CN1612514A - Wave-division multiplexing optical network luminous power control method - Google Patents

Wave-division multiplexing optical network luminous power control method Download PDF

Info

Publication number
CN1612514A
CN1612514A CNA2003101033061A CN200310103306A CN1612514A CN 1612514 A CN1612514 A CN 1612514A CN A2003101033061 A CNA2003101033061 A CN A2003101033061A CN 200310103306 A CN200310103306 A CN 200310103306A CN 1612514 A CN1612514 A CN 1612514A
Authority
CN
China
Prior art keywords
node
link
index
wavelength
detection index
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
CNA2003101033061A
Other languages
Chinese (zh)
Other versions
CN100499438C (en
Inventor
李唯实
唐晓军
赵向辉
张世桂
马宁
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Huawei Technologies Co Ltd
Original Assignee
Huawei Technologies Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Huawei Technologies Co Ltd filed Critical Huawei Technologies Co Ltd
Priority to CNB2003101033061A priority Critical patent/CN100499438C/en
Publication of CN1612514A publication Critical patent/CN1612514A/en
Application granted granted Critical
Publication of CN100499438C publication Critical patent/CN100499438C/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Images

Landscapes

  • Optical Communication System (AREA)

Abstract

The method includes steps: (1) node on a chain through optical detection unit detects measured index of the node, and difference value between the measured index and normal detection index setup in advance is obtained through comparison; determining whether the difference value is larger than threshold value setup in advance; if yes, reporting node abnormity to wavelength division multiplex system (WDM); otherwise, no operation is done; (2) after receiving information of node abnormity, WDM system sends command of auto optical power control and adjustment to the node in the chain; the node through tunable attenuation unit adjusts measured index till it is normal. ALC mode is adopted in the system to realize measurement of WDM system without dependent on EMS. Manual work for observation and adjustment is not needed so as to reduce complexity of user's operation.

