CN102523624B - Carrier wave resource distribution method and equipment thereof - Google Patents

Carrier wave resource distribution method and equipment thereof Download PDF

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CN102523624B
CN102523624B CN201110410171.8A CN201110410171A CN102523624B CN 102523624 B CN102523624 B CN 102523624B CN 201110410171 A CN201110410171 A CN 201110410171A CN 102523624 B CN102523624 B CN 102523624B
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ape
carrier resource
business
threshold value
hsdpa
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CN102523624A (en
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刘嘉
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Datang Mobile Communications Equipment Co Ltd
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Datang Mobile Communications Equipment Co Ltd
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Abstract

Embodiments of the invention disclose a carrier wave resource distribution method and equipment thereof and relates to a wireless communication technology field. The method and the equipment are used for increasing a utilization rate of system carrier wave resources. The method is characterized in that: after distributing high speed downlink packet access (HSDPA) carrier wave resources for a service of a terminal, a network side determines whether an uplink transmission rate of the service reaches a high speed uplink packet access (HSUPA) rate threshold; when the uplink transmission rate of the service reaches the HSUPA rate threshold, the network side determines whether the uplink transmission rate of the service reaches a HSUPA uplink enhancement APE rate threshold; if the uplink transmission rate of the service reaches the HSUPA uplink enhancement APE rate threshold, APE carrier wave resources are distributed for the service and a terminal is indicated to carry out service access on the APE carrier wave resources; otherwise, high speed packet access (HSPA) carrier wave resources are distributed for the service and the terminal is indicated to carry out the service access on the HSPA carrier wave resources. By using the method and the equipment of the invention, the utilization rate of the system carrier wave resources can be increased.

Description

Carrier wave resource allocation method and equipment
Technical field
The present invention relates to wireless communication field, particularly relate to a kind of carrier wave resource allocation method and equipment.
Background technology
General existing network all can take the cell configuration of mixed service type, and the ratio of the uplink and downlink timeslot of cell configuration is 2: 4, and up only have 2 time slots.The carrier wave of cell configuration generally includes R4 carrier wave (referring to the carrier wave defined in the edition 4 of LTE system), high-speed slender body theory (High Speed Downlink PacketAccess, HSDPA) carrier wave.Up increase high speed uplink packet access (High Speed UplinkPacket Access from now on, HSUPA) after business, independent high-speed packet access (High Speed PacketAccess can be configured, HSPA) carrier wave, HSPA carrier wave comprises up HSUPA carrier wave and descending HSDPA carrier wave.Data class is downloaded and speech business is often applied the most frequent on network, therefore existing network substantially all can configure several HSDPA carrier waves and common R4 carrier wave, and uplink service is generally applied less, so increase from now on HSUPA carrier wave time quantity may at 1 to 2, the configuration that existing network will be taked so is from now on so possibly: 2 R4 carrier waves, 2 HSDPA carrier waves, 1 or 2 HSPA carrier waves, just illustrate the configuring condition of each traffic carrier here.
HSUPA carrier wave exists only in 1 ascending time slot, and the HSUPA carrier wave of this ascending time slot transmits up HSUPA business shared channel (EPUCH) data.After employing HSUPA up enhancing (APE) technology, require the time slot being also configured to another ascending time slot to transmit EPUCH data, also namely 2 ascending time slots all distribute to EPUCH; In row time slot, DPCH (DedicatedPhysical Channel, DPCH) and shared information channel (Shared Information Channel, SICH) adopt time-multiplexed mode to coexist with EPUCH on the other.The carrier wave taking two ascending time slot transmission EPUCH data is called APE carrier wave.
The method of salary distribution of two kinds of carrier resources below current existence:
First, user activates packet switching (Packet Switched at existing network, PS) during business, whether network side can reach setting thresholding according to the uplink transmission rate of PS business, for PS traffic assignments HSDPA carrier wave or HSPA carrier wave, generally all can be set to about 1k for this thresholding of existing network, can ensure that PS business transmits data by HSDPA carrier wave so as far as possible.If PS traffic assignments HSPA carrier wave, after general user surfs the Net, uplink traffic very little or only may be present in paroxysmal use, at this moment a perhaps ordinary dedicated channels (Dedicated Channel, DCH) bandwidth of time slot just meets user uplink demand, so the HSUPA carrier wave in occupied HSPA carrier wave just may cause waste.
