WO2011071663A2 - Procédé facilitant la transmission de données dans un système de communication - Google Patents

Procédé facilitant la transmission de données dans un système de communication Download PDF

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Publication number
WO2011071663A2
WO2011071663A2 PCT/US2010/056841 US2010056841W WO2011071663A2 WO 2011071663 A2 WO2011071663 A2 WO 2011071663A2 US 2010056841 W US2010056841 W US 2010056841W WO 2011071663 A2 WO2011071663 A2 WO 2011071663A2
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WO
WIPO (PCT)
Prior art keywords
radio
base
inbound
status information
data
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
PCT/US2010/056841
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English (en)
Other versions
WO2011071663A3 (fr
Inventor
Dipendra M. Chowdhary
Thomas B. Bohn
David G. Wiatrowski
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Motorola Solutions Inc
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Motorola Solutions 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
Application filed by Motorola Solutions Inc filed Critical Motorola Solutions Inc
Publication of WO2011071663A2 publication Critical patent/WO2011071663A2/fr
Publication of WO2011071663A3 publication Critical patent/WO2011071663A3/fr
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/02Selection of wireless resources by user or terminal
    • 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

Definitions

  • the present disclosure relates generally to wireless communication systems and more particularly to a method for facilitating transmission of data in a
  • the wireless communication channel bandwidth As efficiently as possible.
  • the data mostly flows in one direction, e.g. from the terminal to the infrastructure equipment.
  • the data communication is mostly periodic. As such, this may result in an inefficient utilization of the bandwidth as the outbound frequency channel from the infrastructure equipment to the terminal may remain idle for a long duration of time.
  • the location of a radio terminal is used for tracking its user.
  • Such location data is periodic and flows from the radio to a location server.
  • the periodic location updates are a significant portion of the total data transmissions in a communication system.
  • one or more transmission channels can be dedicated exclusively for location updates.
  • each Global Positioning System (GPS) revert repeater in such a GPS based system uses two frequencies; one for inbound communication and one for outbound. Further, each GPS revert receiver uses the outbound frequency for transmitting its own status information to the radio terminals. Therefore, the frequency channels of conventional systems are inefficiently utilized.
  • GPS Global Positioning System
  • FIG. 1 is a simplified block diagram of a communication system for communicating information between a plurality of base radios and one or more radio terminals in accordance with some embodiments.
  • FIG. 2 is a block diagram further illustrating a detailed view of a base radio employed in the communication system as shown in FIG. 1 in accordance with some embodiments.
  • FIG. 3 is a block diagram further illustrating a detailed view of a radio terminal employed in the communication system as shown in FIG. 1 in accordance with some embodiments.
  • FIG. 4 is a flowchart illustrating a method of operation of a base radio for communicating with one or more radio terminals in accordance with some
  • FIG. 5 is a flowchart illustrating a method of operation of one or more radio terminals for communicating with a plurality of base radios in accordance with some embodiments.
  • FIG. 6 is a signal flow diagram illustrating an exchange of signals between a plurality of base radios and a radio terminal in accordance with some embodiments.
  • a method for facilitating transmission of data in a communication system is provided herein.
  • a base radio of a plurality of base radios combines status information corresponding to a plurality of inbound radio frequencies and transmits the combined status information on a single outbound radio frequency.
  • each of the plurality of inbound radio frequencies corresponds to one of the plurality of base radios.
  • one or more radio terminals monitor the single outbound radio frequency to receive the combined status information, determine at least one available inbound radio frequency from the plurality of inbound radio frequencies based on the received combined status information, selects an inbound radio frequency of the at least one available inbound frequency, and transmits the data using the selected inbound radio frequency to the corresponding base radio.
  • FIG. 1 is a simplified block diagram of a communication system 100 for communicating data between a plurality of base radios 105-n and one or more radio terminals 110-n in accordance with some embodiments.
  • the communication system 100 can be, for example, any two-way radio communication network.
  • the communication network may include one or more of private networks, public networks, such as the Internet, wireless networks, such as satellite and cellular networks, and local area wireless networks, such as Wireless Fidelity (WiFi) or Bluetooth networks, Local Area Networks (LANs), Wide Area Networks (WANs), telephone networks, such as the Public Switched Telephone Networks (PSTN), or a combination of networks.
  • private networks such as the Internet
