WO2005060132A1 - Method and apparatus for requesting and reporting channel quality information in mobile communication system - Google Patents

Method and apparatus for requesting and reporting channel quality information in mobile communication system Download PDF

Info

Publication number
WO2005060132A1
WO2005060132A1 PCT/KR2004/003344 KR2004003344W WO2005060132A1 WO 2005060132 A1 WO2005060132 A1 WO 2005060132A1 KR 2004003344 W KR2004003344 W KR 2004003344W WO 2005060132 A1 WO2005060132 A1 WO 2005060132A1
Authority
WO
WIPO (PCT)
Prior art keywords
channel quality
cqi
base station
message
channel
Prior art date
Application number
PCT/KR2004/003344
Other languages
French (fr)
Inventor
Chul-Sik Yoon
Jae-Heung Kim
Kun-Min Yeo
Soon-Yong Lim
Byung-Han Ryu
Original Assignee
Electronics And Telecommunications Research Institute
Samsung Electronics Co., Ltd.
Kt Corporation
Sk Telecom Co., Ltd.
Ktfreetel Co., Ltd.
Hanaro Telecom, Inc.
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
Priority claimed from KR1020040082661A external-priority patent/KR100600673B1/en
Application filed by Electronics And Telecommunications Research Institute, Samsung Electronics Co., Ltd., Kt Corporation, Sk Telecom Co., Ltd., Ktfreetel Co., Ltd., Hanaro Telecom, Inc. filed Critical Electronics And Telecommunications Research Institute
Priority to US10/583,165 priority Critical patent/US7813291B2/en
Publication of WO2005060132A1 publication Critical patent/WO2005060132A1/en

Links

Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L1/00Arrangements for detecting or preventing errors in the information received
    • H04L1/0001Systems modifying transmission characteristics according to link quality, e.g. power backoff
    • H04L1/0023Systems modifying transmission characteristics according to link quality, e.g. power backoff characterised by the signalling
    • H04L1/0028Formatting
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B17/00Monitoring; Testing
    • H04B17/20Monitoring; Testing of receivers
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W24/00Supervisory, monitoring or testing arrangements
    • H04W24/10Scheduling measurement reports ; Arrangements for measurement reports
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L1/00Arrangements for detecting or preventing errors in the information received
    • H04L1/0001Systems modifying transmission characteristics according to link quality, e.g. power backoff
    • H04L1/0023Systems modifying transmission characteristics according to link quality, e.g. power backoff characterised by the signalling
    • H04L1/0026Transmission of channel quality indication
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L1/00Arrangements for detecting or preventing errors in the information received
    • H04L2001/0092Error control systems characterised by the topology of the transmission link
    • H04L2001/0093Point-to-multipoint
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/04Wireless resource allocation
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/20Control channels or signalling for resource management
    • H04W72/23Control channels or signalling for resource management in the downlink direction of a wireless link, i.e. towards a terminal
    • 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

