CN101350636A - Method and system for link redundant backup base on photoelectric multiplexing port - Google Patents

Method and system for link redundant backup base on photoelectric multiplexing port Download PDF

Info

Publication number
CN101350636A
CN101350636A CNA2008101196165A CN200810119616A CN101350636A CN 101350636 A CN101350636 A CN 101350636A CN A2008101196165 A CNA2008101196165 A CN A2008101196165A CN 200810119616 A CN200810119616 A CN 200810119616A CN 101350636 A CN101350636 A CN 101350636A
Authority
CN
China
Prior art keywords
link
mode
photoelectric multiplexing
equipment
port
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
CNA2008101196165A
Other languages
Chinese (zh)
Other versions
CN101350636B (en
Inventor
鲜明双
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 Star Net Ruijie Networks Co Ltd
Original Assignee
Beijing Star Net Ruijie Networks 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 Star Net Ruijie Networks Co Ltd filed Critical Beijing Star Net Ruijie Networks Co Ltd
Priority to CN 200810119616 priority Critical patent/CN101350636B/en
Publication of CN101350636A publication Critical patent/CN101350636A/en
Application granted granted Critical
Publication of CN101350636B publication Critical patent/CN101350636B/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Optical Communication System (AREA)

Abstract

The present invention provides a redundancy backup method of link based on a photovoltaic multiplexing port, and a system thereof. The method comprises the following steps: using the cable and the optical fiber of the photovoltaic multiplexing port of the body equipment as a main link and a backup link to connect the correspondent equipment; setting the working mode of the photovoltaic multiplexing port of the body equipment; selecting the links of the same working mode to establish the communication between the body equipment and the correspondent equipment; detecting whether the current communication link is normal; maintaining the connection of the current link if the detection results are normal; and switching the working mode of the body equipment if the detection results are abnormal, and then selecting another link to establish the communication between the body equipment and the correspondent equipment. The method adopts the photovoltaic multiplexing port to realize the redundancy backup of the link, and requires no additional port source. Compared with other dual-uplink redundant backup proposal of the link, the method provides a simpler configuration proposal and faster topological astringency, rapidly transfers the flow onto backup link within 50ms when the link has a failure, and greatly improves the real-time backup capability in the business.

