CN101686453A - Management instruction processing method, system, instruction management centre and HLR - Google Patents

Management instruction processing method, system, instruction management centre and HLR Download PDF

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Publication number
CN101686453A
CN101686453A CN200810161820A CN200810161820A CN101686453A CN 101686453 A CN101686453 A CN 101686453A CN 200810161820 A CN200810161820 A CN 200810161820A CN 200810161820 A CN200810161820 A CN 200810161820A CN 101686453 A CN101686453 A CN 101686453A
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link
supervisory instruction
signal
hlr
management center
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CN200810161820A
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CN101686453B (en
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叶静
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China Mobile Group Anhui Co Ltd
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China Mobile Group Anhui Co Ltd
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Abstract

The invention discloses a management instruction processing method, a system, an instruction management centre and an HLR. The management instruction processing method comprises the following steps: obtaining an executive starting signal and a management instruction document by the instruction management centre, and respectively transmitting through a first link and a second link; receiving the executive starting signal and the management instruction document by the HLR, executing the management instruction document according to the executive starting signal, generating an executive end signaland an instruction execution result, and returning the executive end signal and the execution result to the instruction management centre respectively through the first link and the second link. Through constructing a separate transmission link, the management instruction processing method, the system, the instruction management centre and the HLR realize that two links work in parallel, therebyreduce messaging interaction from the instruction management centre to the HLR, improving the instruction execution efficiency, realizing centralized management to the HLR with air distribution and saving the investment cost.

