Performance optimization method and system for safety guarantee device

By setting up hand-in-hand outlets and combining channels in the security guarantee device, and using the replacement mechanism of sub-points and differentiated outlets, the information transmission stability problem of the security guarantee device under network instability and external attacks is solved, and the stability and security of information transmission are achieved.

CN119945758APending Publication Date: 2025-05-06GUOHE XINGKE (SHENZHEN) TECH CO LTD
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Patent Information

Application Number
CN202510044228.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-01-11
Publication Date
2025-05-06

AI Technical Summary

Technical Problem

Security guarantee devices are prone to abnormal outlets in situations of network instability and external attacks, resulting in the inability to collect and transmit information, which poses a major security risk.

Method used

By obtaining multiple security equipment information, setting up hand-in-hand outlets, and establishing a combined channel between security equipment information and upstream servers, using sub-network corresponding to different load areas for data collection and transmission, and replacing abnormal outlets through differentiated outlets when the outlet is abnormal, ensuring the stability of information transmission.

Benefits of technology

It realizes the stability of information transmission in the case of network instability and external attacks, avoids the problem of incomplete information collection, and improves the network security and stability performance of security equipment.

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Abstract

The invention discloses a safety guarantee device performance optimization method and system, and relates to the technical field of performance optimization, multiple pieces of safety equipment information are acquired, and hand-in-hand network points are set based on the safety equipment information; based on a hand-in-hand website, establishing a combined channel between the plurality of pieces of security equipment information and an upstream server; and transmitting safety information collected by the hand-in-hand network point through the safety equipment to an upstream server based on the combined channel. According to the invention, data acquisition and transmission are carried out through the sub-websites corresponding to different load areas, and the abnormal websites are replaced through the differentiation websites, so that information transmission is more stable, the differentiation websites are started to establish connection with the security equipment when the subsequent websites cannot be normally used, the smoothness of information transmission or receiving can be satisfied, and the security of the security equipment is improved. Other differentiated network points are randomly selected through network point connection to replace abnormal differentiated network points, and a plurality of standby network points can better ensure the stability of information transmission of the security equipment.
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Description

Technical Field

[0001] The present invention relates to the technical field of performance optimization, and in particular to a method and system for optimizing the performance of a safety assurance device. Background Art

[0002] Security devices are facilities or devices set up to protect the safety of personnel, equipment, environment and public property. They can play the role of alarm, control and protection in equipment, machinery, systems, buildings, etc. However, the collection and transmission of the subject information to be protected in the security device is particularly important. At present, network instability and external network attacks are common. Therefore, security devices are prone to abnormal network points, resulting in the inability to collect information for transmission, which leads to major hidden dangers in security. Summary of the invention

[0003] The purpose of the present invention is to provide a method and system for optimizing the performance of a safety assurance device to address the deficiencies in the background technology.

[0004] In order to achieve the above object, the present invention provides the following technical solution: a method for optimizing the performance of a safety protection device, comprising the following steps: Obtain information of multiple security devices, and set up Hand in Hand outlets based on the security device information; Establish a combined channel between multiple security device information and upstream servers based on the hand-in-hand network; Based on the combined channel, the security information collected by the Hand-in-Hand outlets through security devices is transmitted to the upstream server.

[0005] In a preferred embodiment, the step of obtaining a plurality of security device information and setting a Hand in Hand network point based on the security device information includes: Acquire multiple security device information, wherein the security device information includes security device codes and corresponding security device locations; Set a corresponding number of outlets according to the number of security equipment information, and correspond and bind the outlets to the security equipment information one by one; Setting load information corresponding to the safety device information, wherein the load information includes a plurality of load areas and corresponding load types; The network points are loaded into the load information, network point shuttles are set corresponding to the network points, and a connection relationship between the network point shuttles bound with multiple safety device information is established to obtain a hand-in-hand network point.

