WO2015151138A1 - Système de communication sans fil, dispositif sans fil, procédé de communication sans fil et support lisible par ordinateur non transitoire - Google Patents

Système de communication sans fil, dispositif sans fil, procédé de communication sans fil et support lisible par ordinateur non transitoire Download PDF

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Publication number
WO2015151138A1
WO2015151138A1 PCT/JP2014/004720 JP2014004720W WO2015151138A1 WO 2015151138 A1 WO2015151138 A1 WO 2015151138A1 JP 2014004720 W JP2014004720 W JP 2014004720W WO 2015151138 A1 WO2015151138 A1 WO 2015151138A1
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Prior art keywords
information
wireless
wireless communication
communication system
wireless device
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PCT/JP2014/004720
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English (en)
Japanese (ja)
Inventor
至智 藁科
康則 二木
弘人 菅原
一志 村岡
健司 若藤
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日本電気株式会社
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Priority to JP2016511172A priority Critical patent/JPWO2015151138A1/ja
Publication of WO2015151138A1 publication Critical patent/WO2015151138A1/fr

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W48/00Access restriction; Network selection; Access point selection
    • H04W48/08Access restriction or access information delivery, e.g. discovery data delivery
    • H04W48/10Access restriction or access information delivery, e.g. discovery data delivery using broadcasted information
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W48/00Access restriction; Network selection; Access point selection
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W84/00Network topologies
    • H04W84/18Self-organising networks, e.g. ad-hoc networks or sensor networks
    • H04W84/20Master-slave selection or change arrangements
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W76/00Connection management
    • H04W76/10Connection setup
    • H04W76/14Direct-mode setup

Definitions

  • the present invention relates to a wireless communication system, a wireless device, a wireless communication method, and a wireless communication program that perform wireless communication.
  • a cognitive radio terminal is used by using a database having information on the frequency usage status of neighboring existing radio communication systems and a function of calculating available frequencies for each position and time.
  • a frequency selection method for dynamically assigning frequencies has been proposed.
  • the current position information 90 is notified to the database 80, and the allocation frequency 91 for the vehicle 70 and the usable range 92 of the allocation frequency 91 are acquired from the database 80.
  • the database 80 is a device that stores information on the frequency usage status and geography of the existing wireless communication system within the communication range 93 and calculates the available range 92 for each frequency that can be used at the current position of the vehicle.
  • Patent Document 2 describes that information on a channel selected by a frequency allocation device is distributed to each base station and another communication system.
  • Patent Document 3 describes that the receiver may have a database that stores frequency use information indicating the usage, wireless power standards, and the like.
  • Patent Document 4 describes setting a frequency use prohibition range for prohibiting use in communication in a radio communication system based on the frequency channel use situation in a satellite mobile communication system.
  • a database that stores information (white space information) for identifying an area where the frequency is currently available.
  • information white space information
  • the database for managing the white space of the radio communication system including the mobile terminal (radio device) is an essential configuration, there is a problem that it is difficult to easily configure the radio communication system. .
  • the present invention has been made in view of such problems, and an object thereof is to provide a wireless communication system, a wireless device, a wireless communication method, and a wireless communication program that can be realized with a simple configuration.
  • the wireless communication system is a wireless communication system including a plurality of wireless devices, and the first wireless device that constitutes the wireless communication system is a wireless communication system that includes other wireless devices that constitute the wireless communication system.
  • a first information acquisition unit that acquires first information about the frequency usage status, and a second information that generates second information about frequency usage in an area where the wireless communication system exists based on the acquired first information
  • An information generation unit and a second information distribution unit that distributes the generated second information to a second wireless device that constitutes the wireless communication system.
  • a second information acquisition unit that acquires the second information from the wireless device, and a second information holding unit that holds the acquired second information.
  • a radio device is a radio device included in a plurality of radio devices constituting a radio communication system, and acquires first information relating to a frequency usage status of other radio devices constituting the radio communication system. Based on the first information acquisition unit, the acquired first information, a second information generation unit that generates second information related to frequency use in an area where the wireless communication system exists, and the generated second information A second information distribution unit that distributes information to a second wireless device that constitutes the wireless communication system.
  • a wireless device is a wireless device included in a plurality of wireless devices constituting a wireless communication system, and the first wireless device constituting the wireless communication system is another wireless device constituting the wireless communication system.
