CN119835277A - Management platform - Google Patents
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- CN119835277A CN119835277A CN202411853558.4A CN202411853558A CN119835277A CN 119835277 A CN119835277 A CN 119835277A CN 202411853558 A CN202411853558 A CN 202411853558A CN 119835277 A CN119835277 A CN 119835277A
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Abstract
The embodiment of the invention provides a management platform, which comprises an interface module, a network module, a data acquisition module and a host, wherein the interface module is connected with a data interface of first equipment and used for acquiring first data of the first equipment through the data interface, the network module is connected with a network page of second equipment and used for acquiring second data of the second equipment, the data acquisition module is connected with the interface module and used for acquiring the first data and the second data, the host is connected with the data acquisition module and used for establishing a data transmission link with the first equipment, the host is connected with the second equipment and used for receiving the first data and the second data, managing the first equipment based on the first data and managing the second equipment based on the second data. The invention solves the problem of difficult data transmission in the related technology, and achieves the effect of the self-adaptive data transmission method based on the asset equipment.
Description
Technical Field
The embodiment of the invention relates to the field of communication, in particular to a management platform.
Background
In the related art, although the conventional management platform can monitor and manage the operation condition of the asset device, in order to acquire the data generated by the operation of the asset device, a data transmission link needs to be established, and as the number of the data transmission links increases with the increase of the devices, the cost of interfaces is increased, and some systems inside the asset device are not opened to the outside and have no interfaces of the data links, so that the platform cannot acquire the data in the systems.
As can be seen from the above, the related art has a problem of difficulty in data transmission.
In view of the above problems in the related art, no effective solution has been proposed at present.
Disclosure of Invention
The embodiment of the invention provides a management platform to at least solve the problem of difficult data transmission in the related technology.
According to one embodiment of the invention, a management platform is provided, which comprises an interface module, a network module, a data acquisition module and a host, wherein the interface module is connected with a data interface of a first device and used for acquiring first data of the first device through the data interface, the network module is connected with a network page of a second device and used for acquiring second data of the second device, the data acquisition module is connected with the interface module and connected with the network module and used for acquiring the first data and the second data, the host is connected with the data acquisition module and used for establishing a data transmission link with the first device, the host is connected with the second device and used for receiving the first data and the second data, managing the first device based on the first data and managing the second device based on the second data.
In an exemplary embodiment, the network module comprises a crawler connected with the network page and used for acquiring the second data through the network page, and an original database used for storing the second data acquired by the crawler, wherein the original database is connected with the data acquisition module, and the data acquisition module acquires the second data from the original database.
In an exemplary embodiment, the network module further comprises a controller, wherein the controller is connected with the crawler, an interaction interface, wherein the interaction interface is connected with the controller and used for receiving a crawling control instruction and sending the crawling control instruction to the controller, and the controller is further used for determining crawling data contained in the received crawling control instruction and controlling the crawler to acquire the data according to the crawling data.
In an exemplary embodiment, the host comprises a data processing module, a resource monitoring module, a security risk analysis module and an alarm module, wherein the data processing module is used for processing the first data and the second data to obtain target data, the resource monitoring module is used for monitoring equipment configuration data included in the target data, the security risk analysis module is used for analyzing operation data included in the target data to determine an operation state, and the alarm module is used for executing alarm operation under the condition that the operation state is an abnormal state.
In an exemplary embodiment, the management platform further comprises a storage database coupled to the host for storing data generated by the host.
In an exemplary embodiment, the storage database comprises a data statistics sub-module, a data display sub-module and a data backup sub-module, wherein the data statistics sub-module is used for storing statistics type data generated by the storage host, the data display sub-module is used for storing data to be displayed generated by the host, and the data backup sub-module is used for storing backup data generated by the host.
In an exemplary embodiment, the management platform further comprises a configuration management module, wherein the configuration management module is connected with the host, the configuration management module comprises a node configuration sub-module, the node configuration sub-module is used for configuring a network for a node connected with the host, the node is connected with the second device and used for receiving the second data, a service configuration sub-module is used for configuring functional services of the node, and a flow configuration sub-module is used for configuring a flow of the node for transmitting the second data.
In an exemplary embodiment, the management platform further comprises a task management module, wherein the task management module is connected with the host, the task management module comprises a task list sub-module used for displaying a task list of the host, a scheduling management sub-module used for scheduling tasks executed by the host, and a task monitoring sub-module used for monitoring execution states of the tasks executed by the host.
