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WO2011082522A1 - Procédé et dispositif de commutation de service dans réseau à relais sans fil - Google Patents

Procédé et dispositif de commutation de service dans réseau à relais sans fil Download PDF

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Publication number
WO2011082522A1
WO2011082522A1 PCT/CN2010/070034 CN2010070034W WO2011082522A1 WO 2011082522 A1 WO2011082522 A1 WO 2011082522A1 CN 2010070034 W CN2010070034 W CN 2010070034W WO 2011082522 A1 WO2011082522 A1 WO 2011082522A1
Authority
WO
WIPO (PCT)
Prior art keywords
node
user equipment
target node
candidate target
base station
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
PCT/CN2010/070034
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English (en)
Chinese (zh)
Inventor
杨涛
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Nokia Shanghai Bell Co Ltd
Alcatel Lucent SAS
Original Assignee
Alcatel Lucent Shanghai Bell Co Ltd
Alcatel Lucent SAS
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Alcatel Lucent Shanghai Bell Co Ltd, Alcatel Lucent SAS filed Critical Alcatel Lucent Shanghai Bell Co Ltd
Priority to PCT/CN2010/070034 priority Critical patent/WO2011082522A1/fr
Priority to CN201080048418.XA priority patent/CN102598790B/zh
Publication of WO2011082522A1 publication Critical patent/WO2011082522A1/fr
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

Links

Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W48/00Access restriction; Network selection; Access point selection
    • H04W48/20Selecting an access point
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W28/00Network traffic management; Network resource management
    • H04W28/02Traffic management, e.g. flow control or congestion control
    • H04W28/06Optimizing the usage of the radio link, e.g. header compression, information sizing, discarding information
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W48/00Access restriction; Network selection; Access point selection
    • H04W48/16Discovering, processing access restriction or access information
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W88/00Devices specially adapted for wireless communication networks, e.g. terminals, base stations or access point devices
    • H04W88/02Terminal devices
    • H04W88/04Terminal devices adapted for relaying to or from another terminal or user

