CN101374284B - Method for distributing bandwidth for relaying station by base station - Google Patents

Method for distributing bandwidth for relaying station by base station Download PDF

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Publication number
CN101374284B
CN101374284B CN2007101430191A CN200710143019A CN101374284B CN 101374284 B CN101374284 B CN 101374284B CN 2007101430191 A CN2007101430191 A CN 2007101430191A CN 200710143019 A CN200710143019 A CN 200710143019A CN 101374284 B CN101374284 B CN 101374284B
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bandwidth
relay station
base station
priority
request
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CN101374284A (en
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魏巍
赵建平
吕开颖
王文焕
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ZTE Corp
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ZTE Corp
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Abstract

A method for allocating bandwidth to a relay station by a base station is characterized in that when the base station receives a bandwidth request including the resource service information statistic value of the relay station transmitted by the relay station, the bandwidth or a portion of the bandwidth is allocated to corresponding service priority by a higher allocation priority on the basis of the corresponding service priority if the bandwidth request contains the indication information for indicating that the request bandwidth of one or more service priorities is larger than or equal to a request bandwidth threshold of a corresponding service priority; otherwise, allocable bandwidths are sequentially allocated to the service priorities according to the service priorities as the allocation priorities; the resource service information statistic value includes request bandwidths for each service priority; and the relay station is a non-transparent relay station.

Description

A kind of base station is the method that relay station distributes bandwidth
Technical field
The present invention relates to a kind of base station is the method that relay station distributes bandwidth, and relating in particular to the base station is the method that nontransparent relay station distributes bandwidth.
Background technology
In follow-on cordless communication network, need to solve the problem that has defect area in the coverage of base station (Base Station is called for short BS), make and fail to be obtained covering by the zone that the base station covers; And the capacity problem in the base station range, comprise that the capacity between the zones of different sub-district in is allocated and adjacent sub-district in the allotment of capacity.Indoor overlay models such as the problems referred to above can not effectively be solved to make in such as buildings such as subway stations, tunnel or other hypogee, and problems such as the user's of application model such as some the interim application models and the vehicles that move or cell edge covering and throughput are faced with formidable challenges.
At present, in international standards such as IEEE (institute of Electrical and Electronic Engineers) 802.16J, all propose to adopt the mode of relay station (RS) to solve the covering of user in the scene that above-mentioned existence covers defective and the problem of capacity.Compare with increase the base station in having the zone that covers defective, the use relay station has reduced the complexity of system start-up, simultaneously by making the complexity that can further reduce whole system that minimizes of relay station complexity.
At present, according to the applied scene of relay station and solve to cover different with problem such as capacity respectively, relay station can be divided into following two classes:
(1) transparent relay stations (Transparent Relay Station is called for short TRS)
As shown in Figure 1, transparent relay stations and user terminal (User Terminal is called for short UT) all are positioned at base station range, and user terminal is positioned at the coverage of transparent relay stations again simultaneously.
The characteristics of transparent relay stations are: Downlink Control Information and data service are independent transmission, and wherein Downlink Control Information is directly from the base station transmits to the user terminal, and without transparent relay stations; And data service can be transferred to user terminal by transparent relay stations.Transparent relay stand in do not launch in the downlink broadcast channel oneself synchronously, information such as system configuration and resource allocation.
(2) nontransparent relay station (Non-Transparent Relay Station is called for short NTRS)
As shown in Figure 2, nontransparent relay station is positioned at base station range, and user terminal can be positioned at outside the coverage of base station, and is positioned at the coverage of nontransparent relay station.
The characteristics of nontransparent relay station are: Downlink Control Information and data service all must be transferred to user terminal by nontransparent relay station, and nontransparent relay station in the downlink broadcast channel, launch oneself synchronously, information such as system configuration and resource allocation.
Dual mode is adopted in the scheduling of resource such as bandwidth in transparent relay stations and nontransparent relay station: a kind of is centralized scheduling, and another kind is a distributed scheduling.
The high-level scheduling complexity of transparent relay stations, to take overhead very big; Simultaneously, in wireless communication system, simultaneously when compatible transparent relay stations and nontransparent relay station, all be very large at the overhead that takies aspect physical configuration and the high-level scheduling.
