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JP2013192271A - Radio relay device and radio relay method - Google Patents

Radio relay device and radio relay method Download PDF

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JP2013192271A
JP2013192271A JP2013130280A JP2013130280A JP2013192271A JP 2013192271 A JP2013192271 A JP 2013192271A JP 2013130280 A JP2013130280 A JP 2013130280A JP 2013130280 A JP2013130280 A JP 2013130280A JP 2013192271 A JP2013192271 A JP 2013192271A
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channel
lan
wireless lan
wireless
wan
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JP5650282B2 (en
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Makoto Umeuchi
誠 梅内
Akira Kishida
朗 岸田
Kengo Nagata
健悟 永田
Takeshi Hirakuri
健史 平栗
Tomohiro Tokuyasu
朋浩 徳安
Toshihiro Manabe
利裕 眞部
Hiroshi Hojo
博史 北條
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Nippon Telegraph and Telephone Corp
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Abstract

PROBLEM TO BE SOLVED: To obtain stable wireless LAN communication by reducing a channel switchover frequency on the LAN side relative to a handover on the WAN side, and by reducing the interruption of data communication accompanied with a channel switchover.SOLUTION: When initially setting a wireless LAN channel on the LAN side, if a connection to the wireless LAN is established on the WAN side, channel setting means acquires a connected channel number, whereas if a connection to the wireless LAN is not established on the WAN side, the channel setting means acquires a channel number having the maximum connection frequency according to the connection history of the wireless LAN channels on the WAN side, so as to set a channel number identical to or remotest from the acquired channel number, as a wireless LAN channel on the LAN side.

Description

本発明は、無線LAN端末と、WAN側の複数のアクセスネットワークとの間で中継処理を行う無線中継装置および無線中継方法に関する。特に、WAN側無線LANとLAN側無線LANでチャネル近接による干渉を回避するために、WAN側の無線LANチャネルに応じてLAN側の無線LANチャネルを調整する機能を有する無線中継装置および無線中継方法に関する。   The present invention relates to a wireless relay device and a wireless relay method for performing relay processing between a wireless LAN terminal and a plurality of access networks on the WAN side. In particular, a wireless relay apparatus and a wireless relay method having a function of adjusting the wireless LAN channel on the LAN side according to the wireless LAN channel on the WAN side in order to avoid interference due to channel proximity between the wireless LAN on the WAN side and the wireless LAN on the LAN side About.

図5は、従来の無線中継装置の構成例を示す(特許文献1,特許文献2)。
図5において、無線中継装置1は、携帯電話やWiMAXなどのアクセスネットワーク11と無線接続するWAN側無線接続部101と、アクセスネットワークの1つである無線LAN12,13と無線接続するWAN側無線LAN接続部102と、無線LAN端末21と無線接続するLAN側無線LAN接続部201を備える。また、WAN側無線接続部101またはWAN側無線LAN接続部102と、LAN側無線LAN接続部201との間の接続制御を行う接続制御部301を備える。接続制御部301は、アクセスネットワーク11とWAN側無線接続部101との間、および無線LAN12,13とWAN側無線LAN接続部102との間の電波状態をそれぞれモニタし、電波状態の良好なアクセスネットワークに対応するWAN側の接続部を選択してLAN側無線LAN接続部201に接続する。
FIG. 5 shows a configuration example of a conventional wireless relay device (Patent Document 1, Patent Document 2).
In FIG. 5, a wireless relay device 1 includes a WAN-side wireless connection unit 101 that is wirelessly connected to an access network 11 such as a mobile phone or WiMAX, and a WAN-side wireless LAN that is wirelessly connected to wireless LANs 12 and 13 that are one of the access networks. A connection unit 102 and a LAN-side wireless LAN connection unit 201 for wireless connection with the wireless LAN terminal 21 are provided. In addition, a connection control unit 301 that performs connection control between the WAN side wireless connection unit 101 or the WAN side wireless LAN connection unit 102 and the LAN side wireless LAN connection unit 201 is provided. The connection control unit 301 monitors the radio wave state between the access network 11 and the WAN side wireless connection unit 101, and between the wireless LANs 12 and 13 and the WAN side wireless LAN connection unit 102, and accesses with good radio wave state. A WAN-side connection unit corresponding to the network is selected and connected to the LAN-side wireless LAN connection unit 201.

