CN107483297A - To the actively monitoring system and method for institute's bearer service quality on embedded device - Google Patents

To the actively monitoring system and method for institute's bearer service quality on embedded device Download PDF

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Publication number
CN107483297A
CN107483297A CN201710943496.XA CN201710943496A CN107483297A CN 107483297 A CN107483297 A CN 107483297A CN 201710943496 A CN201710943496 A CN 201710943496A CN 107483297 A CN107483297 A CN 107483297A
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probe
monitoring
management
subsystem
module
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CN107483297B (en
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周波
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VIXTEL TECHNOLOGIES (BEIJING) Ltd
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VIXTEL TECHNOLOGIES (BEIJING) Ltd
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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L43/00Arrangements for monitoring or testing data switching networks
    • H04L43/08Monitoring or testing based on specific metrics, e.g. QoS, energy consumption or environmental parameters
    • H04L43/0805Monitoring or testing based on specific metrics, e.g. QoS, energy consumption or environmental parameters by checking availability
    • H04L43/0817Monitoring or testing based on specific metrics, e.g. QoS, energy consumption or environmental parameters by checking availability by checking functioning
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L41/00Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
    • H04L41/50Network service management, e.g. ensuring proper service fulfilment according to agreements
    • H04L41/5003Managing SLA; Interaction between SLA and QoS
    • H04L41/5009Determining service level performance parameters or violations of service level contracts, e.g. violations of agreed response time or mean time between failures [MTBF]
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L43/00Arrangements for monitoring or testing data switching networks
    • H04L43/08Monitoring or testing based on specific metrics, e.g. QoS, energy consumption or environmental parameters
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L43/00Arrangements for monitoring or testing data switching networks
    • H04L43/08Monitoring or testing based on specific metrics, e.g. QoS, energy consumption or environmental parameters
    • H04L43/0805Monitoring or testing based on specific metrics, e.g. QoS, energy consumption or environmental parameters by checking availability
    • H04L43/0811Monitoring or testing based on specific metrics, e.g. QoS, energy consumption or environmental parameters by checking availability by checking connectivity
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P90/00Enabling technologies with a potential contribution to greenhouse gas [GHG] emissions mitigation
    • Y02P90/02Total factory control, e.g. smart factories, flexible manufacturing systems [FMS] or integrated manufacturing systems [IMS]

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  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Environmental & Geological Engineering (AREA)
  • Data Exchanges In Wide-Area Networks (AREA)

Abstract

The present invention proposes a kind of actively monitoring system to institute's bearer service quality on embedded device, including:Probe subsystem, probe access subsystem, convergence subsystem, management and analysis platform;The invention also provides a kind of actively monitoring system to institute's bearer service quality on embedded device, including:Implantable probe subsystem;Complete probe registration;It is monitored management;Carry out Data Collection storage;Carry out statistical analysis.The present invention not only supports traditional network node accessibility to monitor, and more supports Web content quality-monitoring.The network reachability performance monitoring that the former provides, for either newly-built network and mature network, this can provide fine network foundation quality analysis;The latter can provide the access to content quality-monitoring that analog subscriber angle is drawn, analyze its user for network operator has very big effect using know condition, the Operational Visit situation of content supplier and its network transmittability of itself etc. of qualitative perception during network.

Description

To the actively monitoring system and method for institute's bearer service quality on embedded device
Technical field
The present invention relates to monitoring technical field, more particularly to a kind of active to institute's bearer service quality on embedded device Monitoring system and method.
Background technology
The actively monitoring system on embedded device has the following disadvantages at present:1) monitoring objective is single;Only support monitoring Accessibility between network node.For having built the network of maturation, there are quality problems in the accessibility between network node Probability it is very low, therefore the monitoring of simple accessibility can not generally find quality problems.On the contrary, Web content quality-monitoring needs Ask more urgent, i.e., the transmission performance of the data content by network access is monitored.2) monitoring means is few and effect is limited;Only Support to monitor by accessibility between the instruments such as PING and TRACEROUTE progress node, height is there is no for Web content quality-monitoring The method of effect.Although have numerous support agreements such as HTTP, FTP, TCP increase income or commercial network content quality monitoring instrument, These instruments excessively heavyweight for the embedded device of resource-constrained, equipment can not provide internal memory needed for its operation, The computing resources such as CPU.Simple accessibility monitoring result can not find Web content quality problems, so as to be that network takes Business supplier provide its user to Web vector graphic experience situation, and then also illegal offer network quality optimization opinions and suggestions.3) Monitoring system communication protocol overhead is big and dispositions method is limited;The monitoring system on embedded device is much based on tradition at present TR069 protocol suites, using XML+SOAP+HTTP communication protocol combination realize.In transmitting procedure, the agreement of data Expense is huge.For one byte valid data amount of transmission, it is necessary to which data volume as defined in the extra agreement of transmission is probably effective The several times of digital data amount.Simultaneously as TR069 agreements generally only use in the webmaster net of network provider, it is all in system Other business networks can not be neatly deployed to during deployment to support more monitoring means and support to monitor more network sections Point.
The content of the invention
The purpose of the present invention is intended at least solve one of described technological deficiency.
Therefore, it is an object of the invention to propose a kind of pair for being capable of monitoring network node accessibility and content quality simultaneously The actively monitoring system and method for institute's bearer service quality on embedded device.
