CN102137498B - Method and device for allocating resources in relay system - Google Patents

Method and device for allocating resources in relay system Download PDF

Info

Publication number
CN102137498B
CN102137498B CN 201010100591 CN201010100591A CN102137498B CN 102137498 B CN102137498 B CN 102137498B CN 201010100591 CN201010100591 CN 201010100591 CN 201010100591 A CN201010100591 A CN 201010100591A CN 102137498 B CN102137498 B CN 102137498B
Authority
CN
China
Prior art keywords
resource
link
resource utilization
default
threshold value
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.)
Active
Application number
CN 201010100591
Other languages
Chinese (zh)
Other versions
CN102137498A (en
Inventor
刘美
秦飞
贾保灵
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.)
China Academy of Telecommunications Technology CATT
Datang Mobile Communications Equipment Co Ltd
Original Assignee
China Academy of Telecommunications Technology CATT
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 China Academy of Telecommunications Technology CATT filed Critical China Academy of Telecommunications Technology CATT
Priority to CN 201010100591 priority Critical patent/CN102137498B/en
Publication of CN102137498A publication Critical patent/CN102137498A/en
Application granted granted Critical
Publication of CN102137498B publication Critical patent/CN102137498B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Abstract

The invention discloses a method for allocating resources in a relay system. The method is used for realizing semi-static allocation of backhaul resources and access resources. The method comprises the following steps: comparing the absolute value of the difference value of the first resource use ratio of a backhaul link and the second resource use ratio of an access link with the preset difference value threshold; if the absolute value is not more than the preset difference value threshold, allocating resources for the backhaul link and the access link according to the resource allocation parameter values respectively preset for the backhaul link and the access link; and if the absolute value is more than the preset difference value threshold, increasing the resource allocation parameter value of the link corresponding to the bigger resource user ratio and decreasing the resource allocation parameter value of the link corresponding to the smaller resource user ratio according to the comparison result of the first and second resource use ratios and allocating resources for the backhaul link and the access link according to the adjusted resource allocation parameter values. The invention also discloses a device for realizing the method.

