CN100502299C - Large-flow data display method for telecom network management - Google Patents

Large-flow data display method for telecom network management Download PDF

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Publication number
CN100502299C
CN100502299C CNB2004100093341A CN200410009334A CN100502299C CN 100502299 C CN100502299 C CN 100502299C CN B2004100093341 A CNB2004100093341 A CN B2004100093341A CN 200410009334 A CN200410009334 A CN 200410009334A CN 100502299 C CN100502299 C CN 100502299C
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message
data
client
server end
network management
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CN1722671A (en
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孙旭东
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ZTE Corp
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ZTE Corp
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Abstract

This invention relates to a massive data display method in telecommunication management, characterized in that it processes two-stage storage to the massage data, then displays; The first storage process is in the server end, extracting the needed information from the massage, storing the additional information to the server end; the second storage process is in the customer end, storing the display data, wherein the display unit will display only part data in one time. The invention will increase the display quantity of the system data.

Description

The big data on flows display packing of telecommunicatioin network management
Technical field
The present invention relates to a kind of data display method, relate in particular to a kind of big data on flows display packing of telecommunicatioin network management.
Background technology
Telecommunicatioin network management is the problem that telecom equipment manufacturers and telecom operators are concerned about, telecommunication apparatus is in the process of operation, the operating personnel of webmaster need manage concentratedly network element device by the telecommunicatioin network management daemon software, facilities for observation running data, this wherein just has many flow-rate ratios to need to observe than big and fast data, such as: communication protocol data, business datum etc., data traffic may reach hundreds of bar/second, and wall scroll data message amount is a lot of again, can reach several kilobytes.
Usually, with regard to the telecom network management system structure, the general C/S structure that adopts of design, client mainly is a display logic, application server is being born main the processing; Under this framework, how to realize that the observation of high speed and lot of data shows? a kind of mode that present network management system adopts, be exactly directly observed data to be dealt into client, in client process and demonstration, because every data content is bigger, if system does not add restriction, Installed System Memory can overflow very soon, and therefore observable data clauses and subclauses seldom; Another mode is exactly that server end is resolved, and data cached, and client only shows current up-to-date a part of data, and this part data all directly is presented in the form, and it is a lot of that the video data clauses and subclauses can not reach; This dual mode also has some common defectives, is exactly that the grid control data presented is too much, shows that processing procedure is slower, causes data to show very easily shake in the refresh process, and the display window flicker is relatively more severe; In addition data all directly are poured in the demonstration control, the data occupancy internal memory generally all can be very big, to a certain extent, limited the quantity that data show.
Summary of the invention
Technical problem to be solved by this invention is to provide a kind of big data on flows display packing of telecommunicatioin network management, overcome when device systems has big data on flows, current network management system can be observed the less problem of data presented amount, can increase system data and show quantity, improves display speed.
To achieve these goals, the invention provides a kind of big data on flows display packing of telecommunicatioin network management, its characteristics are, this method is the message data that telecommunication apparatus reports to be carried out two-level cache handle, first order caching process is at server end, client is shown that information needed extracts, and is buffered in server end to additional information from message; Second level caching process is in client video data to be carried out buffer memory, each a part of data that show wherein.
The big data on flows display packing of above-mentioned telecommunicatioin network management comprises the steps:
Step 1, the telecommunication apparatus data are sent to server end;
Step 2, server end performs an analysis to data and handles, and gives message identifier of each distribution of messages, extracts client and shows required data message; Other additional informations of data strip purpose are buffered in server end, and dump to database or file with form in batches;
Step 3, server end shows that with client required information is sent to client;
Step 4, client are received the display message data, put into a memory cache earlier;
Step 5, memory cache holds entry number according to a batch institute of customization, and all clauses and subclauses are carried out job-lot control, and certain batch data in data that show control and the formation is mapped;
Step 6 shows that control is with in batches mode video data, the batch data in each display buffer.
The big data on flows display packing of above-mentioned telecommunicatioin network management, in step 1, described telecommunication apparatus data are delivered to a network element adapter earlier through after the adaptive distribution, are sent to server end with the asynchronous message method of service and handle.
The big data on flows display packing of above-mentioned telecommunicatioin network management, before server-side processes message, client is set the number of every page of video data of form earlier, and client is carried out the page turning demonstration according to this number when the time comes.
The big data on flows display packing of above-mentioned telecommunicatioin network management, its characteristics are that in step 2, the processing procedure of server end is as follows:
From message, extract client and show required basic display information;
Give message identifier of distribution of messages, as the keyword of message retrieval;
The message additional information is put into the message buffering center, check that simultaneously whether the message buffering center surpasses the buffer memory upper limit,, then at most message data is dumped in the database if surpass;
Client is shown that required essential information is organized into message, mail to client.
The big data on flows display packing of above-mentioned telecommunicatioin network management, in step 4, the client message monitor receives message, and message is deposited in the internal storage data lauses queue.
The big data on flows display packing of above-mentioned telecommunicatioin network management, in step 5, client is judged the data clauses and subclauses of current reception, whether is showing that the current of control shows in the corresponding data page of page or leaf, if in scope, then shows data.
The big data on flows display packing of above-mentioned telecommunicatioin network management, client also can be obtained the specify message additional information by F interface invoking server end remote interface, and its processing procedure is as follows:
Client is sent the request of the additional information of watching specify message;
Obtain the message identifier of specify message;
Obtain the interface of additional information by F interface far call server end;
Server end is to message buffering centre retrieves information, if from buffer memory retrieval less than, then directly in database, retrieve;
Message additional information retrieving is organized into the result and turns back to client;
Client is received and is returned, display additional information.
With respect to existing method, method of the present invention has increased a server process intermediate layer, client-cache the basic display data, and adopted display packing in batches, can improve the quantity of system's video data greatly.Under the situation of same system configuration, the quantity that client can show has enlarged more than ten times, has enlarged the data area that the user can observe greatly, and the phenomenon of flicker and shake can not occur showing.
Describe the present invention below in conjunction with the drawings and specific embodiments, but not as a limitation of the invention.
Description of drawings
Fig. 1 is the schematic diagram of the communication mode of data flow between each functional module in the telecom network management system of the present invention and employing;
Fig. 2 reports processing procedure for network element message of the present invention;
Fig. 3 watches the process chart of specified entry additional information for client of the present invention.
Embodiment
Describe the present invention in detail with reference to one embodiment of the present of invention and accompanying drawing thereof below.
In the CDMA network management system, the data of signal following system report flow-rate ratio bigger, generally can reach 150/second, and every message all can reach more than the 1K, for the signaling information in real-time, efficient, the as much as possible show Calls process, adopt the inventive method.
Fig. 1 has described the communication mode of data flow between each function and employing in the telecom network management system.The message that telecommunications foreground net element equipment (NE) 10 sends, deliver to network element adapter (EMF) 20 earlier, through after the adaptive distribution, send to server (MAF) 30 in JMS (java messenger service) mode and handle, send to client (WSF) 40 in the JMS mode again and show.WSF calls the MAF remote interface by the F form of message, obtains information.
As shown in Figure 2, describe network element message and reported processing procedure.
Before processing messages, client is set the number of every page of video data of form earlier, and client is carried out the page turning demonstration according to this number when the time comes.
Step 201, network element sends a message to EMF;
Step 202, MAF handles message, extracts the form basic display information before this from message;
Step 203 is then to message identifier of distribution of messages, as the keyword of message retrieval;
Step 204 is put into the message buffering center to the message additional information then;
Step 205 is checked simultaneously whether the message buffering center surpasses the buffer memory upper limit, if surpass, changes step 206, otherwise is changeed step 207;
Step 206 dumps at most message data in the database;
Step 207 is organized into message to the form essential information, mails to client WSF;
Step 208, the client message monitor receives message;
Step 209 deposits message in the internal storage data lauses queue in;
Step 210 is judged the data clauses and subclauses of current reception, whether shows that at form the current of control shows in the corresponding data page of page or leaf, if in scope, then changes step 211, otherwise finishes;
Step 211 is put into form to data and is shown that control shows data.
When client need be watched the specify message additional information, its handling process as shown in Figure 3:
Step 301, client are sent the request of the additional information of watching specify message;
Step 302 is obtained the message identifier of specify message;
Step 303 is obtained the interface of additional information by F mouth far call MAF;
Step 304, MAF is to message buffering centre retrieves message;
Step 305 judges whether to retrieve in buffer memory, if from buffer memory retrieval less than, change step 306, otherwise directly change step 307;
Step 306 is directly retrieved in database;
Step 307, the message additional information retrieving is organized into the result and returns to client;
Step 308, client are received and are returned, display additional information.
Certainly; the present invention also can have other various embodiments; under the situation that does not deviate from spirit of the present invention and essence thereof; those of ordinary skill in the art work as can make various corresponding changes and distortion according to the present invention, but these corresponding changes and distortion all should belong to the protection range of the appended claim of the present invention.