Definitions

  • the present invention relates to wireless communication technologies, and more particularly to a method and apparatus for service switching in a wireless relay network. Background technique
  • LTE-A Long Term Evolution Advanced
  • Type I trunks were adopted as the most important technology to improve system performance.
  • LTE Long Term Evolution Project
  • the serving node is responsible for selecting a target node based on the Reference Signal Received Power (RSRP) of each potential candidate reported by the user equipment and selecting a reference therefrom.
  • RSRP Reference Signal Received Power
  • One of the signals receiving power is the largest as the target node.
  • the donor eNB donor evolved Node B
  • the backhaul ling and the service between the donor evolved Node B and the serving relay node.
  • the target node is selected only based on the report of the user equipment, and the report of the user equipment can only indicate the channel condition of the access connection.
  • the quality of the access connection does not mean that the quality of the backhaul connection is good.
  • different relay nodes may work on different carrier components, resulting in different backhaul connection quality.
  • the quality of the backhaul connection is subject to factors such as fading, variations in interference, and load conditions. Therefore, selecting a target node based only on the prior art cannot ensure end-to-end communication performance.
  • the donor evolved Node B broadcasts information about the quality of all its backhaul connections to all the relay nodes it controls, so that each relay node can comprehensively consider the quality and access of the backhaul connection.
  • Connection quality base Select the target node based on it.
  • the present invention proposes a technical solution for service switching in a wireless relay network.
  • the wireless relay network in the present invention includes three network elements: a base station, a relay node, and a user equipment.
  • a base station a base station
  • a relay node a user equipment
  • Several terms used in the present invention are defined as follows and are used uniformly in the following: Access Node: A node that communicates with a user equipment via a hop connection.
  • the access node may be a base station or a relay node.
  • Access connection The connection between a user equipment and the access node it serves.
  • Backhaul connection The connection between an access node and its associated base station, its donor base station.
  • Target node A new access node that will be served by a user device when it is handed off.
  • a method of switching a service of a user equipment in a relay node of a wireless communication network comprising the steps of: A. receiving an optional identification from the user equipment Identification information of the access node and quality information reflecting channel quality of the access connection between the optional access node and the user equipment; B. selecting one of the optional access nodes that satisfies a predetermined condition Or multiple nodes as candidate target nodes.
  • a method of switching a service of a user equipment in a base station of a wireless communication network comprising the steps of: i. receiving information about a user from a jurisdictional relay node Identification information of the device for identifying the candidate target node and quality information reflecting the channel quality of the access connection between the candidate target node and the user equipment; ii. according to the user equipment, the candidate target node End-to-end communication link quality to make decisions about the target node; iii. Notifying the relay node of the decision regarding the target node.
  • a relay section in a wireless communication network includes: a receiving device, configured to receive identification information from the user equipment for identifying the optional access node, and reflect the optional connection The quality information of the channel quality of the access connection between the ingress node and the user equipment; the first determining means, configured to select one or more nodes that meet the predetermined condition from the optional access node as the candidate target node .
  • a second switching apparatus for switching a service of a user equipment in a base station of a wireless communication network, comprising: a second receiving apparatus, configured to receive a relay node from a jurisdiction Having, for the user equipment, identification information for identifying a candidate target node and shield information reflecting a channel quality of the access connection between the candidate target node and the user equipment; second determining means, configured to: Determining a decision about the target node according to the end-to-end communication link quality of the user equipment, the candidate target node; and notifying means for notifying the relay node of the decision about the target node.
  • FIG. 1 shows a block diagram of a system of a wireless communication system in accordance with one embodiment of the present invention
  • FIG. 2 shows a flow chart of a method for switching a service of a user equipment in a relay node of a wireless communication network, in accordance with one embodiment of the present invention
  • FIG. 3 is a flow chart showing a method of switching a service of a user equipment in a base station of a wireless communication network according to an embodiment of the present invention
  • FIG. 4 is a block diagram showing the structure of a first switching device for switching a service of a user equipment in a relay node of a wireless communication network according to an embodiment of the present invention
  • FIG. 5 is a block diagram showing the structure of a second switching device for switching the service of one user equipment in a base station of a wireless communication network according to an embodiment of the present invention.
  • the base station 10, 20, 30, as well as relay nodes 11, 12, 21, and user equipment 90 are shown.
  • the relay nodes 11 and 12 are under the jurisdiction of the base station 10, and provide relay services for downlink services from the base station 10 and uplink services from the user equipment.
  • the relay node 21 is under the jurisdiction of the base station 20, and is a downlink service from the base station 20 and from The uplink service of the user equipment provides a relay service.
  • the wireless communication network conforms to the LTE-A protocol standard, and the base stations in the network, such as the base stations 10, 20, 30, are all evolved Node Bs, and the relay nodes in the network, such as the relay node 11, 12, including type I relay nodes. Both evolved Node B and Type I relay nodes have their respective cell-specific reference signals.
  • the base station 10 is a donor base station of the user equipment 90, and the user equipment 90 is connected to the switching center through the base station 10; at least the end-to-end communication link between the base station 10 and the user equipment 90 includes at least A two-hop connection in which the relay node 11 serves as an access node of the user equipment 90.
  • the relay node 11 serves as an access node of the user equipment 90.
  • FIG. 2 is a flow chart showing a method of switching a service of a user equipment in a relay node of a wireless communication network, in accordance with one embodiment of the present invention. As shown, the method includes two steps S1 1 and S12. Without loss of generality, the communication link including the base station 10, the relay node 11, and the user equipment 90 will be described as an example.
