CN101034967A - Multi-network interface reverse multiplexing method - Google Patents

Multi-network interface reverse multiplexing method Download PDF

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Publication number
CN101034967A
CN101034967A CN 200710073357 CN200710073357A CN101034967A CN 101034967 A CN101034967 A CN 101034967A CN 200710073357 CN200710073357 CN 200710073357 CN 200710073357 A CN200710073357 A CN 200710073357A CN 101034967 A CN101034967 A CN 101034967A
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Prior art keywords
data
interface
data segment
network interface
code stream
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CN 200710073357
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CN100583727C (en
Inventor
陈伟
唐庶
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Shenzhen Di vision Limited by Share Ltd
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SHENZHEN DVISION TECHNOLOGY Co Ltd
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Priority to CN200710073357A priority Critical patent/CN100583727C/en
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Priority to HK07111459.4A priority patent/HK1103188A1/en
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Abstract

The invention discloses a Multi-network interface inverse multiplexing method , which including the following steps: 1) the transmitter will split the transmission of business data bitstream into a number of N bytes of data in which an additional serial number with the head of the information be attached, and using the scheduling algorithm send the various data including the head information through the multi-channel interface of E1/T1 all the way to the receiver; 2) receiver extracted the head information of the serial number from data through various E1/T1 interface , and data stream after sorting the business data bitstream. This invention can realize multiple network interface data transfer at the same time and meet the high bandwidth utilization, suitable for a variety of business bitstream and transmission interruption will not happen.