  • a second information acquisition unit configured to acquire, from the first wireless device, second information related to frequency usage in an area where the wireless communication system exists, generated based on the first information related to the frequency usage state of the wireless device; And a second information holding unit for holding the acquired second information.
  • the wireless communication method is a wireless communication method in a wireless communication system including a plurality of wireless devices, and the first wireless device configuring the wireless communication system is configured to configure the wireless communication system.
  • the first information regarding the frequency usage status of the radio device is acquired, and based on the acquired first information, second information regarding the frequency usage in the area where the wireless communication system exists is generated, and the generated Distributing second information to a second wireless device constituting the wireless communication system, wherein the second wireless device acquires the second information from the first wireless device, and acquires the acquired second information. Two types of information are retained.
  • a wireless communication method is a wireless communication method in a wireless device included in a plurality of wireless devices constituting a wireless communication system, and relates to a frequency usage situation of other wireless devices constituting the wireless communication system.
  • Information is generated, based on the acquired first information, second information related to frequency use in an area where the wireless communication system exists is generated, and the generated second information is used as the wireless communication system. Is distributed to the second wireless device constituting the.
  • the wireless communication method according to the present invention is a wireless communication method in a wireless device included in a plurality of wireless devices constituting a wireless communication system, wherein the first wireless device constituting the wireless communication system is the wireless communication system.
  • the second information on the frequency use in the area where the wireless communication system exists is generated from the first information on the frequency use status of the other radios constituting the radio from the first radio, The acquired second information is held.
  • a wireless communication program is a wireless communication program for causing a wireless device included in a plurality of wireless devices constituting a wireless communication system to execute, and uses a frequency of another wireless device constituting the wireless communication system First information on the situation is acquired, and based on the acquired first information, second information on frequency use in an area where the wireless communication system exists is generated, and the generated second information is The data is distributed to a second wireless device constituting the wireless communication system.
  • a wireless communication program is a wireless communication program for causing a wireless device included in a plurality of wireless devices constituting a wireless communication system to execute, and the first wireless device configuring the wireless communication system includes: Second information relating to frequency usage in an area where the wireless communication system exists, generated based on first information relating to frequency usage status of other wireless devices constituting the wireless communication system, is used as the first wireless device. And holds the acquired second information.
  • the present invention it is possible to provide a wireless communication system, a wireless device, a wireless communication method, and a wireless communication program that can be realized with a simple configuration.
  • FIG. 1 It is a flowchart which shows the operation
  • FIG. 1 It is a flowchart which shows the operation
  • FIG. 18 shows a schematic configuration of the wireless communication system according to the embodiment.
  • the wireless communication system according to the embodiment includes a plurality of wireless devices including a first wireless device 10 and a second wireless device 20.
  • the first wireless device 10 includes a first information acquisition unit 11, a second information generation unit 12, and a second information distribution unit.
  • the 1st information acquisition part 11 acquires the 1st information regarding the frequency utilization condition of the other radio
  • the second information generation unit 12 generates second information related to frequency use in an area where the wireless communication system exists based on the acquired first information.
  • the second information distribution unit 13 distributes the generated second information to the second wireless device 20 configuring the wireless communication system.
  • the second wireless device 20 includes a second information acquisition unit 21 and a second information holding unit 22.
  • the second information acquisition unit 21 acquires second information from the first wireless device 10.
  • the second information holding unit 22 holds the acquired second information.
  • the first wireless device configuring the wireless communication system generates the second information regarding the frequency usage based on the first information regarding the frequency usage status of the other wireless devices, and the second wireless device To be delivered to. Further, the second radio device acquires and holds the second information. This eliminates the need for a database such as a related technique, so that a radio communication system such as cognitive radio can be realized with a simple configuration.
  • the database is always fixed, and if the mobile terminal moves out of the communication range of the database or the database is damaged, the mobile terminal There is a problem that the frequency cannot be selected.
  • the wireless communication system may be configured as follows. That is, one first wireless device out of a plurality of wireless devices including a mobile terminal constituting a wireless communication system is in use of radio waves including the position and frequency of another wireless device different from the first wireless device. Based on the information collection means for collecting the information and the radio wave usage status information, the available frequency and transmission power value for each position in the area where the wireless communication system exists are calculated, and a database for frequency selection is created. Database construction means for construction and information delivery means for delivering database information to other wireless devices are provided. In addition, the other radio device includes information holding means for holding the notified database information and database construction means for constructing a database for frequency selection. The entire wireless communication system shares a database, and each wireless device includes parameter selection means for selecting usage parameters such as a frequency to be used and transmission power based on the shared database.
