WO2010107267A2 - 채널 상태 정보 레퍼런스 신호를 전송하는 시스템 - Google Patents
채널 상태 정보 레퍼런스 신호를 전송하는 시스템 Download PDFInfo
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- WO2010107267A2 WO2010107267A2 PCT/KR2010/001696 KR2010001696W WO2010107267A2 WO 2010107267 A2 WO2010107267 A2 WO 2010107267A2 KR 2010001696 W KR2010001696 W KR 2010001696W WO 2010107267 A2 WO2010107267 A2 WO 2010107267A2
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- channel state
- reference signal
- state information
- subframe
- base station
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- 230000005540 biological transmission Effects 0.000 claims abstract description 25
- 238000000034 method Methods 0.000 claims description 13
- 230000011664 signaling Effects 0.000 claims description 4
- 239000000284 extract Substances 0.000 abstract description 4
- 238000010586 diagram Methods 0.000 description 13
- 230000008054 signal transmission Effects 0.000 description 6
- 230000007704 transition Effects 0.000 description 1
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L5/00—Arrangements affording multiple use of the transmission path
- H04L5/003—Arrangements for allocating sub-channels of the transmission path
- H04L5/0048—Allocation of pilot signals, i.e. of signals known to the receiver
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L5/00—Arrangements affording multiple use of the transmission path
- H04L5/003—Arrangements for allocating sub-channels of the transmission path
- H04L5/0048—Allocation of pilot signals, i.e. of signals known to the receiver
- H04L5/005—Allocation of pilot signals, i.e. of signals known to the receiver of common pilots, i.e. pilots destined for multiple users or terminals
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L5/00—Arrangements affording multiple use of the transmission path
- H04L5/003—Arrangements for allocating sub-channels of the transmission path
- H04L5/0078—Timing of allocation
- H04L5/0082—Timing of allocation at predetermined intervals
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W72/00—Local resource management
- H04W72/30—Resource management for broadcast services
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W84/00—Network topologies
- H04W84/02—Hierarchically pre-organised networks, e.g. paging networks, cellular networks, WLAN [Wireless Local Area Network] or WLL [Wireless Local Loop]
- H04W84/04—Large scale networks; Deep hierarchical networks
- H04W84/042—Public Land Mobile systems, e.g. cellular systems
- H04W84/047—Public Land Mobile systems, e.g. cellular systems using dedicated repeater stations
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B7/00—Radio transmission systems, i.e. using radiation field
- H04B7/24—Radio transmission systems, i.e. using radiation field for communication between two or more posts
- H04B7/26—Radio transmission systems, i.e. using radiation field for communication between two or more posts at least one of which is mobile
- H04B7/2603—Arrangements for wireless physical layer control
- H04B7/2606—Arrangements for base station coverage control, e.g. by using relays in tunnels
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L5/00—Arrangements affording multiple use of the transmission path
- H04L5/0091—Signaling for the administration of the divided path
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W72/00—Local resource management
- H04W72/20—Control channels or signalling for resource management
- H04W72/23—Control channels or signalling for resource management in the downlink direction of a wireless link, i.e. towards a terminal
Definitions
- the present invention relates to a reference signal (RS) required for data transmission and reception and signaling of a reference signal.
- the present invention also includes a reference signal and signaling for transmitting and receiving data between a base station and a relay in a wireless communication system using a relay.
- an appropriate reference signal For effective data transmission and reception, an appropriate reference signal (RS) needs to be transmitted.
- the reference signal is necessary to demodulate data, and is also required to generate channel state information (CSI) by measuring channel state between the base station and the terminal.
- the terminal generates channel state information and transmits it to the base station, and the base station transmits data to the terminal using the channel state information.
- a reference signal used to extract channel state information is called a “channel state information reference signal (CSI RS)."
- multiple input multiple output (MIMO) transmission and reception require a plurality of reference signals.
- Reference signals transmitted by the base station are preferably orthogonal to each other.
