CN1992572A - Method and apparatus for multiplexing from low-speed light port to 2M transmission line and protection switching - Google Patents

Method and apparatus for multiplexing from low-speed light port to 2M transmission line and protection switching Download PDF

Info

Publication number
CN1992572A
CN1992572A CNA2005101354860A CN200510135486A CN1992572A CN 1992572 A CN1992572 A CN 1992572A CN A2005101354860 A CNA2005101354860 A CN A2005101354860A CN 200510135486 A CN200510135486 A CN 200510135486A CN 1992572 A CN1992572 A CN 1992572A
Authority
CN
China
Prior art keywords
data
low
module
multiplexing
signal
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
CNA2005101354860A
Other languages
Chinese (zh)
Other versions
CN1992572B (en
Inventor
张金秀
崔俊武
梁玉红
杨洪斌
闻世春
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.)
Beijing Datang Electric Technology Co., Ltd.
Original Assignee
BEIJING CHANGTONGDA TELECOM TECHNOLOGY 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 BEIJING CHANGTONGDA TELECOM TECHNOLOGY Co Ltd filed Critical BEIJING CHANGTONGDA TELECOM TECHNOLOGY Co Ltd
Priority to CN2005101354860A priority Critical patent/CN1992572B/en
Publication of CN1992572A publication Critical patent/CN1992572A/en
Application granted granted Critical
Publication of CN1992572B publication Critical patent/CN1992572B/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Classifications

    • 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
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E60/00Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
    • 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
    • Y04INFORMATION OR COMMUNICATION TECHNOLOGIES HAVING AN IMPACT ON OTHER TECHNOLOGY AREAS
    • Y04SSYSTEMS INTEGRATING TECHNOLOGIES RELATED TO POWER NETWORK OPERATION, COMMUNICATION OR INFORMATION TECHNOLOGIES FOR IMPROVING THE ELECTRICAL POWER GENERATION, TRANSMISSION, DISTRIBUTION, MANAGEMENT OR USAGE, i.e. SMART GRIDS
    • Y04S10/00Systems supporting electrical power generation, transmission or distribution
    • Y04S10/20Systems supporting electrical power generation, transmission or distribution using protection elements, arrangements or systems

Landscapes

  • Time-Division Multiplex Systems (AREA)

Abstract

This invention discloses a method and device that directly multiplexing connects multiple low-speed rate optical interfaces to 2M standard transmission line, and automatic protection switching. The method as following: receiving the low-speed optical signal of the low-speed optical interfaces, processing photoelectric conversion and clock extraction, decoding and buffering; using 2M clock to generate 2M data accordant to ITU-T G.704 proposal, and under the control of the 2M clock, inserting the decoded low-speed data into 2M data flow, to complete the multiplexing of the low-speed data; checking the 2M data flow by Cyclic Redundancy Check rules, and generating the correcting code word, and inserting the code word into the CRC bit of the 2M data flow, through at least two transmission lines to send the data. The receiver of the other end device does transmission quality analysis to the received two-way data, and selects the best quality to de-multiplex to low-speed data, and through line coding and electro-optical, converts to the optical signal to output. The invention also discloses the device based on the above method. This invention guarantees and improves the data communication quality, with low maintenance costs.