Second, user is when setting up APE business, first network side will be APE traffic assignments R4 carrier wave, to set up signaling on R4 carrier wave, and for single service-user, under the signaling of a certain user and business can only being based upon same carrier wave at present, so no matter all needing for APE business first considers whether R4 carrier wave has available resources during in initial access or cell merge, and can not directly APE business be based upon on APE carrier wave.So like this access procedure of APE business is exactly: be first APE traffic assignments R4 carrier wave, so that APE business is based upon on R4 carrier wave, upper speed change rate during the 4A dispatched by the PS of terminal to report is subsequently reported, determine whether APE business reorganization on APE carrier wave, if, be then APE traffic assignments APE carrier wave, with by APE business reorganization on APE carrier wave, during cell merge Yu above, process is basically identical.
Realizing in process of the present invention, inventor finds to there is following technical problem in prior art:
APE technology makes the ascending time slot that resource is just deficient originally seem more crowded after realizing, therefore the Resourse Distribute of network side just seems especially important.After usual up configuration HSUPA carrier wave, substantially the transfer of data of H business (HSDPA and HSUPA business) can only be met, speech business or other business are all complete access at other carrier waves, and the data services of ascending time slot be applied in often utilize in daily real life or work and seldom or constantly occupancy few, but descending time slot business is often taking or is carrying out business transmission all the time, therefore necessary rational allocation carrier resource, improve Resource Scheduling Mechanism, carrier wave utilance is improved, and then reduces the waste of wireless network resource.
Summary of the invention
The embodiment of the present invention provides a kind of carrier wave resource allocation method and equipment, for improving the utilance of system carrier resource.
A kind of carrier wave resource allocation method, the method comprises:
Network side after for the traffic assignments HSDPA carrier resource of terminal, determines whether the uplink transmission rate of this business reaches the HSUPA rate threshold value preset;
Network side is when determining that the uplink transmission rate of this business reaches the HSUPA rate threshold value preset, determine whether the uplink transmission rate of this business reaches the APE rate threshold value preset, if, be then this traffic assignments APE carrier resource, and indicating terminal carry out service access on this APE carrier resource; Otherwise, be this traffic assignments HSPA carrier resource, and indicating terminal carries out service access on this HSPA carrier resource.
A kind of carrier resource distributor, this device comprises:
First thresholding identifying unit, for after for the traffic assignments HSDPA carrier resource of terminal, determines whether the uplink transmission rate of this business reaches the HSUPA rate threshold value preset;
Second thresholding identifying unit, for when determining that the uplink transmission rate of this business reaches the HSUPA rate threshold value preset, determines whether the uplink transmission rate of this business reaches the APE rate threshold value preset;
First resource allocation units, during for reaching the APE rate threshold value preset at the uplink transmission rate of this business, be this traffic assignments APE carrier resource, and indicating terminal carry out service access on this APE carrier resource; When the uplink transmission rate of this business does not reach the APE rate threshold value preset, be this traffic assignments HSPA carrier resource, and indicating terminal carry out service access on this HSPA carrier resource.
In this programme, network side after for the traffic assignments HSDPA carrier resource of terminal, determines whether the uplink transmission rate of this business reaches the HSUPA rate threshold value preset; Network side is when determining that the uplink transmission rate of this business reaches the HSUPA rate threshold value preset, determine whether the uplink transmission rate of this business reaches the APE rate threshold value preset, if, be then this traffic assignments APE carrier resource, and indicating terminal carry out service access on this APE carrier resource; Otherwise, be this traffic assignments HSPA carrier resource, and indicating terminal carries out service access on this HSPA carrier resource.Visible, in the present invention after for the traffic assignments HSDPA carrier resource of terminal, according to the rate threshold value that presets determine whether by this business migration on APE carrier wave or HSPA carrier wave, also namely determine whether carry out business migration on APE carrier wave or HSPA carrier wave according to the upstream rate demand of business, thus improve the utilance of system carrier resource.
