CN106534360A - Content centric network routing method based on software definition - Google Patents

Content centric network routing method based on software definition Download PDF

Info

Publication number
CN106534360A
CN106534360A CN201611149215.5A CN201611149215A CN106534360A CN 106534360 A CN106534360 A CN 106534360A CN 201611149215 A CN201611149215 A CN 201611149215A CN 106534360 A CN106534360 A CN 106534360A
Authority
CN
China
Prior art keywords
port
forwarding
probability
content
network
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.)
Pending
Application number
CN201611149215.5A
Other languages
Chinese (zh)
Inventor
蔡岳平
刘军
樊欣唯
罗森
贾云健
马慧
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.)
Chongqing University
Original Assignee
Chongqing University
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 Chongqing University filed Critical Chongqing University
Priority to CN201611149215.5A priority Critical patent/CN106534360A/en
Publication of CN106534360A publication Critical patent/CN106534360A/en
Pending legal-status Critical Current

Links

Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/50Network services
    • H04L67/56Provisioning of proxy services
    • H04L67/568Storing data temporarily at an intermediate stage, e.g. caching
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/50Network services
    • H04L67/60Scheduling or organising the servicing of application requests, e.g. requests for application data transmissions using the analysis and optimisation of the required network resources
    • H04L67/63Routing a service request depending on the request content or context

Landscapes

  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Data Exchanges In Wide-Area Networks (AREA)

Abstract

The invention discloses a content centric network routing method based on software definition. The method is as follows: network state information is dynamically collected through a controller; the forwarding probabilities of various matched ports in a content router are dynamically updated by utilization of the collected state information; then, the controller selects a port having the maximum forwarding probability from the matched ports as a forwarding port of an interest packet, and sends an instruction to the content router through a control channel; and, after a subsequent interest packet arrives at the content router and is matched with the forwarding port, the interest packet can be forwarded to the port having the maximum forwarding probability and appointed by the controller. By means of the method, the average delay of content requests can be reduced; the number of interest packets transmitted in a network can be reduced; and the network bandwidth overhead also can be reduced.