Definitions

  • the present invention relates to a mobile communication system. More specifically, the present invention relates to a method and apparatus for requesting and reporting channel quality information (CQI) in a wireless portable Internet system.
  • CQI channel quality information
  • the wireless portable Internet is a next generation communication system for further supporting mobility, in addition to a short range data communication system which uses stationary access points (APs) such as the conventional wireless local area network (LAN).
  • APs stationary access points
  • LAN wireless local area network
  • Va ⁇ ous standards have been proposed for the wireless portable Internet, and the international standardization on the portable Internet is in progress by the IEEE 802.16.
  • the wireless LAN system such as the conventional IEEE 802.11 provides a data communication system which allows short-range radio communication with reference to stationary access points, which provides no mobility of the subscriber station (SS) but which supports wireless LAN data communication in a local area other than wired LAN data communication.
  • a new wireless portable Internet system currently progressed by the IEEE 802.16 working group is designed to support the mobility to the subscriber station and thus provide a seamless data communication service thereto when the subscriber station moves from one cell to another cell.
  • the mobile communication systems including the above- described wireless portable Internet system have been developed for communication systems which support speech services and high-speed packet data services. Reported information on the radio channel quality of a link to a subscriber station on the move is very important since the information is used to determine an appropriate adaptive modulation and channel coding (AMC) level for the corresponding link to the subscriber station in the system for supporting high-speed mobility.
  • AMC adaptive modulation and channel coding
  • the base station selects a predetermined subscriber station for each slot from among a plurality of subscriber stations, transmits packet data thereto, and receives channel quality information on a forward channel from the selected subscriber station to determine transmission parameters such as data rates, channel coding rates, and modulation orders.
  • CQI report message When the base station transmits a CQI report message to a plurality of subscriber stations, each subscriber station reports a channel quality measurement result to the base station in a specified message format.
  • the method for the base station to request the channel quality information from a plurality of subscriber stations in the case of one frame may exhaust downlink resources since the base station transmits similar messages to the subscriber stations individually.
  • the base station transmits the message to the subscriber station by using an inadequate AMC level
  • the base station transmits the CQI report message thereto by using the AMC level determined based on the existing reported channel quality even though the channel has already been degraded
  • some subscriber stations may fail to receive the CQI report message.
  • overheads of messages are increased when the respective subscriber stations individually transmit a response message for the channel quality measurement result to the base station.
  • the subscriber station guarantees no allocation of uplink resources for transmitting the response message of the channel quality measurement result, and hence, undesired delay may be generated when the subscriber station transmits the response message to the base station. As a result, the subscriber stations may fail to
  • CQI channel quality information
  • AMC adaptive modulation and channel coding
  • communication system comprises: (a) receiving uplink radio resource
  • reporting the channel quality information is allocated from a base station
  • the CQI report message is broadcast, and it includes identifiers of at least one subscriber station arranged in a predetermined order.
  • the step (e) further comprises: checking the order of identifiers of corresponding subscriber stations arranged in the CQI report message; identifying a radio resource allocated to the subscriber station by the order of the CQI report requested to each subscriber station; and transmitting a CQI response message to the base station through the identified radio resource in the dedicated feedback channel.
  • a method for requesting channel quality information from subscriber stations in a mobile communication system comprises: (a) allocating a dedicated feedback channel for a channel quality report to an uplink radio resource; (b) transmitting uplink radio resource allocation information to the subscriber stations so that the subscriber stations may report CQI through the dedicated feedback channel; (c) generating a CQI report message; and (d) transmitting the CQI report message to the subscriber stations to request a CQI report from the subscriber stations.
  • the step (c) comprises generating a CQI report message including identifiers of at least one subscriber station, and the step (d) comprises broadcasting the CQI report message to at least one subscriber station to request a CQI report from the subscriber stations.
  • a method for requesting and reporting radio channel quality information in a mobile communication system to which a base station and subscriber stations are coupled through a mobile communication network comprises: (a) allowing the base station to allocate a dedicated feedback channel for channel quality report, and transmitting the allocation information to the subscriber stations; (b) generating a CQI report message, broadcasting the CQI report message, and requesting a CQI report from at least one subscriber station; (c) allowing the subscriber stations to receive the CQI report message, measure a radio channel quality for communication with the base station, and generate channel quality information; and (d) allowing the subscriber station to generate a CQI response message including channel quality information and transmit the CQI response message to the base station through a dedicated feedback channel for a channel quality report.
  • a base station for requesting channel information in a mobile communication system comprises: a base station resource controller for generating uplink radio resource allocation information in which a dedicated feedback channel for CQI report is allocated to an uplink radio resource, and including a channel information requester for generating a CQI report message; a digital signal transmitter for performing adaptive modulation and coding on the uplink radio resource allocation information and the CQI report message to generate digital signals; and an analog signal transmitter for converting the digital signals into analog signals and transmitting the analog signals to the subscriber stations, wherein the base station resource controller transmits the uplink radio resource allocation information to the subscriber station and transmits the CQI report message thereto.
  • the channel information requester comprises: a dedicated channel allocator for generating an uplink radio resource allocation information in which a dedicated feedback channel for reporting the channel quality information is allocated to an uplink radio resource; a subscriber station designator for designating at least one subscriber station for requesting channel information; and a request message generator for generating a CQI report message including identifiers of the designated subscriber stations.
  • a subscriber station for reporting channel quality information in a mobile communication system comprises: a message parser for receiving a CQI report message from a base station and parsing the CQI report message; a channel quality measurer for measuring radio channel quality of the communication link to the base station, and generating channel quality information; a response message generator for generating a CQI response message including the channel quality information; a resource allocation checker for receiving uplink radio resource allocation information with a dedicated feedback channel for
  • the base station through the allocated radio resource.
  • the CQI report message includes identifiers of at least one
  • the resource allocation checker checks a radio resource position at which the subscriber station reports channel quality information through
  • FIGs. 1 to 3 show general flowcharts for requesting
  • FIG. 4 shows a flowchart for requesting and reporting channel
  • FIG. 5 shows a schematic diagram for a wireless portable Internet system according to an exemplary embodiment of the present invention
  • FIG. 6 shows a hierarchical diagram of a wireless portable
  • FIG. 7 shows a schematic diagram of a connection structure between a base station and a subscriber station in a wireless portable Internet system
  • FIG. 8 shows a block diagram of a base station according to an exemplary embodiment of the present invention
  • FIG. 9 shows a block diagram of the channel quality requester shown in FIG. 8
  • FIG. 10 shows a block diagram of a subscriber station according to an exemplary embodiment of the present invention
  • FIG. 11 shows a block diagram of the channel quality reporter
  • FIG. 10 shows a flowchart for requesting and reporting channel quality information according to an exemplary embodiment of the present invention
  • FIG. 13 shows a format of the CQI report message according to an exemplary embodiment of the present invention
  • FIG. 14 shows a process for checking the radio resource allocated to the subscriber station according to the CQI report message according to an exemplary embodiment of the present invention.
  • FIGs. 1 to 3 show general flowcharts for measuring and reporting channel quality information in a mobile communication system. Referring to FIG. 1 , in order to measure the radio channel
  • the base station allocates an uplink resource to the subscriber
  • FIG. 2 shows a process for the subscriber stations using contention-based bandwidth request.
  • the respective subscriber stations competitively request a bandwidth for a channel measurement report from the base stations in steps S20 to S23, and when the contention- based request is failed, the subscriber stations attempt a contention- based bandwidth request again through a backoff process in steps S24 to S27.
  • the base station allocates an uplink resource to the corresponding subscriber station, and the subscriber station transmits a channel measurement report to the base station through the allocated uplink resource in steps S28 to S30. In this case, an unpredictable delay is generated by the backoff, and the request and allocation of the uplink bandwidth.
  • FIG. 3 shows a process for a subscriber station to transmit a random code for a bandwidth request to the base station in the general case of requesting and reporting the channel quality information.
  • the base station cannot determine from the bandwidth request code whether the subscriber station will transmit bandwidth request information (i.e., an amount of data stored in a transmission buffer of uplink data) or transmit the message for the channel measurement report. Accordingly, the subscriber station may be delayed in transmitting the message for the channel measurement report to the base station even though the subscriber station has successfully transmitted the random code to the base station, and hence, the time delay is inevitable. As shown in FIG.
  • the base station when the base station allocates a resource for a bandwidth request and the subscriber station transmits a bandwidth request message before the subscriber station transmits the channel measurement report to the base station, the base station must allocate the uplink resource in steps S44 to S49, and hence, a time delay is generated and it is difficult to guarantee the QoS because of the undesired delay. Also, the base station must transmit a CQI report message to each subscriber station that will generate a channel measurement report.
  • the base station when transmitting the CQI report message to a plurality of subscriber stations in a frame, the base station respectively transmits the same unicast message (e.g., a basic connection identifier (CID) according to the IEEE 802.16 standard) to the subscriber stations,
  • a basic connection identifier CID
  • FIG. 4 shows a flowchart for requesting and reporting channel
  • the base station allocates a radio uplink resource for
  • FIG. 5 shows a schematic diagram for a wireless portable Internet system according to an exemplary embodiment of the present invention.
  • the wireless portable Internet system includes base stations 100 and 100', a subscriber station 200 for performing radio communication with the base stations, routers 300 and 310 connected to the base stations through a gateway, and the Internet.
  • the wireless portable Internet system guarantees mobility and provides seamless data communication services when the subscriber station 200 shown in FIG.
  • the wireless portable Internet subscriber station 200 and each of the base stations 100 and 100' communicate with each other through
  • the orthogonal frequency division multiple access (OFDMA) method which is a multiplexing method having the frequency division method for using a plurality of orthogonal frequency subcarriers as a plurality of subchannels combined with the time-division multiplexing (TDM) method.
  • the OFDMA method is resistant against fading generated by multipaths and has high data rates, and the exemplary embodiment is not restricted to the OFDMA method.
  • the IEEE 802.16e standard applies the AMC scheme between the subscriber station 200 and the base stations 100 and 100'.
  • FIG. 6 shows a hierarchical diagram of the IEEE 802.16e wireless portable internet system including a physical layer L10 and medium access control (MAC) layers L21 , L22, and L23.
  • the physical layer L10 performs wireless communication functions such as modulation/demodulation, coding/decoding, etc. as performed by a normal physical layer.
  • the wireless portable Internet system does not have function-specific
  • the MAC layer includes a privacy sublayer L21 , a MAC common part sublayer L22, and a service specific convergence sublayer L23.
  • the service specific convergence sublayer L23 performs payload header suppression and QoS mapping functions in consecutive data communication.
  • the MAC common part sublayer L22 is the core of the MAC layer which is in charge of system access, bandwidth allocation,
  • connection establishment and maintenance connection establishment and maintenance, and QoS control.
  • privacy sublayer L21 performs functions of equipment authentication
  • the device authentication is a Wi-Fi security key exchange, and encryption.
  • the device authentication is a Wi-Fi security key exchange, and encryption.
  • the privacy sublayer L21 carried on by the privacy sublayer L21 , and the user authentication by an upper layer of the MAC (not illustrated).
  • FIG. 7 shows a schematic diagram of a connection structure
  • a connection is provided between the MAC layers of the
  • connection C1 as
  • connection C1 the parameter/message defined on the connection C1
  • parameter/message is processed into a frame, which is transferred
  • MAC message transferred through the connection C1 includes a
  • connection identifier which is an MAC layer address for identifying
  • MAP radio resource allocation information
  • FIG. 8 shows a block diagram of a base station in the above- structured wireless portable Internet system according to an exemplary embodiment of the present invention.
  • the base station 100 includes a base station resource controller 110, a digital signal transceiver 120, and an analog signal transceiver 130.
  • the base station resource controller 110 includes a channel quality requester 111 for requesting channel quality measurement, and a downlink resource allocator 112 for allocating downlink radio resources according to channel quality information provided by the subscriber station.
  • the channel quality requester 111 requests channel quality information from the subscriber stations, and in particular, transmits a CQI report message for each frame to the subscriber stations.
  • FIG. 9 shows a block diagram of the channel quality requester 111.
  • the channel quality requester 111 includes a subscriber station designator 11a, a dedicated channel allocator 1 1 b, a request message generator 11c, and a controller 11d for controlling the subscriber station designator 11a, the dedicated channel allocator 11b, and the request message generator 11c.
  • the subscriber station designator 11a designates subscriber stations to which a CQI report is transmitted. For example, the subscriber station designator 11a designates random subscriber stations or subscriber stations having a good forward channel quality and connected to the base station as those to which a CQI request is transmitted. For ease of description, the subscriber stations to which a CQI request is transmitted will be referred to as CQI requested subscriber stations.
  • the subscriber station designator 11a provides identifiers (i.e., CIDs) of the CQI requested subscriber stations to the request message generator 11c.
  • the CIDs represent unidirectional MAC layer addresses for identifying connections of the equivalent MAC peers of the base station and the subscriber stations, and the identifiers according to the exemplary embodiment are not restricted to the CIDs.
  • the request message generator 11c generates a CQI report message (referred to as a report request (REP_REQ) message hereinafter) and transmits the same to the designated subscriber stations.
  • the request message generator 11c generates a REP_REQ message for each frame and concurrently requests the report from a plurality of subscriber stations.
  • the request message generator In order to achieve the request, the request message generator
  • REP_REQ message to be a broadcast message (e.g.,
  • respective subscriber stations selectively respond to the broadcast message depending on whether the identifier is included in the broadcast message
  • a dedicated channel for reporting channel quality information is previously allocated to an uplink radio resource before the
  • the subscriber stations so that the subscriber stations may report the
  • the dedicated channel allocator 1 1 b allocates a dedicated channel
  • the request message generator 1 1 c arranges the
  • message generator 1 1 c can randomly arrange the identifiers of the CQI-
  • the downlink resource allocator 1 12 uses the channel quality
  • REP_RSP report response
  • the digital signal transceiver 120 includes a transmitter 121 and
  • the transmitter 121 modulates and encodes the
  • FIG. 10 shows the structure of the subscriber station 200 according to an exemplary embodiment of the present invention.
  • the subscriber station 200 includes a subscriber station controller 210, a digital signal transceiver 220, and an analog signal transceiver 230.
  • the subscriber station controller 210 includes a channel quality reporter 211
  • the digital signal transceiver 220 includes a transmitter
  • the analog signal transceiver 230 processes modulated and encoded digital signals and wirelessly transmits processed signals.
  • the subscriber station controller 210 may further comprise a plurality of devices for transmitting and receiving data to/from the base station 100 and processing the data, which will not be described since they are well known to a person skilled in the art.
  • the channel quality reporter 211 measures and reports the quality of corresponding channels according to the REP_REQ message provided by the base station 100.
  • FIG. 11 shows a block diagram of the channel quality reporter 21 1.
  • the channel quality reporter 21 1 includes a message
  • parser 21a parser 21a, a channel quality measurer 21 b, an allocated resource
  • the message parser 21a parses the message provided by the
  • receiver 222 to check the type of the message, and drives the channel
  • the channel quality measurer 21 b measures the quality of the
  • CINR carrier to interference noise ratio
  • the allocated resource checker 21 c stores the UL-MAP
  • the base station 100 uses the UL-MAP and the
  • the allocated resource checker 21 c uses basic CIDs included in
  • the response message generator 21 d generates a REP_RSP
  • the digital transceivers 120 and 220 and the analog signal are The digital transceivers 120 and 220 and the analog signal
  • the base station 100 generates a REP_REQ message and
  • the base station resource controller 1 10 allocates in advance a
  • the data are transmitted to the base station from the subscriber station, and transmits the UL-MAP to the subscriber stations through the broadcast channel in step S100.
  • the subscriber station controller 210 of the subscriber station 200 receives the UL-MAP from the base station 100 and stores the same in step S110, and uses the UL-MAP to generate a channel quality report.
  • the subscriber station designator 11a designates subscriber stations to which a CQI report message will be transmitted in step S120, and provides identifiers for the designated subscriber stations to the request message generator 11c.
  • the dedicated channel allocator 11 b may determine detailed resource positions of the designated subscriber stations in the dedicated feedback channel of the UL-MAP.
  • the request message generator 11c generates a REP_REQ including report format information which represents formats by which the subscriber stations transmit channel quality reports, and identifiers of at least one CQI requested subscriber station in step S130. In this instance, the request message generator 11c may determine the order for arranging the identifiers according to the detailed resource positions of the respective subscriber stations determined by the dedicated channel allocator 11 b.
  • FIG. 13 shows an exemplified format of the
  • REP_REQ message which includes format information for defining reporting formats of the channel quality information.
  • the REP_REQ message is then processed to be a broadcast message and is transmitted to the digital signal transceiver 120, and the
  • the transmitter 121 thereof broadcasts the REPJ EQ message in step S140.
  • the respective subscriber stations 200 receive the REP_REQ
  • controller 210 through the receiver 222 of the digital signal transceiver
  • the channel quality reporter 21 1 of the subscriber station controller 210 processes the received message when the message
  • step S160 the identifier of the corresponding subscriber station in step S160.
  • channel quality reporter 21 1 responds to the REP_REQ message in step
  • the channel quality measurer 21 b measures the CINR of the
  • step S190 downlink based on the REP_REQ message in step S190 when the message is found to be the REP_REQ message.
  • the allocated resource checker 21 c uses the REP_REQ
  • the allocated resource checker 21 c checks the dedicated feedback
  • FIG. 14 exemplifies the uplink resource allocation in the
  • OFDMA system and the exemplary embodiment is not restricted to the
  • time-division systems may apply the
  • the response message generator 21 d uses the report format
  • REP_REQ included in the REP_REQ message and generates a REP_RSP
  • the REP_RSP message includes a channel quality information codeword.
  • the downlink resource allocator 1 12 of the base station 100 uses an average value and a deviation value of the downlink CINR
  • the dedicated feedback channel determines scheduling and an
  • an uplink resource for transmitting channel quality information by a subscriber station is allocated in advance when a CQI report message is provided to the subscriber station in the mobile communication system, and therefore, the delayed time generated when the subscriber station transmits a channel measurement report to the base station is minimized to quickly process a fast variation of the channel environment.
  • reliable channel quality information for determining the AMC level of data transmission is quickly and efficiently provided in the mobile communication system (or the wireless Internet system). Also, swift adaptation to the most recent channel quality is allowed to thus apply the most efficient AMC level when transmitting data to/from the corresponding subscriber station.
  • the CQI report message is broadcast to the respective subscriber stations and the identifiers of the subscriber stations are provided as parameters, the overheads of message transmission are substantially reduced compared to the case in which each subscriber station individually receives the CQI report message, and the subscriber stations can receive the above-noted message without errors.
  • the subscriber stations obtain information of an uplink resource for a quality measurement report from the order of
  • the subscriber stations transmit data by adding a CRC thereto without header information, thereby quickly and efficiently providing reliable channel quality information.

Abstract

Disclosed is a method and device for requesting and reporting channel quality information in a mobile communication system. A base station a locates a dedicated feedback channel for channel quality information report to an uplink radio resource, transmits the allocation information to subscriber stations, and generates a CQI report message to request channel quality information from the subscriber stations. The subscriber stations receive the CQI report message from the base station, measures a radio channel quality for communication with the base station, generates channel quality information, generates a CQI response message including the channel quality information, and transmit- the CQI response message to the base station through a dedicates feedback channel designated in the allocation information.