Description

Low-speed light port is to the method and apparatus of the multiplexing of 2M transmission line and protection switching
Technical field
The present invention relates to a kind of communication means and device, relate in particular to the method and apparatus of the data communication that a kind of low-speed light port that is applied in the relay protection device switches to 2M bandwidth reuse and protection based on PCM multiple connection 2M data.
Background technology
Relay protection device be electric power system be used for monitoring the ruuning situation of power network in real time and in the power plant, the equipment that the control electric brake is switched when unusual appears in the high-tension line of power distribution station.This equipment all is paired use, and whether terminal device controls electric brake by the decisions such as voltage and current parameter on the common calculating high-voltage line is switched.The communication interface of equipment mostly is the low speed optical fiber interface; this is because relay protection device is installed in the forceful electric power magnetic environment; optical fiber interface has good antijamming capability; and only need just can satisfy its performance requirement between a pair of equipment less than the bandwidth of 2M; therefore most of producers are defined as 64Kb/s between the 4M with this optical fiber interface line speed, and payload is less than the low speed optical fiber interface of 2M.Relay protection device is the power equipment that belongs to important in electric power system; its communications circuit will be guaranteed reliably, just can make its operate as normal, in case telecommunication transmission system breaks down; electric power safety can be had a strong impact on, also great electric power accident may be caused when serious.
The develop rapidly of electric power system constantly proposes new requirement to relaying protection, and the develop rapidly of electronic technology, computer technology and the communication technology has constantly been injected new vitality for the development of Protection Technology again.At present, for the data reliability that guarantees relay protection device is transmitted several solutions that propose, but certain shortcoming and limitation are arranged all.The miscellaneous equipment of electric power system also has identical problem with the data reliability transmission that some of telecom operators has the data terminal equipment of low speed optical fiber interface and data particular importance, therefore also needs reliable solution to solve the transmission reliability of these equipment.
Because the domestic not low speed optical fiber interface of standard definition relay protection device causes the optical fiber interface of the relay protection device of each producer on the present domestic market to have nothing in common with each other.Each producer's equipment in use, its communications mode has following several.
A kind of mode is to use the fiber direct connection mode; the low speed optical fiber interface of two equipment of being about to directly links to each other with a pair of optical fiber, and in system of relay protection, this mode is usually used between the small-sized transformer station; have only a pair of relay protection device to interconnect between two stations, and distance have only several kilometers.Far away for transmission range, the more situation of equipment just has been not suitable for.Shortcoming is: need be the special laying optical cable of this low speed data, the cost height can't make full use of and use already used common transmission system such as SDH etc.And can't use the 1+1 backup of optical fiber, its reliability can not get ensureing.
The second way is the mode of light/electricity conversion+PCM (branch multiple connection) equipment of split.This is the mode that present most of electric power operator takes.At communications equipment room away from the electric power machine room, light/electric conversion equipment is installed, the low speed optical fiber interface is converted to the low speed data interface, as 64Kb/s interface in the same way, V35 interface, RS485 interface etc., the maximum of usefulness are same directional 64K b/s interfaces at present.This low speed data interface is multiplexed in the E1 interface by PCM equipment again, transmits by PDH, SDH optical transceiver or microwave system then.With regard to present present situation, light/electric conversion equipment safeguards that by relaying protection department PCM equipment is safeguarded by power communication department, usually owing to the back that has an accident is difficult to find the fault point dispute takes place between the two.Because the terminal equipment of low speed optical interface does not in the market have unified standard, the light of each coordinative composition of equipments/electric conversion equipment is also multifarious, can't be compatible between each equipment, and this brings huge maintenance cost for plant maintenance department.What PCM equipment then used all is general PCM equipment, its interface comprise RS232, RS422, RS485, V.11, V.35, numerous interfaces such as same directional 64K b/s, IP, plain old telephone, EM4/EM2, so institute's loaded service kind is many.In order to ensure that miscellaneous service normally uses, just can't ensure the line quality of a certain particular service of having relatively high expectations such as relaying protection, and the asynchronous problem of being brought by multi-service of clock is also very outstanding.And if only carry this particular service, numerous interfaces of then whole PCM equipment just can't use, and cause the significant wastage of resource.Also increased simultaneously the complexity of safeguarding.
But the transfer of data of relay protection device should reliably be guaranteed; the 1+1 backup mode of communications circuit is that electric power operator is for solving the effective means that transmission reliability is taked; and there is redundant transmission line electric power operation commercial city, material base is provided for the 1+1 backup mode.Based on the 1+1 backup mode, following several solution is arranged at present.
First kind of mode is two fiber direct connection modes, and this mode is owing to the cost height, and poor reliability is only used between small-sized transformer station.
The second way is the light/electricity conversion+PCM multiplex equipment+SDH Self-healing Rings mode of split.In relaying protection system; the weakness of SDH Self-healing Rings maximum is to ensure that bi-directional data can be through identical route; thereby can not ensure two-wayly have identical time-delay, but two-wayly have the basic demand that identical time-delay is a relay protection device, otherwise relay protection device cisco unity malfunction.