In addition, if relay station is used centralized scheduling, can bring extra expense to the base station, consider that simultaneously relay station itself has bigger delay character, therefore, when carrying out centralized scheduling, have the exchange of a lot of control signalings between relay station and the base station, cause bigger time delay.
Except that above problem, also there are the following problems for existing relay station resource regulating method:
One, the triggering mode of bandwidth request: relay station sends bandwidth allocation request to the base station when bandwidth is not enough, and a large amount of bandwidth allocation request and corresponding response message have strengthened the taking of processing resource of bandwidth and relay station and base station;
Two, bandwidth request method: the information that comprises in bandwidth request mode that relay station sends and the request is single, BS can't judge that fully real resource, bandwidth occupancy and the user of relay station ask situation according to the information that comprises in this request, and bandwidth request efficient is lower;
Three, bandwidth allocation methods: the base station is that relay station uses the priority of service priority as allocated bandwidth when carrying out allocated bandwidth, Rule of judgment is single, when the business that high priority occurs continues to send the situation of bandwidth request, for low priority traffice, even a spot of bandwidth requirement also can be not being met for a long time, be unfair.
Summary of the invention
Technical problem to be solved by this invention is, overcomes the deficiency of base station of the prior art to the bandwidth allocation methods of relay station, proposes a kind of method of high priority and low priority traffice being carried out fair allocated bandwidth.
In order to address the above problem, the invention provides a kind of base station and be the method that relay station distributes bandwidth, it is characterized in that, when the base station receives the bandwidth request of the resource service Information Statistics value that comprises relay station that relay station sends:
If this bandwidth request comprises and is used to indicate the indication information of the bandwidth on demand of one or more service priority more than or equal to the bandwidth on demand threshold value of corresponding business priority, then on the basis of corresponding business priority, with higher distribution priority is corresponding business priority assignment bandwidth, or the distribution portion bandwidth;
Otherwise can distribute allocated bandwidth to give each service priority successively as distribution priority with service priority;
Described resource service Information Statistics value comprises the bandwidth on demand of each service priority;
Described relay station is nontransparent relay station.
In addition, the base station is write down each bandwidth request corresponding service priority and is carried out the object information of allocated bandwidth for this service priority; When receiving the bandwidth request that comprises this service priority once more, and above-mentioned allocated bandwidth object information shows when not distributing bandwidth or not satisfying request for allocation fully for it, the base station is on the basis of corresponding business priority, distribute bandwidth with higher distribution priority for this service priority, or the distribution portion bandwidth.
In addition, described resource service Information Statistics value comprises row cache use amount and/or down buffer storage use amount; If comprising, described bandwidth request is used to indicate up buffer memory use amount and/or down buffer storage use amount indication information more than or equal to corresponding threshold value, then the speed adjustment is carried out to corresponding communication link in the base station, make the link of user terminal to the link of relay station and relay station to the base station, and/or the link rate coupling of base station to the link of relay station and relay station to user terminal.
In addition, the base station is provided with the service priority threshold value; The base station receives the bandwidth request of the resource service Information Statistics value that comprises relay station of relay station transmission, and when this bandwidth request does not comprise the bandwidth on demand that is used to indicate one or more service priority more than or equal to the indication information of the bandwidth on demand threshold value of corresponding business priority: the base station as distributing priority, can distribute allocated bandwidth to give service priority more than or equal to this service priority threshold value with service priority successively.
In addition, after allocated bandwidth to relay station was finished in the base station, the bandwidth request that will comprise each service priority bandwidth increments field was replied and is sent to the corresponding relay station; Each service priority bandwidth increments field is used in reference to and is shown the amount of bandwidth that each service priority distributes.
In addition, the base station is provided with the recovery threshold value, when the bandwidth on demand of the service priority that comprises in the bandwidth request that the relay station that receives sends when reclaiming threshold value, the bandwidth of this service priority is reclaimed.
In addition, when reclaimed the bandwidth of relay station the base station, described service priority bandwidth increments field was a negative value, the amount of bandwidth of its absolute value for reclaiming.
