CN101247146A - Power control method of physical channel mapped by high speed descending sharing channel - Google Patents

Power control method of physical channel mapped by high speed descending sharing channel Download PDF

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CN101247146A
CN101247146A CNA2007100792566A CN200710079256A CN101247146A CN 101247146 A CN101247146 A CN 101247146A CN A2007100792566 A CNA2007100792566 A CN A2007100792566A CN 200710079256 A CN200710079256 A CN 200710079256A CN 101247146 A CN101247146 A CN 101247146A
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channel
common pilot
power
transmitting power
maximum transmission
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CN101247146B (en
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柯雅珠
程翔
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ZTE Corp
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ZTE Corp
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Abstract

The present invention discloses a method for controlling the power of the physical channel mapped by the high-speed descending sharing channel, and the method comprises the following steps: (a) informing the maximum emitting power of the physical channel mapped by the high-speed descending sharing channel by the wireless network controller, and the maximum emitting power is the deviation value between the emitting power which is needed when the subscriber facility correctly receives the data with the high-speed descending sharing channel at the edge of the subdistrict and the emitting power of the common pilot channel; (b) when the wireless network controller transmits the data which needs to be transmitted to the subscriber facility to the base station, carrying the emitting power level used in transmitting the data in the data frame of the high-speed descending sharing channel; and (c) when the base station transmits data to the subscriber facility, confirming the emitting power which is actually used by the physical channel according to the pre-obtained maximum emitting power, the emitting power level and the emitting power of the common pilot channel, and transmitting signaling and/or data to the subscriber terminal.

Description

A kind of Poewr control method of physical channel mapped by high speed descending sharing channel
Technical field
The present invention relates to a kind of Poewr control method of strengthening the physical channel mapped by high speed descending sharing channel under the connection mode common condition in the mobile communication system.
Background technology
In order to improve the throughput of high data traffic of user and system, the R5 standard agreement of 3GPP has been introduced a kind of high-speed packet and has been shared transmission channel (High Speed Downlink Shared Channel:HS-DSCH), the physical channel that this channel shone upon adopts time-division and sign indicating number branch mode, and this channel has adopted and has mixed (HARQ) and Adaptive Modulation and Coding (AMC) technology of retransmitting automatically, makes peak rate can reach 10.8Mbps~30Mbps.Its final purpose is by providing high speed packet service to be inserted the capacity that increases system and reduces transmission delay to improve the requirement of user to service quality (QoS).
Agreement is to use Secondary Common Control Physical Channel (S-CCPCH) to carry out the transmission of signaling and data for the subscriber equipment of the front access state (CELL_FACH) under Radio Resource control (RRC) connection mode at present, the subscriber equipment of the paging state (CELL_PCH/URA_PCH) under Radio Resource control (RRC) connection mode is to use Secondary Common Control Physical Channel (S-CCPCH) to carry out the reception of beep-page message, based on the S-CCPCH channel is channel shared by multiple users, the function that does not have closed-loop power control, therefore in order to guarantee that the user who covers the edge also can correctly receive signaling and data, the ratio that its power will be provided with is higher, therefore for reduce CELL_FACH and (or) the shared power resource of CELL_PCH/URA_PCH state, the bandwidth of S-CCPCH has certain restriction.
Can by be increased in CELL_FACH and (or) the CELL_PCH/URA_PCH state uses high speed shared channels, improve effective peak speed and reduce the time-delay that signaling CELL_FACH, CELL_PCH, URA_PCH state is under delayed time and reduced state exchange.Therefore the 3GPP consensus standard to Radio Resource control (RRC) connection mode down front access state (CELL_FACH) and (or) paging state (CELL_PCH/URA_PCH) controlled under (RRC) connection mode of Radio Resource strengthens, promptly CELL_FACH and (or) the CELL_PCH/URA_PCH state also can use the high speed shared channels technology (this paper is in CELL-FACH and (or) CELL_PCH/URA_PCH state use the ability of high speed shared channels to abbreviate as strengthen the connection mode common condition), short time interval by the high speed shared channels technology, HARQ and AMC mechanism improve the effective peak speed of strengthening the connection mode common condition.The shared control channel (HS-SCCH) that the public physic channel relevant with high speed shared channels has high-speed physical downlink shared channel (HS-PDSCH) (HS-PDSCH) and use for high speed descending sharing channel, the physical channel of sharing for the high speed that guarantees to strengthen the connection mode common condition can operate as normal, need carry out power control to these two physical channels.