Description

A kind of method of wavelength division multiplexed optical network luminous power control
Technical field
The present invention relates to the monitoring and the measuring technology of optical link in the optical-fiber network, particularly a kind of method of wavelength division multiplexed optical network luminous power control.
Background technology
In wavelength division multiplexing (WDM) system applies, optical fiber is aging, connector is aging and the variation wdm system parameter all can cause the unusual of wdm system optical link attenuation.
If only adopt automatic gain control (AGC) pattern to realize wdm system, when a certain section optical link decay in the wdm system increases, input, the Output optical power of all nodes in this section circuit downstream all can descend, have a strong impact on the Optical Signal To Noise Ratio (OSNR) of wdm system, the received optical power of receiving terminal optical transponder unit (OTU) also will descend simultaneously, influence the receptivity of wdm system.This moment can only the manual adjustment abnormal nodes adjustable optical attenuator, just can make the Output optical power of this node get back to the Output optical power of initial this node set of wdm system.Because the node decay pattern of anomaly has uncertainty, and need artificial observation, adjusting, therefore, only adopt agc mode to realize that the reliability of wdm system is low, the maintenance cost height by node.
At present, (ALC) pattern of can also controlling by auto light power realizes wdm system, adopt ALC Mode to realize that the concretism of wdm system is: when a certain section optical link decay in the wdm system increases, first node input optical power in this section circuit downstream descends, but the input and output luminous power of the Output optical power of this first node and other nodes in downstream is constant, therefore, adopt ALC Mode to realize wdm system than the realization wdm system that only adopts agc mode, and can not influence the received optical power of receiving terminal OTU little many of the influence of wdm system OSNR.
Realize wdm system by ALC Mode, the attenuation rate on just necessary real-time regulated decay extraordinary light road could guarantee that the luminous power of the node in this optical link downstream can not fluctuate.Number of patent application CN02141720.2, denomination of invention is exactly to adopt ALC Mode to realize wdm system for " a kind of luminous power is the method for control automatically ", this patent of invention is provided with the detection link by Element management system (EMS) to wdm system, when this link appearance decay is unusual, this detection link is carried out optical power adjustment.This patent of invention realizes detection to link having increased the traffic between EMS and each node by EMS, and the increase of the traffic has determined that the frequency of link detecting can not be too high, and the real-time of entire WDM system is reduced; Detection with this patent of invention realization entire WDM system needs to dispose a detection link and EMS and communicates between the node, the increase of number of links has improved user's operation complexity; The observation of the luminous power of whole detection link and indication adjustment need manual intervention, and maintenance cost is higher.
Summary of the invention
In view of this, the invention provides a kind of method of wavelength division multiplexed optical network luminous power control, this method does not rely on EMS and just can adopt ALC Mode to realize the detection of wdm system, does not need artificial observation and indication to regulate, and reduces user's operation complexity and maintenance cost.
According to above-mentioned purpose, technical scheme of the present invention is achieved in that
A kind of method of wavelength division multiplexed optical network luminous power control, give the link of the node configuration auto light power control in the wavelength-division multiplex system in advance, dispose optical detecting unit and adjustable damping unit respectively for each node on this link, and set up standard respectively and detect index and index fluctuation threshold value, this method also comprises:
Node on A, this link detects the detection index of this node by optical detecting unit, to detect index compares with predefined standard detection index and draws difference, judge that whether this difference is greater than predefined threshold value, if greater than, this node reports node unusual to this wavelength-division multiplex system, changes step B over to; Otherwise this node is not done any operation, returns steps A;
After B, this wavelength-division multiplex system are received the unusual information of the node that reported, issue the order of auto light power regulating and controlling and give node in this link, the node in this link is regulated by the adjustable damping unit respectively and is detected index, recovers normal up to detecting index.
The Output optical power that described detection index is a node, the input optical power of node or the gain of node.
The detection index that node on described this link of steps A detects this node by optical detecting unit regularly detects the detection index of this node by optical detecting unit for the node on this link.
Node in described this link of step B is regulated by the adjustable damping unit and is detected index, recovers normally also to comprise up to detecting index:
B1, the node of receiving adjusting command are judged node headed by self whether, if the detection index of inquiring about this node changes step B2 over to, otherwise then this node is received the detection index of this node of adjusting indication back inquiry of a node, changes step B2 over to;
B2, this node judge whether the detection index of this node is unusual, if unusual, this node is regulated by the adjustable damping unit and detected index, recovers normal until this index, changes step B3 over to; Otherwise, directly change step B3 over to;
B3, this node judge whether this node is end-node, if this link is regulated and is finished, otherwise, regulate indication to the next node transmission of this node, change step B1 over to.
This method also comprises:
B11, receive the node of adjusting command judges whether self is the abnormal nodes of node number minimum, if, the detection index of inquiring about this node, change step B2 over to, otherwise this node is received the detection index of this node of adjusting indication back inquiry of a node, changes step B2 over to.
This method also comprises:
Each node on this link reports the beginning incident of regulating to wavelength-division multiplex system when adjusting detection index begins;