In addition, the resource service Information Statistics value of described relay station obtains with accumulative total averaging method statistics, described accumulative total on average is that relay station is divided a plurality of timing statistics sheets, statistics beginning to the resource service Information Statistics value of current each the timing statistics sheet that comprises is carried out addition get the corresponding accumulative total of average acquisition average statistics value.
In addition, the bandwidth on demand threshold value of described service priority is by the relay station setting, or is provided with by the mode that sends the bandwidth on demand threshold value update request of service priority to relay station by the base station.
The present invention is at the bandwidth on demand of one or more service priority during more than or equal to the bandwidth on demand threshold value of corresponding business priority, on the basis of corresponding business priority, with higher distribution priority is corresponding business priority assignment bandwidth, or the mode of distribution portion bandwidth carries out increment to the bandwidth of relay station and distributes, and embodied the fairness doctrine of allocated bandwidth; In addition, by bandwidth reclaim mechanism of the present invention, can reclaim by the remaining bandwidth of advantages of simplicity and high efficiency mode to relay station.
Description of drawings
Fig. 1 is transparent relay stations, user terminal and signal of base station covering relation schematic diagram;
Fig. 2 is non-transparent relay stations, user terminal and signal of base station covering relation schematic diagram;
Fig. 3 is non-transparent relay stations is carried out allocated bandwidth to base station initiation bandwidth request and base station a flow chart.
Embodiment
Be described in detail below in conjunction with the method that drawings and Examples are initiated bandwidth request to NTRS and BS carries out allocated bandwidth according to this request.
To be NTRS initiate the flow chart that bandwidth request and BS carry out allocated bandwidth to BS to Fig. 3, specifically comprises following steps:
101:BS and NTRS are each class business setting service priority;
Service priority is that business is divided into different grades according to demand, with the grade of service quality (Quality ofService, be called for short QoS) be corresponding.For each class business, BS is provided with identical service priority with NTRS for it.
102:NTRS is provided with resource service Information Statistics threshold value;
Resource service Information Statistics threshold value comprises: refusal information threshold value, cache information threshold value, solicited message threshold value.Wherein,
Refusal information threshold value can be: the reject rate threshold value, and refusal request number threshold value, refusal amount of bandwidth threshold value, refusing user's is counted one or more in the threshold value.
The cache information threshold value comprises: go up row cache use amount threshold value and down buffer storage use amount threshold value.
Last row cache is meant that the data that UT is sent to NTRS carry out the employed memory space of buffer memory, when UT when NTRS sends data to BS, when if the link of the link of UT to NTRS and NTRS to BS does not match, be on the link of UT to NTRS, when the communication data amount that need be forwarded to BS surpasses the link maximum bearing ability of NTRS to BS, need NTRS that data are stored in last row cache temporarily; Down buffer storage is meant BS is sent to the buffer memory that the data of NTRS are carried out, when BS when NTRS sends data to UT, when if the link of the link of BS to NTRS and NTRS to UT does not match, be on the link of BS to NTRS, when the communication data amount that need be forwarded to UT surpasses the link maximum bearing ability of NTRS to UT, need NTRS that data are stored in down buffer storage temporarily.
The solicited message threshold value can be: the request quantity accumulative total average threshold of each service priority, the bandwidth on demand accumulative total average threshold of each service priority.
103: startup length is that the fixed intervals timer of T picks up counting T>0;
104:NTRS carries out the resource service Information Statistics;
The resource service Information Statistics are to adopt specific relay station Communications service quantitative information, and resource situation and the service status of NTRS are added up, and comprise: refusal Information Statistics, cache information statistics, solicited message statistics; Be that resource service Information Statistics value comprises: refusal Information Statistics value, cache information statistical value, solicited message statistical value.
Above-mentioned relay station Communications service quantitative information is the interaction data information between relay station and affiliated base station and user terminal and the communication resources information of relay station self, comprises:
The service request quantitative information, as the time of reception of service request, the service state of service request (be rejected, wait in line to handle, handling etc.), the required amount of bandwidth of service request, the service priority of service request, the user totem information of service request etc.;
Relay station communication resources information is as the data volume and the maximum amount of bandwidth of each bar communication link between relay station and user terminal and relay station and the affiliated base station, relay station buffer data size etc.