Description

A kind of content center network method for routing based on software definition
Technical field
The present invention relates to content center network route field, particularly a kind of content center network road based on software definition By method.
Background technology
CCN (Content Centric Network) is by the direct name to content resource, and is based on content name Route carrying out the distribution and acquisition of content, its network node is except the route that has with legacy network nodes and forwarding Outside ability, the function of storage content resource and service content request is also equipped with, joint behavior is higher.
CCN has two kinds of basic bag forms, i.e. interest bag (Interest Packet) and packet (Data Packet). Interest bag is the content requests bag that requestor sends;Packet is that content service node (content publisher or network-caching) will Content bag of the content transmission to requestor.Each routing node is required for safeguarding 3 category information tables, i.e. forwarding information table (Forwarding Information Base, FIB), interest table undetermined (Pending Interest Table, PIT) and interior Hold storage table (Content Store, CS).FIB saves content name prefix and reaches the next of the content of this prefix representative Jump port;PIT have recorded the input port of interest bag, and the information table provides return path for packet;CS cachings flow through the section The content resource of point simultaneously provides service for subsequent content request.Content publisher is in the way of flooding to network distributable content resource Log-on message, arrival port of the routing node according to content name prefix and log-on message in the log-on message that receives FIB is set up, routing node determines the forwarding port of interest bag by inquiring about FIB.
As initial FIB is set up by the way of flooding, and using link state data of the broadcast containing content name The mode of bag updates the entry in FIB, therefore for same supplier has mulitpath arrival, in being embodied in FIB is exactly The corresponding multiple forwarding ports of same content name prefix.In original CCN routing Designs, when routing node is searched in FIB It is when there is multiple forwarding ports with regard to certain content name prefix, it will forward interest bag to all of forwarding port, this During full pass-through mode can make network, flow increases and then easily causes the congestion of network, reduces network transmission efficiency.Other are commonly used Repeater-transmitter be formed with random forwarding mechanism and shortest path forwarding mechanism.The routing node of random forwarding mechanism can be in FIB correspondences In entry, random selection forwarding port carries out the forwarding of interest bag, although this method can effectively reduce the redundancy stream in network Amount, reduction network overhead, but cannot ensureing, user can stablize, rapidly resource be obtained from optimum path, service quality is very It is difficult to ensure card.In order to solve how to be route for the interest bag selection path in CCN, Chinese scholars have carried out numerous studies.
The CCN routing plans of content oriented title:Name state of data link route (Named-data Link State Routing, NSLR) state LSA (Link State Advertisement) to set up network topology by broadcasting link state With the accessibility of propagating contents name prefix.When link breaks down or during fault recovery, and local content supplier note When the content name prefix of volume changes, content router all can broadcast LSA in network.The LSA of NLSR broadcast includes two Kind, that is, adjoin LSA and prefix LSA.Adjacent LSA is used for stating all links being connected with certain content router that prefix LSA is used for Some content name prefix that statement is registered on certain content router.Each content router can periodically refresh it LSA to be broadcasted each content router maintains a LSD (Link State Database), stores receive all LSA.When multiple next-hop interfaces are embroidered with before a certain content name, for all next-hop interfaces of the content name prefix, First retain some interface, delete other total interfaces, then calculated using dijkstra's algorithm and certain is reached using this interface The cost of individual destination node.Process above is all repeated to all next-hop interfaces of the content name prefix, utilization is calculated Each interface reaches the cost of certain destination node.Afterwards, certain target is reached using each next-hop interface computed above All next-hop interfaces are ranked up by the cost of node.For each destination node repeats above procedure, until it reaches Content provider.The routing mechanism can effectively reduce redundant flow in network, but each content router is next to each Jumper connection mouth is required to calculate corresponding cost one by one, when next-hop port is more or during longer routed path, complexity is larger.
The CCN routing plans of caching towards in net:CATT (Cache Aware Target idenTification) is by one Individual or multiple CATT nodes CATN (Cache Aware Target Node) are deployed in the edge of Autonomous Domain, the quantity of CATN by The size of Autonomous Domain is determined.It is all with the position for knowing its local CATN per family in the Autonomous Domain, and by oneself Hold resource to be published on CATN.Any request is all forwarded on the local CATN in its Autonomous Domain first, receives request CATN whether there is corresponding contents resource in first looking for its local cache, if it does, responding rapidly to request;If do not deposited CATN is forwarded requests in adjacent CATN.CATT is employed will be slow in the initial content resource of content provider and net The all cached copies deposited are integrated in routing procedure, improve the availability of caching in net.The mechanism is also content simultaneously Caching adaptive looks for mechanism and the routing mechanism for closing on degree and content quality based on content there is provided a kind of.Should Routing mechanism is obtained in that the routing performance of a near optimal, but routing procedure is more complicated.
The CCN routing plans of service-oriented quality:SoCCeR(Services over Content-Centric Routing) routing mechanism is realized by a detecting layer is increased in the Internet of CCN.SoCCeR is based on ant group optimization Algorithm (Ant Conley Optimal, ACO).The process that ACO algorithm simulations mother ant is looked for food, is looked for food using each pathfinding of Formica fusca When the pheromone that stays the Formica fusca that the different directions towards same place of looking for food are looked for food is converged on paths, SoCCeR is sharp With this characteristic of ACO, content requests Route Selection in CCN networks is extended.One content name prefix is reflected by the FIB of CCN Several service available next-hop ports are mapped to, the select permeability of route is selected from these service available ports One optimal port completes current content requests.The factors such as load, path congestion, bandwidth, shake are considered during selection port. SoCCeR increased a pheromone table, and this table is associated with content name prefix, it is possible to provide the port of service, and each clothes The pheromone value of business port.Fib table chooses pheromone value highest port as unique routed port.SoCCeR periodically can be released Collect the status information of each serve port with putting detection bag.The algorithm can optimize the forwarding port for being routed to light load, make Service request selectively route, and the state change to network and service has compared with high-adaptability, but cycle release detection Bag increased the expense of network
