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A cloud computing monitoring method and device

A monitoring device and cloud computing technology, applied in digital transmission systems, data exchange networks, electrical components, etc., can solve problems such as cumbersome processes, improve monitoring efficiency, and difficulty in expanding monitoring options, so as to avoid lack of flexibility and improve monitoring efficiency. Effect

Active Publication Date: 2019-01-25
深圳市华讯方舟光电技术有限公司 +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] The purpose of the embodiments of the present invention is to provide a cloud computing monitoring method, which aims to solve the problem that the current Ceilometer project uses SNMP as the physical machine monitoring by default, and the process of customizing monitoring options is cumbersome, and the monitoring options are difficult to expand, which is not conducive to improving monitoring efficiency. question

Method used

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  • A cloud computing monitoring method and device
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  • A cloud computing monitoring method and device

Examples

Experimental program
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Embodiment 1

[0023] figure 1 It is an implementation flowchart of the cloud computing monitoring method provided by the embodiment of the present invention, and is described in detail as follows:

[0024] In step S101, the network monitoring tool Nagios collects the monitoring data of the device according to the configured custom monitoring option, and writes the collected monitoring data into the Ndoutils database;

[0025] In step S102, the monitoring component Ceilometer connects to the Ndoutils database, reads and parses the monitoring data in the Ndoutils database, and writes the analyzed monitoring data into the Ceilometer database;

[0026] In step S103, the monitoring component Ceilometer monitors the device according to the currently written monitoring data and the historically saved monitoring data.

[0027] Wherein, the historically saved monitoring data includes monitoring data written multiple times.

[0028] Wherein, step S103 is specifically:

[0029] Get the currently wr...

Embodiment 2

[0034] figure 2 It is the implementation flowchart of step S101 of the cloud computing monitoring method provided by the embodiment of the present invention, and is described in detail as follows:

[0035] In step S201, Nagios configures custom monitoring options;

[0036] In step S202, configure the Ndoutils database;

[0037] In step S203, according to the configured custom monitoring option and the extended control NRPE, the remote host monitoring script is regularly triggered to obtain a return value;

[0038] In step S204, monitoring data is generated according to the return value, and the generated monitoring data is written into the Ndoutils database.

Embodiment 3

[0040] image 3 It is an implementation flowchart of step S102 of the cloud computing monitoring method provided by the embodiment of the present invention, and is described in detail as follows:

[0041] In step S301, the monitoring component Ceilometer writes the model of Ndoutils data key table;

[0042] In step S302, the Ndoutils database is connected through a pre-configured acquisition interface, and the monitoring data in the Ndoutils database is read and analyzed according to the model, and the analyzed monitoring data is written into the Ceilometer database.

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Abstract

A cloud computing monitoring method and device. The cloud computing monitoring method comprises: a network monitoring tool Nagios collects monitoring data of an apparatus according to a configured customized monitoring option, and writes the collected monitoring data into an Ndoutils database; a monitoring component Ceilometer connects to the Ndoutils database, reads and parses the monitoring data in the Ndoutils database, and then writes the parsed monitoring data into a Ceilometer database; and the monitoring component Ceilometer monitors the apparatus according to monitoring data being written and historical saved monitoring data. The present invention provides three advantages: firstly, Ceilometer is able to monitor information of an apparatus, such as a physical machine and a router, via Nagios; secondly, by using a Ceilometer distributed alarm mechanism, Nagios is able to customize an alarm for a hardware apparatus, thus addressing a lack of flexibility in an alarm mechanism itself; thirdly, maintenance and development are facilitated, enabling a design including different monitoring options according to different requirements.

Description

technical field [0001] The invention belongs to the field of cloud computing monitoring operation and maintenance, and in particular relates to a cloud computing monitoring method and device. Background technique [0002] Ceilometer is a sub-project in OpenStack. Like a funnel, it can collect almost all events that occur inside OpenStack, and then provide data support for billing, monitoring, and other services. [0003] However, in the field of cloud computing monitoring operation and maintenance, the current Ceilometer projects all use SNMP as the physical machine monitoring by default. The process of customizing monitoring options is cumbersome, and the monitoring options are difficult to expand, which is not conducive to improving monitoring efficiency. The reason is that if you want to customize the monitoring options, you need to modify the SNMP MIB library, and the modification of the SNMP MIB library is relatively complicated, some monitoring options cannot be modifi...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H04L12/26
CPCH04L43/0817H04L43/12
Inventor 王庆冯骏
Owner 深圳市华讯方舟光电技术有限公司
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