In an exemplary embodiment, the management platform further comprises a monitoring management module, wherein the monitoring management module is connected with the host, the monitoring management module comprises a node monitoring sub-module, an operation monitoring sub-module and a process monitoring sub-module, the node monitoring sub-module is used for monitoring the connection state of a node connected with the host, the operation monitoring sub-module is used for monitoring the operation state of the host, and the process monitoring sub-module is used for monitoring the process of collecting data by the data collecting module.
In an exemplary embodiment, the management platform further comprises a security management module connected with the host, wherein the security management module comprises a user management sub-module used for managing a first account interacted with the host, a permission management sub-module used for managing permission to access a second account of the host, and an access control sub-module used for setting access content allowed to access a third account of the host.
According to the invention, the management platform comprises an interface module, a network module, a data acquisition module and a host, wherein the interface module can be connected with first equipment through a data interface to acquire first data, the network module can be connected with second equipment through a network page to acquire second data, and the data acquisition module is connected with the interface module and the network module to acquire the first data and the second data. The host is connected with the data acquisition module, can receive the first data and the second data summarized by the data acquisition module, can manage the first equipment which is connected through data transmission by using the first data, and can manage the second equipment which is connected through a network by using the second data. The interface module can be connected with the first equipment in a data interface mode, and the network module can be connected with the second equipment in a network page mode, so that the problem of difficult data transmission in the related technology can be solved by considering the condition that an internal system of the equipment does not have a data link interface, and the effect of the self-adaptive data transmission method based on the asset equipment is achieved.
Drawings
FIG. 1 is a block diagram of a management platform according to an embodiment of the invention;
FIG. 2 is a management platform architecture according to an embodiment of the present invention;
fig. 3 is a diagram of a network model architecture according to an embodiment of the present invention.
Detailed Description
Embodiments of the present invention will be described in detail below with reference to the accompanying drawings in conjunction with the embodiments.
It should be noted that the terms "first," "second," and the like in the description and the claims of the present invention and the above figures are used for distinguishing between similar objects and not necessarily for describing a particular sequential or chronological order.
In this embodiment, a management platform is provided, fig. 1 is a structural block diagram of the management platform according to an embodiment of the present invention, and as shown in fig. 1, the management platform includes:
the interface module 102 is connected with a data interface of the first device and is used for acquiring first data of the first device through the data interface;
a network module 104, wherein the network module is connected with a network page of a second device, and is configured to obtain second data of the second device;
The data acquisition module 106 is connected with the interface module and the network module and is used for acquiring the first data and the second data;
And a host 108, wherein the host is connected to the data acquisition module, the host has established a data transmission link with the first device, the host has established a network connection with the second device, and is configured to receive the first data and the second data, manage the first device based on the first data, and manage the second device based on the second data.
In the foregoing embodiment, fig. 2 is a schematic diagram of a management platform according to an embodiment of the present invention, as shown in fig. 2, a data collection module may be connected to an intelligent interface module (i.e., the foregoing interface module) and a crawler network module (i.e., the foregoing network module), and may collect first data acquired by the intelligent interface module and second data acquired by the crawler network module. The intelligent interface module can be understood as a sub-module of the data acquisition module, and various interfaces can exist for connecting various asset devices. The first data is data about the first device acquired by the interface module, the second data is data about the second device acquired by the network module, and the first data and the second data may be asset device type, IP address, device information, OS information, device hardware information, basic software information (database, middleware, etc.), etc., but are not limited thereto. The first device and the second device may be understood as asset devices, which may be servers, mini-computers, storage devices, network devices, security devices, and the like. Since the system of the asset device itself may include a closed system and an open system, the closed system does not open to the outside, the first device may represent an open system asset device connected through a transmission link interface (the data interface described above) and the second device may be a closed system asset device connected through a web page.
In the above embodiment, the host may be a cloud host, where the cloud host may be connected to the first device by establishing a data transmission link, or may be connected to the network module by configuring the same network environment as the data acquisition module, so that the network module may acquire data stored in the system of the asset device itself, and thus may receive the first data and the second data collected by the network module and the interface module that are unified and summarized by the data acquisition module, and manage the first device based on the first data, and manage the second device based on the second data. The network environment with the same configuration may be understood that the first device and the data acquisition module are deployed in the same network.
According to the invention, the management platform comprises an interface module, a network module, a data acquisition module and a host, wherein the interface module can be connected with first equipment through a data interface to acquire first data, the network module can be connected with second equipment through a network page to acquire second data, and the data acquisition module is connected with the interface module and the network module to acquire the first data and the second data. The host is connected with the data acquisition module, can receive the first data and the second data summarized by the data acquisition module, can manage the first equipment which is connected through data transmission by using the first data, and can manage the second equipment which is connected through a network by using the second data. The interface module can be connected with the first equipment in a data interface mode, and the network module can be connected with the second equipment in a network page mode, so that the problem of difficult data transmission in the related technology can be solved by considering the condition that an internal system of the equipment does not have a data link interface, and the effect of the self-adaptive data transmission method based on the asset equipment is achieved.