Description

A kind of link redundancy backup method and system based on photoelectric multiplexing port
Technical field
The present invention is about communication technical field, especially in regard to the fault recovery field of communication link, and specifically a kind of link redundancy backup method and system based on photoelectric multiplexing port.
Background technology
Along with the expansion rapidly of network size and application, network becomes part indispensable in the social life day by day, enterprise with individual communication with exchange the use that all be unable to do without network.Along with enterprise to the dependent increase of network, network must be safe and reliable, in case the network service is unavailable, may have a strong impact on the productivity and the profit of enterprise.Realize higher availability, avoid occurring owing to Single Point of Faliure causes network unavailable.Between two communication nodes of the overall situation, redundant link should be arranged, and carry out the automatic management of topology.
Fig. 1 is the scheme of a kind of general up redundancy backup of realization dual link of industry.Be that example describes its principle in detail below with the switch: switch A and B are linked to switch C and D by two links on respectively, wherein a link is a primary link, be in active state and carry out normal exchanges data, an other link is a backup link, its obstruction can not need be carried out exchanges data, to avoid the generation of data loopback.When primary link breaks down (generally including: the connecting line fault of primary link, the equipment of primary link opposite end or port failure) and disconnects, need the obstruction of cancellation backup link automatically, make its normal exchange.So just the redundancy backup of link can have been realized.For example in Fig. 1, the link that switch A is connected with C under the normal condition is primary link and carries out normal exchanges data that the link that switch A is connected with D is a backup link, needs to block.When the link of switch A and C disconnected, switch opens A automatically and the D link exchanges normally, can realize link redundancy backup like this.
IEEE 802.1D standard has been introduced a kind of technology that is used for the control area net logical topology, be called Spanning-Tree Protocol (Spanning Tree Protocol, be called for short STP), this technology is exactly to disconnect backup link when realizing link redundancy, opens the function of backup link when primary link breaks down automatically.But the normal convergence time of this agreement is 30 seconds, that is to say link from breaking down, and to recovering once more, needs 30 seconds time, and this can not satisfy the requirement that recovers fault in 50 milliseconds that present operator proposes far away.Can find by top link simultaneously, realize that link redundancy backup need use two ports at switch A, above the B, this has also increased the weight of the cost that the client realizes redundancy backup.And, when handoff links, also need to change port, therefore also exist needs to relearn MAC (Media Access Control: the medium access control) problem of address.
MAC Address is the physical address of network interface card, is used for each node of LAN is discerned.The physical address of network interface card normally by the burned network interface card of network interface card manufacturer, has global uniqueness.In Ethernet, an Ethernet message has the host MAC address (source MAC) that sends this message, also have the host MAC address (purpose MAC) that receives this message, switch is checked the source MAC of message by study, and this address and the port association that receives this message get up formed a mac address table, the target MAC (Media Access Control) address that receives a message when next time is during for the address of study, and switch just directly is forwarded to message on the port of this MAC Address association.Be that the MAC table has determined the message forwarding decision-making to a great extent.When adopting the dual link redundancy backup, when carrying out link switchover, because variation has taken place the port that uses, original mac address table is the correct guidance message forwarding again, so need relearn mac address table when enabling backup link.
Application number is 200610000565.5, and publication number is CN 101001165A, and the prior art that denomination of invention is applied for this case for the Chinese invention patent of " network failure recovery method with redundancy port " is herein incorporated.
Summary of the invention
The purpose of this invention is to provide a kind of link redundancy backup method and system based on photoelectric multiplexing port, the cable of this system's employing photoelectric multiplexing port and optical fiber are as primary link and backup link, can realize link failure recovery fast, long, the waste port of failure recovery time and need relearn defective such as MAC Address when having solved prior art and adopting two up links and STP agreement to realize link redundancy backup.
For realizing above goal of the invention, one embodiment of the invention provides a kind of link redundancy backup method based on photoelectric multiplexing port, and described method comprises: with the cable of the photoelectric multiplexing port of local terminal equipment and optical fiber as primary link and backup link peer end of the connection equipment; The mode of operation of the photoelectric multiplexing port of local terminal equipment is set, selects to have the link establishment local terminal equipment of identical mode of operation and communicating by letter of opposite equip.; Whether normal, if connection normal then that keep current link if detecting current communication link; If undesired, then switch the mode of operation of described local terminal equipment, and select communicating by letter of another link establishment local terminal equipment and opposite equip..
For realizing above goal of the invention, another embodiment of the present invention provides a kind of link redundancy backup system based on photoelectric multiplexing port, described system comprises photoelectric multiplexing equipment, adopts the cable of photoelectric multiplexing port to be connected with backup link as primary link with optical fiber between the described photoelectric multiplexing equipment; Described photoelectric multiplexing equipment comprises: mode of operation is provided with the unit, and the mode of operation of the photoelectric multiplexing port of described photoelectric multiplexing equipment is set, and makes the photoelectric multiplexing equipment that is connected have identical mode of operation in altogether with the period; The communication link negotiation element detects the mode of operation of the photoelectric multiplexing equipment be connected, when detecting identical mode of operation, selects the mode of operation link corresponding identical with this to set up communication between the photoelectric multiplexing equipment; The link detecting switch unit detects the whether proper communication of current link, if connection normal then that keep current link; If undesired, then select the communication between another link establishment photoelectric multiplexing equipment.