The third mode is the manual switching mode of the light/electricity conversion+PCM equipment+2M of split.The prerequisite here is to have two transmission routes, provides 2 2M transmission channels to use to a pair of relay protection device respectively.Electric power provides two kinds of transmission routes, and some places are the mode of two-way optical fiber, and some places are the mode of one road optical fiber, one road microwave.The shortcoming of this mode is except the shortcoming of the light/electricity conversion+PCM DeviceMode of above-mentioned split, the manual switching of 2M safeguarded inconvenience, gives birth to fault in case riches all the way, needs manual another road that switches to, communicate by letter and will interrupt fully during the manual line falling cable, the equipment safety in utilization will be greatly affected.
Summary of the invention
At existing problem and shortage in above-mentioned existing low-speed light port data multiplexing and protection changing method and the device, the purpose of this invention is to provide and a kind ofly can guarantee and improve data communication quality, maintenances is simple, easy to operate, cost is low, simple and easy to do low-speed light port to the multiplexing of 2M transmission line with protect changing method and device.
The present invention is achieved in that the method for low-speed light port to the multiplexing of 2M transmission line and protection switching, may further comprise the steps:
A, forwarding step:
(1) receives the low speed light signal of low speed optical interface input, this low speed light signal is carried out opto-electronic conversion and Clock Extraction, utilize the clock that extracts the data row cache of going forward side by side of decoding;
(2) utilize the 2M clock to generate the 2M data that G.704 ITU-T stipulates, under the control of 2M clock, according to the speed of low speed data decoded low speed data is inserted into the ITU-T 2M data format G.704 that forms standard in the described ITU-TG.704 2M data flow, thereby finishes multiplexing to low speed data;
(3) described 2M data flow is carried out verification by corresponding cyclic redundancy check (CRC) rule, and produce check results, this check results is inserted into the cyclic redundancy check (CRC) position of described 2M data flow, and send these data simultaneously by two-way transmission line at least;
B, receiving step:
(1) this input signal is carried out Clock Extraction after receiving the signal of 2M interface input, utilize the 2M data in this signal of 2M Clock Extraction that extracts, and carry out frame synchronization and cyclic redundancy check (CRC), carry out the transmission quality analysis then, select a road best 2M data flow according to the quality analysis result, from this 2M data flow, extract the low speed data signal;
(2) under the control of low-speed clock, the data behind the demultiplexing are carried out respective coding;
(3) described low speed data is carried out the conversion of electricity/light, the light signal after sending this conversion by the low speed optical interface under the control of low-speed clock.
Low-speed light port is to the multiplexing of 2M transmission line and protection device for switching, include the photoelectricity/electrooptic conversion module based on low-speed interface, the PCM that are electrically connected successively and divide multiple connection module, circuit automatic switchover module, described photoelectricity/electrooptic conversion module includes the light signal input/output module that is used for light signal input and output, opto-electronic conversion and inverse conversion, utilize corresponding clock to carry out the coding/decoding module of light signal encoding and decoding, the clock of more than one frequency pulses can be provided, the loopback control module that is used for the signal loopback test is used for the buffer of metadata cache; Described PCM divides the multiple connection module to include to be used for the multiplexing and demultiplexing module that low speed signal is multiplexed into the 2M signal and the 2M signal is demultiplexed into low speed signal, be used for markers is inserted into the markers insert module of the 2M data after multiplexing, be used for cyclic redundancy check (CRC) code is inserted into the cyclic redundancy check (CRC) insert module of the 2M data after multiplexing; Described circuit automatic switchover module includes the alignment of data module that the 2M of the two-way at least multiplex data that is used for receiving carries out markers extraction and alignment of data, be used for the 2M signal is carried out the chock smotthing module of chock smotthing, be used for the described 2M of two-way at least multiplex data is carried out the transmission quality analysis module that transmission quality is analyzed, be used to carry out the circuit handover module that switches between the described 2M of the two-way at least multiplex data transmission line; Described photoelectricity/electrooptic conversion module, PCM divide multiple connection module and circuit automatic switchover module clock synchronization, and described photoelectricity/electrooptic conversion module and PCM divide the multiple connection module shared same loopback control module.
It is the structure of one that the present invention adopts photoelectricity/electrooptic conversion module, PCM to divide multiple connection module and circuit automatic switchover module, has reduced the quantity of intermediate equipment, has reduced the fault point; Electrical interface is that standard becomes frame interface, and the convenient maintenance department that communicates by letter tests and safeguards; The present invention adopts the not damaged switching mode to improve transmission quality simultaneously, guarantees that transmission line is reliable and stable; Need not manual intervention, can carry out route protection automatically and switch; The present invention can adapt to the low speed optical interface of plurality of devices, thereby adapts to the conversion of the 2M data that G.704 multiple low speed data advise to ITU-T.The present invention can guarantee the operate as normal of relay protection device to the full extent, thereby guarantees the safe and reliable of power network.
Description of drawings
Fig. 1 is an application structure schematic diagram of the present invention;
Fig. 2 is the structural representation that opto-electronic conversion of the present invention, PCM divide multiple connection to realize;
Fig. 3 is the data transmission blocks structural representation of PCM of the present invention after multiplexing;
Fig. 4 is the harmless circuit-switched data reception module structural representation of the present invention;
Fig. 5 is a buffer read-write schematic diagram of the present invention;
Fig. 6 is a phase-locked loop structures schematic diagram of the present invention.
Embodiment
The present invention is described in further detail below in conjunction with accompanying drawing.