Claims (8)

1, a kind of big data on flows display packing of telecommunicatioin network management, it is characterized in that, this method is the message data that telecommunication apparatus reports to be carried out two-level cache handle, first order caching process is at server end, client is shown that information needed extracts, and is buffered in server end to additional information from message; Second level caching process is in client video data to be carried out buffer memory, each a part of data that show wherein.
2, the big data on flows display packing of telecommunicatioin network management according to claim 1 is characterized in that, comprises the steps:
Step 1, the telecommunication apparatus data are sent to server end;
Step 2, server end performs an analysis to data and handles, and gives message identifier of each distribution of messages, extracts client and shows required data message; Other additional informations of message are buffered in server end, and dump to database or file with form in batches;
Step 3, server end shows that with client required information is sent to client;
Step 4, client are received the display message data, put into a memory cache earlier;
Step 5, memory cache holds entry number according to a batch institute of customization, and all clauses and subclauses are carried out job-lot control, and certain batch data in data that show control and the formation is mapped;
Step 6 shows that control is with in batches mode video data, the batch data in each display buffer.
3, the big data on flows display packing of telecommunicatioin network management according to claim 2, it is characterized in that, in step 1, described telecommunication apparatus data are delivered to a network element adapter earlier through after the adaptive distribution, are sent to server end with the asynchronous message method of service and handle.
4, the big data on flows display packing of telecommunicatioin network management according to claim 2 is characterized in that,
Before server-side processes message, client is set the number of every page of video data of form earlier, and client is carried out the page turning demonstration according to this number when the time comes.
5, the big data on flows display packing of telecommunicatioin network management according to claim 2 is characterized in that, in step 2, the processing procedure of server end is as follows:
From message, extract client and show required basic display information;
Give message identifier of distribution of messages, as the keyword of message retrieval;
The message additional information is put into the message buffering center, check that simultaneously whether the message buffering center surpasses the buffer memory upper limit,, then at most message data is dumped in the database if surpass;
Client is shown that required essential information is organized into message, mail to client.
6, the big data on flows display packing of telecommunicatioin network management according to claim 2 is characterized in that, in step 4, the client message monitor receives message, and message is deposited in the internal storage data lauses queue.
7, the big data on flows display packing of telecommunicatioin network management according to claim 2 is characterized in that, in step 5, client is judged the data clauses and subclauses of current reception, whether showing that the current of control shows in the corresponding data page of page or leaf, if in scope, then shows data.
According to the big data on flows display packing of claim 2 or 7 described telecommunicatioin network managements, it is characterized in that 8, client also can be obtained the specify message additional information by F interface invoking server end remote interface, its processing procedure is as follows:
Client is sent the request of the additional information of watching specify message;
Obtain the message identifier of specify message;
Obtain the interface of additional information by F interface far call server end;
Server end is to message buffering centre retrieves information, if from buffer memory retrieval less than, then directly in database, retrieve;
Message additional information retrieving is organized into the result and turns back to client;
Client is received and is returned, display additional information.
CNB2004100093341A 2004-07-14 2004-07-14 Large-flow data display method for telecom network management Expired - Lifetime CN100502299C (en)

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CN101273885B (en) * 2007-03-26 2010-12-01 深圳迈瑞生物医疗电子股份有限公司 Method and system of monitor screen remote indication
CN101102281B (en) * 2007-08-16 2010-04-07 中兴通讯股份有限公司 Data processing method for reporting a large number of data in mobile communication system
CN102375862B (en) * 2010-08-26 2013-03-27 腾讯科技(深圳)有限公司 Large-data-volume message management method and device
CN102387178A (en) * 2010-08-31 2012-03-21 腾讯科技(深圳)有限公司 Method and device for upgrading message
CN102891875B (en) * 2011-07-21 2017-12-22 中兴通讯股份有限公司 Signaling tracking method, WEB client side, service end and signal following system
CN103677554B (en) * 2012-09-17 2017-07-21 腾讯科技(深圳)有限公司 A kind of sliding screen smoothly method and device
CN103259683B (en) * 2013-05-16 2016-06-01 烽火通信科技股份有限公司 Based on the Web network management system L2 cache method for pushing of HTML5
CN105005850A (en) * 2015-06-29 2015-10-28 天脉聚源(北京)科技有限公司 Method and apparatus for updating virtual audiences
CN112037394A (en) * 2020-08-07 2020-12-04 武汉旷视金智科技有限公司 Identity recognition record processing method and device, access control system, equipment and medium

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Publication number Priority date Publication date Assignee Title
WO2003030486A2 (en) * 2001-09-26 2003-04-10 Telefonaktiebolaget Lm Ericsson (Publ) Hierarchical caching in telecommunication networks
EP1347598A1 (en) * 2002-03-22 2003-09-24 Brother Kogyo Kabushiki Kaisha Network management system, apparatus to be managed, management apparatus and program

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2003030486A2 (en) * 2001-09-26 2003-04-10 Telefonaktiebolaget Lm Ericsson (Publ) Hierarchical caching in telecommunication networks
EP1347598A1 (en) * 2002-03-22 2003-09-24 Brother Kogyo Kabushiki Kaisha Network management system, apparatus to be managed, management apparatus and program

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