CN1921360A - Method for distributing up time-frequency resource - Google Patents

Method for distributing up time-frequency resource Download PDF

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Publication number
CN1921360A
CN1921360A CNA2005100368832A CN200510036883A CN1921360A CN 1921360 A CN1921360 A CN 1921360A CN A2005100368832 A CNA2005100368832 A CN A2005100368832A CN 200510036883 A CN200510036883 A CN 200510036883A CN 1921360 A CN1921360 A CN 1921360A
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China
Prior art keywords
frequency
user
information
resource
pilot
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CNA2005100368832A
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Chinese (zh)
Inventor
黄睿
马莎
曲秉玉
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Huawei Technologies Co Ltd
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Huawei Technologies Co Ltd
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Application filed by Huawei Technologies Co Ltd filed Critical Huawei Technologies Co Ltd
Priority to CNA2005100368832A priority Critical patent/CN1921360A/en
Priority to PCT/CN2006/002206 priority patent/WO2007025466A1/en
Priority to CNA2006800213923A priority patent/CN101199147A/en
Publication of CN1921360A publication Critical patent/CN1921360A/en
Pending legal-status Critical Current

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L5/00Arrangements affording multiple use of the transmission path
    • H04L5/003Arrangements for allocating sub-channels of the transmission path
    • H04L5/0048Allocation of pilot signals, i.e. of signals known to the receiver
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L25/00Baseband systems
    • H04L25/02Details ; arrangements for supplying electrical power along data transmission lines
    • H04L25/0202Channel estimation
    • H04L25/022Channel estimation of frequency response
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L25/00Baseband systems
    • H04L25/02Details ; arrangements for supplying electrical power along data transmission lines
    • H04L25/0202Channel estimation
    • H04L25/0224Channel estimation using sounding signals
    • H04L25/0226Channel estimation using sounding signals sounding signals per se

Abstract

The invention relates to a method for distributing ascending time domain resource, which comprises: distributing time resource for the user pilot mark with same frequency band as data mark; setting the frequency resource occupied by the user pilot mark in time resource less than the frequency resource of data mark in time resource; distributing the left frequency resource beside the one occupied by the pilot mark to transmit the information of other users or the control information of said user. The invention can effectively use ascending resource to multiplex multi user information, to improve the resource utilization. In addition, it can confirm better peak-average property of pilot and data of ascending user.