Description

Resource allocation methods in a kind of relay system and device
Technical field
The present invention relates to the communications field, particularly relate to resource allocation methods and device in the relay system.
Background technology
Relaying (Relay) technology is a key property of Long Term Evolution (LTE-A) system of upgrading, and its introducing can improve power system capacity or covering.For Relay in the band, after Relay introduced, interface-free resources was divided into backhaul (Backhaul) resource and access (Access) resource two parts: on the Backhaul resource, macro base station is Relay node transmission data; On the Access resource, Relay node and the macro base station user that scheduling simultaneously belongs to separately on identical or different frequency resources.Macro base station is by direct (Direct) link and the grand telex network that directly belongs under it.
Prior art has the method for fixing resource distribution and the resource allocation methods of pure dynamic dispatching about the resource allocation algorithm of Backhaul.So-called fixing resource allocation algorithm refers to: interface-free resources is certain, and Backhaul resource and Access resource adopt the method for salary distribution of unified fixed proportion in whole system.Under the mode of this fixed allocation resource, if too much to the resource that Backhaul distributes, can cause distributing to a resource shrinkage of Access link on the one hand, cause the wasting of resources, on the other hand, when descending, also can cause the data volume in the Relay buffer memory too much to be overflowed.If less for the resource that Backhaul distributes, can cause Relay user when descending because the reason speed of Backhaul link can not improve; When up, can cause the data in the RelayAccess link buffer memory can not be uploaded to the base station timely and cause data to overflow.
Pure dynamic resource is distributed and is referred to: will calculate and upgrade according to the real-time resource utilization to Backhaul link and Access link such as channel condition, buffer memory size etc. in the unit interval as in each TTI, and take this as a foundation the real-time resource for Backhaul and Access distribution.Though the shortcoming that pure Dynamic Resource Allocation for Multimedia can avoid the fixed resource allocation algorithm to exist, the implementation complexity height, overhead is bigger.
Summary of the invention
The embodiment of the invention provides resource allocation methods and the device in a kind of relay system, be used for realizing semi-static distribution Backhaul resource and Access resource, the mode of distributing with respect to solid-state resource can reduce the wasting of resources and data are overflowed, and can simplify implementation complexity with respect to pure dynamic resource distribution mode.
Resource allocation methods in a kind of relay system may further comprise the steps:
The absolute value of the difference of second resource utilization of first resource utilization of Backhaul link and Access link and default difference threshold value are compared;
When being not more than default difference threshold value, according to Backhaul link and Access link respectively corresponding resource allocation parameters value be Backhaul link and Access link assignment resource;
When greater than default difference threshold value, size according to first resource utilization and second resource utilization, improve wherein the resource allocation parameters value than large resource utilance respective links, reducing the wherein resource allocation parameters value of less resource utilization respective links, is Backhaul link and Access link assignment resource according to the resource allocation parameters value after adjusting.
A kind of base station comprises:
Control module is used for first resource utilization of backhaul Backhaul link is compared with the absolute value of the difference of second resource utilization that inserts the Access link and default difference threshold value;
The link circuit resource distribution module, be used for when being not more than default difference threshold value, according to for Backhaul link and Access link respectively default resource allocation parameters value be Backhaul link and Access link assignment resource, when greater than default difference threshold value, size according to first resource utilization and second resource utilization, improve wherein the resource allocation parameters value than large resource utilance respective links, reducing the wherein resource allocation parameters value of less resource utilization respective links, is Backhaul link and Access link assignment resource according to the resource allocation parameters value after adjusting.
The embodiment of the invention judges that whether the absolute value of difference of second resource utilization of first resource utilization of Backhaul link and Access link is greater than default difference threshold value, if greater than, then adjust the resource allocation parameters value of link and according to the resource allocation parameters value Resources allocation after adjusting, otherwise according to current resource allocation parameters value Resources allocation, realized that semi-static mode is Backhaul link and Access link assignment resource, both solve the dumb variety of problems that causes of fixed allocation, solved the problems such as complexity height of pure dynamic assignment again.
Description of drawings
Fig. 1 is the primary structure figure of base station in the embodiment of the invention;
Fig. 2 is the detailed structure view of base station in the embodiment of the invention;
Fig. 3 is the structure chart of communication system in the embodiment of the invention;
Fig. 4 is the main method flow chart that resource is distributed in the embodiment of the invention;
Fig. 5 is according to the method flow diagram of resource utilization allocation of downlink resource in the embodiment of the invention;
Fig. 6 is according to the method flow diagram of data in buffer amount allocation of downlink resource in the embodiment of the invention;
Fig. 7 is the method flow diagram that distributes ascending resource in the embodiment of the invention according to resource utilization;
Fig. 8 is the method flow diagram that distributes ascending resource in the embodiment of the invention according to the data in buffer amount.
Embodiment