Yet, at the subscriber equipment of CELL_FACH and/or CELL_PCH/URA_PCH state, also these two physical channels are not carried out the method that power is controlled at present.
Summary of the invention
Technical problem to be solved by this invention provides a kind of Poewr control method of physical channel mapped by high speed descending sharing channel, a kind of relevant physical channel Poewr control method of high speed descending sharing channel under the connection mode common condition of strengthening is provided, make the base station can use suitable power to send when the subscriber equipment of strengthening under the connection mode common condition sends data, guarantee the correct reception of subscriber equipment for being in.
In order to solve the problems of the technologies described above, the invention provides a kind of Poewr control method of physical channel mapped by high speed descending sharing channel, may further comprise the steps:
(a) radio network controller is by the maximum transmission power of signaled base station physical channel mapped by high speed descending sharing channel, and described maximum transmission power is that subscriber equipment adopts described high speed descending sharing channel correctly to receive the deviate of needed transmitting power of data and Common Pilot Channel transmitting power at cell edge;
When (b) the radio network controller data that send needs to subscriber equipment send to the base station, carry the transmit power level of using when transmitting these data in the Frame of high speed descending sharing channel, described transmit power level is the deviate that the current present position of subscriber equipment correctly receives needed transmitting power of data and described maximum transmission power;
(c) described base station is when subscriber equipment sends data, the transmitting power of described maximum transmission power, transmit power level and Common Pilot Channel that foundation obtains is in advance determined the transmitting power of the actual use of described physical channel, uses this transmitting power to send signaling and/or data to described user terminal.
Further, said method also can have following characteristics: in described step (a), described signaling is that Common transport channel is set up request message or Common transport channel reconfiguration request message.
Further, said method also can have following characteristics: in described step (b), described radio network controller is according to the measurement result to Common Pilot Channel of user equipment to report, the size of media access control protocol data unit and the transmit power level that described maximum transmission power calculates described physical channel, and the measurement result of described Common Pilot Channel is the signal interference ratio of Common Pilot Channel or the received signal intensity or the path loss of Common Pilot Channel; When the signal interference ratio of described Common Pilot Channel big more, perhaps when the received signal intensity of Common Pilot Channel strong more, then this moment, needed transmit power level was more little; When path loss big more, perhaps when the size of media access control protocol data unit big more, then this moment, needed transmit power level was also big more.
Further, said method also can have following characteristics: utilize path loss to calculate described transmit power level and adopt following formula:
TPL = L + [ N T + ( 1 - γ + i ) × Load / L ] - PG + E b N O - CpichPower - MaxHsPower
Wherein, TPL is a transmit power level, and L is the path loss of user equipment to report, N TBe noise power, γ is a nonorthogonal factor, and i is the interference factor of neighbor cell, and load is the current area load, E b/ N oBe signal interference ratio, PG is a processing gain, and described PG equals the ratio W/R of bandwidth and service rate, wherein, and W=3.84M,
Figure A20071007925600072
Figure A20071007925600073
Round in the expression, MacPduSize is the size of protocol Data Unit relevant in the Frame, and CpichPower is the transmitting power of Common Pilot Channel, and MaxHsPower is a maximum transmission power entrained in the signaling;
Utilize the signal interference ratio of Common Pilot Channel to calculate described transmit power level and adopt following formula:
TPL=Min(CPICH_Ec/Nomin-CPICH_Ec/No,0)
Wherein, CPICH_Ec/N0 is the signal interference ratio of Common Pilot Channel, and CPICH_Ec/N0min is the signal interference ratio of the position common pilot signal of cell edge.
