JP2012085129A - Radio communication apparatus and control method therefor - Google Patents

Radio communication apparatus and control method therefor Download PDF

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JP2012085129A
JP2012085129A JP2010230141A JP2010230141A JP2012085129A JP 2012085129 A JP2012085129 A JP 2012085129A JP 2010230141 A JP2010230141 A JP 2010230141A JP 2010230141 A JP2010230141 A JP 2010230141A JP 2012085129 A JP2012085129 A JP 2012085129A
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wireless communication
wireless lan
transmission
communication apparatus
antennas
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Yasunobu Nishimura
康伸 西村
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NEC Platforms Ltd
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NEC AccessTechnica Ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D30/00Reducing energy consumption in communication networks
    • Y02D30/70Reducing energy consumption in communication networks in wireless communication networks

Abstract

PROBLEM TO BE SOLVED: To provide a radio communication apparatus having a plurality of antennas, capable of achieving efficient power consumption based on a connection state of a wireless LAN slave unit, and to provide a control method therefor.SOLUTION: When the radio communication apparatus is started, only one transmitter-receiver circuit is made effective among the plurality of transmitter-receiver circuits and the other transmitter-receiver circuits are made ineffective. When a wireless LAN slave unit is connected with the radio communication apparatus, the plurality of transmitter-receiver circuits of the radio communication apparatus are made effective.

Description

本発明は、複数のアンテナを用いて通信する無線通信装置及びその無線通信装置の制御方法に関する。   The present invention relates to a wireless communication apparatus that communicates using a plurality of antennas and a method for controlling the wireless communication apparatus.

近年、無線LAN規格IEEE802.11nに対応する無線LANアクセスポイントが実現されている。このIEEE802.11nに対応する無線LANアクセスポイントは、データを複数系列で並列に伝送するために複数のアンテナ及び送受信回路を備えている。このため、単一のアンテナ及び送受信回路を備える無線LANアクセスポイントと比べて消費電力が大きくなってしまうことから、消費電力を抑制するための仕組みも考案されている。     In recent years, wireless LAN access points corresponding to the wireless LAN standard IEEE802.11n have been realized. A wireless LAN access point corresponding to IEEE 802.11n includes a plurality of antennas and transmission / reception circuits for transmitting data in parallel in a plurality of series. For this reason, since power consumption becomes large compared with a wireless LAN access point provided with a single antenna and transmission / reception circuit, a mechanism for suppressing power consumption has been devised.

例えば特許文献1には、通信負荷の少ない夜間に、タイマーを用いて、アンテナと送受信器を1つ以外休止する無線LAN基地局装置が開示されている。   For example, Patent Document 1 discloses a wireless LAN base station apparatus that uses a timer to pause other than one antenna and a transceiver at night when the communication load is low.

特開2004−153766号公報JP 2004-153766 A

しかし、特許文献1のシステムは、無線LANアクセスポイントのアンテナ等を休止する条件としてタイマーによる時間設定を用いるため、実際に無線LAN子機が接続されていない状態が長時間続いても、タイマー設定された時間以外はアンテナ等を休止できないという問題があった。   However, since the system of Patent Document 1 uses time setting by a timer as a condition for suspending an antenna of a wireless LAN access point, even if a state where the wireless LAN slave unit is not actually connected continues for a long time, the timer setting is performed. There was a problem that the antennas and the like could not be paused except during the given time.

本発明は、上記問題点に鑑みてなされたもので、その目的は、複数のアンテナを備える無線通信装置において、無線LAN子機の接続状態に基づいて効率良く消電力化することができる無線通信装置及び無線通信装置の制御方法を提供することにある。   The present invention has been made in view of the above problems, and an object of the present invention is to provide wireless communication capable of efficiently dissipating power based on a connection state of a wireless LAN slave unit in a wireless communication apparatus including a plurality of antennas. An apparatus and a method for controlling a wireless communication apparatus are provided.

本発明は、複数のアンテナと当該複数のアンテナに接続される複数の送受信回路を備え、前記複数のアンテナから複数系列のデータを並列に伝送する無線通信方式に対応する無線通信装置であって、前記複数の無線回路のうちの少なくとも一つ以外を無効にしておき、自装置に子機が接続されると、前記複数の送受信回路を有効にすることを特徴とする。   The present invention is a wireless communication apparatus that includes a plurality of antennas and a plurality of transmission / reception circuits connected to the plurality of antennas, and that supports a wireless communication system that transmits a plurality of series of data in parallel from the plurality of antennas, It is characterized in that at least one of the plurality of wireless circuits is disabled and the plurality of transmission / reception circuits are enabled when a slave unit is connected to the own device.

本発明は、複数のアンテナと当該複数のアンテナに接続される複数の送受信回路を備え、前記複数のアンテナから複数系列のデータを並列に伝送する通信方式に対応する無線通信装置の制御方法であって、前記無線通信装置の前記複数の無線回路のうちの少なくとも一つ以外を無効にしておき、前記無線通信装置に子機が接続されると、前記無線通信装置の前記複数の送受信回路を有効にする、ことを特徴とする。   The present invention is a method for controlling a wireless communication apparatus that includes a plurality of antennas and a plurality of transmission / reception circuits connected to the plurality of antennas, and that supports a communication system that transmits a plurality of series of data in parallel from the plurality of antennas. When at least one of the plurality of wireless circuits of the wireless communication device is disabled and a slave unit is connected to the wireless communication device, the plurality of transmission / reception circuits of the wireless communication device are enabled. It is characterized by that.