  • the information sharing method between wireless devices simplifies an algorithm for generating an information transmission path by narrowing down a wireless device that collects information on radio wave usage statuses of a plurality of wireless devices to a single wireless device. While avoiding duplication and lack of information, a database with the same content information is shared by radios throughout the system.
  • a series of operations for sharing a database between wireless devices is referred to as “information sharing”.
  • the embodiment it becomes possible to select a frequency to be individually used by all the radios constituting the radio communication system, and once a database is constructed, one radio is set to another radio or database. Even if it becomes a state where it cannot communicate with, the frequency to be used can be selected.
  • FIG. 1 shows a system configuration of a wireless communication system according to the first embodiment of the present invention.
  • the wireless communication system includes one first wireless device 1 and one or more second wireless devices 2. Further, the wireless communication system includes the first information 3 acquired by the first wireless device 1 from the second wireless device 2 and the second information distributed by the first wireless device 1 to the second wireless device 2. Information 4 is included.
  • the first wireless device 1 is a wireless device selected from a plurality of wireless devices constituting the wireless communication system.
  • the reference for selection of the first wireless device 1 at this time may be, for example, the wireless device located at the center of the plurality of wireless devices as the first wireless device 1.
  • the second wireless device 2 is a wireless device to which the first wireless device 1 is to distribute the second information 4.
  • the first wireless device 1 and the second wireless device 2 are wireless devices having the same configuration, one of them is a wireless device that distributes the second information 4, and the other is a wireless device that receives the second information 4. It is good also as a machine.
  • the first information 3 is information on radio wave usage including the current position of the radios constituting the radio communication system and the frequency being used.
  • the second information 4 is, for example, a set of first information 3 collected by the first wireless device 1 or a secondary for each position including a frequency generated based on the first information 3. Information about available parameters.
  • wireless devices other than the first wireless device 1 and the second wireless device 2 may exist.
  • information related to the use of its own radio wave may be included in the first information 3 held by the surrounding first wireless device 1 or the second wireless device 2.
  • FIG. 2 shows a block diagram of the internal configuration of the first radio device 1 and the second radio device 2 according to the present embodiment.
  • the first wireless device 1 includes a second information generation unit 10, a wireless communication unit 1-1, a first information holding unit 1-2, a second information holding unit 1-3, and a parameter selection unit. 1-4.
  • the second wireless device 2 includes a wireless communication unit 2-1, a first information holding unit 2-2, a second information holding unit 2-3, and a parameter selection unit 2-4.
  • the wireless communication unit 1-1 and the wireless communication unit 2-1, the first information holding unit 1-2 and the first information holding unit 2-2, the second information holding unit 1-3 and the second information holding unit 2 ⁇ 3, the parameter selection unit 1-4 and the parameter selection unit 2-4 may be devices having the same function and the same configuration.
  • the wireless communication unit 1-1 or 2-1 is a device that performs general signal processing and signal transmission / reception in order to realize wireless communication.
  • the wireless communication unit 1-1 or 2-1 is a wireless communication unit that performs cognitive wireless communication in white space, and information necessary for performing cognitive wireless communication (first information 3 and second information 4). It may be a transmission / reception unit for transmitting / receiving.
  • the wireless communication unit 1-1 is used as an acquisition unit that acquires the first information 3, a distribution unit that distributes the second information 4, and the wireless communication unit 2-1 notifies the first information 3.
  • a notification unit, an acquisition unit that acquires the second information 4, a transfer unit that transfers the first information 3 or the second information 4, and the like may be used.
  • the first information holding unit 1-2 or 2-2 is a storage medium for holding information on the radio wave usage status including the frequency and transmission power value used by its own radio device, that is, the first information 3. .
  • the second information generation unit 10 generates the second information 4 based on the first information 3 sent from the second radio 2 and the first information 3 of the first radio 1.
  • the second information generation unit 10 operates only in the first wireless device 1 in the wireless communication system according to the present embodiment, but the second wireless device 2 is used as a backup for the first wireless device 1 and the like.
  • the other radio device may have the second information generation unit 10.
  • the second information holding unit 1-3 or 2-3 is distributed to the second information 4 generated by the second information generation unit 10 and the first wireless device 1 to the second wireless device 2.
