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Regional and narrow band common reference signal (CRS) for user equipment (UE) relays

專利號(hào)
US10791542B2
公開(kāi)日期
2020-09-29
申請(qǐng)人
QUALCOMM Incorporated(US CA San Diego)
發(fā)明人
Wanshi Chen; Aleksandar Damnjanovic; Juan Montojo
IPC分類
H04W4/00; H04W72/04; H04L5/00; H04W88/04
技術(shù)領(lǐng)域
ue,subframe,enb,crs,may,pdcch,in,enbs,pbch,ues
地域: CA CA San Diego

摘要

Certain aspects of the present disclosure relate to techniques for assigning resources for common reference signal (CRS) transmissions from user equipment (UE) relays. Aspects of the present disclosure provide techniques to use minimum possible resources for transmission of CRS in an attempt to reduce interference, reduce power consumption while providing appropriate reference for channel measurement and demodulation. In an aspect, a wireless node (e.g., a UE relay station) may determine resources for transmission of CRS in a subframe based, at least in part, on a type of one or more channels to be transmitted in the subframe, and may transmit the CRS using the determined resources.

說(shuō)明書(shū)

CLAIM OF PRIORITY UNDER 35 U.S.C. § 119

The present Application for Patent claims priority to U.S. Provisional Application No. 61/591,828, entitled “REGIONAL AND NARROW BAND COMMON REFERENCE SIGNAL (CRS) FOR USER EQUIPMENT (UE) RELAYS,” filed Jan. 27, 2012, and assigned to the assignee hereof and hereby expressly incorporated by reference herein.

BACKGROUND

I. Field

Certain aspects of the disclosure generally relate to wireless communications and, more particularly, to techniques for assigning resources for common reference signal (CRS) transmissions from user equipment (UE) relays.

II. Background

Wireless communication networks are widely deployed to provide various communication services such as voice, video, packet data, messaging, broadcast, etc. These wireless networks may be multiple-access networks capable of supporting multiple users by sharing the available network resources. Examples of such multiple-access networks include Code Division Multiple Access (CDMA) networks, Time Division Multiple Access (TDMA) networks, Frequency Division Multiple Access (FDMA) networks, Orthogonal FDMA (OFDMA) networks and Single-Carrier FDMA (SC-FDMA) networks.

A wireless communication network may include a number of base stations that can support communication for a number of user equipments (UEs). A UE may communicate with a base station via the downlink and uplink. The downlink (or forward link) refers to the communication link from the base station to the UE, and the uplink (or reverse link) refers to the communication link from the UE to the base station.