Each node on this link reports the adjusting End Event to wavelength-division multiplex system when regulating the end of detection index;
Each node on this link reports the dysregulation incident to wavelength-division multiplex system when regulating the interruption of detection index;
All nodes are regulated and are detected indexs backward wave division multiplexing system that finishes and report whole link to regulate the incident that finishes on this link.
Described optical detecting unit is the index checkout gear of node configuration or is the spectroscopy unit of node configuration.
Described auto light power control link is chain, annular, intersects chain or intersect annular auto light power control link.
The described auto light power regulating and controlling command procedure that issues of step B is:
After receiving the anomalous event that is reported when wavelength-division multiplex system, issue the order of auto light power regulating and controlling automatically; After perhaps wavelength-division multiplex system is received the anomalous event that is reported, according to luminous power regulating and controlling order under the user's request.
Finishing by transmission auto light power control protocol frame on the Optical Supervisory Channel alternately between the node of described this link.
In sum, the present invention at first is provided with ALC link for wdm system, for each node configuration optical detecting unit and adjustable damping unit; Whether each node regularly to detect this node by optical detecting unit unusual then, if unusual, this node reports anomalous event to give wdm system, and wdm system issues the ALC adjusting command and indicates this node to regulate by the adjustable damping unit, otherwise, do not process.Because the present invention does not need the luminous power of EMS control wdm system to detect and regulate, so this method does not rely on the detection that EMS just can adopt ALC Mode realization wdm system; Because the detection of each node and adjusting all are that each node is finished automatically,, reduce user's operation complexity and maintenance cost so method provided by the invention does not need artificial observation and adjusting yet.
Description of drawings
Fig. 1 carries out the flow chart of luminous power abnormality detection to node in the wdm system for the present invention.
Fig. 2 carries out the flow chart of optical power adjustment after receiving the ALC adjusting command for node in the wdm system of the present invention.
Fig. 3 is the networking diagram of recurrent network topological structure.
Embodiment
In order to make the purpose, technical solutions and advantages of the present invention clearer, by the following examples and with reference to accompanying drawing, the present invention is described in more detail.
Method provided by the invention needs the node in the wdm system to participate in and Collaborative Control is finished.The present invention gives node configuration ALC link in the wdm system according to the traffic direction of node in the wdm system in advance, and internodal information interaction is finished by transmit the ALC protocol frame on Optical Supervisory Channel on the ALC link.
Method provided by the invention has been given each node configuration in the wdm system in advance optical detecting unit, this optical detecting unit is the index checkout gear of node configuration or is the spectroscopy unit of node configuration, and set in advance etalon optical power value and luminous power fluctuation thresholding respectively for each node in the wdm system.When carrying out the luminous power testing process of wdm system, the optical detecting unit of each node is according to the Output optical power of predefined time detecting respective nodes, this node etalon optical power value that detected Output optical power and this node are set in advance compares and calculated difference then, if the luminous power fluctuation thresholding that difference sets in advance greater than this node, then report luminous power unusual, start ALC and regulate flow process to wdm system; Otherwise, be left intact.
Etalon optical power that is provided with in node and luminous power fluctuation thresholding are as the whether normal standard of judgement this node luminous power, and etalon optical power and luminous power fluctuation thresholding can be set according to the actual needs of wdm system.
As shown in Figure 1, Fig. 1 carries out the flow chart of luminous power abnormality detection for the present invention to node in the wdm system, and its concrete steps are:
The optical detecting unit of step 100, node is the Output optical power of detection node regularly;
Step 101, this node compare the etalon optical power value that detected Output optical power and this node set in advance and calculated difference;
Step 102, node compare the luminous power fluctuation thresholding that this difference and this node set in advance, if this difference then changes step 103 over to greater than the luminous power threshold value that sets in advance, otherwise, change step 100 over to;
Step 103, this node Output optical power are unusual, report this node Output optical power unusual to wdm system.
Method provided by the invention has been given each node configuration in the wdm system in advance adjustable damping unit, but each node is regulated the Output optical power that attenuation units can change this node.
After wdm system is received the luminous power anomalous event that node reports, just can start ALC and regulate flow process.Start ALC adjusting flow process two kinds of patterns are arranged: artificial mode and automatic mode.Under artificial mode, need the user to confirm whether to start ALC and regulate flow process, if confirm, then issue the ALC adjusting command, otherwise, do not issue the ALC adjusting command; Under automatic mode, after receiving the luminous power anomalous event, wdm system issues the ALC adjusting command automatically.
As shown in Figure 2, Fig. 2 is the flow chart that node carries out optical power adjustment in the wdm system of the present invention after receiving the ALC adjusting command, and its concrete steps are:
Step 200~201, the node of receiving the ALC adjusting command are judged node headed by this node is whether, if, then change 203 over to, otherwise, change 202 over to;
The process of judging first node is: when ALC being set regulating link, to the node on the link sequence number is set respectively in advance, whether the sequence number of decision node is 1, if, node headed by this node, otherwise, this node not headed by node;
Step 202, wait for that up to the adjusting indication of receiving that a last node sends, this regulates the adjusting token that indication can send for a last node, change step 203 again over to;
