WO2013172195A1 - Wireless communication system, wireless communication device, and communication control method - Google Patents

Wireless communication system, wireless communication device, and communication control method Download PDF

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Publication number
WO2013172195A1
WO2013172195A1 PCT/JP2013/062569 JP2013062569W WO2013172195A1 WO 2013172195 A1 WO2013172195 A1 WO 2013172195A1 JP 2013062569 W JP2013062569 W JP 2013062569W WO 2013172195 A1 WO2013172195 A1 WO 2013172195A1
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WIPO (PCT)
Prior art keywords
wireless
wireless terminal
state
wireless communication
connection terminal
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PCT/JP2013/062569
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French (fr)
Japanese (ja)
Inventor
裕嗣 山本
憲一 村上
英史 持田
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住友電気工業株式会社
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Publication of WO2013172195A1 publication Critical patent/WO2013172195A1/en

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W84/00Network topologies
    • H04W84/18Self-organising networks, e.g. ad-hoc networks or sensor networks
    • H04W84/22Self-organising networks, e.g. ad-hoc networks or sensor networks with access to wired networks

Definitions

  • the present invention relates to a radio communication system, a radio communication apparatus, and a communication control method, and in particular, a radio communication system in which a plurality of radio terminal apparatuses can perform radio communication with each other, and a radio communication apparatus and communication control in the radio communication system. Regarding the method.
  • ad hoc network In an ad hoc network, personal computers, PDAs (Personal Digital Assistants), mobile phones, and the like can perform wireless communication with each other without going through a wireless base station device or an access point, and a network can be constructed at low cost.
  • PDAs Personal Digital Assistants
  • a network can be constructed at low cost.
  • IEICE Transactions_B_Vol.J89-B_No.6_pp.811-823 Shiro Sakata et al., 2006 (Non-patent Document 1)
  • the present invention has been made to solve the above-described problems, and an object of the present invention is to provide a connection between a wireless terminal device in a network in which a plurality of wireless terminal devices can perform wireless communication with each other and a device in another network. It is to provide a wireless communication system, a wireless communication apparatus, and a communication control method capable of performing good communication with each other.
  • a wireless communication system includes a plurality of wireless terminal devices capable of performing wireless communication with each other and one wireless device out of the plurality of wireless terminal devices.
  • a wireless communication device for relaying communication data transmitted and received between a device other than the plurality of wireless terminal devices and the plurality of wireless terminal devices by performing wireless communication with a connection terminal which is a terminal device; and Based on the comparison result by the state comparison unit for comparing the state of the connection terminal and the state of the other wireless terminal device and the comparison result by the state comparison unit, the connection terminal is newly selected from the plurality of wireless terminal devices.
  • a terminal selection unit for selecting.
  • a wireless communication system is a connection comprising a plurality of wireless terminal devices capable of performing wireless communication with each other and any one of the plurality of wireless terminal devices.
  • a state of the wireless communication device for relaying communication data transmitted and received between a device other than the plurality of wireless terminal devices and the plurality of wireless terminal devices, and the state of the connection terminal
  • a state determination unit for determining whether or not a predetermined condition is satisfied, and when the state determination unit determines that the predetermined condition is satisfied, the connection terminal is newly selected from the plurality of wireless terminal devices A terminal selection unit.
  • a wireless communication apparatus includes a connection terminal and a wireless terminal that are any one of a plurality of wireless terminal apparatuses capable of performing wireless communication with each other.
  • a wireless communication device for relaying communication data transmitted / received between a device other than the plurality of wireless terminal devices and the plurality of wireless terminal devices by performing communication, the status of the connection terminal and others
  • a state comparison unit for comparing the state of the wireless terminal device and a terminal selection for newly selecting the connection terminal from the plurality of wireless terminal devices based on a comparison result by the state comparison unit A part.
  • a wireless communication apparatus performs wireless communication with a connection terminal that is any one of a plurality of wireless terminal apparatuses capable of performing wireless communication with each other.
  • a wireless communication device for relaying communication data transmitted / received between a device other than the plurality of wireless terminal devices and the plurality of wireless terminal devices, and whether or not the state of the connection terminal satisfies a predetermined condition
  • a state determination unit for determining whether or not the state determination unit determines that the predetermined condition is satisfied, and a terminal selection unit for newly selecting the connection terminal from the plurality of wireless terminal devices, Is provided.
  • the wireless terminal device when performing communication data transmission / reception between itself and a device other than a plurality of other wireless terminal devices that can wirelessly communicate with itself, Any one of a plurality of other wireless terminal apparatuses is a wireless terminal apparatus that transmits and receives the communication data to and from the apparatus as a connection terminal that connects to the wireless communication terminal that relays the communication data.
  • a state determination unit for determining whether or not the state of the self satisfies a predetermined condition and a plurality of other wireless terminals when the self determines that the predetermined condition is satisfied
  • a terminal selection unit for newly selecting the connection terminal from the apparatus.
  • a communication control method includes a plurality of wireless terminal devices capable of performing wireless communication with each other, and one wireless device out of the plurality of wireless terminal devices.
  • a wireless communication device for relaying communication data transmitted and received between a device other than the plurality of wireless terminal devices and the plurality of wireless terminal devices by performing wireless communication with a connection terminal that is a terminal device A communication control method in a wireless communication system, the step of comparing the state of the connection terminal with the state of another wireless terminal device, and the connection terminal among the plurality of wireless terminal devices based on a comparison result A new selection step.
  • a communication control method comprising: a plurality of wireless terminal devices capable of performing wireless communication with each other; and a connection comprising any one of the plurality of wireless terminal devices.
  • Communication in a wireless communication system comprising a wireless communication device for relaying communication data transmitted and received between a device other than the plurality of wireless terminal devices and the plurality of wireless terminal devices by performing wireless communication with a terminal
  • the present invention can be realized as a semiconductor integrated circuit that realizes part or all of the wireless communication device and the wireless terminal device.
  • the present invention it is possible to satisfactorily perform communication between a wireless terminal device in a network in which a plurality of wireless terminal devices can perform wireless communication with each other and a device in another network.
  • any one of a plurality of wireless terminal devices in an ad hoc network is set as an external network connection terminal, the external network connection terminal is connected to a wireless base station device or an access point, and the devices are connected via these devices. To perform the communication.
  • the radio wave condition between the external network connection terminal and the radio base station apparatus or access point becomes worse, Communication becomes unstable. Further, for example, the transmission power of the radio signal from the external network connection terminal to the radio base station apparatus or the access point increases, so that the power consumption of the external network connection terminal increases.
  • a wireless communication system includes a plurality of wireless terminal devices capable of performing wireless communication with each other and a connection that is any one of the plurality of wireless terminal devices.
  • a wireless communication device for relaying communication data transmitted and received between a device other than the plurality of wireless terminal devices and the plurality of wireless terminal devices by performing wireless communication with the terminal, and a state of the connection terminal A terminal for newly selecting the connection terminal from among the plurality of wireless terminal devices based on a comparison result by the state comparison unit for comparing the state of the other wireless terminal device and the state comparison unit A selection unit.
  • connection terminal can be switched when the state of the connection terminal becomes worse than the state of other wireless terminal apparatuses, so the radio wave condition between the connection terminal and the wireless communication apparatus is good. To stabilize the communication.
  • the configuration for comparing with the state of the wireless terminal device other than the connection terminal for example, inappropriate connection when the state of the other wireless terminal device is worse even if the state of the connection terminal is bad It is possible to prevent terminal switching.
  • the wireless communication system further includes a state determination unit for determining whether or not a state of the connection terminal satisfies a predetermined condition, and the state selection unit includes the state determination unit. When it is determined that the predetermined condition is satisfied, the connection terminal is selected.
  • the state is a state of receiving a radio wave from the wireless communication device.
  • the state is a battery state.
  • a wireless communication system includes a plurality of wireless terminal devices capable of performing wireless communication with each other, and any one wireless terminal device among the plurality of wireless terminal devices.
  • a wireless communication device for relaying communication data transmitted and received between a device other than the plurality of wireless terminal devices and the plurality of wireless terminal devices by performing wireless communication with the connection terminal, and the connection terminal
  • a state determination unit for determining whether or not the state satisfies a predetermined condition; and when the state determination unit determines that the predetermined condition is satisfied, the connection terminal is newly selected from the plurality of wireless terminal devices.
  • a terminal selection unit for making a selection.
  • connection terminal when the state of the connection terminal deteriorates, the connection terminal can be switched, so that the radio wave state between the connection terminal and the wireless communication device is kept good and the communication is stabilized. Can do.
  • a wireless communication device is a connection that is any one of a plurality of wireless terminal devices capable of performing wireless communication with each other.
  • a wireless communication device for relaying communication data transmitted and received between a device other than the plurality of wireless terminal devices and the plurality of wireless terminal devices by performing wireless communication with a terminal, wherein the connection terminal In order to newly select the connection terminal from among the plurality of wireless terminal devices based on the comparison result by the state comparison unit for comparing the state and the state of the other wireless terminal device and the state comparison unit Terminal selection unit.
  • connection terminal can be switched when the state of the connection terminal becomes worse than the state of other wireless terminal apparatuses, so the radio wave condition between the connection terminal and the wireless communication apparatus is good. To stabilize the communication.
  • the configuration for comparing with the state of the wireless terminal device other than the connection terminal for example, inappropriate connection when the state of the other wireless terminal device is worse even if the state of the connection terminal is bad It is possible to prevent terminal switching.
  • a wireless communication apparatus performs wireless communication with a connection terminal that is any one of a plurality of wireless terminal apparatuses capable of performing wireless communication with each other.
  • a wireless communication device for relaying communication data transmitted and received between a device other than the plurality of wireless terminal devices and the plurality of wireless terminal devices, wherein the state of the connection terminal satisfies a predetermined condition
  • a state determination unit for determining whether or not the condition is satisfied, and a terminal for newly selecting the connection terminal from the plurality of wireless terminal devices when the state determination unit determines that the predetermined condition is satisfied
  • a selection unit for selecting the connection terminal from the plurality of wireless terminal devices when the state determination unit determines that the predetermined condition is satisfied.
  • connection terminal when the state of the connection terminal deteriorates, the connection terminal can be switched, so that the radio wave state between the connection terminal and the wireless communication device is kept good and the communication is stabilized. Can do.
  • a wireless terminal device performs transmission / reception of communication data between itself and a device other than a plurality of other wireless terminal devices capable of wireless communication with itself
  • a wireless terminal device that transmits / receives communication data to / from a device as a connection terminal that connects either one of itself or a plurality of other wireless terminal devices to a wireless communication terminal that relays communication data.
  • a state determination unit for determining whether or not its own condition satisfies a predetermined condition, and when it determines that the self satisfies a predetermined condition, A terminal selection unit for newly selecting a connection terminal from the inside.
  • the connection terminal when the self is a connection terminal, the connection terminal can be switched from the self to another wireless communication terminal when the state of the self deteriorates. It is possible to maintain a good radio wave condition and stabilize communication. In addition, it is possible to prevent the transmission power of the radio signal from the connection terminal to the wireless communication apparatus from increasing, and to prevent an increase in power consumption of the connection terminal.
  • a communication control method includes a plurality of wireless terminal devices capable of performing wireless communication with each other, and any one of the plurality of wireless terminal devices.
  • a wireless communication device for relaying communication data transmitted and received between a device other than the plurality of wireless terminal devices and the plurality of wireless terminal devices by performing wireless communication with a connection terminal which is one wireless terminal device A communication control method in a wireless communication system comprising: a step of comparing a state of the connection terminal with a state of another wireless terminal device; and from among the plurality of wireless terminal devices based on a comparison result Selecting a new connection terminal.
  • connection terminal can be switched when the state of the connection terminal becomes worse than the state of other wireless terminal apparatuses, so the radio wave condition between the connection terminal and the wireless communication apparatus is good. To stabilize the communication.
  • the configuration for comparing with the state of the wireless terminal device other than the connection terminal for example, inappropriate connection when the state of the other wireless terminal device is worse even if the state of the connection terminal is bad It is possible to prevent terminal switching.
  • a communication control method includes a plurality of wireless terminal devices capable of performing wireless communication with each other and any one of the plurality of wireless terminal devices.
  • Wireless communication comprising: a wireless communication device for relaying communication data transmitted and received between a device other than the plurality of wireless terminal devices and the plurality of wireless terminal devices by performing wireless communication with the connection terminal
  • a communication control method in a system comprising: determining whether a state of the connection terminal satisfies a predetermined condition; and determining that the connection condition is satisfied from the plurality of wireless terminal devices when determining that the predetermined condition is satisfied Selecting a new terminal.
  • connection terminal when the state of the connection terminal deteriorates, the connection terminal can be switched, so that the radio wave state between the connection terminal and the wireless communication device is kept good and the communication is stabilized. Can do.
  • FIG. 1 is a diagram showing a configuration of a radio communication system according to an embodiment of the present invention.
  • a wireless communication system 301 includes an access point (AP) (wireless communication apparatus) 101 and wireless terminal apparatuses 202A, 202B, 202C, 202D.
  • AP access point
  • wireless terminal apparatuses 202A, 202B, 202C, and 202D may be referred to as a wireless terminal device 202.
  • the wireless terminal devices 202A, 202B, 202C, 202D and the access point 101 perform wireless communication in accordance with a wireless LAN standard defined by, for example, IEEE 802.11.
  • the wireless terminal devices 202A, 202B, 202C, and 202D can perform wireless communication with each other, and constitute an ad hoc network 401.
  • an ad hoc network 401 In FIG. 1, four wireless terminal devices in the ad hoc network 401 are representatively shown, but a smaller number or a larger number of wireless terminal devices may be provided.
  • the wireless terminal device 202A when the wireless terminal device 202A is an external network connection terminal, the wireless terminal device 202A transmits a wireless signal received from another wireless terminal device 202 to the access point 101, and The wireless signal received from the access point 101 is transmitted to another wireless terminal device 202.
  • the connection terminal is, for example, a wireless terminal device that has first started up among a plurality of wireless terminal devices.
  • the connection terminal may be, for example, a wireless terminal device having the largest received power from the access point 101 among the plurality of wireless terminal devices in a state where all of the plurality of wireless terminal devices are up.
  • the connection terminal may be a wireless terminal device having the largest remaining battery capacity among the plurality of wireless terminal devices in a state where all of the plurality of wireless terminal devices are up.
  • the access point 101 performs wireless communication with a network connection terminal that is any one of the plurality of wireless terminal devices 202, whereby the access point 101 communicates with a device other than the plurality of wireless terminal devices 202 and the plurality of wireless devices.
  • the communication data transmitted / received to / from the terminal device 202 is relayed. More specifically, the access point 101 transmits communication data included in a radio signal received from an external network connection terminal to the IP network 402, and converts the communication data received from the IP network 402 into a radio signal to be externally transmitted. Send to the network connection terminal.
  • the access point 101 is not limited to the IP network 402, and may be any configuration that relays communication data transmitted and received between a device outside the ad hoc network 401 and the wireless terminal device 202.
  • the wireless terminal device 202 can communicate with the access point 101 via another wireless terminal device 202 even when the wireless terminal device 202 exists at a position away from the access point 101.
  • the wireless terminal devices 202A, 202B, 202C, and 202D perform wireless communication with each other, thereby preventing processing of the access point 101 and an increase in communication traffic.
  • FIG. 2 is a diagram illustrating a state in which an external network connection terminal moves in the wireless communication system according to the embodiment of the present invention.
  • radio terminal apparatus 202A which is an external network connection terminal
  • the radio wave condition between the external network connection terminal and access point 101 changes due to distance, radio wave interference, and the like. Deteriorate. Then, delay and disconnection occur in communication between the wireless terminal devices 202A, 202B, 202C, and 202D and the IP network 402.
  • the wireless terminal device 202A and the access point 101 increase the transmission power of a wireless signal, for example, in order to improve the communication, the power consumption of the wireless terminal device 202A and the access point 101 increases.
  • a stable network is constructed by dynamically switching an external network connection terminal serving as a starting point according to a communication state.
  • FIG. 3 is a diagram showing dynamic switching of external network connection terminals in the wireless communication system according to the embodiment of the present invention.
  • wireless terminal device 202A which is an external network connection terminal
  • wireless terminal device 202A moves and moves away from access point 101
  • wireless terminal device 202A it exists at a position closer to access point 101 than wireless terminal device 202A.
  • a wireless terminal device 202B having a good communication state with the point 101 is newly selected as an external network connection terminal.
  • FIG. 4 is a diagram showing the configuration of the access point according to the embodiment of the present invention.
  • access point 101 includes an antenna 91, a circulator 92, a wireless reception unit 93, a wireless transmission unit 94, a signal processing unit 95, and a control unit 98.
  • the signal processing unit 95 includes a reception signal processing unit 96 and a transmission signal processing unit 97.
  • the signal processing unit 95 and the control unit 98 are realized by a CPU (Central Processing Unit) or a DSP (Digital Signal Processor).
  • the circulator 92 outputs the radio signal from the radio terminal device 202 received by the antenna 91 to the radio reception unit 93 and outputs the radio signal received from the radio transmission unit 94 to the antenna 91.
  • the radio reception unit 93 converts the frequency of the radio signal received from the circulator 92 into a baseband signal or IF (Intermediate Frequency) signal, converts the frequency converted signal into a digital signal, and outputs the digital signal to the reception signal processing unit 96.
  • IF Intermediate Frequency
  • the reception signal processing unit 96 performs predetermined signal processing on the digital signal received from the wireless reception unit 93, converts a part or all of the digital signal after the signal processing into a predetermined frame format, and converts it into the IP network 402. Send to.
  • the transmission signal processing unit 97 performs predetermined signal processing on communication data obtained by converting communication data received from the IP network 402 into a predetermined frame format or communication data generated by itself, and wirelessly transmits the digital signal after the signal processing.
  • the data is output to the transmission unit 94.
  • the wireless transmission unit 94 converts the digital signal received from the transmission signal processing unit 97 into an analog signal, converts the frequency of the converted analog signal into a wireless signal, and outputs the converted signal to the circulator 92.
  • the control unit 98 exchanges various types of information with each unit in the access point 101 and the IP network 402.
  • FIG. 5 is a diagram showing the configuration of the wireless terminal apparatus according to the embodiment of the present invention.
  • wireless terminal apparatus 202 includes antenna 81, circulator 82, wireless receiver 83, wireless transmitter 84, signal processor 85, controller 88, and input / output unit 89.
  • the signal processing unit 85 includes a reception signal processing unit 86 and a transmission signal processing unit 87.
  • the signal processing unit 85 and the control unit 88 are realized by a CPU (Central Processing Unit), a DSP (Digital Signal Processor), or the like.
  • the circulator 82 outputs the radio signal received from the antenna 81 from the access point 101 to the radio reception unit 83 and outputs the radio signal received from the radio transmission unit 84 to the antenna 81.