To achieve these goals, the present invention provides a kind of actively monitoring to institute's bearer service quality on embedded device System, including:Probe subsystem, probe access subsystem, convergence subsystem, management and analysis platform;
The probe subsystem includes probe management module, monitoring management module, probe TR069 communication modules;
Probe management module makes for being responsible for installation, the upgrading of probe, and collecting the running status of probe and system resource Use situation;
Monitoring management module is used to receive, create, perform monitoring task and report monitoring result;
Probe TR069 communication modules are used to realize and probe access subsystem direct communication, completion probe configuration information, prison Survey the reception of mission bit stream, and probe state information and monitoring result information report;
The probe access subsystem includes access management by synchronization module, load balancing module, access TR069 communication moulds Block, Access Management;
Access management by synchronization module is used to realizing probe access subsystem to management with analysis platform authentication registration, from management The newest monitoring mission bit stream for needing to be handed down to probe and synchronous with analysis platform to managing is obtained with analysis platform;
Load balancing module is used to dock probe subsystem, and by the load distribution of the probe connection request of high concurrent amount extremely Multiple service end communication modules;
Access TR069 communication modules and be used for simplified TR069 agreements, parse message, the legitimacy of verification message form and The validity of data, and the business datum that message is loaded submits to Access Management;The access TR069 communication modules It is one-to-one binding relationship with Access Management;
Access Management is used for registration, state and monitoring result request message, the basis for receiving and handling probe initiation Different type of messages, complete the register and authentication process to probe, status data is committed to convergence subsystem or monitoring knot Fruit is committed to convergence subsystem;
Convergence subsystem includes data conversion module and data memory module;
The monitoring result and probe status data that probe access subsystem reports are responsible for receiving and extracted to data conversion module, And data conversion is carried out according to certain form, the data after conversion are sent to data memory module in the form of a message;
Data memory module is used to cache message one by one, and exceedes certain threshold value or week certain time in cache size When phase reaches, the content in caching is stored to the system of persistence;
Management with analysis platform include platform management by synchronization module, monitoring objective management module, monitoring probe management module, Monitor task management module and statistical analysis module;
Monitoring probe management module is used to manage monitoring probe information;
Monitoring objective management module is used to create and safeguard monitoring objective node;
Monitoring task management module is used to create and safeguard monitoring task;
Configuration information is issued to access subsystem by platform management by synchronization module, by the access management by synchronization of access subsystem Module is stored to local data base;
The model that statistical analysis module is used to obtain from configuration database between each statistical indicator and quality of service maps Mathematical relationship, by the mathematical relationship, quality of service situation that research and application result institute quantum chemical method is drawn.
Further, the monitoring management module of the probe subsystem includes scheduler, monitoring task manager;
The monitoring task manager is used to create, deletes monitoring task, submits monitoring result to give probe TR069 communication moulds Block;
The scheduler is used to create task execution plan according to different scheduling strategies, and according to plan, control task Disposable operation or cycling service.
Further, when the monitoring management module creation of the probe subsystem performs monitoring task, using monitoring session Preserve and track the related information of a monitoring objective in the currently monitored task;After monitoring conversation establishing, that is, bring into operation prison Survey script;Script is monitored by its life cycle of session control:Loading configuration data, start to perform, monitor execution state, stop holding Row, reported result.
Further, the access TR069 communication modules check whether after far call InformResponse functions There are the related upgrading task of probe, parameter configuration task or monitoring task to need to be issued to the probe;Such as nothing, then empty request is sent To probe, to tell probe access subsystem that no affairs need probe to complete, and probe is asked to disconnect to discharge Server resource;As existed, then corresponding message content is sent to probe.
The present invention also provides a kind of actively monitoring method to institute's bearer service quality on embedded device, and its feature exists In:Comprise the following steps:
Step S1, implantable probe subsystem;
The address of probe access subsystem is solidificated in the probe of probe subsystem, be then built in probe embedded In equipment, and configure when equipment starts, automatic running probe subsystem, probe subsystem is integrated into former embedded device system System;
Step S2, complete probe registration;
The address linking probe access subsystem that probe management module in probe subsystem passes through solidification;
By accessing TR069 communication module remote function calls, after call request meets regulation, obtained by Access Management Probe subsystem incoming mark and security information, and probe legitimacy security is verified, after verification is qualified, establish probe subsystem System is communicated with probe access subsystem, and the log-on message of probe is submitted into management by synchronization module, and checking log-on message is qualified Afterwards, by access management by synchronization module by probe log-on message by isochronous communication channel, be uploaded to the flat of management and analysis platform Platform management by synchronization module, after platform management by synchronization module receives the log-on message of upload, by data storage into database, to permit Perhaps management is monitored management to detecting probe information with analysis platform;
Step S3, it is monitored management;
Monitoring objective management module creates and safeguards monitoring objective node, and monitoring task management module creates and safeguards monitoring Task, after creating and setting configuration monitoring task, configuration information is issued to by probe by platform management by synchronization module and accessed Subsystem, stored by the access management by synchronization module of probe access subsystem into local data base;Simultaneously by accessing TR069 communication modules check whether there is the related upgrading task of probe, parameter configuration task or monitoring task, and by mission dispatching To probe management module, monitoring management module creates monitoring tasks carrying task according to monitoring mission bit stream, and is meeting to dispatch During condition, these tasks are performed, and probe access subsystem is uploaded to by test result is supervised by probe TR069 communication modules;
Step S4, carry out Data Collection storage;
After the Access Management of probe access subsystem receives prison test result, convergence subsystem is submitted directly to System;The data conversion module of convergence subsystem is processed to monitoring result, by the related three class configuration datas of monitoring task The detailed unirecord of unified form is integrated into monitoring result, data memory module is submitted into detailed unirecord after the completion of integration;Number The detailed unirecord information received will be write in the file of fixed size or set time span according to memory module, and passes through batch File is directed into Database Systems and stored by the mode of importing;
Step S5, carry out statistical analysis;
Management and the statistical analysis module of analysis platform obtain the business reported in all kinds of monitoring results from configuration database Quality index information, by statistical analysis module, at regular intervals, data are obtained from database, execution pipeline processing procedure, Calculate the indicator-specific statistics value of each monitoring result of all kinds of monitoring tasks in the measurement period;And obtained from configuration database each Model mapping mathematical relation between statistical indicator and quality of service, by the mathematical relationship, research and application result quantifies to count The quality of service situation drawn.
