WO2010048429A2 - Scope of channel quality reporting region in a multi-carrier system - Google Patents
Scope of channel quality reporting region in a multi-carrier system Download PDFInfo
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- WO2010048429A2 WO2010048429A2 PCT/US2009/061714 US2009061714W WO2010048429A2 WO 2010048429 A2 WO2010048429 A2 WO 2010048429A2 US 2009061714 W US2009061714 W US 2009061714W WO 2010048429 A2 WO2010048429 A2 WO 2010048429A2
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- WIPO (PCT)
- Prior art keywords
- carrier
- carriers
- wireless communications
- communications apparatus
- carrier set
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Classifications
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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
- H04B7/2612—Arrangements for wireless medium access control, e.g. by allocating physical layer transmission capacity
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B7/00—Radio transmission systems, i.e. using radiation field
- H04B7/02—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas
- H04B7/022—Site diversity; Macro-diversity
- H04B7/024—Co-operative use of antennas of several sites, e.g. in co-ordinated multipoint or co-operative multiple-input multiple-output [MIMO] systems
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B7/00—Radio transmission systems, i.e. using radiation field
- H04B7/02—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas
- H04B7/04—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas
- H04B7/0413—MIMO systems
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B7/00—Radio transmission systems, i.e. using radiation field
- H04B7/02—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas
- H04B7/04—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas
- H04B7/0413—MIMO systems
- H04B7/0417—Feedback systems
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B7/00—Radio transmission systems, i.e. using radiation field
- H04B7/02—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas
- H04B7/04—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas
- H04B7/06—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station
- H04B7/0613—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using simultaneous transmission
- H04B7/0615—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using simultaneous transmission of weighted versions of same signal
- H04B7/0619—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using simultaneous transmission of weighted versions of same signal using feedback from receiving side
- H04B7/0621—Feedback content
- H04B7/063—Parameters other than those covered in groups H04B7/0623 - H04B7/0634, e.g. channel matrix rank or transmit mode selection
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B7/00—Radio transmission systems, i.e. using radiation field
- H04B7/02—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas
- H04B7/04—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas
- H04B7/06—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station
- H04B7/0613—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using simultaneous transmission
- H04B7/0615—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using simultaneous transmission of weighted versions of same signal
- H04B7/0619—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using simultaneous transmission of weighted versions of same signal using feedback from receiving side
- H04B7/0621—Feedback content
- H04B7/0632—Channel quality parameters, e.g. channel quality indicator [CQI]
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B7/00—Radio transmission systems, i.e. using radiation field
- H04B7/02—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas
- H04B7/04—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas
- H04B7/06—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station
- H04B7/0613—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using simultaneous transmission
- H04B7/0615—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using simultaneous transmission of weighted versions of same signal
- H04B7/0619—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using simultaneous transmission of weighted versions of same signal using feedback from receiving side
- H04B7/0636—Feedback format
- H04B7/0639—Using selective indices, e.g. of a codebook, e.g. pre-distortion matrix index [PMI] or for beam selection
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L1/00—Arrangements for detecting or preventing errors in the information received
- H04L1/0001—Systems modifying transmission characteristics according to link quality, e.g. power backoff
- H04L1/0023—Systems modifying transmission characteristics according to link quality, e.g. power backoff characterised by the signalling
- H04L1/0026—Transmission of channel quality indication
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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
- H04L5/0001—Arrangements for dividing the transmission path
- H04L5/0003—Two-dimensional division
- H04L5/0005—Time-frequency
- H04L5/0007—Time-frequency the frequencies being orthogonal, e.g. OFDM(A), DMT
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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
- H04L5/0032—Distributed allocation, i.e. involving a plurality of allocating devices, each making partial allocation
- H04L5/0035—Resource allocation in a cooperative multipoint environment
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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
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L5/00—Arrangements affording multiple use of the transmission path
- H04L5/0001—Arrangements for dividing the transmission path
- H04L5/0014—Three-dimensional division
- H04L5/0023—Time-frequency-space
Definitions
- Wireless communication systems oftentimes employ one or more base stations that provide a coverage area.
- a typical base station can transmit multiple data streams for broadcast, multicast and/or unicast services, wherein a data stream may be a stream of data that can be of independent reception interest to an access terminal.
- An access terminal within the coverage area of such base station can be employed to receive one, more than one, or all the data streams carried by the composite stream.
- an access terminal can transmit data to the base station or another access terminal.
- access terminal 304 in this instance, can be a device capable of multicarrier communication with base station 302, and as such can include multichannel feedback component 306.