For realizing above goal of the invention, further embodiment of this invention provides a kind of link redundancy backup system based on photoelectric multiplexing port, and described system comprises photoelectric multiplexing equipment; Described photoelectric multiplexing equipment is connected the cable of photoelectric multiplexing port and optical fiber respectively as primary link and backup link the electricity mouthful and the light mouth of different opposite equip.s; Described photoelectric multiplexing equipment comprises: mode of operation is provided with the unit, and the mode of operation of the photoelectric multiplexing port of described photoelectric multiplexing equipment is set; The communication link negotiation element, detect with described mode of operation link corresponding whether available, if available then communicating by letter by this link establishment photoelectric multiplexing equipment and opposite equip.; If unavailable, then change described mode of operation and detection again; The link detecting switch unit, whether normal, if connection normal then that keep current link if detecting current communication link; If undesired, then select the communication between described photoelectric multiplexing equipment of another link establishment and the opposite equip..
The present invention uses the existing link redundancy backup of photoelectric multiplexing cause for gossip, do not need simultaneously extra port resource, relative other pairs up link redundancy backup scheme, the invention provides more succinct allocation plan, topological convergence faster, can reach and flow is switched on the backup link fast in the 50ms, improve the professional ability of backing up in realtime greatly.
Description of drawings
Fig. 1 is the system diagram of a kind of general up redundancy backup of realization dual link in the prior art;
Fig. 2 is a kind of network topological diagram of the embodiment of the invention 1;
Fig. 3 is the functional block diagram of the embodiment of the invention 1 photoelectric multiplexing equipment 30;
Fig. 4 is the embodiment of the invention 1 a photoelectric multiplexing port mode of operation schematic diagram;
Fig. 5 carries out the flow chart of link redundancy backup for the embodiment of the invention 1;
Fig. 6 is the annexation schematic diagram of the embodiment of the invention 2;
Fig. 7 is the functional block diagram of the photoelectric multiplexing equipment 70 of the embodiment of the invention 2;
Fig. 8 is the graphical examples of 2 two periodic functions of the embodiment of the invention;
Fig. 9 is that 2 two photoelectric multiplexing ports of the embodiment of the invention are carried out functional digraph in same starting point;
Figure when Figure 10 differs 3T for 2 two photoelectric multiplexing ports execution of embodiment of the invention function starting point;
Figure 11 carries out functional digraph for the embodiment of the invention 2 two ports when power mode breaks down;
Figure 12 carries out the flow chart of link redundancy backup for the embodiment of the invention 2.
Embodiment
For making the purpose, technical solutions and advantages of the present invention clearer,, the present invention is described in further details below in conjunction with execution mode and accompanying drawing.At this, exemplary embodiment of the present invention and explanation thereof are used to explain the present invention, but not as a limitation of the invention.
Embodiment 1:
Fig. 2 is a kind of network topological diagram of present embodiment.Present embodiment is that example describes with the switch, and the communication equipment in the real network generally can use technical scheme of the present invention to carry out link backup when carrying out transfer of data.The switch of present embodiment possesses photoelectric multiplexing port, by with the cable of photoelectric multiplexing port and optical fiber respectively as the electricity of primary link and backup link peer end of the connection equipment mouthful and light mouth, with the redundancy backup of realization link.Photoelectric multiplexing port both can connect optical fiber also can stube cable, can also connect optical fiber and cable simultaneously, but can only be in a kind of mode of operation at one time.The user can select to make it be operated in optical mode or power mode by configuration order.Port is communicated by letter with the opposite end by optical fiber during the selective light pattern, and port is communicated by letter with the opposite end by cable when selecting power mode.
Shown in 2 figure, the switch A of present embodiment is connected switch C and D with photoelectric multiplexing port respectively with B, and A and B provide the photoelectric multiplexing mouth, and C then provides electricity mouth and the light mouth that separates with D.In one embodiment, A adopts the photoelectric multiplexing mouth to connect the electricity mouth of C and the light mouth of D; B adopts the photoelectric multiplexing mouth to connect the light mouth of C and the electricity mouth of D.Under the normal condition, enable electricity mouthful (light mouth) as primary link, when electricity mouthful (a light mouth) broke down disconnection, the mode of operation with port switched to light mouth (electric mouthful) automatically, and switch A and B only need a photoelectric multiplexing port can realize two up redundant links like this.
Fig. 3 is the functional block diagram of present embodiment photoelectric multiplexing equipment 30 (as the switch A among Fig. 2, B).As shown in the figure, for the function of the link redundancy backup of realizing photoelectric multiplexing port, this photoelectric multiplexing equipment comprises: mode of operation is provided with unit 301, and the mode of operation of the photoelectric multiplexing port of described photoelectric multiplexing equipment is set; Communication link negotiation element 302, detect with described mode of operation link corresponding whether available, if available then communicating by letter by this link establishment photoelectric multiplexing equipment and opposite equip.; If unavailable, then change described mode of operation and detection again; Link detecting switch unit 303, whether normal, if connection normal then that keep current link if detecting current communication link; If undesired, then select the communication between described photoelectric multiplexing equipment of another link establishment and the opposite equip..
