding multiple sensor nodes, so that each edge node and the multiple sensor nodes re-communicate and connect based on the access configuration information. This solution solves the problem that the configuration methods of each edge node and sensor, as well as the edge node and the system control platform in the prior art are fixed and single, and lack reasonable and flexible settings, and improves the transmission and monitoring efficiency of intelligent cable data.

[0064] Figure 2 The module structure block diagram of another multi-node configurable cable information online monitoring system provided by the embodiment of the present invention. Figure 2 As shown, the system specifically includes:

[0065] The wake-up cycle processing module 201 is configured to adjust the wake-up cycle of each sensor node based on the currently collected monitoring data before obtaining the current monitoring data reporting amount of each edge node, and send the collected monitoring data to the edge node connected to the communication when waking up in each wake-up cycle;

[0066] The data acquisition module 202 is configured to acquire the current monitoring data reporting amount of each edge node, wherein each edge node is communicatively connected with a plurality of sensor nodes, and the sensor nodes are used to collect monitoring data of the corresponding cable;

[0067] The configuration information generating module 203 is configured to configure the number of sensor nodes connected to each edge node according to the amount of monitoring data reported, and generate access configuration information;

[0068] The configuration sending module 204 is configured to send the access configuration information to each edge node and a corresponding plurality of sensor nodes, so that each edge node and the plurality of sensor nodes are re-communicated based on the access configuration information.

[0069] In one embodiment, the wake-up cycle may be a pre-set time interval for controlling each sensor node to report data. The adjustment of the wake-up cycle based on the currently collected monitoring data may be to adjust the time interval for reporting data based on the amount of currently collected monitoring data. It is understandable that if the amount of monitoring data collected by the current sensor node is large, that is, the amount of data that the current sensor node needs to report is large, then the corresponding wake-up cycle time interval is short. Correspondingly, the edge node connected to the sensor node receives a large amount of monitoring data reports. Since different sensor nodes have different corresponding wake-up cycles, the edge node receives different amounts of monitoring data reports, and thus it is necessary to reconfigure the sensor node connected to it according to the current amount of monitoring data reported by the edge node.

[0070] In one embodiment, the wake-up cycle processing module 201 is used to adjust the time interval for reporting the data corresponding to each sensor node according to the amount of monitoring data collected by each sensor node. The sensor node sends the collected monitoring information to the edge node connected to it for communication based on the wake-up cycle. Exemplarily, the current wake-up cycle of the sensor node is 3 hours, and the sensor node sends the collected monitoring information to the edge node connected to it for communication every 3 hours.

[0071] As can be seen from the above, the wake-up cycle processing module is configured to adjust the wake-up cycle of each sensor node based on the currently collected monitoring data before obtaining the current monitoring data reporting amount of each edge node, and send the collected monitoring data to the edge node connected to the communication when waking up in each wake-up cycle. The corresponding wake-up cycle is determined by the amount of data collected by each sensor node, thereby improving the adaptability of the monitoring data amount and the data reporting frequency.

[0072] Figure 3 A flowchart of a multi-node configurable cable information online monitoring method provided by an embodiment of the present invention, such as Figure 3 As shown, the method specifically comprises the following steps:

[0073] S301, obtaining the current monitoring data reporting amount of each edge node, wherein each edge node is communicatively connected with a plurality of sensor nodes, and the sensor nodes are used to collect monitoring data of corresponding cables;

[0074] S302, configuring the number of sensor nodes connected to each edge node according to the amount of monitoring data reported to generate access configuration information;

[0075] S303: Send the access configuration information to each edge node and a corresponding plurality of sensor nodes, so that each edge node and the plurality of sensor nodes are re-communicated based on the access configuration information.