It is Backhaul link and Access link assignment resource that the embodiment of the invention adopts semi-static mode, has both solved the dumb variety of problems that causes of fixed allocation, has solved the problems such as complexity height of pure dynamic assignment again.
Referring to Fig. 1, the base station in the present embodiment comprises: control module 101 and link circuit resource distribution module 102.This base station can be specially evolution base station (eNB) etc.
The first resource utilization u that control module 101 is used for backhaul Backhaul link 1With the second resource utilization u that inserts the Access link 2The absolute value of difference compare with default difference threshold value Δ.Wherein, first resource utilization can be obtained by statistics by the statistical module in the base station (this figure is not shown).Second resource utilization can report the base station by signaling by Relay equipment.
Link circuit resource distribution module 102 is used for when being not more than default difference threshold value, namely | u 1-u 2|≤Δ, according to Backhaul link and Access link respectively corresponding resource allocation parameters value be Backhaul link and Access link assignment resource, when greater than default difference threshold value, namely | u 1-u 2|>Δ, size according to first resource utilization and second resource utilization, improve wherein the resource allocation parameters value than large resource utilance respective links, reducing the wherein resource allocation parameters value of less resource utilization respective links, is Backhaul link and Access link assignment resource according to the resource allocation parameters value after adjusting.| u 1-u 2| under the situation of>Δ, work as u 1>u 2The time, illustrate that Backhaul is resource-constrained, be adjusted to the resource of Backhaul link assignment on the needs, be equivalent to be adjusted into the resource of Access link assignment downwards.Work as u 1<u 2The time, illustrate that the Backhaul resource is too much, need to be adjusted to down the resource of Backhaul link assignment, be equivalent to adjust upward the resource into the Access link assignment.The amplitude of adjusting is Δ t, and the size of definite and business model, channel condition, the interface-free resources of Δ t etc. are relevant.As: than higher business, the value of adjustment amount t Δ can be bigger to delay requirement; The business smaller to delay requirement, the value of the adjustment amount Δ t that it is each can be smaller.Eat dishes without rice or wine total resources when bigger, and the value of adjustment amount Δ t also can be greatly; Otherwise the value of each adjustment amount Δ t can be smaller.If two link channel condition differences of Backhaul and Access are bigger, the value of Δ t can be bigger; If two the channel condition difference of link is less, the value of adjustment amount Δ t can be smaller.Certainly, the size of concrete adjustment amount Δ t also will obtain according to concrete simulation result or empirical value.
The resource allocation parameters value y that is initially the Backhaul link assignment is
Figure GSA00000008491600041
The resource allocation parameters value x that is initially the Access link assignment is Wherein T is the interface-free resources total amount, f 1Be the spectrum efficiency of Access link, f 2Spectrum efficiency for the Backhaul link.f 1And f 2Can obtain by emulation experiment, or rule of thumb set.
The base station also comprises initial value module 103, referring to shown in Figure 2.Initial value module 103 is used for obtaining Backhaul link and the resource allocation parameters value y of Access link and the initial value y of x 0And x 0Concrete, need be forwarded to subscriber equipment because the base station sends to the data of Relay equipment, so initial value module 103 is established f 1* x 0=f 2* y 0, and x 0+ y 0=T, and then have x 0 = f 2 f 1 + f 2 * T With y 0 = f 1 f 1 + f 2 * T .
The base station may be Backhaul link and Access link assignment ascending resource or downlink resource, when needs distribute ascending resource, first resource utilization of Backhaul link is first resource utilization of up Backhaul link, second resource utilization of Access link is second resource utilization of up Access link, for the resource of Backhaul link and Access link assignment is the ascending resource of Backhaul link and Access link.When needs allocation of downlink resource, first resource utilization of Backhaul link is first resource utilization of descending Backhaul link, second resource utilization of Access link is second resource utilization of descending Access link, for the resource of Backhaul link and Access link assignment is the downlink resource of Backhaul link and Access link.
In order to reduce the adjustment number of times of resource allocation parameters value, save the resource of base station, when needs distribute ascending resource and during greater than default difference threshold value, control module 101 also is used for judging the first resource utilization u 1Whether greater than the first default resource utilization threshold value Δ 1And the second resource utilization u 2Whether greater than the second default resource utilization threshold value Δ 2Link circuit resource distribution module 102 also is used for when all being not more than, i.e. u 1≤ Δ 1﹠amp; ﹠amp; u 2≤ Δ 2The time, according to for Backhaul link and Access link respectively default resource allocation parameters value be Backhaul link and Access link assignment resource, otherwise, determine resource utilization link corresponding bigger in first resource utilization and second resource utilization, and improve the resource allocation parameters value of this link and the resource allocation parameters value of another link of reduction.Δ 1And Δ 2Be respectively the minimum threshold of Backhaul link and Access link circuit resource utilance, determining of this threshold value is relevant with type of service, delay requirement etc.As: full buffer memory (full buffer) business, Δ 1And Δ 2Value can establish higherly, for the less business of traffic carrying capacity, as VoIP business, Δ 1And Δ 2Value low relatively.