Description

A kind of multi-network interface reverse multiplexing method
Technical field
The present invention relates to a kind of method of utilizing a plurality of network interfaces to transmit data, i.e. multi-network interface reverse multiplexing method.
Background technology
For utilizing a plurality of network interfaces to transmit the process of data, desirable state is to reach following 3 points: the one, and the bandwidth availability ratio height; The 2nd, be fit to the multiple business code stream; The 3rd, code stream can not take place during transmission to interrupt.
Existing multi-network interface reverse multiplexing method mainly contains following two kinds:
First method is divided into two steps: the first step is to hold consultation by signaling earlier, determines the relative time delay of network interface order and each network interface; Second step sent simple business datum code stream according to negotiation result, no longer sent negotiation information; Relative time delay the business datum code stream of a plurality of network interfaces is put in order and receive network interface order and each network interface of determining according to the first step.
The advantage of this method is:
(1) transmission effective bandwidth is 100%, the utilance height.
(2) can no matter be bag stream or byte stream at any code stream.
The shortcoming of this method is:
(1) if after entering for second step, each network interface changes relative time delay, then needs to return to again the first step.Transmission code failed to be convened for lack of a quorum and interrupted this moment.
(2) when network lifting speed, also need to return to again the first step.Especially when raising speed, cause unnecessary code stream to interrupt.Network lifting speed is meant: carry out if some network interface in this set of network interfaces has fault, causing inverse multiplexing to utilize all the other normal network data transmission interface in the inverse multiplexing transmission data procedures in a set of network interfaces, be referred to as reduction of speed; If some network interface can recover again after fault, cause inverse multiplexing in this set of network interfaces, to utilize more network data transmission interface, be referred to as raising speed.
Second method is at the method for business datum code stream for bag stream, by the bag of business datum code stream, additionally inserts several information bytes therein as consulting signaling, simultaneously service data transmission code stream and negotiation signaling.The advantage of this method is can not change because of each network interface time delay when transmission and cause that code stream interrupts.The shortcoming of this method is, can only be at transmission based on the data code flow of bag stream, and can not be at transmission based on byte stream.Do not support simultaneously the multi-service data code stream.
Summary of the invention
The technical problem that the present invention solves provides a kind of bandwidth availability ratio height, is fit to the multiple business code stream, and the multi-network interface reverse multiplexing method that code stream interrupts can not take place during transmission.
Multi-network interface reverse multiplexing method of the present invention comprises following treatment step:
1) the business datum code stream that transmitting terminal will be to be transmitted is split as a plurality of N byte data sections, on each data segment, increase by one and have the header information that data segment is arranged sequence number, each data segment that will comprise header information by dispatching algorithm by in the multichannel E1/T1 Interface wherein riches all the way delivers to receiving terminal;
2) receiving terminal is received the sequence number of extracting in the data segment in the header information from each road E1/T1 Interface, and with making up after the data segment ordering, obtains the business datum code stream.
Preferably, also comprise following treatment step before the described step 1): when system changed at the beginning, each transmitting terminal structure also sent the invalid data section, determines the receiving terminal that can be used for receiving business datum according to the data segment information that each receiving terminal receives.
Preferably, when needs transmitted a plurality of business datum code stream, described data segment head information also comprised professional numbering, and data segment is arranged sequence number according to the difference of traffic data type numbering cycle respectively.
Preferably, described header information comprises following content: be used for the synchronization character that the flag data section begins, the sequence number that is used for identification data section sequencing, comprise the integrated information word one of remote alarm information, pay(useful) load sign, line interface order, type of service, and the integrated information word two that comprises CRC check field and reserved field.
Adopt multi-network interface reverse multiplexing method of the present invention to have following technique effect:
(1) goes for any business datum code stream, all can adapt to based on the data code flow that wraps stream or byte stream.
(2) under the situation that causes each network interface variation in relative time delay owing to the network reason, can not cause that the business datum code stream interrupts.
(3) transmission of support multi-service data code stream.
(4) lifting speed is reliable, rapid.
(5) function can be expanded as required, and bandwidth availability ratio can be adjusted.
(6) implementation method is simple.
Description of drawings
Fig. 1 is the data segment schematic diagram of band head information in the preferred embodiment of the present invention
Fig. 2 is integrated information word one schematic diagram in the header information in the preferred embodiment of the present invention;
Fig. 3 is integrated information word two schematic diagrams in the header information in the preferred embodiment of the present invention.
Embodiment
Special line (Leased Line) transmission system in the present public network (comprise SDH, PDH, the network interface that ATM) provides is generally E1/T1, and bandwidth is 2Mbps or 1.5Mbps.The present invention a kind ofly can provide the data less than 8Mbps (are 6Mbps for 4 T1) bandwidth greater than 2Mbps (is 1.5Mbps for T1), the scheme of utilizing a plurality of E1/T1 Interface to transmit in transmission network.
