CN102036404B - Method for transmitting data and user equipment - Google Patents

Method for transmitting data and user equipment Download PDF

Info

Publication number
CN102036404B
CN102036404B CN201010606797.1A CN201010606797A CN102036404B CN 102036404 B CN102036404 B CN 102036404B CN 201010606797 A CN201010606797 A CN 201010606797A CN 102036404 B CN102036404 B CN 102036404B
Authority
CN
China
Prior art keywords
semi
business datum
sent
persistent scheduling
information
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
CN201010606797.1A
Other languages
Chinese (zh)
Other versions
CN102036404A (en
Inventor
陈力
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.)
Huawei Technologies Co Ltd
Original Assignee
Huawei Technologies Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Huawei Technologies Co Ltd filed Critical Huawei Technologies Co Ltd
Priority to CN201010606797.1A priority Critical patent/CN102036404B/en
Publication of CN102036404A publication Critical patent/CN102036404A/en
Priority to PCT/CN2011/084650 priority patent/WO2012083890A1/en
Application granted granted Critical
Publication of CN102036404B publication Critical patent/CN102036404B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/12Wireless traffic scheduling

Landscapes

  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Mobile Radio Communication Systems (AREA)

Abstract

The invention discloses a method for transmitting data and user equipment, which are applied to communication technology field. In the method for transmitting the data, the user equipment sends semi-static dispatching business data to be transmitted through an uplink data channel according to bearing information when determining that current TTI (Transmission Time Interval) has semi-static dispatching resources according to the bearing information. As the bearing information in the invention does not contain other business information beyond the semi-static dispatching business information, the transmitted data is sure to be the semi-static dispatching business data in the bearing information when existing the semi-static dispatching resources, and the semi-static dispatching resources can not be occupied by other business data so as to ensure the transmission quality of the semi-static dispatching business data.