Accordingly, it would be desirable to a kind of content center network method for routing based on software definition.
The content of the invention
An object of the present invention is to propose a kind of content center network method for routing based on software definition, is solved existing The content distribution efficiency that the full pass-through mode of content center network brings is low, and it is a series of that redundant data is more and network overhead is larger etc. Problem.The method passes through controller collection network state, and in the forwarding probability of each forwarding port of controller end calculating, and will be emerging Interest forwards a packet to the method for routing of the port of the forwarding probability for forwarding maximum probability.
The purpose of the present invention is achieved through the following technical solutions:
The content center network method for routing based on software definition that the present invention is provided, including controller, requestor and carry Donor;Comprise the following steps:
First, collection network status information:Controller by control channel dynamically collection network status information, and according to Network state information dynamicallys update the forwarding probability of the matching port of each content router using forwarding probability updating algorithm;
The network state information includes that packet reaches the propagation delay time of server, current routing node from present node Server node load in the load of next-hop and the path;
Secondly, update port forwarding probability:The forwarding probability updating algorithm, be input into the network state information and each The current forwarding probability of port, the forwarding probability of each port after being output as updating;
Finally, the existence according to interest bag in content router enter to be about to interest bag be forwarded to port forwarding probability Maximum port.
Further, during collection network status information, during if there is following two situations, network element can be led Trend controller reporting state:
(1) node or link failure:When node or link failure, the forwarding probability towards all of the port of the node will It is zeroed out, is set to unreachable, when link failure, the forwarding probability of the two ends port connected by the link will be zeroed out, and be set to It is unreachable;
(2) new content provider adds:When there is new content provider to add, can be in the content for connecting the supplier Increase a forwarding port in the forwarding information table of router and by current forwarding probability zero setting, wait updates next time.
Further, the step in the forwarding probability updating algorithmic procedure is specific as follows:
The state comprehensive parameters of each port are calculated according to below equation using method of weighting:
Wherein, α, beta, gamma andT (i), H (i), L are represented respectivelyR(i) and LSThe weight of (i);
T (i) represents the time delay from port i to content provider;
H (i) represents the path from port i to content provider;
LRI () represents the load of port i next-hop content routers;
LSI () represents the load of the content provider corresponding to the i of port;
State comprehensive parameters are normalized according to below equation and obtain increasing probability:
Wherein, ρ is the weight of network state;
Forwarding probability is updated according to below equation:
Pnew(i)=(1- ρ) * Pold(i)+ρ*ΔP(i);
Wherein, PnewI () represents the forwarding probability before port i renewals;PoldI () represents the forwarding probability after port i renewals.
Further, the renewal port forwarding probability is comprised the following steps that:
Calculate the state comprehensive parameters of each port first according to the network state collected using method of weighting,
Then the parameter is normalized and obtains increasing probability,
Forwarding after being updated using method of weighting finally according to normalized growth probability and current forwarding probability Probability;
After obtaining the forwarding probability of each port, controller would choose from forward maximum probability port under send instructions, The routing node of datum plane will perform corresponding forwarding mechanism according to instruction.
Further, the forwarding mechanism of the forwarding interest bag includes two kinds of situations:
One is when interest bag has occurrence in content router, then interest bag to be forwarded to port forwarding probability most Big port, the port are specified by controller;
If two when being that interest bag does not have occurrence in content router, interest bag will be forwarded to controller, A shortest path is selected to be forwarded by controller.
The second object of the present invention is achieved through the following technical solutions:
As a result of above-mentioned technical proposal, the present invention has the advantage that:
The content center network method for routing based on software definition that the present invention is provided, using controller dynamic collection network Status information, and using the forwarding probability of each matching port in the status information dynamic update content router collected.With Afterwards, controller selects the port of forwarding maximum probability from matching port as the forwarding port of interest bag, and by controlling letter Road sends instructions under content router.After follow-up interest bag reaches content router and matches forwarding port, can be toward control The port forwarding interest bag of the forwarding maximum probability that device is specified.This method can reduce the average delay of content requests, can drop The interest bag number transmitted in low network, can also reduce network bandwidth expense.
Other advantages of the present invention, target and feature will be illustrated to a certain extent in the following description, and And to a certain extent, based on being will be apparent to investigating hereafter to those skilled in the art, Huo Zheke To be instructed from the practice of the present invention.The present invention target and other advantages can be realized by description below and Obtain.
Description of the drawings
The description of the drawings of the present invention is as follows.
Fig. 1 is 14 node network topologies for carrying out being used when network overhead is emulated;
Fig. 2 is the contrast of the average request time delay of four kinds of mechanism when offered load changes;
When Fig. 3 is that average bag arrival rate changes, the contrast of the interest bag number circulated in the network of four kinds of mechanism;
When Fig. 4 is requestor's number change, the contrast of the transmission bandwidth expense of four kinds of mechanism;
Fig. 5 is in SD-STAR embodiments flowchart of the present invention.
Specific embodiment
The invention will be further described with reference to the accompanying drawings and examples.
Embodiment 1