The refusal Information Statistics are that NTRS adds up the user request information of its refusal.Refusal Information Statistics value can be following one or more: reject rate, refusal request number, refusal amount of bandwidth, refusing user's number.
Reject rate is that unaccepted user asks number and user to ask the ratio of sum.
Refusal request number is the sum of unaccepted user's request.
The summation of the amount of bandwidth that the refusal amount of bandwidth is comprised for each unaccepted user request.
When carrying out reject rate, refusal request number, refusal amount of bandwidth statistics, can write down the corresponding user totem information of each request simultaneously, when the user initiates to ask once more, no longer repeat statistics.
The cache information statistics is that NTRS adds up last row cache use amount and down buffer storage use amount, and corresponding cache Information Statistics value is last row cache use amount and down buffer storage use amount.
The cache information statistics can also be to the utilized bandwidth of UT to NTRS link, the utilized bandwidth of NTRS to BS link, and the utilized bandwidth of BS to NTRS link, the utilized bandwidth of NTRS to UT link is added up, and obtains corresponding statistical value.
Solicited message statistics adds up on average current queuing (promptly owing to bandwidth deficiency temporarily can not distribute bandwidth enter waiting list) service request quantity or service request amount of bandwidth according to service priority.Corresponding solicited message statistical value comprises: the request quantity accumulative total mean value of each service priority, the bandwidth on demand accumulative total mean value of each service priority.
Accumulative total on average is meant divides a plurality of timing statistics sheets, to the statistic of each timeslice (as, service request quantity or service request amount of bandwidth) carry out addition and get the statistical value that average obtains.For example, service request quantity to the queuing of first service priority adds up mean time, this statistics begins extremely current 3 the timing statistics sheets that comprise altogether, the service request quantity of the queuing of first service priority of the 1st timing statistics sheet is 50, the service request quantity of queuing of cancelling first service priority of the 2nd timing statistics sheets of reason such as request owing to the user is reduced to 30, the service request quantity of the queuing of first service priority of the 3rd timing statistics sheet is 70, and the service request quantity accumulative total mean value of then current first service priority queuing is 50.
Except the solicited message statistics, cache information statistics and refusal Information Statistics can adopt the average mode of above-mentioned accumulative total to carry out.Adopt the average mode of accumulative total can react the dynamic change situation of each statistic more accurately, eliminate the irregular change of each statistic.
In addition, when carrying out the solicited message statistics, also can write down the corresponding user totem information of each request simultaneously, when the user initiates to ask once more, no longer analog value be repeated statistics.
105:NTRS judges whether to satisfy the bandwidth request trigger condition of setting, and definite corresponding triggering condition type; If satisfy, then carry out next step; Otherwise jump to step 104;
The bandwidth request trigger condition comprises: timer trigger condition and threshold triggers condition.The timer trigger condition is meant that said fixing intervalometer meter is full, and corresponding bandwidth request trigger type is the fixed intervals mode; The threshold triggers condition be meant above-mentioned resource service Information Statistics value and corresponding resource service Information Statistics threshold value satisfy the relativity set (for example, statistical value greater than, or more than or equal to respective threshold), corresponding bandwidth request trigger type is a burst mode.A plurality of threshold triggers conditions can be set, and each threshold triggers condition can be that the resource service Information Statistics value and the corresponding resource service Information Statistics threshold value of one or more combinations satisfies the relativity of setting.
106:NTRS judges the request switch, if close sign, then jumps to step 105; Otherwise carry out next step;
The initial value of request switch is for opening sign, when NTRS sends bandwidth request to BS, it is set to closing flag, in case send to BS a bandwidth request, BS is according to this bandwidth request allocation bandwidth, and during NTRS returns the bandwidth request response message, owing to other reason sends bandwidth request to BS once more.