Step 203~204, inquire about the Output optical power of this node, judge whether the Output optical power of this node is unusual, if, change step 205 over to, otherwise, change step 206 over to;
Step 205, this node are regulated the adjustable damping unit automatically, and be normal until this node Output optical power, changes step 207 over to;
Step 206, the uncomfortable joint adjustable damping of this node unit directly change step 207 over to;
Step 207, judge whether this node is end-node, if be end-node, changes step 208 over to, otherwise, change 209 over to;
Step 208, full link ALC regulate luminous power and finish, and report ALC to regulate the luminous power End Event to wdm system;
Step 209, the downward node of this node send and regulate token, change step 202 over to.
ALC regulates in the luminous power process can be attended by reporting of variety of event information, and each node begins and finish to report respectively when ALC regulates luminous power this node ALC to begin the adjusting incident and this node ALC finishes the adjusting incident to wdm system.Each node in the whole piece ALC link is all regulated the back that finishes and is reported ALC to regulate the incident that finishes to wdm system, thereby finishes the optical power adjustment of ALC link.Regulate if in the ALC adjustment process, there is the node of execute exception to cause to carry out ALC, then report ALC abnormal end incident.Wdm system not only can be understood the process that whole ALC regulates according to the variety of event that node reports, and artificial the fixing a breakdown of ALC abnormal end incident that can report according to node.
Wdm system with the recurrent network topological structure illustrates method provided by the invention below.
As shown in Figure 3, Fig. 3 is the networking diagram of recurrent network topological structure: A among the figure and D website are Optical Terminal Multiplexer (OTM) website, B and C website are that light is put (OLA) website, at first according to two ALC link of traffic direction configuration, be link 1 and link 2, the node serial number of every link all is 1,2,3 and 4, then according to the actual needs established standards optical power value of A, B, C, each website of D and luminous power fluctuation thresholding.When the luminous power of carrying out each node detects, each node regularly detects the luminous power of this node output according to the predefined time, the luminous power of this node output and the etalon optical power of setting are compared and calculate difference, when the threshold value of difference greater than setting, at first whether the eliminating of this node is to increase, subtract the optical power change that the carrying wave number causes, if not it is out-of-limit to increase, subtract the luminous power that causes of carrying wave number, then reports the luminous power anomalous event to give wdm system.
With link 1 is the process of example explanation ALC optical power adjustment of the present invention, suppose that 3,4 nodes have all reported luminous power unusual back by artificial mode or automatic mode startup ALC optical power adjustment, then the process of link 1 adjusting luminous power is: node 1 at first reporting links ALC optical power adjustment begins, judge then whether this node Output optical power is unusual, according to supposition, node 1 Output optical power is normal, does not regulate, and node 1 directly sends regulates token to node 2; Node 2 judges whether this node Output optical power is unusual, and node 2 Output optical power are normal, do not regulate after receiving and regulating token, and node 2 directly sends regulates token to node 3; Node 3 judges whether this node Output optical power is unusual after receiving and regulating token, and according to supposition, node 3 Output optical power are unusual, but node 3 is regulated attenuation units automatically, and adjusting end back sends regulates token to node 4; Node 4 judges whether this node Output optical power is unusual after receiving and regulating token, and according to supposition, node 4 Output optical power are unusual, but node 4 is regulated attenuation units automatically, regulates and finishes back reporting links 1ALC optical power adjusting section end.
The wavelength-division multiplex system that it is chain, annular that method of the present invention can also be used for topological structure, intersect chain and crossing annular.
Regulate in the luminous power process at ALC, can begin to carry out optical power adjustment, one by one follow-up node is carried out optical power adjustment then, and need not begin from the first node of link to regulate from the unusual luminous power node of node number minimum.For example: be provided with and dispose 10 nodes in the ALC link, suppose that node 3, node 6 and node 7 have all occurred unusually, then can begin to carry out optical power adjustment, then one by one node 4, node 5, node 6, node 7, node 8 and node 9 be carried out optical power adjustment from node 3.
The input optical power of all right detection node of the present invention, the gain of node or other relevant indexs, when the input optical power of detection node, can established standards input optical power value and input optical power fluctuation thresholding, and with these indexs as the standard of judging abnormal nodes; When the gain of detection node, can established standards yield value and gain fluctuation thresholding, and with these indexs as the standard of judging abnormal nodes.
Method provided by the invention makes node regularly detect Output optical power, and can be convenient to wdm system and understand each node situation of link fast in the unusual back node state that in time reports of node optical power; Method provided by the invention can be finished the optical power adjustment of ALC link fast after optical link is unusual, make the Output optical power of each node get back to the luminous power state of initial setting; When method provided by the invention started ALC optical power adjustment flow process under artificial mode, the user only need issue and start the order of ALC optical power adjustment, need not the artificial station of pursuing and regulated, and had reduced maintenance cost, had also reduced the risk that the manual operation error brings; Method provided by the invention does not rely on EMS, can be by the collaborative optical power adjustment of finishing of each node on the link.
The above only is preferred embodiment of the present invention, not in order to restriction the present invention, all any modifications of being made within the spirit and principles in the present invention, is equal to and replaces and improvement etc., all should be included within protection scope of the present invention.