As illustrated, the content center network method for routing based on software definition that the present embodiment is provided, including controller, Requestor and supplier, requestor are demand for services persons, and it expresses the content requirements of oneself by sending interest bag to network, and Supplier is ISP, and, by the content requests of returned data bag respond request person, controller is the manager of network for it, It plans the routed path of interest bag and interest bag by the status information of collection network;Comprise the following steps:
First, collection network status information:Controller by control channel dynamically collection network status information, and according to Network state information dynamicallys update the forwarding probability of the matching port of each content router using forwarding probability updating algorithm;
The network state information includes that packet reaches the propagation delay time of server, current routing node from present node Server node load in the load of next-hop and the path;
Secondly, update port forwarding probability:The forwarding probability updating algorithm, be input into the network state information and each The current forwarding probability of port, the forwarding probability of each port after being output as updating;In the mistake of collection network status information Cheng Zhong, during if there is following two situations, network element can be actively to controller reporting state:(1) node or link failure: When node or link failure, the forwarding probability towards all of the port of the node will be zeroed out, be set to it is unreachable, when link therefore During barrier, the forwarding probability of the two ends port connected by the link will be zeroed out, and be set to unreachable;(2) new content provider adds Enter:When there is new content provider to add, one can be increased in the forwarding information table of content router of the supplier is connected Individual forwarding port by current forwarding probability zero setting, wait updates next time.
Finally, the existence according to interest bag in content router enter to be about to interest bag be forwarded to port forwarding probability Maximum port.The forwarding mechanism of the forwarding interest bag includes two kinds of situations:One is deposited in content router when interest bag In occurrence, then interest bag is forwarded to into the port that port forwards maximum probability, the port is specified by controller;Two be as When fruit interest bag does not have occurrence in content router, then interest bag will be forwarded to controller, select one by controller Bar shortest path is forwarded.
Step in the forwarding probability updating algorithmic procedure is specific as follows:
The state comprehensive parameters of each port are calculated according to below equation using method of weighting:
Wherein, α, beta, gamma andT (i), H (i), L are represented respectivelyR(i) and LSThe weight of (i);
T (i) represents the time delay from port i to content provider;
H (i) represents the path from port i to content provider;
LRI () represents the load of port i next-hop content routers;
LSI () represents the load of the content provider corresponding to the i of port;
State comprehensive parameters are normalized according to below equation and obtain increasing probability:
Wherein, ρ is the weight of network state;
Forwarding probability is updated according to below equation:
Pnew(i)=(1- ρ) * Pold(i)+ρ*ΔP(i);
Wherein, PnewI () represents the forwarding probability before port i renewals;PoldI () represents the forwarding probability after port i renewals.
The renewal port forwarding probability is comprised the following steps that:
Calculate the state comprehensive parameters of each port first according to the network state collected using method of weighting,
Then the parameter is normalized and obtains increasing probability,
Forwarding after being updated using method of weighting finally according to normalized growth probability and current forwarding probability Probability;
After obtaining the forwarding probability of each port, controller would choose from forward maximum probability port under send instructions, The routing node of datum plane will perform corresponding forwarding mechanism according to instruction.
Embodiment 2
The renewal port forwarding probability that the present embodiment is provided, after the network state information in a cycle is collected to be finished, Controller will respectively forward the forwarding probability of port according to the updating network state collected.Without loss of generality, it is assumed that need to update Port i on certain router, lists the implication of the parameter for using in following table:
Parameter Implication
T(i) Time delay from port i to content provider
H(i) Path from port i to content provider
LR(i) The load of port i next-hop content routers
LS(i) The load of the content provider corresponding to the i of port
Pold(i) Forwarding probability before port i renewals
Pnew(i) Forwarding probability after port i renewals
For all matchings forwarding ports corresponding to certain content name prefix in certain content router, they turn Send out probability and be 1.Assume that P (i) represents the forwarding probability of port i, N is that certain content name prefix institute is right in the content router The matching forwarding port number answered, then have:
Controller calculates the state comprehensive parameters of each port according to the network state collected using method of weighting first:
Wherein α, β, γ andRepresent T (i) respectively, the weight of H (i), LR (i) and LS (i), α, beta, gamma andValue can be according to It is adjusted according to different network demands.Here four network state factors are only enumerated, thus the weight of four factors and be 1, I.e.
Then the parameter is normalized and obtains increasing probability:
Consider the mutability of network, we update the forwarding probability of port using the method for weighting, and ρ is the power of network state Weight, if ρ is closer to 0, then it represents that the forwarding probability after renewal is affected by network state closer to the forwarding probability before renewal It is less;If ρ is closer to 1, then it represents that the forwarding probability after renewal is affected larger by network state, and more new formula is as follows:
Pnew(i)=(1- ρ) * Pold(i)+ρ*ΔP(i)
It should be noted that when there are following two situations, method for routing will perform following operation:(1) node or chain Road failure:When node or link failure, the forwarding probability of all of the port towards the node will be zeroed out by controller, be set to It is unreachable;When link failure, the forwarding probability of by the controller two ends port connected by the link will be zeroed out, and being set to can not Reach.
(2) new content provider adds:When there is new content provider to add, controller will connect the offer Increase a forwarding port in the forwarding information table of the content router of person and by current forwarding probability zero setting, wait next time Update.
Forwarding after being updated using method of weighting finally according to normalized growth probability and current forwarding probability Probability.After obtaining the forwarding probability of each port, controller would choose from forward maximum probability port under send instructions, data The routing node of plane will perform corresponding forwarding mechanism according to instruction.
The forwarding mechanism that the present embodiment is provided includes two kinds of situations:When interest bag has occurrence in content router When, then interest bag being forwarded to into the port that port forwards maximum probability, the port is specified by controller;If including interest bag When there is no occurrence in holding router, the interest bag will be forwarded to controller, most short for its selection by controller Path is forwarded.