- Multichannel feedback component 306 can define distinct and diverse carrier sets, group one or more carriers into the distinct and diverse carrier sets, based at least in part on the ascertained carrier sets, appropriately render CQI feedback across the carriers included in the determined group or set, and thereafter can dispatch or transmit the CQI for the carrier set to base station 302.
- grouping component 308 can define and/or agglomerate carriers into disparate carrier sets or groups based at least in part on whether or not communication is being effectuated utilizing specific frequency bands or subbands. For instance, grouping component 308 can deduce that CQI feedback for carriers in frequency band A need to be configured in a first manner whereas CQI feedback for carriers in frequency band B should be constituted in a disparate manner. Accordingly, grouping component 308 can define and/or create a grouping for CQI feedback for carriers in a first frequency band (e.g., frequency band A) such that the CQI feedback for those carriers consigned to this first grouping can utilize a common or similar CQI feedback configuration.
- a first frequency band e.g., frequency band A
- Grouping component 308 can also define and/or create a grouping for CQI feedback for carriers in a second frequency band (e.g., frequency band B) wherein the CQI feedback for carriers in this alternate grouping can employ a common or similar CQI feedback configuration unique to this second grouping and/or distinct from the CQI feedback configuration of the first grouping.
- grouping component 308 can consider a carrier within the group of carriers as comprising a whole frequency band for the purposes of providing CQI feedback for the defined group in its entirety. For example, within a defined group, grouping component 308 can ascertain that there are two carriers utilizing a bandwidth of 5MHz.
- Fig. 10 provides representation of an illustrative grouping scheme 1000 that can be employed in conjunction with the claimed subject matter.
- five DL carriers e.g., carrier 1, carrier 2, carrier 3, carrier 4, and carrier 5
- a serving base station e.g., base station 302
- Carriers 1, 2, and 3 can have been broadcast in a first frequency band, frequency band A
- carriers 4 and 5 can have been transmitted in a second frequency band, frequency band B.
- Methodology 1100 can commence at 1102 where a carrier set can be defined based at least in part on one or more factors, such as transmission mode, for example. At 1104 multiple DL carriers can be monitored and/or grouped into the defined carrier sets.
- the CQI feedback disseminated back to the serving base station is based on a representative or randomly selected or identified DL carrier received from the serving base station.
- the representative or randomly selected or identified DL can be representative of the defined carrier set as a whole. Therefore, there is typically no need to take measurement, for the purpose of CQI feedback, of all DL carriers included in the carrier set; measurement of a representative sample (e.g., at least one) of the DL carriers included in the carrier set can suffice for the purposes of CQI feedback.
- inferences can be made regarding use of power and phase coherence to multiplex and/or manage interference in the context of flash signals.
- the term to "infer” or “inference” refers generally to the process of reasoning about or inferring states of the system, environment, and/or user from a set of observations as captured via events and/or data. Inference can be employed to identify a specific context or action, or can generate a probability distribution over states, for example. The inference can be probabilistic - that is, the computation of a probability distribution over states of interest based on a consideration of data and events.
- Access terminal 304 can additionally comprise memory 1208 that is operatively coupled to processor 1206 and that can store data to be transmitted, received data, and any other suitable information related to performing the various actions and functions set forth herein.
- memory 1208 can store group-specific signaling constraints employed by one or more base stations.
- Memory 1208 can additionally store protocols and/or algorithms associated with identifying signaling constraints used for communicating resource block assignments and/or employing such signaling constraints to analyze received assignment messages.
- RAM is available in many forms such as synchronous RAM (SRAM), dynamic RAM (DRAM), synchronous DRAM (SDRAM), double data rate SDRAM (DDR SDRAM), enhanced SDRAM (ESDRAM), Synchlink DRAM (SLDRAM), and direct Rambus RAM (DRRAM).
- SRAM synchronous RAM
- DRAM dynamic RAM
- SDRAM synchronous DRAM
- DDR SDRAM double data rate SDRAM
- ESDRAM enhanced SDRAM
- SLDRAM Synchlink DRAM
- DRRAM direct Rambus RAM
- the memory 1208 of the subject systems and methods is intended to comprise, without being limited to, these and any other suitable types of memory.
- Receiver 1202 is further operatively coupled to a multicarrier feedback component 1210 which can be substantially similar to multicarrier feedback component 306 of Fig. 3.
- Fig. 13 shows an example wireless communication system 1300.