[0076] As can be seen from the above, the current monitoring data reporting amount of each edge node is obtained, wherein each edge node is connected to multiple sensor nodes for communication, and the sensor nodes are used to collect monitoring data of the corresponding cable; according to the monitoring data reporting amount, the number of sensor nodes accessed by each edge node is configured to generate access configuration information; the access configuration information is sent to each edge node and the corresponding multiple sensor nodes, so that each edge node and the multiple sensor nodes can re-communicate and connect based on the access configuration information. This solution solves the problem that the configuration methods of each edge node and sensor, as well as the edge node and the system control platform in the prior art are fixed and single, and lack reasonable and flexible settings, and improves the transmission and monitoring efficiency of intelligent cable data.

[0077] In a possible embodiment, before obtaining the current monitoring data reporting amount of each edge node, the method further includes:

[0078] Each sensor node adjusts the wake-up cycle based on the currently collected monitoring data, and sends the collected monitoring data to the edge node connected to the communication when waking up in each wake-up cycle.

[0079] As can be seen from the above, the wake-up cycle processing module is configured to adjust the wake-up cycle of each sensor node based on the currently collected monitoring data before obtaining the current monitoring data reporting amount of each edge node, and send the collected monitoring data to the edge node connected to the communication when waking up in each wake-up cycle. The corresponding wake-up cycle is determined by the amount of data collected by each sensor node, thereby improving the adaptability of the monitoring data amount and the data reporting frequency.

[0080] In a possible embodiment, configuring the number of sensor nodes connected to each edge node according to the amount of monitoring data reported to generate access configuration information includes:

[0081] Sorting the edge nodes according to their respective monitoring data reporting amounts;

[0082] The location information of each edge node is obtained, and the number of sensors connected to each edge node is configured based on the location information and the sorting result to generate access configuration information.

[0083] In a possible embodiment, configuring the number of sensors connected to each edge node based on the location information and the sorting result to generate access configuration information includes:

[0084] Based on the sorting result, performing balanced grouping of edge nodes;

[0085] It is determined whether the balanced allocation condition is met according to the position information of the edge nodes in each balanced group. If the balanced allocation condition is met, the sensor nodes connected to the edge nodes in the balanced group are evenly allocated.

[0086] As can be seen from the above, based on the sorting results, the edge nodes are balanced grouped. This grouping method minimizes the number of replacements of the overall sensors and nodes and saves resources. Determine whether the balanced allocation condition is met based on the location information of the edge nodes in each balanced group. If the balanced allocation condition is met, the sensor nodes connected to the edge nodes in the balanced group are evenly allocated. The edge nodes within the preset range are evenly allocated. On the one hand, the instability of data transmission caused by excessive distance is avoided. On the other hand, the transmission and monitoring efficiency of the intelligent cable data is improved by balanced allocation.

[0087] Figure 4 A schematic diagram of the structure of a multi-node configurable cable information online monitoring device provided by an embodiment of the present invention, such as Figure 4 As shown, the device includes a processor 401, a memory 402, an input device 403 and an output device 404; the number of processors 401 in the device can be one or more. Figure 4 A processor 401 is taken as an example; the processor 401, memory 402, input device 403 and output device 404 in the device can be connected by a bus or other means. Figure 4 The example of connecting via a bus is taken. The memory 402, as a computer-readable storage medium, can be used to store software programs, computer executable programs and modules, such as program instructions / modules corresponding to the multi-node configurable cable information online monitoring method in the embodiment of the present invention. The processor 401 executes various functional applications and data processing of the device by running the software programs, instructions and modules stored in the memory 402, that is, realizes the above-mentioned multi-node configurable cable information online monitoring method. The input device 403 can be used to receive input digital or character information, and generate key signal input related to user settings and function control of the device. The output device 404 may include a display device such as a display screen.

[0088] An embodiment of the present invention also provides a storage medium containing computer executable instructions, which, when executed by a computer processor, are used to execute a multi-node configurable cable information online monitoring method, the method comprising: obtaining the current monitoring data reporting amount of each edge node, wherein each edge node is communicatively connected to multiple sensor nodes, and the sensor nodes are used to collect monitoring data of the corresponding cable; according to the monitoring data reporting amount, configuring the number of sensor nodes accessed by each edge node to generate access configuration information; sending the access configuration information to each edge node and the corresponding multiple sensor nodes, so that each edge node and the multiple sensor nodes can re-communicate based on the access configuration information.