權(quán)利要求

1
What is claimed is:1. A method of wireless communications by a wireless node, the method comprising:determining a minimum amount of narrowband resources for transmission of a common reference signal (CRS) in a subframe to at least one User Equipment (UE) configured for wideband operation, based, at least in part, on one or more channels to be transmitted in the subframe, wherein the minimum amount of narrowband resources for the CRS is required by the at least one UE to perform one or more functions relating to the one or more channels; andtransmitting the CRS using the determined narrowband resources.2. The method of claim 1, wherein the determined narrowband resources comprise a narrowband portion of overall bandwidth allocated to the subframe.3. The method of claim 2, wherein:the determined narrowband resources span a length of the subframe if at least one of a physical broadcast channel (PBCH), primary synchronization signal (PSS), or secondary synchronization signal (SSS) is to be transmitted in the subframe, wherein the length spans both a control region and a data region.4. The method of claim 2, wherein:the determined narrowband resources span only a portion of a control region of the subframe if none of a physical broadcast channel (PBCH), primary synchronization signal (PSS), secondary synchronization signal (SSS), and physical downlink control channel (PDCCH) is to be transmitted in the subframe.5. The method of claim 1, wherein the wireless node comprises a UE relay station.6. The method of claim 1, wherein the wireless node is a low power class node.7. An apparatus for wireless communications, comprising:means for determining a minimum amount of narrowband resources for transmission of a common reference signal (CRS) in a subframe to at least one User Equipment (UE) configured for wideband operation, based, at least in part, on one or more channels to be transmitted in the subframe, wherein the minimum amount of narrowband resources for the CRS is required by the at least one UE to perform one or more functions relating to the one or more channels; andmeans for transmitting the CRS using the determined narrowband resources.8. The apparatus of claim 7, wherein the determined narrowband resources comprise a narrowband portion of overall bandwidth allocated to the subframe.9. The apparatus of claim 8, wherein:the determined narrowband resources span a length of the subframe if at least one of a physical broadcast channel (PBCH), primary synchronization signal (PSS), or secondary synchronization signal (SSS) is to be transmitted in the subframe, wherein the length spans both a control region and a data region.10. The apparatus of claim 8, wherein:the determined narrowband resources span only a portion of a control region of the subframe if none of a physical broadcast channel (PBCH), primary synchronization signal (PSS), secondary synchronization signal (SSS), and physical downlink control channel (PDCCH) is to be transmitted in the subframe.11. The apparatus of claim 7, wherein the apparatus comprises a UE relay station.12. The apparatus of claim 7, wherein the apparatus comprises a low power class node.13. An apparatus for wireless communications, comprising:at least one processor, andmemory coupled to the at least one processor, the memory comprising instructions executable by the at least one processor to cause the apparatus to:determine a minimum amount of narrowband resources for transmission of a common reference signal (CRS) in a subframe to at least one User Equipment (UE) configured for wideband operation, based, at least in part, on one or more channels to be transmitted in the subframe, wherein the minimum amount of narrowband resources for the CRS is required by the at least one UE to perform one or more functions relating to the one or more channels; andtransmit the CRS using the determined narrowband resources.14. A non-transitory computer-readable medium having instructions stored thereon which, when executed by one or more processors, performs an operation for wireless communications, the operation comprising:determining an amount of narrowband resources for transmission of a common reference signal (CRS) in a subframe to at least one User Equipment (UE) configured for wideband operation, based, at least in part, on one or more channels to be transmitted in the subframe, wherein the minimum amount of narrowband resources for the CRS is required by the at least one UE to perform one or more functions relating to the one or more channels; andtransmitting the CRS using the determined narrowband resources.15. A method of wireless communications by a User Equipment (UE) configured for wideband operation, the method comprising:receiving a common reference signal (CRS) in a subframe;determining a minimum amount of narrowband resources used for transmission of the received CRS in the subframe based, at least in part, on one or more functions the UE is to perform with reference to one or more channels received in the subframe, wherein the minimum amount of the narrowband resources for the CRS is required for performing the one or more functions relating to the one or more channels; andprocessing the subframe based on the determination.16. The method of claim 15, wherein the determined narrowband resources comprise a narrowband portion of overall bandwidth allocated to the subframe.17. The method of 15, wherein the one or more functions comprise measuring channel quality based on the CRS.18. The method of claim 16, wherein:the determined narrowband resources span a length of the subframe if the one or more functions comprise decoding at least one of a physical broadcast channel (PBCH), primary synchronization signal (PSS), or secondary synchronization signal (SSS) transmitted in the subframe, wherein the length spans both a control region and a data region.19. The method of claim 16, wherein:the determined narrowband resources span only a portion of a control region of the subframe if the one or more functions comprise decoding none of a physical broadcast channel (PBCH), primary synchronization signal (PSS), secondary synchronization signal (SSS), and physical downlink control channel (PDCCH).20. An apparatus for wireless communications configured for wideband operation, comprising:means for receiving a common reference signal (CRS) in a subframe;means for determining an amount of narrowband resources used for transmission of the received CRS in the subframe based, at least in part, on one or more functions a UE is to perform with reference to one or more channels received in the subframe, wherein the minimum amount of the narrowband resources for the CRS is required for performing the one or more functions relating to the one or more channels; andmeans for processing the subframe based on the determination.21. The apparatus of claim 20, wherein the determined narrowband resources comprise a narrowband portion of overall bandwidth allocated to the subframe.22. The apparatus of 20, wherein the one or more functions comprise measuring channel quality based on the CRS.23. The apparatus of claim 21, wherein:the determined narrowband resources span a length of the subframe if the one or more functions comprise decoding at least one of a physical broadcast channel (PBCH), primary synchronization signal (PSS), or secondary synchronization signal (SSS) transmitted in the subframe, wherein the length spans both a control region and a data region.24. The apparatus of claim 21, wherein:the determined narrowband resources span only a portion of a control region of the subframe if the one or more functions comprise decoding none of a physical broadcast channel (PBCH), primary synchronization signal (PSS), secondary synchronization signal (SSS), and physical downlink control channel (PDCCH).25. An apparatus for wireless communications configured for wideband operation, comprising:at least one processor, andmemory coupled to the at least one processor, the memory comprising instructions executable by the at least one processor to cause the apparatus to:receive a common reference signal (CRS) in a subframe;determine a minimum amount of narrowband resources used for transmission of the received CRS in the subframe based, at least in part, on one or more functions a UE is to perform with reference to one or more channels received in the subframe, wherein the minimum amount of the narrowband resources for the CRS is required for performing the one or more functions relating to the one or more channels; andprocess the subframe based on the determination.26. A non-transitory computer-readable medium having instructions thereon which, when executed by one or more processors, performs an operation for wireless communications by a User Equipment (UE) configured for wideband operation, the operation comprising:receiving a common reference signal (CRS) in a subframe;determining a minimum amount of narrowband resources used for transmission of the received CRS in the subframe based, at least in part, on one or more functions a UE is to perform with reference to one or more channels received in the subframe, wherein the minimum amount of the narrowband resources for the CRS is required for performing the one or more functions relating to the one or more channels; andprocessing the subframe based on the determination.
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