Claims (10)

1, a kind of method of wavelength division multiplexed optical network luminous power control, it is characterized in that, give the link of the node configuration auto light power control in the wavelength-division multiplex system in advance, dispose optical detecting unit and adjustable damping unit respectively for each node on this link, and set up standard respectively and detect index and index fluctuation threshold value, this method also comprises:
Node on A, this link detects the detection index of this node by optical detecting unit, to detect index compares with predefined standard detection index and draws difference, judge that whether this difference is greater than predefined threshold value, if greater than, this node reports node unusual to this wavelength-division multiplex system, changes step B over to; Otherwise this node is not done any operation, returns steps A;
After B, this wavelength-division multiplex system are received the unusual information of the node that reported, issue the order of auto light power regulating and controlling and give node in this link, the node in this link is regulated by the adjustable damping unit respectively and is detected index, recovers normal up to detecting index.
2, the method for claim 1 is characterized in that, the Output optical power that described detection index is a node, the input optical power of node or the gain of node.
3, the method for claim 1 is characterized in that, the detection index that the node on described this link of steps A detects this node by optical detecting unit regularly detects the detection index of this node by optical detecting unit for the node on this link.
4, the method for claim 1 is characterized in that, the node in described this link of step B is regulated by the adjustable damping unit and detected index, recovers normally also to comprise up to detecting index:
B1, the node of receiving adjusting command are judged node headed by self whether, if the detection index of inquiring about this node changes step B2 over to, otherwise then this node is received the detection index of this node of adjusting indication back inquiry that a node sends, and changes step B2 over to;
B2, this node judge whether the detection index of this node is unusual, if unusual, this node is regulated by the adjustable damping unit and detected index, recovers normal until this index, changes step B3 over to; Otherwise, directly change step B3 over to;
B3, this node judge whether this node is end-node, if this link is regulated and is finished, otherwise, regulate indication to the next node transmission of this node, change step B1 over to.
5, method as claimed in claim 4 is characterized in that, this method also comprises:
B11, receive the node of adjusting command judges whether self is the abnormal nodes of node number minimum, if, the detection index of inquiring about this node, change step B2 over to, otherwise this node is received the detection index of this node of adjusting indication back inquiry that a node sends, and changes step B2 over to.
6, method as claimed in claim 4 is characterized in that, this method also comprises:
Each node on this link reports the beginning incident of regulating to wavelength-division multiplex system when adjusting detection index begins;
Each node on this link reports the adjusting End Event to wavelength-division multiplex system when regulating the end of detection index;
Each node on this link reports the dysregulation incident to wavelength-division multiplex system when regulating the interruption of detection index;
All nodes are regulated and are detected indexs backward wave division multiplexing system that finishes and report whole link to regulate the incident that finishes on this link.
7, the method for claim 1 is characterized in that, described optical detecting unit is the index checkout gear of node configuration or is the spectroscopy unit of node configuration.
8, the method for claim 1 is characterized in that, described auto light power control link is chain, annular, intersects chain or intersect annular auto light power control link.
9, the method for claim 1 is characterized in that, the described auto light power regulating and controlling command procedure that issues of step B is:
After receiving the anomalous event that is reported when wavelength-division multiplex system, issue the order of auto light power regulating and controlling automatically; After perhaps wavelength-division multiplex system is received the anomalous event that is reported, according to luminous power regulating and controlling order under the user's request.
10, the method for claim 1 is characterized in that, finishing by transmission auto light power control protocol frame on the Optical Supervisory Channel alternately between the node of described this link.
CNB2003101033061A 2003-10-28 2003-10-28 Wave-division multiplexing optical network luminous power control method Expired - Fee Related CN100499438C (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CNB2003101033061A CN100499438C (en) 2003-10-28 2003-10-28 Wave-division multiplexing optical network luminous power control method