Further, in step s 2, the Access Management of probe access subsystem obtains incoming mark and safety Information, and verify whether probe is legal, and whether security information verification leads to;After the completion of verification, the result of verification is handed into access TR069 communication modules, and as verified failure, then corresponding error code and error description are provided and give access TR069 communication modules; Success is such as verified, then completes following work:
1) it is passed to correct answer code and gives access TR069 communication modules;
2) TR069 sessions are created, and preserve the mark of probe in a session, to track the data in whole communication process Flowing;
3) incoming probe log-on message is obtained, and submits to management by synchronization module.
Further, in step s 2, probe access subsystem register verification pass through when, it is necessary to complete up and down Two work:
1) it accesses the InformResponse call requests that TR069 communication modules processing Access Management is submitted, and According to assay, the InformResponse functions of far call probe, such as verification failure, then it is passed to error code and mistake is retouched State, and force to disconnect and connected between probe;Otherwise, correct answer code is passed to as parameter to respond probe;
2) it accesses management by synchronization module by probe log-on message by isochronous communication channel, and it is flat with analysis to be uploaded to management The platform management by synchronization module of platform.
Further, in step s3, when monitoring task management module establishment task, three category informations need to be specified:First, monitor Task parameter itself describes;2nd, the destination node information of monitoring;3rd, the execution method of task is monitored.
Further, the probe TR069 communication modules of probe subsystem be in etc. it is to be recycled in, when receiving probe access During the message that system issues, judge type of message and handled accordingly;If upgrade request and parameter configuration message, then Message is transferred to probe to manage resume module by probe TR069 communication modules, if monitoring task message, then probe TR069 leads to Message is transferred to monitoring management resume module by letter module.
Further, the probe TR069 communication modules of probe subsystem handle each monitoring result, and foundation successively Result is reported to probe access subsystem by JSON-RPC specifications.
The invention has the advantages that:
1st, the present invention not only supports traditional network node accessibility to monitor, and more supports Web content quality-monitoring.The former For the network reachability performance monitoring of offer, either newly-built network and mature network, this can be provided finely Network foundation quality analysis;The latter can provide the access to content quality-monitoring that analog subscriber angle is drawn, for network operation Person analyzes its user and uses the informed condition of qualitative perception during network, the Operational Visit situation of content supplier and its network itself Transmittability etc. has very big effect.
2nd, the present invention can provide various monitoring measures for target network node, specifically include PING accessibilities monitoring, The monitoring of TRACEROUTE accessibilities, the monitoring of web page browsing class quality of service, the monitoring of file download class quality of service, network speed test class Quality of service monitoring, game server access the monitoring of class quality of service, the monitoring of Online Video broadcast message class quality of service.Also, this System provides the method for testing with outstanding autgmentability, by increasing and realizing that test script library can increase to new means of testing Support.
3rd, the system is based on JSON-RPC and TR069 protocol specifications, simplifies communication protocol, the association for transmitting valid data Discuss cost reduction about 2/3;Meanwhile learning ability specific to the system middle probe, support deployment monitoring platform to be provided to network In the webmaster net or service network of person, so as to support to monitor more content provider services.
The additional aspect of the present invention and advantage will be set forth in part in the description, and will partly become from the following description Obtain substantially, or recognized by the practice of the present invention.
Brief description of the drawings
The above-mentioned and/or additional aspect and advantage of the present invention will become in the description from combination accompanying drawings below to embodiment Substantially and it is readily appreciated that, wherein:
Fig. 1 is the structured flowchart of the present invention;
Fig. 2 is the broad flow diagram of the present invention.
Embodiment
Embodiments of the invention are described below in detail, the example of the embodiment is shown in the drawings, wherein from beginning to end Same or similar label represents same or similar element or the element with same or like function.Below with reference to attached The embodiment of figure description is exemplary, it is intended to for explaining the present invention, and is not considered as limiting the invention.
The present invention provides a kind of actively monitoring system to institute's bearer service quality on embedded device, the institute of refer to the attached drawing 1 Show, including:Probe subsystem 1, probe access subsystem 2, convergence subsystem 3, management and analysis platform 4.