Description

METHOD AND APPARATUS FOR REQUESTING AND REPORTING CHANNEL QUALITY INFORMATION IN MOBILE COMMUNICATION SYSTEM
BACKGROUND OF THE INVENTION
(a) Field of the Invention The present invention relates to a mobile communication system. More specifically, the present invention relates to a method and apparatus for requesting and reporting channel quality information (CQI) in a wireless portable Internet system.
(b) Description of the Related Art The wireless portable Internet is a next generation communication system for further supporting mobility, in addition to a short range data communication system which uses stationary access points (APs) such as the conventional wireless local area network (LAN). Vaπous standards have been proposed for the wireless portable Internet, and the international standardization on the portable Internet is in progress by the IEEE 802.16. The wireless LAN system such as the conventional IEEE 802.11 provides a data communication system which allows short-range radio communication with reference to stationary access points, which provides no mobility of the subscriber station (SS) but which supports wireless LAN data communication in a local area other than wired LAN data communication. Meanwhile, a new wireless portable Internet system currently progressed by the IEEE 802.16 working group is designed to support the mobility to the subscriber station and thus provide a seamless data communication service thereto when the subscriber station moves from one cell to another cell. The mobile communication systems including the above- described wireless portable Internet system have been developed for communication systems which support speech services and high-speed packet data services. Reported information on the radio channel quality of a link to a subscriber station on the move is very important since the information is used to determine an appropriate adaptive modulation and channel coding (AMC) level for the corresponding link to the subscriber station in the system for supporting high-speed mobility. Since the reported information on the radio channel quality is found to be erroneous, a resource allocated to the link to the subscriber station may be wasted, it is accordingly very important to provide reliable channel quality information (CQI) to a scheduler of the base station. In order to collect information on the channel quality, the base station selects a predetermined subscriber station for each slot from among a plurality of subscriber stations, transmits packet data thereto, and receives channel quality information on a forward channel from the selected subscriber station to determine transmission parameters such as data rates, channel coding rates, and modulation orders. When the base station transmits a CQI report message to a plurality of subscriber stations, each subscriber station reports a channel quality measurement result to the base station in a specified message format. However, the method for the base station to request the channel quality information from a plurality of subscriber stations in the case of one frame may exhaust downlink resources since the base station transmits similar messages to the subscriber stations individually.
Further, when the base station transmits the message to the subscriber station by using an inadequate AMC level, in detail, when the base station transmits the CQI report message thereto by using the AMC level determined based on the existing reported channel quality even though the channel has already been degraded, some subscriber stations may fail to receive the CQI report message. Also, overheads of messages are increased when the respective subscriber stations individually transmit a response message for the channel quality measurement result to the base station. In addition, the subscriber station guarantees no allocation of uplink resources for transmitting the response message of the channel quality measurement result, and hence, undesired delay may be generated when the subscriber station transmits the response message to the base station. As a result, the subscriber stations may fail to
transmit the on-time response message thereto, and the base station
may not adaptively process the mobile environment.
SUMMARY OF THE INVENTION
It is an advantage of the present invention to quickly and
efficiently provide reliable channel quality information (CQI), and determine the adaptive modulation and channel coding (AMC) level used
for data transmission between the base station and subscriber stations
in a mobile communication system. It is another advantage of the present invention to reduce
overheads of message transmission and allow reception of messages by the subscriber stations without errors when the subscriber stations
transmit a CQI report message to the base station. In one aspect of the present invention, a method for reporting
channel quεlity information by a subscriber station in a mobile
communication system comprises: (a) receiving uplink radio resource
allocation information to which a dedicated feedback channel for
reporting the channel quality information is allocated from a base station;
(b) receiving a CQI report message from the base station; (c) measuring
a radio channel quality for communication with the base station, and
generating channel quality information; (d) generating a CQI response
message including the channel quality information; and (e) transmitting the CQI response message to the base station through a dedicated feedback channel in the uplink. The CQI report message is broadcast, and it includes identifiers of at least one subscriber station arranged in a predetermined order. The step (e) further comprises: checking the order of identifiers of corresponding subscriber stations arranged in the CQI report message; identifying a radio resource allocated to the subscriber station by the order of the CQI report requested to each subscriber station; and transmitting a CQI response message to the base station through the identified radio resource in the dedicated feedback channel. In another aspect of the present invention, a method for requesting channel quality information from subscriber stations in a mobile communication system comprises: (a) allocating a dedicated feedback channel for a channel quality report to an uplink radio resource; (b) transmitting uplink radio resource allocation information to the subscriber stations so that the subscriber stations may report CQI through the dedicated feedback channel; (c) generating a CQI report message; and (d) transmitting the CQI report message to the subscriber stations to request a CQI report from the subscriber stations. The step (c) comprises generating a CQI report message including identifiers of at least one subscriber station, and the step (d) comprises broadcasting the CQI report message to at least one subscriber station to request a CQI report from the subscriber stations. In still another aspect of the present invention, a method for requesting and reporting radio channel quality information in a mobile communication system to which a base station and subscriber stations are coupled through a mobile communication network, comprises: (a) allowing the base station to allocate a dedicated feedback channel for channel quality report, and transmitting the allocation information to the subscriber stations; (b) generating a CQI report message, broadcasting the CQI report message, and requesting a CQI report from at least one subscriber station; (c) allowing the subscriber stations to receive the CQI report message, measure a radio channel quality for communication with the base station, and generate channel quality information; and (d) allowing the subscriber station to generate a CQI response message including channel quality information and transmit the CQI response message to the base station through a dedicated feedback channel for a channel quality report. In still yet another aspect of the present invention, a base station for requesting channel information in a mobile communication system comprises: a base station resource controller for generating uplink radio resource allocation information in which a dedicated feedback channel for CQI report is allocated to an uplink radio resource, and including a channel information requester for generating a CQI report message; a digital signal transmitter for performing adaptive modulation and coding on the uplink radio resource allocation information and the CQI report message to generate digital signals; and an analog signal transmitter for converting the digital signals into analog signals and transmitting the analog signals to the subscriber stations, wherein the base station resource controller transmits the uplink radio resource allocation information to the subscriber station and transmits the CQI report message thereto. The channel information requester comprises: a dedicated channel allocator for generating an uplink radio resource allocation information in which a dedicated feedback channel for reporting the channel quality information is allocated to an uplink radio resource; a subscriber station designator for designating at least one subscriber station for requesting channel information; and a request message generator for generating a CQI report message including identifiers of the designated subscriber stations. In a still further aspect of the present invention, a subscriber station for reporting channel quality information in a mobile communication system, comprises: a message parser for receiving a CQI report message from a base station and parsing the CQI report message; a channel quality measurer for measuring radio channel quality of the communication link to the base station, and generating channel quality information; a response message generator for generating a CQI response message including the channel quality information; a resource allocation checker for receiving uplink radio resource allocation information with a dedicated feedback channel for
reporting the channel quality information provided by the base station,
storing the uplink radio resource allocation information, and checking a
radio resource allocated for CQI report according to the parsed message
result; and a transmitter for transmitting the CQI response message to
the base station through the allocated radio resource.
The CQI report message includes identifiers of at least one
subscriber station arranged in the same order as the allocated CQI, and
the resource allocation checker checks a radio resource position at which the subscriber station reports channel quality information through
the dedicated feedback channel according to the order of identifiers of the corresponding subscriber stations arranged in the CQI report
message.
BRIEF DESCRIPTION OF THE DRAWINGS
The accompanying, drawings, which are incorporated in and
constitute a part of the specification, illustrate an embodiment of the
invention, and, together with the description, serve to explain the
principles of the invention, wherein: FIGs. 1 to 3 show general flowcharts for requesting and
reporting channel quality information;
FIG. 4 shows a flowchart for requesting and reporting channel
quality information according to an exemplary embodiment of the present invention; FIG. 5 shows a schematic diagram for a wireless portable Internet system according to an exemplary embodiment of the present invention; FIG. 6 shows a hierarchical diagram of a wireless portable
Internet system; FIG. 7 shows a schematic diagram of a connection structure between a base station and a subscriber station in a wireless portable Internet system; FIG. 8 shows a block diagram of a base station according to an exemplary embodiment of the present invention; FIG. 9 shows a block diagram of the channel quality requester shown in FIG. 8; FIG. 10 shows a block diagram of a subscriber station according to an exemplary embodiment of the present invention; FIG. 11 shows a block diagram of the channel quality reporter
shown in FIG. 10; FIG. 12 shows a flowchart for requesting and reporting channel quality information according to an exemplary embodiment of the present invention; FIG. 13 shows a format of the CQI report message according to an exemplary embodiment of the present invention; and FIG. 14 shows a process for checking the radio resource allocated to the subscriber station according to the CQI report message according to an exemplary embodiment of the present invention.
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS In the following detailed description, only the preferred embodiment of the invention has been shown and described, simply by way of illustration of the best mode contemplated by the inventor(s) of carrying out the invention. As will be realized, the invention is capable of modification in various obvious respects, all without departing from the invention. Accordingly, the drawings and description are to be regarded as illustrative in nature, and not restrictive. To clarify the present invention, parts which are not described in the specification are omitted, and parts for which similar descriptions are provided have the same reference numerals. FIGs. 1 to 3 show general flowcharts for measuring and reporting channel quality information in a mobile communication system. Referring to FIG. 1 , in order to measure the radio channel
quality between a base station and a subscriber station, the subscriber
station receives a CQI request from the base station and requests a
bandwidth for a channel measurement report therefrom in steps S10 to
S13, the base station allocates an uplink resource to the subscriber
station in steps S14 and S15, and the subscriber station uses the uplink
resource and transmits the channel measurement report to the base station in steps S16 and S17. However, a delay occurs because of the request and allocation of the uplink bandwidth until the subscriber station reports the channel measurement information to the base station, since the base station allocates no uplink resource to be used for the channel measurement report in advance when requesting channel quality information from the subscriber station, thereby very probably failing to quickly process the varied channel condition and satisfy the quality of service (QoS). FIG. 2 shows a process for the subscriber stations using contention-based bandwidth request. The respective subscriber stations competitively request a bandwidth for a channel measurement report from the base stations in steps S20 to S23, and when the contention- based request is failed, the subscriber stations attempt a contention- based bandwidth request again through a backoff process in steps S24 to S27. When the attempt is found to be successful, the base station allocates an uplink resource to the corresponding subscriber station, and the subscriber station transmits a channel measurement report to the base station through the allocated uplink resource in steps S28 to S30. In this case, an unpredictable delay is generated by the backoff, and the request and allocation of the uplink bandwidth. FIG. 3 shows a process for a subscriber station to transmit a random code for a bandwidth request to the base station in the general case of requesting and reporting the channel quality information. When the subscriber station transmits a random code for a bandwidth request to the base station according to the channel quality information provided by the base station in steps S40 to S43, the base station cannot determine from the bandwidth request code whether the subscriber station will transmit bandwidth request information (i.e., an amount of data stored in a transmission buffer of uplink data) or transmit the message for the channel measurement report. Accordingly, the subscriber station may be delayed in transmitting the message for the channel measurement report to the base station even though the subscriber station has successfully transmitted the random code to the base station, and hence, the time delay is inevitable. As shown in FIG. 3, when the base station allocates a resource for a bandwidth request and the subscriber station transmits a bandwidth request message before the subscriber station transmits the channel measurement report to the base station, the base station must allocate the uplink resource in steps S44 to S49, and hence, a time delay is generated and it is difficult to guarantee the QoS because of the undesired delay. Also, the base station must transmit a CQI report message to each subscriber station that will generate a channel measurement report.
Hence, when transmitting the CQI report message to a plurality of subscriber stations in a frame, the base station respectively transmits the same unicast message (e.g., a basic connection identifier (CID) according to the IEEE 802.16 standard) to the subscriber stations,
thereby increasing overheads.
To resolve the above-described problems generated while
requesting and reporting the channel quality information in the mobile
communication system, a subsequent method will now be described.
FIG. 4 shows a flowchart for requesting and reporting channel
quality information according to an exemplary embodiment of the
present invention. As shown, the base station allocates a radio uplink resource for
a CQI report before transmitting a CQ! request to each subscriber station
in steps S60 and S61 , and broadcasts a CQI report message including
identifier information of each subscriber station for reporting per-frame channel quality information to a plurality of subscriber stations in step
S62. Therefore, the subscriber stations receive the CQI report message
from the base station through one message transmission by the base station, and detect the uplink resource through which the subscriber
stations will transmit the channel measurement report to the base station.
As a result, since the process for requesting and allocating the
bandwidth for a CQI report is not executed, the response message for
transmitting the channel measurement report is transmitted to the base
station within the minimum delay time (optionally allowable in one frame
in the case of FIG. 4) in steps S63 to S65, and hence, the optimized
AMC level is applicable when the base station and the subscriber stations are swiftly adapted to the variation of radio channel conditions and transmit data with each other. A structure and operations of a device for requesting and reporting the channel quality information will now be described in detail, on the basis of the wireless portable Internet system, and without being restricted to this, will also be applicable to various other mobile communication systems. FIG. 5 shows a schematic diagram for a wireless portable Internet system according to an exemplary embodiment of the present invention. The wireless portable Internet system includes base stations 100 and 100', a subscriber station 200 for performing radio communication with the base stations, routers 300 and 310 connected to the base stations through a gateway, and the Internet. The wireless portable Internet system guarantees mobility and provides seamless data communication services when the subscriber station 200 shown in FIG. 5 moves from a cell covered by a first base station 100 to another cell covered by a second base station 100', supports a handover, and allocates dynamic IP addresses as the subscriber station moves. The wireless portable Internet subscriber station 200 and each of the base stations 100 and 100' communicate with each other through