  • wireless networks such as satellite and cellular networks
  • local area wireless networks such as Wireless Fidelity (WiFi) or Bluetooth networks
  • LANs Local Area Networks
  • WANs Wide Area Networks
  • PSTN Public Switched Telephone Networks
  • the communication system 100 comprises a plurality of base radios 105-1 through 105-n and one or more radio terminals 110-1 through 110-n.
  • the plurality of base radios 105-1 through 105-n may be any fixed or wireless communication station.
  • the plurality of base radios 105-1 through 105-n can be any infrastructure equipment such as a base station or radio base station or an access point base station, or the like.
  • the four base radios and the three radio CM13017 terminals have been illustrated for simplicity. In practice, there may be more or less base radios and radio terminals.
  • the communication system 100 is only a general representation of communications among devices and thus, may include multiple communication means and/or multiple communication networks. In fact, the communication system 100 may include multiple, distinct networks that have no connection with one another and/or no common
  • the one or more radio terminals 110-1 through 110-n can comprise any radio communication devices, such as mobile phones,
  • minicomputers desktop computers, laptops, notebook computers, personal digital assistants, or the like.
  • At least one of the base radios (e.g. base radio 105-1) of the plurality of base radios 105-1 through 105-n is operated to receive status information of a plurality of inbound frequencies, combine the status information, and transmit the combined status information to the one or more radio terminals 110-1 through 110-n.
  • the base radio 105-1 is assigned an outbound frequency for transmitting the combined status information.
  • the base radio 105-1 can also be referred to as an assigned base radio, a single base radio or a designated base radio.
  • the status information comprises information including but not limited to a color code verification, a slot synchronization, and an operational activity state of the plurality of base radios 105-1 through 105-n.
  • the term operational activity comprises information related to a busy or an idle state of the plurality of base radios.
  • the outbound frequency refers to a radio frequency used by the base radio 105-1 for transmitting status information to the one or more radio terminals 110-1 through 110-n.
  • the base radio 105-1 combines the status information related to the plurality of inbound frequencies received from the plurality of base radios and transmits the combined status information over the outbound frequency.
  • the outbound frequency is known to and monitored, by the one or more radio terminals 110-1 through 110-n, to receive the combined status information related to the plurality of inbound frequencies.
  • the plurality of inbound frequencies refer to radio frequencies used by the plurality of base radios 105-1 through 105-n for receiving the data from the one or more radio CM13017 terminals 110-1 through 110-n.
  • each of the plurality of inbound frequencies corresponds to a base radio of the plurality of base radios 105-1 through 105-n, including the base radio 105-1.
  • frequency fl corresponds to the base radio 105-1
  • frequency £ corresponds to base radio 105-2
  • frequency fn corresponds to base radio 105-n.
  • the outbound frequency and the plurality of inbound frequencies can be fixed or pre-configured frequencies which are known to the plurality of base radios 105-1 through 105-n and the one or more radio terminals 110-1 through 110-n.
  • each of the plurality of inbound frequencies corresponds to base radios other than the base radio 105-1.
  • the base radio 105-1 is enabled only to transmit over the outbound frequency.
  • the one or more radio terminals 110-1 through 110-n monitor the outbound frequency to determine at least one available inbound frequency of the plurality of inbound frequencies for transmitting data to at least one base radio of the plurality of base radios 105-1 through 105-n.
  • the data can be any traffic data such as location update information, text message, telemetry data, and the like.
  • the data can be unconfirmed data.
  • unconfirmed data refers to transmission of data which do not require acknowledgment of a correct reception of the data from a recipient.
  • an available inbound frequency refers to an inbound frequency with the status information indicating that the inbound frequency is currently unused or is an idle state.
  • the one or more radio terminals 110-1 through 110-n then select an inbound frequency to transmit the data to a base radio (for example 105-2) corresponding to the selected available inbound frequency.
  • a base radio for example 105-2
  • the corresponding base radio 105-2 can then transmit the data received from the one or more radio terminals 110-1 through 110-n to one or more servers 115.
  • the server 115 for example, can CM13017 be a location server used for tracking the location of the one or more radio terminals 110-1 through 110-n.
  • the communication system 100 implements a Time Division Multiple Access (TDMA) communication.
  • TDMA Time Division Multiple Access
  • the plurality of base radios 105-1 through 105-n are required to be synchronized with each other.
  • the synchronization can be achieved by providing the slot
  • the wired interface can be for example a General Purpose Input/Output (GPIO) line.