Description

A kind of distribution method of uplink time
Technical field
The present invention relates to wireless communication technology, more particularly, relate to a kind of distribution method of uplink time.
Background technology
Since the nineties in 20th century, multi-transceiver technology becomes the hot spot technology of broadband wireless communications, and its basic thought is that a bandwidth carrier is divided into a plurality of subcarriers, transmits data simultaneously on these a plurality of subcarriers.In the middle of the system applies of majority, the width of subcarrier is less than the coherence bandwidth of channel, like this on frequency-selective channel, decline on each subcarrier is a flat fading, thereby reduced intersymbol interference, and do not needed complicated channel equalization, be fit to the transmission of high-speed data.
Multi-transceiver technology can use frequency domain channel estimation technique and frequency-domain equalization technology usually.Some single-carrier systems also can be by carrying out Fourier transform (FFT, Fourier Transformation) at receiving terminal, the system of single-carrier system equivalence for being made of a plurality of parallel subcarriers, frequency domain channel is estimated and frequency domain equalization is handled to carry out.
Wherein frequency domain channel estimates to adopt usually the coherent demodulation method based on supplementary, this channel estimation methods based on supplementary is in some fixed position of transmitting terminal signal some known frequency pilot signs to be set, and utilizes these frequency pilot signs to carry out channel estimating at receiving terminal.
In the system that adopts frequency domain channel estimation and frequency domain equalization, be equivalent to used resource and also had the time-frequency two-dimensional structure.At this moment, the design of frequency pilot sign is more flexible, can carry out multiplexingly in time and two territories of frequency,, just can obtain reasonable channel estimating effect at receiving terminal as long as the interval of frequency pilot sign on time and frequency direction is enough little with respect to the correlation time and the channel coherence bandwidth of channel.
As shown in Figure 1, for down link, frequency pilot sign comprises the frequency pilot sign of common pilot and the frequency pilot sign with the road pilot tone of user's special use.The needed channel estimating of the coherent demodulation of user data is generally obtained by the common pilot that all users are issued in the base station, and such pilot design can have higher efficient taking under the situation of less running time-frequency resource.
As shown in Figure 2, for up link, because each user's channel circumstance is different, the frequency pilot sign that each user is used for channel estimating all is special-purpose with the road pilot tone.In order to guarantee the accuracy of channel estimating, the expense of common up dedicated pilot is all bigger.
Simultaneously, the uplink control signaling expense also is to need to consider.For example, wireless communication system utilizes method such as scheduling of resource to improve the performance of whole system usually.These methods can increase the expense of system resource simultaneously.In the system of channeling, different users fixedly can be arranged on the different subbands, as shown in Figure 3; Also can change, effectively arrange the transfer resource of different user, comprise frequency resource and time resource, to obtain higher spectrum utilization efficiency and user satisfaction along with the frequency and the time of wireless channel.Especially, to frequency scheduling wherein, but need the base station can know the channel information of user's all frequency subbands on dispatch frequency range.This is concerning up, but the user who needs each to participate in scheduling usually sends training information on all subbands of dispatch frequency range, so that allow the base station know the channel situation of each frequency subband, dispatch.This training information needs bigger expense, also rational arrangement will be arranged so that guarantee up peak-to-average force ratio simultaneously.
In addition, the up signaling of some short and small physical layers that downlink data transmission is brought also will increase overhead, with up data and pilot tone carry out rationally multiplexing, the feedback information (ACK) that for example descending HARQ needs etc.In order to adapt to different translational speeds, insert the quantity difference of pilot tone in the system in addition, can reduce the resource overhead of system like this, also need to increase some interactive signaling simultaneously, this signaling also needs to carry out rationally multiplexing with up data and pilot tone.
On the other hand, the peak-to-average force ratio of transmitting power also is a very important problem in the up link, and existing single-carrier technology often by carry out the carrying of signal on time domain waveform, makes that the peak-to-average force ratio of transmitting power is lower.Pilot tone and data generally adopt the Time Division Multiplexing mode, then adopt frequency division multiplexing (FDM) mode or time division multiplexing mode between each user data, shown in Fig. 2,3, be respectively the pilot tone layout plan (is example with 4 users) in user's channeling of dispersing mode and centralized system.In this pilot design mode, the frequency band that pilot tone and data occupancy are same, and take all interior frequency resources of this frequency band.Thereby the control information of up transmission also needs the expense of corresponding extra increase system, and usage factor of system resource is reduced.
Therefore, how effectively utilizing ascending resource to carry out the effectively multiplexing of up channel, improve the resource utilization of whole system, do not influence data transmission performance again simultaneously, is the problem that must solve at present.
Summary of the invention