the orthogonal frequency division multiple access (OFDMA) method which is a multiplexing method having the frequency division method for using a plurality of orthogonal frequency subcarriers as a plurality of subchannels combined with the time-division multiplexing (TDM) method. The OFDMA method is resistant against fading generated by multipaths and has high data rates, and the exemplary embodiment is not restricted to the OFDMA method. The IEEE 802.16e standard applies the AMC scheme between the subscriber station 200 and the base stations 100 and 100'. FIG. 6 shows a hierarchical diagram of the IEEE 802.16e wireless portable internet system including a physical layer L10 and medium access control (MAC) layers L21 , L22, and L23. The physical layer L10 performs wireless communication functions such as modulation/demodulation, coding/decoding, etc. as performed by a normal physical layer. According to the IEEE 802.16e, the wireless portable Internet system does not have function-specific
MAC layers as a wired Internet system, but a single MAC layer in charge of different functions. The MAC layer includes a privacy sublayer L21 , a MAC common part sublayer L22, and a service specific convergence sublayer L23. The service specific convergence sublayer L23 performs payload header suppression and QoS mapping functions in consecutive data communication. The MAC common part sublayer L22 is the core of the MAC layer which is in charge of system access, bandwidth allocation,
connection establishment and maintenance, and QoS control. The
privacy sublayer L21 performs functions of equipment authentication and
security key exchange, and encryption. The device authentication is
carried on by the privacy sublayer L21 , and the user authentication by an upper layer of the MAC (not illustrated).
FIG. 7 shows a schematic diagram of a connection structure
between a base station and a subscriber station in the wireless portable
Internet system. A connection is provided between the MAC layers of the
subscriber station and the base station. The term "connection C1 " as
used herein does not refer to a physical connection, but to a logical
connection that is defined as a mapping relationship between the MAC
peers of the subscriber station and the base station for traffic
transmission of one service flow. Hence, the parameter/message defined on the connection C1
refers to a function executed between the MAC peers. Actually, the
parameter/message is processed into a frame, which is transferred
through the physical layer and analyzed so as to control the MAC layer
to execute the function corresponding to the parameter/message. A
MAC message transferred through the connection C1 includes a
connection identifier (CID) which is an MAC layer address for identifying
the connection; radio resource allocation information (MAP) for defining
a symbol offset and a subchannel offset of a burst time-divided by a subscriber station in a downlink/uplink, and defining a number of symbols of the allocated resource and a number of subchannels; and channel descriptors (including a downlink channel descriptor (DCD) and an uplink channel descriptor (UCD)) for describing a characteristic of a physical layer according to characteristics of the downlink/uplink. In addition, the MAC message includes various messages for performing request (REQ), response (RSP), and acknowledgment (ACK) for various operations. FIG. 8 shows a block diagram of a base station in the above- structured wireless portable Internet system according to an exemplary embodiment of the present invention. The base station 100 includes a base station resource controller 110, a digital signal transceiver 120, and an analog signal transceiver 130. The base station resource controller 110 includes a channel quality requester 111 for requesting channel quality measurement, and a downlink resource allocator 112 for allocating downlink radio resources according to channel quality information provided by the subscriber station. The channel quality requester 111 requests channel quality information from the subscriber stations, and in particular, transmits a CQI report message for each frame to the subscriber stations. FIG. 9 shows a block diagram of the channel quality requester 111. The channel quality requester 111 includes a subscriber station designator 11a, a dedicated channel allocator 1 1 b, a request message generator 11c, and a controller 11d for controlling the subscriber station designator 11a, the dedicated channel allocator 11b, and the request message generator 11c. The subscriber station designator 11a designates subscriber stations to which a CQI report is transmitted. For example, the subscriber station designator 11a designates random subscriber stations or subscriber stations having a good forward channel quality and connected to the base station as those to which a CQI request is transmitted. For ease of description, the subscriber stations to which a CQI request is transmitted will be referred to as CQI requested subscriber stations. The subscriber station designator 11a provides identifiers (i.e., CIDs) of the CQI requested subscriber stations to the request message generator 11c. The CIDs represent unidirectional MAC layer addresses for identifying connections of the equivalent MAC peers of the base station and the subscriber stations, and the identifiers according to the exemplary embodiment are not restricted to the CIDs. The request message generator 11c generates a CQI report message (referred to as a report request (REP_REQ) message hereinafter) and transmits the same to the designated subscriber stations. In particular, the request message generator 11c generates a REP_REQ message for each frame and concurrently requests the report from a plurality of subscriber stations.
In order to achieve the request, the request message generator
1 1 c generates one REP_REQ message including identifiers of
subscriber stations provided by the subscriber station designator 11 a,
and processes the REP_REQ message to be a broadcast message (e.g.,
a message which uses a broadcast CID according to the IEEE 802.16
standard). Therefore, the REP_REQ message is broadcast, and the
respective subscriber stations selectively respond to the broadcast message depending on whether the identifier is included in the
REP_REQ message.
In particular, a dedicated channel for reporting channel quality information is previously allocated to an uplink radio resource before the
request message generator 1 1 c transmits the REP_REQ message to
the subscriber stations so that the subscriber stations may report the
channel quality through the dedicated uplink channel without performing
an additional channel allocation process when responding to the
REP_REQ message.
The dedicated channel allocator 1 1 b allocates a dedicated
feedback channel which is a logical dedicated uplink channel for
reporting channel quality information to the uplink radio resource, and
transmits an uplink radio resource allocation information (referred to as a
UL-MAP hereinafter) to the subscriber station before transmitting the REP_REQ message thereto. In addition, the dedicated channel allocator
1 1 b allocates detailed resource positions to be used by the subscriber
stations (e.g., CQI requested subscriber stations) within the dedicated
feedback channel. The request message generator 1 1 c arranges the
identifiers of the subscriber stations in a predetermined order according
to designated resource positions when the dedicated channel allocator
1 1 b designates the resource positions of the respective subscriber stations in the dedicated feedback channel. In addition, the request
message generator 1 1 c can randomly arrange the identifiers of the CQI-
requested subscriber stations. The downlink resource allocator 1 12 uses the channel quality
information included in a CQI response message (referred to as a report response (REP_RSP) message hereinafter) provided by the subscriber
stations according to the REP_REQ message, and determines
scheduling and an AMC level for the respective subscriber stations to be
transmitted in the downlink.
The digital signal transceiver 120 includes a transmitter 121 and
a receiver 122. The transmitter 121 modulates and encodes the
REP_REQ message provided by the base station resource controller
110, and the analog signal transceiver 130 broadcasts the modulated
and encoded message to the subscriber stations over the air.
The analog signal transceiver 130 and the receiver 122 of the
digital signal transceiver 120 receive the message from the subscriber stations which respond to the broadcast REP_REQ message, and transmit the message to the base station resource controller 110. A structure of the subscriber station for measuring and reporting the quality of the channel according to a corresponding channel quality request provided by the base station 100 will now be described. FIG. 10 shows the structure of the subscriber station 200 according to an exemplary embodiment of the present invention. The subscriber station 200 includes a subscriber station controller 210, a digital signal transceiver 220, and an analog signal transceiver 230. The subscriber station controller 210 includes a channel quality reporter 211 , and the digital signal transceiver 220 includes a transmitter
221 and a receiver 220. The analog signal transceiver 230 processes modulated and encoded digital signals and wirelessly transmits processed signals. The subscriber station controller 210 may further comprise a plurality of devices for transmitting and receiving data to/from the base station 100 and processing the data, which will not be described since they are well known to a person skilled in the art. The channel quality reporter 211 measures and reports the quality of corresponding channels according to the REP_REQ message provided by the base station 100. FIG. 11 shows a block diagram of the channel quality reporter 21 1.
As shown, the channel quality reporter 21 1 includes a message
parser 21a, a channel quality measurer 21 b, an allocated resource
checker 21c, and a response message generator 21 d. The message parser 21a parses the message provided by the
receiver 222 to check the type of the message, and drives the channel
quality measurer 21 b when the message is found to be a REP_REQ
message. The channel quality measurer 21 b measures the quality of the
downlink channel through which the message is transmitted, and for
example, measures the carrier to interference noise ratio (CINR) based on the signals transmitted through the downlink channel. Methods and
devices for measuring the CINR are realized by using well-known means,
and hence, no corresponding description will be provided. The allocated resource checker 21 c stores the UL-MAP
provided by the base station 100, and uses the UL-MAP and the
REP_REQ to check the uplink resources to be used to transmit a quality
report of the allocated channel of the corresponding subscriber station.
In detail, the allocated resource checker 21 c uses basic CIDs included in
the REP_REQ message to check the order of the corresponding
subscriber station, and then checks the detailed position of the radio
resource to be used by the subscriber station from the dedicated
feedback channel designated in the UL-MAP according to the checked order.
The response message generator 21 d generates a REP_RSP
message including the channel quality information provided by the
channel quality measurer 21 b. Therefore, the transmitter 221 of the digital signal transceiver
220 transmits the REP_RSP message to the base station 100 through the designated resource of the dedicated feedback channel.
The digital transceivers 120 and 220 and the analog signal
transceivers 130 and 230 of the base station and the subscriber station
will not be described since they are well known to a person skilled in the
art. A detailed method for requesting and reporting the channel quality information will now be described with reference to FIG. 12.
The base station 100 generates a REP_REQ message and
transmits the same to the subscriber stations in order to obtain information on the channel quality states used for determining the AMC
level of the subscriber stations on the move.
To perform this process, the dedicated channel allocator 1 1 b of
the base station resource controller 1 10 allocates in advance a
dedicated feedback channel used for a channel quality report to the
subscriber stations. That is, the dedicated channel allocator 1 1 b
allocates a dedicated feedback channel to the UL-MAP through which
the data are transmitted to the base station from the subscriber station, and transmits the UL-MAP to the subscriber stations through the broadcast channel in step S100. The subscriber station controller 210 of the subscriber station 200 receives the UL-MAP from the base station 100 and stores the same in step S110, and uses the UL-MAP to generate a channel quality report. The subscriber station designator 11a designates subscriber stations to which a CQI report message will be transmitted in step S120, and provides identifiers for the designated subscriber stations to the request message generator 11c. In this instance, the dedicated channel allocator 11 b may determine detailed resource positions of the designated subscriber stations in the dedicated feedback channel of the UL-MAP. The request message generator 11c generates a REP_REQ including report format information which represents formats by which the subscriber stations transmit channel quality reports, and identifiers of at least one CQI requested subscriber station in step S130. In this instance, the request message generator 11c may determine the order for arranging the identifiers according to the detailed resource positions of the respective subscriber stations determined by the dedicated channel allocator 11 b. FIG. 13 shows an exemplified format of the
REP_REQ message which includes format information for defining reporting formats of the channel quality information. The REP_REQ message is then processed to be a broadcast message and is transmitted to the digital signal transceiver 120, and the
transmitter 121 thereof broadcasts the REPJ EQ message in step S140. The respective subscriber stations 200 receive the REP_REQ
message broadcast and transmitted by the base station 100 in step
S150, and provide the REP_REQ message to the subscriber station
controller 210 through the receiver 222 of the digital signal transceiver
220 of each subscriber station 200. The channel quality reporter 21 1 of the subscriber station controller 210 processes the received message when the message
relates to the corresponding subscriber station, and ignores the
message when the same does not relate to the corresponding
subscriber station. In detail, the message parser 21 a of the channel quality reporter
21 1 determines whether the message relates to the corresponding
subscriber station depending on whether the received message includes
the identifier of the corresponding subscriber station in step S160. The
channel quality reporter 21 1 responds to the REP_REQ message in step
S170 when it is found that the received message has the identifier of the
subscriber station and is a REP_REQ message, and the channel quality
reporter 21 1 ignores the message and performs no process in step S180
when the received message has no identifier thereof.
The channel quality measurer 21 b measures the CINR of the
downlink based on the REP_REQ message in step S190 when the message is found to be the REP_REQ message.
The allocated resource checker 21 c uses the REP_REQ
message and checks the resource allocated to the uplink for a channel
measurement report for each corresponding subscriber station. FIG. 14
shows a process for checking the radio resource allocated to the
subscriber station having received the REP_REQ message. As shown, the allocated resource checker 21 c checks the dedicated feedback
channel used for reporting channel quality information and measured
from the UL-MAP, checks the position of the basic CIDs for identifying the subscriber stations, and checks the detailed resource position used
by the corresponding subscriber station in the dedicated feedback channel of the UL-MAP according to the checked order in steps S200
and S210. FIG. 14 exemplifies the uplink resource allocation in the
OFDMA system, and the exemplary embodiment is not restricted to the
OFDMA system. For example, time-division systems may apply the
temporal allocation order of uplink resources according to an
appearance order of identifiers of subscriber stations designated in the REP_REQ message.
The response message generator 21 d uses the report format
included in the REP_REQ message and generates a REP_RSP
message including channel quality information and cyclic redundancy
check (CRC) information for checking transmission errors, provided by
the channel quality measurer 21 b in step S220. The REP_RSP message includes a channel quality information codeword.
Therefore, the REP_RSP message is transmitted to the base
station 100 through the digital signal transceiver 220, the analog signal
transceiver 230, and the designated resource position of the channel dedicated feedback channel checked by the resource allocation checker
21 c in step S230.
The downlink resource allocator 1 12 of the base station 100 uses an average value and a deviation value of the downlink CINR
included in the REP_RSP provided by the subscriber stations through
the dedicated feedback channel, and determines scheduling and an
AMC level for each subscriber station when transmitting data in the
downlink in step S240. Accordingly, system performance is enhanced through an
increase of downlink transmission capacity since the optimized AMC
level is applicable to the case when a base station transmits data to a
corresponding subscriber station or vice versa by quickly controlling the
variation of mobile radio channel conditions.
While this invention has been described in connection with what
is presently considered to be the most practical and preferred
embodiment, it is to be understood that the invention is not limited to the
disclosed embodiments, but, on the contrary, is intended to cover
various modifications and equivalent arrangements included within the
spirit and scope of the appended claims. According to the exemplary embodiment, an uplink resource for transmitting channel quality information by a subscriber station is allocated in advance when a CQI report message is provided to the subscriber station in the mobile communication system, and therefore, the delayed time generated when the subscriber station transmits a channel measurement report to the base station is minimized to quickly process a fast variation of the channel environment. As a result, reliable channel quality information for determining the AMC level of data transmission is quickly and efficiently provided in the mobile communication system (or the wireless Internet system). Also, swift adaptation to the most recent channel quality is allowed to thus apply the most efficient AMC level when transmitting data to/from the corresponding subscriber station. In addition, since the CQI report message is broadcast to the respective subscriber stations and the identifiers of the subscriber stations are provided as parameters, the overheads of message transmission are substantially reduced compared to the case in which each subscriber station individually receives the CQI report message, and the subscriber stations can receive the above-noted message without errors. In particular, since the subscriber stations obtain information of an uplink resource for a quality measurement report from the order of
identifiers of subscriber station included in the CQI report message, the subscriber stations transmit data by adding a CRC thereto without header information, thereby quickly and efficiently providing reliable channel quality information.