ここでは、接続制御部301を介してLAN側無線LAN接続部201とWAN側無線LAN接続部102が接続されている状態を示す。無線LAN端末21は、無線中継装置1のLAN側無線LAN接続部201、接続制御部301、WAN側無線LAN接続部102を介して、無線LAN12の無線基地局(AP)に接続され、無線LAN12を介して基幹ネットワーク10に接続される。   Here, a state where the LAN side wireless LAN connection unit 201 and the WAN side wireless LAN connection unit 102 are connected via the connection control unit 301 is shown. The wireless LAN terminal 21 is connected to a wireless base station (AP) of the wireless LAN 12 via the LAN-side wireless LAN connection unit 201, the connection control unit 301, and the WAN-side wireless LAN connection unit 102 of the wireless relay device 1. Connected to the backbone network 10.

近年、パソコンやPDAだけでなく、携帯電話、ゲーム機、ディジタルカメラ等にも無線LANが搭載されている。無線中継装置1は、LAN側無線LAN接続部201を無線LAN基地局として機能させることにより、これらの機器を様々なアクセスネットワークに接続させることが可能になる。特に、無線LAN端末21が最も普及しているIEEE802.11b 規格に準拠した機器であっても、WAN側無線LAN接続部102として、最新の無線LAN技術である高速化技術(IEEE802.11a,g,n)や QoSサポート技術(IEEE802.11e)等を利用することにより、より高速で安定した無線LAN接続が可能となる。   In recent years, wireless LANs are mounted not only on personal computers and PDAs but also on mobile phones, game machines, digital cameras, and the like. The wireless relay device 1 can connect these devices to various access networks by causing the LAN-side wireless LAN connection unit 201 to function as a wireless LAN base station. In particular, even if the wireless LAN terminal 21 is a device that conforms to the most popular IEEE802.11b standard, the WAN-side wireless LAN connection unit 102 can use the latest wireless LAN technology for speeding-up technology (IEEE802.11a, g , n), QoS support technology (IEEE802.11e), and the like, a faster and more stable wireless LAN connection becomes possible.

さらに、無線中継装置1は、WAN側無線LAN接続部102とLAN側無線LAN接続部201との間に、チャネル変更判断部401および動的チャネル変更部402を接続し、WAN側無線LANで使用されている無線チャネルに応じて、LAN側無線LANの無線チャネルを動的に制御する構成である。チャネル変更判断部401はWAN側無線LAN接続部102から無線LAN12との接続に使用するチャネル番号を取得する。動的チャネル変更部402は、チャネル変更判断部401が取得したWAN側チャネル番号と、LAN側無線LAN接続部201が使用するLAN側チャネル番号が同一または近接していることを検出すると、LAN側チャネル番号をWAN側チャネル番号と同一かつ近接していない他のチャネル番号に変更するようにLAN側無線LAN接続部201に指示する。LAN側無線LAN接続部201は、動的チャネル変更部402から使用するチャネル番号の変更を指示されたときに、無線LAN端末21との間の無線チャネルを変更したチャネル番号に切り替える機能を有する。   Further, the wireless relay device 1 connects the channel change determination unit 401 and the dynamic channel change unit 402 between the WAN side wireless LAN connection unit 102 and the LAN side wireless LAN connection unit 201, and is used in the WAN side wireless LAN. The wireless channel of the LAN-side wireless LAN is dynamically controlled according to the wireless channel being used. The channel change determination unit 401 acquires a channel number used for connection with the wireless LAN 12 from the WAN side wireless LAN connection unit 102. When the dynamic channel change unit 402 detects that the WAN side channel number acquired by the channel change determination unit 401 and the LAN side channel number used by the LAN side wireless LAN connection unit 201 are the same or close to each other, The LAN side wireless LAN connection unit 201 is instructed to change the channel number to another channel number that is not the same as or close to the WAN side channel number. The LAN-side wireless LAN connection unit 201 has a function of switching the channel number with the wireless LAN terminal 21 to the changed channel number when the dynamic channel changing unit 402 is instructed to change the channel number to be used.