Forwarding interest bag:When an interest bag reaches content router, content router can be extracted from the interest bag Content name has simultaneously searched whether corresponding content in content storage table, if it has, content is returned to into requestor directly then, And interest bag is abandoned.If it is not, whether record accordingly in continuing to search for interest table undetermined, if it has, then by interest Bag is abandoned, and the input port of interest bag is added in the relevant entry in interest table undetermined.If it is not, in interest undetermined Increase bar program recording input port in table, and occurrence has been searched whether in forwarding interest table, if it has, then turning interest bag The forwarding port that controller is specified is sent to, the forwarding port has maximum forwarding probability.If it is not, interest bag is forwarded To controller, a most short forward-path is specified for which by controller.
Embodiment 3
The present embodiment illustrates technique effect by experiment simulation, and emulation topology is as shown in figure 1, simulation parameter is arranged:Link Bandwidth 100Gbps, requestor's number 3000, user bandwidth demand obey Poisson distribution, and average demand is 40Mbps, total request frequency The weight α of 100-1000 per second, T (i) of rate, H (i), LR (i) and LS (i), beta, gamma andIt is set to 0.4,0.2,0.2 He 0.2, weight ρ of network state is set to 0.5.And by this method and traditional random forwarding mechanism, shortest path under equal ambient Footpath forwarding mechanism and full forwarding mechanism are contrasted.
The present embodiment can reduce the average delay of content requests.As shown in Fig. 2 with the increase of offered load, four kinds The content requests average delay of routing mechanism gradually increases.This is as with the increase of offered load, network occurs congestion Probability increases, and causes the time delay of network to increase.Relative analyses are can be seen that in four kinds of routing mechanisms, average delay minimum It is the content center network method for routing SD-STAR based on software definition.This is because SD-STAR when routed path is selected is Prioritizing selection forwarding maximum probability port forwarded, and forward probability size reflection be the path network state Quality, so its content requests average delay is minimum.
The interest bag number that the present embodiment is transmitted in can also reducing network.As shown in figure 3, with average bag arrival rate Increase, the quantity of the network circulation interest bag of four kinds of routing mechanisms gradually increases.This is because with average bag arrival rate Increase, network interest bag number is reached in the unit interval and is increased.Relative analyses are can be seen that in four kinds of routing mechanisms, network flow Logical interest bag minimum number is shortest path forwarding mechanism SPF, next to that the content center network road based on software definition By method SD-STAR, and both are closely;The path that SD-STAR selects network state optimum is forwarded, and this path may It is not that jumping figure is minimum, and SPF is the port forwarding interest bag for selecting jumping figure minimum, therefore circulate in the network of operation SD-STAR Interest bag number ratio is more than SPF.
This quantity can also reduce network bandwidth expense.As shown in figure 4, with the increase of number of users, four kinds of routers The network bandwidth overhead of system gradually increases, and works as number of users and reach a timing, and bandwidth cost tends to be steady.This is because The link bandwidth of network is certain, and when the total bandwidth need of user reaches link bandwidth threshold value, bandwidth cost will tend to most It is big to be worth.Relative analyses, the bandwidth cost minimum of four kinds of routing policies is shortest path forwarding mechanism SPF, next to that based on soft The content center network method for routing SD-STAR of part definition, and both are closely.The path that SPF selects jumping figure minimum is carried out Forwarding, the link circuit resource of occupancy are minimum, and bandwidth cost is also minimum;The path that SD-STAR selects network state optimum is forwarded, This path may not be that jumping figure is minimum, therefore the link circuit resource shared by which is more than SPF, and bandwidth cost is bigger than SPF, but the two is non- Very close to.
The transmission of the control information that the present embodiment is provided is selected with outer link, as shown in figure 5, Fig. 5 is based on software definition Content center network method for routing particular flow sheet, comprise the following steps that:
Step 501:When network is initial, in the content registration stage, content provider 1 issues content Content accessibility letter Breath, the information broadcasted in a network, each content router A, B, C and D accordingly setting up respective forwarding information table FIB, Controller is that all forwarding ports of listing of Content in the FIB on same content router give identical forwarding probability.
Step 502:Controller collection network status information (5.1,5.2,5.3,5.4,5.5,5.6), and according to these shapes State information updates the forwarding probability of each port in controller end, and the end of maximum probability is forwarded in obtaining each content router Mouthful, by sending instructions under control channel (5.7,5.8,5.9,5.10).
Step 503:After requestor 1 and 2 sends the interest bag of request content Content (5.11,5.12), when interest bag After reaching content router A, in first retrieving CS, whether there is content Content, the returned data if having, and interest bag is abandoned, if Whether there is the record of the interest bag in then not retrieving PIT, if having the input port of the interest bag is recorded in the corresponding bars of PIT In mesh, and interest bag is abandoned, a new entry is created if not, the interest bag input port is recorded.After PIT has been retrieved, FIB is retrieved just.When there is the entry of content Content in FIB, the forwarding port that the interest bag can be specified from controller Forward, the port has maximum forwarding probability, in the present embodiment, the forwarding that controller is specified in content switch A Port is PortA-C, and the forwarding port that controller is specified in content switch C is PortC- suppliers 1, and interest bag will hop-by-hop Be forwarded to supplier 1 (5.13,5.14).
Step 504:Content provider 1 can be sent comprising content Content after receiving the interest bag of request content Content Packet.The packet be back at requestor 1 and requestor 2 according to mono- tunnels of PIT of content router C and A (5.15, 5.16,5.17,5.18), complete content requests.
Finally illustrate, above example is only unrestricted to illustrate technical scheme, although with reference to compared with Good embodiment has been described in detail to the present invention, it will be understood by those within the art that, can be to the skill of the present invention Art scheme is modified or equivalent, and without deviating from the objective and scope of the technical program, which all should be covered in the present invention Protection domain in the middle of.