Claims

WHAT IS CLAIMED IS:
1. A method for reporting channel quality information by a subscriber station in a mobile communication system, comprising: (a) receiving uplink radio resource allocation information to which a dedicated feedback channel for reporting the channel quality information (CQI) is allocated from a base station; (b) receiving a CQI report message from the base station; (c) measuring a radio channel quality for communication with the base station, and generating channel quality information; (d) generating a CQI response message including the channel quality information; and (e) transmitting the CQI response message to the base station through a dedicated feedback channel in the uplink.
2. The method of claim 1 , wherein the CQI report message is broadcast.
3. The method of claim 2, wherein the CQI report message includes identifiers of at least one subscriber station arranged in a predetermined order.
4. The method of claim 3, wherein (e) comprises: checking the order of identifiers of corresponding subscriber stations arranged in the CQI report message; identifying a radio resource allocated to the subscriber station in the order of the CQI report requested to each subscriber station; and transmitting a CQI response message to the base station through the identified radio resource in the dedicated feedback channel.
5. The method of claim 3, wherein the identifier of the subscriber station is a connection identifier (CID).
6. The method of claim 1 , wherein the CQI response message further includes a cyclic redundancy check (CRC) in addition to the channel quality information.
7. The method of claim 1 , wherein the CQI response message includes a channel quality information codeword.
8. The method of claim 1 , wherein the CQI report message includes format information for reporting the channel quality information.
9. A method for requesting channel quality information from subscriber stations in a mobile communication system, comprising: (a) allocating a dedicated feedback channel for a channel quality report to an uplink radio resource; (b) transmitting uplink radio resource allocation information to the subscriber stations so that the subscriber stations may report CQI through the dedicated feedback channel; (c) generating a CQI report message; and (d) transmitting the CQI report message to the subscriber stations to request a CQI report from the subscriber stations.
10. The method of claim 9, wherein (c) comprises generating a CQI report message including identifiers of at least one subscriber station, and (d) comprises broadcasting the CQI report message to at least one subscriber station to request a CQI report from the subscriber stations.
11. The method of claim 10, wherein (c) comprises arranging the identifiers of the subscriber stations in a predetermined order and generating the CQI report message.
12. The method of claim 9, further comprising: allocating downlink radio resources for the subscriber stations according to CQI response messages provided by the subscriber stations through the dedicated feedback channel.
13. A method for requesting and reporting radio channel quality information in a mobile communication system to which a base station and subscriber stations are coupled through a mobile communication network, comprising: (a) allowing the base station to allocate a dedicated feedback channel for channel quality report, and transmitting the allocation information to the subscriber stations; (b) generating a CQI report message, broadcasting the CQI report message, and requesting a CQI report from at least one subscriber station; (c) allowing the subscriber stations to receive the CQI report message, measure radio channel quality for communication link to the base station, and generate channel quality information; and (d) allowing the subscriber station to generate a CQI response message including channel quality information and transmit the CQI response message to the base station through a dedicated feedback channel for channel quality report.
14. The method of claim 13, wherein the CQI response message includes identifiers of at least one subscriber station arranged in a predetermined order, and (d) comprises: checking the order of identifiers of corresponding subscriber stations arranged in the CQI response message; identifying a radio resource position allocated to the subscriber station in the order of the CQI report requested to each subscriber station; and transmitting the CQI response message to the base station through the identified radio resource in the dedicated feedback channel.
15. The method of claim 13, wherein the requesting and reporting method is applied to the wireless portable Internet system.
16. A base station for requesting channel information in a mobile communication system, comprising: a base station resource controller for generating uplink radio resource allocation information in which a dedicated feedback channel for CQI report is allocated to an uplink radio resource, and including a channel information requester for generating a CQI report message; a digital signal transmitter for performing adaptive modulation and coding on the uplink radio resource allocation information and the CQI report message to generate digital signals; and an analog signal transmitter for converting the digital signals into analog signals and transmitting the analog signals to the subscriber stations, wherein the base station resource controller transmits the uplink radio resource allocation information to the subscriber station and transmits the CQI report message thereto.
17. The base station of claim 16, wherein the channel information requester comprises: a dedicated channel allocator for generating an uplink radio resource allocation information in which a dedicated feedback channel for CQI report is allocated to an uplink radio resource; a subscriber station designator for designating at least one subscriber station for requesting channel information; and a request message generator for generating a CQI report message including identifiers of the designated subscriber stations.
18. A subscriber station for reporting channel quality information in a mobile communication system, comprising: a message parser for receiving a CQI report message from a base station and parsing the CQI report message; a channel quality measurer for measuring a radio channel quality of the communication link to the base station, and generating channel quality information; a response message generator for generating a CQI response message including the channel quality information; a resource allocation checker for receiving uplink radio resource allocation information with a dedicated feedback channel for CQI report provided by the base station, storing the uplink radio resource allocation information, and checking an allocated radio resource for CQI report according to the parsed message resuit; and a transmitter for transmitting the CQI response message to the base station through the allocated radio resource.
19. The subscriber station of claim 18, wherein the CQI report message includes identifiers of at least one subscriber station arranged in an order corresponding , and the resource allocation checker checks a radio resource position at which the subscriber station reports channel quality information through the dedicated feedback channel according to the order of identifiers of the corresponding subscriber stations arranged in the CQI report message.
PCT/KR2004/003344 2003-12-18 2004-12-17 Method and apparatus for requesting and reporting channel quality information in mobile communication system WO2005060132A1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
US10/583,165 US7813291B2 (en) 2003-12-18 2004-12-17 Method and apparatus for requesting and reporting channel quality information in mobile communication system

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
KR10-2003-0093283 2003-12-18
KR20030093283 2003-12-18
KR1020040082661A KR100600673B1 (en) 2003-12-18 2004-10-15 A method for requesting and reporting channel quality information in wireless system and apparatus thereof
KR10-2004-0082661 2004-10-15

Publications (1)

Publication Number Publication Date
WO2005060132A1 true WO2005060132A1 (en) 2005-06-30

Family

ID=34703416

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/KR2004/003344 WO2005060132A1 (en) 2003-12-18 2004-12-17 Method and apparatus for requesting and reporting channel quality information in mobile communication system

Country Status (1)

Country Link
WO (1) WO2005060132A1 (en)