107:NTRS asks switch to be set to close sign, stops the said fixing intervalometer;
108:NTRS sends the bandwidth request of respective type to BS according to the triggering type of bandwidth request;
Need comprise request type field in the bandwidth request, the type of bandwidth request is divided into fixed intervals type and outburst type, the corresponding respectively bandwidth request that triggers with fixed intervals mode and burst mode.That is to say that when one or more in the above-mentioned resource service Information Statistics value satisfied corresponding threshold value relation (for example: greater than, more than or equal to respective threshold), NTRS sent the bandwidth request of outburst type to BS with burst mode; When said fixing intervalometer meter was full, NTRS sent the bandwidth request of fixed intervals type to BS.
Need to comprise the bandwidth on demand accumulative total mean value of above-mentioned each service priority in the bandwidth request.
In addition, surpass corresponding threshold value and the outburst type bandwidth request that triggers for the cache information statistical value, except that the bandwidth on demand accumulative total mean value that comprises above-mentioned each service priority, also need to comprise row cache use amount and down buffer storage use amount or add up mean value accordingly.
Certainly,, can comprise above-mentioned all resource service Information Statistics values for the bandwidth request of any kind, so that BS has comprehensive understanding to resource situation, bandwidth behaviour in service, the service ability of NTRS, and the resource allocation that correspondingly is optimized.
In addition, bandwidth request for outburst type also can comprise the triggering cause field, this field is used to indicate the concrete reason that triggers this bandwidth request, promptly triggers the identification information (for example title or the type of this resource service Information Statistics value) of the resource service Information Statistics value of this bandwidth request.For example, can to identify this bandwidth request be that the bandwidth on demand accumulative total mean value of second service priority surpasses respective threshold to this field.
When having a plurality of bandwidth request trigger conditions to satisfy simultaneously: belonging to same triggering type as if a plurality of trigger conditions, promptly all is burst mode, then related resource information on services statistical value is included in the bandwidth request with the triggering reason to send; Trigger condition comprises timer trigger condition and threshold triggers condition, be that the timer meter has one or more threshold triggers conditions also to satisfy when full, then selection is a kind of in the bandwidth request of outburst type and fixed intervals type, and comprises corresponding resource service Information Statistics value and trigger reason in bandwidth request.
After 109:BS receives above-mentioned bandwidth request, obtain the bandwidth on demand accumulative total mean value of each service priority that wherein comprises, with each accumulative total mean value and compare with the current assignable bandwidth value of BS, if BS can satisfy the bandwidth of NTRS request fully, then carry out next step; Otherwise jump to step 111;
110:BS distributes required bandwidth according to the bandwidth on demand accumulative total mean value of each service priority for each service priority; Jump to step 114;
111:BS judges the type of bandwidth request:
If satisfy condition 1: the bandwidth request type is the fixed intervals type, or
Condition 2: the bandwidth request type is an outburst type, and to trigger cause field be one of following: refusal Information Statistics value surpasses respective threshold, and last row cache use amount or down buffer storage use amount are above respective threshold; Then carry out next step; Otherwise jump to step 113;
112:BS can distribute allocated bandwidth to give each service priority according to the height of service priority successively; Jump to step 114;
That is to say, in this step BS with service priority as distributing the priority assignment bandwidth.
Can certainly distribute bandwidth in certain proportion according to the height of service priority, high service priority obtains bigger allocation proportion.
113: if satisfy condition 3: trigger former because the bandwidth on demand of certain service priority accumulative total mean value surpasses respective threshold, then with higher distribution priority for surpassing the bandwidth on demand accumulative total mean value corresponding service priority assignment bandwidth of respective threshold, or be its distribution portion bandwidth with higher distribution priority;
Above-mentioned can be to improve one or more grades on the basis of its service priority with higher distribution priority.
Bandwidth request for the fixed intervals type, BS distributes bandwidth according to the height of service priority usually, still, only uses service priority as the order of priority that distributes bandwidth, can occur the situation of the professional chief time distribution of low service priority in some cases, be unfair less than bandwidth.Therefore be not assigned to required bandwidth when the business of the low service priority bandwidth request by the fixed intervals type, and when the bandwidth on demand of this service priority correspondence accumulative total mean value surpasses threshold value, NTRS can send bandwidth request by burst mode, and BS is preferably this service priority according to this request and distributes bandwidth.