Accompanying drawing explanation
The method flow schematic diagram that Fig. 1 provides for the embodiment of the present invention;
Fig. 2 A is the realization flow schematic diagram of the embodiment of the present invention one;
Fig. 2 B is the realization flow schematic diagram of the embodiment of the present invention two;
The apparatus structure schematic diagram that Fig. 3 provides for the embodiment of the present invention.
Embodiment
In order to improve the utilance of carrier resource, the embodiment of the present invention provides a kind of carrier wave resource allocation method, in this method, network side after for the traffic assignments HSDPA carrier resource of terminal, according to the rate threshold value preset determine whether by this business migration on APE carrier wave or HSPA carrier wave.
See Fig. 1, the carrier wave resource allocation method that the embodiment of the present invention provides, comprises the following steps:
Step 10: network side after for the traffic assignments HSDPA carrier resource of terminal, determines whether the uplink transmission rate of this business reaches the HSUPA rate threshold value preset;
Here, HSUPA rate threshold value be greater than 0 numerical value;
Step 11: network side is when determining that the uplink transmission rate of this business reaches the HSUPA rate threshold value preset, determine whether the uplink transmission rate of this business reaches the APE rate threshold value preset, if, it is then this traffic assignments APE carrier resource, and indicating terminal carries out service access on this APE carrier resource, terminal uses this APE carrier resource service data transmission; Otherwise be this traffic assignments HSPA carrier resource, and indicating terminal carries out service access on this HSPA carrier resource, terminal uses this HSPA carrier resource service data transmission.
Here, APE rate threshold value is the numerical value being greater than 0 and being greater than HSUPA rate threshold value.
Before step 10, can be the traffic assignments HSDPA carrier resource of terminal according to the following two kinds method:
The first, network side receives the APE activation of service foundation request that terminal sends, and be this APE traffic assignments R4 carrier resource, and indicating terminal carries out service access on this R4 carrier resource, terminal uses this R4 carrier resource service data transmission;
Network side determines whether the downlink transmission rate of this APE business reaches the HSDPA rate threshold value preset, when being defined as being, for this APE traffic assignments HSDPA carrier resource, and indicating terminal carries out service access on this HSDPA carrier resource, terminal uses this HSDPA carrier resource service data transmission.
Here, HSDPA rate threshold value be greater than 0 numerical value, HSDPA rate threshold value can equal HSUPA rate threshold value, when HSDPA rate threshold value equals HSUPA rate threshold value, can arrange a rate threshold value and represent HSDPA rate threshold value and HSUPA rate threshold value simultaneously.
The second, network side is after the APE business of terminal is switched to Target cell, and be this APE traffic assignments HSDPA carrier resource, and indicating terminal carries out service access on this HSDPA carrier resource, terminal uses this HSDPA carrier resource service data transmission.Or network side is after the HSPDA business of terminal is switched to Target cell, and be this HSPDA traffic assignments HSDPA carrier resource, and indicating terminal carries out service access on this HSDPA carrier resource, terminal uses this HSDPA carrier resource service data transmission.
Preferably, after for traffic assignments APE carrier resource, can, according to the real-time Transmission speed of business, be this business reorganization distributing carrier wave resource, to improve the utilance of carrier resource further, concrete:
Network side is when the uplink transmission rate of this business is lower than APE rate threshold value and higher than HSUPA rate threshold value, for this traffic assignments HSPA carrier resource, and indicating terminal carries out service access on this HSPA carrier resource, terminal uses this HSPA carrier resource service data transmission; Or,
Network side, when the uplink transmission rate of business is lower than HSUPA rate threshold value, be this traffic assignments HSDPA carrier resource, and indicating terminal carries out service access on this HSDPA carrier resource, and terminal uses this HSDPA carrier resource service data transmission.