Description

A kind of data transmission method for uplink and subscriber equipment
Technical field
The present invention relates to communication technical field, particularly a kind of data transmission method for uplink and subscriber equipment.
Background technology
In communication system, adopt the method for dynamic dispatching to transmit data, the base station can be at each data transmission period interval/transmission (Transmit Time Interval in period, TTI), send the configuration messages of dynamic dispatching resource to subscriber equipment by control channel, the base station is user device configuration dynamic dispatching resource at each TTI like this, makes subscriber equipment use the dynamic dispatching resource of uplink data channels to send data.
At long evolving system (Long Term Evolution, LTE) defined semi-persistent scheduling in, the base station only needs to send a configuration messages to subscriber equipment by control channel, the information that in configuration messages, comprises semi-static scheduling resources, such as the information such as size of data of resource interval service time, resource bearing, just finished the configuration of base station to the semi-static resource of subscriber equipment; Subscriber equipment after uplink data channels in can use semi-static scheduling resources to send data, the resource of so just having saved control channel; Can carrying the low discharge of some fixed intervals, fixed size data message by semi-static scheduling resources, professional (Voice over Internet Protocol VoIP) during business etc., can improve the quality of transfer of data as the procotol voice.
But in the LTE system, subscriber equipment is that the priority orders according to data sends when sending data in uplink data channels, following situation will occur like this: other business that has outside the VoIP of higher priority has taken semi-static scheduling resources, and make that the lower VoIP business of priority is not to carry transmission with semi-static scheduling resources, cause the delay variation of VoIP business, thereby cause the voice quality of transmission to descend.
Summary of the invention
The invention provides a kind of data transmission method for uplink and subscriber equipment, guarantee the transmission quality of VoIP business.
On the one hand, provide a kind of data transmission method for uplink, having comprised:
Obtain the beared information of semi-static scheduling resources, described beared information does not comprise other business information outside the semi-persistent scheduling business;
When determining current transfer of data period, TTI had semi-static scheduling resources according to described beared information, according to described beared information semi-persistent scheduling business datum to be sent semi-static scheduling resources by uplink data channels is sent.
On the one hand, provide a kind of subscriber equipment, having comprised:
The carrying acquiring unit, for the beared information that obtains semi-static scheduling resources, described beared information does not comprise other business information outside the semi-persistent scheduling business;
Data transmission unit, when being used for determining current transfer of data period, TTI having semi-static scheduling resources according to the beared information that described carrying acquiring unit obtains, according to described beared information semi-persistent scheduling business datum to be sent semi-static scheduling resources by uplink data channels is sent.
In the embodiment of the invention, determine that according to beared information current T TI has semi-static scheduling resources, according to beared information semi-persistent scheduling business datum to be sent semi-static scheduling resources by uplink data channels is sent.Because beared information does not comprise other business information outside the semi-persistent scheduling business in the present embodiment, make that like this data that send are the semi-persistent scheduling business datum in the beared information certainly when semi-static scheduling resources is arranged, do not take semi-static scheduling resources and do not have other business datums, thereby guaranteed the transmission quality of semi-persistent scheduling business datum.
Description of drawings
In order to be illustrated more clearly in the embodiment of the invention or technical scheme of the prior art, to do to introduce simply to the accompanying drawing of required use in embodiment or the description of the Prior Art below, apparently, accompanying drawing in describing below only is some embodiments of the present invention, for those of ordinary skills, under the prerequisite of not paying creative work, can also obtain other accompanying drawing according to these accompanying drawings.
Fig. 1 is the flow chart of a kind of data transmission method for uplink of providing of the embodiment of the invention;
Fig. 2 is the flow chart of the another kind of data transmission method for uplink that provides of the embodiment of the invention;
Fig. 3 is the flow chart of the another kind of data transmission method for uplink that provides of the embodiment of the invention;
Fig. 4 is the structural representation of a kind of subscriber equipment of providing of the embodiment of the invention;
Fig. 5 is the structural representation of the another kind of subscriber equipment that provides of the embodiment of the invention;
Fig. 6 is the structural representation of the another kind of subscriber equipment that provides of the embodiment of the invention.