[0006] In a preferred embodiment, the corresponding network point sets a network point shuttle, and establishes a connection relationship between the network point shuttles bound with multiple security device information to obtain a hand-in-hand network point, including: The corresponding safety device loads the network point in the load information, wherein the network point is composed of multiple sub-network points, and the type of the sub-network point is configured based on the load type, and the sub-network point is loaded in the load area according to the type; Each network point is divided into multiple differentiated network points, and the multiple differentiated network points are connected with corresponding network points as network point shuttles; Multiple network shuttles bound with security device information are connected, the network shuttles are loaded on security devices, and the differentiated network shuttles are not loaded on security devices, thus obtaining hand-in-hand network shuttles.

[0007] In a preferred embodiment, the step of dividing each network point to obtain a plurality of differentiated network points, and connecting the plurality of differentiated network points with corresponding network points as network point shuttles comprises: A plurality of ports are arranged on the network point, at least two ports are arranged on each differentiation network point, and a plurality of differentiation network points are connected to the network points through the ports respectively; The differentiated dots and dots after multiple connections are used as dot shuttles.

[0008] In a preferred embodiment, the step of establishing a combined channel between multiple security device information and an upstream server based on the Hand-in-Hand network point includes: Establish a communication channel between the network shuttle in the hand-in-hand network and the upstream server, and set the channel type corresponding to the communication channel; Connect the outlets in the outlet shuttle and the differentiated outlets to the communication channel, open the communication between the outlets and the communication channel, and close the communication between the differentiated outlets and the communication channel; The corresponding network points and the differentiated network points are matched with corresponding channel types, and the connection between the differentiated network points and the network points and the communication channels respectively is used as a combined channel.

[0009] In a preferred embodiment, the step of transmitting the security information collected by the Hand in Hand outlet through the security device to the upstream server based on the combined channel includes: Obtaining status information of sub-networks in the network, wherein the status information includes connection status and disconnection status; Treat the connected nodes as normal nodes, and transmit the security information collected by the security equipment to the upstream server through the nodes and communication channels; The outlets in the disconnected state are regarded as abnormal outlets, and based on the hand-in-hand outlets, they are randomly prompted to one of the corresponding differentiation outlets through the abnormal outlets as the target differentiation outlets, and the target differentiation outlets are used to replace the abnormal outlets; Disconnect the network point from the communication channel, connect the target differentiated network point to the communication channel, and modify the channel type of the communication channel by matching the target differentiated network point; The security information collected by the security equipment is transmitted to the upstream server through differentiated outlets and communication channels.

[0010] In a preferred embodiment, the step of replacing abnormal network points with target differentiated network points comprises: Unload the sub-network points of the abnormal network points from the load area, and configure the sub-network points in the target differentiated network corresponding to the load type to obtain the sub-network point type; The sub-network points in the target differentiated network are loaded in the load area of ​​the corresponding load type according to the sub-network point type, so as to complete the replacement of the abnormal network points by the target differentiated network points.

[0011] The present invention also provides a safety device performance optimization system, comprising: A setting module, used to obtain information of multiple safety devices and set a Hand-in-Hand outlet based on the safety device information; A construction module, connected with the device module, is used to establish a combined channel between multiple security device information and an upstream server based on the hand-in-hand network point; The transmission module is connected to the construction module and is used to transmit the security information collected by the Hand-in-Hand outlets through the security equipment to the upstream server based on the combined channel.

[0012] In the above technical solution, the technical effects and advantages provided by the present invention are: The present invention collects and transmits data through sub-networks corresponding to different load areas, and replaces abnormal network points through differentiated network points, which can make information transmission more stable. When abnormalities occur in subsequent differentiated network points, other differentiated network points are randomly selected through the connection of the network points to replace the abnormal differentiated network points. Multiple spare network points can better ensure the stability of information transmission of security equipment. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the drawings required for use in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments recorded in the present invention. For ordinary technicians in this field, other drawings can also be obtained based on these drawings.

[0014] Figure 1 The figure is a flow chart of the method of the present invention.