Perhaps, distribute ascending resource and during greater than default difference threshold value, control module 101 also is used for judging data in buffer amount Buffer on the Relay Access link when needs RelayWhether greater than the first default buffer threshold value Δ 4Link circuit resource distribution module 102 also be used for greater than the time, i.e. Buffer Relay>Δ 4The time, then determine bigger resource utilization link corresponding in first resource utilization and second resource utilization, and improve the resource allocation parameters value of this link and reduce the resource allocation parameters value of another link, when being not more than, i.e. Buffer Relay≤ Δ 4The time, according to for Backhaul link and Access link respectively default resource allocation parameters value be Backhaul link and Access link assignment resource.Wherein, Δ 4Be the minimum threshold of Relay Access link buffer memory, determining of this threshold value is relevant with number of users, user business type, delay requirement and channel condition etc.Buffer RelayBy Relay user's (user who directly connects Relay equipment) statistical measurement and report Relay equipment, send to the base station by Relay equipment then.
First resource utilization greater than the first default resource utilization threshold value and/or second resource utilization greater than the second default resource utilization threshold value, or RelayAccess link data in buffer amount is greater than the first default buffer threshold value, all illustrate resource-constrained, might be that Backhaul is resource-constrained, also might be that Access is resource-constrained.When Backhaul is resource-constrained, can cause the data in the Relay Access link buffer memory can not be uploaded to the base station timely and cause the Relay side data to overflow.When Access is resource-constrained, can cause the user because resource is not enough, speed is lower.The Backhaul resource too much causes the wasting of resources, and system effectiveness is lower.Need to adjust the resource allocation parameters value this moment, to adjust the resource of distributing.On the contrary, the Backhaul link has relative sufficient resources to transmit data with the Access link, and the possibility that data are overflowed is less, can not adjust the resource allocation parameters value.Other implementation can also be arranged, guaranteeing that enough resource transmission data are arranged, avoid the least possible for the scheme of Backhaul link assignment resource all is applicable to present embodiment under the prerequisite that data overflow, not enumerate one by one herein.
Ascending resource is similar with distributing, when needing the allocation of downlink resource and during greater than default difference threshold value, control module 101 also be used for judging first resource utilization whether greater than the first default resource utilization threshold value and second resource utilization whether greater than the second resource utilization threshold value of presetting.Link circuit resource distribution module 102 also is used for when all being not more than, according to Backhaul link and Access link respectively corresponding resource allocation parameters value be Backhaul link and Access link assignment resource, otherwise, determine resource utilization link corresponding bigger in first resource utilization and second resource utilization, and improve the resource allocation parameters value of this link and the resource allocation parameters value of another link of reduction.
Perhaps, when needing the allocation of downlink resource and during greater than default difference threshold value, control module 101 also is used for judging base station data in buffer amount Buffer ENBWhether greater than the second default buffer threshold value Δ 3Link circuit resource distribution module 102 also be used for greater than the time, i.e. Buffer ENB>Δ 3The time, then determine bigger resource utilization link corresponding in first resource utilization and second resource utilization, and improve the resource allocation parameters value of this link and reduce the resource allocation parameters value of another link, when being not more than, i.e. Buffer ENB≤ Δ 3The time, according to Backhaul link and Access link respectively corresponding resource allocation parameters value be Backhaul link and Access link assignment resource.Δ 3Be the minimum threshold of base station side buffer memory, determining of this threshold value is relevant with type of service, delay requirement and channel condition etc.
The base station also comprises: interface module 104 and memory module 105.
Interface module 104 is used for mutual with Relay equipment, receives second resource utilization that Relay equipment sends.Interface module 104 also is used for and grand user interactions.
Memory module 105 is used for data cached, and sends the data in buffer amount to control module 101.
Above base station is that the resource of Backhaul link and Access link assignment is the total resources on the link.When the base station is connected with a plurality of Relay equipment, also need the resource of Backhaul link is assigned to a plurality of Relay equipment.Then, the base station also comprises: device resource allocation module 106 is used for and will distributes to a plurality of Relay equipment for the resource of Backhaul link assignment.
Device resource allocation module 106 has multiple specific implementation, as giving a plurality of Relay equipment for the resource mean allocation of Backhaul link assignment; Perhaps account for Relay total number of users purpose ratio under a plurality of Relay equipment according to number of users under each Relay equipment, the Backhaul link circuit resource is distributed to a plurality of Relay equipment; Perhaps according to a plurality of Relay equipment corresponding service amount separately, the Backhaul link circuit resource is distributed to a plurality of Relay equipment.Device resource allocation module 106 can also have other implementation, and as distributing resource according to channel quality etc., any resource distribution mode all is applicable to present embodiment, does not enumerate one by one herein.
Base station, Relay equipment, grand user and Relay user's annexation is referring to shown in Figure 3.
More than introduced internal structure and the function of base station, below the resource allocation methods of mainly being realized by the base station has been introduced.
Referring to Fig. 4, the main method flow process that resource is distributed in the present embodiment is as follows:
Step 401: the absolute value of the difference of second resource utilization of first resource utilization of Backhaul link and Access link and default difference threshold value are compared.