  • the radio reception unit 83 frequency-converts the radio signal received from the circulator 82 into a baseband signal or IF (Intermediate Frequency) signal, converts the frequency-converted signal into a digital signal, and outputs the digital signal to the reception signal processing unit 86.
  • IF Intermediate Frequency
  • the reception signal processing unit 86 performs predetermined signal processing on the digital signal received from the wireless reception unit 83, and outputs a part or all of the digital signal after the signal processing to the control unit 88.
  • the control unit 88 converts the digital signal received from the reception signal processing unit 86 into, for example, audio data and video data, and converts it into an analog signal as necessary. And the control part 88 outputs to the input-output part 89 containing a speaker, a microphone, a display, a key input device, etc. Further, the control unit 88 receives, for example, voice data and a control signal for controlling the wireless terminal device 202 received by the key input device from the input / output unit 89. Control unit 88 performs predetermined signal processing on the audio data and control signal received from input / output unit 89 to generate communication data, and outputs the communication data to transmission signal processing unit 87.
  • the transmission signal processing unit 87 performs predetermined signal processing on the communication data received from the control unit 88 or communication data generated by itself, and outputs the digital signal after this signal processing to the wireless transmission unit 84.
  • the wireless transmission unit 84 converts the digital signal received from the transmission signal processing unit 87 into an analog signal, converts the frequency of the converted analog signal into a wireless signal, and outputs it to the circulator 82.
  • FIG. 6 is a diagram showing a configuration of a control unit in the wireless terminal device or the access point according to the embodiment of the present invention.
  • control unit 88 or control unit 98 includes a terminal state acquisition unit 11, a state comparison unit 12, a state determination unit 13, and a terminal selection unit 14.
  • the terminal state acquisition unit 11 acquires the state of each wireless terminal device 202 in the ad hoc network 401. Specifically, the terminal state acquisition unit 11 acquires, for example, a reception state of radio waves from the access point 101 in the wireless terminal device 202 or acquires a battery state of the wireless terminal device 202.
  • the state comparison unit 12 compares the state of the network connection terminal acquired by the terminal state acquisition unit 11 with the state of the other wireless terminal device 202.
  • the terminal selection unit 14 newly selects a network connection terminal from the plurality of wireless terminal devices 202 in the ad hoc network 401 based on the comparison result by the state comparison unit 12.
  • the state determination unit 13 determines whether the state of the network connection terminal acquired by the terminal state acquisition unit 11 satisfies a predetermined condition. For example, the terminal selection unit 14 selects a network connection terminal when the state determination unit 13 determines that the predetermined condition is satisfied.
  • the wireless terminal device and the access point in the wireless communication system according to the embodiment of the present invention read and execute a program including each step of the following sequences from a memory (not shown).
  • This program can be installed externally.
  • the installed program is distributed in a state stored in a recording medium, for example.
  • FIG. 7 is a diagram showing an example of a sequence of the switching process of the external network connection terminal in the wireless communication system according to the embodiment of the present invention.
  • wireless terminal apparatus 202A which is an external network connection terminal, and access point 101 are communicating by transmitting and receiving wireless signals (step S11)
  • wireless terminal apparatus 202A is a wireless terminal.
  • a reception radio wave information request is transmitted to apparatus 202B.
  • the wireless terminal device 202A transmits a received radio wave information request periodically or when a predetermined condition is satisfied (step S12).
  • the wireless terminal device 202B receives the received radio wave information request from the wireless terminal device 202A, and transmits, for example, received radio wave information indicating the received power of the radio signal from the access point 101 to the wireless terminal device 202A (Ste S13).
  • the wireless terminal device 202A transmits a received radio wave information request to a wireless terminal device 202 other than the wireless terminal device 202B, and acquires the received radio wave information.
  • wireless terminal apparatuses determine the radio wave state of each radio
  • FIG. Specifically, for example, if the difference between the received power of the wireless signal from the access point 101 and the received power of the other wireless terminal device 202 is equal to or greater than a predetermined threshold, the wireless terminal device 202A It is determined that the network connection terminal should be switched from itself to another wireless terminal device 202 (step S14).
  • “the difference between the received power in itself and the received power in another wireless terminal device 202” corresponds to a difference obtained by subtracting the received power in itself from the received power in the other wireless terminal device 202. .
  • the wireless terminal device 202A determines that the received power in the other wireless terminal device 202 is larger than the received power in itself and that the difference between the received power in the other wireless terminal device 202 and the received power in itself is a predetermined value. If it is equal to or greater than the threshold, it is determined that the connected terminal should be switched. Note that the wireless terminal device 202A may determine that the connected terminal should be switched when the received power in the other wireless terminal device 202 becomes larger than the received power in itself. Here, when the absolute value of the difference obtained by subtracting the received power in the other wireless terminal device 202 from the received power in itself is equal to or greater than a predetermined threshold, the wireless terminal device 202A is transferred to the other wireless terminal device 202. You may make it judge that it should switch.
  • the wireless terminal device 202A selects, for example, the wireless terminal device 202B having the maximum received power as a new external network connection terminal (step S15), and transmits a connection instruction to the wireless terminal device 202B (step S16). .
  • the wireless terminal device 202B receives a connection instruction from the wireless terminal device 202A, performs connection processing with the access point 101 as described later (step S17), and thereafter operates as an external network connection terminal.
  • step S18 the wireless terminal device 202A and the access point 101 perform a process of disconnecting communication connection with each other.
  • FIG. 8 is a diagram showing an example of switching processing of the external network connection terminal in the wireless communication system according to the embodiment of the present invention.
  • the radio wave condition between radio terminal apparatus 202A which is an external network connection terminal, and access point 101 is good
  • the radio wave condition between radio terminal apparatus 202B and access point 101 is normal.
  • the radio wave condition between the wireless terminal device 202C and the access point 101 is poor.
  • the wireless terminal device 202A moves and moves away from the access point 101, the radio wave state between the wireless terminal device 202A and the access point 101 deteriorates. Then, the wireless terminal device 202A selects the wireless terminal device 202B having the best radio wave state as a new external network connection terminal, and thereafter, the wireless terminal device 202B operates as the external network connection terminal.
  • state determination unit 13 determines whether or not the reception state of radio wave from access point 101 at wireless terminal apparatus 202A satisfies a predetermined condition (a state where the radio wave state is bad).
  • FIG. 9 is a diagram showing an exemplary sequence of switching processing of external network connection terminals in the wireless communication system according to the embodiment of the present invention.
  • wireless terminal apparatus 202A which is an external network connection terminal, and access point 101 are communicating by transmitting and receiving wireless signals (step S21)
  • wireless terminal apparatus 202A is a wireless terminal.
  • a battery information request is transmitted to the device 202B.
  • the wireless terminal device 202A transmits a battery information request periodically or when a predetermined condition is satisfied (step S22).
  • the wireless terminal device 202B receives the battery information request from the wireless terminal device 202A and transmits the battery information to the wireless terminal device 202A.
  • the wireless terminal device 202A transmits a battery information request to the wireless terminal devices 202 other than the wireless terminal device 202B, for example, and acquires battery information.
  • This battery information indicates, for example, a state where the battery of the wireless terminal device 202 is being charged, a state where the remaining amount of the battery is greater than or equal to a threshold, or a state where the remaining amount of the battery is less than the threshold (step S23). .
  • wireless terminal apparatuses determine the battery remaining charge of each radio
  • “the difference between the remaining battery level of the own wireless terminal device 202 and the remaining battery level of the other wireless terminal device 202” is a difference obtained by subtracting the remaining battery level of the battery from the remaining wireless terminal device 202. Equivalent to.
  • step S24 the wireless terminal device 202A determines that the remaining battery level of the other wireless terminal device 202 is greater than its own battery level and the remaining battery level of the other wireless terminal device 202 and the remaining battery level of its own. If the difference is greater than or equal to a predetermined threshold, it is determined that the connected terminal should be switched. Note that the wireless terminal device 202A may determine that the connection terminal should be switched when the remaining battery level of the other wireless terminal device 202 is greater than its own battery level.
  • the wireless terminal device 202A You may make it judge that it should switch to.
  • the wireless terminal device 202A selects, for example, the wireless terminal device 202B having the maximum remaining battery level as a new external network connection terminal (step S25), and transmits a connection instruction to the wireless terminal device 202B (step S26). .
  • the wireless terminal device 202B receives a connection instruction from the wireless terminal device 202A, performs connection processing with the access point 101 as described later (step S27), and thereafter operates as an external network connection terminal.
  • step S28 the wireless terminal device 202A and the access point 101 perform a process of disconnecting communication connection with each other.
  • FIG. 10 is a diagram showing an example of switching processing of the external network connection terminal in the wireless communication system according to the embodiment of the present invention.
  • the remaining battery level of wireless terminal device 202A which is an external network connection terminal
  • the remaining battery level of wireless terminal device 202B is high
  • the remaining battery level of wireless terminal device 202C is low.
  • the wireless terminal device 202A maintains a state where it is an external network connection terminal because the difference between the remaining battery level and the remaining wireless terminal device 202 is small.
  • the wireless terminal device 202A selects the wireless terminal device 202B with the largest remaining battery level as a new external network connection terminal.
  • the device 202B operates as an external network connection terminal.
  • the state determination unit 13 determines whether or not the remaining battery level of the wireless terminal device 202A satisfies a predetermined condition (small level).
  • FIG. 11 is a diagram showing an exemplary sequence of connection processing (passive scan) between a wireless terminal device and an access point in the wireless communication system according to the embodiment of the present invention.
  • access point 101 transmits a beacon that is broadcast information.
  • the ESSID Extended Service Set Identifier
  • the access point 101 included in the beacon is broadcast (step S31).
  • the wireless terminal device 202 performs a beacon reception operation for a certain period of time, compares the ESSID included in the beacon with the ESSID set for itself, and searches for an access point that matches the ESSID set for itself (step S32). ).
  • the wireless terminal device 202 transmits authentication information (Authentication) to the access point 101 (step S33).
  • the access point 101 receives the authentication information from the wireless terminal device 202, transmits ACK to the wireless terminal device 202 (step S34), and transmits authentication information to the wireless terminal device 202 (step S35).
  • the wireless terminal device 202 receives the authentication information from the access point 101, transmits ACK to the access point 101 (step S36), and transmits a communication establishment request (Association Request) to the access point 101 (step S36). S37).
  • the access point 101 receives a communication establishment request from the wireless terminal device 202, transmits an ACK to the wireless terminal device 202 (step S38), and transmits a communication establishment response (Association Response) to the wireless terminal device 202. (Step S39).
  • the wireless terminal device 202 receives a communication establishment response from the access point 101 and transmits ACK to the access point 101 (step S40).
  • the wireless terminal device 202 and the access point 101 start transmission / reception of data frames (step S41).
  • FIG. 12 is a diagram showing an exemplary sequence of connection processing (active can) between a wireless terminal device and an access point in the wireless communication system according to the embodiment of the present invention.
  • access point 101 transmits a connection request when a beacon that is broadcast information cannot be received within a predetermined time (step S50).
  • the ESSID set in the wireless terminal device 202 included in the connection request is broadcast as the ESSID that the wireless terminal device 202 desires to connect (step S51).
  • the access point 101 receives a connection request from the wireless terminal device 202, and when the ESSID included in the connection request matches its own ESSID, transmits a connection response to the wireless terminal device 202 (step S52).
  • the wireless terminal device 202 transmits authentication information (Authentication) to the access point 101 (step S53).
  • the access point 101 receives the authentication information from the wireless terminal device 202, transmits ACK to the wireless terminal device 202 (step S54), and transmits authentication information to the wireless terminal device 202 (step S55).
  • the wireless terminal device 202 receives the authentication information from the access point 101, transmits an ACK to the access point 101 (step S56), and transmits a communication establishment request (Association Request) to the access point 101 (step S56). S57).
  • the access point 101 receives a communication establishment request from the wireless terminal device 202, transmits an ACK to the wireless terminal device 202 (step S58), and transmits a communication establishment response (Association Response) to the wireless terminal device 202. (Step S59).
  • the wireless terminal device 202 receives a communication establishment response from the access point 101, and transmits ACK to the access point 101 (step S60).
  • step S61 when the communication connection between the wireless terminal device 202 and the access point 101 is established, the wireless terminal device 202 and the access point 101 start transmission / reception of data frames (step S61).
  • the wireless terminal device 202 is configured to determine whether to switch the external network connection terminal based on the comparison result between its own state and the state of the other wireless terminal device 202.
  • the present invention is not limited to this. Absent.
  • the wireless terminal device 202 may be configured to determine whether to switch the external network connection terminal based on its own state without comparing with the state of the other wireless terminal device 202.
  • the state determination unit 13 determines whether the state of the network connection terminal satisfies a predetermined condition. Then, when the state determination unit 13 determines that the predetermined condition is satisfied, the terminal selection unit 14 newly selects a network connection terminal from the plurality of wireless terminal devices 202 in the ad hoc network 401.
  • FIG. 13 is a diagram showing an example of a sequence of the switching process of the external network connection terminal in the wireless communication system according to the embodiment of the present invention.
  • wireless terminal apparatus 202A in a state where wireless terminal apparatus 202A, which is an external network connection terminal, and access point 101 are communicating by transmitting and receiving wireless signals (step S81), first, wireless terminal apparatus 202A has its own Determine the radio wave condition. Specifically, for example, the wireless terminal device 202A switches the external network connection terminal from itself to another wireless terminal device 202 when the received power of the wireless signal from the access point 101 is less than a predetermined threshold. It is determined that it should be (step S82).
  • the wireless terminal device 202A follows a predetermined standard or randomly selects another wireless terminal device 202 in the ad hoc network 401, here, the wireless terminal device 202B as a new external network connection terminal (step S83).
  • the connection instruction is transmitted to the wireless terminal device 202B (step S84).
  • the wireless terminal device 202B receives a connection instruction from the wireless terminal device 202A, performs connection processing with the access point 101 as described above (step S85), and thereafter operates as an external network connection terminal.
  • the wireless terminal device 202A and the access point 101 perform processing for disconnecting the communication connection with each other (step S86).
  • the wireless terminal device 202 is configured to perform switching processing of the external network connection terminal.
  • the present invention is not limited to this, and the access point 101 is configured to perform switching processing of the external network connection terminal. May be.
  • an operation in which the access point 101 performs the process of switching the external network connection terminal based on the radio wave state will be described as an example.
  • FIG. 14 is a diagram showing an example of a sequence of the switching process of the external network connection terminal in the wireless communication system according to the embodiment of the present invention.
  • step S71 in a state where wireless terminal apparatus 202A, which is an external network connection terminal, and access point 101 are communicating by transmitting and receiving wireless signals (step S71), access point 101 first receives received radio wave information.
  • the request is transmitted to the wireless terminal device 202A, and is transmitted to the wireless terminal device 202B via the wireless terminal device 202A.
  • the access point 101 transmits a received radio wave information request periodically or when a predetermined condition is satisfied (step S72).
  • the wireless terminal device 202B receives the received radio wave information request from the access point 101 and, for example, receives the received radio wave information indicating the received power of the radio signal from the access point 101 via the wireless terminal device 202A. (Step S73).
  • the access point 101 transmits a received radio wave information request to the radio terminal device 202 other than the radio terminal device 202B via the radio terminal device 202A, and acquires the received radio wave information.
  • the access point 101 determines the radio wave state of each wireless terminal device 202 based on the received radio wave information received from each wireless terminal device 202. Specifically, for example, when the access point 101 has a difference between the received power of the wireless signal from the access point 101 at the wireless terminal device 202A and the received power at the other wireless terminal device 202 is greater than or equal to a predetermined threshold. Then, it is determined that the external network connection terminal should be switched from the wireless terminal device 202A to another wireless terminal device 202 (step S74).
  • the access point 101 selects, for example, the wireless terminal device 202B having the maximum received power as a new external network connection terminal (step S75), and transmits a connection instruction to the wireless terminal device 202B via the wireless terminal device 202A. (Step S76).
  • the wireless terminal device 202B receives a connection instruction from the access point 101, performs connection processing with the access point 101 as described above (step S77), and thereafter operates as an external network connection terminal.
  • step S78 the wireless terminal device 202A and the access point 101 perform a process of disconnecting communication connection with each other.
  • any one of a plurality of wireless terminal devices in an ad hoc network is set as an external network connection terminal, and the external network connection terminal is connected to a wireless base station device or an access point.
  • the external network connection terminal moves away from the radio base station apparatus or access point in the configuration for performing the communication, the radio wave condition between the external network connection terminal and the radio base station apparatus or access point deteriorates, becomes unstable. Further, for example, the transmission power of the radio signal from the external network connection terminal to the radio base station apparatus or the access point increases, so that the power consumption of the external network connection terminal increases.
  • the state comparison unit 12 compares the state of the network connection terminal with the state of the other wireless terminal device 202. Then, the terminal selection unit 14 newly selects a network connection terminal from among the plurality of wireless terminal devices 202 in the ad hoc network 401 based on the comparison result by the state comparison unit 12.
  • the external network connection terminal can be switched when the state of the external network connection terminal becomes worse than the state of other wireless terminal devices. It is possible to maintain a good radio wave condition between them and stabilize communication. Further, it is possible to prevent the transmission power of the radio signal from the external network connection terminal to the access point 101 from increasing, and to prevent the power consumption of the external network connection terminal from increasing.
  • the state of the other wireless terminal device 202 when the state of the other wireless terminal device 202 is worse, for example, even if the state of the external network connection terminal is bad, the state of the other wireless terminal device 202 is worse even if the state of the external network connection terminal is bad. In addition, it is possible to prevent inappropriate switching of the external network connection terminal.
  • state determination unit 13 determines whether the state of the network connection terminal satisfies a predetermined condition.
  • the terminal selection unit 14 selects a network connection terminal when the state determination unit 13 determines that the predetermined condition is satisfied.
  • the above state is a state of receiving radio waves from the access point 101.
  • the above state is the state of the battery in the wireless terminal device 202.
  • state determination unit 13 determines whether the state of the network connection terminal satisfies a predetermined condition. Then, when the state determination unit 13 determines that the predetermined condition is satisfied, the terminal selection unit 14 newly selects a network connection terminal from the plurality of wireless terminal devices 202 in the ad hoc network 401.
  • the external network connection terminal can be switched when the state of the external network connection terminal is deteriorated, so that the radio wave condition between the external network connection terminal and the access point 101 is kept good and communication is performed. Can be stabilized. Further, it is possible to prevent the transmission power of the radio signal from the external network connection terminal to the access point 101 from increasing, and to prevent the power consumption of the external network connection terminal from increasing.
  • the external network connection terminal is selected based on the radio wave state or battery state of the wireless terminal device 202.
  • the configuration may be such that an external network connection terminal is selected according to the communication priority, such as the type of application executed in the wireless terminal device 202. Further, for example, based on whether the wireless terminal device 202 selects a power saving mode in which a power saving operation is performed or a normal mode in which a power saving operation is not performed, specifically, the external mode in which the normal mode is selected.
  • the configuration may be such that the network connection terminal is preferentially selected.