Description

Supervisory instruction processing method, system, Command Management Center and HLR
Technical field
The present invention relates to a kind of mobile communication technology, relate in particular to a kind of supervisory instruction processing method, system, Command Management Center and HLR.
Background technology
User attaching location register (Home Location Register, be called for short HLR) be that the business support system system realizes stopping answering a pager's call, opening an account one of crucial joint of handling every user management operation in the mobile communications industry, be to user's stop answering a pager's call last threshold of timed commitment.
Current operation support system (BOSS) Subscriber Management System and HLR adopt based on data flow modes such as the mode of MML or employing socket and carry out the user data operation.Under routine work flow situation, the BOSS system submits the disposal ability abundance of the interface of instruction to.But, the batch subscription and unsubscription, stop answering a pager's call and big data quantity operational circumstances such as authorization data loading under, the interface disposal ability wretched insufficiency of Subscriber Management System then, especially in peak traffic phase at the beginning of the month and the end of month, can produce bigger time-delay, have a strong impact on service handling efficient, caused the decline of client perception degree, caused customer complaint.
As shown in Figure 1, the step of prior art instruction execution comprises:
Step 202, scanning business support system database 12 command lists read and treat the operation instruction, will treat that the operation instruction is sent to Command Management Center 14;
After step 204, Command Management Center 14 are received and treated operation instruction, send by command link 92 and to treat that operation instructs to HLR16;
Step 206, HLR16 sends to Command Management Center 14 with execution result by command link 92;
Step 208, Command Management Center 14 is sent to business support system database 12 with above-mentioned execution result.
No matter modes such as existing user management instruction executing method MML or socket data flow, many employing serials are mutual, and promptly Command Management Center 14 extracts an instruction, sends it to HLR16 by command link 92, the wait execution result returns, and feeds back to business support system again.It is mutual that the execution of every instruction all needs Command Management Center 14 and HLR16 to produce, as send 1000 user managements instructions, then needs Command Management Center 14 and HLR16 to carry out 1000 times alternately.
Prior art has following shortcoming:
1, Command Management Center and HLR are frequent alternately, do not have instruction and carry out in the mutual time, have tied up time for each instruction;
2, present most HLR all supports batch command process pattern (with many instruction packings, carry out by the inner order of HLR, do not produce any feedback therebetween, after being finished, return the batch command file signal that is finished), serial mode can't be utilized the high-speed and high-efficiency of HLR batch mode, can not make full use of the instruction executive capability of HLR equipment.
Summary of the invention
The objective of the invention is at Command Management Center and HLR in the instruction process of transmitting in the prior art mutual frequent and can not make full use of the defective of the instruction executive capability of HLR equipment, provide a kind of reduce Command Management Center to the message interaction of HLR, improve and instruct supervisory instruction processing method, system, Command Management Center and the HLR of execution efficient.
This supervisory instruction manner of execution comprises: Command Management Center obtains to carry out enabling signal and supervisory instruction file, and transmits by first link and second link respectively; HLR receives and carries out enabling signal and supervisory instruction file, carry out the supervisory instruction file according to carrying out enabling signal, and generate be finished signal and instruction execution result, return be finished signal and execution result to Command Management Center by first link and second link respectively.
Command Management Center comprises: the command reception module is used for the receiving management instruction; File generating module is used for the supervisory instruction packing is generated the supervisory instruction file, and by the second link transmission supervisory instruction file; The signal generation module is used for generating and carries out enabling signal, and carries out enabling signal by first link transmission; Receiver module, the execution result of receiving management command file correspondence and the signal that is finished.
This HLR comprises: the file receiver module receives the supervisory instruction file that Command Management Center sends by second link; Signal receiving module receives the execution enabling signal by first link; Executive Module is carried out the supervisory instruction file according to carrying out enabling signal, and is generated be finished signal and execution result; Sending module sends be finished signal and execution result to Command Management Center by first link and second link respectively.
This supervisory instruction executive system comprises: comprise business support system database, Command Management Center and HLR, comprise first link and second link between Command Management Center and the HLR, the business support system database is used to generate supervisory instruction; Command Management Center, be used for the supervisory instruction packing is generated the supervisory instruction file, and generate to carry out enabling signal, will carry out enabling signal by first link and second link respectively and the supervisory instruction file is sent to HLR, and reception HLR be finished signal and the execution result that return; HLR is used for according to carrying out enabling signal the supervisory instruction file being carried out, and after being finished, generates be finished signal and execution result, and is sent to Command Management Center by will be finished signal and execution result of first link and second link respectively.
Supervisory instruction processing method of the present invention, system, Command Management Center and HLR, make full use of batch command process ability of HLR, under the situation of not introducing miscellaneous equipment, by building independently transmission link, optimize and transform command link, realize two link concurrent workings, reduce the message interaction of Command Management Center to HLR, improve instruction and carry out efficient, in time obtain instructing the result who carries out to feed back, realize centralized management the HLR of area distribution.And saved cost of investment.
Description of drawings
Fig. 1 is the structural representation of supervisory instruction treatment system in the prior art;
Fig. 2 is the structural representation of embodiment of the invention supervisory instruction treatment system;
Fig. 3 is the structural representation of embodiment of the invention Command Management Center;
Fig. 4 is the structural representation of embodiment of the invention HLR.
Embodiment
The present invention is described in detail below in conjunction with accompanying drawing.