Probe subsystem 1 includes probe management module 11, monitoring management module 13, probe TR069 communication modules 12.
Probe management module 11 is used to be responsible for the installation of probe, upgrading, and collects the running status and system resource of probe Service condition.
Monitoring management module 13 is used to receive, create, perform monitoring task and report monitoring result.
The monitoring management module 13 of probe subsystem 1 includes scheduler, monitoring task manager;Task manager is monitored to use In establishment, deletion monitoring task, monitoring result is submitted to give probe TR069 communication modules.
Scheduler is used to create task execution plan according to different scheduling strategy, and according to plan, the one of control task Secondary property operation or cycling service.
Monitor task manager and be used for the essential information of store tasks, and preserve monitoring session information.
Monitoring task is responsible for the essential information of store tasks, and preserves monitoring session information;One monitoring task is corresponding more Individual monitoring session, a corresponding monitoring objective of monitoring session.
Monitoring session creates when performing monitoring task, is responsible for preserving and tracking one in the currently monitored task monitoring mesh Mark related information;Monitoring session is the minimum scheduling unit of scheduler control monitoring tasks carrying.
The execution of each monitoring session, it is actual to be completed by monitoring script;After monitoring conversation establishing, that is, bring into operation monitoring pin This;Script is monitored by its life cycle of session control:Loading configuration data, start to perform, monitor execution state, stop execution, Reported result.Each monitoring script corresponds to a kind of monitoring means, and the system default is built-in to support PING and TRACEROUTE tests, The lightweight network tools such as the web browser, Online Video player, ftp client that analog subscriber uses are supported simultaneously, with Support test content quality;By five life cycle controlling mechanisms, monitoring management module provides one and is easy to extension Bean is monitored, for the content quality monitoring requirements newly increased, it is only necessary to provide the monitoring pin for meeting corresponding Standard Interface This
Probe TR069 communication modules 12 are used to realize and probe access subsystem direct communication, completion probe configuration information, Monitor the reception of mission bit stream, and probe state information and monitoring result information report.
Probe access subsystem 3 includes access management by synchronization module 21, load balancing module 22, access TR069 communication moulds Block 23, Access Management 24.
Access management by synchronization module 21 is used to realizing probe access subsystem to management with analysis platform authentication registration, from pipe Reason and analysis platform obtain the newest monitoring mission bit stream for needing to be handed down to probe and synchronous with analysis platform to management.
Load balancing module 22 is used to dock probe subsystem, and by the load distribution of the probe connection request of high concurrent amount To multiple service end communication modules.
Access TR069 communication modules 23 and be used for simplified TR069 agreements, parse message, the legitimacy of verification message form With the validity of data, and the business datum that message is loaded submits to Access Management;Access TR069 communication modules with Access Management is one-to-one binding relationship.
TR069 communication modules are accessed after far call InformResponse functions, check whether there is probe correlation Upgrading task, parameter configuration task or monitoring task need to be issued to the probe;Such as nothing, then send sky and ask to probe, to accuse Tell that no affairs need probe to complete to probe access subsystem, and ask probe to disconnect to discharge server resource; As existed, then corresponding message content is sent to probe.
Access Management 24 is used for registration, state and monitoring result request message, the root for receiving and handling probe initiation According to different type of messages, the register and authentication process to probe is completed, status data is committed to convergence subsystem or monitoring As a result it is committed to convergence subsystem.
Convergence subsystem 3 includes data conversion module 31 and data memory module 32.
Data conversion module 31 is responsible for receiving and extracting monitoring result and the probe state number that probe access subsystem reports According to, and data conversion is carried out according to certain form, the data after conversion are sent to data memory module in the form of a message;
Data memory module 32 is used to cache message one by one, and exceedes certain threshold value or certain time in cache size When cycle reaches, the content in caching is stored to the system of persistence;
Management includes platform management by synchronization module 41, monitoring objective management module 42, monitoring probe management with analysis platform 4 Module 43, monitoring task management module 44 and statistical analysis module 45;
Monitoring probe management module 43 is used to manage monitoring probe information;
Monitoring objective management module 42 is used to create and safeguard monitoring objective node;
Monitoring task management module 44 is used to create and safeguard monitoring task;
Configuration information is issued to access subsystem by platform management by synchronization module 41, by the access lock-in tube of access subsystem Reason module is stored to local data base.
Statistical analysis module 45 is used to reflect from the model between each statistical indicator of configuration database acquisition and quality of service Mathematical relationship is penetrated, by the mathematical relationship, quality of service situation that research and application result institute quantum chemical method is drawn.
The present invention can provide various monitoring measures for target network node, specifically include PING accessibilities monitoring, The monitoring of TRACEROUTE accessibilities, the monitoring of web page browsing class quality of service, the monitoring of file download class quality of service, network speed test class Quality of service monitoring, game server access the monitoring of class quality of service, the monitoring of Online Video broadcast message class quality of service.Also, this System provides the method for testing with outstanding autgmentability, by increasing and realizing that test script library can increase to new means of testing Support.