The present invention transmitting terminal will be to be transmitted the business datum code stream be split as the data segment of a plurality of N bytes, and add that in its front header information constitutes a data segment that comprises band head information (below be referred to as the inverse multiplexing frame), by dispatching algorithm with this inverse multiplexing frame by in the multichannel E1/T1 Interface wherein riches all the way delivers to receiving terminal; The arrangement sequence number that comprises each data segment in the header information.The inverse multiplexing frame that to receive from each road E1/T1 Interface at receiving terminal sorts according to the sequence number in the header information of its front end, and in order the data payload in the inverse multiplexing frame is made up, to obtain original business datum code stream.
If transmit the multiple business data code flow, then every kind of business datum code stream is handled respectively, by also being provided with business type field in the inverse multiplexing frame header information, distinguish according to type of service, and use independently sequence number so that receiving terminal carries out the ordering and the data reproduction of different service types.
Below further introduce the information content that data segment head packets of information is drawn together.As shown in Figure 1, all to a header information should be arranged, this header information comprises four aspect contents before each data segment, uses 4 bytes as header information in the present embodiment, and four aspect contents are respectively used 1 byte.Data segment is used for the bearer service data code flow.Four aspect contents of header information are respectively
Synchronization character (SvncWord): 1 byte, value 0x47.Be used for the beginning of mark inverse multiplexing frame.
Sequence number (SeqNo): 1 byte.The order that is used for the identifying reverse multiplexed frame.Value is that the 0-255 circulation increases progressively.Sequence number is only distributed pay(useful) load.When data payload was invalid, sequence number field was 0.
Integrated information word one (MisInfo1): 1 byte.Comprise fields such as remote alarm information, pay(useful) load sign, line interface order, type of service.
Integrated information word two (MisInfo2): 1 byte.Comprise CRC check field and reserved field.
Integrated information word one structure as shown in Figure 2, wherein:
Remote alarm sign (A): 1 expression remote alarm, the no remote alarm of 0 expression.
Pay(useful) load sign (P): 1 this bag of expression is pay(useful) load, and 0 this bag of expression is invalid load.
Line interface numbering (CID): value is 0-3.Expression will send the sequence number of the E1/T1 Interface of this bag data.Can confirm the port numbers of the opposite end that is connected with this interface according to the CID field of integrated information word one in the inverse multiplexing frame header information.
Type of service (SID): value 0-15.Represent the class of business that this bag data are affiliated.
Integrated information word two structures as shown in Figure 3, wherein:
Reserved field (Reserved): be used for the function expansion.Content is 0.
The CRC check field: 4 CRC check words are used for the correctness of verification inverse multiplexing frame header information.Generator polynomial:
The present invention determines the connection status between transmitting terminal and the receiving terminal interface by end-to-end positioning states (below be referred to as P2P frame alignment state).Be that P2P frame alignment state is the parameter that is used for reflecting the connection status between the E1/T1 Interface of the E1/T1 Interface of local terminal equipment and opposite equip..Being divided into is 3 states: P2P synchronization loss, P2P remote alarm, P2P frame alignment.
Specifically introduce the decision method of frame alignment state below again.The judgement of P2P frame alignment state is determined by inverse multiplexing frame header information.When an E1/T1 Interface can not correctly receive the data of the E1/T1 Interface that the opposite end is attached thereto, promptly can not in the data that receive, find correct header information, then the P2P frame alignment state of this E1/T1 Interface is the P2P synchronization loss.At this moment, the remote alarm sign (A) of integrated information word one is 1 in the inverse multiplexing frame of this interface transmission.When an E1/T1 Interface can correctly receive the data of the E1/T1 Interface that the opposite end is attached thereto, but the remote alarm sign (A) of the integrated information word one in the header information that is received is 1, and then the P2P frame alignment state of this E1/T1 Interface is the P2P remote alarm.At this moment, the remote alarm sign (A) of integrated information word one is 0 in the inverse multiplexing frame of this interface transmission.When an E1/T1 Interface can correctly receive the data of the E1/T1 Interface that the opposite end is attached thereto, and the remote alarm sign (A) of the integrated information word one in the header information that is received is 0, and then the P2P frame alignment state of this E1/T1 Interface is P2P frame alignment.At this moment, the remote alarm sign (A) of integrated information word one is 0 in the inverse multiplexing frame of this interface transmission.
(error code, dodge disconnected) the unnecessary reduction of speed that causes of introducing below that a kind of method comparatively reliably can effectively be avoided because the circuit fluctuation simultaneously can be reliably and finish the function of lifting speed relatively timely.Promptly come the current state of determining interface, determine P2P frame alignment state according to current state again according to the header information in the inverse multiplexing frame.Concrete treatment step is as follows:
(1) current state of E1/T1 Interface and the initial value of P2P frame alignment state being set is the P2P synchronization loss, and the not success synchronously of this interface is set.
(2) do not have under the synchronous case of successful at interface, if on interface, find continuous 3 SyncWord, and the CRC check success, think that then this interface is successful synchronously.
(3) under the synchronous case of successful of interface, determine that according to the remote alarm sign (A) of the integrated information word one in the inverse multiplexing frame header information current state: A=1 is the P2P remote alarm, A=0 is P2P frame alignment.