一般に、 2.4GHz帯を使用する無線LANシステム(IEEE802.11b,g) では、使用チャネル番号の近傍まで電波干渉を与えることが知られている。そこで、チャネル変更判断部401および動的チャネル変更部402は、WAN側無線LAN接続部102が使用しているチャネル番号と同一または近接しているチャネル番号をLAN側無線LAN接続部201で使用しないように制御する。これにより、WAN側無線LANとLAN側無線LANとの間の干渉を回避し、双方で良好な通信品質を確保することができる。   In general, in a wireless LAN system (IEEE802.11b, g) using the 2.4 GHz band, it is known to cause radio wave interference up to the vicinity of the used channel number. Therefore, the channel change determination unit 401 and the dynamic channel change unit 402 do not use a channel number that is the same as or close to the channel number used by the WAN side wireless LAN connection unit 102 in the LAN side wireless LAN connection unit 201. To control. Thereby, interference between WAN side wireless LAN and LAN side wireless LAN can be avoided, and favorable communication quality can be ensured in both.

なお、WAN側とLAN側で同一のチャネル番号を積極的に使用する方法もある。例えば、一方で無線チャネル1のときに他方で無線チャネル2,3,4を使用するより、むしろ同一の無線チャネル1を使用した方が好ましい。それは以下の理由による。無線LANにおけるCSMA/CAでは、実際の信号受信電力に基づいて無線チャネルに送信されている信号の有無を判別する物理的なキャリアセンスの他に、受信信号を解読して得られる無線チャネルの予約時間に基づいて将来の信号の有無を判別する仮想的なキャリアセンスが利用されている。このため、干渉波である他の無線LANが使用している無線チャネルと同一無線チャネルを使用すれば、物理的なキャリアセンスと仮想的なキャリアセンスの両方により干渉を検出できる。一方、異なる無線チャネルを使用すると、物理的なキャリアセンスのみで干渉回避することになるために干渉回避の精度が低下し、干渉の影響を受けやすくなる。よって、他の無線LANと近接した無線チャネルを使用せざるをえない状況では、あえて他の無線LANが使用している無線チャネルと同一無線チャネルを使用する方が好ましいことになる。   There is also a method of actively using the same channel number on the WAN side and the LAN side. For example, it is preferable to use the same radio channel 1 rather than the radio channels 2, 3, 4 on the other side when the radio channel 1 is on the other side. The reason is as follows. In CSMA / CA in a wireless LAN, in addition to physical carrier sense for determining the presence / absence of a signal transmitted to a wireless channel based on actual signal reception power, reservation of a wireless channel obtained by decoding a received signal A virtual carrier sense that determines the presence or absence of a future signal based on time is used. For this reason, if the same radio channel as that used by another wireless LAN, which is an interference wave, is used, interference can be detected by both physical carrier sense and virtual carrier sense. On the other hand, when different radio channels are used, interference is avoided only by physical carrier sense, so that the accuracy of interference avoidance is lowered and it is easily affected by interference. Therefore, in a situation where a wireless channel close to another wireless LAN must be used, it is preferable to use the same wireless channel as the wireless channel used by the other wireless LAN.