Preferably, after for traffic assignments HSPA carrier resource, can, according to the real-time Transmission speed of business, be this business reorganization distributing carrier wave resource, to improve the utilance of carrier resource further, concrete:
Network side, when the uplink transmission rate of this business is lower than HSUPA rate threshold value, be this traffic assignments HSDPA carrier resource, and indicating terminal carries out service access on this HSDPA carrier resource, and terminal uses this HSDPA carrier resource service data transmission.
Preferably, after for this traffic assignments HSDPA carrier resource, can, according to the real-time Transmission speed of business, be this business reorganization distributing carrier wave resource, to improve the utilance of carrier resource further, concrete:
Network side, when the downlink transmission rate of business is lower than HSDPA rate threshold value, be this traffic assignments R4 carrier resource, and indicating terminal carries out service access on this R4 carrier resource, and terminal uses this R4 carrier resource service data transmission.
Below in conjunction with specific embodiment, the present invention will be described:
In RRM (RRM) algorithm, add APE rate threshold value, the value of APE rate threshold value can be set according to existing network service condition.User when setting up business or when being switched to Target cell this thresholding as the decision threshold distributing APE carrier resource, to attempt access service on APE carrier wave, contrary to network side detects that user rate does not reach this thresholding, automatically reduce to HSPA business, HSDPA business and PS business.
Embodiment one:
As shown in Figure 2 A, APE business (referring to that up needs uses APE carrier resource transmission data, the descending business needing HSDPA carrier resource to transmit data) the Resourse Distribute flow process when access network is as follows:
Step 1: terminal, when APE business is set up in needs activation, sends APE activation of service to network side and sets up request;
Step 2: network side receives the APE activation of service foundation request that terminal sends, and be this APE traffic assignments R4 carrier resource, and indicating terminal carries out service access on this R4 carrier resource;
Step 3: network side determines whether the downlink transmission rate of this APE business reaches the HSDPA rate threshold value preset, and if so, then arrives step 4, otherwise, to step 5;
Step 4: network side is this APE traffic assignments HSDPA carrier resource, and indicating terminal carries out service access, to step 6 on this HSDPA carrier resource;
Step 5: network side determines that this APE business is common PS business, and do not carry out carrier wave emigration, flow process terminates;
Step 6: network side determines whether the uplink transmission rate of this APE business reaches the HSUPA rate threshold value preset, and if so, then arrives step 7, otherwise, to step 8;
Step 7: network side determines whether the uplink transmission rate of this APE business reaches the APE rate threshold value preset, and if so, then arrives step 9 further, otherwise, to step 10;
Step 8: network side determines that this APE business is HSDPA business, and do not carry out carrier wave emigration, flow process terminates;
Step 9: network side is this APE traffic assignments APE carrier resource, and indicating terminal carries out service access on this APE carrier resource, and flow process terminates;
Step 10: network side is this APE traffic assignments HSPA carrier resource, and indicating terminal carries out service access on this HSPA carrier resource, and flow process terminates.
Further, after step 10, following carrier resource adjustment operation can be carried out:
Network side, when the uplink transmission rate of this APE business is lower than APE rate threshold value and higher than HSUPA rate threshold value, be this APE traffic assignments HSPA carrier resource, and indicating terminal carries out service access on this HSPA carrier resource; Or network side, when the uplink transmission rate of this APE business is lower than HSUPA rate threshold value, be this APE traffic assignments HSDPA carrier resource, and indicating terminal carries out service access on this HSDPA carrier resource.
After for this APE traffic assignments HSPA carrier resource, network side, when the uplink transmission rate of this APE business is lower than HSUPA rate threshold value, be this APE traffic assignments HSDPA carrier resource, and indicating terminal carries out service access on this HSDPA carrier resource.
After for this APE traffic assignments HSDPA carrier resource, network side, when the downlink transmission rate of this APE business is lower than HSDPA rate threshold value, be this APE traffic assignments R4 carrier resource, and indicating terminal carries out service access on this R4 carrier resource.