The present invention also provides a kind of actively monitoring method to institute's bearer service quality on embedded device, as shown in Fig. 2 Comprise the following steps:
Step S1, implantable probe subsystem;
The address of probe access subsystem is solidificated in the probe of probe subsystem, be then built in probe embedded In equipment, and configure when equipment starts, automatic running probe subsystem, probe subsystem is integrated into former embedded device system System;
Step S2, complete probe registration;
The address linking probe access subsystem that probe management module in probe subsystem passes through solidification;
By accessing TR069 communication module remote function calls, after call request meets regulation, obtained by Access Management Probe subsystem incoming mark and security information, and probe legitimacy security is verified, after verification is qualified, establish probe subsystem System is communicated with probe access subsystem, and the log-on message of probe is submitted into management by synchronization module, and checking log-on message is qualified Afterwards, by access management by synchronization module by probe log-on message by isochronous communication channel, be uploaded to the flat of management and analysis platform Platform management by synchronization module, after platform management by synchronization module receives the log-on message of upload, by data storage into database, to permit Perhaps management is monitored management to detecting probe information with analysis platform.
Complete the detailed step registered of probe as:
1) embedded device installation and deployment are completed and after starting up, probe subsystem is with automated system operation.
2) the probe management module in probe subsystem is started working, and attempts address linking probe access by solidifying System.Such as connection failure, then the step is retried until success;Such as successful connection, then enter in next step.
3) probe management module activation probe TR069 communication modules, are connect by probe TR069 communication module far call probes Enter the Inform functions in subsystem, and in remote function call according to JSON-RPC specifications, there is provided mark, the peace of probe Entirely, the information such as the information such as installed date and the intrinsic manufacturer of embedded device, model, string number is as function parameter.
4) after the load balancing module of probe access subsystem receives call request, the load distribution pre-set is passed through Strategy, by request issue to some access TR069 communication module and be responsible for the follow-up probe of forwarding and probe access subsystem it Between request and response message.
5) after the access TR069 communication modules of probe access subsystem receive call request, whether verification message form accords with Specification is closed, is not met such as, then the InformResponse functions of far call probe, is passed to error code and error description, and by force System disconnects to be connected between probe;Otherwise, call request will be handled by Access Management.
6) Access Management of probe access subsystem obtains incoming mark and security information, and whether verifies probe Legal, whether security information verification passes through.After the completion of verification, the result of verification is handed into access TR069 communication modules, and Failure is such as verified, then corresponding error code and error description are provided and give access TR069 communication modules;Success is such as verified, then is completed Work below:First, it is passed to correct answer code and gives access TR069 communication modules;2nd, TR069 sessions are created, and are protected in a session The mark of probe is deposited, is flowed with the data tracked in whole communication process;3rd, incoming probe log-on message is obtained, and is carried Give access management by synchronization module.
7) probe access subsystem works when registering verification and passing through, it is necessary to complete two up and down:First, it is accessed The InformResponse call requests that TR069 communication modules processing Access Management is submitted, and according to assay, remotely The InformResponse functions of probe are called, such as verification failure, are then passed to error code and error description, and forces to disconnect and visits Connected between pin;Otherwise, correct answer code is passed to as parameter to respond probe;2nd, it accesses management by synchronization module and will visited Pin log-on message is uploaded to management and the platform management by synchronization module of analysis platform by isochronous communication channel.
8) probe side access TR069 communication modules receive probe access subsystem InformResponse far calls please Ask, whether verification makes a mistake;Errors excepted, then disconnect and reattempt to linking probe access subsystem after a certain time Unite and repeat registration process;Such as inerrancy, then enter etc. to be recycled, wait the follow-up work configuration of probe access subsystem will Ask.
9) after the platform management by synchronization module of management and analysis platform receives the log-on message of upload, by data storage to number According in storehouse, operation is looked into allow additions and deletions of the platform to detecting probe information to change.
Step S3, it is monitored management;
Monitoring objective management module creates and safeguards monitoring objective node, and monitoring task management module creates and safeguards monitoring Task, after creating and setting configuration monitoring task, configuration information is issued to by probe by platform management by synchronization module and accessed Subsystem, stored by the access management by synchronization module of probe access subsystem into local data base;Simultaneously by accessing TR069 communication modules check whether there is the related upgrading task of probe, parameter configuration task or monitoring task, and by mission dispatching To probe management module, monitoring management module creates monitoring tasks carrying task according to monitoring mission bit stream, and is meeting to dispatch During condition, these tasks are performed, and probe access subsystem is uploaded to by test result is supervised by probe TR069 communication modules.