Embodiment
Below in conjunction with the accompanying drawing in the embodiment of the invention, the technical scheme in the embodiment of the invention is clearly and completely described, obviously, described embodiment only is the present invention's part embodiment, rather than whole embodiment.Based on the embodiment among the present invention, those of ordinary skills belong to the scope of protection of the invention not making the every other embodiment that obtains under the creative work prerequisite.
The embodiment of the invention provides a kind of customer equipment data sending method, and flow chart comprises as shown in Figure 1:
101, obtain the beared information of semi-static scheduling resources, this beared information does not comprise other business information outside the semi-persistent scheduling business;
The semi-persistent scheduling business refers to that some need fixed intervals to send the low discharge business of fixed size data message, and as business such as VoIP business, when these business sent by the semi-static scheduling resources carrying, data transmission quality can improve.And beared information refers to the information that semi-static scheduling resources can the loaded service data, beared information does not comprise other business information outside the semi-persistent scheduling business, and can comprise the information relevant with semi-static scheduling resources carrying, for example information of one or more business such as VoIP, the size of data that resource is used interval and resource bearing.That is to say that semi-static scheduling resources can not carry other business datum outside the semi-persistent scheduling business.
It is the configuration control that is subjected to network side that subscriber equipment sends data by uplink data channels, and the configuration messages that the base station can send semi-static scheduling resources by control channel comprises the beared information of semi-static scheduling resources to subscriber equipment in this configuration messages; Subscriber equipment can carry out resource distribution according to the configuration messages that receives in this locality, this process is the activation of semi-static scheduling resources.
102, according to the beared information that obtains in the step 101, when determining that current TTI has semi-static scheduling resources, according to beared information semi-persistent scheduling business datum to be sent semi-static scheduling resources by uplink data channels is sent.
Be appreciated that, after semi-static scheduling resources activates, be not at each TTI semi-static scheduling resources to be arranged, but just have semi-static scheduling resources every regular time, here said regular time is that the base station is configured in local subscriber apparatus by configuration messages, and namely the resource in the beared information is used at interval.Determine at interval that when using according to the resource in the beared information current TTI has semi-static scheduling resources, and it is current when having the multiple business data to send by uplink data channels, subscriber equipment can not send data according to the priority orders of data, but with the professional corresponding data of the semi-persistent scheduling that comprises in the beared information, be semi-persistent scheduling business datum to be sent, the semi-static scheduling resources by this TTI carries the back and sends.
As seen, in the embodiment of the invention, determine that according to beared information current TTI has semi-static scheduling resources, according to the beared information of the semi-static scheduling resources that obtains, semi-persistent scheduling business datum to be sent semi-static scheduling resources by uplink data channels is sent.Because beared information does not comprise other business information outside the semi-persistent scheduling business in the present embodiment, make that like this data that send are the semi-persistent scheduling business datum in the beared information certainly when semi-static scheduling resources is arranged, do not take semi-static scheduling resources and do not have other business datums, thereby guaranteed the transmission quality of semi-persistent scheduling business datum.
In a specific embodiment, when carrying out above-mentioned steps 101, can realize as follows: subscriber equipment receives the configuration messages of the semi-static scheduling resources of base station transmission, and other business datum that comprises in this configuration messages outside the indication semi-persistent scheduling business datum does not use semi-static scheduling resources to carry out loaded information.Particularly:
The base station can send radio resource control (Radio Resource Control, RRC) configuration messages, in the beared information cell of the semi-static scheduling resources of RRC message, comprise the semi-persistent scheduling business information, the data of the semi-persistent scheduling business that can indicate semi-static scheduling resources to carry so wherein to comprise.The base station also can be respectively by media interviews control (Media Access control, MAC) layer or rrc layer send MAC layer message or rrc layer message, in MAC layer or rrc layer message, comprise the semi-persistent scheduling business information, bearer messages is configured to local subscriber apparatus.