  • This is a storage medium that holds the second information 4.
  • the parameter selection unit (parameter calculation unit) 1-4 or 2-4 selects (calculates) the parameters (available parameters) including the optimum frequency and transmission power value to be used based on the second information 4
  • FIG. 3 shows an example of the contents of the first information 3 according to the present embodiment.
  • the first information 3 includes at least information related to the position of the wireless device and the frequency used, and the second information related to the approximate usable frequency for each position using these two pieces of information. 4 can be generated.
  • the more detailed second information 4 can be generated as information such as antenna gain, filter performance, terrain model, and the like is included in the first information 3.
  • FIG. 4 and 5 show examples of the contents of the second information 4 according to this embodiment.
  • (X, y), f, W, and f BW shown in FIG. 4 are the coordinate position of the transmission source radio of the first information 3, the frequency being used, the transmission power value being used, and the being used. Each means a bandwidth.
  • (x, y) shown in FIG. 5 means a coordinate position
  • f, W, and f BW are frequencies, transmission power values, and bandwidths (white space) that can be used at the position (x, y). ) Respectively.
  • the second information 4 in FIG. 4 is a set of first information 3 of each wireless device constituting the wireless communication system according to the present embodiment. Since the first information 3 is information on the parameters currently being used, and the second information 4 that is a set of them is information on the parameters currently being used in various places in the system, parameter selection for each radio
  • the unit 1-4 or 2-4 converts the acquired second information 4 into parameters such as a frequency that can be secondarily used by each wireless device.
  • the second information 4 in FIG. 5 is map information in which an area in which the wireless communication system according to the present embodiment is operated is divided into pixels having a certain area, and secondary usable parameters are described for each pixel. .
  • the first wireless device 1 generates and holds the second information 4 based on the first information 3 collected in the second information generation unit 10 and distributes the second information 4 to the second wireless device 2.
  • the second information 4 in FIG. 5 is a parameter such as a frequency that can be used secondarily at the time of distribution, and thus it is not necessary for each radio device to perform conversion.
  • parameter information usable at each point may be distributed in any format other than the map format.
  • the second information 4 in FIG. 5 describes characteristics such as the secondary usage priority of each parameter based on the request of each wireless device including the viewpoint of avoiding interference problems and the data transfer rate. Good. Further, information on the secondary usable parameters in pixels not included in the movement range of the second wireless device 2 may be omitted, and the information amount of the second information 4 in FIG. 5 may be reduced. That is, at least the available information (or in-use information) at the current position (or surrounding area) of the second wireless device 2 is set as the second information 4, and further, the available information within the movement range of the second wireless device 2. (Or in-use information) may be the second information 4.
  • FIG. 4 shows that the amount of information of the second information 4 to be transmitted is small, and the time taken to distribute the information of the second information 4 may be shorter than that of FIG. 5, whereas FIG. Since only 1 performs calculation processing such as interference power estimation, the processing amount of the entire system may be smaller than that of FIG.
  • the first wireless device 1 may be classified as the highest wireless device of the network, and the second wireless device 2 may be classified as a wireless device belonging to the lower network.
  • a plurality of second radio devices 2 may be classified into upper and lower levels to form a further hierarchy.
  • the second wireless device 2 includes the first information 3 held by the second wireless device 2, the second wireless device 2 in a layer lower than itself, or another wireless device constituting the wireless communication system.
  • the first information 3 notified from the device is notified to the second wireless device 2 or the first wireless device 1 belonging to the layer one higher than itself, and the first wireless device 1
  • the second information 4 is generated based on the first information 3 collected from the second radio 2, the second information 4 is retained, and the second information 4 is moved to a layer one level lower than itself.
  • the second wireless device 2 is the first wireless device 1 or the second wireless device 2 that is one higher than itself.
  • the second information 4 distributed from the network is stored individually or simultaneously to at least one second wireless device 2 belonging to a layer one level lower than itself. It may be.
  • FIG. 6 is a sequence chart showing the operation of the wireless communication system according to the first embodiment of the present invention.
  • the first wireless device 1 collects the first information 3 from the second wireless device 2 (S11).
  • the first wireless device 1 generates second information 4 based on the collected first information 3 (S12), and distributes the generated second information 4 to the second wireless device 2. (S13).
  • the first radio device 1 and the second radio device 2 select parameters to be used based on the acquired second information 4 (S14), and start communication at each position (S15).