In an exemplary embodiment, the network module comprises a crawler connected with the network page and used for acquiring the second data through the network page, and an original database used for storing the second data acquired by the crawler, wherein the original database is connected with the data acquisition module, and the data acquisition module acquires the second data from the original database.
In the above embodiment, fig. 3 is a diagram illustrating a network model according to an embodiment of the present invention, and as shown in fig. 3, a network module may include a crawler and a primary database. The crawler may be connected to a Web page (i.e., the above Web page) in the second device, and the raw data module may be connected to the data acquisition module, and the second data crawled by the crawler may be stored in the raw database and provided to the data acquisition module.
In an exemplary embodiment, the network module further comprises a controller, wherein the controller is connected with the crawler, an interaction interface, wherein the interaction interface is connected with the controller and used for receiving a crawling control instruction and sending the crawling control instruction to the controller, and the controller is further used for determining crawling data contained in the received crawling control instruction and controlling the crawler to acquire the data according to the crawling data.
In the above embodiment, the network module may further include a controller and an interaction interface, where the controller is connected to the crawler, and may acquire data of the asset device system, and may further classify information collected by the crawler according to the asset device type, and write the control information into the original database. The controller can also be connected with an interactive interface, a user can configure the controller through the interactive interface, and the controller is used for setting the crawler, selecting the crawled asset equipment and setting the crawler time. The user can understand the entry of system management, the users with different authorities use different functions, and the authorized users can manage the assets.
In an exemplary embodiment, the host comprises a data processing module, a resource monitoring module, a security risk analysis module and an alarm module, wherein the data processing module is used for processing the first data and the second data to obtain target data, the resource monitoring module is used for monitoring equipment configuration data included in the target data, the security risk analysis module is used for analyzing operation data included in the target data to determine an operation state, and the alarm module is used for executing alarm operation under the condition that the operation state is an abnormal state.
In the above embodiment, with continued reference to fig. 2, the cloud host may include a data processing module, a resource monitoring module, a security analysis module, and an alarm module. The data processing module can collect or singly process the first data and the second data received by the data acquisition module, can obtain target data and can monitor the resources of the asset equipment. The resources of the asset device may be understood as a CPU, memory, security applications, business applications, etc. The security analysis risk module can perform security analysis on the operation data included in the target data, and the alarm module can alarm under the condition that the data or the security is abnormal (namely, the operation state is abnormal). In the data processing process, unified security risk analysis can be carried out after data summarization processing, single security risk analysis can be carried out after data single processing, the types of analysis can also be set according to requirements, the single analysis result can more intuitively show whether each asset device receives network attack or not, or internal loopholes exist, and the unified analysis efficiency is higher. The resource monitoring module can acquire the resource occupancy rate (namely the equipment configuration data) of each asset equipment in the operation process, such as CPU occupancy rate, hard disk occupancy rate and the like, and can prevent the operation of the asset equipment from faults.
In an exemplary embodiment, the management platform further comprises a storage database coupled to the host for storing data generated by the host. In this embodiment, with continued reference to fig. 2, the management platform may further include a storage database, which may be connected to the host, and may store data generated by the host during operation.
In an exemplary embodiment, the storage database comprises a data statistics sub-module, a data display sub-module and a data backup sub-module, wherein the data statistics sub-module is used for storing statistics type data generated by the storage host, the data display sub-module is used for storing data to be displayed generated by the host, and the data backup sub-module is used for storing backup data generated by the host.
In the above embodiment, the storage database may include a data statistics sub-module, a data display sub-module, and a data backup sub-module, where the data statistics sub-module may perform preprocessing on collected data, may include data deduplication, processing missing values, deleting error data, and so on, and may ensure accuracy of the data. The data may also be integrated and statistically analyzed, such as mean, variance, standard deviation, etc. The data display sub-module can visually display the stored data to be displayed, and can display the data in a chart mode, such as a bar chart, a line graph, a pie chart and the like. The data backup sub-module can store and backup data generated by the host, can prevent the data from being lost or damaged, and can quickly restore the effectiveness of the data when a disaster occurs.