As shown in Figure 1; during use; directly communicator of the present invention is connected between two relay protection devices; (the present invention has specifically used two-way by two-way at least again; be " 1+1 " form) the transmission line connection; communicator of the present invention includes the photoelectricity/electrooptic conversion module (O/E based on low-speed interface that is electrically connected successively; Optical/Electrical transition; E/O, Electrical/Optical transition), PCM divides multiple connection module, circuit (1+1) automatic switchover module.Photoelectricity/electrooptic conversion module of the present invention, PCM divide multiple connection module and circuit automatic switchover module to be structure as a whole.Communicator of the present invention is connected to each other specifically and couples together by circuit automatic switchover module, and transmission line can be latticed forms such as SDH network, PDH network, also can adopt the transmission line such as twisted-pair feeder, coaxial cable of laying.
Below describe concrete structure of the present invention and corresponding data communication flow process in detail.
As shown in Figure 2, divide the implementation structure figure of multiple connection module for opto-electronic conversion of the present invention and PCM.This structure includes:
Optical transceiver module: finish the conversion of the light signal/signal of telecommunication of twocouese.
The ring of light returns control module: data are carried out loopback test before sending, make the optical interface signal under other the transmission medium or the situation of selected transmission medium, the receiving terminal of signal converting to oneself will be sent, by checking the situation that data send and receive judges whether the port working state is normal, to guarantee the transmission quality of data.The ring of light returns the loopback control command that control module can be controlled by simultaneously far-end, to make things convenient for the opening of equipment and circuit, fault detect and maintenance.
Encode and clock selection module: finish according to dissimilar low speed the setting and the selection of type of coding, signal rate and clock mode are controlled.The master and slave pattern of type of coding, signal rate and the clock of light signal is set; From input signal, extract actual clock signal, offer " data decode " module as decode clock.Under the mode of master clock, system clock is produced voluntarily by this module, and to provide speed to the pcm interface direction be the clock signal of 2M, provides to light transmission interface direction that to be synchronized with clock and the speed that this module produces voluntarily be the low-speed clock of optical interface speed.Under the mode of clock, provide to the pcm interface direction to be synchronized with the light input interface and speed is the clock signal of 2M; Provide to light transmission interface direction and to be synchronized with the 2M input interface and speed is the low-speed clock of optical interface speed.The present invention is when selecting different interface rates, and the low speed data code stream is to be inserted among each time slot of framing 2M by the mode that evenly interleaves.All the other time slots transmit the information such as webmaster, control except being used for, and unnecessary time slot does not re-use.
Photodissociation sign indicating number, Clock Extraction module: under the control of " coding and clock selection module ", finish from the Clock Extraction of the input signal of optical interface input direction and the function that data are decoded.
Light coding module: under the control of " coding and clock selection module ", finish the function of encoding to from the data of the input signal of PCM direction.
Send out buffer module: under the control of the actual low-speed clock signal that extracts, the data from the light input interface are carried out buffer-stored; Simultaneously under the control of the 2M clock that is synchronized with system clock, to PCM direction dateout.
Receive buffer module: under control, to storing from the data of pcm interface direction from PCM direction clock; Simultaneously under the control of the low-speed clock signal that is synchronized with system clock, to optical interface direction sense data.
PCM Multiplexing module: finish low speed data to meeting the G.704 data transaction of form.Idiographic flow is as follows:
Pressing G.704, data format produces characteristics such as frame, multi-frame, Si;
Send out at 2M under the control of clock, low speed data is inserted in the G.704 one-tenth frame data stream of generation, form G.704 data flow;
Above-mentioned G.704 data flow is carried out verification by CRC-4 verification rule, and produce check code word;
The check code word is inserted in the relevant position of data flow G.704.
The PCM demultiplexing module: finishing G.704, the data of form arrive the low speed data conversion.Idiographic flow is as follows:
Under the control of the clock that extracts in the 2M input port,
Carrying out G.704, frame synchronization, multi-frame reach the CRC-4 verification operation synchronously.
Go out low speed data from extracting data G.704.
PCM loopback control module: can realize the loopback control of both direction, to support the loopback test of PCM transmission channel and transmission line.Under the control of PCM loopback control signal, can realize the loopback of 2M interface side, can realize that also PCM divides the loopback of multiplexing side.
2M Clock Extraction module: finish and from the 2M input signal, extract the 2M clock.
Harmless circuit switching of the present invention is to adjust by the propagation delay time of carrying out that signal is produced when transmit in different paths in network to finish.When sending data,, be divided into two-way and be sent to different transmission systems with multiplexing back 2Mb/S signal adding markers and after recomputating the CRC-4 coding.The time scale information that inserts is for the receiving terminal two paths of data can be alignd.Below describe in detail.
As shown in Figure 3, the data transmission blocks after PCM of the present invention is multiplexing comprises the markers insert module that is used for markers is inserted multiplex data, is used for CRC-4 is inserted the cyclic redundancy check (CRC) insert module of multiplex data.The markers insert module is carried out deblocking with the signal after multiplexing, adds different label (the label here is meant time tag) for each piece.This label can be inserted in G.704 the Sa bit or certain idle time slot.Because output 1 is identical with the content of output 2, at receiving terminal, can think that the data block with same label is exactly same blocks of data, promptly only with the label of comparing two paths of signals, and without the comparison information content, just whether two data blocks of this two-way received signal are identical data blocks as can be known.