The technical problem to be solved in the present invention is, above-mentioned deficiency at prior art, provide a kind of uplink time that can effectively utilize to carry out the effectively multiplexing of up channel, improve resource utilization ratio, can guarantee the distribution method of the uplink time of channel estimating performance simultaneously.
The technical solution adopted for the present invention to solve the technical problems is: a kind of distribution method of uplink time is provided, comprises:
A. take the time resource of same frequency band for user's pilot symbol allocations and its data symbol;
B. set the frequency resource that user's frequency pilot sign takies and be less than the frequency resource that the corresponding data symbol takies in its time resource in its time resource; And
C. the remaining frequencies resource allocation except that the shared frequency resource of pilot tone in the time resource of frequency pilot sign is used to transmit other users' information or this user's control information.
Distribution method of the present invention, described user's frequency pilot sign comprises first frequency pilot sign, this first frequency pilot sign is the pectination spectrum, forms surplus resources between the adjacent two frequency pilot sign broach.
Distribution method of the present invention, described user's frequency pilot sign comprises second frequency pilot sign, this second frequency pilot sign takes all frequency resources in this frequency band.。
Distribution method of the present invention, the formation method of described pectination spectrum is
A plurality of pilot value form a pilot blocks;
Sampling point duration boil down to chip duration with each pilot value in the pilot blocks;
This piece is carried out the repetition of secondary at least.
Distribution method of the present invention, described user's frequency pilot sign evenly takies the frequency sub-carrier in its frequency resource at interval.
Distribution method of the present invention, described step C comprises that further the information that makes other users or this user's the even compartment of terrain of control information takies the frequency sub-carrier in the described residual frequency resource.
Distribution method of the present invention, the required information that the up channel situation is measured of described other users comprises one of information, synchronizing information or adaptive pilot selection information of up frequency domain dispatching at least.
Distribution method of the present invention, described step C comprises that further at least one channel estimation period of control information interval with other users' information or this user is transmitted.
Distribution method of the present invention, the user described in the described steps A comprises that data symbol takies a plurality of users of the different frequency bands of identical time resource, each user's frequency pilot sign takies the different frequency bands of identical time resource.
Distribution method of the present invention, the residual frequency resource among the described step C in the time resource of a plurality of different user frequency pilot signs is allocated for another identical user of transmission information.
The present invention solves the another kind of technical scheme that its technical problem adopts: a kind of distribution method of uplink time is provided, and it is used for up a plurality of user data and is undertaken by frequency band it is characterized in that under the situation of frequency division multiplexing, comprising:
A1. set the frequency resource that this user's frequency pilot sign takies and be less than the frequency resource that the corresponding data symbol takies;
B1. many users separately frequency pilot sign align in time at the frequency spectrum that it forms on frequency resource separately;
C1. the residual frequency resource that forms between the frequency pilot sign broach separately of user can be used to transmit separately control information or the information of other different users.
Implement the distribution method of uplink time of the present invention, can make pilot tone take the frequency resource more sparse than data, and can effectively utilize the information of other users of residual frequency resource transmission except that the shared frequency resource of frequency pilot sign in the time resource of frequency pilot sign or this user's control information, carry out the effectively multiplexing of the pilot tone of up channel and user profile, guaranteeing under the constant situation of user's frequency domain channel estimated performance and data transmission performance, more effectively utilize ascending resource to carry out the multiplexing of multi-user information, thereby improve resource utilization ratio.In addition, can also guarantee that up user's pilot tone and data have peak-to-average force ratio characteristic preferably.
The invention will be further described below in conjunction with drawings and Examples.
Description of drawings
Fig. 1 is the layout plan of common pilot on the down link.
Fig. 2 is the pilot tone layout plan in the dispersing mode user channeling on the up link.
Fig. 3 is the pilot tone layout plan in the centralized system user channeling on the up link.
Fig. 4 is the flow chart of the distribution method of uplink time of the present invention.
Fig. 5 is the schematic diagram that one embodiment of the invention forms pectination spectrum pilot tone.
Fig. 6 is the pilot tone time-frequency resource allocating schematic diagram of one embodiment of the invention in centralized system user channeling.
Fig. 7 is that one embodiment of the invention is provided with the sparse degree of pilot tone and the comparison schematic diagram of channel estimating performance.
Fig. 8 is a plurality of pilot tone time-frequency resource allocating schematic diagram of the present invention.
Fig. 9 is user's of the present invention sparse pilot tone can extend to other frequency bands on frequency a distribution schematic diagram.
Embodiment
The distribution method of uplink time of the present invention, make that carrying out the required time-division pilot tone of data demodulates (carrying out channel estimating) takies the least possible frequency resource, and can effectively utilize the information of other users of residual frequency resource transmission in the pilot tone time period or this user's control information.As shown in Figure 4, this method may further comprise the steps:
A. take the same frequency band time resource for user's pilot symbol allocations and its data symbol;
B. set the frequency resource that user's frequency pilot sign takies and be less than the frequency resource that the corresponding data symbol takies in its time resource in its time resource; And
C. the shared frequency resource of frequency pilot sign in the time resource of frequency pilot sign is outer residual frequency resource allocation is used to transmit other users' information or this user's control information.
In embodiments of the present invention, in each TTI (Transmission Time Interval) time division multiplexing user's data and pilot tone, can insert at least one pilot tone among each TTI, make pilot tone and data that identical sample rate be arranged, take same frequency band, but in this frequency band, frequency pilot sign takies the frequency resource of lacking than data symbol.This can accomplish by following process:
The pilot tone of supposing user i comprises Q value d q (i), form a pilot blocks, wherein each sampling point duration is Ts, this user's a pilot blocks can be expressed as d ( i ) = [ d 0 ( i ) , d 1 ( i ) , · · · , d Q - 1 ( i ) ] T (wherein T representing matrix transposition).Compress the sampling point in this piece, make it become chip duration Tc by duration Ts, and then this piece is carried out L time repetition, the frequency pilot sign that obtains after the reprocessing is:
Wherein L represents the number of repetition of this piece, and the frequency pilot sign after this reprocessing can further be expressed as:
c l ( i ) = 1 L · d l mod Q ( i ) , l=0,1,…,QL-1。
On frequency axis, be rendered as the spectral shape of one group of pectination like this through the sequence of pilot symbols that obtains after the reprocessing, as shown in Figure 5.
Above-mentioned pectination frequency spectrum can have different frequency domain side-play amounts on frequency domain, obtain another group pectination spectrum, and each organizes interlaced with each other the coming of pectination spectrum, and pilot tone can be selected wherein any one group.This can realize in the following way: select one group of specific phase vectors:
s l ( i ) = exp { - j · l · Φ ( i ) } , l=0,…,QL-1, Φ ( i ) = i · 2 π QL ,
Wherein S represents phase vectors, and Φ represents phase rotation coefficient.
With this group phase vectors and the above-mentioned data symbol c that obtains that obtains l (i)Multiply each other by element, the frequency pilot sign that will obtain this user i at last is:
x ( i ) = [ c 0 ( i ) , c 1 ( i ) e - jΦ ( i ) , · · · , c QL - 1 ( i ) e - j ( QL - 1 ) Φ ( i ) ] T .
For guaranteeing channel estimating performance, the minimum interval between the frequency pilot sign broach is less than the coherence bandwidth of channel.On time domain, insert the density of pilot tone and not change at interval, but on frequency domain, can make each pilot tone form the pectination spectrum, shown in Fig. 5,6, so just, the frequency resource that makes frequency pilot sign take in its time resource is less than the frequency resource that the corresponding data symbol takies in its time resource, form the residual frequency resource between the adjacent two frequency pilot sign broach.
In the present embodiment, frequency pilot sign evenly takies the frequency sub-carrier in its frequency resource at interval.By the realization of above-mentioned pectination spectrum, by change number of repetition L, L 〉=2, pilot tone acquisition frequency resource is the 1/L of resource in this frequency band.For example when L=2, frequency pilot sign only takies even number or the odd subcarriers in the said frequencies resource.Certainly, also can adopt the frequency pilot sign non-uniform spacing to take the pattern of the frequency sub-carrier in its frequency resource.
At this moment, the information that other users' need transmit can take the residual frequency resource between the frequency pilot sign broach, with this user's pilot tone frequency division multiplexing, to be transmitted.When wherein inserting other user profile, the even compartment of terrain of user profile can be inserted in the described residual frequency resource, also can inhomogeneously insert.Evenly the method for inserting can still adopt the formation method of above-mentioned pectination spectrum, just adopts the pectination spectrum frequency domain side-play amount that is different from this user's pilot tone.In addition, other users' information a plurality of transmissions at interval/reception data processing unit ground inserts in this residual frequency resource, as long as can satisfy the demand of transmitting subscriber information.These other users' information includes but not limited to the information that the up channel situation is measured that other users are required, and this metrical information includes but not limited to information, synchronizing information and the adaptive pilot selection information etc. of up frequency domain dispatching.The information that wherein is used for up frequency domain dispatching can comprise subcarrier or the subband metrical information that is used for frequency domain dispatching, the subcarrier feedback information that is used for frequency domain dispatching etc. again.
In addition, some ascending control informations of this user self also can be in the residual frequency transmitted over resources between the frequency pilot sign broach.These users' control information includes but not limited to the relevant control information of downlink transfer of this user feedback, and this control information can be the relevant affirmation information of down mixing repeat requests.In addition, user profile can also be subscriber equipment metrical information, channel quality indication (CQI) information (Channel QualityIndicator is called for short CQI) etc.