  • the wireless terminal device 202 or the access point 101 may be configured to select an external network connection terminal based on a combination of a radio wave state and a battery state of the wireless terminal device 202.
  • the state comparison unit 12 converts the received power of the wireless signal from the access point 101 in the wireless terminal device 202 into an evaluation value, and converts the remaining battery level of the wireless terminal device 202 into an evaluation value. The total value of the evaluation values is calculated for each wireless terminal device 202 and compared. Then, the terminal selection unit 14 newly selects a network connection terminal from among the plurality of wireless terminal devices 202 in the ad hoc network 401 based on the comparison result of the total values of the wireless terminal devices 202 by the state comparison unit 12.
  • the state comparison unit may be configured to compare the states of all wireless terminal devices 202 in the ad hoc network 401 with the states of the external network connection terminals.
  • the configuration may be such that the state of some of the wireless terminal devices 202 in the ad hoc network 401 is compared with the state of the external network connection terminal.
  • the access point 101 is provided as a relay device between the ad hoc network 401 and the IP network 402.
  • the present invention is not limited to this.
  • a configuration in which a femto base station is provided instead of the access point may be employed.
  • a femto base station is defined as follows.
  • the radius of the femto cell (Femto Cell) formed by this small base station (hereinafter also referred to as a femto base station) is as small as about 10 meters, the femto base station It may be used in places such as indoors and underground malls where it is out of service area and it is difficult to install macro base stations.
  • a femto base station is a customer premises apparatus that connects a wireless terminal device connected via a wireless interface to a mobile communication carrier network using an IP backhaul.
  • the femto base station in the closed access mode provides a service only to the related CSG (Closed Subscriber Group) members.
  • the hybrid mode femto base station also provides services to the associated CSG members and CSG non-members.
  • the femto base station in the open access mode operates as a normal base station.
  • Such a 3GPP definition may also be applied to the wireless communication system according to the embodiment of the present invention.
  • the macro base station and the pico base station are radio base station devices that are under the control of the operator and that can communicate with the radio base station device that has contracted with the operator. Further, it is considered that the macro base station and the pico base station are basically not turned off.
  • the femto base station is a radio base station apparatus that is mainly installed in an individual or corporate building and may move or be turned off depending on user circumstances.
  • the femto base station operates in an access mode of open / hybrid / closed.
  • the closed access mode only registered members (terminals) can be connected.
  • the service is provided only to registered members.
  • the hybrid mode the service is provided to both registered members and unregistered members, that is, non-members.
  • the open access mode the same operation as that of the macro base station and the pico base station is performed.

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Abstract

A wireless communication system (301) is provided with a plurality of wireless terminal devices (202) capable of wireless communication with each other, and a wireless communication device (101) for relaying communication data which are transmitted and received between the plurality of wireless terminal devices (202) and a device other than the plurality of wireless terminal devices (202) by performing wireless communication with a connection terminal which is any one wireless terminal device (202) of the plurality of wireless terminal devices (202). The wireless communication system (301) is provided with a state comparison unit (12) for comparing the state of the connection terminal and the state of another wireless terminal device (202), and a terminal selection unit (14) for selecting a new connection terminal from among the plurality of wireless terminal devices (202) on the basis of the result of comparison by the state comparison unit (12).

Description

無線通信システム、無線通信装置および通信制御方法Wireless communication system, wireless communication apparatus, and communication control method
 本発明は、無線通信システム、無線通信装置および通信制御方法に関し、特に、複数の無線端末装置が互いに無線通信を行なうことが可能な無線通信システム、ならびに当該無線通信システムにおける無線通信装置および通信制御方法に関する。 The present invention relates to a radio communication system, a radio communication apparatus, and a communication control method, and in particular, a radio communication system in which a plurality of radio terminal apparatuses can perform radio communication with each other, and a radio communication apparatus and communication control in the radio communication system. Regarding the method.
 アドホックネットワークでは、パーソナルコンピュータ、PDA(Personal Digital Assistants)および携帯電話等が無線基地局装置およびアクセスポイント等を介することなく互いに無線通信を行なうことが可能であり、安価にネットワークを構築することが可能である(たとえば、「アドホックネットワークと無線LANメッシュネットワーク」、電子情報通信学会論文誌_B_Vol.J89-B_No.6_pp.811-823、阪田史朗 他著、2006年発行(非特許文献1)参照)。 In an ad hoc network, personal computers, PDAs (Personal Digital Assistants), mobile phones, and the like can perform wireless communication with each other without going through a wireless base station device or an access point, and a network can be constructed at low cost. (For example, refer to "Ad hoc network and wireless LAN mesh network", IEICE Transactions_B_Vol.J89-B_No.6_pp.811-823, Shiro Sakata et al., 2006 (Non-patent Document 1)) .
 複数の無線端末装置が互いに無線通信を行なうことが可能なネットワークにおいて、無線端末装置と他のネットワークにおける装置との間での通信を良好に行なうことができない虞がある。 In a network in which a plurality of wireless terminal devices can perform wireless communication with each other, there is a possibility that communication between the wireless terminal device and devices in other networks cannot be performed satisfactorily.
 この発明は、上述の課題を解決するためになされたもので、その目的は、複数の無線端末装置が互いに無線通信を行なうことが可能なネットワークにおける無線端末装置と他のネットワークにおける装置との間での通信を良好に行なうことが可能な無線通信システム、無線通信装置および通信制御方法を提供することである。 The present invention has been made to solve the above-described problems, and an object of the present invention is to provide a connection between a wireless terminal device in a network in which a plurality of wireless terminal devices can perform wireless communication with each other and a device in another network. It is to provide a wireless communication system, a wireless communication apparatus, and a communication control method capable of performing good communication with each other.
 上記課題を解決するために、この発明のある局面に係わる無線通信システムは、互いに無線通信を行なうことが可能な複数の無線端末装置と、上記複数の無線端末装置のうちのいずれか1つの無線端末装置である接続端末と無線通信を行なうことにより、上記複数の無線端末装置以外の装置と上記複数の無線端末装置との間で送受信される通信データを中継するための無線通信装置と、上記接続端末の状態と他の上記無線端末装置の状態とを比較するための状態比較部と、上記状態比較部による比較結果に基づいて、上記複数の無線端末装置の中から上記接続端末を新たに選択するための端末選択部とを備える。 In order to solve the above-described problem, a wireless communication system according to an aspect of the present invention includes a plurality of wireless terminal devices capable of performing wireless communication with each other and one wireless device out of the plurality of wireless terminal devices. A wireless communication device for relaying communication data transmitted and received between a device other than the plurality of wireless terminal devices and the plurality of wireless terminal devices by performing wireless communication with a connection terminal which is a terminal device; and Based on the comparison result by the state comparison unit for comparing the state of the connection terminal and the state of the other wireless terminal device and the comparison result by the state comparison unit, the connection terminal is newly selected from the plurality of wireless terminal devices. A terminal selection unit for selecting.
 また、この発明の別の局面に係わる無線通信システムは、互いに無線通信を行なうことが可能な複数の無線端末装置と、上記複数の無線端末装置のうちのいずれか1つの無線端末装置である接続端末と無線通信を行なうことにより、上記複数の無線端末装置以外の装置と上記複数の無線端末装置との間で送受信される通信データを中継するための無線通信装置と、上記接続端末の状態が所定条件を満たすか否かを判断するための状態判断部と、上記状態判断部が上記所定条件を満たすと判断した場合に、上記複数の無線端末装置の中から上記接続端末を新たに選択するための端末選択部とを備える。 A wireless communication system according to another aspect of the present invention is a connection comprising a plurality of wireless terminal devices capable of performing wireless communication with each other and any one of the plurality of wireless terminal devices. By performing wireless communication with the terminal, a state of the wireless communication device for relaying communication data transmitted and received between a device other than the plurality of wireless terminal devices and the plurality of wireless terminal devices, and the state of the connection terminal A state determination unit for determining whether or not a predetermined condition is satisfied, and when the state determination unit determines that the predetermined condition is satisfied, the connection terminal is newly selected from the plurality of wireless terminal devices A terminal selection unit.
 上記課題を解決するために、この発明のある局面に係わる無線通信装置は、互いに無線通信を行なうことが可能な複数の無線端末装置のうちのいずれか1つの無線端末装置である接続端末と無線通信を行なうことにより、上記複数の無線端末装置以外の装置と上記複数の無線端末装置との間で送受信される通信データを中継するための無線通信装置であって、上記接続端末の状態と他の上記無線端末装置の状態とを比較するための状態比較部と、上記状態比較部による比較結果に基づいて、上記複数の無線端末装置の中から上記接続端末を新たに選択するための端末選択部とを備える。 In order to solve the above-described problem, a wireless communication apparatus according to an aspect of the present invention includes a connection terminal and a wireless terminal that are any one of a plurality of wireless terminal apparatuses capable of performing wireless communication with each other. A wireless communication device for relaying communication data transmitted / received between a device other than the plurality of wireless terminal devices and the plurality of wireless terminal devices by performing communication, the status of the connection terminal and others A state comparison unit for comparing the state of the wireless terminal device and a terminal selection for newly selecting the connection terminal from the plurality of wireless terminal devices based on a comparison result by the state comparison unit A part.
 また、この発明の別の局面に係わる無線通信装置は、互いに無線通信を行なうことが可能な複数の無線端末装置のうちのいずれか1つの無線端末装置である接続端末と無線通信を行なうことにより、上記複数の無線端末装置以外の装置と上記複数の無線端末装置との間で送受信される通信データを中継するための無線通信装置であって、上記接続端末の状態が所定条件を満たすか否かを判断するための状態判断部と、上記状態判断部が上記所定条件を満たすと判断した場合に、上記複数の無線端末装置の中から上記接続端末を新たに選択するための端末選択部とを備える。 A wireless communication apparatus according to another aspect of the present invention performs wireless communication with a connection terminal that is any one of a plurality of wireless terminal apparatuses capable of performing wireless communication with each other. A wireless communication device for relaying communication data transmitted / received between a device other than the plurality of wireless terminal devices and the plurality of wireless terminal devices, and whether or not the state of the connection terminal satisfies a predetermined condition A state determination unit for determining whether or not the state determination unit determines that the predetermined condition is satisfied, and a terminal selection unit for newly selecting the connection terminal from the plurality of wireless terminal devices, Is provided.
 また、この発明の別の局面に係わる無線端末装置は、自己および自己が無線通信可能な他の複数の無線端末装置以外の装置と自己との間で通信データの送受信を行う場合、自己または前記他の複数の無線端末装置のいずれか1つを、前記通信データを中継する無線通信端末との接続を行う接続端末として、前記装置との間で前記通信データの送受信を行う無線端末装置であって、自己が接続端末である場合、自己の状態が所定条件を満たすか否かを判断するための状態判断部と、自己が前記所定条件を満たすと判断した場合に、他の複数の無線端末装置の中から前記接続端末を新たに選択するための端末選択部とを備える。 In addition, the wireless terminal device according to another aspect of the present invention, when performing communication data transmission / reception between itself and a device other than a plurality of other wireless terminal devices that can wirelessly communicate with itself, Any one of a plurality of other wireless terminal apparatuses is a wireless terminal apparatus that transmits and receives the communication data to and from the apparatus as a connection terminal that connects to the wireless communication terminal that relays the communication data. When the self is a connected terminal, a state determination unit for determining whether or not the state of the self satisfies a predetermined condition and a plurality of other wireless terminals when the self determines that the predetermined condition is satisfied A terminal selection unit for newly selecting the connection terminal from the apparatus.
 上記課題を解決するために、この発明のある局面に係わる通信制御方法は、互いに無線通信を行なうことが可能な複数の無線端末装置と、上記複数の無線端末装置のうちのいずれか1つの無線端末装置である接続端末と無線通信を行なうことにより、上記複数の無線端末装置以外の装置と上記複数の無線端末装置との間で送受信される通信データを中継するための無線通信装置とを備える無線通信システムにおける通信制御方法であって、上記接続端末の状態と他の上記無線端末装置の状態とを比較するステップと、比較結果に基づいて、上記複数の無線端末装置の中から上記接続端末を新たに選択するステップとを含む。 In order to solve the above-described problem, a communication control method according to an aspect of the present invention includes a plurality of wireless terminal devices capable of performing wireless communication with each other, and one wireless device out of the plurality of wireless terminal devices. A wireless communication device for relaying communication data transmitted and received between a device other than the plurality of wireless terminal devices and the plurality of wireless terminal devices by performing wireless communication with a connection terminal that is a terminal device A communication control method in a wireless communication system, the step of comparing the state of the connection terminal with the state of another wireless terminal device, and the connection terminal among the plurality of wireless terminal devices based on a comparison result A new selection step.
 また、この発明の別の局面に係わる通信制御方法は、互いに無線通信を行なうことが可能な複数の無線端末装置と、上記複数の無線端末装置のうちのいずれか1つの無線端末装置である接続端末と無線通信を行なうことにより、上記複数の無線端末装置以外の装置と上記複数の無線端末装置との間で送受信される通信データを中継するための無線通信装置とを備える無線通信システムにおける通信制御方法であって、上記接続端末の状態が所定条件を満たすか否かを判断するステップと、上記所定条件を満たすと判断した場合に、上記複数の無線端末装置の中から上記接続端末を新たに選択するステップとを含む。 According to another aspect of the present invention, there is provided a communication control method comprising: a plurality of wireless terminal devices capable of performing wireless communication with each other; and a connection comprising any one of the plurality of wireless terminal devices. Communication in a wireless communication system comprising a wireless communication device for relaying communication data transmitted and received between a device other than the plurality of wireless terminal devices and the plurality of wireless terminal devices by performing wireless communication with a terminal A method of determining whether or not the state of the connection terminal satisfies a predetermined condition, and when determining that the predetermined condition is satisfied, the connection terminal is newly selected from the plurality of wireless terminal devices. Selecting.
 なお、本発明は、無線通信装置および無線端末装置の一部または全部を実現する半導体集積回路として実現することができる。 It should be noted that the present invention can be realized as a semiconductor integrated circuit that realizes part or all of the wireless communication device and the wireless terminal device.
 本発明によれば、複数の無線端末装置が互いに無線通信を行なうことが可能なネットワークにおける無線端末装置と他のネットワークにおける装置との間での通信を良好に行なうことができる。 According to the present invention, it is possible to satisfactorily perform communication between a wireless terminal device in a network in which a plurality of wireless terminal devices can perform wireless communication with each other and a device in another network.
本発明の実施の形態に係る無線通信システムの構成を示す図である。It is a figure which shows the structure of the radio | wireless communications system which concerns on embodiment of this invention. 本発明の実施の形態に係る無線通信システムにおいて外部ネットワーク接続端末が移動する様子を示す図である。It is a figure which shows a mode that an external network connection terminal moves in the radio | wireless communications system which concerns on embodiment of this invention. 本発明の実施の形態に係る無線通信システムにおける外部ネットワーク接続端末の動的切り替えを示す図である。It is a figure which shows the dynamic switching of the external network connection terminal in the radio | wireless communications system which concerns on embodiment of this invention. 本発明の実施の形態に係るアクセスポイントの構成を示す図である。It is a figure which shows the structure of the access point which concerns on embodiment of this invention. 本発明の実施の形態に係る無線端末装置の構成を示す図である。It is a figure which shows the structure of the radio | wireless terminal apparatus which concerns on embodiment of this invention. 本発明の実施の形態に係る無線端末装置またはアクセスポイントにおける制御部の構成を示す図である。It is a figure which shows the structure of the control part in the radio | wireless terminal apparatus or access point which concerns on embodiment of this invention. 本発明の実施の形態に係る無線通信システムにおける外部ネットワーク接続端末の切り替え処理のシーケンスの一例を示す図である。It is a figure which shows an example of the sequence of the switching process of the external network connection terminal in the radio | wireless communications system which concerns on embodiment of this invention. 本発明の実施の形態に係る無線通信システムにおける外部ネットワーク接続端末の切り替え処理の一例を示す図である。It is a figure which shows an example of the switching process of the external network connection terminal in the radio | wireless communications system which concerns on embodiment of this invention. 本発明の実施の形態に係る無線通信システムにおける外部ネットワーク接続端末の切り替え処理のシーケンスの一例を示す図である。It is a figure which shows an example of the sequence of the switching process of the external network connection terminal in the radio | wireless communications system which concerns on embodiment of this invention. 本発明の実施の形態に係る無線通信システムにおける外部ネットワーク接続端末の切り替え処理の一例を示す図である。It is a figure which shows an example of the switching process of the external network connection terminal in the radio | wireless communications system which concerns on embodiment of this invention. 本発明の実施の形態に係る無線通信システムにおける無線端末装置とアクセスポイントとの接続処理(パッシブスキャン)のシーケンスの一例を示す図である。It is a figure which shows an example of the sequence of the connection process (passive scan) with the radio | wireless terminal apparatus and access point in the radio | wireless communications system which concerns on embodiment of this invention. 本発明の実施の形態に係る無線通信システムにおける無線端末装置とアクセスポイントとの接続処理(アクティブキャン)のシーケンスの一例を示す図である。It is a figure which shows an example of the sequence of the connection process (active can) of the radio | wireless terminal apparatus and access point in the radio | wireless communications system which concerns on embodiment of this invention. 本発明の実施の形態に係る無線通信システムにおける外部ネットワーク接続端末の切り替え処理のシーケンスの一例を示す図である。It is a figure which shows an example of the sequence of the switching process of the external network connection terminal in the radio | wireless communications system which concerns on embodiment of this invention. 本発明の実施の形態に係る無線通信システムにおける外部ネットワーク接続端末の切り替え処理のシーケンスの一例を示す図である。It is a figure which shows an example of the sequence of the switching process of the external network connection terminal in the radio | wireless communications system which concerns on embodiment of this invention.
[1.本願発明の実施形態の説明]
 アドホックネットワークにおける無線端末装置とインターネット等の外部ネットワークにおける装置との間で通信を行なう方法として、たとえば、以下のような方法が考えられる。
[1. Description of Embodiment of Present Invention]
As a method for communicating between a wireless terminal device in an ad hoc network and a device in an external network such as the Internet, for example, the following method can be considered.
 すなわち、アドホックネットワークにおける複数の無線端末装置のうちのいずれか1つの無線端末装置を外部ネットワーク接続端末とし、この外部ネットワーク接続端末と無線基地局装置またはアクセスポイントとを接続し、これらの装置を介して当該通信を行なう。 That is, any one of a plurality of wireless terminal devices in an ad hoc network is set as an external network connection terminal, the external network connection terminal is connected to a wireless base station device or an access point, and the devices are connected via these devices. To perform the communication.