[0089] It is worth noting that in the embodiment of the above-mentioned multi-node configurable cable information online monitoring system device, the various units and modules included are only divided according to functional logic, but are not limited to the above-mentioned division, as long as the corresponding functions can be achieved; in addition, the specific names of the functional units are only for the convenience of distinguishing each other, and are not used to limit the protection scope of the embodiments of the present invention.

[0090] Note that the above are only preferred embodiments of the present invention and the technical principles used. Those skilled in the art will understand that the embodiments of the present invention are not limited to the specific embodiments described herein, and that various obvious changes, readjustments and substitutions can be made by those skilled in the art without departing from the protection scope of the embodiments of the present invention. Therefore, although the embodiments of the present invention are described in more detail through the above embodiments, the embodiments of the present invention are not limited to the above embodiments, and may include more other equivalent embodiments without departing from the concept of the embodiments of the present invention, and the scope of the embodiments of the present invention is determined by the scope of the appended claims.

Claims

1. A multi-node configurable cable information online monitoring system, characterized in that: include: A wake-up cycle processing module is configured to adjust the wake-up cycle of each sensor node based on the currently collected monitoring data before obtaining the current monitoring data reporting amount of each edge node, and send the collected monitoring data to the edge node connected to the communication when waking up in each wake-up cycle; A data acquisition module is configured to acquire the current monitoring data reporting amount of each edge node, wherein each edge node is communicatively connected to a plurality of sensor nodes, and the sensor nodes are used to collect monitoring data of the corresponding cable; A configuration information generation module is configured to configure the number of sensor nodes connected to each edge node according to the amount of monitoring data reported, generate access configuration information, and the configuration information generation module is configured to: sort the edge nodes according to their respective monitoring data reporting amounts, obtain the location information of each edge node, and configure the number of sensors connected to each edge node based on the location information and the sorting result to generate access configuration information, and the configuration information generation module is configured to: perform balanced grouping of edge nodes based on the sorting result, determine whether the balanced allocation condition is met for the location information of the edge nodes in each balanced group, and if the balanced allocation condition is met, evenly allocate the sensor nodes connected to the edge nodes in the balanced group; The configuration sending module is configured to send the access configuration information to each edge node and a corresponding plurality of sensor nodes, so that each edge node and the plurality of sensor nodes are re-communicated based on the access configuration information.

2. A multi-node configurable cable information online monitoring method, characterized in that: include: Each sensor node adjusts the wake-up cycle based on the currently collected monitoring data, and sends the collected monitoring data to the edge node connected to the communication when waking up in each wake-up cycle; Obtaining the current monitoring data reporting amount of each edge node, wherein each edge node is communicatively connected to a plurality of sensor nodes, and the sensor nodes are used to collect monitoring data of the corresponding cable; According to the amount of monitoring data reported, the number of sensor nodes connected to each edge node is configured to generate access configuration information, which includes: sorting the edge nodes according to their respective monitoring data reporting amounts, obtaining the location information of each edge node, and configuring the number of sensors connected to each edge node based on the location information and the sorting result to generate access configuration information, and configuring the number of sensors connected to each edge node based on the location information and the sorting result to generate access configuration information includes: based on the sorting result, performing balanced grouping of edge nodes, determining whether the balanced allocation condition is met for the location information of the edge nodes in each balanced group, and if the balanced allocation condition is met, performing balanced allocation of the sensor nodes connected to the edge nodes in the balanced group; The access configuration information is sent to each edge node and a corresponding plurality of sensor nodes, so that each edge node and the plurality of sensor nodes are re-communicated based on the access configuration information.

3. A multi-node configurable cable information online monitoring device, the device comprising: one or more processors; A storage device for storing one or more programs. When the one or more programs are executed by the one or more processors, the one or more processors implement the multi-node configurable cable information online monitoring method as described in claim 2.

4. A storage medium storing computer executable instructions, wherein the computer executable instructions are used to execute the multi-node configurable cable information online monitoring method as claimed in claim 2 when executed by a computer processor.

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