As shown in Figure 4, the multiplex data of two-way at least that circuit automatic switchover module of the present invention includes the buffer that is used for transceive data storage, be used for receiving carries out that markers is extracted and the alignment of data module of alignment of data, be used for the 2M signal is carried out the chock smotthing module of chock smotthing, be used for two-way multiplex data is at least carried out the transmission quality analysis module that transmission quality is analyzed, be used to carry out the circuit handover module that switches between the two-way multiplex data transmission line at least.
Below to describe circuit automatic switchover step of the present invention in detail.
Storage of the present invention and alignment at first are described.For 2 road transmission line data block transmitted, 2 buffers (RAM) are set respectively store.As shown in Figure 5, in the data block to each transmission line, deposit in successively according to the different time label on the respective data blocks in the different address sections of respective cache device, the less data block of time tag deposits forward address section in.As the data of the transmission line 1 that receives deposit buffer 1 (RAM1) in, and the data block that has time tag " 1 " deposits the 1st address section in, and the data block that will have label " 2 " deposits the 2nd address section in, and the like.The storage organization of 2 buffers is identical, to make things convenient for reading and aliging of data.The buffer here can be the first in first out buffer.Time tag also can adopt sequence number to replace.
Mode by write data reads 2 data blocks in the buffer respectively, and judges whether the label of two data blocks of extracting is identical, if then extraction again inequality; The present invention carries out quality analysis to 2 circuit-switched data of extracting, judge transmission quality best a road, select in the buffer of this circuit-switched data of storage corresponding data as dateout.Transmission quality analysis of the present invention comprises: the alarm of each transmission line data blocks stored being carried out dropout, alarm indication, frame remote alarm, multi-frame remote alarm, OOF etc. is respectively checked, simultaneously the bit error code of each transmission line data blocks stored, the performances such as error code, frame error code, CRC error code of encoding are checked, can be carried out that also M2100 analyzes etc.The data that the present invention adopts comprehensive judgment mode decision desire to select.For example can rule of thumb the proportion weights be set, calculate the data transmission quality of each transmission line according to the weights that are provided with for above-mentioned each parameter, and with this as basis for estimation.
If all there is not error code after the quality analysis in the two-way, the identical address position of two buffers after the storage should deposit identical data in like this.Two paths of data has realized the alignment in memory, only need select during output from buffer 1 or buffer 2 extraction data, even switch back and forth between two buffers, dateout can not occur mistake yet and promptly damage." output " signal send PCM to carry out demultiplexing.
When alarm takes place in transmission, given birth to LOS (dropout) as riches all the way, AIS (alarm indication), LOF (LOF) alarm, make this circuit-switched data can not use fully, then total output only needs fetch data fully output from the RAM on another road, just switched to another road, till that road that alarm has taken place is recovered normally.This is the process that alarm is switched.
If two paths of signals is alarm not, but error code has taken place, if 1 tunnel " 4 " blocks of data has error code, 2 tunnel " 5 " blocks of data has error code, switches to 2 the tunnel in the time of then should exporting the 4th blocks of data, read data from RAM2, in the time should exporting the 5th blocks of data, switch to 1 the tunnel, read data from RAM1.So just avoided taking place the data segment of error code.Because the two-way transmission is two fully independently transmission systems, the probability that error code takes place this two-way simultaneously reduces greatly, and therefore, the probability that error code takes place in total output also reduces greatly, therefore can improve error performance.Error code occurring is the foundation of switching.
Just produce switching if occurred single error code in the data block, be called bit error code and switch.(as 10e-4,10e-6) just switch, then be called the grade error code and switch, the grade error code switches and can only could switch when one tunnel transmission performance drops to the grade of setting, therefore can not improve the circuit error code class if this road error code reaches certain rank.Can select bit error code to switch or the switching of grade error code according to different customer requirements.
Bit error code switch to require to judge fast, switches fast, the control at the interval of total output read pointer and two write pointers is required very accurate, therefore switches difficult realization than the grade error code.By selecting read data from which RAM, can realize the data switching between two RAM.Align just because of two-way, just make this technology can realize that not damaged switches.
Though data have realized undamaged switching,, still can cause to seriously influence to the line signal quality if clock does not switch accordingly.The clock switching occurs in a certain road LOS takes place, AIS, and the LOF alarm makes when this road clock signal can not correctly be extracted.At two paths of signals all just often, total output be synchronized to 1 the tunnel still 2 tunnel clock all be fine.Suppose current total output clock synchronization and 1 tunnel, at this moment, the 1 road alarm has taken place, and 1 road clock is no longer available, should switch to 2 the tunnel.If be directly switch to 2 the tunnel, because two-way clock phase difference will inevitably cause between the two-way to differ, directly switching can cause serious phase place damage and output signal is sustained damage.As shown in Figure 6, the present invention also is provided with corresponding phase-locked loop, the output clock after the switching can not undergone mutation, thereby make output signal injury-free.
Photoelectricity/electrooptic conversion module of the present invention, PCM divide multiple connection module and circuit automatic switchover module clock synchronization, and photoelectricity/electrooptic conversion module and PCM divide the multiple connection module shared same loopback control module.
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 skilled 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 (10)