When carrying out above-mentioned steps 101, can also realize as follows: subscriber equipment is searched in the process that semi-static scheduling resources activates, the beared information of the semi-static scheduling resources that the configuration messages that local subscriber apparatus sends according to the base station disposes.
Method with reference to another specific embodiment shown in Figure 2, this embodiment and embodiment shown in Figure 1 are similar, different is in the present embodiment after execution in step 101 is obtained the beared information of semi-static scheduling resources, be can carry out branch's step 102 after semi-static scheduling resources activates, can also carry out branch's step 103 and 104:
103, when determining that according to the beared information that obtains in the step 101 current TTI does not have semi-static scheduling resources, judge whether semi-persistent scheduling business datum to be sent meets first strategy that presets, if meet, then execution in step 104; If do not meet, in the time of then when sending semi-persistent scheduling business datum to be sent, need waiting until the TTI arrival of semi-static scheduling resources, could use semi-static scheduling resources to carry transmission;
104, can use the dynamic dispatching resource bearing to send semi-persistent scheduling business datum to be sent.
First strategy here can be including but not limited to following at least one information: semi-persistent scheduling business datum total amount to be sent exceeds the initialize data weight range; The unit data size of semi-persistent scheduling business datum to be sent exceeds initialize data magnitude range etc.
Be appreciated that, can dispose the dynamic dispatching resource by the configuration messages that control channel sends the dynamic dispatching resource in each TTI base station, and being each TTI, semi-static scheduling resources can not have, if use at interval according to the resource in the beared information, when determining that current TTI does not have semi-static scheduling resources, may have the higher semi-persistent scheduling business datum of priority needs to send, or other service rate exceeds preferential speed (the Prioritized Bit Rate of the dynamic dispatching resource of configuration, PBR) etc. when situation occurs, at this moment when sending the semi-persistent scheduling business datum, can carry transmission by the dynamic dispatching resource.
When arriving for fear of the TTI at semi-static scheduling resources, there is not the semi-persistent scheduling business datum to send, thereby cause the deexcitation of semi-static scheduling resources, in the present embodiment, when semi-persistent scheduling business datum to be sent can meet first strategy that presets, just use the dynamic dispatching resource, thereby avoiding causing redistributes and activates processing procedures such as semi-static scheduling resources after the semi-static scheduling resources deexcitation, saved Internet resources.
When the semi-persistent scheduling business datum can also occur in following situation, use the dynamic dispatching resource bearing to send:
Current TTI has semi-static scheduling resources and dynamic dispatching resource; Or,
When determining that according to beared information current TTI has semi-persistent scheduling and dynamic dispatching resource, and judge that semi-persistent scheduling business datum to be sent meets first strategy that presets.Under above-mentioned both of these case, can use semi-static scheduling resources and dynamic dispatching resource bearing simultaneously and send semi-persistent scheduling business datum to be sent.
The situation that can use the dynamic dispatching resource bearing to send the semi-persistent scheduling business datum comprises the above-mentioned situation about enumerating that is not limited to.
With reference to shown in Figure 3, in other specific embodiments, obtain the beared information of semi-static scheduling resources by step 101 after, after namely semi-static scheduling resources activates, can carry out branch's step 102, also can carry out branch's step 105 and 106:
105, if the buffer area of subscriber equipment is empty, and when determining that according to the beared information that obtains in the step 101 TTI of semi-static scheduling resources does not arrive, determine that semi-persistent scheduling business datum to be sent meets second strategy that presets, send dispatch request and carry out scheduling of resource to the base station; Be appreciated that then subscriber equipment can not send dispatch request if semi-persistent scheduling business datum to be sent does not meet second when strategy of presetting.
Here second strategy is including but not limited to following at least one information: semi-persistent scheduling business datum total amount to be sent exceeds the initialize data weight range; The unit data size of semi-persistent scheduling business datum to be sent exceeds initialize data magnitude range etc.
106, when receiving the resource distribution message that the base station sends, then send semi-persistent scheduling business datum to be sent according to resource distribution message.
Be appreciated that, current when having the semi-persistent scheduling business datum to arrive such as the arrival of VoIP message data, if the buffering area of subscriber equipment is empty, and when using the TTI that determines semi-static scheduling resources at interval not arrive according to the resource in the beared information, subscriber equipment can send dispatch request (Scheduling Request, SR); Because SR has only 1 bit (bit), when the base station receives SR and do not know that what business is the current data that need to send of subscriber equipment are, then can be user device configuration dynamic dispatching resource, not have the semi-persistent scheduling business datum to send in the time of so just may arriving at the TTI of semi-static scheduling resources.