[0015] Figure 2 It is a system block diagram of the present invention. DETAILED DESCRIPTION

[0016] In order to make the purpose, technical solution and advantages of the embodiments of the present invention clearer, the technical solution 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. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0017] Example 1, please refer to Figure 1 As shown, a method for optimizing the performance of a safety assurance device described in this embodiment includes the following steps: S1. Obtain information of multiple security devices and set up a Hand-in-Hand outlet based on the security device information; S2, establishing a combined channel between multiple security device information and upstream servers based on the hand-in-hand network; S3, based on the combined channel, transmit the security information collected by the Hand in Hand outlet through the security equipment to the upstream server; As described in the above steps S1-S3, the security device is a facility or device set up to protect the safety of personnel, equipment, environment and public property. They can play the role of alarm, control, protection and the like in equipment, machinery, systems, buildings and the like. However, the collection and transmission of the subject information to be protected in the security device is particularly important. At present, network instability and external network attacks are common. Therefore, the security device is prone to abnormal network points, resulting in the inability to collect information for transmission, which leads to a greater hidden danger in security. In this application, data is collected and transmitted through sub-network points corresponding to different load areas. When there is an abnormality in the network point, it is difficult for the security equipment to smoothly transmit the collected data, resulting in incomplete information collection. Therefore, the replacement of abnormal network points by differentiation network points can make the information transmission more stable. When the subsequent differentiation network points also have abnormalities, other differentiation network points are randomly selected through the connection of the network points to replace the abnormal differentiation network points. Multiple spare network points can better ensure the stability of information transmission of the security device.

[0018] In one embodiment, the step S1 of obtaining multiple security device information and setting a Hand in Hand outlet based on the security device information includes: S11, obtaining multiple security device information, wherein the security device information includes a security device code and a corresponding security device position; S12, setting a corresponding number of outlets according to the number of security device information, and making a one-to-one correspondence and binding between the outlets and the security device information; S13, setting load information corresponding to the safety device information, wherein the load information includes multiple load areas and corresponding load types; S14, loading the network point into the load information, setting the network point shuttle corresponding to the network point, establishing a connection relationship between the network point shuttles bound with multiple safety device information to obtain a hand-in-hand network point; As described in the above steps S11-S14, the security equipment is encoded to obtain the security equipment code, the security equipment position is obtained, the security equipment position and the security equipment code are used as the security equipment information, and then the corresponding number of outlets are set corresponding to the security equipment information. The outlets are set by themselves, and then the outlets are associated and bound with the security equipment, and the load information is set corresponding to the security equipment information. The load information includes multiple load areas and corresponding load types. The load area is the functional control area of ​​the security equipment, and the load type is the functional type corresponding to the load area. For example, for security monitoring camera equipment, the functional control area here may include lens rotation, image acquisition and transmission, and the corresponding load type. Then the outlet is loaded into the load information, and a connection relationship between the outlet shuttles bound with multiple security equipment information is established. Multiple outlets are connected to communicate through the connection relationship as hand-in-hand outlets, which can associate the security equipment in the venue, improve the security management function of the venue, and optimize the performance of the security equipment in the venue; In one embodiment, the corresponding network point sets a network point shuttle, establishes a connection relationship between the network point shuttles bound with multiple security device information to obtain a hand-in-hand network point, step S14, includes: S141, the corresponding security device loads the network point in the load information, wherein the network point is composed of multiple sub-network points, and the type of the sub-network point is configured based on the load type, and the sub-network point is loaded in the load area according to the type; S142, dividing each network point into a plurality of differentiated network points, and connecting the plurality of differentiated network points with corresponding network points as network point shuttles; S143, multiple network point shuttles bound with security device information are connected, the network points in the network point shuttle are loaded on the security device, and the differentiated network points are not loaded on the security device, so as to obtain hand-in-hand network points; As described in the above steps S141-S143, a network point is composed of multiple sub-network points, one sub-network point is used to connect a function on the security device, and multiple sub-network points are combined as a network point to connect the entire security device. The type of the sub-network point is configured based on the load type, and the sub-network point is loaded in the load area according to the type. Each network point is divided to obtain multiple differentiated network points, and the multiple differentiated network points are connected to the corresponding network points as a network point shuttle. The network points here are connected to each other, and the network point is loaded on the security device. The sub-network points in the network point are used to receive or send information, which can be done independently. After that, the network point shuttles bound with multiple security device information are connected. The network points in the network point shuttle are loaded on the security device, and the differentiated network points are not loaded on the security device to obtain a hand-in-hand network point. The differentiated network point is set to enable the differentiated network point to establish a connection with the security device when the subsequent network point cannot be used normally. This can meet the smoothness of transmitting or receiving information and avoid affecting the use of the security device due to the failure of the network point to be used normally.