- the wireless communication system 1300 depicts one base station 1310 and one access terminal 1350 for sake of brevity.
- system 1300 can include more than one base station and/or more than one access terminal, wherein additional base stations and/or access terminals can be substantially similar or different from example base station 1310 and access terminal 1350 described below.
- base station 1310 and/or access terminal 1350 can employ the systems (Figs. 1-4, 12, and 14) and/or method (Fig. 11) described herein to facilitate wireless communication there between.
- traffic data for a number of data streams is provided from a data source 1312 to a transmit (TX) data processor 1314.
- TX data processor 1314 formats, codes, and interleaves the traffic data stream based on a particular coding scheme selected for that data stream to provide coded data.
- the coded data for each data stream can be multiplexed with pilot data using orthogonal frequency division multiplexing (OFDM) techniques. Additionally or alternatively, the pilot symbols can be frequency division multiplexed (FDM), time division multiplexed (TDM), or code division multiplexed (CDM).
- FDM frequency division multiplexed
- TDM time division multiplexed
- CDDM code division multiplexed
- TX MIMO processor 1320 which can further process the modulation symbols (e.g., for OFDM). TX MIMO processor 1320 then provides N T modulation symbol streams to N T transmitters (TMTR) 1322a through 1322t. In various embodiments, TX MIMO processor 1320 applies beamforming weights to the symbols of the data streams and to the antenna from which the symbol is being transmitted.
- TMTR transmitters
- Each transmitter 1322 receives and processes a respective symbol stream to provide one or more analog signals, and further conditions (e.g., amplifies, filters, and upconverts) the analog signals to provide a modulated signal suitable for transmission over the MIMO channel. Further, N T modulated signals from transmitters 1322a through 1322t are transmitted from N T antennas 1324a through 1324t, respectively.
- An RX data processor 1360 can receive and process the N R received symbol streams from N R receivers 1354 based on a particular receiver processing technique to provide N ⁇ "detected" symbol streams.
- RX data processor 1360 can demodulate, deinterleave, and decode each detected symbol stream to recover the traffic data for the data stream.
- the processing by RX data processor 1360 is complementary to that performed by TX MIMO processor 1320 and TX data processor 1314 at base station 1310.
- a processor 1370 can periodically determine which available technology to utilize as discussed above. Further, processor 1370 can formulate a reverse link message comprising a matrix index portion and a rank value portion. [0086] The reverse link message can comprise various types of information regarding the communication link and/or the received data stream. The reverse link message can be processed by a TX data processor 1338, which also receives traffic data for a number of data streams from a data source 1336, modulated by a modulator 1380, conditioned by transmitters 1354a through 1354r, and transmitted back to base station 1310.
- the Logical Control Channels can include a Dedicated Control Channel (DCCH), which is a Point-to-point bi-directional channel that transmits dedicated control information and can be used by UEs having a RRC connection.
- DCCH Dedicated Control Channel
- the Logical Traffic Channels can comprise a Dedicated Traffic Channel (DTCH), which is a Point-to-point bi-directional channel dedicated to one UE for the transfer of user information.
- DTCH Dedicated Traffic Channel
- the Logical Traffic Channels can include a Multicast Traffic Channel (MTCH) for Point-to-multipoint DL channel for transmitting traffic data.
- MTCH Multicast Traffic Channel
- Transport Channels comprise a Broadcast Channel (BCH), a Downlink Shared Data Channel (DL-SDCH) and a Paging Channel (PCH).
- BCH Broadcast Channel
- DL-SDCH Downlink Shared Data Channel
- PCH Paging Channel
- the PCH can support UE power saving (e.g., Discontinuous Reception (DRX) cycle can be indicated by the network to the UE, ...) by being broadcasted over an entire cell and being mapped to Physical layer (PHY) resources that can be used for other control/traffic channels.
- the UL Transport Channels can comprise a Random Access Channel (RACH), a Request Channel (REQCH), an Uplink Shared Data Channel (UL-SDCH) and a plurality of PHY channels.
- RACH Random Access Channel
- REQCH Request Channel
- UL-SDCH Uplink Shared Data Channel
- the PHY channels can include a set of DL channels and UL channels.
- the DL PHY channels can include: Common Pilot Channel (CPICH); Synchronization Channel (SCH); Common Control Channel (CCCH); Shared DL Control Channel (SDCCH); Multicast Control Channel (MCCH); Shared UL Assignment Channel (SUACH); Acknowledgement Channel (ACKCH); DL Physical Shared Data Channel (DL-PSDCH); UL Power Control Channel (UPCCH); Paging Indicator Channel (PICH); and/or Load Indicator Channel (LICH).