When arriving, the TTI at semi-static scheduling resources do not have the semi-persistent scheduling business datum to send, and cause the deexcitation of semi-static scheduling resources, in the present embodiment, as long as when semi-persistent scheduling business datum to be sent can meet second strategy that presets, be only and carry out scheduling of resource to base station transmission SR, thereby avoid after the semi-static scheduling resources deexcitation, redistributing and activating processing such as semi-static scheduling resources, saved Internet resources.
Need to prove that the data volume scope and/or the initialize data magnitude range that preset in above-mentioned first strategy and second strategy are the threshold values that is configured to local subscriber apparatus by the base station by rrc layer or MAC layer.Particularly, the rrc layer of base station adds above-mentioned these threshold values to RRC and reshuffles the rrc layer that sends to subscriber equipment in the signaling, and the rrc layer of subscriber equipment receives after RRC reshuffles signaling, and wherein threshold value is stored; Or the MAC layer of base station sends MAC control unit, and (MAC Control element MCE) gives the MAC of subscriber equipment, after the MAC layer of subscriber equipment receives, wherein threshold value is stored.
The embodiment of the invention also provides a kind of subscriber equipment, and structural representation comprises as shown in Figure 4:
Carrying acquiring unit 10 is for the beared information that obtains semi-static scheduling resources; Beared information does not comprise other business information outside the semi-persistent scheduling business;
Carrying acquiring unit 10 is when obtaining beared information, specifically can receive the configuration messages of the semi-static scheduling resources of base station transmission, other business datum that comprises in the configuration messages outside the indication semi-persistent scheduling business datum does not use semi-static scheduling resources to carry out loaded information; Or, search and obtain the beared information of the semi-static scheduling resources of local subscriber apparatus configuration.
Data transmission unit 20, when being used for determining current transfer of data period, TTI having semi-static scheduling resources according to the beared information that carrying acquiring unit 10 obtains, according to beared information semi-persistent scheduling business datum to be sent semi-static scheduling resources by uplink data channels is sent.
Be appreciated that, the beared information that carrying acquiring unit 10 obtains comprises information, the resource of one or more business to be used at interval and the information such as size of data of resource bearing, and data transmission unit 20 is to use at interval according to the resource in the beared information to determine whether current TTI has semi-static scheduling resources.
In the embodiment of the invention, the data transmission unit 20 of subscriber equipment determines that according to the beared information that carrying acquiring unit 10 obtains current TTI has semi-static scheduling resources, and according to beared information semi-persistent scheduling business datum to be sent semi-static scheduling resources by uplink data channels is sent.Because beared information does not comprise other business information outside the semi-persistent scheduling business in the present embodiment, the data that make subscriber equipment send when semi-static scheduling resources is arranged like this are the semi-persistent scheduling business datum in the beared information certainly, do not take semi-static scheduling resources and do not have other business datums, thereby guaranteed the transmission quality of semi-persistent scheduling business datum.
With reference to shown in Figure 5, in a specific embodiment, can also the comprising of embodiment of the invention subscriber equipment:
First judging unit 30 when determining that for the beared information that obtains according to carrying acquiring unit 10 current TTI does not have semi-static scheduling resources, judges whether semi-persistent scheduling business datum to be sent meets first strategy that presets; Here first strategy comprises following at least one information: semi-persistent scheduling business datum total amount to be sent exceeds the initialize data weight range, and the unit data size of semi-persistent scheduling business datum to be sent exceeds the initialize data magnitude range;
Dynamically transmitting element 40 is used for judging that when first judging unit 30 semi-persistent scheduling business datum to be sent meets first strategy that presets, and then uses the dynamic dispatching resource to carry and sends semi-persistent scheduling business datum to be sent; Also be used for when sending semi-persistent scheduling business datum to be sent, using semi-static scheduling resources and dynamic dispatching resource to carry transmission when determining that current TTI has semi-static scheduling resources and dynamic dispatching resource;
Second judging unit 201 is used for judging whether semi-persistent scheduling business datum to be sent meets first strategy that presets when the beared information that obtains according to carrying acquiring unit 10 determines that current TTI has semi-static scheduling resources and dynamic dispatching resource;