  • FIG 7 and 8 show the operation flow of information sharing between the first wireless device 1 and the second wireless device 2 according to the present embodiment, respectively.
  • the first wireless device 1 determines whether or not a condition for starting information collection is satisfied. If the condition is satisfied, the process proceeds to S102 (S101).
  • the condition for starting the information collection may be, for example, when a certain radio device moves or when the frequency is switched. For example, a condition may be set when a certain period of time has elapsed, or when any of the use frequency, transmission power, and position of the first or second radio device has changed by a certain value or more.
  • the first wireless device 1 transmits a signal for requesting the first information 3 by the number of the second wireless devices 2 (S102 to S104).
  • the process proceeds to S108 (S105 to S107).
  • the first wireless device 1 generates the second information 4 by the second information generation unit 10 based on the collected first information 3 (S108), and holds it in the second information holding unit 1-3. (S109).
  • the collected first information 3 is combined to generate the second information 4 as shown in FIG. 4, and parameters that can be used at each point are obtained based on the collected first information 3. 2nd information 4 like this is produced
  • the wireless device 1 distributes the second information 4 to all the second wireless devices 2 that are notification destinations (S110 to S112).
  • the above description is a case where the first wireless device 1 unicasts the second information 4 to the second wireless device 2, but the first wireless device 1 transmits to the second wireless device 2. Then, the second information 4 may be broadcast. In that case, since the second information 4 is delivered to the plurality of second wireless devices 2 in a lump, S110 and S112 are omitted. Moreover, you may mix unicast and broadcast. In such a case, for example, an optimal transmission method is selected according to the situation, for example, in a normal state, information is broadcast all at once, and unicast is performed to the other party to which the information is to be reliably notified.
  • the second wireless device 2 determines whether or not a signal requesting the first information 3 has been received from the first wireless device 1, and if received, proceeds to S202 (S201).
  • the second wireless device 2 notifies the first wireless device 1 of the first information 3 stored in the first information holding unit 2-2 (S202).
  • the second radio 2 acquires the second information 4 from the first radio 1 (S203) and holds it in the second information holding unit 2-3 (S204).
  • FIG. 9 shows an operation flow after information sharing between the first wireless device 1 and the second wireless device 2 according to the present embodiment.
  • the first wireless device 1 and the second wireless device 2 each set the frequency and transmission power value based on the second information 4 held by itself.
  • the parameter to be used from now on is selected (S301).
  • an available parameter is obtained based on the parameter being used included in the second information 4
  • the parameter used by itself is selected from the obtained parameter.
  • the parameter used by itself is selected from the available parameters included in the second information 4.
  • the first wireless device 1 and the second wireless device 2 update the first information 3 stored in the first information holding units 1-2 and 2-2 to the usage parameter value selected in S301. (S302).
  • the first wireless device 1 and the second wireless device 2 may confirm whether or not the usage parameters selected for the other wireless devices may be used before and after S302.
  • the other wireless device inquires the use parameter of the first wireless device 1 or the second wireless device 2 that is accessible in the vicinity.
  • the first wireless device 1 and the second wireless device 2 that are accessible in the vicinity may actively notify the other wireless devices of the usage parameters.
  • the wireless devices constituting the wireless communication system form a plurality of hierarchical network groups
  • the second wireless device 2 belonging to the network group that is several steps lower and the first wireless device that is the highest When 1 performs communication data is transmitted and received by relaying the second wireless device 2 belonging to the network group in the middle layer.
  • the first wireless device 1 or the second wireless device 2 belonging to the network group between the groups is relayed to transmit / receive data. .
  • each wireless device optimizes parameters such as frequency and transmission power value by judging its own database according to the current position without accessing a database located elsewhere. It can be done.
  • the ratio between the interference power from the wireless device B received by the wireless device A and the noise power of the wireless device A that is, the interference power-to-noise power ratio (INR) is below a certain value. No information about the wireless device B is required.
  • FIG. 10 shows a system configuration of a wireless communication system according to the second embodiment of the present invention.
  • the wireless communication system is a second wireless device including a first wireless device 1, a second wireless device 5, and a second wireless device 6. 2 are provided. Further, the wireless communication system includes first information 3, second information 41 held by the second wireless device 5, and second information 42 held by the second wireless device 6. .
  • the second information 41 and the second information 42 are second information whose contents change based on the position of the second wireless device 5 and the second wireless device 6 and the distance between the wireless devices or the respective transmission power. It is an example of information 4.