Further, said method also can have following characteristics: subscriber equipment reports its measurement result to Common Pilot Channel by cell update request message, wireless resource control connection request message or measurement report message to radio network controller.
Further, said method also can have following characteristics: in described step (c), the actual transmitting power of using of described physical channel is Common Pilot Channel transmitting power and described maximum transmission power and described transmit power level sum.
Further, said method also can have following characteristics: described physical channel is control channel HS-SCCH and the one or more high-speed physical downlink shared channel (HS-PDSCH) HS-PDSCH that is used for high speed descending sharing channel.
Further, said method also can have following characteristics: in described step (c), determine HS-SCCH channel and HS-PDSCH channel transmitting power according to the transmitting power of the actual use of described physical channel and the power division ratio of HS-SCCH and HS-PDSCH, described power division ratio is the ratio of spreading factor of the two and the product of weight.
Further, said method also can have following characteristics: when HS-PDSCH has many, give every HS-PDSCH with HS-PDSCH channel transmitting power mean allocation.
Further, said method also can have following characteristics: in described step (c), if having a plurality of data blocks to be multiplexed in the media access control protocol data unit in a Transmission Time Interval is sent out, then the HS-SCCH channel transmitting power is got the maximum of a plurality of data block transmitting powers, the HS-PDSCH channel transmitting power is got the transmitting power sum of these a plurality of data blocks, and the transmitting power sum of HS-SCCH and HS-PDSCHs is smaller or equal to described maximum transmission power and Common Pilot Channel transmitting power sum.
In order to solve the problems of the technologies described above, the present invention also provides the method for a kind of configuration high-speed downlink channel sharing institute mapping physical channel power parameter, may further comprise the steps:
(A) radio network controller obtains the maximum transmission power of physical channel mapped by high speed descending sharing channel;
(B) described radio network controller sends to the base station by signaling with described maximum transmission power.
Further, said method also can have following characteristics: in described step (A), described radio network controller obtains described maximum transmission power and adopts following steps: (i) described radio network controller calculates the user and correctly receives the needed transmitting power of data at cell edge by physical channel mapped by high speed descending sharing channel; (ii) described radio network controller according to above-mentioned transmitting power and Common Pilot Channel transmitting power calculate this transmitting power with respect to the transmitting power deviate of Common Pilot Channel as the spendable maximum transmission power of the relevant physical channel of described high speed descending sharing channel.
Further, said method also can have following characteristics: in described step (B), described signaling is that Common transport channel is set up request message or Common transport channel reconfiguration request message.
Further, said method also can have following characteristics: after described step (B), after described signaling is received in described base station, preserve maximum transmission power wherein, and return response message to described radio network controller.
Further, said method also can have following characteristics: described physical channel is control channel HS-SCCH and the one or more high-speed physical downlink shared channel (HS-PDSCH) HS-PDSCH that is used for high speed descending sharing channel.
Further, said method also can have following characteristics: the maximum transmission power of described physical channel mapped by high speed descending sharing channel is the maximum transmission power sum of physical channel HS-PDSCH and HS-SCCH.
The invention provides a kind of relevant physical channel Poewr control method of high speed descending sharing channel under the connection mode common condition of strengthening, make the base station can use suitable power to send when the subscriber equipment of strengthening under the connection mode common condition sends data for being in, guarantee the correct reception of subscriber equipment, improved the capacity of system simultaneously.
Description of drawings
Fig. 1 is the Poewr control method flow chart of embodiment of the invention HS-PDSCH and HS-SCCH.
Embodiment
Below in conjunction with the drawings and specific embodiments the present invention is described in further detail.