  • the selection process of the target node is initiated.
  • User equipment 90 will receive signals from neighboring nodes and report information about the optional access node to its access node, i.e., relay node 11.
  • the information about the optional access node reported by the user equipment 90 generally includes an identification letter identifying the optional access node and a channel quality reflecting the access connection between the optional access node and the user equipment 90. Shield volume information.
  • the relay node 1 1 will receive identification information from the user equipment 90 for identifying the optional access node and a channel reflecting the access connection between the optional access node and the user equipment 90. Quality quality information.
  • step S12 the relay node 1 1 selects one or more nodes satisfying the predetermined condition from the selectable access nodes as candidate target nodes.
  • optional access nodes reported by user equipment 90 include relay node 12, relay node 21, and base station 30.
  • the relay node 11 will select a candidate target node from among these optional access nodes.
  • the quality information of the channel quality in the step S 1 1 reflecting the access connection between the optional access node and the user equipment 90 includes the optional access received by the user equipment 90.
  • the reference signal of the reference signal of the node receives power.
  • the quality information reflecting the channel quality of the access connection between the optional access node and the user equipment 90 may also include a Received Signal Strength Indicator (RSI) and/or a reference. Signal Received Quality (RSRQ).
  • the quality information may include any one or more of a reference signal received power, a received signal strength indicator, and a reference signal received quality.
  • the reference signal transmission may also be included when determining the candidate target node in step S12. The difference in power factor.
  • the user equipment may also count the difference of the reference signal transmission power when reporting the information about the optional access node.
  • the predetermined condition in step S12 includes: the reference signal received power of the optional access node at the user equipment 90 exceeds a predetermined threshold.
  • a predetermined threshold all of the selectable access nodes whose reference signal received power at the user equipment 90 exceeds a predetermined threshold are determined by the relay node 11 as candidate target nodes.
  • Candidate target node when the reference signal received power of the relay node 12, the relay node 21, and the base station 30 at the user equipment 90 exceeds a predetermined value, all three nodes are determined by the relay node 11 to be handed over by the user equipment 90.
  • the predetermined condition in step S12 includes: The reference signal received power of the optional access node at the user equipment 90 is higher than the reference signal received power of the user equipment 90 by any other optional access node. In other words, there is only one candidate target node, and the relay node 11 will determine the optional access node with the highest reference signal received power of the user equipment 90 as the candidate target node.
  • the relay node 1 1 after step S12, the relay node 1 1 further needs to perform a corresponding subsequent operation according to the specific situation of the candidate target node.
  • the relay node 1 1 directly determines the unique candidate target node, that is, the base station 30, as the target node, and sends the identification information used to identify the base station 30 to the base station to which the relay node 1 1 belongs, that is, Its donor base station 10 facilitates switching the service of the user equipment 90 to the base station 30. Since when there is only a unique candidate target node and the node is a base station, it is obvious that the node and the user equipment 90 will have optimal end-to-end communication performance, so the relay node 1 1 can directly determine the target node. And thus the overhead of transferring information between the relay node 11 and its donor base station 10 can be reduced.
  • the relay node 1 1 can already learn the end-to-end communication performance between all the candidate target nodes and the user equipment 90 according to the quality information received in step S1 1 , so the relay node 1 1 The attribution of the target node can be determined without the assistance of the base station 10, and the overhead of transmitting information between the relay node 1 1 and its donor base station 10 can also be reduced.
  • the quality information includes reference signal received power
  • the relay node 1 1 determines the candidate target node having the highest received power of the reference signal as the target node.
  • the relay node 1 1 may also transmit identification information for identifying the target node to the base station 10 in order to switch the service of the user equipment 90 to the target node.
  • the relay node 11 does not know the end-to-end communication performance between all the candidate target nodes and the user equipment 90, so the attribution of the target node cannot be determined.
  • the candidate target node determined in step S12 includes at least another relay node, such as relay node 12 and / Or relay node 21. Then, the relay node 11 transmits the identification information of all the candidate target nodes and the quality information of the channel quality reflecting the access connection between the candidate target node and the user equipment 90 to the base station to which the relay node 1 1 belongs, that is, Its donor base station 10. Next, the attribution of the target node will be determined by the donor base station 10 of the user equipment 90.
  • FIG. 3 is a flow chart showing a method of switching a service of a user equipment in a base station of a wireless communication network, in accordance with one embodiment of the present invention. As shown, the method includes three steps S21, S22 and S23. Without departing from the general description, the communication link including the base station 10, the relay node 1 1 and the user equipment 90 will be described as an example.
  • step S21 the base station 10 will receive the identification information for identifying the candidate target node from the relay node 1 1 with respect to the user equipment 90 and the channel reflecting the access connection between the candidate target node and the user equipment 90. Quality quality information.
  • step S22 base station 10 will make a decision regarding the target node based on the end-to-end communication link quality associated with user equipment 90 and the candidate target node.
  • step S23 the base station 10 notifies the relay node 11 of the decision regarding the target node.
  • the base station 10 receives the identification information of the plurality of candidate target nodes and the quality information, such as the identification information of the relay node 12, the relay node 21, and the base station 30, and the quality information.
  • the base station 10 will determine the target node based on the end-to-end communication link quality involving the three candidate target nodes, respectively.
  • the end-to-end communication link, the third is the end-to-end communication link of the user node 90 to the base station 30.
  • the relay node 21 and the base station 20 may also be connected by more than one hop.
  • the base station 10 needs to determine the quality of the three end-to-end communication links.