- the base station transmits a reference signal unique to each base station to all terminals in the coverage. As the number of antennas installed in a base station increases, the number of reference signals required also increases.
- An object of the present invention is to provide a method for transmitting a channel state information reference signal for data transmission between a base station and a relay in a system using a relay.
- the present invention provides a base station for transmitting a subframe to a terminal or a relay, wherein, among the subframes, channel state information reference signal pattern information for transmitting information on a subframe including a channel state information reference signal to a terminal or a relay It provides a base station including a transmitter for transmitting the channel state information reference signal and data to the terminal or the relay with reference to the information on the transmitter and the sub-frame.
- a channel state information reference signal pattern information receiving unit for receiving information on a subframe including a channel state information reference signal from a base station, the base station with reference to the information on the subframe
- a receiver for receiving a channel state information reference signal from the receiver, a channel state information extractor for extracting channel state information between the base station and the relay using the channel state information reference signal, and a feedback for feeding back the estimated channel state information to the base station;
- a relay is provided that includes a portion.
- the channel state information reference signal pattern information receiving unit for receiving information on the subframe including the channel state information reference signal from the base station, by referring to the information on the subframe
- a channel state information extracting unit for extracting channel state information between the base station and the terminal using the channel state information reference signal, and feeding back the estimated channel state information to the base station A terminal including a feedback unit is provided.
- a channel state information reference signal for data transmission between a base station and a relay can be easily transmitted in a system using a relay.
- FIG. 1 is a view for explaining a reference signal transmission system according to the present invention.
- FIG 2 illustrates an MBSFN subframe according to an embodiment of the present invention.
- FIG. 3 is a diagram illustrating a structure of an MBSFN subframe according to an embodiment of the present invention.
- FIG. 4 is a diagram illustrating a subframe structure of a base station and a relay when the relay receives data transmitted by the base station.
- FIG. 5 illustrates subframes including a reference signal according to another embodiment of the present invention.
- FIG. 6 illustrates an embodiment of the present invention in which a reference signal is placed in a frequency band.
- FIG. 7 illustrates another embodiment of the present invention in which a reference signal is placed in a frequency band.
- FIG 8 illustrates another embodiment of the present invention in which a reference signal is placed in a frequency band.
- FIG. 9 is a block diagram showing the structure of a base station according to an embodiment of the present invention.
- FIG. 10 is a block diagram showing the structure of a relay according to an embodiment of the present invention.
- FIG. 11 is a diagram illustrating a structure of a terminal according to an embodiment of the present invention.
- FIG. 1 is a view for explaining a reference signal transmission system according to the present invention.
- the reference signal transmission system includes a base station 110, a relay 130, a macro terminal 120, and a relay terminal 140.
- the macro terminal 120 directly connects to the base station 110 and receives data directly from the base station 110.
- the relay terminal 140 connects to the relay 130 and receives data from the relay 130.
- the relay 130 receives data from the base station 110 and forwards the received data to the relay terminal 140.
- a phase In the reference signal transmission system, a phase, a downlink between the base station 110 and the macro terminal 120, a phase, a downlink between the base station 110 and the relay 130, and a phase, downlink between the relay 130 and the relay terminal 140.
- the link exists.
- six links In the reference signal transmission system, six links must be effectively divided and used in limited system resources.
- FIG 2 illustrates an MBSFN subframe according to an embodiment of the present invention.
- the relay 130 signals the UEs that the subframe used to receive a signal from the base station 110 is an MBSFN subframe.
- the frame includes ten subframes
- the relay 130 may designate subframes 220, 230, 240, and 250 as MBSFN subframes in each frame 210.
- the relay 130 receives data from the base station 110 using the MBSFN subframes 220, 230, 240, 250, and uses other subframes other than the MBSFN subframes 220, 230, 240, 250. Data may be forwarded to the relay terminal 140.
- FIG. 3 is a diagram illustrating a structure of an MBSFN subframe according to an embodiment of the present invention.