As shown in Figure 1, the relevant physical channel Poewr control method of high speed shared channels may further comprise the steps under the present embodiment reinforcement connection mode common condition:
Step 110, radio network controller sends signaling to the base station, carry the relevant spendable maximum transmission power of physical channel (MaxHsPower) of high speed descending sharing channel in the described signaling, i.e. the maximum transmission power sum of two physical channel HS-PDSCH and HS-SCCH;
Above-mentioned signaling can be set up request message or Common transport channel reconfiguration request message for Common transport channel.Described maximum transmission power is a relative value, for the user correctly receives the deviation of the needed transmitting power of data (minimum emissive power) and Common Pilot Channel transmitting power at cell edge by high speed descending sharing channel, described Common Pilot Channel transmitting power is pre-set by radio network controller.
Radio network controller can calculate the relevant spendable maximum transmission power of physical channel of high speed descending sharing channel according to the result who measures in advance, as adopting the computing formula calculating of the transmit power level that hereinafter is example with the path loss, the path loss of this moment is the path loss of user at cell edge, i.e. maximum circuit loss value.
Step 120, after described signaling is received in the base station, preserve the spendable maximum transmission power of high speed descending sharing channel related physical channel wherein, and return response message (reshuffling response) as Common transport channel foundation response or Common transport channel to radio network controller;
Step 130, subscriber equipment are passed through cell update request message, wireless resource control connection request message or measurement report message to its measurement result to Common Pilot Channel of wireless network controller reporting;
Measurement result to Common Pilot Channel is: the received signal intensity (RSCP) of signal interference ratio of Common Pilot Channel (Ec/N0) or Common Pilot Channel or path loss (pathloss).
When radio network controller is in the channel reconfiguration course, above-mentioned steps 130 and step 110 and 120 no sequencings, when radio network controller was in channel and sets up process, then step 110 and 120 carried out prior to step 130.
Step 140, when the data that need transmit subscriber equipment when radio network controller are given the base station, spendable transmit power level when calculating HS-SCCH and HS-PDSCH and transmit these data according to the size of the measurement report values of user equipment to report, media access control protocol data unit and maximum transmission power, and in the Frame of high speed descending sharing channel, carry transmit power level and send to the base station;
Described transmit power level correctly receives the deviation of needed minimum emissive power of data and above-mentioned maximum transmission power for the present present position of user, in other words, just user's current location with respect to the deviation that correctly receives the needed transmitting power of data at cell edge.Near more needed transmitting power is more little from the base station for subscriber equipment, and the transmit power level that obtains thus is a negative value, and when subscriber equipment was in cell edge, this transmit power level then got zero.This transmit power level represents that transmitting power that physical channel can really use is smaller or equal to maximum transmission power.Described transmit power level is used for determining total transmitting power of HS-SCCH and one or more HS-PDSCH.
Radio network controller can be determined transmit power level by the following method, but be not limited to this: by subscriber equipment at the measurement report that inserts the Common Pilot Channel that reports radio network controller on the transmission channel at random, such as the signal interference ratio (CPICH_Ec/N0) of Common Pilot Channel or the received signal intensity (RSCP) or the path loss (pathloss) of Common Pilot Channel, and the size of media access control protocol data unit is determined the needed transmit power level of this data cell.When the signal interference ratio of Common Pilot Channel big more, perhaps when the received signal intensity of Common Pilot Channel strong more, show that subscriber equipment is near more apart from the base station, then this moment, needed transmit power level was more little; When path loss is big more, illustrate that subscriber equipment is far away more apart from the base station, perhaps the size when media access control protocol data unit is big more, and then this moment, needed transmit power level was also big more.
With the path loss is example, and the computational methods of transmit power level are as follows:
TPL = L + [ N T + ( 1 - γ + i ) × Load / L ] - PG + E b N O - CpichPower - MaxHsPower
Wherein: TPL is a transmit power level, and L is the path loss of user equipment to report, N TBe noise power, γ is a nonorthogonal factor, and i is the interference factor of neighbor cell, and load is the current area load, E b/ N oBe signal interference ratio, PG is a processing gain, and described PG equals the ratio W/R of bandwidth and service rate, wherein, and W=3.84M,
Figure A20071007925600112
Figure A20071007925600113
Round in the expression, MacPduSize is the size of protocol Data Unit relevant in the Frame, and CpichPower is the transmitting power of Common Pilot Channel, and MaxHsPower is a maximum transmission power entrained in the signaling.