特開2010−021878号公報JP 2010-021878 A WO2009/031282WO2009 / 031282

WAN側無線LANとLAN側無線LANは、従来は相互干渉を回避するために、図6(1) に示すように遠いチャネルを選択するか、図6(2) に示すように同一チャネルを選択する。例えば、図7において、WAN側でチャネルf1、LAN側でチャネルf11が選択されているとき、WAN側で無線LAN12から無線LAN13へのハンドオーバによりWAN側がチャネルf6に変更になる場合を想定する。このとき、LAN側のチャネルf11と近接して干渉が発生する可能性があるため、WAN側に合せてLAN側もチャネルf11からチャネルf6への切り替えが行われる。   In order to avoid mutual interference, the WAN side wireless LAN and the LAN side wireless LAN conventionally select the far channel as shown in FIG. 6 (1) or the same channel as shown in FIG. 6 (2). To do. For example, in FIG. 7, it is assumed that when the channel f1 is selected on the WAN side and the channel f11 is selected on the LAN side, the WAN side is changed to the channel f6 by handover from the wireless LAN 12 to the wireless LAN 13 on the WAN side. At this time, since there is a possibility that interference may occur in the vicinity of the LAN side channel f11, the LAN side is also switched from the channel f11 to the channel f6 in accordance with the WAN side.

このように、WAN側のハンドオーバに連動してLAN側のチャネル切替が発生すると、ハンドオーバおよびチャネル切替期間中は回線が一時的に切断され、データ通信が突然終了し、通信品質が低下する問題がある。   As described above, when channel switching on the LAN side occurs in conjunction with handover on the WAN side, the line is temporarily disconnected during the handover and channel switching period, data communication is suddenly terminated, and communication quality is deteriorated. is there.

本発明は、データ通信を中断させることなくハンドオーバおよびチャネル切替を行い、安定した無線LAN通信を実現することができる無線中継装置および無線中継方法を提供することを目的とする。   An object of the present invention is to provide a wireless relay device and a wireless relay method that can perform stable wireless LAN communication by performing handover and channel switching without interrupting data communication.

本発明は、WAN側のハンドオーバに対するLAN側のチャネル切替の頻度を低減し、チャネル切替に伴うデータ通信の中断を低減して安定した無線LAN通信を実現することができる無線中継装置および無線中継方法を提供することを目的とする。   The present invention reduces the frequency of channel switching on the LAN side for handover on the WAN side, reduces the interruption of data communication associated with channel switching, and can realize stable wireless LAN communication and a wireless relay method The purpose is to provide.

第1の発明は、LAN側の無線LAN端末と、WAN側の無線LANとの間で中継処理を行う中継処理手段と、WAN側の無線LANチャネルに応じてLAN側の無線LANチャネルを設定し、無線LAN間でチャネル近接による干渉を回避するチャネル設定手段とを備えた無線中継装置において、チャネル設定手段は、LAN側の無線LANチャネルを初期設定する際に、WAN側で無線LANに接続している場合には接続しているチャネル番号を取得し、WAN側で無線LANに接続していない場合にはWAN側の無線LANチャネルの接続履歴に応じて接続頻度が最大のチャネル番号を取得し、ここで取得したチャネル番号と同一または最も離れたチャネル番号をLAN側の無線LANチャネルとして設定する構成である。   1st invention sets the wireless LAN channel on the LAN side according to the wireless LAN channel on the WAN side, the relay processing means for performing the relay processing between the wireless LAN terminal on the LAN side and the wireless LAN on the WAN side In the wireless relay device comprising the channel setting means for avoiding interference due to channel proximity between wireless LANs, the channel setting means connects to the wireless LAN on the WAN side when initially setting the wireless LAN channel on the LAN side. If it is not connected to the wireless LAN on the WAN side, the channel number with the maximum connection frequency is acquired according to the connection history of the wireless LAN channel on the WAN side. The channel number that is the same as or farthest from the channel number acquired here is set as the wireless LAN channel on the LAN side.