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CNB2003101033061A CN100499438C (en) 2003-10-28 2003-10-28 Wave-division multiplexing optical network luminous power control method

Publications (2)

Publication Number Publication Date
CN1612514A true CN1612514A (en) 2005-05-04
CN100499438C CN100499438C (en) 2009-06-10

Family

ID=34756610

Family Applications (1)

Application Number Title Priority Date Filing Date
CNB2003101033061A Expired - Fee Related CN100499438C (en) 2003-10-28 2003-10-28 Wave-division multiplexing optical network luminous power control method

Country Status (1)

Country Link
CN (1) CN100499438C (en)

Cited By (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2009026796A1 (en) * 2007-08-28 2009-03-05 Huawei Technologies Co., Ltd. Method, apparatus and system for transmitting measurement data
WO2011032480A1 (en) * 2009-09-16 2011-03-24 中兴通讯股份有限公司 Automatic power adjustment system and method for optical network system
CN101145835B (en) * 2007-07-27 2011-08-24 中兴通讯股份有限公司 A parameter automatically-adjusted optical transmission device, system and method
CN101364845B (en) * 2007-08-08 2012-05-23 华为技术有限公司 Method and system for optical power adjustment in wavelength-division network
WO2012163025A1 (en) * 2011-10-27 2012-12-06 华为技术有限公司 Energy-saving method, device and system for optical communication
CN102891720A (en) * 2012-10-19 2013-01-23 烽火通信科技股份有限公司 Method for automatically regulating optical power
CN101656589B (en) * 2008-08-21 2013-04-17 华为技术有限公司 Method and device for optimizing DWDM network channel
US9484311B2 (en) 2012-07-20 2016-11-01 Huawei Technologies Co., Ltd. Chip package and packaging method
CN110808793A (en) * 2018-08-02 2020-02-18 中兴通讯股份有限公司 Monitoring channel control method, device and readable storage medium
CN110912616A (en) * 2019-12-23 2020-03-24 武汉邮电科学研究院有限公司 Method for eliminating power oscillation of coherent optical communication system and coherent optical communication system
CN112383357A (en) * 2020-10-20 2021-02-19 电子科技大学 Power balancing device of space division multiplexing optical switching node