[0019] In one embodiment, the step S142 of dividing each network point into a plurality of differentiated network points and connecting the plurality of differentiated network points with corresponding network points as network point shuttles includes: S1421. Multiple ports are set on the network point, and at least two ports are set on each differentiated network point, and multiple differentiated network points are connected to the network points through the ports respectively; S1422, using the differentiated network points and network points after multiple connections as network point shuttles; As described in the above steps S1421-S1422, multiple ports are set on each network point, and at least two ports are set on multiple differentiated network points respectively. Multiple differentiated network points are connected to the network points through the ports respectively. The differentiated network points here are connected to the corresponding network points through the ports respectively, which is equivalent to the differentiated network points being connected around the network points respectively. The differentiated network points also have at least one port for subsequent connection with the communication channel to form a combined channel. There are multiple ports in the network point, and the number of network point ports is greater than the number of differentiated network points. At least one port in the network point needs to be reserved for connection with the subsequent combined channel and one port needs to be reserved for communication connection between network points. During the normal use of the network point, the differentiated network point is disconnected from the subsequent combined channel. Only when the network point cannot be used normally, one of the differentiated network points is selected and loaded on the security device. The differentiated network point and the subsequent combined channel will be opened, which can better ensure the stability of the use of the security device and improve the network security and stability performance of the security device.

[0020] In one embodiment, the step S2 of establishing a combined channel between multiple security device information and an upstream server based on the hand-in-hand network point includes: S21, establishing a communication channel between the network shuttle in the hand-in-hand network and the upstream server, and setting a channel type corresponding to the communication channel; S22, connecting the outlets in the outlet shuttle and the differentiated outlets to the communication channel, opening the communication between the outlets and the communication channel, and closing the communication between the differentiated outlets and the communication channel; S23, matching the corresponding network point with the differentiated network point to the corresponding channel type, and using the connection between the differentiated network point and the network point and the communication channel respectively as a combined channel; As described in the above steps S21-S23, each network shuttle communicates with the upstream server to obtain a communication channel, the network nodes in the network shuttle and the differentiated network nodes are connected to the communication channel, the communication between the network node and the communication channel is turned on, and the communication between the differentiated network node and the communication channel is turned off. When the network node is in normal use, the communication between the differentiated network node and the communication channel is disconnected, the corresponding network node and the differentiated network node are matched with the corresponding channel type, and the connection between the differentiated network node and the network node and the communication channel is used as a combined channel. The communication channel can correspond to the network node or the differentiated network node to display the corresponding channel type. For example, the channel type includes the network node type and the differentiated network node type. The network node type represents that the network node is connected to the communication channel, and the differentiated network node type represents that the differentiated network node is connected to the communication channel.