Cited By (56)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2005125020A1 (en) * 2004-06-22 2005-12-29 Nortel Networks Limited Methods and systems for enabling feedback in wireless communication networks
WO2007066883A1 (en) 2005-10-31 2007-06-14 Lg Electronics Inc. Method of transmitting a measurement report in a wireless mobile communications system
WO2007076037A2 (en) * 2005-12-22 2007-07-05 Qualcomm, Inc. Methods and apparatus for selecting control channel reporting formats
WO2007075744A2 (en) * 2005-12-22 2007-07-05 Qualcomm Incorporated Method and apparatus for efficient reporting of information in a wireless communication system
EP1811685A2 (en) * 2006-01-19 2007-07-25 Samsung Electronics Co., Ltd. System and method for power control based on quality information in a wireless communication system
WO2007097804A2 (en) * 2005-12-22 2007-08-30 Qualcomm Incorporated Methods and apparatus related to custom control channel reporting formats
WO2007123346A1 (en) * 2006-04-21 2007-11-01 Samsung Electronics Co., Ltd. Method and apparatus for transmitting and receiving channel quality information in a wireless communication system
WO2008019924A1 (en) * 2006-08-17 2008-02-21 Alcatel Lucent Processing device for transmitting measurements performed by radio terminals
WO2008055239A2 (en) * 2006-10-31 2008-05-08 Qualcomm Incorporated Reliable uplink resource request
WO2008082270A1 (en) * 2007-01-05 2008-07-10 Lg Electronics Inc. Method of reporting channel quality in egprs system
WO2008095543A1 (en) * 2007-02-09 2008-08-14 Telecom Italia S.P.A. Characterization of co-channel interference in a wireless communication system
EP1995921A2 (en) 2007-01-25 2008-11-26 Samsung Electronics Co., Ltd. Apparatus and method for processing bandwidth request in multihop relay broadband wireless access (BWA) communication system
WO2009038983A1 (en) * 2007-09-14 2009-03-26 Intel Corporation Cqi reporting techniques for ofdma wireless networks
WO2007091858A3 (en) * 2006-02-08 2009-06-04 Lg Electronics Inc Method of transmitting channel quality information in mobile communication system
EP2092764A2 (en) * 2006-10-24 2009-08-26 Qualcomm Incorporated Enabling resource partitioning for wireless communication systems
WO2009111752A1 (en) * 2008-03-07 2009-09-11 Qualcomm Incorporated Authorizing transmission of resource utilization messages
EP2117155A1 (en) * 2008-05-06 2009-11-11 Panasonic Corporation Control channel signalling for triggering the independent transmission of a channel quality indicator
WO2010059003A3 (en) * 2008-11-21 2010-09-10 Lg Electronics Inc. Method of transmitting and receiving carrier configuration information
WO2008115003A3 (en) * 2007-03-19 2010-11-11 Lg Electronics Inc. A resource allocation method and a method for transmitting/receiving resource allocation information in mobile communication system
US7953061B2 (en) 2006-10-02 2011-05-31 Lg Electronics Inc. Method for transmitting control signal using efficient multiplexing
US7953169B2 (en) 2007-06-13 2011-05-31 Lg Electronics Inc. Transmitting spread signal in communication system
US8009760B2 (en) 2007-06-21 2011-08-30 Lg Electronics Inc. Method for receiving control information in orthogonal frequency division multiplexing system of mobile communication system
US8009720B2 (en) 2007-06-13 2011-08-30 Lg Electronics, Inc. Transmitting spread signal in communication system
GB2478224A (en) * 2007-03-19 2011-08-31 Lg Electronics Inc Allocating mobile resources via a bitmap indicating a resource type
US8027297B2 (en) 2006-10-02 2011-09-27 Lg Electronics Inc. Method for transmitting downlink control signal
US8116277B2 (en) 2007-03-19 2012-02-14 Lg Electronics Inc. Method for receiving ACK/NACK signal in mobile communication system
US8219097B2 (en) 2005-10-31 2012-07-10 Lg Electronics Inc. Method of transmitting and receiving radio access information in a wireless mobile communications system
KR101208513B1 (en) * 2006-02-08 2012-12-05 엘지전자 주식회사 Method for Transmitting Channel Quality Information
US8406767B2 (en) 2005-10-31 2013-03-26 Lg Electronics Inc. Data transfer management in a radio communications network
US8417255B2 (en) 2007-03-16 2013-04-09 Qualcomm Incorporated Data transmission and power control in a multihop relay communication system
US8437251B2 (en) 2005-12-22 2013-05-07 Qualcomm Incorporated Methods and apparatus for communicating transmission backlog information
US8503938B2 (en) 2004-10-14 2013-08-06 Qualcomm Incorporated Methods and apparatus for determining, communicating and using information including loading factors which can be used for interference control purposes
US8514692B2 (en) 2003-02-24 2013-08-20 Qualcomm Incorporated Methods and apparatus for determining, communicating and using information which can be used for interference control purposes
US8514771B2 (en) 2005-12-22 2013-08-20 Qualcomm Incorporated Methods and apparatus for communicating and/or using transmission power information
KR101365751B1 (en) 2005-12-08 2014-02-20 한국전자통신연구원 method for allocating CQI channel and storing CQI in wireless communication system and apparatus thereof
US8694042B2 (en) 2005-10-14 2014-04-08 Qualcomm Incorporated Method and apparatus for determining a base station's transmission power budget
US8811348B2 (en) 2003-02-24 2014-08-19 Qualcomm Incorporated Methods and apparatus for generating, communicating, and/or using information relating to self-noise
US8817737B2 (en) 2005-10-31 2014-08-26 Lg Electronics Inc. Method of transmitting and receiving data in a mobile communication network
US8879479B2 (en) 2009-01-27 2014-11-04 Motorola Solutions, Inc. Reactive scheduling methods and apparatus to enable peer-to-peer communication links in a wireless OFDMA system
US8891414B2 (en) 2000-12-15 2014-11-18 Adaptix, Inc. Multi-carrier communications with adaptive cluster configuration and switching
US8965413B2 (en) 2006-04-12 2015-02-24 Qualcomm Incorporated Locating a wireless local area network associated with a wireless wide area network
US9119220B2 (en) 2005-12-22 2015-08-25 Qualcomm Incorporated Methods and apparatus for communicating backlog related information
US9125092B2 (en) 2005-12-22 2015-09-01 Qualcomm Incorporated Methods and apparatus for reporting and/or using control information
US9137072B2 (en) 2005-12-22 2015-09-15 Qualcomm Incorporated Methods and apparatus for communicating control information
US9148795B2 (en) 2005-12-22 2015-09-29 Qualcomm Incorporated Methods and apparatus for flexible reporting of control information
US9191840B2 (en) 2005-10-14 2015-11-17 Qualcomm Incorporated Methods and apparatus for determining, communicating and using information which can be used for interference control
US9338795B2 (en) 2005-12-22 2016-05-10 Qualcomm Incorporated Methods and apparatus for communicating transmission backlog information
US9338767B2 (en) 2005-12-22 2016-05-10 Qualcomm Incorporated Methods and apparatus of implementing and/or using a dedicated control channel
EP2999143A3 (en) * 2006-05-01 2016-05-25 Intel IP Corporation Downlink channel parameters determination for a multiple-input-multiple-output (mimo) system
CN102710382B (en) * 2005-08-01 2016-08-03 三星电子株式会社 For the apparatus and method of adaptive channel Quality Feedback in multi-carrier wireless network
US9451491B2 (en) 2005-12-22 2016-09-20 Qualcomm Incorporated Methods and apparatus relating to generating and transmitting initial and additional control information report sets in a wireless system
US9462604B2 (en) 2005-12-22 2016-10-04 Qualcomm Incorporated Methods and apparatus related to selecting a request group for a request report
US9473265B2 (en) 2005-12-22 2016-10-18 Qualcomm Incorporated Methods and apparatus for communicating information utilizing a plurality of dictionaries
US9544860B2 (en) 2003-02-24 2017-01-10 Qualcomm Incorporated Pilot signals for use in multi-sector cells
US9603102B2 (en) 2003-02-24 2017-03-21 Qualcomm Incorporated Method of transmitting pilot tones in a multi-sector cell, including null pilot tones, for generating channel quality indicators
WO2018166331A1 (en) * 2017-03-16 2018-09-20 华为技术有限公司 Resource allocation method and apparatus, and terminal device

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20030054847A1 (en) * 2001-08-31 2003-03-20 Samsung Electronics Co., Ltd. Apparatus and method for transmitting and receiving forward channel quality information in a mobile communication system
JP2003204298A (en) * 2001-11-02 2003-07-18 Lucent Technol Inc Method for transmitting channel quality information in radio communication system
KR20030077732A (en) * 2002-03-26 2003-10-04 삼성전자주식회사 Apparatus and method for coding and decoding of cqi information in communication system using high speed downlink packet access scheme

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20030054847A1 (en) * 2001-08-31 2003-03-20 Samsung Electronics Co., Ltd. Apparatus and method for transmitting and receiving forward channel quality information in a mobile communication system
JP2003204298A (en) * 2001-11-02 2003-07-18 Lucent Technol Inc Method for transmitting channel quality information in radio communication system
KR20030077732A (en) * 2002-03-26 2003-10-04 삼성전자주식회사 Apparatus and method for coding and decoding of cqi information in communication system using high speed downlink packet access scheme