Step 402: when being not more than default difference threshold value, according to for Backhaul link and Access link respectively default resource allocation parameters value be Backhaul link and Access link assignment resource.
Step 403: when greater than default difference threshold value, size according to first resource utilization and second resource utilization, improve wherein the resource allocation parameters value than large resource utilance respective links, reducing the wherein resource allocation parameters value of less resource utilization respective links, is Backhaul link and Access link assignment resource according to the resource allocation parameters value after adjusting.
For more rational Resources allocation, present embodiment has multiple specific implementation, introduces the implementation procedure that resource is distributed in detail below by 4 embodiment.
At first provide the initial value y of the resource allocation parameters value of Backhaul link and Access link 0And x 0, the acquisition of initial value is as follows: initial value module 103 is established f 1* x 0=f 2* y 0, and x 0+ y 0=T, and then have x 0 = f 2 f 1 + f 2 * T With y 0 = f 1 f 1 + f 2 * T ; Initial value for the resource allocation parameters value y of Backhaul link assignment y = y 0 = f 1 f 1 + f 2 * T ; Initial value for the resource allocation parameters value x of Access link assignment x = x 0 = f 2 f 1 + f 2 * T ; Wherein T is the interface-free resources total amount, f 1Be the spectrum efficiency of Access link, f 2Spectrum efficiency for the Backhaul link.f 1And f 2Can obtain by emulation experiment, or rule of thumb set.
Referring to Fig. 5, as follows according to the method flow of resource utilization allocation of downlink resource in the present embodiment:
The second resource utilization u of the descending Access link of step 501:Relay device statistics 2, and send it to the base station by signaling.
Step 502: the base station is with the first resource utilization u of descending Backhaul link 1With the second resource utilization u 2Compare, judge the first resource utilization u 1With the second resource utilization u 2The absolute value of difference whether greater than default difference threshold value Δ, if then continue step 503, otherwise continue step 504.
Step 503: the first resource utilization u is judged in the base station 1Whether greater than the first default resource utilization threshold value Δ 1And the second resource utilization u 2Whether greater than the second default resource utilization threshold value Δ 2, if all be not more than, then continue step 504, otherwise continue step 505.
Step 504: the base station according to descending Backhaul link and descending Access link respectively corresponding resource allocation parameters value y and x be descending Backhaul link and descending Access link assignment resource.
Step 505: judge the first resource utilization u 1Whether greater than the second resource utilization u 2If,, then continue step 506, otherwise continue step 507.
Step 506: the resource allocation parameters value y of descending Backhaul link is improved default amplitude, ao t, and the resource allocation parameters value x of descending Access link is reduced this amplitude, ao t.That is, y=y+ Δ t, x=x-Δ t.
Step 507: the resource allocation parameters value y of descending Backhaul link is reduced default amplitude, ao t, and the resource allocation parameters value x of descending Access link is improved this amplitude, ao t.That is, y=y-Δ t, x=x+ Δ t.
Step 508: be descending Backhaul link and descending Access link assignment resource according to the resource allocation parameters value after adjusting.
Present embodiment is after carry out step 508, and communication system operation a period of time is when arriving a default resource allocation cycle, recomputate statistics such as resource utilization, be equivalent to repeating step 501, and then judge, repeating step 502, and carry out the subsequent flows journey.
After step 504 and 508, can further according to Relay equipment and grand user the resource of descending Backhaul link be segmented.
Referring to Fig. 6, as follows according to the method flow of data in buffer amount allocation of downlink resource in the present embodiment:
The second resource utilization u of the descending Access link of step 601:Relay device statistics 2, and send it to the base station by signaling.
Step 602: the base station is with the first resource utilization u of descending Backhaul link 1With the second resource utilization u 2Compare, judge the first resource utilization u 1With the second resource utilization u 2The absolute value of difference whether greater than default difference threshold value Δ, if then continue step 603, otherwise continue step 604.
Step 603: base station data in buffer amount Buffer is judged in the base station ENBWhether greater than the second default buffer threshold value Δ 3If,, then continue step 605, otherwise continue step 604.
Step 604: the base station according to descending Backhaul link and descending Access link respectively corresponding resource allocation parameters value be descending Backhaul link and descending Access link assignment resource.
Step 605: judge the first resource utilization u 1Whether greater than the second resource utilization u 2If,, then continue step 606, otherwise continue step 607.
Step 606: the resource allocation parameters value y of descending Backhaul link is improved default amplitude, ao t, and the resource allocation parameters value x of descending Access link is reduced amplitude, ao t.
Step 607: the resource allocation parameters value y of descending Backhaul link is reduced default amplitude, ao t, and with the resource allocation parameters value x increase rate Δ t of descending Access link.
Step 608: be descending Backhaul link and descending Access link assignment resource according to the resource allocation parameters value after adjusting.
Present embodiment communication system operation a period of time, when arriving a default resource allocation cycle, recomputates resource utilization and base station data in buffer amount Buffer after carry out step 608 ENBEtc. statistics such as statistics, be equivalent to repeating step 601, and then judge, repeating step 602, and carry out the subsequent flows journey.
After step 604 and 608, can further according to Relay equipment and grand user the resource of descending Backhaul link be segmented.
Referring to Fig. 7, distribute the method flow of ascending resource as follows according to resource utilization in the present embodiment:
The second resource utilization u of the up Access link of step 701:Relay device statistics 2, and send it to the base station by signaling.
Step 702: the base station is with the first resource utilization u of up Backhaul link 1With the second resource utilization u 2Compare, judge the first resource utilization u 1With the second resource utilization u 2The absolute value of difference whether greater than default difference threshold value Δ, if then continue step 703, otherwise continue step 704.
Step 703: the first resource utilization u is judged in the base station 1Whether greater than the first default resource utilization threshold value Δ 1And the second resource utilization u 2Whether greater than the second default resource utilization threshold value Δ 2, if all be not more than, then continue step 704, otherwise continue step 705.
Step 704: the base station according to up Backhaul link and up Access link respectively corresponding resource allocation parameters value be up Backhaul link and up Access link assignment resource.
Step 705: judge the first resource utilization u 1Whether greater than the second resource utilization u 2If,, then continue step 706, otherwise continue step 707.
Step 706: the resource allocation parameters value y of up Backhaul link is improved default amplitude, ao t, and the resource allocation parameters value x of up Access link is reduced amplitude, ao t.
Step 707: the resource allocation parameters value y of up Backhaul link is reduced default amplitude, ao t, and with the resource allocation parameters value x increase rate Δ t of up Access link.
Step 708: be up Backhaul link and up Access link assignment resource according to the resource allocation parameters value after adjusting.
Present embodiment is after carry out step 708, and communication system operation a period of time is when arriving a default resource allocation cycle, recomputate statistics such as resource utilization, be equivalent to repeating step 701, and then judge, be equivalent to repeating step 702, and carry out the subsequent flows journey.
After step 704 and 708, can be further the resource of up Backhaul link be assigned to Relay equipment and grand user.
Referring to Fig. 8, distribute the method flow of ascending resource as follows according to the data in buffer amount in the present embodiment:
The second resource utilization u of the up Access link of step 801:Relay device statistics 2With the buffer data size of Relay reporting of user, and by signaling two information are sent to the base station.
Step 802: the base station is with the first resource utilization u of up Backhaul link 1With the second resource utilization u 2Compare, judge the first resource utilization u 1With the second resource utilization u 2The absolute value of difference whether greater than default difference threshold value Δ, if then continue step 803, otherwise continue step 804.
Step 803: Relay side data in buffer amount Buffer is judged in the base station RelayWhether greater than the first default buffer threshold value Δ 4If,, then continue step 805, otherwise continue step 804.Relay side data in buffer amount Buffer RelayBe Relay user's statistics and the buffer data size that reports Relay equipment, and send to the base station by Relay equipment.
Step 804: the base station according to up Backhaul link and up Access link respectively corresponding resource allocation parameters value be up Backhaul link and up Access link assignment resource.
Step 805: judge the first resource utilization u 1Whether greater than the second resource utilization u 2If,, then continue step 806, otherwise continue step 807.
Step 806: the resource allocation parameters value y of up Backhaul link is improved default amplitude, ao t, and the resource allocation parameters value x of up Access link is reduced amplitude, ao t.
Step 807: the resource allocation parameters value y of up Backhaul link is reduced default amplitude, ao t, and with the resource allocation parameters value x increase rate Δ t of up Access link.
Step 808: be up Backhaul link and up Access link assignment resource according to the resource allocation parameters value after adjusting.
Present embodiment is after carry out step 808, communication system operation a period of time, when arriving a default resource allocation cycle, recomputate statistics such as resource utilization and Relay Access link data in buffer amount, be equivalent to repeating step 801, and then judge, repeating step 802, and carry out the subsequent flows journey.
After step 804 and 808, can be further the resource of up Backhaul link be assigned to Relay equipment and grand user.
Be used for realizing that the software of the embodiment of the invention can be stored in storage mediums such as floppy disk, hard disk, CD and flash memory.
It is Backhaul link and Access link assignment resource that the embodiment of the invention adopts semi-static mode, has both solved the dumb variety of problems that causes of fixed allocation, has solved the problems such as complexity height of pure dynamic assignment again.The embodiment of the invention is carried out initial configuration based on Backhaul and Access link channel condition, again according to the semi-static adjustment of the resource utilization of base station side in every residential quarter/Relay Access link buffer data size size, Backhaul and Access link be updated to the resource of Backhaul link assignment.Can guarantee can not distribute on the Backhaul link the too much resource of Relay like this, improved resource utilization, in the time of guaranteeing descending Access link transmission again, Relay user can not influence Relay user's scheduling because of there not being enough data to send in the Relay equipment, can be owing to Backhaul be not resource-constrained when up, make the overabundance of data in the RelayAccess link buffer memory and overflow.Resource allocation methods with respect to fixing has promoted system effectiveness and fairness; With respect to the resource allocation methods of pure dynamic dispatching, implementation complexity is lower, and expense is less.
Obviously, those skilled in the art can carry out various changes and modification to the present invention and not break away from the spirit and scope of the present invention.Like this, if of the present invention these are revised and modification belongs within the scope of claim of the present invention and equivalent technologies thereof, then the present invention also is intended to comprise these changes and modification interior.