 しかしながら、上記のような方法では、外部ネットワーク接続端末が移動して無線基地局装置またはアクセスポイントから離れると、外部ネットワーク接続端末と無線基地局装置またはアクセスポイントとの間の電波状態が悪くなり、通信が不安定となってしまう。
 また、たとえば外部ネットワーク接続端末から無線基地局装置またはアクセスポイントへの無線信号の送信電力が大きくなることから、外部ネットワーク接続端末の消費電力が増大してしまう。
However, in the method as described above, when the external network connection terminal moves and moves away from the radio base station apparatus or access point, the radio wave condition between the external network connection terminal and the radio base station apparatus or access point becomes worse, Communication becomes unstable.
Further, for example, the transmission power of the radio signal from the external network connection terminal to the radio base station apparatus or the access point increases, so that the power consumption of the external network connection terminal increases.
 本願発明は、上記課題を解決するためになされたものである。以下、本願発明の実施形態の内容を(1)~(10)に列記して説明する。
(1)この発明のある局面に係わる無線通信システムは、互いに無線通信を行なうことが可能な複数の無線端末装置と、上記複数の無線端末装置のうちのいずれか1つの無線端末装置である接続端末と無線通信を行なうことにより、上記複数の無線端末装置以外の装置と上記複数の無線端末装置との間で送受信される通信データを中継するための無線通信装置と、上記接続端末の状態と他の上記無線端末装置の状態とを比較するための状態比較部と、上記状態比較部による比較結果に基づいて、上記複数の無線端末装置の中から上記接続端末を新たに選択するための端末選択部とを備える。
The present invention has been made to solve the above problems. The contents of the embodiments of the present invention will be described below by listing them in (1) to (10).
(1) A wireless communication system according to an aspect of the present invention includes a plurality of wireless terminal devices capable of performing wireless communication with each other and a connection that is any one of the plurality of wireless terminal devices. A wireless communication device for relaying communication data transmitted and received between a device other than the plurality of wireless terminal devices and the plurality of wireless terminal devices by performing wireless communication with the terminal, and a state of the connection terminal A terminal for newly selecting the connection terminal from among the plurality of wireless terminal devices based on a comparison result by the state comparison unit for comparing the state of the other wireless terminal device and the state comparison unit A selection unit.
 このような構成により、接続端末の状態が他の無線端末装置の状態と比べて悪くなった場合に、接続端末を切り替えることができるため、接続端末と無線通信装置との間の電波状態を良好に保ち、通信の安定化を図ることができる。また、接続端末から無線通信装置への無線信号の送信電力が大きくなることを防ぎ、接続端末の消費電力の増大を防ぐことができる。したがって、複数の無線端末装置が互いに無線通信を行なうことが可能なネットワークにおける無線端末装置と他のネットワークにおける装置との間での通信を良好に行なうことができる。また、接続端末以外の他の無線端末装置の状態との比較を行なう構成により、たとえば接続端末の状態が悪くても、他の無線端末装置の状態の方がさらに悪い場合に、不適切な接続端末の切り替えが行われることを防ぐことができる。 With such a configuration, the connection terminal can be switched when the state of the connection terminal becomes worse than the state of other wireless terminal apparatuses, so the radio wave condition between the connection terminal and the wireless communication apparatus is good. To stabilize the communication. In addition, it is possible to prevent the transmission power of the radio signal from the connection terminal to the wireless communication apparatus from increasing, and to prevent an increase in power consumption of the connection terminal. Therefore, it is possible to satisfactorily perform communication between a wireless terminal device in a network in which a plurality of wireless terminal devices can perform wireless communication with each other and devices in other networks. In addition, the configuration for comparing with the state of the wireless terminal device other than the connection terminal, for example, inappropriate connection when the state of the other wireless terminal device is worse even if the state of the connection terminal is bad It is possible to prevent terminal switching.
(2)好ましくは、上記無線通信システムは、さらに、上記接続端末の状態が所定条件を満たすか否かを判断するための状態判断部を備え、上記端末選択部は、上記状態判断部が上記所定条件を満たすと判断した場合に、上記接続端末の選択を行なう。 (2) Preferably, the wireless communication system further includes a state determination unit for determining whether or not a state of the connection terminal satisfies a predetermined condition, and the state selection unit includes the state determination unit. When it is determined that the predetermined condition is satisfied, the connection terminal is selected.
 このような構成により、接続端末の状態がある程度良い場合に、接続端末の切り替えが生じることを防ぐことができるため、接続端末の切り替えが頻繁に生じて通信が不安定になることを防ぐことができる。 With such a configuration, when the state of the connected terminal is good to some extent, it is possible to prevent the connected terminal from being switched, and thus preventing frequent switching of the connected terminal and unstable communication. it can.
(3)好ましくは、上記状態は、上記無線通信装置からの電波の受信状態である。 (3) Preferably, the state is a state of receiving a radio wave from the wireless communication device.
 このような構成により、無線通信装置との通信状態が良好な無線端末装置を接続端末として適切に選択することができる。 With this configuration, it is possible to appropriately select a wireless terminal device having a good communication state with the wireless communication device as a connection terminal.
(4)好ましくは、上記状態は、バッテリーの状態である。 (4) Preferably, the state is a battery state.
 このような構成により、無線端末装置が接続端末としての動作により電力を消費し、特定の無線端末装置のバッテリー切れが生じやすくなることを防ぐことができ、アドホックネットワークにおける通信を安定して継続させることができる。 With such a configuration, it is possible to prevent the wireless terminal device from consuming electric power due to the operation as a connection terminal, and the battery of a specific wireless terminal device is not likely to run out. Thus, communication in an ad hoc network can be continued stably. be able to.
(5)また、この発明の別の局面に係わる無線通信システムは、互いに無線通信を行なうことが可能な複数の無線端末装置と、上記複数の無線端末装置のうちのいずれか1つの無線端末装置である接続端末と無線通信を行なうことにより、上記複数の無線端末装置以外の装置と上記複数の無線端末装置との間で送受信される通信データを中継するための無線通信装置と、上記接続端末の状態が所定条件を満たすか否かを判断するための状態判断部と、上記状態判断部が上記所定条件を満たすと判断した場合に、上記複数の無線端末装置の中から上記接続端末を新たに選択するための端末選択部とを備える。 (5) A wireless communication system according to another aspect of the present invention includes a plurality of wireless terminal devices capable of performing wireless communication with each other, and any one wireless terminal device among the plurality of wireless terminal devices. A wireless communication device for relaying communication data transmitted and received between a device other than the plurality of wireless terminal devices and the plurality of wireless terminal devices by performing wireless communication with the connection terminal, and the connection terminal A state determination unit for determining whether or not the state satisfies a predetermined condition; and when the state determination unit determines that the predetermined condition is satisfied, the connection terminal is newly selected from the plurality of wireless terminal devices. And a terminal selection unit for making a selection.
 このような構成により、接続端末の状態が悪くなった場合に、接続端末を切り替えることができるため、接続端末と無線通信装置との間の電波状態を良好に保ち、通信の安定化を図ることができる。また、接続端末から無線通信装置への無線信号の送信電力が大きくなることを防ぎ、接続端末の消費電力の増大を防ぐことができる。 With such a configuration, when the state of the connection terminal deteriorates, the connection terminal can be switched, so that the radio wave state between the connection terminal and the wireless communication device is kept good and the communication is stabilized. Can do. In addition, it is possible to prevent the transmission power of the radio signal from the connection terminal to the wireless communication apparatus from increasing, and to prevent an increase in power consumption of the connection terminal.
(6)上記課題を解決するために、この発明のある局面に係わる無線通信装置は、互いに無線通信を行なうことが可能な複数の無線端末装置のうちのいずれか1つの無線端末装置である接続端末と無線通信を行なうことにより、上記複数の無線端末装置以外の装置と上記複数の無線端末装置との間で送受信される通信データを中継するための無線通信装置であって、上記接続端末の状態と他の上記無線端末装置の状態とを比較するための状態比較部と、上記状態比較部による比較結果に基づいて、上記複数の無線端末装置の中から上記接続端末を新たに選択するための端末選択部とを備える。 (6) In order to solve the above-described problem, a wireless communication device according to an aspect of the present invention is a connection that is any one of a plurality of wireless terminal devices capable of performing wireless communication with each other. A wireless communication device for relaying communication data transmitted and received between a device other than the plurality of wireless terminal devices and the plurality of wireless terminal devices by performing wireless communication with a terminal, wherein the connection terminal In order to newly select the connection terminal from among the plurality of wireless terminal devices based on the comparison result by the state comparison unit for comparing the state and the state of the other wireless terminal device and the state comparison unit Terminal selection unit.
 このような構成により、接続端末の状態が他の無線端末装置の状態と比べて悪くなった場合に、接続端末を切り替えることができるため、接続端末と無線通信装置との間の電波状態を良好に保ち、通信の安定化を図ることができる。また、接続端末から無線通信装置への無線信号の送信電力が大きくなることを防ぎ、接続端末の消費電力の増大を防ぐことができる。したがって、複数の無線端末装置が互いに無線通信を行なうことが可能なネットワークにおける無線端末装置と他のネットワークにおける装置との間での通信を良好に行なうことができる。また、接続端末以外の他の無線端末装置の状態との比較を行なう構成により、たとえば接続端末の状態が悪くても、他の無線端末装置の状態の方がさらに悪い場合に、不適切な接続端末の切り替えが行われることを防ぐことができる。 With such a configuration, the connection terminal can be switched when the state of the connection terminal becomes worse than the state of other wireless terminal apparatuses, so the radio wave condition between the connection terminal and the wireless communication apparatus is good. To stabilize the communication. In addition, it is possible to prevent the transmission power of the radio signal from the connection terminal to the wireless communication apparatus from increasing, and to prevent an increase in power consumption of the connection terminal. Therefore, it is possible to satisfactorily perform communication between a wireless terminal device in a network in which a plurality of wireless terminal devices can perform wireless communication with each other and devices in other networks. In addition, the configuration for comparing with the state of the wireless terminal device other than the connection terminal, for example, inappropriate connection when the state of the other wireless terminal device is worse even if the state of the connection terminal is bad It is possible to prevent terminal switching.
(7)また、この発明の別の局面に係わる無線通信装置は、互いに無線通信を行なうことが可能な複数の無線端末装置のうちのいずれか1つの無線端末装置である接続端末と無線通信を行なうことにより、上記複数の無線端末装置以外の装置と上記複数の無線端末装置との間で送受信される通信データを中継するための無線通信装置であって、上記接続端末の状態が所定条件を満たすか否かを判断するための状態判断部と、上記状態判断部が上記所定条件を満たすと判断した場合に、上記複数の無線端末装置の中から上記接続端末を新たに選択するための端末選択部とを備える。 (7) A wireless communication apparatus according to another aspect of the present invention performs wireless communication with a connection terminal that is any one of a plurality of wireless terminal apparatuses capable of performing wireless communication with each other. By performing, a wireless communication device for relaying communication data transmitted and received between a device other than the plurality of wireless terminal devices and the plurality of wireless terminal devices, wherein the state of the connection terminal satisfies a predetermined condition A state determination unit for determining whether or not the condition is satisfied, and a terminal for newly selecting the connection terminal from the plurality of wireless terminal devices when the state determination unit determines that the predetermined condition is satisfied A selection unit.
 このような構成により、接続端末の状態が悪くなった場合に、接続端末を切り替えることができるため、接続端末と無線通信装置との間の電波状態を良好に保ち、通信の安定化を図ることができる。また、接続端末から無線通信装置への無線信号の送信電力が大きくなることを防ぎ、接続端末の消費電力の増大を防ぐことができる。 With such a configuration, when the state of the connection terminal deteriorates, the connection terminal can be switched, so that the radio wave state between the connection terminal and the wireless communication device is kept good and the communication is stabilized. Can do. In addition, it is possible to prevent the transmission power of the radio signal from the connection terminal to the wireless communication apparatus from increasing, and to prevent an increase in power consumption of the connection terminal.
 (8)また、この発明の別の局面に係わる無線端末装置は、自己および自己が無線通信可能な他の複数の無線端末装置以外の装置と自己との間で通信データの送受信を行う場合、自己または他の複数の無線端末装置のいずれか1つを、通信データを中継する無線通信端末との接続を行う接続端末として、装置との間で通信データの送受信を行う無線端末装置であって、自己が接続端末である場合、自己の状態が所定条件を満たすか否かを判断するための状態判断部と、自己が所定条件を満たすと判断した場合に、他の複数の無線端末装置の中から接続端末を新たに選択するための端末選択部とを備える。 (8) In addition, when a wireless terminal device according to another aspect of the present invention performs transmission / reception of communication data between itself and a device other than a plurality of other wireless terminal devices capable of wireless communication with itself, A wireless terminal device that transmits / receives communication data to / from a device as a connection terminal that connects either one of itself or a plurality of other wireless terminal devices to a wireless communication terminal that relays communication data. When the self is a connected terminal, a state determination unit for determining whether or not its own condition satisfies a predetermined condition, and when it determines that the self satisfies a predetermined condition, A terminal selection unit for newly selecting a connection terminal from the inside.
 このような構成により、自己が接続端末である場合、自己の状態が悪くなったときに、接続端末を自己から他の無線通信端末に切り替えることができるため、接続端末と無線通信装置との間の電波状態を良好に保ち、通信の安定化を図ることができる。また、接続端末から無線通信装置への無線信号の送信電力が大きくなることを防ぎ、接続端末の消費電力の増大を防ぐことができる。 With such a configuration, when the self is a connection terminal, the connection terminal can be switched from the self to another wireless communication terminal when the state of the self deteriorates. It is possible to maintain a good radio wave condition and stabilize communication. In addition, it is possible to prevent the transmission power of the radio signal from the connection terminal to the wireless communication apparatus from increasing, and to prevent an increase in power consumption of the connection terminal.
(9)上記課題を解決するために、この発明のある局面に係わる通信制御方法は、互いに無線通信を行なうことが可能な複数の無線端末装置と、上記複数の無線端末装置のうちのいずれか1つの無線端末装置である接続端末と無線通信を行なうことにより、上記複数の無線端末装置以外の装置と上記複数の無線端末装置との間で送受信される通信データを中継するための無線通信装置とを備える無線通信システムにおける通信制御方法であって、上記接続端末の状態と他の上記無線端末装置の状態とを比較するステップと、比較結果に基づいて、上記複数の無線端末装置の中から上記接続端末を新たに選択するステップとを含む。 (9) In order to solve the above problem, a communication control method according to an aspect of the present invention includes a plurality of wireless terminal devices capable of performing wireless communication with each other, and any one of the plurality of wireless terminal devices. A wireless communication device for relaying communication data transmitted and received between a device other than the plurality of wireless terminal devices and the plurality of wireless terminal devices by performing wireless communication with a connection terminal which is one wireless terminal device A communication control method in a wireless communication system comprising: a step of comparing a state of the connection terminal with a state of another wireless terminal device; and from among the plurality of wireless terminal devices based on a comparison result Selecting a new connection terminal.
 このような構成により、接続端末の状態が他の無線端末装置の状態と比べて悪くなった場合に、接続端末を切り替えることができるため、接続端末と無線通信装置との間の電波状態を良好に保ち、通信の安定化を図ることができる。また、接続端末から無線通信装置への無線信号の送信電力が大きくなることを防ぎ、接続端末の消費電力の増大を防ぐことができる。したがって、複数の無線端末装置が互いに無線通信を行なうことが可能なネットワークにおける無線端末装置と他のネットワークにおける装置との間での通信を良好に行なうことができる。また、接続端末以外の他の無線端末装置の状態との比較を行なう構成により、たとえば接続端末の状態が悪くても、他の無線端末装置の状態の方がさらに悪い場合に、不適切な接続端末の切り替えが行われることを防ぐことができる。 With such a configuration, the connection terminal can be switched when the state of the connection terminal becomes worse than the state of other wireless terminal apparatuses, so the radio wave condition between the connection terminal and the wireless communication apparatus is good. To stabilize the communication. In addition, it is possible to prevent the transmission power of the radio signal from the connection terminal to the wireless communication apparatus from increasing, and to prevent an increase in power consumption of the connection terminal. Therefore, it is possible to satisfactorily perform communication between a wireless terminal device in a network in which a plurality of wireless terminal devices can perform wireless communication with each other and devices in other networks. In addition, the configuration for comparing with the state of the wireless terminal device other than the connection terminal, for example, inappropriate connection when the state of the other wireless terminal device is worse even if the state of the connection terminal is bad It is possible to prevent terminal switching.
(10)また、この発明の別の局面に係わる通信制御方法は、互いに無線通信を行なうことが可能な複数の無線端末装置と、上記複数の無線端末装置のうちのいずれか1つの無線端末装置である接続端末と無線通信を行なうことにより、上記複数の無線端末装置以外の装置と上記複数の無線端末装置との間で送受信される通信データを中継するための無線通信装置とを備える無線通信システムにおける通信制御方法であって、上記接続端末の状態が所定条件を満たすか否かを判断するステップと、上記所定条件を満たすと判断した場合に、上記複数の無線端末装置の中から上記接続端末を新たに選択するステップとを含む。 (10) A communication control method according to another aspect of the present invention includes a plurality of wireless terminal devices capable of performing wireless communication with each other and any one of the plurality of wireless terminal devices. Wireless communication comprising: a wireless communication device for relaying communication data transmitted and received between a device other than the plurality of wireless terminal devices and the plurality of wireless terminal devices by performing wireless communication with the connection terminal A communication control method in a system, comprising: determining whether a state of the connection terminal satisfies a predetermined condition; and determining that the connection condition is satisfied from the plurality of wireless terminal devices when determining that the predetermined condition is satisfied Selecting a new terminal.
 このような構成により、接続端末の状態が悪くなった場合に、接続端末を切り替えることができるため、接続端末と無線通信装置との間の電波状態を良好に保ち、通信の安定化を図ることができる。また、接続端末から無線通信装置への無線信号の送信電力が大きくなることを防ぎ、接続端末の消費電力の増大を防ぐことができる。 With such a configuration, when the state of the connection terminal deteriorates, the connection terminal can be switched, so that the radio wave state between the connection terminal and the wireless communication device is kept good and the communication is stabilized. Can do. In addition, it is possible to prevent the transmission power of the radio signal from the connection terminal to the wireless communication apparatus from increasing, and to prevent an increase in power consumption of the connection terminal.
[2.本願発明の実施形態の詳細]
 以下、本発明の実施の形態について図面を用いて説明する。なお、図中同一または相当部分には同一符号を付してその説明は繰り返さない。
[2. Details of Embodiment of Present Invention]
Hereinafter, embodiments of the present invention will be described with reference to the drawings. In the drawings, the same or corresponding parts are denoted by the same reference numerals and description thereof will not be repeated.
[構成および基本動作]
 図1は、本発明の実施の形態に係る無線通信システムの構成を示す図である。
[Configuration and basic operation]
FIG. 1 is a diagram showing a configuration of a radio communication system according to an embodiment of the present invention.