- the horizontal axis represents the passage of time and the vertical axis represents the frequency band.
- the subframe 300 signaled to the MBSFN to receive data from the base station transmits a control signal such as a reference signal (RS), PCFICH, PDCCH, PHICH, etc. using some symbols 310 at the front of the subframe.
- the relay receives a signal from the base station using the remaining section of the MBSFN subframe 300.
- FIG. 4 is a diagram illustrating a subframe structure of a base station and a relay when the relay receives data transmitted by the base station.
- 4A is a diagram illustrating a structure of a downlink subframe 410 transmitted by the base station 110 to the macro terminal 120 and the relay 130.
- the subframe 410 includes a control signal region 420 and a data region 430.
- the base station 110 may transmit a reference signal RS, a PCFICH, a PDCCH, and a PHICH using the control signal region 420, and transmit a PDSCH using the data region 430.
- the control signal region 420 may be configured by using some symbols at the front of the subframe.
- the 4B is a diagram illustrating a structure of a downlink subframe 440 transmitted by the relay 130 to the relay terminal 140.
- the relay 130 signals the subframe 440 corresponding to the base station 110 subframe 410 as the MBSFN subframe.
- the downlink subframe 440 configured to receive a signal from the device station includes a control signal area 450 and a reception area 460.
- the relay 130 may transmit a reference signal RS, PCFICH, PDCCH, and PHICH using the control signal region 450 for the relay terminal 140 that receives data from the relay 130.
- the relay 130 receives data from the base station 110 for a time corresponding to the reception area 460, and does not transmit data to the relay terminal 140.
- FIG. 5 illustrates subframes including a channel state information reference signal according to another embodiment of the present invention.
- the channel state information reference signal may not be included in every subframe. That is, the channel state information reference signal may be included only in some subframes selected from among the subframes transmitted from the base station 110 to the macro terminal 120 or the relay 130.
- the macro terminal 120 or the relay 130 receives the channel state information reference signal, and estimates the state of the channel between the base station 110 and the macro terminal 120 or the relay 130 using the same.
- the macro terminal 120 and the relay 130 must know which subframe includes the channel state information reference signal. That is, the macro terminal 120 and the relay 130 must know the transmission pattern of the channel state information reference signal.
- the base station 110 signals the transmission pattern of the channel state information reference signal to the macro terminal 120 and the relay 130, and the macro terminal 120 and the relay 130 refer to the transmission pattern of the channel state information reference signal.
- the channel state information reference signal may be received from the base station 110.
- the base station 110 may periodically transmit the channel state information reference signal.
- the transmission period of the channel state information reference signal may be the same for each base station. While all base stations transmit the channel state information reference signal in the same transmission period, the channel state information reference signal may be transmitted using different subframes using a cell specific offset.
- the channel state information reference signal pattern information may include a transmission period and an offset of the channel state information reference signal.
- the base station A may transmit the channel state information reference signal only in subframes that satisfy Equation 1 below.
- N is the number of subframes included in one frame, Is a transmission period of the channel state information reference signal.
- all base stations have the same offset May have different offsets May have Also offset Value and the channel period information transmission period of the reference signal Can change over time.
- Base station offset Is transmitted to the macro terminal 120 and the relay 130, the macro terminal 120 and the relay 130 is offset Value and channel status information of reference signal transmission period With reference to the value of the channel state information reference signal can be received.
- (A) of FIG. 5 is an offset Is the value '0', the transmission period of the channel state information reference signal
- the channel state information reference signal is transmitted using each subframe.
- the hatched subframes 511, 512, 513, 514, and 515 include a channel state information reference signal.
- the base station 110 may transmit the channel state information reference signal using a set of one or more equally spaced subframes. That is, the cycle , The offset is A set of equally spaced subframes
- the base station 110 may transmit a channel state information reference signal using subframes belonging to the union U of Equation 2 below.