114: for triggering former because up buffer memory use amount or down buffer storage use amount surpass the bandwidth request (condition 4) of respective threshold, BS is according to the value of utilized bandwidth of UT to the NTRS link that comprises in the bandwidth request, the value of utilized bandwidth of NTRS to BS link, the value of utilized bandwidth of BS to NTRS link, the value of utilized bandwidth of NTRS to UT link, corresponding communication link is carried out the speed adjustment, make the link of UT to NTRS and the link of NTRS to BS, or the link rate of the link of BS to NTRS and NTRS to UT coupling;
115:BS replys the bandwidth of distributing and corresponding business precedence information and is sent to NTRS by bandwidth request; Be to comprise each service priority bandwidth increments field during bandwidth request is replied;
116:NTRS receives after bandwidth request replys, and it is the newly assigned bandwidth of corresponding service priority that the bandwidth on demand accumulative total mean value of each service priority that statistics is obtained deducts BS, obtains totally mean value of new bandwidth on demand;
117:NTRS will prepare to restart statistics except that other resource service Information Statistics value zero clearing the bandwidth on demand accumulative total mean value of each service priority;
Distributed bandwidth and carried out the adjustment and the rate-matched of link because BS is NTRS, carried out therefore restarting to add up after the above-mentioned clear operation that the statistical value that obtained can react the resource operating position of the adjustment carrying out allocated bandwidth and carried out link and the NTRS after the rate-matched better and to the service scenario of service request.
118:NTRS asks switch to be set to open sign; Jump to step 103.
Step 116 to 118 for bandwidth request reply processing, reply and restart the fixed intervals timer after finishing dealing with.
The foregoing description can also have multiple variation pattern, for example:
(1) in the step 112 of the foregoing description, BS according to the height of service priority, distributes bandwidth fully successively, for example, business to first service priority is carried out allocated bandwidth, assigns the back if also have residue can distribute bandwidth, then the business of second service priority is distributed ...; In another embodiment, also the service priority threshold value can be set on BS, only the service priority more than or equal to this threshold value be carried out allocated bandwidth; The purpose of doing like this is certain the distributed bandwidth of bandwidth request reservation for the outburst type that may receive.
(2) in the above-described embodiments, BS has improved the allocated bandwidth chance of the business of low service priority to a certain extent by the bandwidth request of outburst type preferentially being carried out the mode of allocated bandwidth or part allocated bandwidth; In another embodiment, also can carry out record to the service priority of each bandwidth request and distribution condition by BS, for the bandwidth request that does not have to distribute bandwidth or do not satisfy the professional correspondence of hanging down service priority of request for allocation fully for it, sending when comprising the bandwidth request of this service priority next time, be preferably it and carry out allocated bandwidth, or be preferably its distribution portion bandwidth;
The business that no matter adopts any mode to improve low service priority obtains the chance of allocated bandwidth, all be after the bandwidth request that the business of failing to be satisfied or fail all to satisfy low service priority propose, obtain the meeting of more bandwidth dispenser by repeating to submit to, just repeat to submit to the bandwidth request mode difference, BS knows that by different modes this bandwidth allocation request is the request that repeats to submit to simultaneously.
In addition, for the bandwidth request that repeats to submit to, BS can promptly carry out increment to it and distribute by be its distribution portion bandwidth at every turn, progressively satisfies the bandwidth request of corresponding low service priority.
(3) except that carrying out bandwidth allocation request, can adopt following dual mode to realize the reclaim mechanism of bandwidth:
1) bandwidth request of employing fixed intervals type: even the service request of NTRS reduces, when remaining bandwidth occurring, can send the bandwidth request of fixed intervals type to BS, the bandwidth on demand accumulative total mean value of each service priority that comprises in this request is less than 1 and more than or equal to 0; BS can gradually reduce the bandwidth of distributing into each service priority after receiving this request.That is to say that BS judges the bandwidth on demand accumulative total mean value of each service priority, if this accumulative total mean value is less than reclaiming threshold value (1 or other smaller value), think that then residue has appearred in the bandwidth of corresponding service priority, can reduce the allocated bandwidth to corresponding service priority.Notice, because bandwidth on demand accumulative total mean value is to obtain in the average mode of accumulative total, even the therefore current request that does not have queuing adds up mean value accordingly and also needs not be equal to 0.