At receiving terminal,, obtain same user's data and pilot tone earlier with the received signal demultiplexing.Because of the minimum interval between the two frequency pilot sign broach on the frequency domain less than the coherence bandwidth of channel, so can obtain the channel response of other positions by interpolation method.Therefore, after demultiplexing obtains pilot tone, can estimate the channel parameter of the current subcarrier of its frequency pilot sign earlier, pass through the channel parameter of all subcarriers of interpolation method data estimator place again.Simultaneously, the separation by to pilot tone pectination spectrum recovers other multiplexing information.
If multiplexing is this user's control information, these information can be with carrying out demodulation with the pilot tone of its frequency division multiplexing, or adopt other noncoherent demodulation methods to carry out demodulation.
If multiplexing is other users' information, these information do not need demodulation (for example doing the information that channel situation is measured) maybe can adopt other non-coherent demodulation methods to carry out demodulation usually.
This embodiment of the present invention is fully guaranteeing to have reduced the resource that pilot tone takies under the situation of channel estimating performance.With the system among the 3GPP TS25.814 is example, 1,1/2,1/4,1/8 several situations that respectively frequency pilot sign taken total band resource on frequency domain have been compared, comparative result as shown in Figure 7, show at frequency domain and be taken in the interval of two frequency pilot signs during less than the channel coherence bandwidth (first three kind situation) that the influence that utilizes interpolation to estimate that the channel response performance of other subcarriers is subjected to is very little.
Simultaneously, the above-mentioned situation that equidistantly interleaves pilot tone at frequency domain can guarantee that also this user's pilot tone and data have peak-to-average force ratio characteristic preferably.Other users' information equidistantly interleaving on the residue frequency domain resource also can guarantee other users peak-to-average force ratio characteristic preferably.For the mode of other control informations of multiplexing this user on pilot tone residual frequency resource oneself, also can adopt other measures to guarantee that peak-to-average force ratios are less simultaneously.
When user data among the same TTI and a plurality of frequency pilot sign time division multiplexing, consider the assurance of the channel estimating performance under some special applications scenes, can be only part frequency pilot sign be wherein carried out aforesaid operations, other frequency pilot signs then take the whole frequency resource in its time resource.Like this, fifty-fifty, the frequency resource that pilot tone takies is still sparse than the frequency resource of data occupancy, can utilize other users' of residual frequency resource transmission that form between the frequency pilot sign broach of this part pilot tone information or this user's control information.For example shown in Figure 8, insert a pilot tone respectively at the head and tail of TTI, wherein the pilot tone of head forms the pectination spectrum.It is poor that this situation can be used for channel circumstance, under the smaller situation of the coherence bandwidth of frequency.
Undertaken under the situation of frequency division multiplexing by frequency band at up a plurality of user data, can also adopt said method, make these a plurality of users separately frequency pilot sign its separately the pectination spectrum pilot tone that go up to form of frequency resource (frequency band) align in time, the residual frequency resource that these users form between the frequency pilot sign broach separately can be used to transmit separately control information or the information of other different users, also can unified allocation of resources, be used to transmit same other users' information.In addition, the bandwidth of the frequency band of the frequency resource of these a plurality of CUs can be identical, can also be different.
Especially, a kind of mode of unified allocation of resources is as follows.The example of Fig. 8 can expand to situation as shown in Figure 9, and user's sparse pilot tone can extend to other frequency bands on frequency, is used for carrying out the channel measurement of other frequency bands.At this moment, the resource of other shared frequency bands is frequency resources that other users' pilot tone discharged in the time.This extension can realize by the unified pectination spectrum of longer block length.Particularly, promptly at least two pilot tones are inserted in the different time position in this TTI, and wherein a pilot tone is that (subband that comprises other users) forms the pectination spectrum on whole frequency band, and other pilot tone then takies the frequency resource in the shared subband of this user data.Among Fig. 9, head and tail at TTI inserts a pilot tone respectively, wherein the pilot tone of head forms frequency resource that wideer pectination spectrum and data division carry out the channel estimating of data block and data division different frequency bands with the frequency resource of frequency band and carries out channel quality measurement to frequency band.Method for above-mentioned time-frequency resource allocating, residual frequency resource among the step C in the time resource of a plurality of different user frequency pilot signs is allocated for another identical user of transmission information, and the pilot tone among this information and above-mentioned another user's self the step B realizes with unified pectination spectrum.
The distribution method of uplink time of the present invention makes pilot tone take the frequency resource more sparse than data division, realize pilot tone sparse resource distribution on frequency domain, and utilize outer other users' of remaining frequencies resource transmission of the shared frequency resource of pilot tone in the time resource of frequency pilot sign information or this user's control information.The present invention is applicable to when any system resource can be passed through, the system of frequency division multiplexing.