第2の発明は、LAN側の無線LAN端末とWAN側の無線LANとの間で中継処理を行い、WAN側の無線LANチャネルに応じてLAN側の無線LANチャネルを設定し、無線LAN間でチャネル近接による干渉を回避する無線中継方法において、LAN側の無線LANチャネルを初期設定する際に、WAN側の無線LANチャネルの接続履歴に応じて接続頻度が最大の無線LANチャネルを特定し、所定の無線LANチャネルの中で当該無線LANチャネルと同一または最も離れたチャネルをLAN側の無線LANチャネルとして設定する。   The second invention performs a relay process between the wireless LAN terminal on the LAN side and the wireless LAN on the WAN side, sets the wireless LAN channel on the LAN side according to the wireless LAN channel on the WAN side, and In the wireless relay method for avoiding interference due to channel proximity, when initializing a wireless LAN channel on the LAN side, the wireless LAN channel with the highest connection frequency is identified according to the connection history of the wireless LAN channel on the WAN side, and predetermined Among the wireless LAN channels, a channel that is the same as or farthest from the wireless LAN channel is set as the wireless LAN channel on the LAN side.

第1および第2の発明は、LAN側の無線LANチャネルを初期設定する際に、WAN側の無線LANチャネルが切り替わっても、LAN側の無線LANチャネル切替を要する頻度が低くなるような設定が可能である。これにより、WAN側のハンドオーバに対するLAN側のチャネル切替によるデータ通信の中断頻度を低減し、安定した無線LAN通信を実現することができる。   In the first and second aspects of the invention, when the wireless LAN channel on the LAN side is initialized, even if the wireless LAN channel on the WAN side is switched, the frequency of switching the wireless LAN channel on the LAN side is reduced. Is possible. Thereby, the frequency of interruption of data communication due to channel switching on the LAN side for WAN side handover can be reduced, and stable wireless LAN communication can be realized.

本発明の無線中継装置の基本構成を示す図である。It is a figure which shows the basic composition of the radio relay apparatus of this invention. 基本構成におけるハンドオーバおよびLAN側のチャネル切替手順の一例を示すフローチャートである。It is a flowchart which shows an example of the channel switching procedure by the hand-over and LAN side in a basic composition. 本発明の無線中継装置の実施例構成を示す図である。It is a figure which shows the Example structure of the radio relay apparatus of this invention. 実施例におけるLAN側無線LANチャネルの初期設定手順の一例を示すフローチャートである。It is a flowchart which shows an example of the initial setting procedure of the LAN side wireless LAN channel in an Example. 従来の無線中継装置の構成例を示す図である。It is a figure which shows the structural example of the conventional wireless relay apparatus. WAN側、LAN側のチャネル選択例を示す図である。It is a figure which shows the example of channel selection by the WAN side and LAN side. WAN側のハンドオーバ、LAN側のチャネル切替による課題を説明する図である。It is a figure explaining the subject by the handover by WAN side, and the channel switching by the LAN side.

図1は、本発明の無線中継装置の基本構成を示す。
図1において、無線中継装置の基本構成は、図5に示す構成に加えて接続制御部301、チャネル変更判断部401および動的チャネル変更部402に接続される通信監視部302を備える。通信監視部302は、WAN側の無線LAN間でハンドオーバが必要になり、LAN側のチャネル切替処理を開始したときに、接続制御部301からトラフィックの有無を取得し、無通信期間が所定期間継続したときに動的チャネル変更部402に対してチャネル切替処理を有効とし、また切替制御部301に対してハンドオーバを有効とする制御を行う。
FIG. 1 shows a basic configuration of a wireless relay device of the present invention.
In FIG. 1, the basic configuration of the wireless relay device includes a communication monitoring unit 302 connected to a connection control unit 301, a channel change determination unit 401, and a dynamic channel change unit 402 in addition to the configuration shown in FIG. 5. The communication monitoring unit 302 needs to perform handover between the wireless LANs on the WAN side, and acquires the presence / absence of traffic from the connection control unit 301 when the channel switching process on the LAN side is started, and the non-communication period continues for a predetermined period. Then, control is performed to enable the channel switching process for the dynamic channel changing unit 402 and to enable the handover to the switching control unit 301.