- the base station 110 includes one or more offsets in the channel state information reference signal pattern information to inform the terminal 120 or the relay 130.
- Channel status information reference signal pattern information It includes.
- the base station 110 transmits the channel state information reference signal to a subframe belonging to the set of Equation 2.
- 5B is an offset vector In this case, the channel state information reference signal is transmitted.
- the transmission period corresponding to each element of the offset vector is '5'.
- the hatched subframes 521, 522, 523, 524, 525, 526, 527, 528, and 529 include channel state information reference signals.
- the values of the transmission periods corresponding to each element of the offset vector may be different from each other. That is, the base station 110 is a period vector And offset vector
- the channel state information reference signal may be transmitted to subframes belonging to the union U of Equation 3 below.
- the base station 110 generates channel state information reference signal pattern information including one or more periods and one or more offsets to signal the terminal 120 or the relay 130.
- the hatched subframes 531, 532, 533, 534, 535, 536, 537, 538, 539 include a channel state information reference signal.
- the value of the period vector or the value of the offset vector may be determined identically for the plurality of base stations or may be differently determined.
- the base station 110 transmits a channel state information reference signal using a control channel (CCH).
- CCH control channel
- Value or offset The value of may be signaled to the macro terminal 120 or the relay 130.
- the base station 110 may periodically transmit the parameters to the macro terminal 120 or the relay 130, and to the macro terminal 120 or the relay 130 only when the values of the parameters are changed. Can transmit
- the channel state information reference signal in the case of periodically transmitting the channel state information reference signal, it may be set so as not to transmit the channel state information reference signal in exceptionally specific subframes.
- the channel state information reference signal when a subframe corresponds to the following condition, the channel state information reference signal may not be transmitted even though a specific subframe corresponds to a period for transmitting the channel state information reference signal.
- the terminal 120 or the relay 130 informs the position information of the subframes that are configured to not transmit the channel state information reference signal regardless of the period.
- the base station 110 informs the terminal or the relay of the MBSFN subframe designated for the MBMS service.
- the base station 110 informs the terminal 120 or the relay 130 of a downlink subframe used as a backhaul link for receiving data.
- the channel state information reference signal may be used for data transmission and reception between the base station 110 and the relay 130.
- the relay 130 may receive only specific subframes allocated for the link between the base station 110 and the relay 130 among the subframes transmitted by the base station 110. Therefore, if the channel state information reference signal does not exist in the subframe allocated for the link between the base station 110 and the relay 130, the relay 130 may not receive the channel state information reference signal. Accordingly, the base station 110 has a constraint in determining a subframe in which the channel state information reference signal is to be transmitted.
- the base station 110 may not periodically allocate a subframe to transmit the channel state information reference signal.
- a subframe to transmit the channel state information reference signal may be determined, and the position of the determined subframe may be transmitted to the macro terminal 120 or the relay 130 using bitmap information. That is, the base station 110 expresses information on the subframe including the channel state information reference signal as a bitmap and informs the terminal 120 or the relay.
- the bitmap information may indicate whether each subframe includes a channel state information reference signal. For example, if the value of the bitmap information is '1', the subframe corresponding to the bitmap information includes the channel state information reference signal.
- the channel state information reference signal may not be included.
- the channel state information reference pattern information may include bitmap information indicating whether the channel state information reference signal is transmitted.
- the base station 110 may transmit the identifier list of the subframe to which the channel state information reference signal is to be transmitted to the macro terminal 120 or the relay 130.
- the base station 110 may transmit whether the n + kth subframe includes the channel state information reference signal to the macro terminal 120 or the relay 130 using the nth subframe.
- the value of k is greater than or equal to 0 and may be set differently according to each base station.
- the base station 110 may transmit to the macro terminal 120 whether the n + kth subframe includes the channel state information reference signal using the PCFICH channel of the nth subframe.