1, a kind of low-speed light port is characterized in that to the method for the multiplexing of 2M transmission line and protection switching this method may further comprise the steps:
A, forwarding step:
(1) receives the low speed light signal of low speed optical interface input, this low speed light signal is carried out opto-electronic conversion and Clock Extraction, utilize the clock that extracts the data row cache of going forward side by side of decoding;
(2) utilize the 2M clock to generate the 2M data that G.704 ITU-T stipulates, under the control of 2M clock, according to the speed of low speed data decoded low speed data is inserted into the ITU-T 2M data format G.704 that forms standard in the described ITU-TG.7042M data flow, thereby finishes multiplexing to low speed data;
(3) described 2M data flow is carried out verification by corresponding cyclic redundancy check (CRC) rule, and produce check results, this check results is inserted into the cyclic redundancy check (CRC) position of described 2M data flow, and send these data simultaneously by two-way transmission line at least;
B, receiving step:
(1) this input signal is carried out Clock Extraction after receiving the signal of 2M interface input, utilize the 2M data in this signal of 2M Clock Extraction that extracts, and carry out frame synchronization and cyclic redundancy check (CRC), carry out the transmission quality analysis then, select a road best 2M data flow according to the quality analysis result, from this 2M data flow, extract the low speed data signal;
(2) under the control of low-speed clock, the data behind the demultiplexing are carried out respective coding;
(3) described low speed data is carried out the conversion of electricity/light, the light signal after sending this conversion by the low speed optical interface under the control of low-speed clock.
2, low-speed light port according to claim 1 is to the method for the multiplexing of 2M transmission line and protection switching, it is characterized in that, described low speed data is inserted into and meets in the framing 2M data flow that G.704 ITU-T advise, is specially: the low speed data code stream is inserted among each time slot in the 2M data flow after the framing by the mode that evenly interleaves; Remaining time slots is used for communicating control information.
3, low-speed light port according to claim 1 is to the method for the multiplexing of 2M transmission line and protection switching, it is characterized in that, this method also comprises the loopback test step of the loopback test and the 2M interface side of described low speed optical interface side, be specially: with the signal of described low speed optical interface or 2M interface under transmission medium that is provided with or situation through selected transmission medium, the receiving terminal of signal converting to oneself will be sent, by checking the situation that data send and receive judges whether the port working state is normal, to guarantee the transmission quality of data; The loopback control command that also is controlled by far-end simultaneously is to make things convenient for the opening of equipment and circuit, fault detect and maintenance.
4, low-speed light port according to claim 1 is to the method for the multiplexing of 2M transmission line and protection switching, it is characterized in that, this method also comprises step: when carrying out two-way transmission at least after multiplexing to low speed data, data-signal with this after multiplexing carries out piecemeal, add different time tags for each data block, with identical data in the order of nominal data piece and the different transmission line; When receiving terminal is handled these different track datas that receive, can think that the data block with identical time tag is exactly same blocks of data, promptly only can determine with the label of comparison two paths of signals whether the data block of two-way is identical data block, so that two paths of signals aligns, be beneficial to circuit and carry out undamaged switching.
5; low-speed light port according to claim 4 is to the method for the multiplexing of 2M transmission line and protection switching; it is characterized in that; in the described receiving step data that receive are carried out the transmission quality analysis; be specially: the two paths of data at least that will receive stores into respectively in the different buffers by the difference of transmission line; and store into successively in the corresponding address of buffer by the time tag of data block; extract the data block that has identical time tag in each buffer; each the circuit-switched data piece that extracts is carried out quality analysis; judge transmission quality best a road, select this top-quality data block as dateout.
6, the method for switching to the multiplexing of 2M transmission line and protection according to the described low-speed light port of arbitrary claim in the claim 1 to 5 is characterized in that, the described 2M signal of telecommunication is specially the 2.048Mbps data that meet the E1 interface standard that G.704 ITU-T advise.
7, a kind of low-speed light port is to the multiplexing of 2M transmission line and protection device for switching, include the photoelectricity/electrooptic conversion module that is electrically connected successively based on low-speed interface, PCM divides the multiple connection module, circuit automatic switchover module, it is characterized in that, described photoelectricity/electrooptic conversion module includes and is used for the light signal input and output, the light signal input/output module of opto-electronic conversion and inverse conversion, utilize corresponding clock to carry out the coding/decoding module of light signal encoding and decoding, the clock of more than one frequency pulses can be provided, the loopback control module that is used for the signal loopback test is used for the buffer of metadata cache; Described PCM divides the multiple connection module to include to be used for the multiplexing and demultiplexing module that low speed signal is multiplexed into the 2M signal and the 2M signal is demultiplexed into low speed signal, be used for markers is inserted into the markers insert module of the 2M data after multiplexing, be used for cyclic redundancy check (CRC) code is inserted into the cyclic redundancy check (CRC) insert module of the 2M data after multiplexing; Described circuit automatic switchover module includes the alignment of data module that the 2M of the two-way at least multiplex data that is used for receiving carries out markers extraction and alignment of data, be used for the 2M signal is carried out the chock smotthing module of chock smotthing, be used for the described 2M of two-way at least multiplex data is carried out the transmission quality analysis module that transmission quality is analyzed, be used to carry out the circuit handover module that switches between the described 2M of the two-way at least multiplex data transmission line; Described photoelectricity/electrooptic conversion module, PCM divide multiple connection module and circuit automatic switchover module clock synchronization, and described photoelectricity/electrooptic conversion module and PCM divide the multiple connection module shared same loopback control module.
8, low-speed light port according to claim 7 is characterized in that to the multiplexing of 2M transmission line and protection device for switching described photoelectricity/electrooptic conversion module, PCM divide multiple connection module and circuit automatic switchover module to be structure as a whole.
9, low-speed light port according to claim 7 is characterized in that to the multiplexing of 2M transmission line and protection device for switching described transmission line can be SDH network, PDH network or directly lays corresponding transmission line.
10, according to the described low-speed light port of arbitrary claim in the claim 7 to 9 to the multiplexing of 2M transmission line and the protection device for switching, it is characterized in that the described 2M signal of telecommunication is specially the 2.048Mbps data that meet the E1 interface standard; The buffer of storage reception multiplex data is provided with by the number of transmission line, and described buffer is the first in first out buffer.
CN2005101354860A 2005-12-31 2005-12-31 Method and apparatus for multiplexing from low-speed light port to 2M transmission line and protection switching Expired - Fee Related CN1992572B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2005101354860A CN1992572B (en) 2005-12-31 2005-12-31 Method and apparatus for multiplexing from low-speed light port to 2M transmission line and protection switching