Transmitting element 202 is used for whether meeting first strategy that presets when the semi-persistent scheduling business datum to be sent that second judging unit 201 is judged, is using semi-static scheduling resources and dynamic dispatching resource bearing to send semi-persistent scheduling business datum to be sent; First strategy comprises following at least one information: semi-persistent scheduling business datum total amount to be sent exceeds the initialize data weight range, and the unit data size of semi-persistent scheduling business datum to be sent exceeds the initialize data magnitude range.
After subscriber equipment can obtain beared information by carrying acquiring unit 10 in the present embodiment, when first judging unit 30 uses at interval definite current TTI not have semi-static scheduling resources according to the resource in the beared information, judge that when semi-persistent scheduling business datum to be sent met first strategy that presets, then dynamically transmitting element 40 used the dynamic dispatching resource to carry and sends semi-persistent scheduling business datum to be sent; If dynamically transmitting element 40 determines that current TTI has dynamic dispatching resource and semi-static scheduling resources, then use semi-static scheduling resources and dynamic dispatching resource to send semi-persistent scheduling business datum to be sent.And when second judging unit 201 uses at interval definite current TTI that semi-static scheduling resources and dynamic dispatching resource are arranged according to the resource in the beared information, judging uses semi-static scheduling resources and dynamic dispatching resource bearing to send semi-persistent scheduling business datum to be sent by transmitting element 202 when semi-persistent scheduling business datum to be sent meets first strategy that presets.
With reference to shown in Figure 6, can comprise carrying acquiring unit 10, data transmission unit 20, first judging unit 30, dynamically transmitting element 40, scheduling transmitting element 50 and receive transmitting element 60 at the subscriber equipment of other specific embodiment, wherein:
Scheduling transmitting element 50, the buffer area that is used for when subscriber equipment is empty, determine that according to the beared information that carrying acquiring unit 10 obtains the TTI of semi-static scheduling resources does not arrive, when determining that semi-persistent scheduling business datum to be sent meets second strategy that presets, send dispatch request and carry out scheduling of resource to base station 200; Second strategy comprises following at least one information: semi-persistent scheduling business datum total amount to be sent exceeds the initialize data weight range, and the unit data size of semi-persistent scheduling business datum to be sent exceeds the initialize data magnitude range;
Receive transmitting element 60, be used for then sending semi-persistent scheduling business datum to be sent according to resource distribution message when receiving the resource distribution message that the base station sends.
In the present embodiment in carrying after acquiring unit 10 obtains beared information, when the buffer area of subscriber equipment is empty, and scheduling transmitting element 50 uses the TTI that determines semi-static scheduling resources at interval also not arrive according to the resource in the beared information, when determining that semi-persistent scheduling business datum to be sent meets second strategy that presets, send dispatch request and carry out scheduling of resource to the base station; After reception transmitting element 60 receives resource distribution message, send semi-persistent scheduling business datum to be sent.
In the embodiment of the invention, subscriber equipment determines that according to beared information current TTI has semi-static scheduling resources, according to the beared information of the semi-static scheduling resources that obtains, semi-persistent scheduling business datum to be sent is sent by uplink data channels.Because beared information does not comprise other business information outside the semi-persistent scheduling business in the present embodiment, make that like this data that send are the semi-persistent scheduling business datum in the beared information certainly when semi-static scheduling resources is arranged, do not take semi-static scheduling resources and do not have other business datums, thereby guaranteed the transmission quality of semi-persistent scheduling business datum.
One of ordinary skill in the art will appreciate that all or part of step in the whole bag of tricks of above-described embodiment is to instruct relevant hardware to finish by program, this program can be stored in the computer-readable recording medium, and storage medium can comprise: read-only memory (ROM), random-access memory (ram), disk or CD etc.
More than data transmission method and subscriber equipment that the embodiment of the invention is provided, be described in detail, used specific case herein principle of the present invention and execution mode are set forth, the explanation of above embodiment just is used for helping to understand method of the present invention and core concept thereof; Simultaneously, for one of ordinary skill in the art, according to thought of the present invention, the part that all can change in specific embodiments and applications, in sum, this description should not be construed as limitation of the present invention.