  • FIG. 11 shows a block diagram of the internal configuration of the first wireless device 1, the second wireless device 5, and the second wireless device 6 according to the present embodiment.
  • the internal configuration of the first radio device 1 according to the second embodiment is obtained by adding a notification range calculation unit 11 to the internal configuration of the first radio device 1 according to the first embodiment.
  • the second radio device 5 holds the second information 41 in the second information holding unit 5-3
  • the second radio device 6 holds the second information 42 in the second information holding unit 6-3. To do.
  • the second information holding unit 1-3, the second information holding unit 5-3, the second information holding unit 6-3, the parameter selection unit 1-4, the parameter selection unit 5-4, and the parameter selection unit 6-4 Devices having the same function and the same configuration may be used.
  • the notification range calculation unit 11 is provided between the second radio device 5 and the second radio device 6 derived from the result of interference power estimation performed by the second information generation unit 10 based on the collected first information 3.
  • the second information 4 is converted into the second information 41 and the second information 42 in accordance with the interference amount or distance and the respective transmission power.
  • the ratio of the interference power received by the second radio device 5 from the second radio device 6 and the noise power in the second radio device 5, that is, the interference power to noise power ratio (INR) is a certain value or less, for example, 0 dB or less.
  • the parameters that can be used for the second radio device 5 do not depend on the radio wave usage status at the position of the second radio device 6. That is, the first information 3 of the second radio device 6 is not required when the second radio device 5 selects the use parameter. Therefore, in this case, the second information 41 becomes the second information 4 that is not based on the first information 3 of the second radio device 6. The same applies to the second information 42.
  • FIG. 12 and FIG. 13 show examples of the second information 41 and the second information 42 when the second radio device 5 and the second radio device 6 are separated from each other such that, for example, INR becomes 0 dB or less.
  • the second information 41 and the second information 42 shown in FIGS. 12 and 13 are a set of the first information 3 of each wireless device constituting the wireless communication system according to the present embodiment, as in FIG. .
  • the second information 41 does not include the first information 3 of the second wireless device 6 whose wireless device ID is b
  • the second information 42 includes the second information 41 whose wireless device ID is a. It is shown that the first information 3 of the wireless device 5 is not included.
  • the second information 41 and the second information 42 having the same contents as the second information 4 shown in FIG. 5 may be generated.
  • the second information 41 is not based on the first information 3 of the second radio device 6, and similarly, the second information 42 is based on the first information 3 of the second radio device 5. Absent.
  • FIG. 14 is a sequence chart showing the operation of the wireless communication system according to the second embodiment of the present invention.
  • the first wireless device 1 collects the first information 3 from the second wireless device 5 and the second wireless device 6 (S21).
  • the first wireless device 1 generates the second information 4 based on the collected first information 3 (S22), and the generated second information 4 is used as the second wireless device 5 and the second information 4.
  • the first wireless device 1 selects information (parameters) related to the second wireless device included in the second information based on the distance between the second wireless devices or the reach of the transmission radio wave.
  • the first wireless device 1 distributes the second information 41 to the second wireless device 5 and the second information 42 to the second wireless device 6 (S24). Finally, the first wireless device 1, the second wireless device 5, and the second wireless device 6 select parameters to be used based on the acquired second information 41 or second information 42 (S25). Then, communication is started at each position (S26).
  • the information sharing operation flow of the first wireless device 1 according to the second embodiment is based on the first information 3 by the notification range calculation unit 11 between S109 and S110 in the operation flow shown in FIG.
  • the second information 4 is converted into the second information 41 or converted into the second information 42.
  • the operation flow of the first wireless device 1 according to the other second embodiment is the same as the operation flow of the first embodiment.
  • FIG. 15 shows an example of the operation flow of the first wireless device 1 when converting the second information 4 into the second information 41 or the second information 42.
  • the first wireless device 1 selects one wireless device A from the second wireless devices 2 after S109 in FIG. 7 (S401).
  • the subsequent steps S403 and S404 are performed for the number of the second wireless devices 2 (S402 to S405).
  • the first wireless device 1 calculates INR, which is a ratio between the interference power received by the wireless device A from the other second wireless device 2 and the noise power of the wireless device A (S403), and based on the value,
  • the second information 4 is converted or updated (S404).