- the base station 110 transmits to the relay 130 whether the n + kth subframe includes the channel state information reference signal using a separate channel for the relay. Can be. According to one embodiment, this separate channel may be located after a symbol used for PDCCH transmission and transition gap.
- the base station 110 may transmit a value including k in the nth subframe. That is, the base station 110 informs the terminal 120 or the relay 130 that the channel state information reference signal is transmitted in the n + kth subframe.
- the relay 130 may receive only some subframes among the subframes transmitted by the base station 110, the relay 130 may receive pattern information of the channel state information reference signal transmitted by the base station 110 to the macro terminal 120. none.
- the base station 110 may transmit pattern information of the channel state information reference signal to the relay 130 using a separate channel for relay. This separate channel may be a control channel for relays or a downlink shared channel for relays.
- the base station 110 transmits the channel state information reference signal only in some subframes.
- the relay 130 may estimate the channel state information reference signal only in some subframes. Accordingly, the relay 130 may receive the channel state information reference signal only when the subframe in which the base station transmits the channel state information reference signal and the subframe in which the relay 130 receives the base station 110 signal match. . If it does not match, the relay 130 cannot receive the channel state information reference signal.
- FIG. 6 illustrates an embodiment of the present invention in which a channel state information reference signal is disposed in a frequency band.
- the base station 110 transmits the channel state information reference signal in a subframe allocated to the link between the base station 110 and the relay 130.
- the channel state information reference signal may exist in all subframes allocated to the link between the base station 110 and the relay 130 or may exist only in some subframes.
- FIG. 6 illustrates an embodiment in which the channel state information reference signals 661, 662, 663, 664, 665, 666, and 667 exist in all frequency bands 630, 640, and 650 of the subframe 610.
- FIG. 7 is a diagram illustrating another embodiment of the present invention in which a channel state information reference signal is disposed in a frequency band.
- the channel state information reference signals 751, 752, and 753 are present only in the frequency band 740 assigned to the relay and not in the other frequency bands 720 and 730.
- the base station 110 may transmit a channel state information reference signal to a plurality of relays.
- frequency bands can be individually assigned to each relay.
- the base station 110 may allocate the channel state information reference signal to the union of all frequency bands individually allocated for transmitting data to the relays.
- the base station 110 allocates the channel state information reference signal in the allocated frequency band for transmitting data to the macro terminal as well as the union of all frequency bands individually allocated for transmitting data to the relays. can do.
- the base station 110 may allocate the channel state information reference signal to only some frequency bands of the downlink resource. In this case, instead of using the same frequency band in all subframes transmitting the channel state information reference signal, different frequency bands may be used. In this case, the base station 110 may transmit to the relay 130 which frequency band the channel state information reference signal is located in.
- FIG. 9 is a block diagram showing the structure of a base station according to an embodiment of the present invention.
- the base station 900 includes a channel state information reference signal pattern information transmitter 910 and a transmitter 920.
- the channel state information reference signal pattern information transmitter 910 transmits information on a subframe including the channel state information reference signal from among the subframes transmitted by the transmitter 920 to the macro terminal 930 or the relay 940. send.
- the macro terminal 930 is a terminal that accesses the base station 900 and directly receives data from the base station 900.
- the macro terminal 930 extracts channel state information between the base station 900 and the macro terminal 930 using the channel state information reference signal, and feeds back the extracted channel state information to the base station 900. .
- the channel state information reference signal pattern information includes an identifier list of a subframe including the channel state information reference signal, a transmission period and an offset of the subframe including the channel state information reference signal, and a channel state information reference signal. And at least one of a bitmap for a subframe and information indicating whether a channel state information reference signal is present in k or more subframes.
- the channel state information reference signal pattern information may include location information of subframes configured to not transmit the channel state information reference signal regardless of a period.
- the channel state information reference signal pattern information may include location information of an MBSFN subframe configured for MBMS service.
- the channel state information reference signal pattern information may include location information of a downlink subframe configured for data backhaul link.