Claims (10)

1. a data transmission method for uplink is characterized in that, comprising:
Obtain the beared information of semi-static scheduling resources, described beared information does not comprise other business information outside the semi-persistent scheduling business;
When determining current transfer of data period, TTI had semi-static scheduling resources according to described beared information, according to described beared information semi-persistent scheduling business datum to be sent semi-static scheduling resources by uplink data channels is sent;
If the buffer area of described subscriber equipment is empty, and the TTI that determines semi-static scheduling resources according to described beared information does not arrive, when determining that described semi-persistent scheduling business datum to be sent meets second strategy that presets, send dispatch request and carry out scheduling of resource to the base station;
When receiving the resource distribution message that described base station sends, then send described semi-persistent scheduling business datum to be sent according to described resource distribution message;
Described second strategy comprises following at least one information:
Semi-persistent scheduling business datum total amount to be sent exceeds the initialize data weight range;
The unit data size of semi-persistent scheduling business datum to be sent exceeds the initialize data magnitude range.
2. the method for claim 1 is characterized in that, the described beared information that obtains semi-static scheduling resources specifically comprises:
Receive the configuration messages of the semi-static scheduling resources of base station transmission, other business datum that comprises in the described configuration messages outside the indication semi-persistent scheduling business datum does not use semi-static scheduling resources to carry out loaded information; Or,
Search and obtain the beared information of the semi-static scheduling resources of local subscriber apparatus configuration.
3. method as claimed in claim 2 is characterized in that,
Described configuration messages comprises radio resource control RRC message, comprises the semi-persistent scheduling business information in the described RRC message; Or,
Described configuration messages comprises media interviews control MAC message, comprises the semi-persistent scheduling business information in MAC message.
4. the method for claim 1 is characterized in that, described method also comprises:
When determining that according to described beared information current TTI does not have semi-static scheduling resources, judge whether described semi-persistent scheduling business datum to be sent meets first strategy that presets, if meet, then use the dynamic dispatching resource bearing to send described semi-persistent scheduling business datum to be sent, described first strategy comprises following at least one information:
Semi-persistent scheduling business datum total amount to be sent exceeds the initialize data weight range;
The unit data size of semi-persistent scheduling business datum to be sent exceeds the initialize data magnitude range;
When definite current TTI has semi-static scheduling resources and dynamic dispatching resource, then use the carrying of dynamic dispatching resource and semi-static scheduling resources to send described semi-persistent scheduling business datum to be sent.
5. the method for claim 1 is characterized in that, described method also comprises:
When determining that according to described beared information current TTI has semi-static scheduling resources and dynamic dispatching resource, judge whether described semi-persistent scheduling business datum to be sent meets first strategy that presets, if meet, then use the carrying of dynamic dispatching resource and semi-static scheduling resources to send described semi-persistent scheduling business datum to be sent;
Described first strategy comprises following at least one information:
Semi-persistent scheduling business datum total amount to be sent exceeds the initialize data weight range;
The unit data size of semi-persistent scheduling business datum to be sent exceeds the initialize data magnitude range.
6. as claim 4 or 5 described methods, it is characterized in that described initialize data weight range and/or described initialize data magnitude range are the threshold values that is configured to local subscriber apparatus by the base station by radio resource control rrc layer or media interviews control MAC layer.
7. a subscriber equipment is characterized in that, comprising:
The carrying acquiring unit, for the beared information that obtains semi-static scheduling resources, described beared information does not comprise other business information outside the semi-persistent scheduling business;
Data transmission unit, when being used for determining current transfer of data period, TTI having semi-static scheduling resources according to the beared information that described carrying acquiring unit obtains, according to described beared information semi-persistent scheduling business datum to be sent semi-static scheduling resources by uplink data channels is sent;
The scheduling transmitting element, the buffer area that is used for when described subscriber equipment is empty, and determine that according to the beared information that described carrying acquiring unit obtains the TTI of semi-static scheduling resources does not arrive, when determining that described semi-persistent scheduling business datum to be sent meets second strategy that presets, send dispatch request and carry out scheduling of resource to the base station; Described second strategy comprises following at least one information: semi-persistent scheduling business datum total amount to be sent exceeds the initialize data weight range, and the unit data size of semi-persistent scheduling business datum to be sent exceeds the initialize data magnitude range;
Receive transmitting element, be used for then sending described semi-persistent scheduling business datum to be sent according to described resource distribution message when receiving the resource distribution message that described base station sends.
8. equipment as claimed in claim 7, it is characterized in that, described carrying acquiring unit specifically is used for the configuration messages of the semi-static scheduling resources of reception base station transmission, and other business datum that comprises in the described configuration messages outside the indication semi-persistent scheduling business datum does not use semi-static scheduling resources to carry out loaded information; Or, search and obtain the beared information of the semi-static scheduling resources of local subscriber apparatus configuration.
9. as claim 7 or 8 described equipment, it is characterized in that described equipment also comprises:
First judging unit, when determining that for the beared information that obtains according to described carrying acquiring unit current TTI does not have semi-static scheduling resources, judge whether described semi-persistent scheduling business datum to be sent meets first strategy that presets, and described first strategy comprises following at least one information:
Semi-persistent scheduling business datum total amount to be sent exceeds the initialize data weight range; The unit data size of semi-persistent scheduling business datum to be sent exceeds the initialize data magnitude range;
Dynamically transmitting element is used for meeting first strategy that presets when the described semi-persistent scheduling business datum to be sent of described first judgment unit judges, then uses the dynamic dispatching resource to carry and sends described semi-persistent scheduling business datum to be sent; When definite current TTI has semi-static scheduling resources and dynamic dispatching resource, when sending described semi-persistent scheduling business datum to be sent, can use semi-static scheduling resources and dynamic dispatching resource to carry transmission.
10. as claim 7 or 8 described equipment, it is characterized in that, also comprise:
Second judging unit is used for judging whether described semi-persistent scheduling business datum to be sent meets first strategy that presets when determining that according to beared information current TTI has semi-static scheduling resources and dynamic dispatching resource;
Transmitting element, be used for whether meeting first strategy that presets when the semi-persistent scheduling business datum described to be sent of described second judgment unit judges, using semi-static scheduling resources and dynamic dispatching resource bearing to send described semi-persistent scheduling business datum to be sent; Described first strategy comprises following at least one information: semi-persistent scheduling business datum total amount to be sent exceeds the initialize data weight range; The unit data size of semi-persistent scheduling business datum to be sent exceeds the initialize data magnitude range.
CN201010606797.1A 2010-12-24 2010-12-24 Method for transmitting data and user equipment Active CN102036404B (en)