(4) under the synchronous case of successful of interface,, not success synchronously of interface then is set, and current state is set to the P2P synchronization loss if SyncWord loses or the CRC check mistake.
(5) lasting set time of current state does not change, and it is the value of current state that P2P frame alignment state then is set.
(6) under the synchronous unsuccessful situation of interface, the remote alarm sign (A) of the integrated information word one of the inverse multiplexing frame that this interface sends is 1.
(7) under the synchronous case of successful of interface, the remote alarm sign (A) of the integrated information word one of the inverse multiplexing frame that this interface sends is 0.
When the P2P of E1/T1 Interface frame alignment state becomes P2P frame alignment by P2P synchronization loss or P2P remote alarm, represent system's raising speed; When the P2P of E1/T1 Interface frame alignment state becomes P2P remote alarm or P2P synchronization loss by P2P frame alignment, expression system reduction of speed.When system's raising speed or reduction of speed, should recomputate current speed, and report upper layer module, so that obtain the suitable business datum code stream of code check.
The communication process of reverse multiplexing method of the present invention is specially:
(1) behind the system initialization, the P2P frame alignment state of all E1/T1 Interface is the P2P synchronization loss, and at this moment, present rate is 0.Total interface all sends the empty frame of inverse multiplexing, and receives data and analyze, to determine P2P frame alignment state.
(2) become P2P frame alignment as the P2P of interface frame alignment state, system carries out raising speed.At this moment, recomputate present rate, and report upper layer module.
(3) receive the business datum code stream of upper layer module, with its subpackage, and to select a line state wherein according to dispatching algorithm be that the interface of P2P frame alignment sends.
(4) analyze from interface reception data and to data, determine the P2P frame alignment state of interface.To being the inverse multiplexing frame of the interface reception of P2P frame alignment from P2P frame alignment state, filter the empty frame of inverse multiplexing, according to type of service classification and ordering, the business datum code stream that recovers out after sorting is sent effective inverse multiplexing frame to upper layer module.
(5) when the P2P of interface frame alignment state changes, need to determine whether lifting speed to handle.If desired, then recomputate present rate and report upper layer module.
When transmitting for the individual data code stream, at transmitting terminal, business datum code stream to be transmitted is split as the data segment of N byte, and the header information that adds 4 bytes in its front constitutes an inverse multiplexing frame, by dispatching algorithm with this inverse multiplexing frame by in the multichannel E1/T1 Interface wherein riches all the way delivers to receiving terminal.Wherein, pay(useful) load sign (P) is 1 in the integrated information word one of header information, and line interface numbering (CID) is the numbering of the E1/T1 Interface of this bag of transmission.
If there are a plurality of business datum code streams to need to transmit, then they are distributed different business numberings, carry out above-mentioned processing then respectively, and business is numbered type of service (SID) field of filling in into the integrated information word one of inverse multiplexing frame header information.The sequence number byte of every kind of business datum code stream circulation separately increases progressively.
Need transmit or business code flow total bitrate when being lower than present rate at no professional code stream, on interface, should transmit the empty frame of inverse multiplexing and be replenished.The empty frame of so-called inverse multiplexing does not have the inverse multiplexing frame of pay(useful) load exactly, and pay(useful) load sign (P) is 0 in the integrated information word 1 of its header information.
The business datum code stream only transmits on P2P frame alignment state is the interface of P2P frame alignment, at the P2P state for only transmitting the empty frame of inverse multiplexing on the interface of P2P frame alignment.The recipient, filter out the empty frame of inverse multiplexing,, and sort according to sequence number respectively the inverse multiplexing frame classification according to type of service (SID), in order data payload is reverted to original business datum code stream.
Between the multichannel E1/T1 Interface because may there be relative time delay in route or other reasons, be that transmit leg can not be received in same 8K the recipient by the data that multichannel E1/T1 sends in same 8K, the late several 8K of some possibility, this depends on the circuit self characteristics.System should determine the relative time delay of a maximum tolerance, and the recipient continues to wait for to the inverse multiplexing frame that does not arrive in the maximum delay scope, and the inverse multiplexing frame that does not arrive at above the maximum delay scope is abandoned when the inverse multiplexing frame is sorted.Determining of maximum delay is relevant with the memory span of system, and maximum delay is big more, and the memory span demand is also big more.
Bandwidth utilization rate of the present invention depends on the length N of data payload in the inverse multiplexing frame.N is big more, and the utilization rate of bandwidth is high more, but business datum code stream transmission time-delay is big more, and is also big more to the requirement of memory span; N is more little, and the utilization rate of bandwidth is low more, but the transmission time-delay is more little, and is also more little to the requirement of memory span.The user can be according to the performance requirement of real system, the disposal ability of system and the size that memory span takes all factors into consideration to determine N.
Bandwidth utilization rate=N/ (N+4)
For example: when N=256, the bandwidth utilization rate is 98.46%.
In sum, the present invention a kind ofly can realize the bandwidth availability ratio height, is fit to the multiple business code stream as can be seen, and the multi-network interface reverse multiplexing method that code stream interrupts can not take place during transmission.