 図1を参照して、無線通信システム301は、アクセスポイント(AP)(無線通信装置)101と、無線端末装置202A,202B,202C,202Dとを備える。以下、無線端末装置202A,202B,202C,202Dの各々を無線端末装置202と称する場合がある。 Referring to FIG. 1, a wireless communication system 301 includes an access point (AP) (wireless communication apparatus) 101 and wireless terminal apparatuses 202A, 202B, 202C, 202D. Hereinafter, each of the wireless terminal devices 202A, 202B, 202C, and 202D may be referred to as a wireless terminal device 202.
 無線端末装置202A,202B,202C,202Dおよびアクセスポイント101は、たとえばIEEE802.11で規定された無線LAN規格に従い、無線通信を行なう。 The wireless terminal devices 202A, 202B, 202C, 202D and the access point 101 perform wireless communication in accordance with a wireless LAN standard defined by, for example, IEEE 802.11.
 無線端末装置202A,202B,202C,202Dは、互いに無線通信を行なうことが可能であり、アドホックネットワーク401を構成する。図1では、アドホックネットワーク401における4つの無線端末装置を代表的に示しているが、さらに少数または多数の無線端末装置が設けられてもよい。 The wireless terminal devices 202A, 202B, 202C, and 202D can perform wireless communication with each other, and constitute an ad hoc network 401. In FIG. 1, four wireless terminal devices in the ad hoc network 401 are representatively shown, but a smaller number or a larger number of wireless terminal devices may be provided.
 図1において点線で示すように、たとえば無線端末装置202Aが外部ネットワーク接続端末である場合、無線端末装置202Aは、他の無線端末装置202から受信した無線信号をアクセスポイント101へ送信し、また、アクセスポイント101から受信した無線信号を他の無線端末装置202へ送信する。
 ここで、接続端末は、例えば、複数の無線端末装置のうち、最初に立ち上がった無線端末装置である。なお、接続端末は、例えば、複数の無線端末装置が全て立ち上がっている状態において、当該複数の無線端末装置の中でアクセスポイント101からの受信電力が最も大きい無線端末装置であってもよい。或いは、接続端末が、複数の無線端末装置が全て立ち上がっている状態において、当該複数の無線端末装置の中でバッテリ残量が最も多い無線端末装置であってもよい。
As shown by a dotted line in FIG. 1, for example, when the wireless terminal device 202A is an external network connection terminal, the wireless terminal device 202A transmits a wireless signal received from another wireless terminal device 202 to the access point 101, and The wireless signal received from the access point 101 is transmitted to another wireless terminal device 202.
Here, the connection terminal is, for example, a wireless terminal device that has first started up among a plurality of wireless terminal devices. Note that the connection terminal may be, for example, a wireless terminal device having the largest received power from the access point 101 among the plurality of wireless terminal devices in a state where all of the plurality of wireless terminal devices are up. Alternatively, the connection terminal may be a wireless terminal device having the largest remaining battery capacity among the plurality of wireless terminal devices in a state where all of the plurality of wireless terminal devices are up.
 アクセスポイント101は、複数の無線端末装置202のうちのいずれか1つの無線端末装置202であるネットワーク接続端末と無線通信を行なうことにより、当該複数の無線端末装置202以外の装置と当該複数の無線端末装置202との間で送受信される通信データを中継する。より詳細には、アクセスポイント101は、外部ネットワーク接続端末から受信した無線信号に含まれる通信データをIP網402へ送信し、また、IP網402から受信した通信データを無線信号に変換して外部ネットワーク接続端末へ送信する。なお、アクセスポイント101は、IP網402に限らず、アドホックネットワーク401外の装置と無線端末装置202との間で送受信される通信データを中継する構成であればよい。 The access point 101 performs wireless communication with a network connection terminal that is any one of the plurality of wireless terminal devices 202, whereby the access point 101 communicates with a device other than the plurality of wireless terminal devices 202 and the plurality of wireless devices. The communication data transmitted / received to / from the terminal device 202 is relayed. More specifically, the access point 101 transmits communication data included in a radio signal received from an external network connection terminal to the IP network 402, and converts the communication data received from the IP network 402 into a radio signal to be externally transmitted. Send to the network connection terminal. Note that the access point 101 is not limited to the IP network 402, and may be any configuration that relays communication data transmitted and received between a device outside the ad hoc network 401 and the wireless terminal device 202.
 無線端末装置202は、アクセスポイント101から離れた位置に存在する場合でも、他の無線端末装置202を介してアクセスポイント101と通信することが可能である。また、無線端末装置202A,202B,202C,202Dが互いに無線通信を行なうことにより、アクセスポイント101の処理および通信トラフィックの増大を防ぐことができる。 The wireless terminal device 202 can communicate with the access point 101 via another wireless terminal device 202 even when the wireless terminal device 202 exists at a position away from the access point 101. In addition, the wireless terminal devices 202A, 202B, 202C, and 202D perform wireless communication with each other, thereby preventing processing of the access point 101 and an increase in communication traffic.
 図2は、本発明の実施の形態に係る無線通信システムにおいて外部ネットワーク接続端末が移動する様子を示す図である。 FIG. 2 is a diagram illustrating a state in which an external network connection terminal moves in the wireless communication system according to the embodiment of the present invention.
 図2を参照して、外部ネットワーク接続端末である無線端末装置202Aが移動してアクセスポイント101から離れると、距離および電波干渉等により、外部ネットワーク接続端末とアクセスポイント101との間の電波状態が悪くなる。そうすると、無線端末装置202A,202B,202C,202DとIP網402との間の通信において遅延および切断等が生じてしまう。また、無線端末装置202Aおよびアクセスポイント101が、当該通信を良好にするためにたとえば無線信号の送信電力を大きくすると、無線端末装置202Aおよびアクセスポイント101の消費電力が増大してしまう。 Referring to FIG. 2, when radio terminal apparatus 202A, which is an external network connection terminal, moves away from access point 101, the radio wave condition between the external network connection terminal and access point 101 changes due to distance, radio wave interference, and the like. Deteriorate. Then, delay and disconnection occur in communication between the wireless terminal devices 202A, 202B, 202C, and 202D and the IP network 402. In addition, if the wireless terminal device 202A and the access point 101 increase the transmission power of a wireless signal, for example, in order to improve the communication, the power consumption of the wireless terminal device 202A and the access point 101 increases.
 そこで、本発明の実施の形態に係る無線通信システム301では、通信状態に応じて、起点となる外部ネットワーク接続端末を動的に切り替えることにより、安定したネットワークを構築する。 Therefore, in the wireless communication system 301 according to the embodiment of the present invention, a stable network is constructed by dynamically switching an external network connection terminal serving as a starting point according to a communication state.
 図3は、本発明の実施の形態に係る無線通信システムにおける外部ネットワーク接続端末の動的切り替えを示す図である。 FIG. 3 is a diagram showing dynamic switching of external network connection terminals in the wireless communication system according to the embodiment of the present invention.
 具体的には、図3を参照して、外部ネットワーク接続端末である無線端末装置202Aが移動してアクセスポイント101から離れると、無線端末装置202Aよりもアクセスポイント101に近い位置に存在し、アクセスポイント101との通信状態が良好な無線端末装置202Bを新たに外部ネットワーク接続端末として選択する。 Specifically, referring to FIG. 3, when wireless terminal device 202A, which is an external network connection terminal, moves and moves away from access point 101, it exists at a position closer to access point 101 than wireless terminal device 202A. A wireless terminal device 202B having a good communication state with the point 101 is newly selected as an external network connection terminal.
 これにより、無線端末装置202A,202B,202C,202DとIP網402との間の通信を良好に保ち、また、無線端末装置202Aおよびアクセスポイント101の消費電力の増大を防ぐことが可能となる。 Thereby, it is possible to maintain good communication between the wireless terminal devices 202A, 202B, 202C, and 202D and the IP network 402, and to prevent an increase in power consumption of the wireless terminal device 202A and the access point 101.
 図4は、本発明の実施の形態に係るアクセスポイントの構成を示す図である。
 図4を参照して、アクセスポイント101は、アンテナ91と、サーキュレータ92と、無線受信部93と、無線送信部94と、信号処理部95と、制御部98とを備える。信号処理部95は、受信信号処理部96と、送信信号処理部97とを含む。信号処理部95および制御部98は、CPU(Central Processing Unit)またはDSP(Digital Signal Processor)等によって実現される。
FIG. 4 is a diagram showing the configuration of the access point according to the embodiment of the present invention.
Referring to FIG. 4, access point 101 includes an antenna 91, a circulator 92, a wireless reception unit 93, a wireless transmission unit 94, a signal processing unit 95, and a control unit 98. The signal processing unit 95 includes a reception signal processing unit 96 and a transmission signal processing unit 97. The signal processing unit 95 and the control unit 98 are realized by a CPU (Central Processing Unit) or a DSP (Digital Signal Processor).
 サーキュレータ92は、アンテナ91において受信された無線端末装置202からの無線信号を無線受信部93へ出力し、また、無線送信部94から受けた無線信号をアンテナ91へ出力する。 The circulator 92 outputs the radio signal from the radio terminal device 202 received by the antenna 91 to the radio reception unit 93 and outputs the radio signal received from the radio transmission unit 94 to the antenna 91.
 無線受信部93は、サーキュレータ92から受けた無線信号をベースバンド信号またはIF(Intermediate Frequency)信号に周波数変換し、この周波数変換した信号をデジタル信号に変換して受信信号処理部96へ出力する。 The radio reception unit 93 converts the frequency of the radio signal received from the circulator 92 into a baseband signal or IF (Intermediate Frequency) signal, converts the frequency converted signal into a digital signal, and outputs the digital signal to the reception signal processing unit 96.
 受信信号処理部96は、無線受信部93から受けたデジタル信号に対して所定の信号処理を行ない、この信号処理後のデジタル信号の一部または全部を所定のフレームフォーマットに変換してIP網402へ送信する。 The reception signal processing unit 96 performs predetermined signal processing on the digital signal received from the wireless reception unit 93, converts a part or all of the digital signal after the signal processing into a predetermined frame format, and converts it into the IP network 402. Send to.
 送信信号処理部97は、IP網402から受信した通信データを所定のフレームフォーマットに変換した通信データまたは自ら生成した通信データに対して所定の信号処理を行ない、この信号処理後のデジタル信号を無線送信部94へ出力する。 The transmission signal processing unit 97 performs predetermined signal processing on communication data obtained by converting communication data received from the IP network 402 into a predetermined frame format or communication data generated by itself, and wirelessly transmits the digital signal after the signal processing. The data is output to the transmission unit 94.
 無線送信部94は、送信信号処理部97から受けたデジタル信号をアナログ信号に変換し、変換したアナログ信号を無線信号に周波数変換してサーキュレータ92へ出力する。 The wireless transmission unit 94 converts the digital signal received from the transmission signal processing unit 97 into an analog signal, converts the frequency of the converted analog signal into a wireless signal, and outputs the converted signal to the circulator 92.
 制御部98は、アクセスポイント101における各ユニットおよびIP網402との間で各種情報をやり取りする。 The control unit 98 exchanges various types of information with each unit in the access point 101 and the IP network 402.
 図5は、本発明の実施の形態に係る無線端末装置の構成を示す図である。
 図5を参照して、無線端末装置202は、アンテナ81と、サーキュレータ82と、無線受信部83と、無線送信部84と、信号処理部85と、制御部88と、入出力部89とを備える。信号処理部85は、受信信号処理部86と、送信信号処理部87とを含む。信号処理部85および制御部88は、CPU(Central Processing Unit)またはDSP(Digital Signal Processor)等によって実現される。
FIG. 5 is a diagram showing the configuration of the wireless terminal apparatus according to the embodiment of the present invention.
Referring to FIG. 5, wireless terminal apparatus 202 includes antenna 81, circulator 82, wireless receiver 83, wireless transmitter 84, signal processor 85, controller 88, and input / output unit 89. Prepare. The signal processing unit 85 includes a reception signal processing unit 86 and a transmission signal processing unit 87. The signal processing unit 85 and the control unit 88 are realized by a CPU (Central Processing Unit), a DSP (Digital Signal Processor), or the like.
 サーキュレータ82は、アンテナ81において受信されたアクセスポイント101からの無線信号を無線受信部83へ出力し、また、無線送信部84から受けた無線信号をアンテナ81へ出力する。 The circulator 82 outputs the radio signal received from the antenna 81 from the access point 101 to the radio reception unit 83 and outputs the radio signal received from the radio transmission unit 84 to the antenna 81.
 無線受信部83は、サーキュレータ82から受けた無線信号をベースバンド信号またはIF(Intermediate Frequency)信号に周波数変換し、この周波数変換した信号をデジタル信号に変換して受信信号処理部86へ出力する。 The radio reception unit 83 frequency-converts the radio signal received from the circulator 82 into a baseband signal or IF (Intermediate Frequency) signal, converts the frequency-converted signal into a digital signal, and outputs the digital signal to the reception signal processing unit 86.
 受信信号処理部86は、無線受信部83から受けたデジタル信号に対して所定の信号処理を行ない、この信号処理後のデジタル信号の一部または全部を制御部88へ出力する。 The reception signal processing unit 86 performs predetermined signal processing on the digital signal received from the wireless reception unit 83, and outputs a part or all of the digital signal after the signal processing to the control unit 88.
 制御部88は、受信信号処理部86から受けたデジタル信号を、たとえば音声データおよび映像データに変換し、必要に応じてアナログ信号に変換する。そして、制御部88は、スピーカ、マイク、ディスプレイおよびキー入力装置等を含む入出力部89へ出力する。
 また、制御部88は、たとえば、音声データ、およびキー入力装置において受け付けた無線端末装置202を制御するための制御信号等を入出力部89から受ける。そして、制御部88は、入出力部89から受けた音声データおよび制御信号に所定の信号処理を行なって通信データを生成し、送信信号処理部87へ出力する。
The control unit 88 converts the digital signal received from the reception signal processing unit 86 into, for example, audio data and video data, and converts it into an analog signal as necessary. And the control part 88 outputs to the input-output part 89 containing a speaker, a microphone, a display, a key input device, etc.
Further, the control unit 88 receives, for example, voice data and a control signal for controlling the wireless terminal device 202 received by the key input device from the input / output unit 89. Control unit 88 performs predetermined signal processing on the audio data and control signal received from input / output unit 89 to generate communication data, and outputs the communication data to transmission signal processing unit 87.
 送信信号処理部87は、制御部88から受けた通信データ、または自ら生成した通信データに対して所定の信号処理を行ない、この信号処理後のデジタル信号を無線送信部84へ出力する。 The transmission signal processing unit 87 performs predetermined signal processing on the communication data received from the control unit 88 or communication data generated by itself, and outputs the digital signal after this signal processing to the wireless transmission unit 84.
 無線送信部84は、送信信号処理部87から受けたデジタル信号をアナログ信号に変換し、変換したアナログ信号を無線信号に周波数変換してサーキュレータ82へ出力する。 The wireless transmission unit 84 converts the digital signal received from the transmission signal processing unit 87 into an analog signal, converts the frequency of the converted analog signal into a wireless signal, and outputs it to the circulator 82.
 図6は、本発明の実施の形態に係る無線端末装置またはアクセスポイントにおける制御部の構成を示す図である。
 図6を参照して、制御部88または制御部98は、端末状態取得部11と、状態比較部12と、状態判断部13と、端末選択部14とを含む。
FIG. 6 is a diagram showing a configuration of a control unit in the wireless terminal device or the access point according to the embodiment of the present invention.
Referring to FIG. 6, control unit 88 or control unit 98 includes a terminal state acquisition unit 11, a state comparison unit 12, a state determination unit 13, and a terminal selection unit 14.
 端末状態取得部11は、アドホックネットワーク401における各無線端末装置202の状態を取得する。具体的には、端末状態取得部11は、たとえば、アクセスポイント101からの電波の無線端末装置202における受信状態を取得するか、または、無線端末装置202のバッテリーの状態を取得する。 The terminal state acquisition unit 11 acquires the state of each wireless terminal device 202 in the ad hoc network 401. Specifically, the terminal state acquisition unit 11 acquires, for example, a reception state of radio waves from the access point 101 in the wireless terminal device 202 or acquires a battery state of the wireless terminal device 202.
 状態比較部12は、端末状態取得部11によって取得されたネットワーク接続端末の状態と他の無線端末装置202の状態とを比較する。 The state comparison unit 12 compares the state of the network connection terminal acquired by the terminal state acquisition unit 11 with the state of the other wireless terminal device 202.
 端末選択部14は、状態比較部12による比較結果に基づいて、アドホックネットワーク401における複数の無線端末装置202の中からネットワーク接続端末を新たに選択する。 The terminal selection unit 14 newly selects a network connection terminal from the plurality of wireless terminal devices 202 in the ad hoc network 401 based on the comparison result by the state comparison unit 12.
 状態判断部13は、端末状態取得部11によって取得されたネットワーク接続端末の状態が所定条件を満たすか否かを判断する。
 たとえば、端末選択部14は、状態判断部13が上記所定条件を満たすと判断した場合に、ネットワーク接続端末の選択を行なう。
The state determination unit 13 determines whether the state of the network connection terminal acquired by the terminal state acquisition unit 11 satisfies a predetermined condition.
For example, the terminal selection unit 14 selects a network connection terminal when the state determination unit 13 determines that the predetermined condition is satisfied.
[動作]
 次に、本発明の実施の形態に係る無線端末装置およびアクセスポイントが外部ネットワーク接続端末の切り替え処理を行なう際の動作について説明する。
 本発明の実施の形態に係る無線通信システムにおける無線端末装置およびアクセスポイントは、以下の各シーケンスの各ステップを含むプログラムを図示しないメモリから読み出して実行する。このプログラムは、外部からインストールすることができる。このインストールされるプログラムは、たとえば記録媒体に格納された状態で流通する。
[Operation]
Next, an operation when the wireless terminal device and the access point according to the embodiment of the present invention perform the switching process of the external network connection terminal will be described.
The wireless terminal device and the access point in the wireless communication system according to the embodiment of the present invention read and execute a program including each step of the following sequences from a memory (not shown). This program can be installed externally. The installed program is distributed in a state stored in a recording medium, for example.
 図7は、本発明の実施の形態に係る無線通信システムにおける外部ネットワーク接続端末の切り替え処理のシーケンスの一例を示す図である。 FIG. 7 is a diagram showing an example of a sequence of the switching process of the external network connection terminal in the wireless communication system according to the embodiment of the present invention.
 図7を参照して、外部ネットワーク接続端末である無線端末装置202Aとアクセスポイント101とが無線信号を送受信して通信中である状態において(ステップS11)、まず、無線端末装置202Aは、無線端末装置202Bへ受信電波情報要求を送信する。
 無線端末装置202Aは、定期的、または所定条件を満たすと、受信電波情報要求の送信を行なう(ステップS12)。
Referring to FIG. 7, in a state where wireless terminal apparatus 202A, which is an external network connection terminal, and access point 101 are communicating by transmitting and receiving wireless signals (step S11), first, wireless terminal apparatus 202A is a wireless terminal. A reception radio wave information request is transmitted to apparatus 202B.
The wireless terminal device 202A transmits a received radio wave information request periodically or when a predetermined condition is satisfied (step S12).