  • the donor base station of the first end-to-end communication link is the base station 10, and therefore, the base station 10 can easily obtain sufficient information in the cell under its jurisdiction to determine the quality of the end-to-end communication link.
  • the donor base station of the second end-to-end communication link is the base station 20, and the quality information received by the base station 10 from the relay node 11 only relates to the access connection of the user equipment 90 to the relay node 21, therefore, the base station 10 still needs to Exchanging information with base station 20 to determine The quality of the second end-to-end communication link.
  • the donor base station of the third end-to-end communication link is a base station 30, but it only includes a one-hop connection, and the quality information received by the base station 10 from the relay node 11 can already reflect the downlink of the third end-to-end communication link.
  • Link quality In time division duplex (TDD) systems, the upstream channel and the downstream channel are generally considered to be reciprocal. Therefore, in the time division duplex system, the base station 10 can determine the quality of the third end-to-end communication link based only on the quality information received from the relay node 11.
  • the factors determining the quality of the end-to-end communication link may generally include one or more of the following: end-to-end transmission delay, end-to-end average retransmission times.
  • the base station 10 determines the candidate target node that optimizes the quality of the end-to-end communication link as the target node. Then the decision about the target node includes the identification information of the target node.
  • step S23 the base station 10 notifies at least the identity information of the target node to the relay node 11.
  • the relay node 11 can notify the user equipment 90 of the identification information of the target node to perform the corresponding handover.
  • the base station 10 receives only the identification information of one candidate target node and the quality information, such as the identification information of the relay node 21 and the quality information.
  • step S22 the base station 10 determines whether the relay node 21 is suitable as a target node to serve the user equipment 90 according to the end-to-end communication link quality of the user equipment 90 to the relay node 21 to the base station 20. Accordingly, the decision regarding the target node includes information indicating whether the relay node 21 is the target node.
  • step S23 the base station 10 transmits information indicating whether the relay node 21 is a target node to the relay node 11.
  • the relay node 1 1 may transmit information indicating whether the relay node 21 is the target node to the user equipment 90. If the relay node 21 is confirmed as the target node, the handover is performed, and the service of the user equipment 90 is carried by the end-to-end communication link of the user equipment 90 to the relay node 21 to the base station 20. If the relay node 21 is not the target node, the existing communication link is maintained, or the selection process of the target node is started again.
  • the shield information reflecting the channel quality of the access connection between the candidate target node and the user equipment 90 in step S21 is included by the user equipment.
  • the received reference signal received power of the reference signal sent from the candidate target node is 90.
  • the quality information reflecting the channel quality of the access connection between the candidate target node and the user equipment 90 may also include the received signal strength indicator and/or the reference signal reception quality.
  • the quality information may include any one or more of a reference signal received power, a received signal strength indicator, and a reference signal received shield according to different system settings.
  • the reference signal transmission power of the base station and the relay node may have different restrictions.
  • the reference signal transmission power difference may also be included in determining the target node in step S22.
  • the user equipment may also account for the difference in the reference signal transmission power when reporting the information about the optional access node.
  • FIG. 4 is a block diagram showing the structure of a first switching device for switching the service of a user equipment in a relay node of a wireless communication network, in accordance with one embodiment of the present invention.
  • the first switching device 100 includes a first receiving device 101 and a first determining device 102.
  • the first switching device 100 is typically disposed in the relay nodes 11, 12, 21.
  • the first receiving device 101 is operative to perform step Sl1 in the aforementioned method. Taking the communication link including the base station 10, the relay node 11, and the user equipment 90 as an example, the first receiving device 101 in the relay node 11 will receive the identification information from the user equipment 90 for identifying the optional access node. And quality information reflecting the channel quality of the access connection between the optional access node and the user equipment 90.
  • the first determining means 102 is operative to perform step S12 of the aforementioned method. Taking the communication link including the base station 10, the relay node 11, and the user equipment 90 as an example, the first determining means 102 in the relay node 11 will select one or more of the optional access nodes that satisfy the predetermined condition. The node acts as a candidate target node.
  • FIG. 5 is a block diagram showing the structure of a second switching device for switching the service of a user equipment in a base station of a wireless communication network, in accordance with one embodiment of the present invention.
  • the second switching device 200 includes a second receiving device 201, a second determining device 202, and a notifying device 203.
  • the second switching device 200 is typically disposed in the base stations 10, 20, 30.
  • the second receiving device 201 is configured to perform step S21 in the foregoing method. Including base stations 10.
  • the communication link of the relay node 11 and the user equipment 90 is taken as an example.
  • the second receiving device 201 in the base station 10 will receive the identification information about the candidate target node from the relay node 1 1 regarding the user equipment 90. And shield amount information reflecting the channel quality of the access connection between the candidate target node and the user equipment 90.
  • the second determining means 202 is operative to perform step S22 of the aforementioned method. Including base stations
  • the communication link of the relay node 1 1 and the user equipment 90 is taken as an example, and the second determining means 202 in the base station 10 will make according to the quality of the end-to-end communication link involving the user equipment 90 and the candidate target node. The decision about the target node.
  • the notifying means 203 is for performing step S23 in the aforementioned method. Taking the communication link including the base station 10, the relay node 1, and the user equipment 90 as an example, the notifying means 203 in the base station 10 notifies the relay node 1 1 of the decision regarding the target node.
  • the device referred to in the present invention may be implemented by a software function module, may also be implemented by a hardware module, or may be implemented by a combination of software and hardware.