  • GPIO General Purpose Input/Output
  • Other base radios of the plurality of base radios 105-1 through 105-n then maintain their slots synchronized with the GPIO line.
  • the synchronization can be achieved using a time provided by a GPS receiver, a time provided by a Network Time Protocol (NTP) and the like.
  • NTP Network Time Protocol
  • the TDMA communication is in accordance with the European Telecommunications Standards Institute-Digital Mobile Radio (ETSI-DMR) Standards (ETSI TS 102 361).
  • ETSI-DMR European Telecommunications Standards Institute-Digital Mobile Radio
  • ETSI TS 102 361 European Telecommunications Standards Institute-Digital Mobile Radio
  • FIG. 2 is a block diagram further illustrating a detailed view of a base radio 105 employed in the communication system 100 as shown in FIG. 1 in accordance with some embodiments.
  • the base radio 105 as illustrated and described herein is only one example and as such is not intended to suggest any limitation as to the scope of use or functionality of the invention.
  • Other well known configurations that may be suitable for use with the invention include, but are not limited to, personal computers (PCs), server computers, multiprocessor systems, microprocessor-based systems, programmable consumer electronics, network PCs, minicomputers, mainframe computers, distributed computing environments that include any of the above systems or devices, and the like.
  • the base radio 105 comprises a base radio antenna 205, a base radio transceiver 210, a base radio communication interface 215, a base radio processor 230, a base radio memory 235, and a base radio bus 255.
  • the base radio transceiver 210 is configured to communicate via the base radio communication interface 215.
  • CM13017 is configured to communicate via the base radio communication interface 215.
  • the base radio communication interface 215 further comprises a base radio wireless interface 220 and a base radio wired interface 225.
  • the base radio transceiver 210 is further configured to transmit a combined status information to one or more radio terminals 110-1 through 110-n over an outbound frequency using the base radio wireless interface 220 and receive data from the one or more radio terminals 110-1 through 110-n over at least one of a plurality of inbound frequencies using the base radio wireless interface 220.
  • the base radio transceiver 210 is configured to transmit the data to the server 115 and also receive status information of the plurality of base radios 105-1 through 105-n using the base radio wired interface 225.
  • the base radio processor 230 is configured to combine the status information received from the plurality of base radios.
  • the base radio processor 230 is further configured to control the base radio transceiver 210 to communicate with the one or more radio terminals 110-1 through 110-n, the plurality of base radios 105-2 through 105-n, and the server 115.
  • the base radio memory 235 comprises information related to the inbound and outbound frequencies 240 and status information 250 of the plurality of base radios.
  • the base radio bus 255 is configured to enable communication between a base radio antenna 205, a base radio transceiver 210, a base radio communication interface 215, a base radio processor 230, and a base radio memory 235.
  • the base radio processor 230 includes one or more microprocessors, microcontrollers, Digital Signal Processors (DSPs), state machines, logic circuitry, or any other device or devices that process information based on operational or programming instructions. Such operational or programming instructions are stored in the base radio memory 235.
  • DSPs Digital Signal Processors
  • the base radio memory 235 may be volatile (such as random access memory (RAM)), non-volatile (such as a hard disk, ROM, flash memory, etc.) and most often some combination of the two. Additionally, the base radio 105 may also have additional RAM (RAM) and non-volatile (such as a hard disk, ROM, flash memory, etc.) and most often some combination of the two. Additionally, the base radio 105 may also have additional RAM (RAM) RAM) and non-volatile (such as a hard disk, ROM, flash memory, etc.) and most often some combination of the two. Additionally, the base radio 105 may also have additional RAM (RAM)), non-volatile (such as a hard disk, ROM, flash memory, etc.) and most often some combination of the two. Additionally, the base radio 105 may also have additional RAM (RAM) and non-volatile (such as a hard disk, ROM, flash memory, etc.) and most often some combination of the two. Additionally, the base radio 105 may also have additional RAM (RAM
  • the base radio 105 may also include additional storage (removable and/or non-removable) including, but not limited to, magnetic or optical disks or tape. Such additional storage may be removable storage and/or nonremovable storage.
  • the base radio memory 235 can be an Integrated Circuit (IC) CM13017 memory chip containing any form of Random- Access Memory(RAM) or Read-Only Memory (ROM), a floppy disk, a Compact Disk Read-Only Memory (CD-ROM), a hard disk drive, a Digital Video Disc (DVD), a flash memory card, external subscriber identity module (SIM) card or any other medium for storing digital information.
  • RAM Random- Access Memory
  • ROM Read-Only Memory
  • CD-ROM Compact Disk Read-Only Memory
  • DVD Digital Video Disc
  • SIM subscriber identity module