  • the radio wave information that does not interfere with the second radio 2 is deleted as shown in FIGS. 12 and 13, and the second information 4 as shown in FIG.
  • the available parameters are recalculated except for information on radio waves that do not interfere with the second wireless device 2. This is performed for all the second wireless devices 2, and the process proceeds to S110 in FIG.
  • the conversion or update of the second information 4 in S404 may be based on distance or transmission power value instead of INR.
  • the operation flow for information sharing between the second wireless device 5 and the second wireless device 6 according to the second embodiment is different only in the second information 4 to be acquired, and the second information device according to the first embodiment. This is the same as the operation flow of the wireless device 2.
  • the effect of the second embodiment is that, in addition to the effect of the first embodiment, the information amount of the second information 4 notified to the second radio 2 is reduced, so that the database in the radio communication system is reduced. The time required for sharing can be shortened.
  • a third embodiment of the present invention will be described with reference to FIGS.
  • radio wave interference that may occur when at least two or more wireless devices perform communication by switching to a new frequency almost simultaneously is avoided by spectrum sensing.
  • the system configuration of the wireless communication system according to the third embodiment is the same as the configuration of the first or second embodiment.
  • FIG. 16 shows a block diagram of the internal configuration of the first radio device 1 and the second radio device 2 according to the present embodiment.
  • the internal configuration of the first radio device 1 and the second radio device 2 of the third embodiment shown in FIG. 16 is the same as that of the first radio device 1 and the second radio device 2 according to the first embodiment.
  • a spectrum sensing unit 1-5 and a spectrum sensing unit 2-5 are added to the configuration.
  • the internal configuration of the first radio device 1 according to the third embodiment may be the one in which the spectrum sensing unit 1-5 is added to the internal configuration of the first radio device 1 according to the second embodiment.
  • the spectrum sensing unit 1-5 and the spectrum sensing unit 2-5 may be devices having the same function and the same configuration.
  • the first information 3 may include a spectrum sensing result. That is, the second wireless device 2 performs spectrum sensing by the spectrum sensing unit 2-5, generates the first information 3 based on the spectrum sensing result, and uses the generated first information 3 as the first wireless device. 1 may be notified.
  • the sequence between the radios according to the third embodiment is the same as that of the first and second embodiments shown in FIGS.
  • the operations of the first radio device 1 and the second radio device 2 according to the third embodiment are substantially the same as those in the first embodiment shown in FIGS.
  • the operation flow after information sharing between the first wireless device 1 and the second wireless device 2 according to the third embodiment is based on spectrum sensing between S301 and S302 in FIG. 9, as shown in FIG. This is added with the determination of the presence or absence of an interference source (S501).
  • the spectrum sensing unit 1-5 or the spectrum sensing unit 2-5 changes the use parameter including at least frequency information to be used based on the selected (calculated) available parameter, performs spectrum sensing, and executes spectrum sensing.
  • the sensing when there is a wireless device that is an interference source in the vicinity, the process returns to S301, and a parameter used to avoid interference is selected again.
  • the first wireless device 1 or the second wireless device 2 notifies the other wireless device of the application for use of the desired use frequency before reselecting (changing) the use parameter, and the desired use. It may be confirmed whether the frequency is available. On the other hand, when there is no wireless device serving as an interference source in the vicinity, the first information 3 is updated (S302), and communication is started.
  • the effect of the third embodiment is shorter than the application for using the selected parameter for the other radio device shown in the explanation of the operation of the first embodiment. Thus, it is possible to avoid radio wave interference between the wireless devices immediately after changing the use parameter.
  • Each configuration in the above-described embodiment is configured by hardware and / or software, and may be configured by one piece of hardware or software, or may be configured by a plurality of pieces of hardware or software.
  • Each function (each process) of the wireless device may be realized by a computer having a CPU, a memory, and the like.
  • a wireless communication program for performing the wireless communication method according to the embodiment may be stored in the storage device, and each function may be realized by executing the wireless communication program stored in the storage device by the CPU.
  • Non-transitory computer readable media include various types of tangible storage media (tangible storage medium). Examples of non-transitory computer-readable media include magnetic recording media (eg flexible disks, magnetic tapes, hard disk drives), magneto-optical recording media (eg magneto-optical discs), CD-ROMs (Read Only Memory), CD-Rs, CD-R / W, semiconductor memory (for example, mask ROM, PROM (Programmable ROM), EPROM (Erasable ROM), flash ROM, RAM (random access memory)) are included.