Cited By (194)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US9344211B2 (en) 2000-12-15 2016-05-17 Adaptix, Inc. OFDMA with adaptive subcarrier-cluster configuration and selective loading
US9191138B2 (en) 2000-12-15 2015-11-17 Adaptix, Inc. OFDMA with adaptive subcarrier-cluster configuration and selective loading
US9219572B2 (en) 2000-12-15 2015-12-22 Adaptix, Inc. OFDMA with adaptive subcarrier-cluster configuration and selective loading
US8964719B2 (en) 2000-12-15 2015-02-24 Adaptix, Inc. OFDMA with adaptive subcarrier-cluster configuration and selective loading
US8958386B2 (en) 2000-12-15 2015-02-17 Adaptix, Inc. Multi-carrier communications with adaptive cluster configuration and switching
US8934445B2 (en) 2000-12-15 2015-01-13 Adaptix, Inc. Multi-carrier communications with adaptive cluster configuration and switching
US8934375B2 (en) 2000-12-15 2015-01-13 Adaptix, Inc. OFDMA with adaptive subcarrier-cluster configuration and selective loading
US8891414B2 (en) 2000-12-15 2014-11-18 Adaptix, Inc. Multi-carrier communications with adaptive cluster configuration and switching
US9210708B1 (en) 2000-12-15 2015-12-08 Adaptix, Inc. OFDMA with adaptive subcarrier-cluster configuration and selective loading
US9203553B1 (en) 2000-12-15 2015-12-01 Adaptix, Inc. OFDMA with adaptive subcarrier-cluster configuration and selective loading
US9603102B2 (en) 2003-02-24 2017-03-21 Qualcomm Incorporated Method of transmitting pilot tones in a multi-sector cell, including null pilot tones, for generating channel quality indicators
US8811348B2 (en) 2003-02-24 2014-08-19 Qualcomm Incorporated Methods and apparatus for generating, communicating, and/or using information relating to self-noise
US9661519B2 (en) 2003-02-24 2017-05-23 Qualcomm Incorporated Efficient reporting of information in a wireless communication system
US8514692B2 (en) 2003-02-24 2013-08-20 Qualcomm Incorporated Methods and apparatus for determining, communicating and using information which can be used for interference control purposes
US9544860B2 (en) 2003-02-24 2017-01-10 Qualcomm Incorporated Pilot signals for use in multi-sector cells
US9008013B2 (en) 2004-06-22 2015-04-14 Apple Inc. Methods and systems for enabling feedback in wireless communication networks
WO2005125020A1 (en) * 2004-06-22 2005-12-29 Nortel Networks Limited Methods and systems for enabling feedback in wireless communication networks
US8116262B2 (en) 2004-06-22 2012-02-14 Rockstar Bidco Lp Methods and systems for enabling feedback in wireless communication networks
US8503938B2 (en) 2004-10-14 2013-08-06 Qualcomm Incorporated Methods and apparatus for determining, communicating and using information including loading factors which can be used for interference control purposes
CN102710382B (en) * 2005-08-01 2016-08-03 三星电子株式会社 For the apparatus and method of adaptive channel Quality Feedback in multi-carrier wireless network
US8989084B2 (en) 2005-10-14 2015-03-24 Qualcomm Incorporated Methods and apparatus for broadcasting loading information corresponding to neighboring base stations
US8694042B2 (en) 2005-10-14 2014-04-08 Qualcomm Incorporated Method and apparatus for determining a base station's transmission power budget
US9191840B2 (en) 2005-10-14 2015-11-17 Qualcomm Incorporated Methods and apparatus for determining, communicating and using information which can be used for interference control
US8305970B2 (en) 2005-10-31 2012-11-06 Lg Electronics Inc. Method of transmitting a measurement report in a wireless mobile communications system
US9516573B2 (en) 2005-10-31 2016-12-06 Lg Electronics Inc. Data transfer management in a radio communications network
USRE48478E1 (en) 2005-10-31 2021-03-16 Evolved Wireless Llc Method of transmitting and receiving radio access information in a wireless mobile communications system
USRE48326E1 (en) 2005-10-31 2020-11-24 Evolved Wireless Llc Method of transmitting and receiving radio access information in a wireless mobile communications system
US8817737B2 (en) 2005-10-31 2014-08-26 Lg Electronics Inc. Method of transmitting and receiving data in a mobile communication network
US8831616B2 (en) 2005-10-31 2014-09-09 Lg Electronics Inc. Data transfer management in a radio communications network
EP1949562A1 (en) * 2005-10-31 2008-07-30 LG Electronics Inc. Method of transmitting a measurement report in a wireless mobile communications system
USRE46714E1 (en) 2005-10-31 2018-02-13 Evolved Wireless Llc Method of transmitting and receiving radio access information in a wireless mobile communications system
US8406767B2 (en) 2005-10-31 2013-03-26 Lg Electronics Inc. Data transfer management in a radio communications network
US9930580B2 (en) 2005-10-31 2018-03-27 Lg Electronics Inc. Data transfer management in a radio communications network
US8219097B2 (en) 2005-10-31 2012-07-10 Lg Electronics Inc. Method of transmitting and receiving radio access information in a wireless mobile communications system
EP1949562A4 (en) * 2005-10-31 2012-01-18 Lg Electronics Inc Method of transmitting a measurement report in a wireless mobile communications system
USRE46602E1 (en) 2005-10-31 2017-11-07 Evolved Wireless Llc Method of transmitting and receiving radio access information in a wireless mobile communications system
US10129795B2 (en) 2005-10-31 2018-11-13 Lg Electronics Inc. Data transfer management in a radio communications network
WO2007066883A1 (en) 2005-10-31 2007-06-14 Lg Electronics Inc. Method of transmitting a measurement report in a wireless mobile communications system
USRE46679E1 (en) 2005-10-31 2018-01-16 Evolved Wireless Llc Method of transmitting and receiving radio access information in a wireless mobile communications system
KR101365751B1 (en) 2005-12-08 2014-02-20 한국전자통신연구원 method for allocating CQI channel and storing CQI in wireless communication system and apparatus thereof
US8514771B2 (en) 2005-12-22 2013-08-20 Qualcomm Incorporated Methods and apparatus for communicating and/or using transmission power information
CN103533582B (en) * 2005-12-22 2016-09-28 高通股份有限公司 The method and apparatus relevant to the selection controlling channel reporting form
KR101060535B1 (en) 2005-12-22 2011-08-30 퀄컴 인코포레이티드 Efficient Reporting of Information in Wireless Communication Systems
US9893917B2 (en) 2005-12-22 2018-02-13 Qualcomm Incorporated Methods and apparatus for communicating control information
KR101050986B1 (en) * 2005-12-22 2011-07-21 퀄컴 인코포레이티드 Methods and apparatus related to custom control channel reporting format
US9125092B2 (en) 2005-12-22 2015-09-01 Qualcomm Incorporated Methods and apparatus for reporting and/or using control information
KR101062645B1 (en) 2005-12-22 2011-09-06 퀄컴 인코포레이티드 Method and apparatus for selecting a control channel reporting format
TWI448169B (en) * 2005-12-22 2014-08-01 Qualcomm Inc Methods and apparatus related to custom control channel reporting formats
US10645693B2 (en) 2005-12-22 2020-05-05 Qualcomm Incorporated Methods and apparatus of implementing and/or using a control channel
JP2009521871A (en) * 2005-12-22 2009-06-04 クゥアルコム・インコーポレイテッド Method and apparatus for selecting a control channel reporting format
WO2007076037A2 (en) * 2005-12-22 2007-07-05 Qualcomm, Inc. Methods and apparatus for selecting control channel reporting formats
WO2007097804A3 (en) * 2005-12-22 2008-05-22 Qualcomm Inc Methods and apparatus related to custom control channel reporting formats
JP2009521859A (en) * 2005-12-22 2009-06-04 クゥアルコム・インコーポレイテッド Methods and apparatus related to custom control channel reporting formats
US9578654B2 (en) 2005-12-22 2017-02-21 Qualcomm Incorporated Methods and apparatus related to selecting reporting alternative in a request report
US9125093B2 (en) 2005-12-22 2015-09-01 Qualcomm Incorporated Methods and apparatus related to custom control channel reporting formats
US9572179B2 (en) 2005-12-22 2017-02-14 Qualcomm Incorporated Methods and apparatus for communicating transmission backlog information
WO2007076037A3 (en) * 2005-12-22 2008-05-22 Qualcomm Inc Methods and apparatus for selecting control channel reporting formats
EP2209335A3 (en) * 2005-12-22 2012-03-28 Qualcomm Incorporated Methods and Apparatus Related to Custom Control Channel Reporting Formats
EP2203013A3 (en) * 2005-12-22 2012-03-28 Qualcomm Incorporated Methods and Apparatus Related to Custom Control Channel Reporting Formats
CN105263160B (en) * 2005-12-22 2019-06-18 高通股份有限公司 Method and apparatus relevant to custom control channel reporting formats
EP2194742A1 (en) * 2005-12-22 2010-06-09 Qualcom Incorporated Method and apparatus for reporting of information in a wireless communication system
WO2007075744A2 (en) * 2005-12-22 2007-07-05 Qualcomm Incorporated Method and apparatus for efficient reporting of information in a wireless communication system
US10159006B2 (en) 2005-12-22 2018-12-18 Qualcomm Incorporated Methods and apparatus for reporting and/or using control information
CN105263160A (en) * 2005-12-22 2016-01-20 高通股份有限公司 Methods and apparatus related to custom control channel reporting formats
US9338795B2 (en) 2005-12-22 2016-05-10 Qualcomm Incorporated Methods and apparatus for communicating transmission backlog information
US9338767B2 (en) 2005-12-22 2016-05-10 Qualcomm Incorporated Methods and apparatus of implementing and/or using a dedicated control channel
WO2007075744A3 (en) * 2005-12-22 2008-08-07 Qualcomm Inc Method and apparatus for efficient reporting of information in a wireless communication system
US9473265B2 (en) 2005-12-22 2016-10-18 Qualcomm Incorporated Methods and apparatus for communicating information utilizing a plurality of dictionaries
US9462604B2 (en) 2005-12-22 2016-10-04 Qualcomm Incorporated Methods and apparatus related to selecting a request group for a request report
EP2858408A1 (en) * 2005-12-22 2015-04-08 Qualcomm Incorporated Method and apparatus for reporting of information in a wireless communication system
US9119220B2 (en) 2005-12-22 2015-08-25 Qualcomm Incorporated Methods and apparatus for communicating backlog related information
WO2007097804A2 (en) * 2005-12-22 2007-08-30 Qualcomm Incorporated Methods and apparatus related to custom control channel reporting formats
US8437251B2 (en) 2005-12-22 2013-05-07 Qualcomm Incorporated Methods and apparatus for communicating transmission backlog information
US8830827B2 (en) 2005-12-22 2014-09-09 Qualcomm Incorporated Methods and apparatus for communicating transmission backlog information
TWI467940B (en) * 2005-12-22 2015-01-01 Qualcomm Inc Methods and apparatus related to selecting control channel reporting formats
US10959120B2 (en) 2005-12-22 2021-03-23 Qualcomm Incorporated Methods and apparatus related to selecting control channel reporting formats
US9137072B2 (en) 2005-12-22 2015-09-15 Qualcomm Incorporated Methods and apparatus for communicating control information
EP2814281A1 (en) * 2005-12-22 2014-12-17 Qualcomm Incorporated Methods and apparatus related to selecting control channel reporting formats
EP2209335A2 (en) * 2005-12-22 2010-07-21 Qualcom Incorporated Methods and Apparatus Related to Custom Control Channel Reporting Formats
US9161313B2 (en) 2005-12-22 2015-10-13 Qualcomm Incorporated Methods and apparatus for communicating and/or using transmission power information
US9451491B2 (en) 2005-12-22 2016-09-20 Qualcomm Incorporated Methods and apparatus relating to generating and transmitting initial and additional control information report sets in a wireless system
US9148795B2 (en) 2005-12-22 2015-09-29 Qualcomm Incorporated Methods and apparatus for flexible reporting of control information
EP3038403A1 (en) * 2005-12-22 2016-06-29 Qualcomm Incorporated Methods and apparatus related to control channel reporting formats
EP1811685A2 (en) * 2006-01-19 2007-07-25 Samsung Electronics Co., Ltd. System and method for power control based on quality information in a wireless communication system
EP1811685A3 (en) * 2006-01-19 2008-02-20 Samsung Electronics Co., Ltd. System and method for power control based on quality information in a wireless communication system
US8041308B2 (en) 2006-02-08 2011-10-18 Lg Electronics Inc. Method of transmitting channel quality information in mobile communication system
KR101208513B1 (en) * 2006-02-08 2012-12-05 엘지전자 주식회사 Method for Transmitting Channel Quality Information
WO2007091858A3 (en) * 2006-02-08 2009-06-04 Lg Electronics Inc Method of transmitting channel quality information in mobile communication system
US9379875B2 (en) 2006-03-20 2016-06-28 Intel Corporation Downlink channel parameters determination for a multiple-input-multiple-output (MIMO) system
US10320451B2 (en) 2006-03-20 2019-06-11 Intel Corporation Downlink channel parameters determination for a multiple-input-multiple-output (MIMO) system
US8965413B2 (en) 2006-04-12 2015-02-24 Qualcomm Incorporated Locating a wireless local area network associated with a wireless wide area network
KR100895166B1 (en) * 2006-04-21 2009-05-04 삼성전자주식회사 Apparatus and method for channel quality in wireless communication system
WO2007123346A1 (en) * 2006-04-21 2007-11-01 Samsung Electronics Co., Ltd. Method and apparatus for transmitting and receiving channel quality information in a wireless communication system
US9002293B2 (en) 2006-04-21 2015-04-07 Samsung Electronics Co., Ltd Method and apparatus for transmitting and receiving channel quality information in a wireless communication system
US9729223B2 (en) 2006-04-21 2017-08-08 Samsung Electronics Co., Ltd Method and apparatus for transmitting and receiving channel quality information in a wireless communication system
EP2999143A3 (en) * 2006-05-01 2016-05-25 Intel IP Corporation Downlink channel parameters determination for a multiple-input-multiple-output (mimo) system
US8325619B2 (en) 2006-08-17 2012-12-04 Alcatel Lucent Processing device for the transmission of measurements taken by radio terminals
WO2008019924A1 (en) * 2006-08-17 2008-02-21 Alcatel Lucent Processing device for transmitting measurements performed by radio terminals
FR2905045A1 (en) * 2006-08-17 2008-02-22 Alcatel Sa PROCESSING DEVICE FOR TRANSMITTING MEASUREMENTS EFFECTED BY RADIO TERMINALS
US9729282B2 (en) 2006-10-02 2017-08-08 Lg Electronics Inc. Method for transmitting control signal using efficient multiplexing
US9451613B2 (en) 2006-10-02 2016-09-20 Lg Electronics Inc. Method for transmitting control signal using efficient multiplexing
US7953061B2 (en) 2006-10-02 2011-05-31 Lg Electronics Inc. Method for transmitting control signal using efficient multiplexing
US9967064B2 (en) 2006-10-02 2018-05-08 Lg Electronics Inc. Method for transmitting control signal using efficient multiplexing
US7995553B2 (en) 2006-10-02 2011-08-09 Lg Electronics Inc. Method for transmitting control signal using efficient multiplexing
US8027297B2 (en) 2006-10-02 2011-09-27 Lg Electronics Inc. Method for transmitting downlink control signal
US9106379B2 (en) 2006-10-02 2015-08-11 Lg Electronics Inc. Method for transmitting control signal using efficient multiplexing
USRE44564E1 (en) 2006-10-02 2013-10-29 Lg Electronics Inc. Method for transmitting control signal using efficient multiplexing
US8509175B2 (en) 2006-10-02 2013-08-13 Lg Electronics Inc. Method for transmitting downlink control signal
EP2092764A4 (en) * 2006-10-24 2013-08-21 Qualcomm Inc Enabling resource partitioning for wireless communication systems
US9179469B2 (en) 2006-10-24 2015-11-03 Qualcomm Incorporated Enabling resource partitioning for wireless communication systems
EP2092764A2 (en) * 2006-10-24 2009-08-26 Qualcomm Incorporated Enabling resource partitioning for wireless communication systems
CN106304003A (en) * 2006-10-31 2017-01-04 高通股份有限公司 Reliable uplink resource request
WO2008055239A2 (en) * 2006-10-31 2008-05-08 Qualcomm Incorporated Reliable uplink resource request
WO2008055239A3 (en) * 2006-10-31 2008-10-23 Qualcomm Inc Reliable uplink resource request
US8824381B2 (en) 2006-10-31 2014-09-02 Qualcomm Incorporated Reliable uplink resource request
WO2008082270A1 (en) * 2007-01-05 2008-07-10 Lg Electronics Inc. Method of reporting channel quality in egprs system
US7782791B2 (en) 2007-01-05 2010-08-24 Lg Electronics Inc. Method of reporting channel quality in EGPRS system
EP1995921A3 (en) * 2007-01-25 2011-02-09 Samsung Electronics Co., Ltd. Apparatus and method for processing bandwidth request in multihop relay broadband wireless access (BWA) communication system
US8149759B2 (en) 2007-01-25 2012-04-03 Samsung Electronics Co., Ltd. Apparatus and method for processing bandwidth request in multihop relay broadband wireless access (BWA) communication system
EP1995921A2 (en) 2007-01-25 2008-11-26 Samsung Electronics Co., Ltd. Apparatus and method for processing bandwidth request in multihop relay broadband wireless access (BWA) communication system
US8843170B2 (en) 2007-02-09 2014-09-23 Telecom Italia S.P.A. Characterization of co-channel interference in a wireless communication system, in particular a cellular radio communication system
WO2008095543A1 (en) * 2007-02-09 2008-08-14 Telecom Italia S.P.A. Characterization of co-channel interference in a wireless communication system
US8462646B2 (en) 2007-02-09 2013-06-11 Telecom Italia S.P.A. Characterization of co-channel interference in a wireless communication system
US8903412B2 (en) 2007-03-16 2014-12-02 Qualcomm Incorporated Data transmission and power control in a multihop relay communication system
US8417255B2 (en) 2007-03-16 2013-04-09 Qualcomm Incorporated Data transmission and power control in a multihop relay communication system
US8787297B2 (en) 2007-03-19 2014-07-22 Lg Electronics Inc. Resource allocation method and a method for transmitting/receiving resource allocation information in mobile communication system
US8630242B2 (en) 2007-03-19 2014-01-14 Lg Electronics Inc. Resource allocation method and a method for transmitting/receiving resource allocation information in mobile communication system
US8116277B2 (en) 2007-03-19 2012-02-14 Lg Electronics Inc. Method for receiving ACK/NACK signal in mobile communication system
GB2478224B (en) * 2007-03-19 2011-11-30 Lg Electronics Inc A resource allocation method and a method for transmitting/receiving resource allocation information in mobile communication system
US10616874B2 (en) 2007-03-19 2020-04-07 Lg Electronics Inc. Method for receiving ACK/NACK signal in mobile communication system
WO2008115003A3 (en) * 2007-03-19 2010-11-11 Lg Electronics Inc. A resource allocation method and a method for transmitting/receiving resource allocation information in mobile communication system
US8923241B2 (en) 2007-03-19 2014-12-30 Lg Electronics Inc. Resource allocation method and a method for transmitting/receiving resource allocation information in mobile communication system
CN102256361A (en) * 2007-03-19 2011-11-23 Lg电子株式会社 A resource allocation method and a method for transmitting/receiving resource allocation information in mobile communication system
US9900138B2 (en) 2007-03-19 2018-02-20 Lg Electronics Inc. Resource allocation method and a method for transmitting/receiving resource allocation information in mobile communication system
GB2457847B (en) * 2007-03-19 2011-08-10 Lg Electronics Inc A resource allocation method and a method for transmitting/receiving resource allocation information in mobile communication system
US8553638B2 (en) 2007-03-19 2013-10-08 Lg Electronics Inc. Method for receiving ACK/NACK signal in mobile communication system
US8780837B2 (en) 2007-03-19 2014-07-15 Lg Electronics Inc. Method for receiving ACK/NACK signal in mobile communication system
US9191173B2 (en) 2007-03-19 2015-11-17 Lg Electronics Inc. Resource allocation method and a method for transmitting/receiving resource allocation information in mobile communication system
US9749109B2 (en) 2007-03-19 2017-08-29 Lg Electronics Inc. Resource allocation method and a method for transmitting/receiving resource allocation information in mobile communication system
US8155070B2 (en) 2007-03-19 2012-04-10 Lg Electronics Inc. Method for receiving ACK/NACK signal in mobile communication system
GB2478224A (en) * 2007-03-19 2011-08-31 Lg Electronics Inc Allocating mobile resources via a bitmap indicating a resource type
US8767650B2 (en) 2007-03-19 2014-07-01 Lg Electronics Inc. Method for receiving ACK/NACK signal in mobile communication system
US9078247B2 (en) 2007-03-19 2015-07-07 Lg Electronics Inc. Method for receiving ACK/NACK signal in mobile communication system
US9331816B2 (en) 2007-03-19 2016-05-03 Lg Electronics Inc. Method for receiving ACK/NACK signal in mobile communications system
US9826518B2 (en) 2007-03-19 2017-11-21 Lg Electronics Inc. Method for receiving ACK/NACK signal in mobile communication system
US8009720B2 (en) 2007-06-13 2011-08-30 Lg Electronics, Inc. Transmitting spread signal in communication system
US8774299B2 (en) 2007-06-13 2014-07-08 Lg Electronics Inc. Transmitting spread signal in communication system
US8774297B2 (en) 2007-06-13 2014-07-08 Lg Electronics Inc. Transmitting spread signal in communication system
US8582626B2 (en) 2007-06-13 2013-11-12 Lg Electronics Inc. Transmitting spread signal in communication system
US9197392B2 (en) 2007-06-13 2015-11-24 Lg Electronics Inc. Transmitting spread signal in communication system
US8018987B2 (en) 2007-06-13 2011-09-13 Lg Electronics Inc. Transmitting spread signal in communication system
US8018984B2 (en) 2007-06-13 2011-09-13 Lg Electronics Inc. Transmitting spread signal in communication system
US8792570B2 (en) 2007-06-13 2014-07-29 Lg Electronics Inc. Transmitting spread signal in communication system
US7953169B2 (en) 2007-06-13 2011-05-31 Lg Electronics Inc. Transmitting spread signal in communication system
US9048992B2 (en) 2007-06-13 2015-06-02 Lg Electronics Inc. Transmitting spread signal in communication system
US8369378B2 (en) 2007-06-13 2013-02-05 Lg Electronics Inc. Transmitting spread signal in communication system
US10742256B2 (en) 2007-06-13 2020-08-11 Lg Electronics Inc. Transmitting spread signal in communication system
USRE44928E1 (en) 2007-06-21 2014-06-03 Lg Electronics Inc. Method for receiving control information in orthogonal frequency division multiplexing system of mobile communication system
US8019017B2 (en) 2007-06-21 2011-09-13 Lg Electronics Inc. Method for receiving control information in orthogonal frequency division multiplexing system of mobile communication system
USRE46694E1 (en) 2007-06-21 2018-01-30 Lg Electronics Inc. Method for receiving control information in orthogonal frequency division multiplexing system of mobile communication system
US8363743B2 (en) 2007-06-21 2013-01-29 Lg Electronics Inc. Method for receiving control information in orthogonal frequency division multiplexing system of mobile communication system
US8009760B2 (en) 2007-06-21 2011-08-30 Lg Electronics Inc. Method for receiving control information in orthogonal frequency division multiplexing system of mobile communication system
USRE45103E1 (en) 2007-06-21 2014-09-02 Lg Electronics Inc. Method for receiving control information in orthogonal frequency division multiplexing system of mobile communication system
USRE45523E1 (en) 2007-06-21 2015-05-19 Lg Electronics Inc. Method for receiving control information in orthogonal frequency division multiplexing system of mobile communication system
USRE46693E1 (en) 2007-06-21 2018-01-30 Lg Electronics Inc. Method for receiving control information in orthogonal frequency division multiplexing system of mobile communication system
GB2465106B (en) * 2007-09-14 2012-04-18 Intel Corp CQI reporting techniques for ofdma wireless networks
US7995662B2 (en) 2007-09-14 2011-08-09 Intel Corporation CQI reporting techniques for OFDMA wireless networks
GB2465106A (en) * 2007-09-14 2010-05-12 Intel Corp CQI reporting techniques for ofdma wireless networks
CN101796750B (en) * 2007-09-14 2013-07-31 英特尔公司 CQI reporting techniques for OFDMA wireless networks
WO2009038983A1 (en) * 2007-09-14 2009-03-26 Intel Corporation Cqi reporting techniques for ofdma wireless networks
US8724611B2 (en) 2008-03-07 2014-05-13 Qualcomm Incorporated Authorizing transmission of resource utilization messages
WO2009111752A1 (en) * 2008-03-07 2009-09-11 Qualcomm Incorporated Authorizing transmission of resource utilization messages
RU2497286C2 (en) * 2008-05-06 2013-10-27 Панасоник Корпорэйшн Control channel overhead for initiating independent transmission of channel quality indicator
KR101530999B1 (en) * 2008-05-06 2015-06-24 고도 가이샤 아이피 브릿지 1 Control channel signalling for triggering the independent transmission of a channel quality indicator
CN102113258B (en) * 2008-05-06 2014-05-14 知识产权之桥一号有限责任公司 Control channel signalling for triggering independent transmission of channel quality indicator
US8855031B2 (en) 2008-05-06 2014-10-07 Godo Kaisha Ip Bridge 1 Control channel signalling for triggering the independent transmission of a channel quality indicator
US11245509B2 (en) 2008-05-06 2022-02-08 Godo Kaisha Ip Bridge 1 Control channel signalling for triggering the independent transmission of a channel quality indicator
CN102113258A (en) * 2008-05-06 2011-06-29 松下电器产业株式会社 Control channel signalling for triggering the independent transmission of a channel quality indicator
US10033506B2 (en) 2008-05-06 2018-07-24 Godo Kaisha Ip Bridge 1 Control channel signalling for triggering the independent transmission of a channel quality indicator
EP2544395A1 (en) * 2008-05-06 2013-01-09 Panasonic Corporation Control Channel Signalling for Triggering the Independent Transmission of a Channel Quality Indicator
US8385239B2 (en) 2008-05-06 2013-02-26 Panasonic Corporation Control channel signalling for triggering the independent transmission of a channel quality indicator
EP2117155A1 (en) * 2008-05-06 2009-11-11 Panasonic Corporation Control channel signalling for triggering the independent transmission of a channel quality indicator
US9131484B2 (en) 2008-05-06 2015-09-08 Godo Kaisha Ip Bridge 1 Control channel signalling for triggering the independent transmission of a channel quality indicator
CN103812616A (en) * 2008-05-06 2014-05-21 知识产权之桥一号有限责任公司 Base station execution method and base station
US9420566B2 (en) 2008-05-06 2016-08-16 Godo Kaisha Ip Bridge 1 Control channel signalling for triggering the independent transmission of a channel quality indicator
US10567139B2 (en) 2008-05-06 2020-02-18 Godo Kaisha Ip Bridge 1 Control channel signalling for triggering the independent transmission of a channel quality indicator
CN103812616B (en) * 2008-05-06 2017-03-29 知识产权之桥一号有限责任公司 The method performed by base station and base station
WO2009135574A1 (en) * 2008-05-06 2009-11-12 Panasonic Corporation Control channel signalling for triggering the independent transmission of a channel quality indicator
WO2010059003A3 (en) * 2008-11-21 2010-09-10 Lg Electronics Inc. Method of transmitting and receiving carrier configuration information
US8565157B2 (en) 2008-11-21 2013-10-22 Lg Electronics Inc. Method of transmitting and receiving carrier configuration information
US8879479B2 (en) 2009-01-27 2014-11-04 Motorola Solutions, Inc. Reactive scheduling methods and apparatus to enable peer-to-peer communication links in a wireless OFDMA system
CN108633003A (en) * 2017-03-16 2018-10-09 华为技术有限公司 A kind of resource allocation methods and device and terminal device
WO2018166331A1 (en) * 2017-03-16 2018-09-20 华为技术有限公司 Resource allocation method and apparatus, and terminal device
CN108633003B (en) * 2017-03-16 2021-10-01 华为技术有限公司 Resource allocation method and device and terminal equipment