Fig. 4 is a present embodiment photoelectric multiplexing port mode of operation schematic diagram, and its empty lattice represent that electrical transmission, grey lattice represent optical transmission.In a better embodiment, when system powers on, mode of operation is provided with unit 301 mode of operations and is set to conversion (as shown in Figure 4) back and forth between optical transmission mode and electrical transmission pattern, this conversion can be set the cycle of a conversion, the cycle that also can not have regular length, but same mode of operation is wanted retention time T at least, and this time T is hardware check communication normal needed time whether.
Suppose that the opposite equip. (as switch C, the D among Fig. 2) that is connected with photoelectric multiplexing equipment 30 has sequencing on starting, and it is ready just to detect cable link (as the switch C among Fig. 2) when mode of operation becomes the electrical transmission pattern, then adopts cable link to set up communication as primary link.Because mode of operation is set to the mode of cycle alternation, no matter is that cable or optical fiber are ready, can be checked through connection and selects a kind of the connection.When the photoelectric multiplexing port of switch A adopts cable link to be connected with switch C to break down, photoelectric multiplexing port is an optical transmission mode with working mode change, owing to have optical fiber link between switch A and the D, can in time T, detect, and this optical fiber link is transmitted as backup link.
Also have a kind of special situation to be exactly, if the optical fiber link between switch A and the D can not be used, so the mode of operation of present embodiment be provided with the unit will be once more transformation working pattern be whether the electrical transmission pattern available with the detection streamer link, mode of operation was provided with unit 301 and still can adopts between optical transmission mode and electrical transmission pattern back and forth the mode of conversion to carry out the detection of link this moment.
Therefore, mode of operation in the present embodiment is provided with the unit mode of operation and is set between optical transmission mode and electrical transmission pattern conversion back and forth and not only can determines the link of a transmission at the beginning, and also can transfer to fast on the available link after breaking down in transmission course.The setting that this mode of operation is changed back and forth only is a kind of better embodiment of present embodiment, can preestablish a kind of mode of operation in the reality and wait until with setting up again after this mode of operation link corresponding is ready and communicate by letter, then being directly switch into another link after breaking down gets final product, can wait for this link-recovery if another link is also unavailable, and can not switch to original out of order link once more, perhaps stop this time connecting and begin new connection and set up process.
Fig. 5 carries out the flow chart of link redundancy backup for present embodiment.As shown in the figure:
Step S501 is connected the cable of the photoelectric multiplexing port of local terminal equipment and optical fiber respectively as primary link and backup link the electricity mouthful and the light mouth of different opposite equip.s.
Step S502 is provided with the mode of operation of the photoelectric multiplexing port of local terminal equipment, and present embodiment can mode of operation be set to change back and forth between electrical transmission and optical transmission at initial phase, to determine a communication link as early as possible.
Whether step S503 detects with the mode of operation link corresponding that is provided with available.Because therefore the situation that uncontrollable opposite equip. starts needs to detect back and forth the link whether coupling is arranged and exists.If have then enter step S504, if not then continue step S502.
Step S504 adopts with the foundation of mode of operation link corresponding and communicates by letter.
Step S505, whether detect current communication link normal, if connection normal then that keep current link, if undesired then enter step S506.
Step S506 changes mode of operation, switches to another backup link and sets up communication.
Embodiment 2:
Fig. 6 is the annexation schematic diagram of present embodiment.As shown in the figure, present embodiment is considered the mode of another kind of link redundancy backup.Port F and port G are photoelectric multiplexing port, adopt the cable of photoelectric multiplexing port to be connected with backup link as primary link with optical fiber between photoelectric multiplexing equipment.
Fig. 7 is the functional block diagram of the photoelectric multiplexing equipment 70 of present embodiment.As shown in Figure 7, photoelectric multiplexing equipment 70 comprises: mode of operation is provided with unit 701, and the mode of operation of the photoelectric multiplexing port of described photoelectric multiplexing equipment is set, and makes the photoelectric multiplexing equipment that is connected have identical mode of operation in altogether with the period; Communication link negotiation element 702 detects the mode of operation of the photoelectric multiplexing equipment be connected, when detecting identical mode of operation, selects the mode of operation link corresponding identical with this to set up communication between the photoelectric multiplexing equipment; Link detecting switch unit 703 detects the whether proper communication of current link, if connection normal then that keep current link; If undesired, then select the communication between another link establishment photoelectric multiplexing equipment.
Owing to be that two photoelectric multiplexing interfaces connect in the present embodiment,, two equipment just can establish a communications link when adopting identical mode of operation.Therefore, the mode of operation of present embodiment is provided with unit 701 and need mode of operation be set to: make the photoelectric multiplexing equipment that is connected have identical mode of operation in altogether with the period.Can determine that at the very start a link sets up communication like this.And, when finding that a link disconnects, can automatic transformation working pattern and switch to another reserve link.Below provide a concrete example and describe the concrete mode of operation set-up mode that present embodiment adopts in detail, and how to realize what link redundancy switched.
Present embodiment adopts following two periodic function f 1(x), f 2(x) mode of operation of photoelectric multiplexing port is set, wherein:
f 1 ( x ) = 1 ( x ∈ [ kT , ( k + 3 ) T ) ∪ [ ( k + 4 ) T , ( k + 5 ) T ) ) f 1 ( x ) = 0 ( x ∈ [ ( k + 3 ) T , ( k + 4 ) T ) ∪ [ ( k + 5 ) T , ( k + 8 ) T ) )