2) bandwidth request of employing outburst type: promptly be provided with and indicate NTRS the bandwidth request trigger condition of remaining bandwidth resource to occur, for example with the bandwidth on demand of each service priority accumulative total mean value less than a certain threshold value as the bandwidth request trigger condition, trigger bandwidth request when satisfying this trigger condition, request BS carries out bandwidth and reclaims.
After the bandwidth of carrying out BS reclaimed, by comprise each the service priority bandwidth increments field less than 0 in bandwidth request is replied, notice NTRS bandwidth was recovered.The absolute value of above-mentioned each service priority bandwidth increments field can be the amount of bandwidth that reclaims.
In addition, nervous or in the BS bandwidth resources owing to other reason, can reclaim the bandwidth of NTRS voluntarily, need not the bandwidth on demand accumulative total mean value of each service priority of comprising according to above-mentioned bandwidth request kind.
(4) in the above-described embodiments, the bandwidth request that adopts the triggering cause field to identify outburst type surpasses respective threshold by which resource service Information Statistics value and triggers; Also can realize identical purpose by alternate manner, for example, NTRS except that comprising each resource service Information Statistics value, also comprises corresponding threshold value in bandwidth request, and BS can preserve each resource service Information Statistics threshold value of NTRS etc.
(5) above-mentioned resource service Information Statistics threshold value can be provided with by BS, and promptly BS sends resource service Information Statistics threshold value update request to NTRS, and NTRS revises corresponding resource service Information Statistics threshold value according to this request.Resource service Information Statistics threshold value is provided with the frequency that can make BS dynamically adjust the bandwidth request of NTRS transmission outburst type according to the situation of current distributed bandwidth and other resource by BS.For example, when BS can distribute bandwidth seldom, the bandwidth on demand accumulative total average threshold that can hang down service priority was set to higher value, to reduce the number of times that NTRS sends the bandwidth request of this type of outburst type.

Claims (9)

1. a base station is the method that relay station distributes bandwidth, it is characterized in that, when the base station receives the bandwidth request of the resource service Information Statistics value that comprises relay station that relay station sends:
If this bandwidth request comprises and is used to indicate the indication information of the bandwidth on demand of one or more service priority more than or equal to the bandwidth on demand threshold value of corresponding business priority, then on the basis of corresponding business priority, with higher distribution priority is corresponding business priority assignment bandwidth, or the distribution portion bandwidth;
Otherwise,, can distribute allocated bandwidth to give each service priority successively as distribution priority with service priority if the base station is not provided with the service priority threshold value;
Described resource service Information Statistics value comprises the bandwidth on demand of each service priority;
Described relay station is nontransparent relay station.
2. base station as claimed in claim 1 is the method that relay station distributes bandwidth, it is characterized in that the base station is write down each bandwidth request corresponding service priority and carried out the object information of allocated bandwidth for this service priority; When receiving the bandwidth request that comprises this service priority once more, and above-mentioned allocated bandwidth object information shows when not distributing bandwidth or not satisfying request for allocation fully for it, the base station is on the basis of corresponding business priority, distribute bandwidth with higher distribution priority for this service priority, or the distribution portion bandwidth.
3. base station as claimed in claim 1 is the method that relay station distributes bandwidth, it is characterized in that described resource service Information Statistics value comprises row cache use amount and/or down buffer storage use amount; If comprising, described bandwidth request is used to indicate up buffer memory use amount and/or down buffer storage use amount indication information more than or equal to corresponding threshold value, then the speed adjustment is carried out to corresponding communication link in the base station, make the link of user terminal to the link of relay station and relay station to the base station, and/or the link rate coupling of base station to the link of relay station and relay station to user terminal.