It is monitored concretely comprising the following steps for management:
1) after probe completes registration by probe access subsystem, mould is managed by monitoring probe with analysis platform in management Block is realized that the additions and deletions to detecting probe information change and looked into;
2) by managing the monitoring objective management module with analysis platform, create and safeguard monitoring objective node;
3) by managing the monitoring task management module with analysis platform, create and safeguard monitoring task.During establishment task, Three category informations need to be specified:First, monitoring the description of task parameter itself, (including task schedule information, monitoring index information and quality are surveyed Try parameter information);2nd, the destination node information (including target domain name or IP address and port) of monitoring;3rd, holding for task is monitored Row method (is responsible for execution task) by which probe;
4) after creating and setting configuration monitoring task, will be matched somebody with somebody by the platform management by synchronization module managed with analysis platform Confidence breath is issued to probe access subsystem, is stored by the management by synchronization module of probe access subsystem to local data base In;
5) probe access subsystem accesses TR069 communication modules after far call InformResponse functions, checks Whether there are the related upgrading task of probe, parameter configuration task or monitoring task to need to be issued to the probe.Such as nothing, then send empty Ask to probe, to tell probe access subsystem that no affairs need probe to complete, and ask probe to disconnect with Discharge server resource;As existed, then corresponding message content is sent to probe;
6) the access TR069 communication modules of probe subsystem be in etc. it is to be recycled in, when receiving under probe access subsystem During the message of hair, judge type of message and handled accordingly.If upgrade request and parameter configuration message, then access Message is transferred to probe to manage resume module by TR069 communication modules, if monitoring task message, then accesses TR069 communication moulds Message is transferred to monitoring management resume module by block;
7) probe subsystem monitoring management module creates monitoring tasks carrying task according to monitoring mission bit stream, and is meeting During schedulable condition, these tasks are performed;
8) monitoring task action result is submitted to access by probe subsystem monitoring management module after the completion of tasks carrying TR069 communication modules;Meanwhile schedule information is removed or changed to monitoring task to support periodically to perform;
9) the access TR069 communication modules of probe subsystem handle each monitoring result successively, and are advised according to JSON-RPC Result is reported to probe access subsystem by model.
Step S4, carry out Data Collection storage;
After the Access Management of probe access subsystem receives prison test result, convergence subsystem is submitted directly to System;The data conversion module of convergence subsystem is processed to monitoring result, by the related three class configuration datas of monitoring task The detailed unirecord of unified form is integrated into monitoring result, data memory module is submitted into detailed unirecord after the completion of integration;Number The detailed unirecord information received will be write in the file of fixed size or set time span according to memory module, and passes through batch File is directed into Database Systems and stored by the mode of importing;
Step S5, carry out statistical analysis;
Management and the statistical analysis module of analysis platform obtain the business reported in all kinds of monitoring results from configuration database Quality index information, by statistical analysis module, (it is referred to as a measurement period, such as 5 minutes) at regular intervals, is obtained from database Access evidence, execution pipeline processing procedure, the index for calculating each monitoring result of all kinds of monitoring tasks in the measurement period are united Evaluation;And the model mapping mathematical relation between each statistical indicator and quality of service is obtained from configuration database, pass through the number Relation, the quality of service situation that research and application result institute quantum chemical method is drawn.
The present invention can provide various monitoring measures for target network node, specifically include PING accessibilities monitoring, The monitoring of TRACEROUTE accessibilities, the monitoring of web page browsing class quality of service, the monitoring of file download class quality of service, network speed test class Quality of service monitoring, game server access the monitoring of class quality of service, the monitoring of Online Video broadcast message class quality of service.Also, this System provides the method for testing with outstanding autgmentability, by increasing and realizing that test script library can increase to new means of testing Support.
Although embodiments of the invention have been shown and described above, it is to be understood that above-described embodiment is example Property, it is impossible to limitation of the present invention is interpreted as, one of ordinary skill in the art is not departing from the principle and objective of the present invention In the case of above-described embodiment can be changed within the scope of the invention, change, replace and modification.The scope of the present invention Extremely equally limited by appended claims.

Claims (10)

  1. A kind of 1. actively monitoring system to institute's bearer service quality on embedded device, it is characterised in that including:Probe subsystem System, probe access subsystem, convergence subsystem, management and analysis platform;
    The probe subsystem includes probe management module, monitoring management module, probe TR069 communication modules;
    Probe management module is used to be responsible for the installation of probe, upgrading, and collects the running status of probe and system resource uses feelings Condition;
    Monitoring management module is used to receive, create, perform monitoring task and report monitoring result;
    Probe TR069 communication modules are used to realize and appointed with probe access subsystem direct communication, completion probe configuration information, monitoring The reception of information of being engaged in, and probe state information and monitoring result information report;
    The probe access subsystem includes access management by synchronization module, load balancing module, accesses TR069 communication modules, connects Enter management module;
    Access management by synchronization module is for realizing probe access subsystem to management with analysis platform authentication registration, from management and dividing Analyse platform and obtain the newest monitoring mission bit stream for needing to be handed down to probe and synchronous with analysis platform to managing;
    Load balancing module is used to dock probe subsystem, and by the load distribution of the probe connection request of high concurrent amount to multiple Service end communication module;
    Access TR069 communication modules and be used for simplified TR069 agreements, parse message, the legitimacy and data of verification message form Validity, and the business datum that message is loaded submits to Access Management;The access TR069 communication modules are with connecing It is one-to-one binding relationship to enter management module;
    Access Management be used for receive and handle probe initiation registration, state and monitoring result request message, according to difference Type of message, complete the register and authentication process to probe, status data is committed to convergence subsystem or monitoring result carries Hand over to convergence subsystem;
    Convergence subsystem includes data conversion module and data memory module;
    The monitoring result and probe status data that probe access subsystem reports are responsible for receiving and extracted to data conversion module, and presses Data conversion is carried out according to certain form, the data after conversion are sent to data memory module in the form of a message;
    Data memory module is used to cache message one by one, and is arrived in cache size more than certain threshold value or cycle certain time Up to when, the content in caching is stored to the system of persistence;
    Management includes platform management by synchronization module, monitoring objective management module, monitoring probe management module, monitoring with analysis platform Task management module and statistical analysis module;
    Monitoring probe management module is used to manage monitoring probe information;
    Monitoring objective management module is used to create and safeguard monitoring objective node;
    Monitoring task management module is used to create and safeguard monitoring task;
    Configuration information is issued to access subsystem by platform management by synchronization module, by the access management by synchronization module of access subsystem Stored to local data base;
    Statistical analysis module is used to obtain the model mapping mathematical between each statistical indicator and quality of service from configuration database Relation, by the mathematical relationship, quality of service situation that research and application result institute quantum chemical method is drawn.