f 2 ( x ) = 1 ( x ∈ [ ( k + 1 ) T , ( k + 2 ) T ) ∪ [ ( k + 5 ) T , ( k + 8 ) T ) ) f 2 ( x ) = 0 ( x ∈ [ kT , ( k + 1 ) T ) ∪ [ ( k + 2 ) T , ( k + 5 ) T ) )
Fig. 8 is the graphical examples of these two periodic functions.Blank lattice representative function value gets 1, the electrical transmission pattern; Grey lattice representative function value gets 0, optical transmission mode.K is for can be by 8 natural numbers of dividing exactly, and period of a function is 8T, and wherein T is hardware check communication normal needed time whether.
The operation principle of present embodiment is: when system initialization, the mode of operation of port F, G is provided with the employing function f 1(x); When port becomes when disconnecting from power mode, system can find to connect and disconnect and adopt function f 2(x) mode of operation to port is provided with; When port becomes when disconnecting from optical mode, system can find to connect and disconnect and adopt function f 1(x) mode of operation to port is provided with.Arrive communication just often when systems inspection, stop the execution of function, the mode of operation before promptly keeping.The proof set-up mode that adopts above mode of operation no matter can both proper communication under which kind of situation below:
(1) during system's initialization just, the function that two ports are selected all is f 1(x).The starting point of carrying out this function when two ports is (i.e. two system's power-on time differences) not simultaneously, and no matter how translation (the starting point difference that expression is carried out) of two functions can both make these two ports be in same mode of operation in T time period at least.
For example, Fig. 9 is that these two ports of expression are to begin to carry out function in same starting point, so can be at [kT, (k+3) T) this 3T makes photoelectric multiplexing port be in identical power mode in the time period, if the cable of these two ports connects normal, pass through this 3T time so, necessarily can be checked through and set up communication by cable.If the optical fiber of these two ports connects normal, [(k+3) T, k+4) T) be in identical optical mode in this time period, also necessarily can be checked through and set up communication by optical fiber.
Again for example, Figure 10 shifts to an earlier date the schematic diagram of 3T time execution than port G for port F, can find after port G carries out T time, port F and G are in blank lattice, after port G carries out 3T time, port F and G are in the grey lattice, and so no matter port F is to adopt what mode to be connected with G, also can be checked through identical mode of operation and set up communication.Other situations can be done similar analysis, because these two functions all are periodic functions, as long as exhaustive in one-period.
(2) if port becomes fault by optical mode, at this moment two ports are all carried out function f 1(x), with reference to figure 9 can find [0, be set to be operated in power mode in T), if system has cable to connect, in T time, necessarily can be checked through identical mode of operation so.
(3) if port is to become fault by power mode, at this moment two ports are all carried out function f 2(x), disposition as shown in figure 11: can find system [0, be set to be operated in optical mode in T), if system has optical fiber to connect, in T time, necessarily can be checked through so.
Need to prove that the switching controls when present embodiment adopts above two periodic functions to the setting of mode of operation and fault recovery only is used to illustrate the present invention, and be not used in the present invention is limited.Can also adopt multiple mode to carry out this setting in the reality, the condition that needs to satisfy is: make the photoelectric multiplexing equipment that is connected have identical mode of operation in altogether with the period, and the link switchover time is shortened.
Adopt technical scheme of the present invention, can recover fault in the time T of link check, the link failure recovery time is fast.Because whether normal T represent the hardware check communication time, this time is generally all very short, can be lower than 50ms, can also adjust in actual use, so the present invention provides better support to the real-time recovery of business.And, do not need to learn once more forwarding-table items such as mac address table because the present invention has reduced the port of realizing redundancy backup yet.This photoelectric multiplexing automatic switching method not only can be realized by software, can also realize this by hardware, so that support photoelectric multiplexing to automatically switch.
Figure 12 carries out the flow chart of link redundancy backup for present embodiment adopts photoelectric multiplexing port.As shown in the figure:
Step S1201 is connected as primary link the cable and the optical fiber of the photoelectric multiplexing port of local terminal equipment the photoelectric multiplexing port of same opposite equip. with backup link.
Step S1202 is provided with the mode of operation of the photoelectric multiplexing port of local terminal equipment and opposite equip., makes local terminal equipment have identical mode of operation with opposite equip. in altogether with the period.This mode of operation can adopt multiple mode to be provided with, as long as can satisfy above requirement.
Step S1203, the mode of operation of detection local terminal equipment and opposite equip..
Does step S1204 judge whether the mode of operation of local terminal equipment and opposite equip. identical?
If step S1205 identical, then adopt the mode of operation link corresponding identical with this to set up and communicates by letter, if difference then continue detection.
Step S1206, whether detect current communication link normal? if connection normal then that keep current link.
If step S1207 is undesired then switch to another link establishment communication.
The present invention uses the existing link redundancy backup of photoelectric multiplexing cause for gossip, do not need simultaneously extra port resource, relative other pairs up link redundancy backup scheme, the invention provides more succinct allocation plan, topological convergence faster, can reach and flow is switched on the backup link fast in the 50ms, improve the professional ability of backing up in realtime greatly.
Above-described embodiment; purpose of the present invention, technical scheme and beneficial effect are further described; institute is understood that; the above only is the specific embodiment of the present invention; and be not intended to limit the scope of the invention; within the spirit and principles in the present invention all, any modification of being made, be equal to replacement, improvement etc., all should be included within protection scope of the present invention.