Signal interference ratio (CPICH_Ec/N0) with Common Pilot Channel is an example, and the computational methods of transmit power level are as follows:
TPL=Min(CPICH_Ec/No?min-CPICH_Ec/No,0)
Wherein: CPICH_Ec/N0min is the signal interference ratio of the position common pilot signal of cell edge, and minimum value is got in Min () expression.
Calculate the method for transmit power level according to Common Pilot Channel received signal intensity (RSCP) similar with the method for calculating transmit power level according to the Common Pilot Channel signal interference ratio, repeats no more herein.
Step 150, when the base station sends data to subscriber equipment, transmitting power according to maximum transmission power and transmit power level and Common Pilot Channel determines the transmitting power that physical channel (HS-SCCH and one or more HS-PDSCH) can really use, and the base station uses the transmitting power of determining to send signaling and/or data respectively on HS-SCCH and HS-PDSCH.
Total transmitting power of HS-SCCH and HS-PDSCH is determined to distribute in the base station according to the transmitting power of the transmit power level size (TPL) of pre-configured maximum transmission power of radio network controller and medium access control service data unit and Common Pilot Channel, concrete method is as follows: total transmitting power sum TransmitPowerforHs=MaxHsPower+TPL+CpichPower of HS-SCCH and HS-PDSCHs, then according to HS-SCCH and HS-PDSCH institute data carried by data bit, spreading gain, the power division ratio of HS-SCCH and HS-PDSCHs is distributed in the significance level decision, thereby finally determines the transmitting power of HS-SCCH and HS-PDSCHs.
The base station is determined the allocation proportion of the two transmitting power when having many HS-PDSCH, also to need to consider the physical channel bar number of HS-PDSCH according to the ratio of HS-SCCH and HS-PDSCH spreading factor, can be adopted following formula:
TransimtPowerforHsscch TransimtPowerforHsPdsch = 1 N × 16 128 × α
Wherein: N is a HS-PDSCH physical channel bar number, if modulation system is QPSK, then
Figure A20071007925600122
Figure A20071007925600123
, if modulation system is 16QAM, then
Figure A20071007925600124
Wherein, MachsPduSize is the protocol Data Unit size that MAC-hs will send, and 16 is the spreading factor of HS-PDSCH; 128 is the spreading factor of HS-SCCH, and α is the significance level weight, more than or equal to 1.
As seen, when HS-PDSCH has only one, and weight equals at 1 o'clock, and HS-SCCH is the ratio of the spreading factor of the two with the power division ratio of HS-PDSCH.
If having the data block of a plurality of MAC-c/sh/m to be multiplexed in the media access control protocol data unit in a Transmission Time Interval of the medium access control entity (MAC-hs) of high speed descending sharing channel is sent out, then the transmitting power of HS-SCCH is got the maximum of a plurality of data blocks, the transmitting power of HS-PDSCH is got the transmitting power sum of these a plurality of data blocks, and the transmitting power sum of HS-SCCH and HS-PDSCHs can not surpass the high speed descending sharing channel relevant spendable maximum transmission power of physical channel, promptly relative maximum transmission power and Common Pilot Channel transmitting power sum.
For a MAC-hs pdu, a Transmission Time Interval only needs a HS-SCCH, and HS-PDSCH can be for one or more of at a Transmission Time Interval.If HS-PDSCH is many, then can on the transmitting power basis of determining, mean allocation arrive every physical channel.
The invention provides a kind of relevant physical channel Poewr control method of high speed shared channels under the connection mode common condition of strengthening, so that the base station can use suitable power to send for being in when the subscriber equipment of strengthening under the connection mode common condition sends data, guarantee the correct reception of subscriber equipment and the capacity of raising system.