  2. 2. as claimed in claim 1 to the actively monitoring system of institute's bearer service quality on embedded device, it is characterised in that: The monitoring management module of the probe subsystem includes scheduler, monitoring task manager;
    The monitoring task manager is used to create, deletes monitoring task, submits monitoring result to give probe TR069 communication modules;
    The scheduler is used to create task execution plan according to different scheduling strategy, and according to plan, the one of control task Secondary property operation or cycling service.
  3. 3. as claimed in claim 1 to the actively monitoring system of institute's bearer service quality on embedded device, it is characterised in that: When the monitoring management module creation of the probe subsystem performs monitoring task, preserve and track the currently monitored using session is monitored The information of monitoring objective correlation in task;After monitoring conversation establishing, that is, bring into operation monitoring script;Script is monitored by meeting Words control its life cycle:Loading configuration data, start to perform, monitor execution state, stop execution, reported result.
  4. 4. as claimed in claim 1 to the actively monitoring system of institute's bearer service quality on embedded device, it is characterised in that: The access TR069 communication modules check whether there is the related upgrading of probe after far call InformResponse functions Task, parameter configuration task or monitoring task need to be issued to the probe;Such as nothing, then send sky and ask to probe, visited with telling No affairs need probe to complete to pin access subsystem, and ask probe to disconnect to discharge server resource;Such as deposit Corresponding message content is then being sent to probe.
  5. A kind of 5. actively monitoring method to institute's bearer service quality on embedded device, it is characterised in that:Comprise the following steps:
    Step S1, implantable probe subsystem;
    The address of probe access subsystem is solidificated in the probe of probe subsystem, probe is then built in embedded device In, and configure when equipment starts, automatic running probe subsystem, probe subsystem is integrated into former embedded device system;
    Step S2, complete probe registration;
    The address linking probe access subsystem that probe management module in probe subsystem passes through solidification;
    By accessing TR069 communication module remote function calls, after call request meets regulation, probe is obtained by Access Management Subsystem incoming mark and security information, and verify probe legitimacy security, after verification is qualified, establish probe subsystem with Probe access subsystem is communicated, and the log-on message of probe is submitted into management by synchronization module, after checking log-on message is qualified, by Management by synchronization module is accessed by probe log-on message by isochronous communication channel, it is synchronous with the platform of analysis platform to be uploaded to management Management module, after platform management by synchronization module receives the log-on message of upload, by data storage into database, to allow to manage Management is monitored to detecting probe information with analysis platform;
    Step S3, it is monitored management;
    Monitoring objective management module creates and safeguards monitoring objective node, and monitoring task management module creates and safeguards that monitoring is appointed Business, after creating and setting configuration monitoring task, configuration information is issued to by probe access by platform management by synchronization module System, stored by the access management by synchronization module of probe access subsystem into local data base;Simultaneously by accessing TR069 Communication module checks whether there is the related upgrading task of probe, parameter configuration task or monitoring task, and mission dispatching is extremely visited Pin management module, monitoring management module creates monitoring tasks carrying task according to monitoring mission bit stream, and is meeting schedulable condition When, these tasks are performed, and probe access subsystem is uploaded to by test result is supervised by probe TR069 communication modules;
    Step S4, carry out Data Collection storage;
    After the Access Management of probe access subsystem receives prison test result, convergence subsystem is submitted directly to; The data conversion module of convergence subsystem is processed to monitoring result, by the related three class configuration datas of monitoring task and prison The detailed unirecord that result is integrated into unified form is surveyed, data memory module is submitted into detailed unirecord after the completion of integration;Data are deposited Storing up module will write the detailed unirecord information received in the file of fixed size or set time span, and be imported by batch Mode file be directed into Database Systems stored;
    Step S5, carry out statistical analysis;
    Management and the statistical analysis module of analysis platform obtain the quality of service reported in all kinds of monitoring results from configuration database Indication information, by statistical analysis module, at regular intervals, data are obtained from database, execution pipeline processing procedure, are calculated The indicator-specific statistics value of each monitoring result of all kinds of monitoring tasks in the measurement period;And obtain each statistics from configuration database Model mapping mathematical relation between index and quality of service, by the mathematical relationship, research and application result institute quantum chemical method obtains The quality of service situation gone out.
  6. 6. as claimed in claim 5 to the actively monitoring method of institute's bearer service quality on embedded device, it is characterised in that: In step s 2, the Access Management of probe access subsystem obtains incoming mark and security information, and verifies probe and be No legal, whether security information verification leads to;After the completion of verification, the result of verification is handed into access TR069 communication modules, and Failure is such as verified, then corresponding error code and error description are provided and give access TR069 communication modules;Success is such as verified, then is completed Work below:
    1) it is passed to correct answer code and gives access TR069 communication modules;
    2) TR069 sessions are created, and preserve the mark of probe in a session, to track the data flow in whole communication process It is dynamic;
    3) incoming probe log-on message is obtained, and submits to management by synchronization module.