Claims (10)

1, a kind of link redundancy backup method based on photoelectric multiplexing port is characterized in that, described method comprises:
With the cable of the photoelectric multiplexing port of local terminal equipment and optical fiber as primary link and backup link peer end of the connection equipment;
The mode of operation of the photoelectric multiplexing port of local terminal equipment is set, selects to have the link establishment local terminal equipment of identical mode of operation and communicating by letter of opposite equip.;
Whether normal, if connection normal then that keep current link if detecting current communication link; If undesired, then switch the mode of operation of described local terminal equipment, and select communicating by letter of another link establishment local terminal equipment and opposite equip..
2, method according to claim 1 is characterized in that, the cable of the photoelectric multiplexing port of local terminal equipment and optical fiber as primary link and backup link peer end of the connection equipment, being comprised:
The photoelectric multiplexing port that the cable of the photoelectric multiplexing port of local terminal equipment and optical fiber is connected same opposite equip. as primary link with backup link.
3, method according to claim 2 is characterized in that, selects to have the link establishment local terminal equipment of identical mode of operation and communicating by letter of opposite equip., comprising:
Detect the mode of operation of the photoelectric multiplexing port of opposite equip., when the mode of operation that detects opposite equip. and local terminal equipment is identical, select communicating by letter of this identical mode of operation pairing link establishment local terminal equipment and opposite equip..
4, method according to claim 3 is characterized in that, described method also comprises:
The mode of operation of opposite equip. photoelectric multiplexing port is set, makes local terminal equipment have identical mode of operation with opposite equip. in altogether with the period, the described common period is carried out the required time of hardware detection more than or equal to described local terminal equipment and opposite equip..
5, method according to claim 4 is characterized in that, the mode of operation of local terminal equipment photoelectric multiplexing port is set, and the mode of operation that the opposite equip. photoelectric multiplexing port is set, and comprising:
The photoelectric multiplexing port of local terminal equipment and the photoelectric multiplexing port of opposite equip. are set to carry out periodicity alternately between optical transmission mode and electrical transmission pattern.
6, method according to claim 1 is characterized in that, the cable of the photoelectric multiplexing port of local terminal equipment and optical fiber as primary link and backup link peer end of the connection equipment, are also comprised:
The electricity mouthful and the light mouth that the cable of the photoelectric multiplexing port of local terminal equipment and optical fiber are connected different opposite equip.s as primary link and backup link respectively.
7, method according to claim 6 is characterized in that, selects to have the link establishment local terminal equipment of identical mode of operation and communicating by letter of opposite equip., comprising:
Whether availablely detect with the mode of operation link corresponding of local terminal equipment,,, then switch described mode of operation and detect again if unavailable if available then by the communicating by letter of this link establishment local terminal equipment and opposite equip..
8, a kind of link redundancy backup system based on photoelectric multiplexing port is characterized in that described system comprises photoelectric multiplexing equipment, adopts the cable of photoelectric multiplexing port to be connected with backup link as primary link with optical fiber between the described photoelectric multiplexing equipment; Described photoelectric multiplexing equipment comprises:
Mode of operation is provided with the unit, and the mode of operation of the photoelectric multiplexing port of described photoelectric multiplexing equipment is set, and makes the photoelectric multiplexing equipment that is connected have identical mode of operation in altogether with the period;
The communication link negotiation element detects the mode of operation of the photoelectric multiplexing equipment be connected, when detecting identical mode of operation, selects the mode of operation link corresponding identical with this to set up communication between the photoelectric multiplexing equipment;
The link detecting switch unit detects the whether proper communication of current link, if connection normal then that keep current link; If undesired, then select the communication between another link establishment photoelectric multiplexing equipment.
9, system according to claim 8 is characterized in that, described mode of operation is provided with the unit and comprises:
Circulation pattern is provided with the unit, and the mode of operation of the photoelectric multiplexing port of described photoelectric multiplexing equipment is set to carry out periodicity alternately between optical transmission mode and electrical transmission pattern.
10, a kind of link redundancy backup system based on photoelectric multiplexing port is characterized in that described system comprises photoelectric multiplexing equipment; Described photoelectric multiplexing equipment is connected the cable of photoelectric multiplexing port and optical fiber respectively as primary link and backup link the electricity mouthful and the light mouth of different opposite equip.s; Described photoelectric multiplexing equipment comprises:
Mode of operation is provided with the unit, and the mode of operation of the photoelectric multiplexing port of described photoelectric multiplexing equipment is set;
The communication link negotiation element, detect with described mode of operation link corresponding whether available, if available then communicating by letter by this link establishment photoelectric multiplexing equipment and opposite equip.; If unavailable, then change described mode of operation and detection again;
The link detecting switch unit, whether normal, if connection normal then that keep current link if detecting current communication link; If undesired, then select the communication between described photoelectric multiplexing equipment of another link establishment and the opposite equip..
CN 200810119616 2008-09-04 2008-09-04 Method and system for link redundant backup base on photoelectric multiplexing port Expired - Fee Related CN101350636B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 200810119616 CN101350636B (en) 2008-09-04 2008-09-04 Method and system for link redundant backup base on photoelectric multiplexing port