As shown in Figure 2, the supervisory instruction treatment system of the embodiment of the invention comprises: business support system database 12 is used for generating the supervisory instruction file according to the customer service demand; Command Management Center 14 extracts instruction from business support system database 12, mail to HLR16; And the execution result that HLR16 returns is updated in the business support system database 12; HLR16, HLR16 receive the supervisory instruction file that Command Management Center 14 sends, according to returning execution result to Command Management Center 14 behind the supervisory instruction file content modification user function state.
Comprise first link and second link between Command Management Center 14 and the HLR16, in the present embodiment, first link is a transmission link 94; Second link is a command link 92.Command Management Center 14 is sent to HLR16 by transmission link 94 with the supervisory instruction file, and receives the execution result that HLR16 returns; Command Management Center 14 will be carried out enabling signal by command link 92 and be sent to HLR16, and receive the signal that is finished that HLR16 returns.
As shown in Figure 3, Command Management Center 14 comprises: command reception module 142 is used for the receiving management instruction; File generating module 144 is used for the supervisory instruction packing is generated the supervisory instruction file; Signal generation module 146 is used for generating the execution enabling signal; Receiver module 148, the execution result of receiving management command file correspondence and the signal that is finished.
Preferably, Command Management Center also comprises: order module 150 is used for according to the priority of each supervisory instruction of supervisory instruction file supervisory instruction being sorted; Collision detection module 152, whether supervisory instruction between have conflict, and delete conflicting supervisory instruction if being used to detect.
As shown in Figure 4, HLR16 comprises: file receiver module 162 receives the supervisory instruction file that Command Management Center sends by transmission link 94; Signal receiving module 164 receives the execution enabling signal by command link 92; Executive Module 166 after receiving the execution enabling signal, is carried out the supervisory instruction in the supervisory instruction file successively, and generates be finished signal and execution result; Sending module 168 sends be finished signal and execution result to Command Management Center 14 by command link 92 and transmission link 94 respectively.
Wherein, sending module 168 comprises: signal transmitting module 1682 is used for being finished signal to Command Management Center by command link 92 transmissions; Sending module 1684 as a result, are used for sending execution result to Command Management Center 14 by transmission link 94.
Preferably, HLR16 also comprises and verifies module 163a, and whether be used to verify the supervisory instruction file that receives complete; Processing module 163b is used for sending re-transmitted signal to Command Management Center 14 when detecting the supervisory instruction file when imperfect, the Command Management Center 14 supervisory instruction file that retransfers.
The supervisory instruction treatment system of present embodiment, make full use of batch command process ability of HLR, under the situation of not introducing miscellaneous equipment, by building independently transmission link, optimize and transform command link, realize two link concurrent workings, reduce the message interaction of Command Management Center to HLR, improve instruction and carry out efficient, in time obtain instructing the result who carries out to feed back, realize centralized management the HLR of area distribution.And saved cost of investment.
Below in conjunction with Fig. 2 the supervisory instruction processing method of the embodiment of the invention is specifically described, the concrete steps of supervisory instruction manner of execution are as follows:
Step 302, scanning business support system database 12 command lists extract supervisory instruction to be moved, write down every database serial number that instruction is corresponding simultaneously, conveniently when instruction is returned, corresponding execution result is write back database, then supervisory instruction is sent to Command Management Center 14;
Step 304, instruction of Command Management Center 14 receiving managements and packing generate the supervisory instruction file, by transmission link 94 the supervisory instruction file are sent to HLR1;
Step 306, Command Management Center 14 send by command link 92 and carry out enabling signal to HLR16, start the execution of supervisory instruction file;
Step 308 after HLR16 finishes the instruction execution, is finished signal to Command Management Center 14 by command link 92 transmissions;
Step 310, HLR16 is sent to Command Management Center 14 by transmission link 94 with execution result;
Step 312, Command Management Center 14 generates feedback signal according to execution result and is sent to business support system database 12.
Wherein, preferred, after step 302, also comprise step 303, Command Management Center 14 sorts according to the priority of each supervisory instruction, and judges between each supervisory instruction whether clash, and deletes wherein conflicting supervisory instruction.
More excellent, after step 304, also comprise step 305, verify the supervisory instruction file that has transmitted, do not retransmit transmitting complete supervisory instruction file, guarantee that HLR16 receives the integrality and the accuracy of instruction,
More excellent, after step 310, also comprise supervisory instruction file and execution result on the deletion HLR16, do not taken to guarantee the HLR16 space.
After step 312 business support system database 12 receives execution result,, upgrade the correspondence database record field of business support system, instruction execution result information is write database according to the database serial number in the step 302.Supervisory instruction for carrying out failure writes the failure cause field simultaneously, makes things convenient for subsequent query to handle.
With 10000 instructions is example, and two kinds of methods by prior art and present embodiment transmit respectively, and the time that these two kinds of method instructions are carried out compares.
The pure HLR time of implementation of known individual instructions is about 0.125 second, Command Management Center and HLR once 0.1 second consuming time approximately alternately.
In the prior art, 10000 instruction required times are 10000* (0.1+0.125)=2250 (second).In the present embodiment, 10000 instructions are divided into 10 files, 1000 instructions of each file, required time is: 10* (0.1+1000*0.125)=1251 (second).
This shows that it is 1.8 times of required times of present embodiment that prior art is carried out 10000 required times of instruction.Efficient was higher when the supervisory instruction processing method of present embodiment was carried out simultaneously for instruction in enormous quantities.
In the present embodiment,, will instruct packing transmission and batch to carry out, save the mutual expense of individual instructions, improve the whole efficiency of interface by separating and cooperating of command link and transmission link.
It should be noted that: above embodiment is only unrestricted in order to explanation the present invention, and the present invention also is not limited in above-mentioned giving an example, and all do not break away from the technical scheme and the improvement thereof of the spirit and scope of the present invention, and it all should be encompassed in the claim scope of the present invention.