4. base station as claimed in claim 1 is the method that relay station distributes bandwidth, it is characterized in that the base station is provided with the service priority threshold value; The base station receives the bandwidth request of the resource service Information Statistics value that comprises relay station of relay station transmission, and when this bandwidth request does not comprise the bandwidth on demand that is used to indicate one or more service priority more than or equal to the indication information of the bandwidth on demand threshold value of corresponding business priority: the base station as distributing priority, can distribute allocated bandwidth to give service priority more than or equal to this service priority threshold value with service priority successively.
5. base station as claimed in claim 1 is the method that relay station distributes bandwidth, it is characterized in that, after allocated bandwidth to relay station was finished in the base station, the bandwidth request that will comprise each service priority bandwidth increments field was replied and is sent to the corresponding relay station; Each service priority bandwidth increments field is used in reference to and is shown the amount of bandwidth that each service priority distributes.
6. base station as claimed in claim 1 is the method that relay station distributes bandwidth, it is characterized in that, the base station is provided with the recovery threshold value, when the bandwidth on demand of the service priority that comprises in the bandwidth request that the relay station that receives sends when reclaiming threshold value, the bandwidth of this service priority is reclaimed.
7. base station as claimed in claim 5 is the method that relay station distributes bandwidth, it is characterized in that, when reclaimed the bandwidth of relay station the base station, described service priority bandwidth increments field was a negative value, the amount of bandwidth of its absolute value for reclaiming.
8. base station as claimed in claim 1 is the method that relay station distributes bandwidth, it is characterized in that, the resource service Information Statistics value of described relay station obtains with accumulative total averaging method statistics, described accumulative total on average is that relay station is divided a plurality of timing statistics sheets, statistics beginning to the resource service Information Statistics value of current each the timing statistics sheet that comprises is carried out addition get the corresponding accumulative total of average acquisition average statistics value.
9. base station as claimed in claim 1 is the method that relay station distributes bandwidth, it is characterized in that, the bandwidth on demand threshold value of described service priority is by the relay station setting, or is provided with by the mode that sends the bandwidth on demand threshold value update request of service priority to relay station by the base station.
CN2007101430191A 2007-08-20 2007-08-20 Method for distributing bandwidth for relaying station by base station Expired - Fee Related CN101374284B (en)

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102461306B (en) * 2009-06-12 2015-11-25 诺基亚公司 Be convenient to the method and apparatus of via node communication
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CN104702535A (en) * 2013-12-06 2015-06-10 中国移动通信集团公司 Data transmission method, data transmission device, data transmission system and related equipment
CN105306385B (en) * 2014-07-31 2019-09-10 腾讯科技(深圳)有限公司 The control method and device of downlink network bandwidth
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CN110958179B (en) * 2019-11-27 2021-10-15 中国联合网络通信集团有限公司 Method, device and system for switching terminal part bandwidth

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1434643A (en) * 2002-01-21 2003-08-06 华为技术有限公司 Down data scheduling method for wireless grouping data transmission system
CN1735257A (en) * 2004-08-11 2006-02-15 华为技术有限公司 Method for allocating resources in communication system
EP1804430A1 (en) * 2006-01-03 2007-07-04 Samsung Electronics Co., Ltd. Method for requesting and allocating upstream bandwidth in a multi-hop relay broadband wireless access communication system
CN101009612A (en) * 2006-01-27 2007-08-01 上海贝尔阿尔卡特股份有限公司 A wireless multi-hop and self transfer back network base station and its bandwidth allocation method

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1434643A (en) * 2002-01-21 2003-08-06 华为技术有限公司 Down data scheduling method for wireless grouping data transmission system
CN1735257A (en) * 2004-08-11 2006-02-15 华为技术有限公司 Method for allocating resources in communication system
EP1804430A1 (en) * 2006-01-03 2007-07-04 Samsung Electronics Co., Ltd. Method for requesting and allocating upstream bandwidth in a multi-hop relay broadband wireless access communication system
CN101009612A (en) * 2006-01-27 2007-08-01 上海贝尔阿尔卡特股份有限公司 A wireless multi-hop and self transfer back network base station and its bandwidth allocation method

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