Claims (22)

1, a kind of distribution method of uplink time is characterized in that, comprising:
A. take the same frequency band time resource for user's pilot symbol allocations and its data symbol;
B. set the frequency resource that this user's frequency pilot sign takies and be less than the frequency resource that the corresponding data symbol takies in its time resource in its time resource; And
C. the residual frequency resource allocation outside the shared frequency resource of frequency pilot sign in the time resource of frequency pilot sign is used to transmit other users' information or this user's control information.
2, distribution method according to claim 1 is characterized in that, the user's frequency pilot sign in the steps A comprises first frequency pilot sign, and this first frequency pilot sign is the pectination spectrum, forms surplus resources between the adjacent two frequency pilot sign broach.
3, distribution method according to claim 2 is characterized in that, the user's frequency pilot sign in the steps A comprises second frequency pilot sign, and this second frequency pilot sign takes all frequency resources in this frequency band.。
4, distribution method according to claim 2 is characterized in that, the formation method of pectination spectrum is that a plurality of pilot value form a pilot blocks;
Sampling point duration boil down to chip duration with each pilot value in the pilot blocks;
This piece is carried out the repetition of secondary at least.
5, distribution method according to claim 1 is characterized in that, the user's frequency pilot sign among the step B evenly takies the frequency sub-carrier in its frequency resource at interval.
6, distribution method according to claim 2 is characterized in that, the information of other users among the step C or this user's control information adopt the pectination spectrum frequency domain side-play amount that is different from this first pilot signal evenly to insert in the described residual frequency resource.
According to each described distribution method of claim 1, it is characterized in that 7, described step C comprises that further the information that makes other users or this user's the even compartment of terrain of control information takies the frequency sub-carrier in the described residual frequency resource.
8, according to each described distribution method of claim 1, it is characterized in that, in the described residual frequency resource of insertion of a plurality of transmissions of the information interval of other users among the step C/reception data processing unit.
9, distribution method according to claim 1 is characterized in that, described other users' information is the required information that the up channel situation is measured of other users.
10, distribution method according to claim 9 is characterized in that, the required information that the up channel situation is measured of described other users comprises one of information, synchronizing information or adaptive pilot selection information of up frequency domain dispatching at least.
11, distribution method according to claim 10 is characterized in that, the described information that is used for up frequency domain dispatching comprises the subcarrier or the subband metrical information that are used for frequency domain dispatching at least, is used for one of subcarrier feedback information of frequency domain dispatching.
12, distribution method according to claim 11 is characterized in that, described this user's control information user profile also comprises family device measuring information and/or channel quality indication (CQI) information.
13, distribution method according to claim 12 is characterized in that, the control information that the downlink transfer of described this user feedback is relevant is the relevant affirmation information of down mixing repeat requests.
14, distribution method according to claim 1 is characterized in that, described step C comprises that further at least one channel estimation period of control information interval with other users' information or this user is transmitted.
15, distribution method according to claim 1 is characterized in that, the user described in the described steps A comprises that data symbol takies a plurality of users of the different frequency bands of identical time resource, and each user's frequency pilot sign takies the different frequency bands of identical time resource.
16, distribution method according to claim 1 is characterized in that, the minimum interval between this first frequency pilot sign broach is less than the coherence bandwidth of channel.
According to claim 1 or 15 described distribution methods, it is characterized in that 17, the residual frequency resource among the step C in the time resource of a plurality of different user frequency pilot signs is allocated for another identical user of transmission information.
18, distribution method according to claim 17, it is characterized in that, this promptly inserts at least two pilot tones in the different time position in this time interval, and wherein a pilot tone is to form the pectination spectrum on whole frequency band, and other pilot tone then takies the frequency resource in the shared subband of this user data.
19, distribution method according to claim 17 is characterized in that, the pilot tone among another identical user information and above-mentioned another user's self the step B realizes with unified pectination spectrum.
20, distribution method according to claim 17, it is characterized in that, in this time interval the head and other positions insert a pilot tone respectively, wherein the pilot tone of head forms wideer pectination spectrum, carry out the channel estimating of data block with data division with the frequency resource of frequency band and the frequency resource of data division different frequency bands is transmitted other users' information or this user's control information.
21, distribution method according to claim 20 is characterized in that and the frequency resource of data division different frequency bands is carried out channel quality measurement to frequency band.
22, a kind of distribution method of uplink time, it is used for up a plurality of user data and is undertaken by frequency band it is characterized in that under the situation of frequency division multiplexing, comprising:
A. set the frequency resource that this user's frequency pilot sign takies and be less than the frequency resource that the corresponding data symbol takies;
B. many users separately frequency pilot sign align in time at the frequency spectrum that it forms on frequency resource separately;
C. the residual frequency resource that forms between the frequency pilot sign broach separately of user can be used to transmit separately control information or the information of other different users.
CNA2005100368832A 2005-08-28 2005-08-28 Method for distributing up time-frequency resource Pending CN1921360A (en)

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CNA2005100368832A CN1921360A (en) 2005-08-28 2005-08-28 Method for distributing up time-frequency resource
PCT/CN2006/002206 WO2007025466A1 (en) 2005-08-28 2006-08-28 A method for distributing up link time frequency resource and a device thereof
CNA2006800213923A CN101199147A (en) 2005-08-28 2006-08-28 Method and device for distributing up running time-frequency resource

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