 次に、無線端末装置202Bは、無線端末装置202Aから受信電波情報要求を受信して、たとえばアクセスポイント101からの無線信号の自己における受信電力を示す受信電波情報を無線端末装置202Aへ送信する(ステップS13)。なお、図7では示していないが、無線端末装置202Aは、たとえば、無線端末装置202B以外の無線端末装置202へも受信電波情報要求を送信し、受信電波情報を取得する。 Next, the wireless terminal device 202B receives the received radio wave information request from the wireless terminal device 202A, and transmits, for example, received radio wave information indicating the received power of the radio signal from the access point 101 to the wireless terminal device 202A ( Step S13). Although not shown in FIG. 7, for example, the wireless terminal device 202A transmits a received radio wave information request to a wireless terminal device 202 other than the wireless terminal device 202B, and acquires the received radio wave information.
 次に、無線端末装置202Aは、各無線端末装置202から受信した受信電波情報に基づいて、自己を含む各無線端末装置202の電波状態を判定する。具体的には、たとえば、無線端末装置202Aは、アクセスポイント101からの無線信号の自己における受信電力と他の無線端末装置202における当該受信電力との差が所定の閾値以上である場合に、外部ネットワーク接続端末を自己から他の無線端末装置202へ切り替えるべきであると判断する(ステップS14)。ここで、「自己における受信電力と他の無線端末装置202における当該受信電力との差」とは、他の無線端末装置202における受信電力から自己における当該受信電力を差し引いて得られる差に相当する。
 つまり、ステップS14では、無線端末装置202Aが、他の無線端末装置202における受信電力が自己における受信電力よりも大きく且つ他の無線端末装置202における受信電力と自己における受信電力との差が所定の閾値以上である場合に、接続端末を切り替えるべきであると判断する。
 なお、無線端末装置202Aは他の無線端末装置202における受信電力が自己における受信電力よりも大きくなると、接続端末を切り替えるべきであると判断してもよい。ここにおいて、無線端末装置202Aが、自己における受信電力から他の無線端末装置202における当該受信電力を差し引いて得られる差の絶対値が所定の閾値以上である場合に、他の無線端末装置202へ切り替えるべきであると判断するようにしてもよい。
Next, 202 A of radio | wireless terminal apparatuses determine the radio wave state of each radio | wireless terminal apparatus 202 including self based on the received radio wave information received from each radio | wireless terminal apparatus 202. FIG. Specifically, for example, if the difference between the received power of the wireless signal from the access point 101 and the received power of the other wireless terminal device 202 is equal to or greater than a predetermined threshold, the wireless terminal device 202A It is determined that the network connection terminal should be switched from itself to another wireless terminal device 202 (step S14). Here, “the difference between the received power in itself and the received power in another wireless terminal device 202” corresponds to a difference obtained by subtracting the received power in itself from the received power in the other wireless terminal device 202. .
That is, in step S14, the wireless terminal device 202A determines that the received power in the other wireless terminal device 202 is larger than the received power in itself and that the difference between the received power in the other wireless terminal device 202 and the received power in itself is a predetermined value. If it is equal to or greater than the threshold, it is determined that the connected terminal should be switched.
Note that the wireless terminal device 202A may determine that the connected terminal should be switched when the received power in the other wireless terminal device 202 becomes larger than the received power in itself. Here, when the absolute value of the difference obtained by subtracting the received power in the other wireless terminal device 202 from the received power in itself is equal to or greater than a predetermined threshold, the wireless terminal device 202A is transferred to the other wireless terminal device 202. You may make it judge that it should switch.
 次に、無線端末装置202Aは、たとえば上記受信電力が最大である無線端末装置202Bを新たな外部ネットワーク接続端末として選択し(ステップS15)、接続指示を無線端末装置202Bへ送信する(ステップS16)。 Next, the wireless terminal device 202A selects, for example, the wireless terminal device 202B having the maximum received power as a new external network connection terminal (step S15), and transmits a connection instruction to the wireless terminal device 202B (step S16). .
 次に、無線端末装置202Bは、無線端末装置202Aから接続指示を受信して、後述するようなアクセスポイント101との接続処理を行ない(ステップS17)、以後、外部ネットワーク接続端末として動作する。 Next, the wireless terminal device 202B receives a connection instruction from the wireless terminal device 202A, performs connection processing with the access point 101 as described later (step S17), and thereafter operates as an external network connection terminal.
 次に、無線端末装置202Aおよびアクセスポイント101は、互いに通信接続を切断する処理を行なう(ステップS18)。 Next, the wireless terminal device 202A and the access point 101 perform a process of disconnecting communication connection with each other (step S18).
 図8は、本発明の実施の形態に係る無線通信システムにおける外部ネットワーク接続端末の切り替え処理の一例を示す図である。
 図8を参照して、まず、外部ネットワーク接続端末である無線端末装置202Aとアクセスポイント101との間の電波状態が良好であり、無線端末装置202Bとアクセスポイント101との間の電波状態が普通であり、無線端末装置202Cとアクセスポイント101との間の電波状態が悪い状況を考える。
FIG. 8 is a diagram showing an example of switching processing of the external network connection terminal in the wireless communication system according to the embodiment of the present invention.
Referring to FIG. 8, first, the radio wave condition between radio terminal apparatus 202A, which is an external network connection terminal, and access point 101 is good, and the radio wave condition between radio terminal apparatus 202B and access point 101 is normal. Consider a situation where the radio wave condition between the wireless terminal device 202C and the access point 101 is poor.
 この状況において、無線端末装置202Aが移動してアクセスポイント101から離れると、無線端末装置202Aとアクセスポイント101との間の電波状態が悪くなる。そうすると、無線端末装置202Aは、電波状態の最も良い無線端末装置202Bを新たな外部ネットワーク接続端末として選択し、以後、無線端末装置202Bが外部ネットワーク接続端末として動作する。ここでは、状態判断部13が、アクセスポイント101からの電波の無線端末装置202Aにおける受信状態が所定条件(電波状態が悪い状態)を満たすか否かを判断する。 In this situation, if the wireless terminal device 202A moves and moves away from the access point 101, the radio wave state between the wireless terminal device 202A and the access point 101 deteriorates. Then, the wireless terminal device 202A selects the wireless terminal device 202B having the best radio wave state as a new external network connection terminal, and thereafter, the wireless terminal device 202B operates as the external network connection terminal. Here, state determination unit 13 determines whether or not the reception state of radio wave from access point 101 at wireless terminal apparatus 202A satisfies a predetermined condition (a state where the radio wave state is bad).
 図9は、本発明の実施の形態に係る無線通信システムにおける外部ネットワーク接続端末の切り替え処理のシーケンスの一例を示す図である。
 図9を参照して、外部ネットワーク接続端末である無線端末装置202Aとアクセスポイント101とが無線信号を送受信して通信中である状態において(ステップS21)、まず、無線端末装置202Aは、無線端末装置202Bへバッテリー情報要求を送信する。無線端末装置202Aは、定期的、または所定条件を満たすと、バッテリー情報要求の送信を行なう(ステップS22)。
FIG. 9 is a diagram showing an exemplary sequence of switching processing of external network connection terminals in the wireless communication system according to the embodiment of the present invention.
Referring to FIG. 9, in a state where wireless terminal apparatus 202A, which is an external network connection terminal, and access point 101 are communicating by transmitting and receiving wireless signals (step S21), first, wireless terminal apparatus 202A is a wireless terminal. A battery information request is transmitted to the device 202B. The wireless terminal device 202A transmits a battery information request periodically or when a predetermined condition is satisfied (step S22).
 次に、無線端末装置202Bは、無線端末装置202Aからバッテリー情報要求を受信して、バッテリー情報を無線端末装置202Aへ送信する。なお、図9では示していないが、無線端末装置202Aは、たとえば、無線端末装置202B以外の無線端末装置202へもバッテリー情報要求を送信し、バッテリー情報を取得する。このバッテリー情報は、たとえば、無線端末装置202のバッテリーが充電中である状態、当該バッテリーの残量が閾値以上である状態、または当該バッテリーの残量が閾値未満である状態を示す(ステップS23)。 Next, the wireless terminal device 202B receives the battery information request from the wireless terminal device 202A and transmits the battery information to the wireless terminal device 202A. Although not shown in FIG. 9, the wireless terminal device 202A transmits a battery information request to the wireless terminal devices 202 other than the wireless terminal device 202B, for example, and acquires battery information. This battery information indicates, for example, a state where the battery of the wireless terminal device 202 is being charged, a state where the remaining amount of the battery is greater than or equal to a threshold, or a state where the remaining amount of the battery is less than the threshold (step S23). .
 次に、無線端末装置202Aは、各無線端末装置202から受信したバッテリー情報に基づいて、たとえば自己を含む各無線端末装置202のバッテリー残量を判定する。具体的には、たとえば、無線端末装置202Aは、自己のバッテリー残量と他の無線端末装置202のバッテリー残量との差が所定の閾値以上である場合に、外部ネットワーク接続端末を自己から他の無線端末装置202へ切り替えるべきであると判断する(ステップS24)。ここで、「自己のバッテリー残量と他の無線端末装置202のバッテリー残量との差」とは、他の無線端末装置202のバッテリー残量から自己のバッテリー残量を差し引いて得られる差に相当する。
 つまり、ステップS24では、無線端末装置202Aが、他の無線端末装置202のバッテリー残量が自己のバッテリー残量よりも大きく且つ他の無線端末装置202のバッテリー残量と自己のバッテリー残量との差が所定の閾値以上である場合に、接続端末を切り替えるべきであると判断する。
 なお、無線端末装置202Aは他の無線端末装置202のバッテリー残量が自己のバッテリー残量よりも大きくなると、接続端末を切り替えるべきであると判断してもよい。ここにおいて、無線端末装置202Aは、自己のバッテリー残量から他の無線端末装置202のバッテリー残量を差し引いて得られる差の絶対値が所定の閾値以上である場合に、他の無線端末装置202へ切り替えるべきであると判断するようにしてもよい。
Next, 202 A of radio | wireless terminal apparatuses determine the battery remaining charge of each radio | wireless terminal apparatus 202 including self based on the battery information received from each radio | wireless terminal apparatus 202, for example. Specifically, for example, when the difference between the remaining battery level of the wireless terminal device 202A and the remaining battery level of the other wireless terminal device 202 is equal to or greater than a predetermined threshold value, the wireless terminal device 202A changes the external network connection terminal from itself. It is determined that the wireless terminal device 202 should be switched (step S24). Here, “the difference between the remaining battery level of the own wireless terminal device 202 and the remaining battery level of the other wireless terminal device 202” is a difference obtained by subtracting the remaining battery level of the battery from the remaining wireless terminal device 202. Equivalent to.
That is, in step S24, the wireless terminal device 202A determines that the remaining battery level of the other wireless terminal device 202 is greater than its own battery level and the remaining battery level of the other wireless terminal device 202 and the remaining battery level of its own. If the difference is greater than or equal to a predetermined threshold, it is determined that the connected terminal should be switched.
Note that the wireless terminal device 202A may determine that the connection terminal should be switched when the remaining battery level of the other wireless terminal device 202 is greater than its own battery level. Here, when the absolute value of the difference obtained by subtracting the remaining battery level of the other wireless terminal device 202 from the remaining battery level of the wireless terminal device 202A is equal to or greater than a predetermined threshold value, the wireless terminal device 202A You may make it judge that it should switch to.
 次に、無線端末装置202Aは、たとえばバッテリー残量が最大である無線端末装置202Bを新たな外部ネットワーク接続端末として選択し(ステップS25)、接続指示を無線端末装置202Bへ送信する(ステップS26)。 Next, the wireless terminal device 202A selects, for example, the wireless terminal device 202B having the maximum remaining battery level as a new external network connection terminal (step S25), and transmits a connection instruction to the wireless terminal device 202B (step S26). .
 次に、無線端末装置202Bは、無線端末装置202Aから接続指示を受信して、後述するようなアクセスポイント101との接続処理を行ない(ステップS27)、以後、外部ネットワーク接続端末として動作する。 Next, the wireless terminal device 202B receives a connection instruction from the wireless terminal device 202A, performs connection processing with the access point 101 as described later (step S27), and thereafter operates as an external network connection terminal.
 次に、無線端末装置202Aおよびアクセスポイント101は、互いに通信接続を切断する処理を行なう(ステップS28)。 Next, the wireless terminal device 202A and the access point 101 perform a process of disconnecting communication connection with each other (step S28).
 図10は、本発明の実施の形態に係る無線通信システムにおける外部ネットワーク接続端末の切り替え処理の一例を示す図である。
 図10を参照して、まず、外部ネットワーク接続端末である無線端末装置202Aのバッテリー残量が中レベルであり、無線端末装置202Bのバッテリー残量が大レベルであり、無線端末装置202Cのバッテリー残量が中レベルである状態を考える。この状態では、無線端末装置202Aは、他の無線端末装置202とのバッテリー残量との差が小さいことから、自己が外部ネットワーク接続端末である状態を維持する。
FIG. 10 is a diagram showing an example of switching processing of the external network connection terminal in the wireless communication system according to the embodiment of the present invention.
Referring to FIG. 10, first, the remaining battery level of wireless terminal device 202A, which is an external network connection terminal, is medium, the remaining battery level of wireless terminal device 202B is high, and the remaining battery level of wireless terminal device 202C is low. Consider a situation where the amount is medium. In this state, the wireless terminal device 202A maintains a state where it is an external network connection terminal because the difference between the remaining battery level and the remaining wireless terminal device 202 is small.
 そして、無線端末装置202Aのバッテリー残量が低下して小レベルになると、無線端末装置202Aは、バッテリー残量の最も大きい無線端末装置202Bを新たな外部ネットワーク接続端末として選択し、以後、無線端末装置202Bが外部ネットワーク接続端末として動作する。ここでは、状態判断部13が、無線端末装置202Aのバッテリー残量が所定条件(小レベル)を満たすか否かを判断する。 Then, when the remaining battery level of the wireless terminal device 202A decreases to a low level, the wireless terminal device 202A selects the wireless terminal device 202B with the largest remaining battery level as a new external network connection terminal. The device 202B operates as an external network connection terminal. Here, the state determination unit 13 determines whether or not the remaining battery level of the wireless terminal device 202A satisfies a predetermined condition (small level).
 図11は、本発明の実施の形態に係る無線通信システムにおける無線端末装置とアクセスポイントとの接続処理(パッシブスキャン)のシーケンスの一例を示す図である。
 図11を参照して、まず、アクセスポイント101は、報知情報であるビーコンを送信する。この送信により、ビーコンに含まれるアクセスポイント101のESSID(Extended Service Set Identifier)がブロードキャストされる(ステップS31)。
FIG. 11 is a diagram showing an exemplary sequence of connection processing (passive scan) between a wireless terminal device and an access point in the wireless communication system according to the embodiment of the present invention.
Referring to FIG. 11, first, access point 101 transmits a beacon that is broadcast information. By this transmission, the ESSID (Extended Service Set Identifier) of the access point 101 included in the beacon is broadcast (step S31).
 無線端末装置202は、一定時間ビーコンの受信動作を行ない、ビーコンに含まれるESSIDと、自己に設定されたESSIDとを比較し、自己に設定されたESSIDと一致するアクセスポイントを探索する(ステップS32)。 The wireless terminal device 202 performs a beacon reception operation for a certain period of time, compares the ESSID included in the beacon with the ESSID set for itself, and searches for an access point that matches the ESSID set for itself (step S32). ).
 次に、無線端末装置202は、自己に設定されたESSIDと一致するアクセスポイント101が見つかると、認証情報(Authentication)をアクセスポイント101へ送信する(ステップS33)。 Next, when the access point 101 that matches the ESSID set for itself is found, the wireless terminal device 202 transmits authentication information (Authentication) to the access point 101 (step S33).
 次に、アクセスポイント101は、無線端末装置202から認証情報を受信して、ACKを無線端末装置202へ送信するとともに(ステップS34)、認証情報を無線端末装置202へ送信する(ステップS35)。 Next, the access point 101 receives the authentication information from the wireless terminal device 202, transmits ACK to the wireless terminal device 202 (step S34), and transmits authentication information to the wireless terminal device 202 (step S35).
 次に、無線端末装置202は、アクセスポイント101から認証情報を受信して、ACKをアクセスポイント101へ送信するとともに(ステップS36)、通信確立要求(Association Request)をアクセスポイント101へ送信する(ステップS37)。 Next, the wireless terminal device 202 receives the authentication information from the access point 101, transmits ACK to the access point 101 (step S36), and transmits a communication establishment request (Association Request) to the access point 101 (step S36). S37).
 次に、アクセスポイント101は、無線端末装置202から通信確立要求を受信して、ACKを無線端末装置202へ送信するとともに(ステップS38)、通信確立応答(Association Response)を無線端末装置202へ送信する(ステップS39)。 Next, the access point 101 receives a communication establishment request from the wireless terminal device 202, transmits an ACK to the wireless terminal device 202 (step S38), and transmits a communication establishment response (Association Response) to the wireless terminal device 202. (Step S39).
 次に、無線端末装置202は、アクセスポイント101から通信確立応答を受信して、ACKをアクセスポイント101へ送信する(ステップS40)。 Next, the wireless terminal device 202 receives a communication establishment response from the access point 101 and transmits ACK to the access point 101 (step S40).
 そして、無線端末装置202およびアクセスポイント101間の通信接続が確立すると、無線端末装置202およびアクセスポイント101は、データフレームの送受信を開始する(ステップS41)。 When the communication connection between the wireless terminal device 202 and the access point 101 is established, the wireless terminal device 202 and the access point 101 start transmission / reception of data frames (step S41).
 図12は、本発明の実施の形態に係る無線通信システムにおける無線端末装置とアクセスポイントとの接続処理(アクティブキャン)のシーケンスの一例を示す図である。
 図12を参照して、まず、アクセスポイント101は、報知情報であるビーコンを一定時間以内に受信できなかった場合に(ステップS50)、接続要求を送信する。この送信により、接続要求に含まれる無線端末装置202に設定されたESSIDが、無線端末装置202が接続を希望するESSIDとしてブロードキャストされる(ステップS51)。
FIG. 12 is a diagram showing an exemplary sequence of connection processing (active can) between a wireless terminal device and an access point in the wireless communication system according to the embodiment of the present invention.
Referring to FIG. 12, first, access point 101 transmits a connection request when a beacon that is broadcast information cannot be received within a predetermined time (step S50). By this transmission, the ESSID set in the wireless terminal device 202 included in the connection request is broadcast as the ESSID that the wireless terminal device 202 desires to connect (step S51).
 次に、アクセスポイント101は、無線端末装置202から接続要求を受信して、接続要求に含まれるESSIDが自己のESSIDと一致する場合、接続応答を無線端末装置202へ送信する(ステップS52)。 Next, the access point 101 receives a connection request from the wireless terminal device 202, and when the ESSID included in the connection request matches its own ESSID, transmits a connection response to the wireless terminal device 202 (step S52).