図2は、基本構成におけるハンドオーバおよびLAN側のチャネル切替手順の一例を示す。
図2において、例えば接続中の無線LANの受信レベル(RSSI)または通信品質を監視し(S1)、その低下によりハンドオーバ可能な他の無線LAN基地局を探索する(S2)。ここで、ハンドオーバ可能な無線LAN基地局が見つかれば、LAN側のチャネル切替の要否を判断するために、WAN側でハンドオーバ予定のチャネル番号を取得し(S3)、当該WAN側のチャネル番号とLAN側のチャネル番号が近接するか否かを判断する(S4)。ここで、WAN側とLAN側のチャネル番号が近接していなければ、あるいは同一であれば(S4:No)、LAN側のチャネル番号を維持する(S5)。一方、WAN側とLAN側のチャネル番号が非同一で近接していれば、WAN側のチャネル番号から所定数離れた遠いチャネルの利用が可能か否かを判断し(S6)、利用可能であればWAN側のチャネル番号から所定数離れた遠いチャネル番号を選択し(S7)、利用不可であればWAN側のチャネル番号と同一のチャネル番号を選択する(S8)。
FIG. 2 shows an example of handover and LAN side channel switching procedures in the basic configuration.
In FIG. 2, for example, the reception level (RSSI) or communication quality of the connected wireless LAN is monitored (S1), and another wireless LAN base station that can be handed over due to the decrease is searched (S2). If a wireless LAN base station that can be handed over is found, a channel number scheduled for handover is acquired on the WAN side in order to determine whether or not channel switching on the LAN side is necessary (S3). It is determined whether or not the channel numbers on the LAN side are close (S4). If the channel numbers on the WAN side and the LAN side are not close or the same (S4: No), the LAN side channel number is maintained (S5). On the other hand, if the channel numbers on the WAN side and the LAN side are not identical and close to each other, it is determined whether or not a distant channel that is a predetermined number away from the channel number on the WAN side can be used (S6). For example, a channel number that is a predetermined number away from the channel number on the WAN side is selected (S7), and if it cannot be used, the same channel number as the WAN side channel number is selected (S8).

次に、ステップS5またはS7またはS8でLAN側のチャネル番号が決まれば、通信監視部302でデータ通信のトラフィックを監視し、無通信期間が所定期間継続するか否かを判定する(S9,S10)。そして、無通信期間満了になるまで待機し、無通信期間満了になった時点で、LAN側のチャネル番号が維持される場合はWAN側のハンドオーバのみを行い(S5,S9,S11)、LAN側のチャネル番号が変更になる場合には、WAN側のハンドオーバとLAN側のチャネル切替を同時に行う(S7,S8,S10,S12)。これにより、データ通信を中断することなく、WAN側のハンドオーバおよびLAN側のチャネル切替を行うことができる。   Next, when the channel number on the LAN side is determined in step S5, S7 or S8, the communication monitoring unit 302 monitors the data communication traffic and determines whether or not the non-communication period continues for a predetermined period (S9, S10). ). Then, it waits until the no-communication period expires, and when the no-communication period expires, if the LAN-side channel number is maintained, only the WAN-side handover is performed (S5, S9, S11). When the channel number is changed, WAN side handover and LAN side channel switching are performed simultaneously (S7, S8, S10, S12). As a result, WAN-side handover and LAN-side channel switching can be performed without interrupting data communication.

基本構成は、WAN側のハンドオーバおよびLAN側のチャネル切替の際に回線が一時的に切断されることから、データ通信が行われていないときを見計らってハンドオーバとチャネル切替を実施するものであった。本発明では、図2のステップS4において、WAN側でハンドオーバ予定のチャネル番号に対して、LAN側のチャネル番号が近接していなければ、あるいは同一であれば、LAN側のチャネル切替が不要であることに着目する。   The basic configuration is that the line is temporarily disconnected at the time of WAN-side handover and LAN-side channel switching, so that handover and channel switching are performed in anticipation of no data communication. . In the present invention, in step S4 in FIG. 2, if the channel number on the LAN side is not close to or the same as the channel number scheduled for handover on the WAN side, channel switching on the LAN side is not necessary. Focus on that.