  • FIG. 3 is a block diagram further illustrating a detailed view of a radio terminal 110 employed in the communication system 100 as shown in FIG. 1 in accordance with some embodiments.
  • the radio terminal 110 as illustrated and described herein is only one example and as such is not intended to suggest any limitation as to the scope of use or functionality of the invention.
  • Other well known configurations that may be suitable for use with the invention include, but are not limited to, personal computers (PCs), server computers, multiprocessor systems, microprocessor-based systems, programmable consumer electronics, network PCs, minicomputers, mainframe computers, distributed computing environments that include any of the above systems or devices, and the like.
  • FIG. 3 illustrates the radio terminal 110 comprising a radio terminal antenna 305, a radio terminal transceiver 310, a radio terminal communication interface 315, a radio terminal processor 325, a radio terminal memory 330, and a radio terminal bus 345.
  • the radio terminal transceiver 310 is configured to wirelessly communicate with the plurality of base radios 105-1 through 105-n using the radio terminal
  • the radio terminal communication interface 315 comprises a radio terminal wireless interface 320 to enable the wireless
  • the radio terminal transceiver 310 is configured to receive the combined status information from a base radio (for example 105-1) of the plurality of base radios 105-1 through 105-n, and then transmit location data to at least one base radio corresponding to an available inbound frequency.
  • the radio terminal processor 325 controls the radio terminal 110 to monitor the outbound frequency for
  • the radio terminal processor 325 is further configured to determine at least one available inbound frequency based on the combined status information and then select an inbound frequency from the at least one available inbound frequency.
  • the radio terminal memory 330 is configured to store data 335 and information related to the outbound frequency and inbound frequency 340, wherein the outbound frequency is monitored to receive status information of the plurality of base radios 105-1 through 105-n, and the plurality of inbound frequencies can be used to transmit data when determined to be available.
  • the radio terminal bus 345 is configured to enable communication between a radio terminal antenna 305, a radio terminal transceiver 310, a radio terminal communication interface 315, a radio terminal processor 325, and a radio terminal memory 330.
  • the radio terminal processor 325 includes one or more microprocessors, microcontrollers, Digital Signal Processors (DSPs), state machines, logic circuitry, or any other device or devices that process information based on operational or programming instructions. Such operational or programming instructions are stored in the radio terminal memory 330.
  • DSPs Digital Signal Processors
  • the radio terminal memory 330 may be volatile (such as random access memory (RAM)), nonvolatile (such as a hard disk, ROM, flash memory, etc.) and most often some combination of the two. Additionally, the radio terminal 110 may also have additional features/functionality. For example, the radio terminal 110 may also include additional storage (removable and/or non-removable) including, but not limited to, magnetic or optical disks or tape. Such additional storage may be removable storage and/or non-removable storage.
  • the radio terminal memory 330 can be an Integrated Circuit (IC) memory chip containing any form of Random- Access Memory(RAM) or Read-Only Memory (ROM), a floppy disk, a Compact Disk Read-Only Memory (CD- ROM), a hard disk drive, a Digital Video Disc (DVD), a flash memory card, external subscriber identity module (SIM) card or any other medium for storing digital information.
  • IC Integrated Circuit
  • RAM Random- Access Memory
  • ROM Read-Only Memory
  • CD- ROM Compact Disk Read-Only Memory
  • CD- ROM Compact Disk Read-Only Memory
  • DVD Digital Video Disc
  • SIM subscriber identity module
  • FIG. 4 is a flowchart illustrating a method 400 of operation of a plurality of base radios 105-1 through 105-n for communicating with one or more radio terminals 110-1 through 110-n in accordance with some embodiments.
  • a base radio for example 105-1 of the plurality of base radios 105-1 through 105-n is designated to transmit status information to the one or more radio terminals 110-1 through 110-n over an assigned outbound frequency.
  • the base radio 105-1 receives the status information from other base radios 105-2 through 105-n of the plurality of base radios 105-1 through 105-n.
  • the other base radios 105-2 through 105-n transmit their status information to the base radio 105-1 via a base radio wired interface 225.
  • the base radio 105-1 combines the status information related to a plurality of inbound frequencies, wherein each inbound frequency corresponds to one of the base radios 105-1 through 105-n.
  • the base radio 105-1 combines the status information, received from the other base radios 105-2 through 105-n, and its own status information.
  • the base radio 105-1 then transmits the combined status information over the outbound frequency to the one or more radio terminals 110-1 through 110-n.
  • the at least one base radio 105-2 of the plurality of base radios 105-1 through 105-n then transmits the data received from the one or more radio terminals 110-1 through 110-n to a server 115. Further, the data can be transmitted to the server 115 via the base radio wired interface 225 or via a base radio wireless interface 220.