 次に、無線端末装置202は、アクセスポイント101から接続応答を受信すると、認証情報(Authentication)をアクセスポイント101へ送信する(ステップS53)。 Next, when receiving a connection response from the access point 101, the wireless terminal device 202 transmits authentication information (Authentication) to the access point 101 (step S53).
 次に、アクセスポイント101は、無線端末装置202から認証情報を受信して、ACKを無線端末装置202へ送信するとともに(ステップS54)、認証情報を無線端末装置202へ送信する(ステップS55)。 Next, the access point 101 receives the authentication information from the wireless terminal device 202, transmits ACK to the wireless terminal device 202 (step S54), and transmits authentication information to the wireless terminal device 202 (step S55).
 次に、無線端末装置202は、アクセスポイント101から認証情報を受信して、ACKをアクセスポイント101へ送信するとともに(ステップS56)、通信確立要求(Association Request)をアクセスポイント101へ送信する(ステップS57)。 Next, the wireless terminal device 202 receives the authentication information from the access point 101, transmits an ACK to the access point 101 (step S56), and transmits a communication establishment request (Association Request) to the access point 101 (step S56). S57).
 次に、アクセスポイント101は、無線端末装置202から通信確立要求を受信して、ACKを無線端末装置202へ送信するとともに(ステップS58)、通信確立応答(Association Response)を無線端末装置202へ送信する(ステップS59)。 Next, the access point 101 receives a communication establishment request from the wireless terminal device 202, transmits an ACK to the wireless terminal device 202 (step S58), and transmits a communication establishment response (Association Response) to the wireless terminal device 202. (Step S59).
 次に、無線端末装置202は、アクセスポイント101から通信確立応答を受信して、ACKをアクセスポイント101へ送信する(ステップS60)。 Next, the wireless terminal device 202 receives a communication establishment response from the access point 101, and transmits ACK to the access point 101 (step S60).
 そして、無線端末装置202およびアクセスポイント101間の通信接続が確立すると、無線端末装置202およびアクセスポイント101は、データフレームの送受信を開始する(ステップS61)。 Then, when the communication connection between the wireless terminal device 202 and the access point 101 is established, the wireless terminal device 202 and the access point 101 start transmission / reception of data frames (step S61).
[変形例]
 上記では、無線端末装置202が、自己の状態と他の無線端末装置202の状態との比較結果に基づいて外部ネットワーク接続端末の切り替え判断を行なう構成であるとしたが、これに限定するものではない。無線端末装置202は、他の無線端末装置202の状態との比較を行なうことなく自己の状態に基づいて外部ネットワーク接続端末の切り替え判断を行なう構成であってもよい。
[Modification]
In the above description, the wireless terminal device 202 is configured to determine whether to switch the external network connection terminal based on the comparison result between its own state and the state of the other wireless terminal device 202. However, the present invention is not limited to this. Absent. The wireless terminal device 202 may be configured to determine whether to switch the external network connection terminal based on its own state without comparing with the state of the other wireless terminal device 202.
 すなわち、制御部88または制御部98において、状態判断部13は、ネットワーク接続端末の状態が所定条件を満たすか否かを判断する。そして、端末選択部14は、状態判断部13が上記所定条件を満たすと判断した場合に、アドホックネットワーク401における複数の無線端末装置202の中からネットワーク接続端末を新たに選択する。 That is, in the control unit 88 or the control unit 98, the state determination unit 13 determines whether the state of the network connection terminal satisfies a predetermined condition. Then, when the state determination unit 13 determines that the predetermined condition is satisfied, the terminal selection unit 14 newly selects a network connection terminal from the plurality of wireless terminal devices 202 in the ad hoc network 401.
 図13は、本発明の実施の形態に係る無線通信システムにおける外部ネットワーク接続端末の切り替え処理のシーケンスの一例を示す図である。 FIG. 13 is a diagram showing an example of a sequence of the switching process of the external network connection terminal in the wireless communication system according to the embodiment of the present invention.
 図13を参照して、外部ネットワーク接続端末である無線端末装置202Aとアクセスポイント101とが無線信号を送受信して通信中である状態において(ステップS81)、まず、無線端末装置202Aは、自己の電波状態を判定する。具体的には、たとえば、無線端末装置202Aは、アクセスポイント101からの無線信号の自己における受信電力が所定の閾値未満である場合に、外部ネットワーク接続端末を自己から他の無線端末装置202へ切り替えるべきであると判断する(ステップS82)。 Referring to FIG. 13, in a state where wireless terminal apparatus 202A, which is an external network connection terminal, and access point 101 are communicating by transmitting and receiving wireless signals (step S81), first, wireless terminal apparatus 202A has its own Determine the radio wave condition. Specifically, for example, the wireless terminal device 202A switches the external network connection terminal from itself to another wireless terminal device 202 when the received power of the wireless signal from the access point 101 is less than a predetermined threshold. It is determined that it should be (step S82).
 次に、無線端末装置202Aは、所定の基準に従うか、またはランダムに、アドホックネットワーク401における他の無線端末装置202、ここでは無線端末装置202Bを新たな外部ネットワーク接続端末として選択し(ステップS83)、接続指示を無線端末装置202Bへ送信する(ステップS84)。 Next, the wireless terminal device 202A follows a predetermined standard or randomly selects another wireless terminal device 202 in the ad hoc network 401, here, the wireless terminal device 202B as a new external network connection terminal (step S83). The connection instruction is transmitted to the wireless terminal device 202B (step S84).
 次に、無線端末装置202Bは、無線端末装置202Aから接続指示を受信して、前述のようなアクセスポイント101との接続処理を行ない(ステップS85)、以後、外部ネットワーク接続端末として動作する。 Next, the wireless terminal device 202B receives a connection instruction from the wireless terminal device 202A, performs connection processing with the access point 101 as described above (step S85), and thereafter operates as an external network connection terminal.
 次に、無線端末装置202Aおよびアクセスポイント101は、互いに通信接続を切断する処理を行なう(ステップS86)。 Next, the wireless terminal device 202A and the access point 101 perform processing for disconnecting the communication connection with each other (step S86).
 また、上記では、無線端末装置202が外部ネットワーク接続端末の切り替え処理を行なう構成であるとしたが、これに限定するものではなく、アクセスポイント101が外部ネットワーク接続端末の切り替え処理を行なう構成であってもよい。以下、アクセスポイント101が、電波状態に基づいて外部ネットワーク接続端末の切り替え処理を行なう動作を一例として説明する。 In the above description, the wireless terminal device 202 is configured to perform switching processing of the external network connection terminal. However, the present invention is not limited to this, and the access point 101 is configured to perform switching processing of the external network connection terminal. May be. Hereinafter, an operation in which the access point 101 performs the process of switching the external network connection terminal based on the radio wave state will be described as an example.
 図14は、本発明の実施の形態に係る無線通信システムにおける外部ネットワーク接続端末の切り替え処理のシーケンスの一例を示す図である。 FIG. 14 is a diagram showing an example of a sequence of the switching process of the external network connection terminal in the wireless communication system according to the embodiment of the present invention.
 図14を参照して、外部ネットワーク接続端末である無線端末装置202Aとアクセスポイント101とが無線信号を送受信して通信中である状態において(ステップS71)、まず、アクセスポイント101は、受信電波情報要求を、無線端末装置202Aへ送信し、また、無線端末装置202A経由で無線端末装置202Bへ送信する。アクセスポイント101は、定期的、または所定条件を満たすと、受信電波情報要求の送信を行なう(ステップS72)。 Referring to FIG. 14, in a state where wireless terminal apparatus 202A, which is an external network connection terminal, and access point 101 are communicating by transmitting and receiving wireless signals (step S71), access point 101 first receives received radio wave information. The request is transmitted to the wireless terminal device 202A, and is transmitted to the wireless terminal device 202B via the wireless terminal device 202A. The access point 101 transmits a received radio wave information request periodically or when a predetermined condition is satisfied (step S72).
 次に、無線端末装置202Bは、アクセスポイント101から受信電波情報要求を受信して、たとえばアクセスポイント101からの無線信号の自己における受信電力を示す受信電波情報を無線端末装置202A経由でアクセスポイント101へ送信する(ステップS73)。なお、図14では示していないが、アクセスポイント101は、たとえば、無線端末装置202B以外の無線端末装置202へも無線端末装置202A経由で受信電波情報要求を送信し、受信電波情報を取得する。 Next, the wireless terminal device 202B receives the received radio wave information request from the access point 101 and, for example, receives the received radio wave information indicating the received power of the radio signal from the access point 101 via the wireless terminal device 202A. (Step S73). Although not shown in FIG. 14, for example, the access point 101 transmits a received radio wave information request to the radio terminal device 202 other than the radio terminal device 202B via the radio terminal device 202A, and acquires the received radio wave information.
 次に、アクセスポイント101は、各無線端末装置202から受信した受信電波情報に基づいて、各無線端末装置202の電波状態を判定する。具体的には、たとえば、アクセスポイント101は、アクセスポイント101からの無線信号の無線端末装置202Aにおける受信電力と他の無線端末装置202における当該受信電力との差が所定の閾値以上である場合に、外部ネットワーク接続端末を無線端末装置202Aから他の無線端末装置202へ切り替えるべきであると判断する(ステップS74)。 Next, the access point 101 determines the radio wave state of each wireless terminal device 202 based on the received radio wave information received from each wireless terminal device 202. Specifically, for example, when the access point 101 has a difference between the received power of the wireless signal from the access point 101 at the wireless terminal device 202A and the received power at the other wireless terminal device 202 is greater than or equal to a predetermined threshold. Then, it is determined that the external network connection terminal should be switched from the wireless terminal device 202A to another wireless terminal device 202 (step S74).
 次に、アクセスポイント101は、たとえば上記受信電力が最大である無線端末装置202Bを新たな外部ネットワーク接続端末として選択し(ステップS75)、接続指示を無線端末装置202A経由で無線端末装置202Bへ送信する(ステップS76)。 Next, the access point 101 selects, for example, the wireless terminal device 202B having the maximum received power as a new external network connection terminal (step S75), and transmits a connection instruction to the wireless terminal device 202B via the wireless terminal device 202A. (Step S76).
 次に、無線端末装置202Bは、アクセスポイント101から接続指示を受信して、前述のようなアクセスポイント101との接続処理を行ない(ステップS77)、以後、外部ネットワーク接続端末として動作する。 Next, the wireless terminal device 202B receives a connection instruction from the access point 101, performs connection processing with the access point 101 as described above (step S77), and thereafter operates as an external network connection terminal.
 次に、無線端末装置202Aおよびアクセスポイント101は、互いに通信接続を切断する処理を行なう(ステップS78)。 Next, the wireless terminal device 202A and the access point 101 perform a process of disconnecting communication connection with each other (step S78).
 ところで、アドホックネットワークにおける複数の無線端末装置のうちのいずれか1つの無線端末装置を外部ネットワーク接続端末とし、この外部ネットワーク接続端末と無線基地局装置またはアクセスポイントとを接続し、これらの装置を介して当該通信を行なう構成において、外部ネットワーク接続端末が移動して無線基地局装置またはアクセスポイントから離れると、外部ネットワーク接続端末と無線基地局装置またはアクセスポイントとの間の電波状態が悪くなり、通信が不安定となってしまう。また、たとえば外部ネットワーク接続端末から無線基地局装置またはアクセスポイントへの無線信号の送信電力が大きくなることから、外部ネットワーク接続端末の消費電力が増大してしまう。 By the way, any one of a plurality of wireless terminal devices in an ad hoc network is set as an external network connection terminal, and the external network connection terminal is connected to a wireless base station device or an access point. When the external network connection terminal moves away from the radio base station apparatus or access point in the configuration for performing the communication, the radio wave condition between the external network connection terminal and the radio base station apparatus or access point deteriorates, Becomes unstable. Further, for example, the transmission power of the radio signal from the external network connection terminal to the radio base station apparatus or the access point increases, so that the power consumption of the external network connection terminal increases.
 これに対して、本発明の実施の形態に係る無線通信システムでは、状態比較部12は、ネットワーク接続端末の状態と他の無線端末装置202の状態とを比較する。そして、端末選択部14は、状態比較部12による比較結果に基づいて、アドホックネットワーク401における複数の無線端末装置202の中からネットワーク接続端末を新たに選択する。 On the other hand, in the wireless communication system according to the embodiment of the present invention, the state comparison unit 12 compares the state of the network connection terminal with the state of the other wireless terminal device 202. Then, the terminal selection unit 14 newly selects a network connection terminal from among the plurality of wireless terminal devices 202 in the ad hoc network 401 based on the comparison result by the state comparison unit 12.
 このような構成により、外部ネットワーク接続端末の状態が他の無線端末装置の状態と比べて悪くなった場合に、外部ネットワーク接続端末を切り替えることができるため、外部ネットワーク接続端末とアクセスポイント101との間の電波状態を良好に保ち、通信の安定化を図ることができる。また、外部ネットワーク接続端末からアクセスポイント101への無線信号の送信電力が大きくなることを防ぎ、外部ネットワーク接続端末の消費電力の増大を防ぐことができる。 With such a configuration, the external network connection terminal can be switched when the state of the external network connection terminal becomes worse than the state of other wireless terminal devices. It is possible to maintain a good radio wave condition between them and stabilize communication. Further, it is possible to prevent the transmission power of the radio signal from the external network connection terminal to the access point 101 from increasing, and to prevent the power consumption of the external network connection terminal from increasing.
 したがって、本発明の実施の形態に係る無線通信システムでは、複数の無線端末装置が互いに無線通信を行なうことが可能なネットワークにおける無線端末装置と他のネットワークにおける装置との間での通信を良好に行なうことができる。 Therefore, in the wireless communication system according to the embodiment of the present invention, communication between a wireless terminal device in a network in which a plurality of wireless terminal devices can perform wireless communication with each other and devices in other networks is improved. Can be done.
 また、外部ネットワーク接続端末以外の他の無線端末装置202の状態との比較を行なう構成により、たとえば外部ネットワーク接続端末の状態が悪くても、他の無線端末装置202の状態の方がさらに悪い場合に、不適切な外部ネットワーク接続端末の切り替えが行われることを防ぐことができる。 In addition, when the state of the other wireless terminal device 202 is worse, for example, even if the state of the external network connection terminal is bad, the state of the other wireless terminal device 202 is worse even if the state of the external network connection terminal is bad. In addition, it is possible to prevent inappropriate switching of the external network connection terminal.
 また、本発明の実施の形態に係る無線通信システムでは、状態判断部13は、ネットワーク接続端末の状態が所定条件を満たすか否かを判断する。そして、端末選択部14は、状態判断部13が上記所定条件を満たすと判断した場合に、ネットワーク接続端末の選択を行なう。 In the wireless communication system according to the embodiment of the present invention, state determination unit 13 determines whether the state of the network connection terminal satisfies a predetermined condition. The terminal selection unit 14 selects a network connection terminal when the state determination unit 13 determines that the predetermined condition is satisfied.
 このような構成により、外部ネットワーク接続端末の状態がある程度良い場合に、外部ネットワーク接続端末の切り替えが生じることを防ぐことができるため、外部ネットワーク接続端末の切り替えが頻繁に生じて通信が不安定になることを防ぐことができる。 With such a configuration, it is possible to prevent the switching of the external network connection terminal when the state of the external network connection terminal is good to some extent. Therefore, the switching of the external network connection terminal frequently occurs and the communication becomes unstable. Can be prevented.
 また、本発明の実施の形態に係る無線通信システムでは、上記状態は、アクセスポイント101からの電波の受信状態である。 In the wireless communication system according to the embodiment of the present invention, the above state is a state of receiving radio waves from the access point 101.
 このような構成により、アクセスポイント101との通信状態が良好な無線端末装置202を外部ネットワーク接続端末として適切に選択することができる。 With this configuration, it is possible to appropriately select the wireless terminal device 202 having a good communication state with the access point 101 as an external network connection terminal.
 また、本発明の実施の形態に係る無線通信システムでは、上記状態は、無線端末装置202におけるバッテリーの状態である。 In the wireless communication system according to the embodiment of the present invention, the above state is the state of the battery in the wireless terminal device 202.
 このような構成により、無線端末装置202が外部ネットワーク接続端末としての動作により電力を消費し、特定の無線端末装置202のバッテリー切れが生じやすくなることを防ぐことができ、アドホックネットワーク401における通信を安定して継続させることができる。 With such a configuration, it is possible to prevent the wireless terminal device 202 from consuming power due to the operation as an external network connection terminal, and the battery of the specific wireless terminal device 202 is likely to run out. It can be continued stably.
 また、本発明の実施の形態に係る無線通信システムでは、状態判断部13は、ネットワーク接続端末の状態が所定条件を満たすか否かを判断する。そして、端末選択部14は、状態判断部13が上記所定条件を満たすと判断した場合に、アドホックネットワーク401における複数の無線端末装置202の中からネットワーク接続端末を新たに選択する。 In the wireless communication system according to the embodiment of the present invention, state determination unit 13 determines whether the state of the network connection terminal satisfies a predetermined condition. Then, when the state determination unit 13 determines that the predetermined condition is satisfied, the terminal selection unit 14 newly selects a network connection terminal from the plurality of wireless terminal devices 202 in the ad hoc network 401.
 このような構成により、外部ネットワーク接続端末の状態が悪くなった場合に、外部ネットワーク接続端末を切り替えることができるため、外部ネットワーク接続端末とアクセスポイント101との間の電波状態を良好に保ち、通信の安定化を図ることができる。また、外部ネットワーク接続端末からアクセスポイント101への無線信号の送信電力が大きくなることを防ぎ、外部ネットワーク接続端末の消費電力の増大を防ぐことができる。 With such a configuration, the external network connection terminal can be switched when the state of the external network connection terminal is deteriorated, so that the radio wave condition between the external network connection terminal and the access point 101 is kept good and communication is performed. Can be stabilized. Further, it is possible to prevent the transmission power of the radio signal from the external network connection terminal to the access point 101 from increasing, and to prevent the power consumption of the external network connection terminal from increasing.
 なお、本発明の実施の形態に係る無線通信システムでは、無線端末装置202の電波状態またはバッテリー状態に基づいて外部ネットワーク接続端末を選択する構成であるとしたが、これに限定するものではない。たとえば、無線端末装置202において実行されるアプリケーションの種類等、通信の優先度に応じて外部ネットワーク接続端末を選択する構成であってもよい。また、たとえば、無線端末装置202が、省電力動作を行なう省電力モードおよび省電力動作を行なわない通常モードのいずれを選択しているかに基づいて、具体的には通常モードを選択している外部ネットワーク接続端末を優先的に選択する構成であってもよい。 In the wireless communication system according to the embodiment of the present invention, the external network connection terminal is selected based on the radio wave state or battery state of the wireless terminal device 202. However, the present invention is not limited to this. For example, the configuration may be such that an external network connection terminal is selected according to the communication priority, such as the type of application executed in the wireless terminal device 202. Further, for example, based on whether the wireless terminal device 202 selects a power saving mode in which a power saving operation is performed or a normal mode in which a power saving operation is not performed, specifically, the external mode in which the normal mode is selected. The configuration may be such that the network connection terminal is preferentially selected.