- CPICH Common Pilot Channel
- SCH Common Control Channel
- CCCH Common Control Channel
- SDCCH Shared DL Control Channel
- MCCH Multicast Control Channel
- SUACH Shared UL Assignment Channel
- ACKCH DL Physical Shared Data Channel
- UPCH UL Power Control Channel
- PICH Paging Indicator Channel
- LICH Load Indicator Channel
- the UL PHY Channels can include: Physical Random Access Channel (PRACH); Channel Quality Indicator Channel (CQICH); Acknowledgement Channel (ACKCH); Antenna Subset Indicator Channel (ASICH); Shared Request Channel (SREQCH); UL Physical Shared Data Channel (UL-PSDCH); and/or Broadband Pilot Channel (BPICH).
- PRACH Physical Random Access Channel
- CQICH Channel Quality Indicator Channel
- ACKCH Acknowledgement Channel
- ASICH Antenna Subset Indicator Channel
- SREQCH Shared Request Channel
- UL-PSDCH UL Physical Shared Data Channel
- BPICH Broadband Pilot Channel
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- Signal Processing (AREA)
- Computer Networks & Wireless Communication (AREA)
- Physics & Mathematics (AREA)
- Mathematical Physics (AREA)
- Quality & Reliability (AREA)
- Mobile Radio Communication Systems (AREA)
- Radio Transmission System (AREA)
- Detection And Prevention Of Errors In Transmission (AREA)
Abstract
Description
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Priority Applications (5)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
EP09740616.9A EP2351274B1 (en) | 2008-10-22 | 2009-10-22 | Channel quality reporting for groups of carriers in a multi-carrier system |
KR1020147025073A KR20140115379A (en) | 2008-10-22 | 2009-10-22 | Channel quality reporting for groups of carriers in a multi-carrier system |
CN200980142415.XA CN102197615B (en) | 2008-10-22 | 2009-10-22 | The scope in channel quality reporting region in multicarrier system |
KR1020117011725A KR101529976B1 (en) | 2008-10-22 | 2009-10-22 | Channel quality reporting for groups of carriers in a multi-carrier system |
JP2011533343A JP2012506678A (en) | 2008-10-22 | 2009-10-22 | Channel quality report for groups of carriers in a multi-carrier system |
Applications Claiming Priority (4)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US10760108P | 2008-10-22 | 2008-10-22 | |
US61/107,601 | 2008-10-22 | ||
US12/603,410 | 2009-10-21 | ||
US12/603,410 US8948704B2 (en) | 2008-10-22 | 2009-10-21 | Scope of channel quality reporting region in a multi-carrier system |
Publications (2)
Publication Number | Publication Date |
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WO2010048429A2 true WO2010048429A2 (en) | 2010-04-29 |
WO2010048429A3 WO2010048429A3 (en) | 2010-07-15 |
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Application Number | Title | Priority Date | Filing Date |
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PCT/US2009/061714 WO2010048429A2 (en) | 2008-10-22 | 2009-10-22 | Scope of channel quality reporting region in a multi-carrier system |
Country Status (7)
Country | Link |
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US (2) | US8948704B2 (en) |
EP (1) | EP2351274B1 (en) |
JP (3) | JP2012506678A (en) |
KR (2) | KR101529976B1 (en) |
CN (1) | CN102197615B (en) |
TW (1) | TW201032617A (en) |
WO (1) | WO2010048429A2 (en) |
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Also Published As
Publication number | Publication date |
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EP2351274B1 (en) | 2019-10-09 |
US8989675B2 (en) | 2015-03-24 |
KR101529976B1 (en) | 2015-06-18 |
CN102197615A (en) | 2011-09-21 |
JP2012506678A (en) | 2012-03-15 |
US20100113078A1 (en) | 2010-05-06 |
EP2351274A2 (en) | 2011-08-03 |
KR20110084969A (en) | 2011-07-26 |
CN102197615B (en) | 2015-08-05 |
JP2015046894A (en) | 2015-03-12 |
US8948704B2 (en) | 2015-02-03 |
WO2010048429A3 (en) | 2010-07-15 |
KR20140115379A (en) | 2014-09-30 |
US20120120838A1 (en) | 2012-05-17 |
JP2013153478A (en) | 2013-08-08 |
TW201032617A (en) | 2010-09-01 |
JP5678112B2 (en) | 2015-02-25 |
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