Network side in the present embodiment can be specifically the network equipment such as RNC or base station.
The carrier resource allocation algorithm of APE business that the present embodiment is perfect, Appropriate application carrier resource, decreases the generation of small area jam.
Embodiment two:
As shown in Figure 2 B, be switched to the Resourse Distribute flow process behind Target cell from cell-of-origin as follows for APE business or HSDPA business:
Step 1: the network equipment of Target cell accepts APE business or the HSDPA business of the terminal being switched to Target cell from cell-of-origin;
Step 2: network equipment is this APE business or HSDPA traffic assignments HSDPA carrier resource, and indicating terminal carries out service access on this HSDPA carrier resource;
Step 3: network equipment determines whether the uplink transmission rate of this APE business or HSDPA business reaches the HSUPA rate threshold value preset, and if so, then arrives step 4, otherwise, to step 5;
Step 4: network equipment determines whether the uplink transmission rate of this APE business or HSDPA business reaches the APE rate threshold value preset, and if so, then arrives step 6 further, otherwise, to step 7;
Step 5: network side is defined as HSDPA business, do not carry out carrier wave emigration, flow process terminates;
Step 6: network side is this APE business or HSDPA traffic assignments APE carrier resource, and indicating terminal carries out service access on this APE carrier resource, and flow process terminates;
Step 7: network side is this APE business or HSDPA traffic assignments HSPA carrier resource, and indicating terminal carries out service access on this HSPA carrier resource, and flow process terminates.
Further, after step 7, following carrier resource adjustment operation can be carried out:
Network side is when the uplink transmission rate of this APE business or HSDPA business is lower than APE rate threshold value and higher than HSUPA rate threshold value, for this APE business or HSDPA traffic assignments HSPA carrier resource, and indicating terminal carries out service access on this HSPA carrier resource; Or network side, when the uplink transmission rate of this APE business or HSDPA business is lower than HSUPA rate threshold value, be this APE business or HSDPA traffic assignments HSDPA carrier resource, and indicating terminal carries out service access on this HSDPA carrier resource.
After for this APE business or HSDPA traffic assignments HSPA carrier resource, network side is when the uplink transmission rate of this APE business or HSDPA business is lower than HSUPA rate threshold value, for this APE business or HSDPA traffic assignments HSDPA carrier resource, and indicating terminal carries out service access on this HSDPA carrier resource.
Network equipment in the present embodiment can be specifically the equipment such as RNC or base station.
Carrier resource adjustment can be carried out according to the rate threshold value newly established when the present embodiment switches for APE business or HSDPA business, and other existing global network parameters need not be revised, can differentiated service rate type by arranging of this rate threshold value, and then distribute corresponding carrier resource, use capacity to improve speech business resource further.
The present embodiment improves APE carrier resource allocation algorithm when being configured with cell merge, the resource making all kinds of business and have the business of requirement all to obtain an equitable breakdown to various speed, to not needing the business of present rate or flow to adjust in time, discharge more Radio Resources.
To sum up, above-mentioned two embodiments are optimized further to carrier resource allocation algorithm, more rationally effectively use ascending resource, because the introducing of APE technology can bring more application to ascending time slot resource, so need this resource of reasonable distribution, for not needing the business of APE carrier resource realize intercarrier adjustment fast and distribute, carrier wave is avoided to waste.
See Fig. 3, the embodiment of the present invention provides a kind of carrier resource distributor, and this device comprises:
First thresholding identifying unit 30, for after for the traffic assignments HSDPA carrier resource of terminal, determines whether the uplink transmission rate of this business reaches the HSUPA rate threshold value preset;
Second thresholding identifying unit 31, for when determining that the uplink transmission rate of this business reaches the HSUPA rate threshold value preset, determines whether the uplink transmission rate of this business reaches the APE rate threshold value preset;
First resource allocation units 32, during for reaching the APE rate threshold value preset at the uplink transmission rate of this business, be this traffic assignments APE carrier resource, and indicating terminal carry out service access on this APE carrier resource; When the uplink transmission rate of this business does not reach the APE rate threshold value preset, be this traffic assignments HSPA carrier resource, and indicating terminal carry out service access on this HSPA carrier resource.