- the information about the subframe including the channel state information reference signal pattern information or the channel state information reference signal may be determined for the plurality of base stations or may be differently determined.
- the channel state information reference signal pattern information transmitting unit 910 may transmit information on a subframe including the channel state information reference signal to the macro terminal 930 using a control channel.
- the channel state information reference signal pattern information transmitter 910 may transmit information on a subframe including the channel state information reference signal to the relay 940.
- the transmitter 920 transmits the channel state information reference signal and data to the macro terminal 930 or the relay 940 with reference to the information on the subframe.
- the transmitter 920 may not transmit the channel state information reference signal in the MBSFN subframe configured for the MBMS service.
- the transmitter 920 may not transmit the channel state information reference signal in a downlink subframe used as a backhaul link for receiving data.
- the relay 940 extracts channel state information with the base station 900 by using the channel state information reference signal.
- FIG. 10 is a block diagram showing the structure of a relay according to an embodiment of the present invention.
- the relay 1000 includes a channel state information reference signal pattern information receiver 1010, a receiver 1020, a channel state information extractor 1030, and a feedback unit 1040.
- the base station 1050 transmits the subframe including the data to the relay 1000. Some of the subframes transmitted by the base station 1050 include a channel state information reference signal.
- the channel state information reference signal pattern information receiver 1010 receives information about a subframe including the channel state information reference signal from the base station 1050.
- the channel state information reference signal pattern information includes an identifier list of a subframe including the channel state information reference signal, a transmission period and an offset of the subframe including the channel state information reference signal, and a channel state information reference signal. And at least one of a bitmap for a subframe and information indicating whether a channel state information reference signal is present in k or more subframes.
- the channel state information reference signal pattern information may include location information of subframes configured to not transmit the channel state information reference signal regardless of a period.
- the channel state information reference signal pattern information may include location information of an MBSFN subframe configured for MBMS service.
- the channel state information reference signal pattern information may include location information of a downlink subframe configured for data backhaul link.
- the receiver 1020 receives the channel state information reference signal from the base station 1050 by referring to the information on the subframe.
- the channel state information extractor 1030 generates channel state information between the base station 1050 and the relay 1000 by using the channel state information reference signal.
- the feedback unit 1040 may feed back the extracted channel state information to the base station 1050.
- the base station 1050 may directly transmit data to the macro terminal 1060 connected to the base station 1050.
- FIG. 11 is a diagram showing the structure of a terminal according to an embodiment of the present invention.
- the terminal 1100 includes a channel state information reference signal pattern information receiver 1110, a receiver 1120, a channel state information extractor 1130, and a feedback unit 1140.
- the channel state information reference signal pattern information receiver 1110 receives information about a subframe including the channel state information reference signal from the base station 1150.
- the channel state information reference signal pattern information includes an identifier list of a subframe including the channel state information reference signal, a transmission period and an offset of the subframe including the channel state information reference signal, and a channel state information reference signal. And at least one of a bitmap for a subframe and information indicating whether a channel state information reference signal is present in k or more subframes.
- the channel state information reference signal pattern information may include location information of subframes configured to prevent transmission of the channel state information reference signal regardless of a period.
- the channel state information reference signal pattern information may include location information of an MBSFN subframe configured for MBMS service.
- the channel state information reference signal pattern information may include location information of a downlink subframe configured for data backhaul link.
- the channel state information reference signal pattern information receiver 1110 may receive information on a subframe using a control channel (CCH).
- CCH control channel
- the receiver 1120 receives the channel state information reference signal from the base station 1150 with reference to the information on the subframe.
- the channel state information extractor 1130 extracts channel state information between the base station 1150 and the terminal 1100 by using the channel state information reference signal.
- the feedback unit 1140 may feed back the extracted channel state information to the base station 1150.
- the base station 1150 may directly transmit data to the relay 1160 connected to the base station 1150.
- the relay 1160 may forward data received from the base station 1150 to the relay terminal 1170 connected to the relay 1160.