Claims (16)

1. the Poewr control method of a physical channel mapped by high speed descending sharing channel may further comprise the steps:
(a) radio network controller is by the maximum transmission power of signaled base station physical channel mapped by high speed descending sharing channel, and described maximum transmission power is that subscriber equipment adopts described high speed descending sharing channel correctly to receive the deviate of needed transmitting power of data and Common Pilot Channel transmitting power at cell edge;
When (b) the radio network controller data that send needs to subscriber equipment send to the base station, carry the transmit power level of using when transmitting these data in the Frame of high speed descending sharing channel, described transmit power level is the deviate that the current present position of subscriber equipment correctly receives needed transmitting power of data and described maximum transmission power;
(c) described base station is when subscriber equipment sends data, the transmitting power of described maximum transmission power, transmit power level and Common Pilot Channel that foundation obtains is in advance determined the transmitting power of the actual use of described physical channel, uses this transmitting power to send signaling and/or data to described user terminal.
2. the method for claim 1 is characterized in that, in described step (a), described signaling is that Common transport channel is set up request message or Common transport channel reconfiguration request message.
3. the method for claim 1, it is characterized in that, in described step (b), described radio network controller is according to the measurement result to Common Pilot Channel of user equipment to report, the size of media access control protocol data unit and the transmit power level that described maximum transmission power calculates described physical channel, and the measurement result of described Common Pilot Channel is the signal interference ratio of Common Pilot Channel or the received signal intensity or the path loss of Common Pilot Channel; When the signal interference ratio of described Common Pilot Channel big more, perhaps when the received signal intensity of Common Pilot Channel strong more, then this moment, needed transmit power level was more little; When path loss big more, perhaps when the size of media access control protocol data unit big more, then this moment, needed transmit power level was also big more.
4. method as claimed in claim 3 is characterized in that,
Utilize path loss to calculate described transmit power level and adopt following formula:
TPL = L + [ N T + ( 1 - γ + i ) × Load / L ] - PG + E b N O - CpichPower - MaxHsPower
Wherein, TPL is a transmit power level, and L is the path loss of user equipment to report, N TBe noise power, γ is a nonorthogonal factor, and i is the interference factor of neighbor cell, and load is the current area load, E b/ N oBe signal interference ratio, PG is a processing gain, and described PG equals the ratio W/R of bandwidth and service rate, wherein, and W=3.84M,
Figure A2007100792560003C2
Round in the expression, MacPduSize is in the Frame
The size of relevant protocol Data Unit, CpichPower is the transmitting power of Common Pilot Channel, MaxHsPower is a maximum transmission power entrained in the signaling;
Utilize the signal interference ratio of Common Pilot Channel to calculate described transmit power level and adopt following formula:
TPL=Min(CPICH_Ec/Nomin-CPICH_Ec/No,0)
Wherein, CPICH_Ec/N0 is the signal interference ratio of Common Pilot Channel, and CPICH_Ec/N0min is the signal interference ratio of the position common pilot signal of cell edge.
5. method as claimed in claim 3 is characterized in that, subscriber equipment reports its measurement result to Common Pilot Channel by cell update request message, wireless resource control connection request message or measurement report message to radio network controller.
6. the method for claim 1 is characterized in that, in described step (c), the actual transmitting power of using of described physical channel is Common Pilot Channel transmitting power and described maximum transmission power and described transmit power level sum.
7. the method for claim 1 is characterized in that, described physical channel is control channel HS-SCCH and the one or more high-speed physical downlink shared channel (HS-PDSCH) HS-PDSCH that is used for high speed descending sharing channel.
8. method as claimed in claim 7, it is characterized in that, in described step (c), determine HS-SCCH channel and HS-PDSCH channel transmitting power according to the transmitting power of the actual use of described physical channel and the power division ratio of HS-SCCH and HS-PDSCH, described power division ratio is the ratio of spreading factor of the two and the product of weight.