Claims (5)

1. a kind of content center network method for routing based on software definition, including controller, requestor and supplier;Its feature It is:Comprise the following steps:
First, collection network status information:Controller passes through control channel dynamically collection network status information, and according to network Status information dynamicallys update the forwarding probability of the matching port of each content router using forwarding probability updating algorithm;
It is next that the network state information includes that packet reaches the propagation delay time of server, current routing node from present node Server node load in the load of jump and the path;
Secondly, update port forwarding probability:The forwarding probability updating algorithm, is input into the network state information and each port Current forwarding probability, be output as update after each port forwarding probability;
Finally, the existence according to interest bag in content router enter to be about to interest bag be forwarded to port forwarding maximum probability Port.
2. the content center network method for routing based on software definition as claimed in claim 1, it is characterised in that:In collecting net During network status information, during if there is following two situations, network element can be actively to controller reporting state:
(1) node or link failure:When node or link failure, the forwarding probability towards all of the port of the node will be set to Zero, it is set to unreachable, when link failure, the forwarding probability of the two ends port connected by the link will be zeroed out, and being set to can not Reach;
(2) new content provider adds:When there is new content provider to add, can be in the contents construction for connecting the supplier Increase a forwarding port in the forwarding information table of device and by current forwarding probability zero setting, wait updates next time.
3. the content center network method for routing based on software definition as claimed in claim 1, it is characterised in that:The forwarding Step in probability updating algorithmic procedure is specific as follows:
The state comprehensive parameters of each port are calculated according to below equation using method of weighting:
Wherein, α, beta, gamma andT (i), H (i), L are represented respectivelyR(i) and LSThe weight of (i);
T (i) represents the time delay from port i to content provider;
H (i) represents the path from port i to content provider;
LRI () represents the load of port i next-hop content routers;
LSI () represents the load of the content provider corresponding to the i of port;
State comprehensive parameters are normalized according to below equation and obtain increasing probability:
Δ P ( i ) = S ( i ) / Σ i = 1 N S ( i ) ;
Wherein, ρ is the weight of network state;
Forwarding probability is updated according to below equation:
Pnew(i)=(1- ρ) * Pold(i)+ρ*ΔP(i);
Wherein, PnewI () represents the forwarding probability before port i renewals;PoldI () represents the forwarding probability after port i renewals.
4. the content center network method for routing based on software definition as claimed in claim 1, it is characterised in that:The renewal Port forwarding probability is comprised the following steps that:
Calculate the state comprehensive parameters of each port first according to the network state collected using method of weighting,
Then the parameter is normalized and obtains increasing probability,
Forwarding probability after being updated using method of weighting finally according to normalized growth probability and current forwarding probability;
After obtaining the forwarding probability of each port, controller would choose from forward maximum probability port under send instructions, data The routing node of plane will perform corresponding forwarding mechanism according to instruction.
5. the content center network method for routing based on software definition as claimed in claim 1, it is characterised in that:The forwarding The forwarding mechanism of interest bag includes two kinds of situations:
One is when interest bag has occurrence in content router, then interest bag to be forwarded to port forwarding maximum probability Port, the port are specified by controller;
If two when being that interest bag does not have occurrence in content router, interest bag will be forwarded to controller, by controlling Device processed selects a shortest path to be forwarded.
CN201611149215.5A 2016-12-13 2016-12-13 Content centric network routing method based on software definition Pending CN106534360A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201611149215.5A CN106534360A (en) 2016-12-13 2016-12-13 Content centric network routing method based on software definition