Claims (15)

1, a kind of supervisory instruction processing method is characterized in that, comprising:
Command Management Center obtains to carry out enabling signal and supervisory instruction file, and transmits by first link and second link respectively;
HLR receives described execution enabling signal and supervisory instruction file, carry out described supervisory instruction file according to described execution enabling signal, and generate be finished signal and instruction execution result, return described signal and the described execution result of being finished to described Command Management Center by described first link and described second link respectively.
2, supervisory instruction processing method according to claim 1 is characterized in that, the operation of described acquisition supervisory instruction file specifically comprises: the some supervisory instructions that receive are packed, generate described supervisory instruction file.
3, supervisory instruction processing method according to claim 2 is characterized in that, the operation of described acquisition supervisory instruction file also comprises: the priority according to each supervisory instruction sorts to described supervisory instruction.
4, supervisory instruction processing method according to claim 2 is characterized in that, the operation of described acquisition supervisory instruction file also comprises: described supervisory instruction is carried out collision detection, delete conflicting supervisory instruction.
5, according to any described supervisory instruction processing method in the claim 1 to 4, it is characterized in that, enabling signal and supervisory instruction file are carried out in described acquisition, and also comprise after transmitting operation by first link and second link respectively: whether the described supervisory instruction file that verification receives is complete, when the described supervisory instruction file that receives was imperfect, described supervisory instruction file retransferred.
6, supervisory instruction processing method according to claim 5, it is characterized in that, also comprise after the described operation of returning described be finished signal and described execution result by described first link and described second link: described signal and the described execution result of being finished of deletion from the device that generates described be finished signal and described instruction execution result.
7, a kind of Command Management Center is characterized in that, comprising:
The command reception module is used for the receiving management instruction;
File generating module is used for described supervisory instruction packing is generated the supervisory instruction file, and by the described supervisory instruction file of second link transmission;
The signal generation module is used for generating and carries out enabling signal, and by the described execution enabling signal of first link transmission;
Receiver module receives the execution result of described supervisory instruction file correspondence and the signal that is finished.
8, Command Management Center according to claim 7 is characterized in that, also comprises order module, is used for according to the priority of described supervisory instruction described supervisory instruction being sorted.
9, Command Management Center according to claim 7 is characterized in that, also comprises the collision detection module, and whether be used to detect has conflict between the described supervisory instruction, and deletes conflicting described supervisory instruction.
10, a kind of HLR is characterized in that, comprising:
The file receiver module is used for receiving the supervisory instruction file that Command Management Center sends by second link;
Signal receiving module is used for receiving the execution enabling signal by first link;
Executive Module is used for according to described execution enabling signal described supervisory instruction file being carried out, and generates be finished signal and execution result;
Sending module is used for respectively sending described signal and the described execution result of being finished to described Command Management Center by described first link and described second link.
11, HLR according to claim 10 is characterized in that, also comprises:
Whether verify module, it is complete to be used to verify the described supervisory instruction file that described file receiver module receives;
Processing module is used for sending re-transmitted signal to described Command Management Center when verifying described supervisory instruction file when imperfect, the described Command Management Center described supervisory instruction file that retransfers.
12, HLR according to claim 10 is characterized in that, described sending module comprises: signal transmitting module is used for sending the described signal that is finished to described Command Management Center by described first link; Sending module is used for sending described execution result to described Command Management Center by described second link as a result.
13, a kind of supervisory instruction treatment system is characterized in that, comprises business support system database, Command Management Center and HLR, comprises first link and second link between described Command Management Center and the described HLR,
Described business support system database is used to generate supervisory instruction;
Described Command Management Center, be used for described supervisory instruction packing is generated the supervisory instruction file, and enabling signal is carried out in generation, respectively by described first link with described second link will carry out enabling signal and the supervisory instruction file is sent to described HLR, and receive be finished signal and execution result that described HLR returns;
Described HLR, be used for described supervisory instruction file being carried out according to described execution enabling signal, after being finished, generate described signal and the described execution result of being finished, and by described first link and described second link described signal and the described execution result of being finished is sent to described Command Management Center respectively.
14, supervisory instruction treatment system according to claim 13, it is characterized in that, described first link is a command link, and described Command Management Center will be carried out enabling signal by described command link and be sent to described HLR, and receives the signal that is finished that described HLR returns.
15, supervisory instruction treatment system according to claim 13, it is characterized in that, described second link is a transmission link, and described Command Management Center is sent to described HLR by described transmission link with the supervisory instruction file, and receives the execution result that described HLR returns.
CN 200810161820 2008-09-24 2008-09-24 Management instruction processing method, system, instruction management centre and HLR Expired - Fee Related CN101686453B (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
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CN107135251A (en) * 2017-04-18 2017-09-05 北京思特奇信息技术股份有限公司 A kind of home location register instruction agency retransmission method and system
CN110430097A (en) * 2019-08-07 2019-11-08 聚好看科技股份有限公司 Instruct transmission method, apparatus and system

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Publication number Priority date Publication date Assignee Title
CN1274106C (en) * 2002-06-18 2006-09-06 华为技术有限公司 Internet authentication method
US7385947B2 (en) * 2005-05-04 2008-06-10 Nokia Corporation Low-cost radio access network enabling local switching
CN100415058C (en) * 2005-12-31 2008-08-27 华为技术有限公司 System and method for bearing safety application data in mobile communication network

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107135251A (en) * 2017-04-18 2017-09-05 北京思特奇信息技术股份有限公司 A kind of home location register instruction agency retransmission method and system
CN107135251B (en) * 2017-04-18 2020-07-31 北京思特奇信息技术股份有限公司 Home location register instruction proxy forwarding method and system
CN110430097A (en) * 2019-08-07 2019-11-08 聚好看科技股份有限公司 Instruct transmission method, apparatus and system

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