9. method as claimed in claim 8 is characterized in that, when HS-PDSCH has many, gives every HS-PDSCH with HS-PDSCH channel transmitting power mean allocation.
10. the method for claim 1, it is characterized in that, in described step (c), if having a plurality of data blocks to be multiplexed in the media access control protocol data unit in a Transmission Time Interval is sent out, then the HS-SCCH channel transmitting power is got the maximum of a plurality of data block transmitting powers, the HS-PDSCH channel transmitting power is got the transmitting power sum of these a plurality of data blocks, and the transmitting power sum of HS-SCCH and HS-PDSCHs is smaller or equal to described maximum transmission power and Common Pilot Channel transmitting power sum.
11. the method for a configuration high-speed downlink channel sharing institute mapping physical channel power parameter may further comprise the steps:
(A) radio network controller obtains the maximum transmission power of physical channel mapped by high speed descending sharing channel;
(B) described radio network controller sends to the base station by signaling with described maximum transmission power.
12. method as claimed in claim 11 is characterized in that, in described step (A), described radio network controller obtains described maximum transmission power and adopts following steps:
(i) described radio network controller calculates the user and correctly receives the needed transmitting power of data at cell edge by physical channel mapped by high speed descending sharing channel;
(ii) described radio network controller according to above-mentioned transmitting power and Common Pilot Channel transmitting power calculate this transmitting power with respect to the transmitting power deviate of Common Pilot Channel as the spendable maximum transmission power of the relevant physical channel of described high speed descending sharing channel.
13. method as claimed in claim 11 is characterized in that, in described step (B), described signaling is that Common transport channel is set up request message or Common transport channel reconfiguration request message.
14. method as claimed in claim 11 is characterized in that, after described step (B), after described signaling is received in described base station, preserves maximum transmission power wherein, and returns response message to described radio network controller.
15. method as claimed in claim 11 is characterized in that, described physical channel is control channel HS-SCCH and the one or more high-speed physical downlink shared channel (HS-PDSCH) HS-PDSCH that is used for high speed descending sharing channel.
16. method as claimed in claim 15 is characterized in that, the maximum transmission power of described physical channel mapped by high speed descending sharing channel is the maximum transmission power sum of physical channel HS-PDSCH and HS-SCCH.
CN200710079256A 2007-02-13 2007-02-13 Power control method of physical channel mapped by high speed descending sharing channel Expired - Fee Related CN101247146B (en)

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Cited By (3)

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CN101959292A (en) * 2009-07-20 2011-01-26 华为技术有限公司 Method, equipment and system for saving energy for base station
WO2014019232A1 (en) * 2012-08-03 2014-02-06 富士通株式会社 Method for controlling power of terminal, base station, terminal, system, machine readable program and storage medium
CN104349349A (en) * 2013-07-25 2015-02-11 中国移动通信集团公司 Cell parameter determining method, system and equipment

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MXPA04005859A (en) * 2001-11-16 2004-10-11 Lg Electronics Inc Method for trasmitting power control information for hs-scch in mobile communication system.
KR100891816B1 (en) * 2002-05-11 2009-04-07 삼성전자주식회사 Method for transmitting information of power offset of high speed physical downlink shared channel for high speed downlink packet access in wcdma communication system

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Publication number Priority date Publication date Assignee Title
CN101959292A (en) * 2009-07-20 2011-01-26 华为技术有限公司 Method, equipment and system for saving energy for base station
WO2014019232A1 (en) * 2012-08-03 2014-02-06 富士通株式会社 Method for controlling power of terminal, base station, terminal, system, machine readable program and storage medium
CN104429136A (en) * 2012-08-03 2015-03-18 富士通株式会社 Method for controlling power of terminal, base station, terminal, system, machine readable program and storage medium
CN104349349A (en) * 2013-07-25 2015-02-11 中国移动通信集团公司 Cell parameter determining method, system and equipment
CN104349349B (en) * 2013-07-25 2018-12-18 中国移动通信集团公司 A kind of determination method, system and the equipment of cell parameter

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