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2005101354860A CN1992572B (en) 2005-12-31 2005-12-31 Method and apparatus for multiplexing from low-speed light port to 2M transmission line and protection switching

Publications (2)

Publication Number Publication Date
CN1992572A true CN1992572A (en) 2007-07-04
CN1992572B CN1992572B (en) 2012-02-15

Family

ID=38214543

Family Applications (1)

Application Number Title Priority Date Filing Date
CN2005101354860A Expired - Fee Related CN1992572B (en) 2005-12-31 2005-12-31 Method and apparatus for multiplexing from low-speed light port to 2M transmission line and protection switching

Country Status (1)

Country Link
CN (1) CN1992572B (en)

Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102882592A (en) * 2012-09-26 2013-01-16 烽火通信科技股份有限公司 2M optical signal transparent transmission device and 2M optical signal transparent transmission method applied to SDH (synchronous digital hierarchy) network
CN107343006A (en) * 2017-07-13 2017-11-10 广州鼎飞航空科技有限公司 A kind of method of transmitting video data and device
CN107425911A (en) * 2017-07-27 2017-12-01 南开大学 A kind of communication terminal visible data transmitting device and transmission method
WO2018001228A1 (en) * 2016-06-30 2018-01-04 中兴通讯股份有限公司 Fibre connection detection method, network management server, receiving-end network element and computer storage medium
CN108390745A (en) * 2018-02-05 2018-08-10 柳州达迪通信技术股份有限公司 A kind of lossless switching method of relay protection communication 2M signals
CN108732692A (en) * 2018-05-15 2018-11-02 国网浙江省电力有限公司 A kind of photosignal automatic switching method
CN111512251A (en) * 2017-12-19 2020-08-07 Abb瑞士股份有限公司 Method for facilitating control system testing and simulation
CN113422756A (en) * 2021-05-26 2021-09-21 鹏城实验室 Verification data transmission method, rate conversion device and verification data transmission system
CN115442839B (en) * 2021-06-04 2024-09-27 大唐移动通信设备有限公司 Fault detection method, first processing unit, device and storage medium