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Abstract
Description
Claims (15)
- 단말기 또는 릴레이로 서브 프레임을 전송하는 기지국에 있어서,상기 서브 프레임들 중에서, 채널 상태 정보 레퍼런스 신호를 포함하는 서브 프레임에 대한 정보를 단말기 또는 릴레이로 전송하는 채널 상태 정보 레퍼런스 신호 패턴 정보 전송부; 및상기 서브 프레임에 대한 정보를 참조하여 상기 단말기 또는 릴레이로 상기 채널 상태 정보 레퍼런스 신호 및 데이터를 전송하는 전송부를 포함하는 기지국.
- 제1항에 있어서,상기 채널 상태 정보 레퍼런스 신호 패턴 정보 전송부는,채널 상태 정보 레퍼런스 신호를 포함하는 서브 프레임에 대한 정보에 채널 상태 정보 레퍼런스 신호가 전송되는 서브 프레임의 주기 또는 오프셋을 포함하여 전송하는 기지국.
- 제2항에 있어서,상기 채널 상태 정보 레퍼런스 신호 패턴 정보 전송부는상기 채널 상태 정보 레퍼런스 신호가 전송되는 서브 프레임의 주기 또는 오프셋을 다른 셀의 서브 프레임의 주기 또는 오프셋과 상이하게 설정하는 기지국.
- 제1항에 있어서,상기 채널 상태 정보 레퍼런스 신호 패턴 정보 전송부는상기 서브 프레임에 대한 정보를 다른 셀의 서브 프레임에 대한 정보와 상기하게 설정하는 기지국.
- 제1항에 있어서,상기 서브 프레임에 대한 정보는 상기 서브프레임의 하나 이상의 주기 또는 하나 이상의 오프셋을 포함하는 기지국.
- 제1항에 있어서,상기 서브 프레임에 대한 정보는 상기 채널 상태 정보 레퍼런스 신호를 전송하지 못하도록 설정된 서브프레임들의 정보를 포함하는 기지국.
- 제1항에 있어서,상기 서브 프레임에 대한 정보는 데이터 수신용 백홀 링크(backhaul link)로 사용되는 하향링크 서브 프레임 정보를 포함하는 기지국.
- 제1항에 있어서,상기 서브 프레임에 대한 정보는 MBMS 서비스를 위해 설정된 MBSFN 서브 프레임의 정보를 포함하는 기지국.
- 제1항에 있어서,상기 채널 상태 정보 레퍼런스 신호 패턴 정보는 상기 서브 프레임의 식별자 리스트, 상기 서브 프레임의 전송 주기 및 오프셋, 상기 서브 프레임에 대한 비트맵, 상기 서브 프레임으로부터 k개 이후의 서브 프레임에서 채널 상태 정보 레퍼런스 신호의 존재 유무를 알리는 정보 중에서 적어도 하나 이상을 포함하는 기지국.
- 제1항에 있어서,상기 전송부는 데이터 수신용 백홀 링크로 사용되는 하향링크 서브 프레임에서는 채널 상태 정보 레퍼런스 신호를 전송하지 않는 기지국.
- 제1항에 있어서,상기 전송부는 MBMS 서비스를 위해 설정된 MBSFN 서브 프레임에서는 채널 상태 정보 레퍼런스 신호를 전송하지 않는 기지국.
- 제1항에 있어서,상기 채널 상태 정보 레퍼런스 신호 패턴 정보 전송부는 상기 서브 프레임에 대한 정보를 릴레이가 수신할 수 있는 별도의 채널을 통해 시그널링하는 기지국.
- 제12항에 있어서,상기 채널 상태 정보 레퍼런스 신호 패턴 정보 전송부는 상기 서브 프레임에 대한 정보를 릴레이를 위한 제어 채널 또는 하향링크 공유 채널(downlink shared channel)을 통해 시그널링하는 기지국.