  7. 7. as claimed in claim 5 to the actively monitoring method of institute's bearer service quality on embedded device, it is characterised in that: In step s 2, probe access subsystem works when registering verification and passing through, it is necessary to complete two up and down:
    1) it accesses the InformResponse call requests that TR069 communication modules processing Access Management is submitted, and foundation Assay, the InformResponse functions of far call probe, such as verification failure, then error code and error description are passed to, And force to disconnect and connected between probe;Otherwise, correct answer code is passed to as parameter to respond probe;
    2) it accesses management by synchronization module by probe log-on message by isochronous communication channel, is uploaded to management and analysis platform Platform management by synchronization module.
  8. 8. as claimed in claim 5 to the actively monitoring method of institute's bearer service quality on embedded device, it is characterised in that: In step s3, when monitoring task management module establishment task, three category informations need to be specified:First, the description of task parameter itself is monitored; 2nd, the destination node information of monitoring;3rd, the execution method of task is monitored.
  9. 9. as claimed in claim 5 to the actively monitoring method of institute's bearer service quality on embedded device, it is characterised in that: The probe TR069 communication modules of probe subsystem be in etc. it is to be recycled in, when receiving the message that probe access subsystem issues, Judge type of message and handled accordingly;If upgrade request and parameter configuration message, then probe TR069 communication modules Probe is transferred to manage resume module message, if monitoring task message, then message is transferred to supervise by probe TR069 communication modules Test tube manages resume module.
  10. 10. the actively monitoring method of institute's bearer service quality on embedded device, its feature are existed as claimed in claim 5 In:The probe TR069 communication modules of probe subsystem handle each monitoring result successively, and according to JSON-RPC specifications by result Report to probe access subsystem.
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Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109067584A (en) * 2018-08-13 2018-12-21 海南宝通实业公司 A kind of mobile network property detection method and system based on terminal unit
CN110035132A (en) * 2019-04-30 2019-07-19 深圳市网心科技有限公司 Method of data synchronization, computer installation and storage medium
CN112333020A (en) * 2020-11-03 2021-02-05 广东电网有限责任公司 Network security monitoring and data message analyzing system based on quintuple
CN113382056A (en) * 2021-06-07 2021-09-10 北京博睿宏远数据科技股份有限公司 Data reporting method, device, equipment, storage medium and system
CN116208432A (en) * 2023-05-05 2023-06-02 北京安普诺信息技术有限公司 Web application security probe management method, system, electronic equipment and storage medium

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102143022A (en) * 2011-03-16 2011-08-03 北京邮电大学 Cloud measurement device and method for IP network
CN102801587A (en) * 2012-08-29 2012-11-28 北京邮电大学 Large-scale network-oriented virtualized monitoring system and dynamic monitoring method thereof
US20130166738A1 (en) * 2011-12-27 2013-06-27 Tektronix, Inc. Web Page Download Time Analysis
CN104009890A (en) * 2014-06-10 2014-08-27 江苏省邮电规划设计院有限责任公司 Test system and method for network quality in Internet
CN106850298A (en) * 2017-02-08 2017-06-13 中国联合网络通信集团有限公司 IPTV service quality monitoring method, terminal and system

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102143022A (en) * 2011-03-16 2011-08-03 北京邮电大学 Cloud measurement device and method for IP network
US20130166738A1 (en) * 2011-12-27 2013-06-27 Tektronix, Inc. Web Page Download Time Analysis
CN102801587A (en) * 2012-08-29 2012-11-28 北京邮电大学 Large-scale network-oriented virtualized monitoring system and dynamic monitoring method thereof
CN104009890A (en) * 2014-06-10 2014-08-27 江苏省邮电规划设计院有限责任公司 Test system and method for network quality in Internet
CN106850298A (en) * 2017-02-08 2017-06-13 中国联合网络通信集团有限公司 IPTV service quality monitoring method, terminal and system

Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109067584A (en) * 2018-08-13 2018-12-21 海南宝通实业公司 A kind of mobile network property detection method and system based on terminal unit
CN110035132A (en) * 2019-04-30 2019-07-19 深圳市网心科技有限公司 Method of data synchronization, computer installation and storage medium
CN110035132B (en) * 2019-04-30 2022-08-12 深圳市网心科技有限公司 Data synchronization method, computer device and storage medium
CN112333020A (en) * 2020-11-03 2021-02-05 广东电网有限责任公司 Network security monitoring and data message analyzing system based on quintuple
CN112333020B (en) * 2020-11-03 2023-07-21 广东电网有限责任公司 Network security monitoring and data message analysis system based on quintuple
CN113382056A (en) * 2021-06-07 2021-09-10 北京博睿宏远数据科技股份有限公司 Data reporting method, device, equipment, storage medium and system
CN116208432A (en) * 2023-05-05 2023-06-02 北京安普诺信息技术有限公司 Web application security probe management method, system, electronic equipment and storage medium
CN116208432B (en) * 2023-05-05 2023-06-30 北京安普诺信息技术有限公司 Web application security probe management method, system, electronic equipment and storage medium

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