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1248470C (en) * 2001-07-28 2006-03-29 中兴通讯股份有限公司 Rolay interface device based on synchronous digital transmission system
CN2517181Y (en) * 2001-11-27 2002-10-16 北京格林威尔科技发展有限公司 Optical transmission device with multi-data interface
CN1275427C (en) * 2003-04-30 2006-09-13 中兴通讯股份有限公司 Remote monitoring data transmission method and implementing device therefor
CN2867699Y (en) * 2005-12-31 2007-02-07 北京畅通达通信技术有限公司 Low-speed optical gate to 2M transmission line multiplexing and switch protective device

Cited By (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102882592A (en) * 2012-09-26 2013-01-16 烽火通信科技股份有限公司 2M optical signal transparent transmission device and 2M optical signal transparent transmission method applied to SDH (synchronous digital hierarchy) network
WO2018001228A1 (en) * 2016-06-30 2018-01-04 中兴通讯股份有限公司 Fibre connection detection method, network management server, receiving-end network element and computer storage medium
CN107343006A (en) * 2017-07-13 2017-11-10 广州鼎飞航空科技有限公司 A kind of method of transmitting video data and device
CN107425911A (en) * 2017-07-27 2017-12-01 南开大学 A kind of communication terminal visible data transmitting device and transmission method
CN111512251A (en) * 2017-12-19 2020-08-07 Abb瑞士股份有限公司 Method for facilitating control system testing and simulation
CN111512251B (en) * 2017-12-19 2024-04-16 Abb瑞士股份有限公司 Method for facilitating control system testing and simulation
CN108390745A (en) * 2018-02-05 2018-08-10 柳州达迪通信技术股份有限公司 A kind of lossless switching method of relay protection communication 2M signals
CN108732692A (en) * 2018-05-15 2018-11-02 国网浙江省电力有限公司 A kind of photosignal automatic switching method
CN113422756A (en) * 2021-05-26 2021-09-21 鹏城实验室 Verification data transmission method, rate conversion device and verification data transmission system
CN115442839B (en) * 2021-06-04 2024-09-27 大唐移动通信设备有限公司 Fault detection method, first processing unit, device and storage medium

Also Published As

Publication number Publication date
CN1992572B (en) 2012-02-15

Similar Documents

Publication Publication Date Title
CN1992572B (en) Method and apparatus for multiplexing from low-speed light port to 2M transmission line and protection switching
CN101009581A (en) Line non-loss automatic switching method and device based on analysis on the transfer quality
US4768188A (en) Optical demand assigned local loop communication system
CN201234126Y (en) Multiplex protection switching device between low-speed optical fiber interface and 2M transmission line
CN101106426B (en) Optical fiber access system for multi-service optical fiber transceiver
CN1168752A (en) Integrated multi-fabric digital cross-connect integrated office links
US4197523A (en) Digital telecommunication switching systems
CN100417098C (en) Method for detecting E1/T1 connection error
CN101035143B (en) Physical layer chip, method for transferring the signal and switcher
CN2867699Y (en) Low-speed optical gate to 2M transmission line multiplexing and switch protective device
CN2824439Y (en) Optical line terminal
CN1808926A (en) Method and apparatus of protective switching at both ends of non-framed 2M communication channel
US5513173A (en) Data link access unit for T1 spans supporting the extended superframe format (ESF)
CN101009529A (en) Multiplexing and de-multiplexing method and device for low-speed optical port-based 2M transfer line
CN101009582B (en) Real-time online monitoring method and device based on the 2M data circuit transfer quality
CN1835459A (en) Method of automatic detecting sigual transmitting line failare
CN1960217A (en) Optical transferred synthetized accessing PDH device in multiple services
CN109067624A (en) A kind of channelizing optical port STM-4HDLC collecting method and device
CN1127234C (en) Light monitoring channel equipment, system and implementation for wavelength division multiplexing light transmission system
Abate et al. No. 4 ESS: The switched digital network plan
CN201868863U (en) Multifunctional relay protection signal remote transmission channel switch apparatus
CN2684471Y (en) Optical transmitter and receiver with embedded error code testing function
CN102882592A (en) 2M optical signal transparent transmission device and 2M optical signal transparent transmission method applied to SDH (synchronous digital hierarchy) network
CN1798069A (en) Centeralization type system of collecting communication data based on exchange platform
CN200973094Y (en) Optical fibre insertion system of high speed synchronous data exchange standard optical modem

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
C41 Transfer of patent application or patent right or utility model
TR01 Transfer of patent right

Effective date of registration: 20160120

Address after: 101149, room 2-10, building 155, Beiyuan 128, Tongzhou District, Beijing

Patentee after: Beijing Datang Electric Technology Co., Ltd.

Address before: 100083 Beijing Haidian District Xueyuan Road No. 40 research 6 Building

Patentee before: Beijing Changtongda Telecom Technology Co., Ltd.

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: 20120215

Termination date: 20171231