Similar Documents

Publication Publication Date Title
US7813291B2 (en) Method and apparatus for requesting and reporting channel quality information in mobile communication system
WO2005060132A1 (en) Method and apparatus for requesting and reporting channel quality information in mobile communication system
KR100667697B1 (en) A method for requesting and reporting channel quality information in wireless system and apparatus thereof
US8374145B2 (en) Method for requesting and reporting channel quality information in wireless portable internet system
WO2005072073A2 (en) A method for requesting and reporting channel quality information in wireless system and apparatus thereof
US7616610B2 (en) Scheduling in wireless communication systems
KR100612649B1 (en) A method for requesting and reporting channel quality information in wireless portable internet system
US8194619B2 (en) Terminal in wireless communication system and ranging method thereof
US7423997B2 (en) Group scheduling in wireless communication systems
EP2611253B1 (en) Pre-allocated Random Access Identifiers
US7768966B2 (en) Method for traffic indication and channel adaptation for sleep mode terminals, and an apparatus thereof
KR101448622B1 (en) Method for transmitting channel information and Mobile communication terminal
US20070223614A1 (en) Common time frequency radio resource in wireless communication systems
KR101641930B1 (en) Method and apparatus for transitting power control in wireless communication system
KR20080080803A (en) Method and system for handover in mobile communication system
KR20090022234A (en) Method and system for handshaking in wireless communication system
KR20090132987A (en) Apparatus and method for reporting downlink channel status in wireless communication system

Legal Events

Date Code Title Description
AK Designated states

Kind code of ref document: A1

Designated state(s): AE AG AL AM AT AU AZ BA BB BG BR BW BY BZ CA CH CN CO CR CU CZ DE DK DM DZ EC EE EG ES FI GB GD GE GH GM HR HU ID IL IN IS JP KE KG KP KZ LC LK LR LS LT LU LV MA MD MG MK MN MW MX MZ NA NI NO NZ OM PG PH PL PT RO RU SC SD SE SG SK SL SY TJ TM TN TR TT TZ UA UG US UZ VC VN YU ZA ZM ZW

AL Designated countries for regional patents

Kind code of ref document: A1

Designated state(s): BW GH GM KE LS MW MZ NA SD SL SZ TZ UG ZM ZW AM AZ BY KG KZ MD RU TJ TM AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HU IE IS IT LT LU MC NL PL PT RO SE SI SK TR BF BJ CF CG CI CM GA GN GQ GW ML MR NE SN TD TG

121 Ep: the epo has been informed by wipo that ep was designated in this application
DPEN Request for preliminary examination filed prior to expiration of 19th month from priority date (pct application filed from 20040101)
NENP Non-entry into the national phase

Ref country code: DE

WWW Wipo information: withdrawn in national office

Country of ref document: DE

122 Ep: pct application non-entry in european phase
WWE Wipo information: entry into national phase

Ref document number: 10583165

Country of ref document: US