 さらに、無線端末装置202またはアクセスポイント101は、無線端末装置202 の電波状態およびバッテリー状態等の組み合わせに基づいて外部ネットワーク接続端末を選択する構成であってもよい。具体的には、たとえば、状態比較部12が、アクセスポイント101からの無線信号の無線端末装置202における受信電力を評価値に換算し、かつ無線端末装置202のバッテリー残量を評価値に換算し、各評価値の合計値を無線端末装置202ごとに算出して比較する。そして、端末選択部14が、状態比較部12による各無線端末装置202の合計値の比較結果に基づいて、アドホックネットワーク401における複数の無線端末装置202の中からネットワーク接続端末を新たに選択する。 Further, the wireless terminal device 202 or the access point 101 may be configured to select an external network connection terminal based on a combination of a radio wave state and a battery state of the wireless terminal device 202. Specifically, for example, the state comparison unit 12 converts the received power of the wireless signal from the access point 101 in the wireless terminal device 202 into an evaluation value, and converts the remaining battery level of the wireless terminal device 202 into an evaluation value. The total value of the evaluation values is calculated for each wireless terminal device 202 and compared. Then, the terminal selection unit 14 newly selects a network connection terminal from among the plurality of wireless terminal devices 202 in the ad hoc network 401 based on the comparison result of the total values of the wireless terminal devices 202 by the state comparison unit 12.
 また、本発明の実施の形態に係る無線通信システムにおいて、状態比較部は、アドホックネットワーク401におけるすべての無線端末装置202の状態と外部ネットワーク接続端末の状態とを比較する構成であってもよいし、アドホックネットワーク401における一部の無線端末装置202の状態と外部ネットワーク接続端末の状態とを比較する構成であってもよい。 In the wireless communication system according to the embodiment of the present invention, the state comparison unit may be configured to compare the states of all wireless terminal devices 202 in the ad hoc network 401 with the states of the external network connection terminals. The configuration may be such that the state of some of the wireless terminal devices 202 in the ad hoc network 401 is compared with the state of the external network connection terminal.
 また、本発明の実施の形態に係る無線通信システムでは、アドホックネットワーク401とIP網402との中継装置としてアクセスポイント101を設ける構成であるとしたが、これに限定するものではない。アクセスポイントの代わりに、フェムト基地局を設ける構成であってもよい。フェムト基地局は、以下のように定義される。 In the wireless communication system according to the embodiment of the present invention, the access point 101 is provided as a relay device between the ad hoc network 401 and the IP network 402. However, the present invention is not limited to this. A configuration in which a femto base station is provided instead of the access point may be employed. A femto base station is defined as follows.
 近年、移動通信サービスの加入者数の劇的な増加およびデータ通信による通信トラヒック量の増大から、より半径の小さいセルを形成することによって加入者および通信トラヒックを分散し、また、一定レベルの通信速度をユーザへ安定して提供することが望まれている。また、ビルの超高層化に伴う不感地対策のため、企業フロア内および一般家庭内への無線基地局装置の設置も望まれている。 In recent years, due to a dramatic increase in the number of subscribers of mobile communication services and an increase in the amount of communication traffic due to data communication, subscribers and communication traffic are distributed by forming smaller radius cells, and a certain level of communication It is desirable to provide speed to users in a stable manner. In addition, in order to deal with dead zones associated with the increase in the number of buildings, it is desired to install radio base station devices on the corporate floor and in ordinary households.
 これらの要望と併せて、無線基地局装置で使用される種々のデバイスの処理能力が飛躍的に向上したことによって無線基地局装置の小型化が進み、このような小型化された基地局が注目を集めている。 Together with these demands, the processing capability of various devices used in the radio base station apparatus has been dramatically improved, and the miniaturization of the radio base station apparatus has progressed. Collecting.
 この小型基地局(以下、フェムト基地局とも称する。)が形成するフェムトセル(Femto Cell)の半径は10メートル前後と小さいため、フェムト基地局は、マクロ基地局が形成するマクロセル(Macro Cell)の圏外となりマクロ基地局の設置が困難な屋内および地下街等の場所で使用されることが考えられる。 Since the radius of the femto cell (Femto Cell) formed by this small base station (hereinafter also referred to as a femto base station) is as small as about 10 meters, the femto base station It may be used in places such as indoors and underground malls where it is out of service area and it is difficult to install macro base stations.
 フェムトセルおよびアクセスモードは、3GPP(Third Generation Partnership Project)SPECTS22.220において以下のように説明されている。すなわち、フェムト基地局は、無線インタフェースを介して接続されている無線端末装置を、IPバックホール(backhaul)を用いて、移動通信事業者網に接続する顧客構内装置である。 The femtocell and access mode are described in 3GPP (Third Generation Partnership Project) SPECTS 22.220 as follows. That is, a femto base station is a customer premises apparatus that connects a wireless terminal device connected via a wireless interface to a mobile communication carrier network using an IP backhaul.
 また、フェムトセルのアクセスモードにおいて、クローズドアクセスモードのフェムト基地局は、関連するCSG(Closed Subscriber Group)メンバーにのみサービスを提供する。また、ハイブリッドモードのフェムト基地局は、関連するCSGメンバーおよびCSGノンメンバーにサービスを提供する。また、オープンアクセスモードのフェムト基地局は、通常の基地局として動作する。 Also, in the access mode of the femtocell, the femto base station in the closed access mode provides a service only to the related CSG (Closed Subscriber Group) members. The hybrid mode femto base station also provides services to the associated CSG members and CSG non-members. The femto base station in the open access mode operates as a normal base station.
 本発明の実施の形態に係る無線通信システムにおいても、このような3GPPの定義を適用してもよい。 Such a 3GPP definition may also be applied to the wireless communication system according to the embodiment of the present invention.
 また、上記定義と合わせて、あるいは別個に、以下のような定義を適用することも可能である。 Also, the following definitions can be applied together with the above definitions or separately.
 マクロ基地局およびピコ基地局は、事業者の管理下にあり、事業者と契約している無線基地局装置が通信可能な無線基地局装置である。また、マクロ基地局およびピコ基地局は、基本的に電源がオフになることはないと考えられる。 The macro base station and the pico base station are radio base station devices that are under the control of the operator and that can communicate with the radio base station device that has contracted with the operator. Further, it is considered that the macro base station and the pico base station are basically not turned off.
 また、フェムト基地局は、主に個人または法人の建物内に設置され、ユーザの事情により移動するまたは電源がオフとなる可能性がある無線基地局装置である。 Also, the femto base station is a radio base station apparatus that is mainly installed in an individual or corporate building and may move or be turned off depending on user circumstances.
 また、フェムト基地局は、オープン/ハイブリッド/クローズドのいずれかのアクセスモードで動作する。フェムト基地局は、クローズドアクセスモードで動作する場合には、登録済みのメンバー(端末)のみ接続可能となる。また、クローズドアクセスモードで動作する場合には、登録済みのメンバーにのみサービスを提供する。また、ハイブリッドモードで動作する場合には、登録済みのメンバー、および未登録のメンバーすなわちノンメンバーの両方にサービスを提供する。また、オープンアクセスモードで動作する場合には、マクロ基地局およびピコ基地局と同じ動作をする。 In addition, the femto base station operates in an access mode of open / hybrid / closed. When the femto base station operates in the closed access mode, only registered members (terminals) can be connected. When operating in the closed access mode, the service is provided only to registered members. When operating in the hybrid mode, the service is provided to both registered members and unregistered members, that is, non-members. When operating in the open access mode, the same operation as that of the macro base station and the pico base station is performed.
 上記実施の形態は、すべての点で例示であって制限的なものではないと考えられるべきである。本発明の範囲は、上記説明ではなく特許請求の範囲によって示され、特許請求の範囲と均等の意味および範囲内でのすべての変更が含まれることが意図される。 It should be considered that the above embodiment is illustrative in all points and not restrictive. The scope of the present invention is defined by the terms of the claims, rather than the description above, and is intended to include any modifications within the scope and meaning equivalent to the terms of the claims.
11 端末状態取得部
12 状態比較部
13 状態判断部
14 端末選択部
81 アンテナ
82 サーキュレータ
83 無線受信部
84 無線送信部
85 信号処理部
86 受信信号処理部
87 送信信号処理部
88 制御部
89 入出力部
91 アンテナ
92 サーキュレータ
93 無線受信部
94 無線送信部
95 信号処理部
96 受信信号処理部
97 送信信号処理部
98 制御部
101 アクセスポイント(無線通信装置)
202,202A,202B,202C,202D 無線端末装置
301 無線通信システム
DESCRIPTION OF SYMBOLS 11 Terminal state acquisition part 12 State comparison part 13 State judgment part 14 Terminal selection part 81 Antenna 82 Circulator 83 Wireless reception part 84 Wireless transmission part 85 Signal processing part 86 Reception signal processing part 87 Transmission signal processing part 88 Control part 89 Input / output part 91 antenna 92 circulator 93 wireless reception unit 94 wireless transmission unit 95 signal processing unit 96 reception signal processing unit 97 transmission signal processing unit 98 control unit 101 access point (wireless communication apparatus)
202, 202A, 202B, 202C, 202D Wireless terminal device 301 Wireless communication system

Claims (10)

  1.  互いに無線通信を行なうことが可能な複数の無線端末装置と、
     前記複数の無線端末装置のうちのいずれか1つの無線端末装置である接続端末と無線通信を行なうことにより、前記複数の無線端末装置以外の装置と前記複数の無線端末装置との間で送受信される通信データを中継するための無線通信装置と、
     前記接続端末の状態と他の前記無線端末装置の状態とを比較するための状態比較部と、
     前記状態比較部による比較結果に基づいて、前記複数の無線端末装置の中から前記接続端末を新たに選択するための端末選択部と
     を備える、無線通信システム。
    A plurality of wireless terminal devices capable of performing wireless communication with each other;
    By performing wireless communication with a connection terminal that is any one of the plurality of wireless terminal devices, transmission / reception is performed between devices other than the plurality of wireless terminal devices and the plurality of wireless terminal devices. A wireless communication device for relaying communication data;
    A state comparison unit for comparing the state of the connection terminal and the state of the other wireless terminal device;
    A wireless communication system comprising: a terminal selection unit for newly selecting the connection terminal from the plurality of wireless terminal devices based on a comparison result by the state comparison unit.
  2.  前記無線通信システムは、さらに、
     前記接続端末の状態が所定条件を満たすか否かを判断するための状態判断部を備え、
     前記端末選択部は、前記状態判断部が前記所定条件を満たすと判断した場合に、前記接続端末の選択を行なう、
     請求項1に記載の無線通信システム。
    The wireless communication system further includes:
    A state determination unit for determining whether the state of the connection terminal satisfies a predetermined condition;
    The terminal selection unit selects the connection terminal when the state determination unit determines that the predetermined condition is satisfied.
    The wireless communication system according to claim 1.
  3.  前記状態は、前記無線通信装置からの電波の受信状態である、
     請求項1または請求項2に記載の無線通信システム。
    The state is a reception state of radio waves from the wireless communication device.
    The radio | wireless communications system of Claim 1 or Claim 2.
  4.  前記状態は、バッテリーの状態である、
     請求項1から請求項3のいずれか1 項に記載の無線通信システム。
    The state is a state of a battery.
    The radio | wireless communications system of any one of Claims 1-3.
  5.  互いに無線通信を行なうことが可能な複数の無線端末装置と、
     前記複数の無線端末装置のうちのいずれか1つの無線端末装置である接続端末と無線通信を行なうことにより、前記複数の無線端末装置以外の装置と前記複数の無線端末装置との間で送受信される通信データを中継するための無線通信装置と、
     前記接続端末の状態が所定条件を満たすか否かを判断するための状態判断部と、
     前記状態判断部が前記所定条件を満たすと判断した場合に、前記複数の無線端末装置の中から前記接続端末を新たに選択するための端末選択部とを備える、
     無線通信システム。
    A plurality of wireless terminal devices capable of performing wireless communication with each other;
    By performing wireless communication with a connection terminal that is any one of the plurality of wireless terminal devices, transmission / reception is performed between devices other than the plurality of wireless terminal devices and the plurality of wireless terminal devices. A wireless communication device for relaying communication data;
    A state determination unit for determining whether the state of the connection terminal satisfies a predetermined condition;
    A terminal selection unit for newly selecting the connection terminal from the plurality of wireless terminal devices when the state determination unit determines that the predetermined condition is satisfied;
    Wireless communication system.
  6.  互いに無線通信を行なうことが可能な複数の無線端末装置のうちのいずれか1つの無線端末装置である接続端末と無線通信を行なうことにより、前記複数の無線端末装置以外の装置と前記複数の無線端末装置との間で送受信される通信データを中継するための無線通信装置であって、
     前記接続端末の状態と他の前記無線端末装置の状態とを比較するための状態比較部と、
     前記状態比較部による比較結果に基づいて、前記複数の無線端末装置の中から前記接続端末を新たに選択するための端末選択部とを備える、
     無線通信装置。
    By performing wireless communication with a connection terminal that is any one of a plurality of wireless terminal devices capable of performing wireless communication with each other, a device other than the plurality of wireless terminal devices and the plurality of wireless devices A wireless communication device for relaying communication data transmitted / received to / from a terminal device,
    A state comparison unit for comparing the state of the connection terminal and the state of the other wireless terminal device;
    A terminal selection unit for newly selecting the connection terminal from the plurality of wireless terminal devices based on a comparison result by the state comparison unit;
    Wireless communication device.
  7.  互いに無線通信を行なうことが可能な複数の無線端末装置のうちのいずれか1つの無線端末装置である接続端末と無線通信を行なうことにより、前記複数の無線端末装置以外の装置と前記複数の無線端末装置との間で送受信される通信データを中継するための無線通信装置であって、
     前記接続端末の状態が所定条件を満たすか否かを判断するための状態判断部と、
     前記状態判断部が前記所定条件を満たすと判断した場合に、前記複数の無線端末装置の中から前記接続端末を新たに選択するための端末選択部とを備える、
     無線通信装置。
    By performing wireless communication with a connection terminal that is any one of a plurality of wireless terminal devices capable of performing wireless communication with each other, a device other than the plurality of wireless terminal devices and the plurality of wireless devices A wireless communication device for relaying communication data transmitted / received to / from a terminal device,
    A state determination unit for determining whether the state of the connection terminal satisfies a predetermined condition;
    A terminal selection unit for newly selecting the connection terminal from the plurality of wireless terminal devices when the state determination unit determines that the predetermined condition is satisfied;
    Wireless communication device.
  8.  自己および自己が無線通信可能な他の複数の無線端末装置以外の装置と自己との間で通信データの送受信を行う場合、自己または前記他の複数の無線端末装置のいずれか1つを、前記通信データを中継する無線通信端末との接続を行う接続端末として、前記装置との間で前記通信データの送受信を行う無線端末装置であって、
     自己が接続端末である場合、自己の状態が所定条件を満たすか否かを判断するための状態判断部と、
     自己が前記所定条件を満たすと判断した場合に、前記他の複数の無線端末装置の中から前記接続端末を新たに選択するための端末選択部とを備える、
     無線端末装置。
    When transmitting and receiving communication data between itself and a device other than a plurality of other wireless terminal devices capable of wireless communication with itself, the self or the other plurality of wireless terminal devices are A wireless terminal device that transmits and receives the communication data to and from the device as a connection terminal that connects to a wireless communication terminal that relays communication data,
    When the self is a connected terminal, a state determination unit for determining whether or not the state of the self satisfies a predetermined condition;
    A terminal selection unit for newly selecting the connection terminal from the plurality of other wireless terminal devices when it is determined that the predetermined condition is satisfied;
    Wireless terminal device.
  9.  互いに無線通信を行なうことが可能な複数の無線端末装置と、
     前記複数の無線端末装置のうちのいずれか1つの無線端末装置である接続端末と無線通信を行なうことにより、前記複数の無線端末装置以外の装置と前記複数の無線端末装置との間で送受信される通信データを中継するための無線通信装置とを備える無線通信システムにおける通信制御方法であって、
     前記接続端末の状態と他の前記無線端末装置の状態とを比較するステップと、
     比較結果に基づいて、前記複数の無線端末装置の中から前記接続端末を新たに選択するステップとを含む、
     通信制御方法。
    A plurality of wireless terminal devices capable of performing wireless communication with each other;
    By performing wireless communication with a connection terminal that is any one of the plurality of wireless terminal devices, transmission / reception is performed between devices other than the plurality of wireless terminal devices and the plurality of wireless terminal devices. A communication control method in a wireless communication system comprising a wireless communication device for relaying communication data,
    Comparing the state of the connected terminal with the state of the other wireless terminal device;
    Selecting the connection terminal anew from the plurality of wireless terminal devices based on the comparison result,
    Communication control method.
  10.  互いに無線通信を行なうことが可能な複数の無線端末装置と、
     前記複数の無線端末装置のうちのいずれか1つの無線端末装置である接続端末と無線通信を行なうことにより、前記複数の無線端末装置以外の装置と前記複数の無線端末装置との間で送受信される通信データを中継するための無線通信装置とを備える無線通信システムにおける通信制御方法であって、
     前記接続端末の状態が所定条件を満たすか否かを判断するステップと、
     前記所定条件を満たすと判断した場合に、前記複数の無線端末装置の中から前記接続端末を新たに選択するステップとを含む、
     通信制御方法。
    A plurality of wireless terminal devices capable of performing wireless communication with each other;
    By performing wireless communication with a connection terminal that is any one of the plurality of wireless terminal devices, transmission / reception is performed between devices other than the plurality of wireless terminal devices and the plurality of wireless terminal devices. A communication control method in a wireless communication system comprising a wireless communication device for relaying communication data,
    Determining whether the state of the connected terminal satisfies a predetermined condition;
    A step of newly selecting the connection terminal from the plurality of wireless terminal devices when it is determined that the predetermined condition is satisfied,
    Communication control method.
PCT/JP2013/062569 2012-05-17 2013-04-30 Wireless communication system, wireless communication device, and communication control method WO2013172195A1 (en)

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JP2006041633A (en) * 2004-07-22 2006-02-09 Nec Corp Mobile base station, positioning system thereof, terminal positioning system, radio terminal and base station positioning program
JP2010161605A (en) * 2009-01-08 2010-07-22 Nakayo Telecommun Inc Communication terminal, master device, and method of constructing extension phone system

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JP2004129042A (en) * 2002-10-04 2004-04-22 Sony Corp Equipment, system, and method for processing communication and computer program
JP2006041633A (en) * 2004-07-22 2006-02-09 Nec Corp Mobile base station, positioning system thereof, terminal positioning system, radio terminal and base station positioning program
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