[0021] In one embodiment, the step S3 of transmitting the security information collected by the Hand in Hand outlet through the security device to the upstream server based on the combined channel includes: S31, obtaining status information of a sub-network in a network, wherein the status information includes a connection status and a disconnection status; S32, treating the network point in the connected state as a normal network point, and transmitting the security information collected by the security device to the upstream server through the network point and the communication channel; S33, taking the outlet in the disconnected state as an abnormal outlet, randomly prompting the hand-in-hand outlet through the abnormal outlet to a corresponding differentiation outlet as a target differentiation outlet, and replacing the abnormal outlet with the target differentiation outlet; S34, disconnecting the network point from the communication channel, connecting the target differentiated network point to the communication channel, and modifying the channel type of the communication channel by corresponding matching based on the target differentiated network point; S35, transmitting the security information collected by the security device to the upstream server through the differentiated network points and communication channels; As described in the above steps S31-S35, the status information of the sub-network in the network is obtained. The sub-network here corresponds to the function of the security device. Therefore, if the sub-network is disconnected, it means that the network is abnormal, then the network needs to be replaced, and the differentiated network replaces the abnormal network. Based on the hand-in-hand network, the network is randomly prompted to one of the corresponding differentiated network as the target differentiated network through the abnormal network. When selecting the target differentiated network, it is necessary to determine it through the connection relationship between the hand-in-hand network. Selecting the differentiated network with a hand-in-hand network relationship as the target differentiated network can avoid In case of selection error, the target differentiated outlet will replace the abnormal outlet, disconnect the outlet from the communication channel, connect the target differentiated outlet to the communication channel, and modify the channel type of the communication channel based on the target differentiated outlet. The channel type here can tell whether the differentiated outlet has replaced the outlet. The security information collected by the security equipment is transmitted to the upstream server through the differentiated outlet and the communication channel, which can ensure the stability of information transmission of the security equipment, improve the transmission performance of the security equipment, and avoid the problem of the inability to transmit the information collected by the security equipment due to network outlet problems; In one embodiment, the step S33 of replacing the abnormal network points with the target differentiated network points comprises: S331, unloading the sub-network point of the abnormal network point from the load area, and configuring the sub-network point in the target differentiated network corresponding to the load type to obtain the sub-network point type; S332, loading the sub-network points in the target differentiated network into the load area of ​​the corresponding load type according to the sub-network point type, and completing the replacement of the abnormal network point by the target differentiated network point; As described in the above steps S331 and S332, the sub-network points of the abnormal network points are respectively loaded in the load area, and the sub-network points of the abnormal network points need to be unloaded from the load area, and then the sub-network points in the selected target differentiated network are configured corresponding to the load type to obtain the sub-network point type, so that it can be determined that the sub-network points in the target differentiated network need to be loaded in the corresponding load area. Then, the sub-network points in the target differentiated network are loaded in the load area of ​​the corresponding load type according to the sub-network point type, and the target differentiated network points replace the abnormal network points. Data is collected and transmitted through the sub-network points corresponding to different load areas. When there is an abnormality in the network point, it is difficult for the security equipment to transmit the collected data smoothly, resulting in incomplete information collection. Therefore, replacing the abnormal network point with the differentiated network point here can make the information transmission more stable. When the subsequent differentiated network point also has an abnormality, other differentiated network points are randomly selected through the connection of the network points to replace the abnormal differentiated network point. Multiple spare network points can better ensure the stability of information transmission of the security equipment.

[0022] Example 2, please refer to Figure 2As shown, a safety device performance optimization system described in this embodiment includes: A setting module, used to obtain information of multiple safety devices and set a Hand-in-Hand outlet based on the safety device information; A construction module, connected with the device module, is used to establish a combined channel between multiple security device information and an upstream server based on the hand-in-hand network point; A transmission module, connected to the construction module, for transmitting the security information collected by the Hand-in-Hand outlets through the security devices to the upstream server based on the combined channel; To further explain, data is collected and transmitted through sub-network points corresponding to different load areas. When there is an abnormality in the network point, it is difficult for the security equipment to smoothly transmit the collected data, resulting in incomplete information collection. Therefore, replacing the abnormal network point with the differentiated network point can make the information transmission more stable. When the subsequent differentiated network point also has an abnormality, other differentiated network points are randomly selected through the connection of the network point to replace the abnormal differentiated network point. Multiple backup network points can better ensure the stability of information transmission of the security equipment.

[0023] The above is only a specific implementation of the present application, but the protection scope of the present application is not limited thereto. Any person skilled in the art who is familiar with the present technical field can easily think of changes or substitutions within the technical scope disclosed in the present application, which should be included in the protection scope of the present application. Therefore, the protection scope of the present application should be based on the protection scope of the claims.

Claims

1. A method for optimizing the performance of a safety device, characterized in that: The following steps are involved: Obtain information of multiple security devices, and set up Hand in Hand outlets based on the security device information; Establish a combined channel between multiple security device information and upstream servers based on the hand-in-hand network; Based on the combined channel, the security information collected by the Hand-in-Hand outlets through security devices is transmitted to the upstream server.