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 200810119616 CN101350636B (en) 2008-09-04 2008-09-04 Method and system for link redundant backup base on photoelectric multiplexing port

Publications (2)

Publication Number Publication Date
CN101350636A true CN101350636A (en) 2009-01-21
CN101350636B CN101350636B (en) 2012-12-12

Family

ID=40269259

Family Applications (1)

Application Number Title Priority Date Filing Date
CN 200810119616 Expired - Fee Related CN101350636B (en) 2008-09-04 2008-09-04 Method and system for link redundant backup base on photoelectric multiplexing port

Country Status (1)

Country Link
CN (1) CN101350636B (en)

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101867409A (en) * 2010-06-04 2010-10-20 西安电子科技大学 Link switching control device and switching method in hybrid atmospheric laser communication system
CN102104397A (en) * 2009-12-22 2011-06-22 华为技术有限公司 Link protection method and device
CN106101032A (en) * 2016-08-11 2016-11-09 迈普通信技术股份有限公司 A kind of method and device of COMBO interface adaptive Ethernet interface
CN106487679A (en) * 2015-09-02 2017-03-08 北京国基科技股份有限公司 The active-standby switch system of Ethernet switch and changing method
CN108337113A (en) * 2017-01-17 2018-07-27 阿自倍尔株式会社 Transmission lines switching device and method
CN109889378A (en) * 2019-01-30 2019-06-14 郑州云海信息技术有限公司 A kind of interface equipment and communication means promoting network communication reliability