本基本構成では、無線LAN端末21を無線中継装置1に接続し、その無線LANチャネルを初期設定する際に、WAN側の無線LANチャネルの接続履歴を取得し、WAN側で最も接続数の多いチャネルを特定し、当該チャネルから遠いまたは同一のチャネルをLAN側の無線LANのチャネルとして選択する。これにより、WAN側のハンドオーバに対してLAN側のチャネル切替が必要になる確率が低減し、LAN側のチャネル切替に伴う回線切断要因を低減することができる。   In this basic configuration, when the wireless LAN terminal 21 is connected to the wireless relay device 1 and the wireless LAN channel is initially set, the wireless LAN channel connection history on the WAN side is acquired, and the number of connections on the WAN side is the largest. A channel is specified, and a channel far from or the same as the channel is selected as a wireless LAN channel on the LAN side. Thereby, the probability that the channel switching on the LAN side is required for the handover on the WAN side is reduced, and the cause of line disconnection accompanying the channel switching on the LAN side can be reduced.

図3は、本発明の無線中継装置の実施例構成を示す。
図3において、本実施例の無線中継装置は、図5に示す構成に加えてWAN側無線LAAN接続部102および動的チャネル変更部402に接続される接続履歴管理部403を備える。接続履歴管理部403は、表1に示すように、チャネル番号ごとに、WAN側無線LAN接続部102が過去に無線LAN基地局との接続に用いた接続回数を記録する接続管理テーブルを備える。この接続管理テーブルにおける無線チャネル対応の接続回数は、無線LAN基地局を接続するごとにその無線チャネルの接続回数が更新される。
FIG. 3 shows the configuration of an embodiment of the wireless relay device of the present invention.
In FIG. 3, the wireless relay device of this embodiment includes a connection history management unit 403 connected to the WAN side wireless LAAN connection unit 102 and the dynamic channel change unit 402 in addition to the configuration shown in FIG. 5. As shown in Table 1, the connection history management unit 403 includes a connection management table that records, for each channel number, the number of connections that the WAN-side wireless LAN connection unit 102 used to connect to the wireless LAN base station in the past. The connection count corresponding to the wireless channel in the connection management table is updated every time a wireless LAN base station is connected.

Figure 2013192271
Figure 2013192271

図4は、実施例におけるLAN側無線LANチャネルの初期設定手順の一例を示す。
図4において、LAN側無線LAN接続部201で使用するチャネルを初期設定する際に、WAN側で無線LAN12,13に接続中であるか否かを確認し(S21)、無線LAN接続中の場合はWAN側で接続中のチャネル番号を取得し(S22)、無線LAN接続中でない場合は、接続履歴管理部403から最も接続数の多いチャネル番号を取得する(S23)。
FIG. 4 shows an example of an initial setting procedure of the LAN side wireless LAN channel in the embodiment.
In FIG. 4, when initializing a channel to be used in the LAN side wireless LAN connection unit 201, it is confirmed whether or not the wireless side is connected to the wireless LANs 12 and 13 on the WAN side (S21). Acquires the channel number being connected on the WAN side (S22), and if not connected to the wireless LAN, acquires the channel number having the largest number of connections from the connection history management unit 403 (S23).

このいずれかで取得したWAN側のチャネル番号から遠いチャネルの利用が可能か否かを確認し(S24)、可能であれば取得したチャネル番号から遠いチャネルをLAN側チャネルの初期値として設定する(S25)。また、取得したWAN側のチャネル番号から遠いチャネルを利用可能でない場合には、当該チャネル番号と同一のチャネルをLAN側チャネルの初期値として設定する(S26)。   In this case, it is confirmed whether or not a channel far from the WAN channel number acquired can be used (S24). If possible, a channel far from the acquired channel number is set as an initial value of the LAN channel ( S25). If a channel far from the acquired WAN channel number is not available, the same channel as the channel number is set as the initial value of the LAN channel (S26).