Claims (13)

1. the resource allocation methods in the relay system is characterized in that, may further comprise the steps:
First resource utilization of backhaul Backhaul link is compared with the absolute value of the difference of second resource utilization that inserts the Access link and default difference threshold value;
When being not more than default difference threshold value, according to Backhaul link and Access link respectively corresponding resource allocation parameters value be Backhaul link and Access link assignment resource;
When greater than default difference threshold value, size according to first resource utilization and second resource utilization, improve wherein the resource allocation parameters value than large resource utilance respective links, reducing the wherein resource allocation parameters value of less resource utilization respective links, is Backhaul link and Access link assignment resource according to the resource allocation parameters value after adjusting.
2. the method for claim 1 is characterized in that, also comprises step: will distribute to a plurality of relaying Relay equipment for the resource of Backhaul link assignment.
3. method as claimed in claim 2 is characterized in that, will comprise for the step that the resource of Backhaul link assignment is distributed to a plurality of Relay equipment:
To give a plurality of Relay equipment for the resource mean allocation of Backhaul link assignment; Perhaps
Account for Relay total number of users purpose ratio under a plurality of Relay equipment according to number of users under each Relay equipment, the Backhaul link circuit resource is distributed to a plurality of Relay equipment; Perhaps
According to a plurality of Relay equipment corresponding service amount separately, the Backhaul link circuit resource is distributed to a plurality of Relay equipment.
4. as each described method in the claim 1 to 3, it is characterized in that the resource allocation parameters value that is initially the Backhaul link assignment is
Figure FSB00001064958600011
The resource allocation parameters value that is initially the Access link assignment is Wherein T is the interface-free resources total amount, f 1Be the spectrum efficiency of Access link, f 2Spectrum efficiency for the Backhaul link.
5. the method for claim 1 is characterized in that, the amplitude of the amplitude of the resource allocation parameters value of raising and the resource allocation parameters value of reduction all is to determine according to one in channel condition, traffic performance and the interface-free resources size or multinomial factor.
6. as each described method in the claim 1 to 3, it is characterized in that, when needs distribute ascending resource, first resource utilization of Backhaul link is first resource utilization of up Backhaul link, second resource utilization of Access link is second resource utilization of up Access link, for the resource of Backhaul link and Access link assignment is the ascending resource of Backhaul link and Access link;
When needs allocation of downlink resource, first resource utilization of Backhaul link is first resource utilization of descending Backhaul link, second resource utilization of Access link is second resource utilization of descending Access link, for the resource of Backhaul link and Access link assignment is the downlink resource of Backhaul link and Access link.
7. method as claimed in claim 6, it is characterized in that, when needs distribute ascending resource and during greater than default difference threshold value, judge first resource utilization whether greater than the first default resource utilization threshold value and second resource utilization whether greater than the second default resource utilization threshold value, when first resource utilization is not more than the first default resource utilization threshold value and second resource utilization and is not more than the second default resource utilization threshold value, according to for Backhaul link and Access link respectively default resource allocation parameters value be Backhaul link and Access link assignment resource, in first resource utilization greater than the first default resource utilization threshold value, when perhaps second resource utilization is greater than the default second resource utilization threshold value, determine resource utilization link corresponding bigger in first resource utilization and second resource utilization, and improve the resource allocation parameters value of this link and the resource allocation parameters value of another link of reduction; Perhaps
When needs distribute ascending resource and during greater than default difference threshold value, judge that whether the data in buffer amount is greater than the first default buffer threshold value on the RelayAccess link, if greater than, then determine bigger resource utilization link corresponding in first resource utilization and second resource utilization, and improve the resource allocation parameters value of this link and reduce the resource allocation parameters value of another link, otherwise according to for Backhaul link and Access link respectively default resource allocation parameters value be Backhaul link and Access link assignment resource.
8. method as claimed in claim 6, it is characterized in that, when needing the allocation of downlink resource and during greater than default difference threshold value, judge first resource utilization whether greater than the first default resource utilization threshold value and second resource utilization whether greater than the second default resource utilization threshold value, when all being not more than, according to for Backhaul link and Access link respectively default resource allocation parameters value be Backhaul link and Access link assignment resource, otherwise, determine resource utilization link corresponding bigger in first resource utilization and second resource utilization, and improve the resource allocation parameters value of this link and the resource allocation parameters value of another link of reduction; Perhaps
When needing the allocation of downlink resource and during greater than default difference threshold value, judge that whether base station side data in buffer amount is greater than the second default buffer threshold value, if greater than, then determine bigger resource utilization link corresponding in first resource utilization and second resource utilization, and improve the resource allocation parameters value of this link and reduce the resource allocation parameters value of another link, otherwise according to for Backhaul link and Access link respectively default resource allocation parameters value be Backhaul link and Access link assignment resource.
9. a base station is characterized in that, comprising:
Control module is used for first resource utilization of backhaul Backhaul link is compared with the absolute value of the difference of second resource utilization that inserts the Access link and default difference threshold value;
The link circuit resource distribution module, be used for when being not more than default difference threshold value, according to for Backhaul link and Access link respectively default resource allocation parameters value be Backhaul link and Access link assignment resource, when greater than default difference threshold value, size according to first resource utilization and second resource utilization, improve wherein the resource allocation parameters value than large resource utilance respective links, reducing the wherein resource allocation parameters value of less resource utilization respective links, is Backhaul link and Access link assignment resource according to the resource allocation parameters value after adjusting.
10. base station as claimed in claim 9, it is characterized in that, control module also is used for, when needs distribute ascending resource and during greater than default difference threshold value, judge first resource utilization whether greater than the first default resource utilization threshold value and second resource utilization whether greater than the second default resource utilization threshold value; The link circuit resource distribution module also is used for when all being not more than, according to for Backhaul link and Access link respectively default resource allocation parameters value be Backhaul link and Access link assignment resource, otherwise, determine resource utilization link corresponding bigger in first resource utilization and second resource utilization, and improve the resource allocation parameters value of this link and the resource allocation parameters value of another link of reduction; Perhaps
Control module also is used for, when needs distribute ascending resource and during greater than default difference threshold value, judge that whether the data in buffer amount is greater than the first buffer threshold value of presetting on the Relay Access link; The link circuit resource distribution module also be used for greater than the time, then determine bigger resource utilization link corresponding in first resource utilization and second resource utilization, and improving the resource allocation parameters value of this link and the resource allocation parameters value of another link of reduction, basis is that the resource allocation parameters value that Backhaul link and Access link are preset respectively is Backhaul link and Access link assignment resource when being not more than.
11. base station as claimed in claim 9, it is characterized in that, control module also is used for, when needing the allocation of downlink resource and during greater than default difference threshold value, judge first resource utilization whether greater than the first default resource utilization threshold value and second resource utilization whether greater than the second default resource utilization threshold value; The link circuit resource distribution module also is used for when first resource utilization is not more than the first default resource utilization threshold value and second resource utilization and is not more than the second default resource utilization threshold value, according to for Backhaul link and Access link respectively default resource allocation parameters value be Backhaul link and Access link assignment resource, in first resource utilization greater than the first default resource utilization threshold value, when perhaps second resource utilization is greater than the default second resource utilization threshold value, determine resource utilization link corresponding bigger in first resource utilization and second resource utilization, and improve the resource allocation parameters value of this link and the resource allocation parameters value of another link of reduction; Perhaps
Control module also is used for, when needing the allocation of downlink resource and during greater than default difference threshold value, judging that whether base station side data in buffer amount is greater than the second buffer threshold value of presetting; The link circuit resource distribution module also be used for greater than the time, then determine bigger resource utilization link corresponding in first resource utilization and second resource utilization, and improve the resource allocation parameters value of this link and reduce the resource allocation parameters value of another link, when being not more than, according to for Backhaul link and Access link respectively default resource allocation parameters value be Backhaul link and Access link assignment resource.
12. base station as claimed in claim 9 is characterized in that, also comprises: the device resource allocation module is used for and will distributes to a plurality of relaying Relay equipment for the resource of Backhaul link assignment.
13. base station as claimed in claim 12 is characterized in that, the device resource allocation module specifically is used for and will gives a plurality of Relay equipment for the resource mean allocation of Backhaul link assignment; Perhaps account for Relay total number of users purpose ratio under a plurality of Relay equipment according to number of users under each Relay equipment, the Backhaul link circuit resource is distributed to a plurality of Relay equipment; Perhaps according to a plurality of Relay equipment corresponding service amount separately, the Backhaul link circuit resource is distributed to a plurality of Relay equipment.
CN 201010100591 2010-01-22 2010-01-22 Method and device for allocating resources in relay system Active CN102137498B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 201010100591 CN102137498B (en) 2010-01-22 2010-01-22 Method and device for allocating resources in relay system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 201010100591 CN102137498B (en) 2010-01-22 2010-01-22 Method and device for allocating resources in relay system