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP3439533B2 (en) * 1994-06-24 2003-08-25 富士通株式会社 SDH2-fiber ring optical multiplexer having selective protection function
CN100382521C (en) * 2003-03-27 2008-04-16 华为技术有限公司 Method of supporting multi kilomega ethernet terminal photoelectric multiplex
CN100490450C (en) * 2004-07-23 2009-05-20 杭州华三通信技术有限公司 Implementation system for Ethernet photoelectric interface duplex
CN100531025C (en) * 2005-12-15 2009-08-19 杭州华三通信技术有限公司 Optronic multiplex interface state indicating device and method and its inferface

Cited By (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102104397A (en) * 2009-12-22 2011-06-22 华为技术有限公司 Link protection method and device
CN102104397B (en) * 2009-12-22 2013-09-11 华为技术有限公司 Link protection method and device
CN101867409A (en) * 2010-06-04 2010-10-20 西安电子科技大学 Link switching control device and switching method in hybrid atmospheric laser communication system
CN101867409B (en) * 2010-06-04 2013-08-14 西安电子科技大学 Link switching control device and switching method in hybrid atmospheric laser communication system
CN106487679A (en) * 2015-09-02 2017-03-08 北京国基科技股份有限公司 The active-standby switch system of Ethernet switch and changing method
CN106487679B (en) * 2015-09-02 2019-11-08 北京国基科技股份有限公司 The active-standby switch system and switching method of Ethernet switch
CN106101032A (en) * 2016-08-11 2016-11-09 迈普通信技术股份有限公司 A kind of method and device of COMBO interface adaptive Ethernet interface
CN106101032B (en) * 2016-08-11 2020-02-04 迈普通信技术股份有限公司 Method and device for COMBO interface self-adaptive Ethernet interface
CN108337113A (en) * 2017-01-17 2018-07-27 阿自倍尔株式会社 Transmission lines switching device and method
CN109889378A (en) * 2019-01-30 2019-06-14 郑州云海信息技术有限公司 A kind of interface equipment and communication means promoting network communication reliability

Also Published As

Publication number Publication date
CN101350636B (en) 2012-12-12

Similar Documents

Publication Publication Date Title
US7372804B2 (en) Multiplex communication system and method
CN101652963B (en) Method for reconfiguring a communications network
EP1491000B1 (en) Network management system
CN1866806B (en) Method for realizing shared grid network recovery
CN101160836B (en) Redundancy protection method for bridge mode resilient packet ring
JP3662901B2 (en) Fault repair method by quasi-central processing of optical layer
CN102315975B (en) Fault processing method based on intelligent resilient framework (IRF) system and equipment thereof
CN101350636B (en) Method and system for link redundant backup base on photoelectric multiplexing port
CN101697626A (en) Communication fault detection method and system based on two-way forwarding detection protocol
CN101741673B (en) Address refreshing method of Ethernet ring
CN103607293B (en) A kind of flow rate protecting method and equipment
CN101841450B (en) Method and system for realizing stable communication by forming multiple ring topologies into intersecting ring
CN101001165A (en) Network failure recovery method with redundancy port
CN101277269A (en) Terminal with dependable communication, terminal switch method and system as well as method for implementing the system
CN100493017C (en) A method of automatic switching for primary standby equipment
JP5491623B2 (en) Address refresh method and system
CN101155179B (en) Method for removing ring circuit during multi-protocol label switching
CN102158383B (en) Data transmission method, device and system for E1 bidirectional ring network
US9912527B2 (en) Communication device, communication system, method for determining path, and program
CN102857316A (en) Method and system for realizing source looped network protection
CN101394261B (en) State transition method and network node device
CN101641915B (en) Method for reconfiguring a communication network
CN101136838A (en) Bridge mode elastic grouping ring transannular bridge equipment redundancy protecting method
CN101997748A (en) Method and system for blocking protocol message on sub-ring control channel without virtual channel
CN109194592B (en) Method and system for solving island problem in multi-link network

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

Granted publication date: 20121212