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  • Engineering & Computer Science (AREA)
  • Computer Security & Cryptography (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Mobile Radio Communication Systems (AREA)

Abstract

La présente invention concerne un procédé et un dispositif de commutation de service dans un réseau à relais sans fil. Selon un mode de réalisation de la présente invention, un procédé de commutation du service d'un équipement utilisateur (UE) dans un nœud de relais d'un réseau de communication sans fil est décrit. Ledit procédé comprend les étapes suivantes : A. des informations d'identifiant utilisées pour identifier des nœuds d'accès facultatifs et des informations de qualité reflétant la qualité de canal des connexions d'accès entre les nœuds d'accès facultatifs et l'UE sont reçues de l'UE; B. un ou plusieurs nœuds satisfaisant des conditions prédéterminées sont sélectionnés parmi lesdits nœuds d'accès facultatifs en tant que nœuds cibles candidats. En utilisant le procédé et le dispositif décrits par la présente invention, un bon fonctionnement de communication de bout en bout peut être garanti dans le processus de sélection d'un nœud cible, et le surdébit de signalisation du système peut être maîtrisé dans une plage raisonnable, ce qui économise des ressources système.
PCT/CN2010/070034 2010-01-06 2010-01-06 Procédé et dispositif de commutation de service dans réseau à relais sans fil Ceased WO2011082522A1 (fr)

Priority Applications (2)

Application Number Priority Date Filing Date Title
PCT/CN2010/070034 WO2011082522A1 (fr) 2010-01-06 2010-01-06 Procédé et dispositif de commutation de service dans réseau à relais sans fil
CN201080048418.XA CN102598790B (zh) 2010-01-06 2010-01-06 无线中继网络中服务切换的方法及其装置

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/CN2010/070034 WO2011082522A1 (fr) 2010-01-06 2010-01-06 Procédé et dispositif de commutation de service dans réseau à relais sans fil

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WO (1) WO2011082522A1 (fr)

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CN103684534A (zh) * 2012-09-18 2014-03-26 联想(北京)有限公司 端到端的通信方法、终端设备、通信方法和通信装置
CN104469891A (zh) * 2013-09-23 2015-03-25 中国移动通信集团公司 选择中继节点的施主小区基站的方法、系统及装置
US9706461B2 (en) 2012-11-09 2017-07-11 Fujitsu Limited Method of handover in device to device communication, base station and communication system

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CN107801225A (zh) * 2016-09-06 2018-03-13 中兴通讯股份有限公司 一种无线上行通道确定方法和装置
US11233722B2 (en) * 2017-12-12 2022-01-25 Futurewei Technologies, Inc. System and method for network topology management

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CN103684534A (zh) * 2012-09-18 2014-03-26 联想(北京)有限公司 端到端的通信方法、终端设备、通信方法和通信装置
CN103684534B (zh) * 2012-09-18 2016-12-21 联想(北京)有限公司 端到端的通信方法、终端设备和通信装置
US9706461B2 (en) 2012-11-09 2017-07-11 Fujitsu Limited Method of handover in device to device communication, base station and communication system
CN104469891A (zh) * 2013-09-23 2015-03-25 中国移动通信集团公司 选择中继节点的施主小区基站的方法、系统及装置
CN104469891B (zh) * 2013-09-23 2018-10-12 中国移动通信集团公司 选择中继节点的施主小区基站的方法、系统及装置

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