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201611149215.5A CN106534360A (en) 2016-12-13 2016-12-13 Content centric network routing method based on software definition

Publications (1)

Publication Number Publication Date
CN106534360A true CN106534360A (en) 2017-03-22

Family

ID=58343271

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201611149215.5A Pending CN106534360A (en) 2016-12-13 2016-12-13 Content centric network routing method based on software definition

Country Status (1)

Country Link
CN (1) CN106534360A (en)

Cited By (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107454142A (en) * 2017-06-29 2017-12-08 北京邮电大学 Non- the obstruction content buffering method and device of a kind of content router
CN108289062A (en) * 2017-12-21 2018-07-17 北京邮电大学 A kind of information centre's network structure based on software definition
CN108833468A (en) * 2018-04-27 2018-11-16 广州西麦科技股份有限公司 Method for processing video frequency, device, equipment and medium based on mobile edge calculations
CN109150708A (en) * 2018-08-28 2019-01-04 中国科学院计算机网络信息中心 The selection method and device of data forwarding interface
CN109561057A (en) * 2017-09-27 2019-04-02 中兴通讯股份有限公司 A kind of content distributing network entities business processing method, apparatus and system
CN110391980A (en) * 2018-04-16 2019-10-29 中兴通讯股份有限公司 A kind of data forwarding method, routing device and computer storage medium
CN111314223A (en) * 2020-02-25 2020-06-19 北京工业大学 Routing interface ranking-based forwarding method in NDN (named data networking)
CN111786976A (en) * 2020-06-22 2020-10-16 上海交通大学 Interest packet flooding attack detection system based on path aggregation in NDN (named data networking) network
CN112003907A (en) * 2020-08-04 2020-11-27 北京大学深圳研究生院 Deterministic forwarding method for network resource demand and computational power demand thereof
CN112187642A (en) * 2019-11-27 2021-01-05 谷歌有限责任公司 Weighted bandwidth allocation for adaptive routing
CN115529240A (en) * 2022-08-18 2022-12-27 北京邮电大学 Network optimization method combining content caching and transmission routing

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102638405A (en) * 2012-04-12 2012-08-15 清华大学 Routing method of content-centric network strategy layer
US20130286846A1 (en) * 2012-04-25 2013-10-31 Juniper Networks, Inc. Path weighted equal-cost multipath
CN104301305A (en) * 2014-09-17 2015-01-21 北京大学深圳研究生院 Interest packet forwarding method and terminal in information center network
CN104604205A (en) * 2012-02-21 2015-05-06 华为技术有限公司 Method and apparatus for adaptive forwarding strategies in content-centric networking

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104604205A (en) * 2012-02-21 2015-05-06 华为技术有限公司 Method and apparatus for adaptive forwarding strategies in content-centric networking
CN102638405A (en) * 2012-04-12 2012-08-15 清华大学 Routing method of content-centric network strategy layer
US20130286846A1 (en) * 2012-04-25 2013-10-31 Juniper Networks, Inc. Path weighted equal-cost multipath
CN104301305A (en) * 2014-09-17 2015-01-21 北京大学深圳研究生院 Interest packet forwarding method and terminal in information center network

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
蔡岳平 等: "内容中心网络状态感知路由涉及", 《通信学报》 *