This device also comprises:
Secondary resource allocation units 33, the APE activation of service sent for receiving terminal sets up request, be this APE traffic assignments R4 carrier resource, and indicating terminal carries out service access on this R4 carrier resource;
3rd thresholding identifying unit 34, for determining whether the downlink transmission rate of this APE business reaches the HSDPA rate threshold value preset;
Information resources allocation units 35, during for reaching the HSDPA rate threshold value preset at the downlink transmission rate of this APE business, be this APE traffic assignments HSDPA carrier resource, and indicating terminal carry out service access on this HSDPA carrier resource.
This device also comprises:
4th resource allocation unit 36, for network side after the APE business of terminal or HSPDA business are switched to Target cell, be this APE business or HSPDA traffic assignments HSDPA carrier resource, and indicating terminal carries out service access on this HSDPA carrier resource.
This device also comprises:
First resource adjustment unit 37, for after for this traffic assignments APE carrier resource, when the uplink transmission rate of described business is lower than described APE rate threshold value and higher than described HSUPA rate threshold value, for this traffic assignments HSPA carrier resource, and indicating terminal carries out service access on this HSPA carrier resource; Or,
When the uplink transmission rate of described business is lower than described HSUPA rate threshold value, be this traffic assignments HSDPA carrier resource, and indicating terminal carry out service access on this HSDPA carrier resource.
This device also comprises:
Secondary resource adjustment unit 38, for after for this traffic assignments HSPA carrier resource, when the uplink transmission rate of described business is lower than described HSUPA rate threshold value, be this traffic assignments HSDPA carrier resource, and indicating terminal carry out service access on this HSDPA carrier resource.
This device also comprises:
Information resources adjustment unit 39, for after for this traffic assignments HSDPA carrier resource, when the downlink transmission rate of described business is lower than described HSDPA rate threshold value, be this traffic assignments R4 carrier resource, and indicating terminal carry out service access on this R4 carrier resource.
Described APE rate threshold value is greater than described HSUPA rate threshold value.
The embodiment of the present invention also provides a kind of radio network controller, and (RNC0, this radio network controller comprises described carrier resource distributor.
The embodiment of the present invention also provides a kind of base station, and this base station comprises described carrier resource distributor.
To sum up, beneficial effect of the present invention comprises:
In the scheme that the embodiment of the present invention provides, network side after for the traffic assignments HSDPA carrier resource of terminal, determines whether the uplink transmission rate of this business reaches the HSUPA rate threshold value preset; Network side is when determining that the uplink transmission rate of this business reaches the HSUPA rate threshold value preset, determine whether the uplink transmission rate of this business reaches the APE rate threshold value preset, if, be then this traffic assignments APE carrier resource, and indicating terminal carry out service access on this APE carrier resource; Otherwise, be this traffic assignments HSPA carrier resource, and indicating terminal carries out service access on this HSPA carrier resource.Visible, in the present invention after for the traffic assignments HSDPA carrier resource of terminal, according to the rate threshold value that presets determine whether by this business migration on APE carrier wave or HSPA carrier wave, also namely determine whether carry out business migration on APE carrier wave or HSPA carrier wave according to the upstream rate demand of business, thus improve the utilance of system carrier resource.
The present invention describes with reference to according to the flow chart of the method for the embodiment of the present invention, equipment (system) and computer program and/or block diagram.Should understand can by the combination of the flow process in each flow process in computer program instructions realization flow figure and/or block diagram and/or square frame and flow chart and/or block diagram and/or square frame.These computer program instructions can being provided to the processor of all-purpose computer, special-purpose computer, Embedded Processor or other programmable data processing device to produce a machine, making the instruction performed by the processor of computer or other programmable data processing device produce device for realizing the function of specifying in flow chart flow process or multiple flow process and/or block diagram square frame or multiple square frame.