Claims (4)

1. a multi-network interface reverse multiplexing method is characterized in that, described method comprises following treatment step:
1) the business datum code stream that transmitting terminal will be to be transmitted is split as a plurality of N byte data sections, on each data segment, increase by one and have the header information that data segment is arranged sequence number, each data segment that will comprise header information by dispatching algorithm by in the multichannel E1/T1 Interface wherein riches all the way delivers to receiving terminal;
2) receiving terminal is received the sequence number of extracting in the data segment in the header information from each road E1/T1 Interface, and with making up after the data segment ordering, obtains the business datum code stream.
2. multi-network interface reverse multiplexing method according to claim 1 is characterized in that, also comprises following treatment step before the described step 1):
When system changed at the beginning, each transmitting terminal structure also sent the invalid data section, determines the receiving terminal that can be used for receiving business datum according to the data segment information that each receiving terminal receives.
3. multi-network interface reverse multiplexing method according to claim 1 and 2, it is characterized in that, when needs transmitted a plurality of business datum code stream, described data segment head information also comprised professional numbering, and data segment is arranged sequence number according to the difference of traffic data type numbering cycle respectively.
4. multi-network interface reverse multiplexing method according to claim 3, it is characterized in that, described header information comprises following content: be used for the synchronization character that the flag data section begins, the sequence number that is used for identification data section sequencing, comprise the integrated information word one of remote alarm information, pay(useful) load sign, line interface order, type of service, and the integrated information word two that comprises CRC check field and reserved field.
CN200710073357A 2007-02-14 2007-02-14 Multi-network interface reverse multiplexing method Expired - Fee Related CN100583727C (en)

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HK07111459.4A HK1103188A1 (en) 2007-02-14 2007-10-24 An inverse and multiplex method for multi-network interface

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Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101227662B (en) * 2008-02-03 2012-07-18 中兴通讯股份有限公司 Apparatus, system and method for extracting E1 access time division multiplex data
CN103684672A (en) * 2012-09-20 2014-03-26 中兴通讯股份有限公司 Ethernet data transmission rate adjusting method and device
CN104660431A (en) * 2013-11-21 2015-05-27 中兴通讯股份有限公司 Network alarm method and equipment, as well as terminal
CN105007275A (en) * 2015-07-29 2015-10-28 浪潮(北京)电子信息产业有限公司 Single-way safety isolation data transmission method and system
CN106170011A (en) * 2016-06-16 2016-11-30 广州海格通信集团股份有限公司 The system and method that multi-mode E1 interface business processes

Cited By (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101227662B (en) * 2008-02-03 2012-07-18 中兴通讯股份有限公司 Apparatus, system and method for extracting E1 access time division multiplex data
CN103684672A (en) * 2012-09-20 2014-03-26 中兴通讯股份有限公司 Ethernet data transmission rate adjusting method and device
WO2014044190A1 (en) * 2012-09-20 2014-03-27 中兴通讯股份有限公司 Method and device for adjusting ethernet data transmission rate
US9705809B2 (en) 2012-09-20 2017-07-11 Zte Corporation Method and device for adjusting rate of data transmission in Ethernet
CN104660431A (en) * 2013-11-21 2015-05-27 中兴通讯股份有限公司 Network alarm method and equipment, as well as terminal
CN104660431B (en) * 2013-11-21 2019-01-15 中兴通讯股份有限公司 A kind of network alarm method, equipment and terminal
CN105007275A (en) * 2015-07-29 2015-10-28 浪潮(北京)电子信息产业有限公司 Single-way safety isolation data transmission method and system
CN105007275B (en) * 2015-07-29 2018-06-01 浪潮(北京)电子信息产业有限公司 A kind of one-way safety isolated data transmission method and system
CN106170011A (en) * 2016-06-16 2016-11-30 广州海格通信集团股份有限公司 The system and method that multi-mode E1 interface business processes
CN106170011B (en) * 2016-06-16 2019-07-05 广州海格通信集团股份有限公司 The system and method for multi-mode E1 interface business processing

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