Cited By (17)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107454142A (en) * 2017-06-29 2017-12-08 北京邮电大学 Non- the obstruction content buffering method and device of a kind of content router
CN107454142B (en) * 2017-06-29 2019-06-07 北京邮电大学 A kind of non-obstruction content buffering method and device of content router
CN109561057A (en) * 2017-09-27 2019-04-02 中兴通讯股份有限公司 A kind of content distributing network entities business processing method, apparatus and system
CN108289062B (en) * 2017-12-21 2020-07-28 北京邮电大学 Information center network system based on software definition
CN108289062A (en) * 2017-12-21 2018-07-17 北京邮电大学 A kind of information centre's network structure based on software definition
CN110391980A (en) * 2018-04-16 2019-10-29 中兴通讯股份有限公司 A kind of data forwarding method, routing device and computer storage medium
CN108833468B (en) * 2018-04-27 2021-05-11 广州西麦科技股份有限公司 Video processing method, device, equipment and medium based on mobile edge calculation
CN108833468A (en) * 2018-04-27 2018-11-16 广州西麦科技股份有限公司 Method for processing video frequency, device, equipment and medium based on mobile edge calculations
CN109150708A (en) * 2018-08-28 2019-01-04 中国科学院计算机网络信息中心 The selection method and device of data forwarding interface
CN109150708B (en) * 2018-08-28 2021-04-27 中国科学院计算机网络信息中心 Method and device for selecting data forwarding interface
US11765072B2 (en) 2019-11-27 2023-09-19 Google Llc Weighted bandwidth allocation for adaptive routing
CN112187642B (en) * 2019-11-27 2022-06-14 谷歌有限责任公司 Weighted bandwidth allocation for adaptive routing
CN112187642A (en) * 2019-11-27 2021-01-05 谷歌有限责任公司 Weighted bandwidth allocation for adaptive routing
CN111314223A (en) * 2020-02-25 2020-06-19 北京工业大学 Routing interface ranking-based forwarding method in NDN (named data networking)
CN111786976A (en) * 2020-06-22 2020-10-16 上海交通大学 Interest packet flooding attack detection system based on path aggregation in NDN (named data networking) network
CN112003907A (en) * 2020-08-04 2020-11-27 北京大学深圳研究生院 Deterministic forwarding method for network resource demand and computational power demand thereof
CN115529240A (en) * 2022-08-18 2022-12-27 北京邮电大学 Network optimization method combining content caching and transmission routing

Similar Documents

Publication Publication Date Title
CN106534360A (en) Content centric network routing method based on software definition
Tang et al. On removing routing protocol from future wireless networks: A real-time deep learning approach for intelligent traffic control
US10057158B2 (en) Control device discovery in networks having separate control and forwarding devices
EP2985971B1 (en) Reputation-based instruction processing over an information centric network
US9503360B2 (en) Method and apparatus for traffic engineering in shortest path bridged networks
CN100596102C (en) Method for establishing label switched path of minimized path preemption cost
JP5975083B2 (en) COMMUNICATION SYSTEM, CONTROL DEVICE, PACKET TRANSFER ROUTE CONTROL METHOD, AND PROGRAM
Yao et al. Machine learning aided load balance routing scheme considering queue utilization
EP1499074B1 (en) Dynamic routing through a content distribution network
EP2552059A1 (en) Packet transfer system, control apparatus, transfer apparatus, method of creating processing rules, and program
CN106059941B (en) A kind of backbone network traffic scheduling method for eliminating link congestion
CN104601485B (en) The distribution method of network flow and the method for routing for realizing network flow distribution
US9401868B2 (en) Method of traffic engineering for provisioning routing and storage in content-oriented networks
CN105245448A (en) Multi-service and multi-path routing optimization method in named data network
CN106789648A (en) Software defined network route decision method based on content storage with network condition
CN105471747B (en) A kind of intelligent router route selecting method and device
CN106533733A (en) CCN collaborative cache method and device based on network clustering and Hash routing
CN104580165A (en) Cooperative caching method in intelligence cooperative network
CN104734948A (en) Method and device for achieving intelligent routing
CN103166859B (en) service routing method and system
CN107302571B (en) The routing of information centre's network and buffer memory management method based on drosophila algorithm
FI124398B (en) Method and apparatus for determining implementation of a search table for a network element of software-defined network
JP3591492B2 (en) Packet distribution device and packet distribution program
CN1889581B (en) Inter-carrying control hierarchy equipment dynamic route realizing method
FI124397B (en) Method and apparatus for determining search system for a network element of software-defined network

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination
RJ01 Rejection of invention patent application after publication

Application publication date: 20170322

RJ01 Rejection of invention patent application after publication