1 無線中継装置
10 基幹ネットワーク
11 アクセスネットワーク
12,13 無線LAN
21 無線LAN端末
101 WAN側無線接続部
102 WAN側無線LAN接続部
201 LAN側無線LAN接続部
301 接続制御部
302 通信監視部
401 チャネル変更判断部
402 動的チャネル変更部
403 接続履歴管理部
1 wireless relay device 10 backbone network 11 access network 12, 13 wireless LAN
DESCRIPTION OF SYMBOLS 21 Wireless LAN terminal 101 WAN side wireless connection part 102 WAN side wireless LAN connection part 201 LAN side wireless LAN connection part 301 Connection control part 302 Communication monitoring part 401 Channel change judgment part 402 Dynamic channel change part 403 Connection history management part

Claims (2)

LAN側の無線LAN端末と、WAN側の無線LANとの間で中継処理を行う中継処理手段と、
前記WAN側の無線LANチャネルに応じて前記LAN側の無線LANチャネルを設定し、無線LAN間でチャネル近接による干渉を回避するチャネル設定手段と
を備えた無線中継装置において、
前記チャネル設定手段は、前記LAN側の無線LANチャネルを初期設定する際に、前記WAN側で無線LANに接続している場合には接続しているチャネル番号を取得し、前記WAN側で無線LANに接続していない場合には前記WAN側の無線LANチャネルの接続履歴に応じて接続頻度が最大のチャネル番号を取得し、ここで取得したチャネル番号と同一または最も離れたチャネル番号を前記LAN側の無線LANチャネルとして設定する構成である
ことを特徴とする無線中継装置。
Relay processing means for performing relay processing between the wireless LAN terminal on the LAN side and the wireless LAN on the WAN side;
A wireless relay device comprising: a channel setting unit configured to set a wireless LAN channel on the LAN side according to the wireless LAN channel on the WAN side and avoid interference due to channel proximity between wireless LANs;
The channel setting means obtains a connected channel number when the WAN side is connected to the wireless LAN when the wireless LAN channel on the LAN side is initially set, and the wireless LAN is set on the WAN side. If not connected, the channel number with the highest connection frequency is acquired according to the connection history of the wireless LAN channel on the WAN side, and the channel number that is the same as or farthest from the acquired channel number is acquired on the LAN side A wireless relay device characterized by being configured as a wireless LAN channel.
LAN側の無線LAN端末とWAN側の無線LANとの間で中継処理を行い、前記WAN側の無線LANチャネルに応じて前記LAN側の無線LANチャネルを設定し、無線LAN間でチャネル近接による干渉を回避する無線中継方法において、
前記LAN側の無線LANチャネルを初期設定する際に、前記WAN側で無線LANに接続している場合には接続しているチャネル番号を取得し、前記WAN側で無線LANに接続していない場合には前記WAN側の無線LANチャネルの接続履歴に応じて接続頻度が最大のチャネル番号を取得し、ここで取得したチャネル番号と同一または最も離れたチャネル番号を前記LAN側の無線LANチャネルとして設定する
ことを特徴とする無線中継方法。
Relay processing is performed between the wireless LAN terminal on the LAN side and the wireless LAN on the WAN side, the wireless LAN channel on the LAN side is set according to the wireless LAN channel on the WAN side, and interference due to channel proximity between wireless LANs In the wireless relay method to avoid
When initializing the wireless LAN channel on the LAN side, if the WAN side is connected to the wireless LAN, the connected channel number is acquired, and the WAN side is not connected to the wireless LAN. Acquires the channel number with the highest connection frequency according to the connection history of the wireless LAN channel on the WAN side, and sets the channel number that is the same as or farthest from the acquired channel number as the wireless LAN channel on the LAN side A wireless relay method characterized by:
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