- 릴레이에 있어서,기지국으로부터 채널 상태 정보 레퍼런스 신호를 포함하는 서브 프레임에 대한 정보를 수신하는 채널 상태 정보 레퍼런스 신호 패턴 정보 수신부;상기 서브 프레임에 대한 정보를 참조하여 상기 기지국으로부터 채널 상태 정보 레퍼런스 신호를 수신하는 수신부;상기 채널 상태 정보 레퍼런스 신호를 이용하여 상기 기지국과 상기 릴레이간의 채널 상태 정보를 추출하는 채널 상태 정보 추출부; 및상기 추출된 채널 상태 정보를 기지국에게 전송하는 피드백부;를 포함하는 릴레이.
- 단말기에 있어서,기지국으로부터 채널 상태 정보 레퍼런스 신호를 포함하는 서브 프레임에 대한 정보를 수신하는 채널 상태 정보 레퍼런스 신호 패턴 정보 수신부;상기 서브 프레임에 대한 정보를 참조하여 상기 기지국으로부터 채널 상태 정보 레퍼런스 신호를 수신하는 수신부;상기 채널 상태 정보 레퍼런스 신호를 이용하여 상기 기지국과 상기 단말기간의 채널 상태 정보를 추출하는 채널 상태 정보 추출부; 및상기 추출된 채널 상태 정보를 기지국에게 전송하는 피드백부;를 포함하는 단말기.
Priority Applications (9)
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EP17167712.3A EP3229396B1 (en) | 2009-03-18 | 2010-03-18 | System for transmitting reference signals for obtaining channel state information |
CN201080022157.4A CN102428662B (zh) | 2009-03-18 | 2010-03-18 | 基站/终端或中继站传送/接收参考信号的方法 |
JP2012500724A JP5487294B2 (ja) | 2009-03-18 | 2010-03-18 | チャネル状態情報を有するレファレンス信号を送信するシステム |
EP10753717.7A EP2410671B1 (en) | 2009-03-18 | 2010-03-18 | Method for signaling patterns of csi-rs subframes |
ES10753717.7T ES2637293T3 (es) | 2009-03-18 | 2010-03-18 | Método para señalizar patrones de subtramas de CSI-RS |
US13/235,845 US10979185B2 (en) | 2009-03-18 | 2011-09-19 | System for transmitting reference signal with information on state of channel |
US17/225,136 US11588598B2 (en) | 2009-03-18 | 2021-04-08 | System for transmitting reference signal with information on state of channel |
US18/104,809 US11916831B2 (en) | 2009-03-18 | 2023-02-02 | System for transmitting reference signal with information on state of channel |
US18/586,426 US20240204944A1 (en) | 2009-03-18 | 2024-02-24 | System for transmitting reference signal with information on state of channel |
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CN104935420B (zh) | 2018-07-17 |
KR20100105495A (ko) | 2010-09-29 |
CN102428662B (zh) | 2016-03-16 |
ES2637293T3 (es) | 2017-10-11 |
US20120020272A1 (en) | 2012-01-26 |
US11916831B2 (en) | 2024-02-27 |
EP2410671B1 (en) | 2017-05-31 |
EP2410671A2 (en) | 2012-01-25 |
US10979185B2 (en) | 2021-04-13 |
EP3229396B1 (en) | 2018-12-05 |
US11588598B2 (en) | 2023-02-21 |
CN104935420A (zh) | 2015-09-23 |
KR101269890B1 (ko) | 2013-05-31 |
JP5487294B2 (ja) | 2014-05-07 |
EP3229396A1 (en) | 2017-10-11 |
WO2010107267A3 (ko) | 2010-12-09 |
US20230179360A1 (en) | 2023-06-08 |
CN102428662A (zh) | 2012-04-25 |
US20210226753A1 (en) | 2021-07-22 |
JP2012521145A (ja) | 2012-09-10 |
US20240204944A1 (en) | 2024-06-20 |
EP2410671A4 (en) | 2012-08-22 |
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