  • the server 115 is a location server that maintains a database of location and other information pertaining to the one or more radio terminals 110-1 through 110-n for tracking the location of the one or more radio terminals 110-1 through 110-n.
  • a base radio 105 can transmit/receive status information while concurrently receiving the data from the one or more radio terminals 110-1 through 110-n.
  • CM13017 CM13017
  • FIG. 5 is a flowchart illustrating a method 500 of operation of a radio terminal 110 for communicating with a plurality of base radios 105-1 through 105-n in accordance with some embodiments.
  • the radio terminal 110 monitors an outbound frequency to receive status information from a base radio (for example 105- 1) of the plurality of base radios 105-1 through 105-n.
  • the status information provides information pertaining to a plurality of inbound frequency that can be used by the radio terminal 110 for transmitting data to the plurality of base radios 105-1 through 105-n.
  • the radio terminal 110 determines whether the combined status information is received.
  • the radio terminal 110 When it is determined that no combined status information is received, the radio terminal 110 returns to block 405 and continues to monitor the outbound frequency. When it is determined that the combined status information is received, then at block 515 the radio terminal 110 determines, based on the received status information, whether at least one inbound frequency is available to transmit the data.
  • the radio terminal 110 determines whether at least one inbound frequency is available. When it is determined that no inbound frequency is available, then the radio terminal 110 returns to block 505 and continues to monitor the outbound frequency. When at block 520 it is determined that at least one inbound frequency is available, then at block 525 the radio terminal 110 selects an available inbound frequency from the at least one available inbound frequency. At block 530, the radio terminal 110 transmits the location update data over the selected available inbound frequency to a corresponding base radio.
  • FIG. 6 is a signal flow diagram illustrating an exchange of signals between a plurality of base radios 105-1, 105-2, 105-3 and a radio terminal 110 in accordance with some embodiments.
  • FIG. 6 illustrates a base radio 105-1 receiving status information 605, 610 from other base radios 105-2 and 105-3, respectively.
  • the base radio 105-1 combines the status information 605, 610 to form operational activity statuses 615 and transmits the operational activity statuses 615 to the radio terminal 110 over the outbound frequency.
  • the operational activity statuses 615 include a busy or idle state of the other base radios 105-2, 105-3 determined from the status information 605, 610.
  • the base radio 105-1 can also include its own busy or idle state information in the operational CM13017 activity statuses 615 in order to receive data from the radio terminal 110 over its corresponding inbound frequency.
  • the radio terminal 110 tunes to and monitors the outbound frequency to receive the operational activity statuses 615 from the base radio 105-1.
  • the radio terminal 110 selects an available inbound frequency with an idle state determined based on the operational activity statuses 615.
  • the radio terminal 110 transmits the data over the selected available inbound frequency to a corresponding base radio (for example 105-2).
  • the present invention provides a method for communication of data between a plurality of base radios 105-1 through 105-n and one or more radio terminals 110-1 through 110-n.
  • each base radio uses an outbound frequency and an inbound frequency, i.e. the inbound frequency to receive data and the outbound frequency for transmitting status information.
  • the embodiments described above reduce the number of radio frequencies used for transmitting the status information by combining multiple outbound frequencies into a single outbound frequency.
  • the single outbound frequency is used to transmit the status information related to a plurality of inbound frequencies, to the one or more radio terminals 110-1 through 1 10-n. As such, this results in saving one frequency per base radio, which almost doubles the capacity of the communication system.
  • the capacity improvements for two base radios is 50%, for three base radios is 66%, for four base radios is 75% and so on.
  • the embodiments as described above can be used to for saving frequencies while retaining the same capacity. For example, for 10 base radios there are 10 inbound frequencies and 1 outbound frequency, and therefore the system uses only 11 frequencies.
  • the traditional system uses a total of 20 frequencies. As such, the method enables saving of 9 frequencies or 45% of frequencies.
  • the embodiments described above results in the one or more radio terminals 1 10-1 through 110-n being able to receive the statuses of the plurality of base radios 105-1 through 105-n over just one frequency, instead of having to monitor a plurality of frequencies.
  • Coupled as used herein is defined as connected, although not necessarily directly and not necessarily CM13017 mechanically.
  • a device or structure that is “configured” in a certain way is configured in at least that way, but may also be configured in ways that are not listed.