In an exemplary embodiment, the management platform further comprises a configuration management module, wherein the configuration management module is connected with the host, the configuration management module comprises a node configuration sub-module, the node configuration sub-module is used for configuring a network for a node connected with the host, the node is connected with the second device and used for receiving the second data, a service configuration sub-module is used for configuring functional services of the node, and a flow configuration sub-module is used for configuring a flow of the node for transmitting the second data.
In the above embodiment, with continued reference to fig. 2, the management platform may further include a configuration management module, where the configuration management module may further include a node configuration sub-module, a service configuration sub-module, and a flow configuration sub-module. The node configuration submodule can be used for carrying out network configuration on each newly-added connecting node, the service configuration submodule can be used for configuring functional service of the node, and the flow configuration submodule can be used for configuring a transmission flow of the second data transmitted by the node. The node can be understood as a collection of asset devices, the cloud host can collect asset information through the node, and the newly added node needs to be configured with the cloud host to achieve network accessibility.
In an exemplary embodiment, the management platform further comprises a task management module, wherein the task management module is connected with the host, the task management module comprises a task list sub-module used for displaying a task list of the host, a scheduling management sub-module used for scheduling tasks executed by the host, and a task monitoring sub-module used for monitoring execution states of the tasks executed by the host.
In the above embodiment, with continued reference to fig. 2, the management platform may further include a task management module, which may include a task sheet sub-module, a schedule management sub-module, and a task monitoring sub-module. The task list module can display a task list of the host, the scheduling management sub-module can schedule each task of the host by setting a timing task, namely executing a corresponding application program at a certain moment, so that the management function of a plurality of asset devices is realized, and the task monitoring sub-module can check the completion status of the task in the cloud host. A task is understood to be an application or a combination of applications that the host needs to process.
In an exemplary embodiment, the management platform further comprises a monitoring management module, wherein the monitoring management module is connected with the host, the monitoring management module comprises a node monitoring sub-module, an operation monitoring sub-module and a process monitoring sub-module, the node monitoring sub-module is used for monitoring the connection state of a node connected with the host, the operation monitoring sub-module is used for monitoring the operation state of the host, and the process monitoring sub-module is used for monitoring the process of collecting data by the data collecting module.
In the above embodiment, with continued reference to fig. 2, the management platform may further include a monitoring management module, which may further include a node monitoring sub-module, an operation monitoring sub-module, and a process monitoring sub-module. The node monitoring sub-module can be used for monitoring the connection condition of the node, the operation monitoring sub-module can be used for monitoring the operation condition of the cloud host, and the process monitoring sub-module can be used for monitoring the collection process of the data collection module.
In an exemplary embodiment, the management platform further comprises a security management module connected with the host, wherein the security management module comprises a user management sub-module used for managing a first account interacted with the host, a permission management sub-module used for managing permission to access a second account of the host, and an access control sub-module used for setting access content allowed to access a third account of the host.
In the above embodiment, with continued reference to fig. 2, the management platform may further include a security management module, and the security management module may further include a user management sub-module, a rights management sub-module, and an access control sub-module. The user management sub-module can be used for managing registration, login and exit of the first account, the authority management sub-module can be used for managing authority of the second account to access the cloud host, and the access control sub-module can be used for setting content accessed in the process of the third account to access the host.
In an exemplary embodiment, the network module and the interface module are used for jointly acquiring the data of the asset equipment, so that cloud management of the asset equipment can be facilitated, the data in the system of the asset equipment can be crawled through a crawler network by acquiring a network authorization mode for the asset equipment which does not have a data transmission link with the host, and the data are uploaded to the host for processing and analysis, thereby being suitable for access management of different asset equipment, saving cost without establishing a transmission link, and being more convenient and quicker to use.
It should be noted that each of the above modules may be implemented by software or hardware, and the latter may be implemented by, but not limited to, the above modules all being located in the same processor, or each of the above modules being located in different processors in any combination.
It will be appreciated by those skilled in the art that the modules or steps of the invention described above may be implemented in a general purpose computing device, they may be concentrated on a single computing device, or distributed across a network of computing devices, they may be implemented in program code executable by computing devices, so that they may be stored in a storage device for execution by computing devices, and in some cases, the steps shown or described may be performed in a different order than that shown or described herein, or they may be separately fabricated into individual integrated circuit modules, or multiple modules or steps of them may be fabricated into a single integrated circuit module. Thus, the present invention is not limited to any specific combination of hardware and software.
The above description is only of the preferred embodiments of the present invention and is not intended to limit the present invention, but various modifications and variations can be made to the present invention by those skilled in the art. Any modification, equivalent replacement, improvement, etc. made within the principle of the present invention should be included in the protection scope of the present invention.
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