Publications (2)

Publication Number Publication Date
CN102137498A CN102137498A (en) 2011-07-27
CN102137498B true CN102137498B (en) 2013-08-14

Family

ID=44297131

Family Applications (1)

Application Number Title Priority Date Filing Date
CN 201010100591 Active CN102137498B (en) 2010-01-22 2010-01-22 Method and device for allocating resources in relay system

Country Status (1)

Country Link
CN (1) CN102137498B (en)

Families Citing this family (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103096322A (en) * 2011-10-28 2013-05-08 中兴通讯股份有限公司 Configuration method and system of backhaul link resource in wireless resource reassortment
CN103974374B (en) * 2013-01-29 2018-02-23 中国移动通信集团公司 A kind of connection control method and device
CN105491666B (en) * 2014-09-15 2019-02-05 中国移动通信集团公司 Determination method, replacing options and the relevant apparatus of sub-frame configuration to be replaced
EP3291621A4 (en) 2015-05-23 2018-04-25 Huawei Technologies Co., Ltd. Resource allocation method, apparatus and system, and base station
WO2018073633A1 (en) * 2016-10-21 2018-04-26 Nokia Solutions And Networks Oy Resource allocation in cellular networks
CN106878920B (en) * 2016-12-29 2017-12-22 建荣半导体(深圳)有限公司 Data forwarding method, its device, bluetooth equipment and audio frequency transmission method
CN108810902B (en) * 2017-04-28 2021-08-03 普天信息技术有限公司 Wireless backhaul resource adjustment method and base station
CN112218339B (en) * 2020-09-30 2023-03-14 三维通信股份有限公司 Relay transmission scheduling method, device, storage medium and electronic equipment

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101507144B (en) * 2006-08-18 2014-01-29 富士通株式会社 Wireless data frame structure between nodes
CN101400066A (en) * 2007-09-26 2009-04-01 大唐移动通信设备有限公司 Method, relay and base station for data transmission on relay link
US9078270B2 (en) * 2008-07-03 2015-07-07 Qualcomm Incorporated Opportunistic relay scheduling in wireless communications

Also Published As

Publication number Publication date
CN102137498A (en) 2011-07-27

Similar Documents

Publication Publication Date Title
CN102137498B (en) Method and device for allocating resources in relay system
CN101340711B (en) Scheduling information uploading method for multi-carrier reinforced uplink access system
CN102655681B (en) Scheduling method
CN101043638B (en) Base station dispatcher, resource distribution module and dispatch control method for HSUPA
CN102791002B (en) Based on the resource allocation methods of efficiency in LTE network
CN105188150A (en) Method and system for lowering long term evolution (LTE) uplink data transmission delay
CN102098792B (en) Service quality-based resource round-robin scheduling method
CN101340712A (en) Scheduling information uploading method for multi-carrier reinforced uplink access system
CN101527965B (en) Method and system for improving uplink service quality
CN104754587A (en) Interference coordinating method and device for LTE (Long Term Evolution) system
CN102404838B (en) Uplink resource allocation method and uplink resource allocation device
CN105163388A (en) Website and channel selection and aggregation method thereof
CN101795481A (en) Method for accessing client to service cell in long term evolution advanced system
CN100579046C (en) The control method of sleep pattern and device in the communication system
CN102065483B (en) Flow controlling method and device
CN101883363B (en) Resource allocation method, device and system
CN103428862A (en) Resource distribution method and device
CN102316519B (en) Method and device for regulating value of physical control format indicator channel
Chen et al. QoS-based resource allocation scheme for Device-to-Device (D2D) communication underlaying cellular network in uplink
CN102547988B (en) Distributing method and distributing device for temporary block flow
CN104284426A (en) Pico-cell uplink and downlink subframe rearrangement method in TD-LTE heterogeneous network system
CN102238647B (en) Spreading factor allocation method
CN105611572B (en) A kind of method for reconfiguration and system of relay sub-frame
CN100502585C (en) Method for interface call admission control in communication system
KR20170107985A (en) Method for managing data transmission power in mobile cellular networks

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C14 Grant of patent or utility model
GR01 Patent grant
CP01 Change in the name or title of a patent holder

Address after: 100191 No. 40, Haidian District, Beijing, Xueyuan Road

Patentee after: CHINA ACADEMY OF TELECOMMUNICATIONS TECHNOLOGY

Address before: 100191 No. 40, Haidian District, Beijing, Xueyuan Road

Patentee before: CHINA ACADEMY OF TELECOMMUNICATIONS TECHNOLOGY

CP01 Change in the name or title of a patent holder
TR01 Transfer of patent right

Effective date of registration: 20210526

Address after: 100085 1st floor, building 1, yard 5, Shangdi East Road, Haidian District, Beijing

Patentee after: DATANG MOBILE COMMUNICATIONS EQUIPMENT Co.,Ltd.

Address before: 100191 No. 40, Haidian District, Beijing, Xueyuan Road

Patentee before: CHINA ACADEMY OF TELECOMMUNICATIONS TECHNOLOGY

TR01 Transfer of patent right