2. A method for optimizing the performance of a safety device according to claim 1, characterized in that: The step of obtaining a plurality of security device information and setting a Hand-in-Hand outlet based on the security device information includes: Acquire multiple security device information, wherein the security device information includes security device codes and corresponding security device locations; Set a corresponding number of outlets according to the number of security equipment information, and correspond and bind the outlets to the security equipment information one by one; Setting load information corresponding to the safety device information, wherein the load information includes a plurality of load areas and corresponding load types; The network points are loaded into the load information, network point shuttles are set corresponding to the network points, and a connection relationship between the network point shuttles bound with multiple safety device information is established to obtain a hand-in-hand network point.

3. A method for optimizing the performance of a safety device according to claim 2, characterized in that: The step of setting a network point shuttle at the corresponding network point and establishing a connection relationship between the network point shuttles bound with multiple security device information to obtain a hand-in-hand network point includes: The corresponding safety device loads the network point in the load information, wherein the network point is composed of multiple sub-network points, and the type of the sub-network point is configured based on the load type, and the sub-network point is loaded in the load area according to the type; Each network point is divided into multiple differentiated network points, and the multiple differentiated network points are connected with corresponding network points as network point shuttles; Multiple network shuttles bound with security device information are connected, the network shuttles are loaded on security devices, and the differentiated network shuttles are not loaded on security devices, thus obtaining hand-in-hand network shuttles.

4. A method for optimizing the performance of a safety device according to claim 3, characterized in that: The step of dividing each network point to obtain a plurality of differentiated network points, and connecting the plurality of differentiated network points with corresponding network points as network point shuttles comprises: A plurality of ports are arranged on the network point, at least two ports are arranged on each differentiation network point, and a plurality of differentiation network points are connected to the network points through the ports respectively; The differentiated dots and dots after multiple connections are used as dot shuttles.

5. A method for optimizing the performance of a safety device according to claim 1, characterized in that: The step of establishing a combined channel between multiple security device information and an upstream server based on the hand-in-hand network point includes: Establish a communication channel between the network shuttle in the hand-in-hand network and the upstream server, and set the channel type corresponding to the communication channel; Connect the outlets in the outlet shuttle and the differentiated outlets to the communication channel, open the communication between the outlets and the communication channel, and close the communication between the differentiated outlets and the communication channel; The corresponding network points and the differentiated network points are matched with corresponding channel types, and the connection between the differentiated network points and the network points and the communication channels respectively is used as a combined channel.

6. A method for optimizing the performance of a safety device according to claim 1, characterized in that: The step of transmitting the security information collected by the Hand in Hand outlet through the security device to the upstream server based on the combined channel includes: Obtaining status information of sub-networks in the network, wherein the status information includes connection status and disconnection status; Treat the connected nodes as normal nodes, and transmit the security information collected by the security equipment to the upstream server through the nodes and communication channels; The outlets in the disconnected state are regarded as abnormal outlets, and based on the hand-in-hand outlets, they are randomly prompted to one of the corresponding differentiation outlets through the abnormal outlets as the target differentiation outlets, and the target differentiation outlets are used to replace the abnormal outlets; Disconnect the network point from the communication channel, connect the target differentiated network point to the communication channel, and modify the channel type of the communication channel by matching the target differentiated network point; The security information collected by the security equipment is transmitted to the upstream server through differentiated outlets and communication channels.

7. A method for optimizing the performance of a safety device according to claim 6, characterized in that: The step of replacing the abnormal network points with the target differentiated network points comprises: Unload the sub-network points of the abnormal network points from the load area, and configure the sub-network points in the target differentiated network corresponding to the load type to obtain the sub-network point type; The sub-network points in the target differentiated network are loaded in the load area of ​​the corresponding load type according to the sub-network point type, so as to complete the replacement of the abnormal network points by the target differentiated network points.

8. A safety device performance optimization system, used to implement a safety device performance optimization method according to any one of claims 1 to 7, characterized in that: include: A setting module, used to obtain information of multiple safety devices and set a Hand-in-Hand outlet based on the safety device information; A construction module, connected with the device module, is used to establish a combined channel between multiple security device information and an upstream server based on the hand-in-hand network point; The transmission module is connected to the construction module and is used to transmit the security information collected by the Hand-in-Hand outlets through the security equipment to the upstream server based on the combined channel.