Priority Applications (2)

Application Number Priority Date Filing Date Title
CN201010606797.1A CN102036404B (en) 2010-12-24 2010-12-24 Method for transmitting data and user equipment
PCT/CN2011/084650 WO2012083890A1 (en) 2010-12-24 2011-12-26 Data transmission method and user device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201010606797.1A CN102036404B (en) 2010-12-24 2010-12-24 Method for transmitting data and user equipment

Publications (2)

Publication Number Publication Date
CN102036404A CN102036404A (en) 2011-04-27
CN102036404B true CN102036404B (en) 2013-08-28

Family

ID=43888519

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201010606797.1A Active CN102036404B (en) 2010-12-24 2010-12-24 Method for transmitting data and user equipment

Country Status (2)

Country Link
CN (1) CN102036404B (en)
WO (1) WO2012083890A1 (en)

Families Citing this family (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102036404B (en) * 2010-12-24 2013-08-28 华为技术有限公司 Method for transmitting data and user equipment
CN103535099A (en) * 2012-05-09 2014-01-22 华为技术有限公司 Method and device for configuring resources of uplink channel
CN104469948B (en) * 2013-09-23 2018-05-01 成都鼎桥通信技术有限公司 A kind of distribution method of uplink semi-persistent resource
CN103546973B (en) * 2013-11-01 2016-01-20 宇龙计算机通信科技(深圳)有限公司 The transmission method of VoIP data and base station
EP3361803B1 (en) * 2016-01-25 2021-01-13 Guangdong Oppo Mobile Telecommunications Corp., Ltd. Data transmission method and terminal
JP6674050B2 (en) * 2016-05-13 2020-04-01 華為技術有限公司Huawei Technologies Co.,Ltd. Scheduling method, apparatus and system
CN107734703B (en) * 2016-08-11 2020-11-17 华为技术有限公司 Resource scheduling method and device
US10349350B2 (en) 2016-09-29 2019-07-09 Mediatek Inc. Method and apparatus for transmission resource allocation in mobile communications

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101657017A (en) * 2008-09-22 2010-02-24 华为技术有限公司 Resource scheduling method, base station and communication system
CN101695194A (en) * 2009-10-22 2010-04-14 普天信息技术研究院有限公司 Multiplexing method for dispatching middle uplink logic channel in semi-static state by LTE systecm

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101765211B (en) * 2008-12-24 2013-01-02 电信科学技术研究院 Allocation method, system and equipment for half-persistence scheduling resources
CN102036404B (en) * 2010-12-24 2013-08-28 华为技术有限公司 Method for transmitting data and user equipment

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101657017A (en) * 2008-09-22 2010-02-24 华为技术有限公司 Resource scheduling method, base station and communication system
CN101695194A (en) * 2009-10-22 2010-04-14 普天信息技术研究院有限公司 Multiplexing method for dispatching middle uplink logic channel in semi-static state by LTE systecm

Also Published As

Publication number Publication date
CN102036404A (en) 2011-04-27
WO2012083890A1 (en) 2012-06-28

Similar Documents

Publication Publication Date Title
CN102036404B (en) Method for transmitting data and user equipment
US20200383135A1 (en) Method for random access in idle state and device
CN107182038B (en) Multicast/broadcast service continuity in a multicarrier network
US20060215604A1 (en) Scheduling method for enhanced uplink channels
EP2276276A2 (en) Method of handling unicast transmission on multimedia broadcast multicast service subframe and related communication device
CN108811154B (en) Data packet transmission method and device
CN102056174A (en) Resource scheduling method and device and base station
CN103999526B (en) Uplink resource allocating method and device
EP2053804A3 (en) Radio controller, radio base station, radio communication system, call admission control method, program and recording medium
EP3226632A1 (en) Virtual cell resource allocation method, device and system
EP3319386B1 (en) Dynamic delay scheduling method and base station for voice data
CN103298130A (en) Uplink data transmission method, terminal and communication system
EP3120645B1 (en) Cross reporting of empty or non-empty buffers in dual connectivity
CN106454908A (en) Scheduling information processing method and device
CN104769999A (en) Congestion control method, apparatus and system
US8976743B2 (en) Method and apparatus for transmitting and receiving resource allocation scheme information in a wireless communication system
JP5651236B2 (en) Base station and resource allocation method in mobile communication system
CN108024341B (en) scheduling method, terminal and base station
CN104581970A (en) Adaptive-scheduling method and equipment
US10085197B1 (en) Controlled handover of UEs to reduce wireless backhaul congestion
CN101207570A (en) Data transmission method, data sending rate control method and base station
CN108141843B (en) Data transmission method, user equipment and network equipment
CN104602298B (en) A kind of method of congestion control of eating dishes without rice or wine and base station
CN107295643A (en) A kind of dispatching method, device and equipment
CN101932101A (en) Transmission time interval (TTI) adjustment method and network equipment

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