These computer program instructions also can be stored in can in the computer-readable memory that works in a specific way of vectoring computer or other programmable data processing device, the instruction making to be stored in this computer-readable memory produces the manufacture comprising command device, and this command device realizes the function of specifying in flow chart flow process or multiple flow process and/or block diagram square frame or multiple square frame.
These computer program instructions also can be loaded in computer or other programmable data processing device, make on computer or other programmable devices, to perform sequence of operations step to produce computer implemented process, thus the instruction performed on computer or other programmable devices is provided for the step realizing the function of specifying in flow chart flow process or multiple flow process and/or block diagram square frame or multiple square frame.
Although describe the preferred embodiments of the present invention, those skilled in the art once obtain the basic creative concept of cicada, then can make other change and amendment to these embodiments.So claims are intended to be interpreted as comprising preferred embodiment and falling into all changes and the amendment of the scope of the invention.
Obviously, those skilled in the art can carry out various change and modification to the present invention and not depart from the spirit and scope of the present invention.Like this, if these amendments of the present invention and modification belong within the scope of the claims in the present invention and equivalent technologies thereof, then the present invention is also intended to comprise these change and modification.

Claims (12)

1. a carrier wave resource allocation method, is characterized in that, the method comprises:
Network side after for the traffic assignments high-speed downlink packet access HSDPA carrier resource of terminal, determines whether the uplink transmission rate of this business reaches the high speed uplink packet access HSUPA rate threshold value preset;
Network side is when determining that the uplink transmission rate of this business reaches the HSUPA rate threshold value preset, determine whether the uplink transmission rate of this business reaches the HSUPA preset up enhancing APE rate threshold value, if, be then this traffic assignments APE carrier resource, and indicating terminal carry out service access on this APE carrier resource; Otherwise, be this traffic assignments high-speed packet access HSPA carrier resource, and indicating terminal carries out service access on this HSPA carrier resource;
Network side after for this traffic assignments APE carrier resource, comprises further:
Network side, when the uplink transmission rate of described business is lower than described APE rate threshold value and higher than described HSUPA rate threshold value, be this traffic assignments HSPA carrier resource, and indicating terminal carries out service access on this HSPA carrier resource; Or,
Network side, when the uplink transmission rate of described business is lower than described HSUPA rate threshold value, be this traffic assignments HSDPA carrier resource, and indicating terminal carries out service access on this HSDPA carrier resource;
Wherein, the value of the HSUPA preset described in up enhancing APE rate threshold value arranges according to the service condition of existing network;
Wherein, after for this traffic assignments HSDPA carrier resource, comprise further:
Network side, when the downlink transmission rate of described business is lower than described HSDPA rate threshold value, be this traffic assignments R4 carrier resource, and indicating terminal carries out service access on this R4 carrier resource.
2. the method for claim 1, is characterized in that, described business is APE business; Described network side is the traffic assignments HSDPA carrier resource of terminal, specifically comprises:
Network side receives the APE activation of service foundation request that terminal sends, and be this APE traffic assignments R4 carrier resource, and indicating terminal carries out service access on this R4 carrier resource;
Network side determines whether the downlink transmission rate of this APE business reaches the HSDPA rate threshold value preset, and when being defined as being, be this APE traffic assignments HSDPA carrier resource, and indicating terminal carries out service access on this HSDPA carrier resource.
3. the method for claim 1, is characterized in that, described business is APE business or HSPDA business, and described network side is the traffic assignments HSDPA carrier resource of terminal, specifically comprises:
Network side, after the APE business of terminal or HSPDA business are switched to Target cell, be this APE business or HSPDA traffic assignments HSDPA carrier resource, and indicating terminal carries out service access on this HSDPA carrier resource.
4. the method for claim 1, is characterized in that, after for this traffic assignments HSPA carrier resource, comprises further:
Network side, when the uplink transmission rate of described business is lower than described HSUPA rate threshold value, be this traffic assignments HSDPA carrier resource, and indicating terminal carries out service access on this HSDPA carrier resource.
5., as the method as described in arbitrary in claim 1-4, it is characterized in that, described APE rate threshold value is greater than described HSUPA rate threshold value.