  • the program may also be supplied to the computer by various types of temporary computer-readable media. Examples of transitory computer readable media include electrical signals, optical signals, and electromagnetic waves.
  • the temporary computer-readable medium can supply the program to the computer via a wired communication path such as an electric wire and an optical fiber, or a wireless communication path.
  • a wireless communication system including a plurality of wireless devices, A first wireless device belonging to the wireless communication system, Different from the first wireless device, obtaining first information on the frequency usage status of at least one other wireless device belonging to the wireless communication system; Based on the first information, generate second information related to frequency use in the area where the wireless communication system exists, Holding the second information and distributing to at least one second radio among the other radios; The second wireless device holds the second information.
  • Wireless communication system including a plurality of wireless devices, A first wireless device belonging to the wireless communication system, Different from the first wireless device, obtaining first information on the frequency usage status of at least one other wireless device belonging to the wireless communication system; Based on the first information, generate second information related to frequency use in the area where the wireless communication system exists, Holding the second information and distributing to at least one second radio among the other radios; The second wireless device holds the second information.
  • Wireless communication system including a plurality of wireless devices, A first wireless device belonging to the wireless communication system, Different from the first wireless device, obtaining first information on the frequency usage status

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

Abstract

La présente invention concerne un système de communication sans fil qui comprend une pluralité de dispositifs sans fil. Un premier dispositif sans fil (10) comporte : une unité d'acquisition de premières informations (11) qui acquiert de premières informations relatives à l'état d'utilisation de fréquence d'un autre dispositif sans fil ; une unité de génération de secondes informations (12) qui génère de secondes informations relatives à l'utilisation de fréquence, sur la base des premières informations acquises ; et une unité de distribution de secondes informations (13) qui distribue les secondes informations générées à un second dispositif sans fil. Un second dispositif sans fil (20) comporte une unité d'acquisition de secondes informations (21) qui acquiert les secondes informations provenant du premier dispositif sans fil (10), et une unité de rétention des secondes informations (22) qui retient les secondes informations acquises. Ainsi, un système de communication sans fil présentant une configuration simple peut être réalisé.
PCT/JP2014/004720 2014-03-31 2014-09-11 Système de communication sans fil, dispositif sans fil, procédé de communication sans fil et support lisible par ordinateur non transitoire WO2015151138A1 (fr)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2018012069A1 (fr) * 2016-07-12 2018-01-18 ソニー株式会社 Serveur de gestion, dispositif de communication, procédé et support d'enregistrement

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2011103573A (ja) * 2009-11-11 2011-05-26 Fujitsu Ltd 無線通信システム、端末装置、及び無線通信システムにおける無線通信方法
JP2012147090A (ja) * 2011-01-07 2012-08-02 Hitachi Ltd 無線通信システム、基地局、及び、サーバ
JP2012147216A (ja) * 2011-01-12 2012-08-02 National Institute Of Information & Communication Technology 管理装置
EP2680631A1 (fr) * 2011-02-22 2014-01-01 Sony Corporation Appareil et procédé de gestion d'antennes

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2011103573A (ja) * 2009-11-11 2011-05-26 Fujitsu Ltd 無線通信システム、端末装置、及び無線通信システムにおける無線通信方法
JP2012147090A (ja) * 2011-01-07 2012-08-02 Hitachi Ltd 無線通信システム、基地局、及び、サーバ
JP2012147216A (ja) * 2011-01-12 2012-08-02 National Institute Of Information & Communication Technology 管理装置
EP2680631A1 (fr) * 2011-02-22 2014-01-01 Sony Corporation Appareil et procédé de gestion d'antennes

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2018012069A1 (fr) * 2016-07-12 2018-01-18 ソニー株式会社 Serveur de gestion, dispositif de communication, procédé et support d'enregistrement
JPWO2018012069A1 (ja) * 2016-07-12 2019-04-25 ソニー株式会社 管理サーバ、通信装置、方法及び記録媒体
US11006372B2 (en) 2016-07-12 2021-05-11 Sony Corporation Management server, communication device, method and recording medium
JP7020409B2 (ja) 2016-07-12 2022-02-16 ソニーグループ株式会社 管理サーバ、方法及び記録媒体
US11570723B2 (en) 2016-07-12 2023-01-31 Sony Group Corporation Management server, communication device, method and recording medium

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