Cited By (19)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101145835B (en) * 2007-07-27 2011-08-24 中兴通讯股份有限公司 A parameter automatically-adjusted optical transmission device, system and method
CN101364845B (en) * 2007-08-08 2012-05-23 华为技术有限公司 Method and system for optical power adjustment in wavelength-division network
WO2009026796A1 (en) * 2007-08-28 2009-03-05 Huawei Technologies Co., Ltd. Method, apparatus and system for transmitting measurement data
CN101656589B (en) * 2008-08-21 2013-04-17 华为技术有限公司 Method and device for optimizing DWDM network channel
WO2011032480A1 (en) * 2009-09-16 2011-03-24 中兴通讯股份有限公司 Automatic power adjustment system and method for optical network system
CN101656577B (en) * 2009-09-16 2012-03-28 中兴通讯股份有限公司 Automatic power adjusting system and automatic power adjusting method for optical network system
US8750716B2 (en) 2009-09-16 2014-06-10 Zte Corporation Automatic power adjustment system and method for optical network system
CN103190095A (en) * 2011-10-27 2013-07-03 华为技术有限公司 Energy-saving method, device and system for optical communication
WO2012163025A1 (en) * 2011-10-27 2012-12-06 华为技术有限公司 Energy-saving method, device and system for optical communication
CN103190095B (en) * 2011-10-27 2016-03-09 华为技术有限公司 Optical communication power-economizing method, equipment and system
US9294195B2 (en) 2011-10-27 2016-03-22 Huawei Technologies Co., Ltd. Method, device, and system for saving energy in optical communication
US9484311B2 (en) 2012-07-20 2016-11-01 Huawei Technologies Co., Ltd. Chip package and packaging method
CN102891720A (en) * 2012-10-19 2013-01-23 烽火通信科技股份有限公司 Method for automatically regulating optical power
CN102891720B (en) * 2012-10-19 2015-05-13 烽火通信科技股份有限公司 Method for automatically regulating optical power
CN110808793A (en) * 2018-08-02 2020-02-18 中兴通讯股份有限公司 Monitoring channel control method, device and readable storage medium
CN110808793B (en) * 2018-08-02 2022-04-15 中兴通讯股份有限公司 Monitoring channel control method, device and readable storage medium
CN110912616A (en) * 2019-12-23 2020-03-24 武汉邮电科学研究院有限公司 Method for eliminating power oscillation of coherent optical communication system and coherent optical communication system
CN112383357A (en) * 2020-10-20 2021-02-19 电子科技大学 Power balancing device of space division multiplexing optical switching node
CN112383357B (en) * 2020-10-20 2021-10-22 电子科技大学 Power balancing device of space division multiplexing optical switching node

Also Published As

Publication number Publication date
CN100499438C (en) 2009-06-10

Similar Documents

Publication Publication Date Title
CN1153393C (en) Signal monitoring apparatus for wavelength division multiplexed optical telecommunication networks
CN1612514A (en) Wave-division multiplexing optical network luminous power control method
CN101296034B (en) Method and apparatus for transmission of monitoring information, passive optical network system
KR101237687B1 (en) Pon system and redundancy method
CN1798006A (en) Wavelength-division-multiplexed passive optical network
CN1130859C (en) System with feedback controlled optical amplifiers
CN101079668A (en) Device, method and device for positioning the optical fiber failure
EP1495559A1 (en) Method for detecting a check-back signal in an optical transmission system
CN1099775C (en) Fault restoration control method and its apparatus in communication network
JP2004336754A (en) Method and apparatus for q-factor monitoring using forward error correction coding
US20040120706A1 (en) Fault isolation in agile transparent networks
CN1791112A (en) Protocol configuration method
US8280252B2 (en) Subscriber terminal of adjusting intensity of optical signal by controlling attenuation, and a method thereof
CN1288869C (en) A WDM optical transmission system with automatic link gain adjustment and method thereof
US7280761B2 (en) Device and method for setting add signal level for OADM system
CN1272923C (en) Light relay station device for light transmission, system and its automatic fain regulating method
CN103973368B (en) A kind of compensating adaptive dispersion method of adjustment
CN1187911C (en) Optical amplifier control
CN1256822C (en) Light power automatic control method
CN1665175A (en) Method for implementing power detection based automatic power control in optical network
CN100340074C (en) Optical transmission system
CN1585307A (en) System and method for dynamic control of power loss by contrapropagation of a supervisory channel
CN1481104A (en) Automatic gain controlled optical enlarger
US20050286899A1 (en) Method and system for wavelength division multiplexed optical signal transmission and optical repeater
CN1949690A (en) Method and apparatus of laser safety protection in optical communication system

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20090610

Termination date: 20191028