6. a carrier resource distributor, is characterized in that, this device comprises:
First thresholding identifying unit, for after for the traffic assignments HSDPA carrier resource of terminal, determines whether the uplink transmission rate of this business reaches the HSUPA rate threshold value preset;
Second thresholding identifying unit, for when determining that the uplink transmission rate of this business reaches the HSUPA rate threshold value preset, determines whether the uplink transmission rate of this business reaches the APE rate threshold value preset;
First resource allocation units, during for reaching the APE rate threshold value preset at the uplink transmission rate of this business, be this traffic assignments APE carrier resource, and indicating terminal carry out service access on this APE carrier resource; When the uplink transmission rate of this business does not reach the APE rate threshold value preset, be this traffic assignments HSPA carrier resource, and indicating terminal carry out service access on this HSPA carrier resource;
First resource adjustment unit, for after for this traffic assignments APE carrier resource, when the uplink transmission rate of described business is lower than described APE rate threshold value and higher than described HSUPA rate threshold value, for this traffic assignments HSPA carrier resource, and indicating terminal carries out service access on this HSPA carrier resource; Or,
When the uplink transmission rate of described business is lower than described HSUPA rate threshold value, be this traffic assignments HSDPA carrier resource, and indicating terminal carry out service access on this HSDPA carrier resource;
Wherein, the value of the APE rate threshold value preset described in arranges according to the service condition of existing network;
Information resources adjustment unit, for after for this traffic assignments HSDPA carrier resource, when the downlink transmission rate of described business is lower than described HSDPA rate threshold value, be this traffic assignments R4 carrier resource, and indicating terminal carry out service access on this R4 carrier resource.
7. device as claimed in claim 6, it is characterized in that, this device also comprises:
Secondary resource allocation units, the APE activation of service sent for receiving terminal sets up request, be this APE traffic assignments R4 carrier resource, and indicating terminal carries out service access on this R4 carrier resource;
3rd thresholding identifying unit, for determining whether the downlink transmission rate of this APE business reaches the HSDPA rate threshold value preset, when being defined as being, be this APE traffic assignments HSDPA carrier resource, and indicating terminal carry out service access on this HSDPA carrier resource.
8. device as claimed in claim 6, it is characterized in that, this device also comprises:
Information resources allocation units, for network side after the APE business of terminal or HSPDA business are switched to Target cell, be this APE business or HSPDA traffic assignments HSDPA carrier resource, and indicating terminal carry out service access on this HSDPA carrier resource.
9. device as claimed in claim 8, it is characterized in that, this device also comprises:
Secondary resource adjustment unit, for after for this traffic assignments HSPA carrier resource, when the uplink transmission rate of described business is lower than described HSUPA rate threshold value, be this traffic assignments HSDPA carrier resource, and indicating terminal carry out service access on this HSDPA carrier resource.
10., as the device as described in arbitrary in claim 6-9, it is characterized in that, described APE rate threshold value is greater than described HSUPA rate threshold value.
11. 1 kinds of radio network controllers, is characterized in that, this radio network controller comprises as the device as described in arbitrary in claim 6-10.
12. 1 kinds of base stations, is characterized in that, this base station comprises as the device as described in arbitrary in claim 6-10.
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Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101873599A (en) * 2009-04-27 2010-10-27 鼎桥通信技术有限公司 Method and device for reconfiguring channel resources
CN101938843A (en) * 2009-07-01 2011-01-05 大唐移动通信设备有限公司 Method and device for selecting service loading mode
CN102196572A (en) * 2010-03-12 2011-09-21 鼎桥通信技术有限公司 Carrier configuration method

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101873599A (en) * 2009-04-27 2010-10-27 鼎桥通信技术有限公司 Method and device for reconfiguring channel resources
CN101938843A (en) * 2009-07-01 2011-01-05 大唐移动通信设备有限公司 Method and device for selecting service loading mode
CN102196572A (en) * 2010-03-12 2011-09-21 鼎桥通信技术有限公司 Carrier configuration method

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