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

Abstract

La présente invention concerne un procédé facilitant la transmission de données dans un système de communication (100). Pendant le fonctionnement, une radio de base d'une pluralité de radios de base (105-n) combine des informations d'état correspondant à une pluralité de fréquences d'arrivée et transmet les informations d'état combinées sur une seule fréquence radio de départ. En outre, chaque fréquence de la pluralité de fréquences radio d'arrivée correspond à l'une des radios de la pluralité de radios de base. Ensuite, un ou plusieurs terminaux radio (110-n) surveillent la seule fréquence radio de départ pour recevoir les informations d'état combinées, déterminent au moins une fréquence radio d'entrée disponible parmi les fréquences de la pluralité de fréquences radio d'arrivée sur la base des informations d'état combinées reçues, sélectionnent une fréquence radio d'arrivée de la ou des fréquences d'arrivée disponibles, et transmettent les données à l'aide de la fréquence radio d'arrivée sélectionnée vers la radio de base correspondante.
PCT/US2010/056841 2009-12-10 2010-11-16 Procédé facilitant la transmission de données dans un système de communication Ceased WO2011071663A2 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
US12/635,225 2009-12-10
US12/635,225 US8254974B2 (en) 2009-12-10 2009-12-10 Method for facilitating transmission of data in a communication system

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WO2011071663A2 true WO2011071663A2 (fr) 2011-06-16
WO2011071663A3 WO2011071663A3 (fr) 2011-08-18

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US8767570B2 (en) * 2011-02-14 2014-07-01 Nokia Corporation Indicating status of radio resources in wireless network

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US6163698A (en) * 1998-05-04 2000-12-19 Motorola Link setup method for a narrowband cellular communication system
EP1234422A4 (fr) * 1999-11-29 2006-10-18 Golden Bridge Tech Inc Commande de puissance en boucle fermee pour des canaux communs de transport en liaison descendante
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NZ520650A (en) * 2002-08-08 2005-08-26 Tait Electronics Ltd Improvements relating to radio communication systems
JP2006054597A (ja) * 2004-08-10 2006-02-23 Ntt Docomo Inc スロット割当装置及びその方法
KR100875917B1 (ko) 2005-12-15 2008-12-26 한국전자통신연구원 중첩된 네트워크 이동성 망에서의 패킷 전송 경로 최적화를 위한 패킷 전송 및 방법
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JP5059591B2 (ja) * 2007-12-27 2012-10-24 京セラ株式会社 無線端末及び無線通信方法
JP4706879B2 (ja) * 2008-12-26 2011-06-22 日本電気株式会社 無線通信システム、基地局装置、およびチャネル割当方法

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WO2011071663A3 (fr) 2011-08-18
US8254974B2 (en) 2012-08-28

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