本発明によれば、複数のアンテナを備える無線通信装置において、無線LAN子機の接続状態に基づいて効率良く消電力化することができる。   ADVANTAGE OF THE INVENTION According to this invention, in a radio | wireless communication apparatus provided with a some antenna, based on the connection state of a wireless LAN subunit | mobile_unit, it can be made to consume power efficiently.

図1は無線LAN子機が無線LANアクセスポイントに接続するシーケンスを示す図である。FIG. 1 is a diagram showing a sequence in which a wireless LAN slave unit connects to a wireless LAN access point. 図2は本発明の実施形態に係る無線通信装置のブロック図である。FIG. 2 is a block diagram of the wireless communication apparatus according to the embodiment of the present invention. 図3は無線通信装置の動作を説明するためのフローチャートである。FIG. 3 is a flowchart for explaining the operation of the wireless communication apparatus. 図4は無線LAN子機が帰属していない段階における無線通信装置の送受信回路の状態を示す図である。FIG. 4 is a diagram showing the state of the transmission / reception circuit of the wireless communication apparatus at the stage where the wireless LAN slave unit does not belong. 図5は無線LAN子機が帰属した後の無線通信装置の送受信回路の状態を示す図である。FIG. 5 is a diagram showing a state of the transmission / reception circuit of the wireless communication apparatus after the wireless LAN slave unit belongs. 図6は本発明の実施形態の変形例を説明するためのフローチャートである。FIG. 6 is a flowchart for explaining a modification of the embodiment of the present invention.

通信規格IEEE802.11nでは、複数のアンテナからデータを複数系列で同時に並列して伝送するMIMO(Multiple Input Multiple Output)技術等を用いてデータ伝送の高速化を実現する。本発明の無線通信装置は、通信規格IEEE802.11nに対応する無線LANアクセスポイントを含む。   In the communication standard IEEE802.11n, high-speed data transmission is realized by using a MIMO (Multiple Input Multiple Output) technique or the like that transmits data from a plurality of antennas in parallel in parallel. The wireless communication apparatus of the present invention includes a wireless LAN access point corresponding to the communication standard IEEE 802.11n.

通常、無線LANアクセスポイントは定期的に位置情報を含むビーコンを発信する。このビーコンを検出した無線LAN子機は、図1に示すように、Authenticationフレームを無線LANアクセスポイントに送信する(F1)。これに応じて、無線LANアクセスポイントは、Authenticationフレームを無線LAN子機に返信する(F2)。次に、無線LAN子機は、Associationフレームを無線LANアクセスポイントに送信する(F3)。これに応じて、無線LANアクセスポイントは、Associationフレームを無線LAN子機に返信する(F4)。これにより、無線LANアクセスポイントへの無線LAN子機の帰属(接続)が完了する。上記シーケンスで送受信されるフレームは単一系列で伝送されるため、上記シーケンスにおいて無線LANアクセスポイントで機能する送受信回路は複数である必要はない。本発明の無線通信装置は、無線LAN子機が帰属していない間は、複数の無線回路のうち一つの送受信回路だけを有効にし、無線LAN子機が帰属した後は複数の送受信回路を有効にするものである。   Usually, the wireless LAN access point periodically transmits a beacon including location information. The wireless LAN slave device that has detected this beacon transmits an Authentication frame to the wireless LAN access point as shown in FIG. 1 (F1). In response to this, the wireless LAN access point returns an Authentication frame to the wireless LAN slave unit (F2). Next, the wireless LAN slave device transmits an Association frame to the wireless LAN access point (F3). In response, the wireless LAN access point returns an Association frame to the wireless LAN slave unit (F4). Thereby, the attribution (connection) of the wireless LAN slave unit to the wireless LAN access point is completed. Since the frames transmitted and received in the sequence are transmitted in a single sequence, it is not necessary to have a plurality of transmission / reception circuits that function in the wireless LAN access point in the sequence. The wireless communication device of the present invention enables only one transmission / reception circuit among a plurality of wireless circuits while the wireless LAN slave unit does not belong, and enables the plurality of transmission / reception circuits after the wireless LAN slave unit belongs. It is to make.

以下、本発明の実施形態について図面を参照して説明する。   Embodiments of the present invention will be described below with reference to the drawings.

図2は、本発明の実施形態に係る無線通信装置1のブロック図である。この無線通信装置1は、複数の送受信回路(無線回路)10‐1〜10‐3及びアンテナ20‐1〜20‐3と、制御部30とを備える。   FIG. 2 is a block diagram of the wireless communication device 1 according to the embodiment of the present invention. The wireless communication apparatus 1 includes a plurality of transmission / reception circuits (wireless circuits) 10-1 to 10-3, antennas 20-1 to 20-3, and a control unit 30.

送受信回路10‐1〜10‐3は、アンテナ20‐1〜20‐3にそれぞれ接続され、アンテナ20‐1〜20‐3を介してデータを送受信する。   The transmission / reception circuits 10-1 to 10-3 are connected to the antennas 20-1 to 20-3, respectively, and transmit / receive data via the antennas 20-1 to 20-3.

制御部30は、自装置に無線LAN子機が接続されていない場合、複数の送受信回路10‐1〜10‐3のうち、1つの送受信回路を有効(オン)にし、それ以外の送受信回路を無効(オフ)にする。また、制御部30は、自装置に無線LAN子機が接続された場合、複数の送受信回路10‐1〜10‐3を有効(オン)にする。   The control unit 30 enables (turns on) one transmission / reception circuit among the plurality of transmission / reception circuits 10-1 to 10-3 when the wireless LAN slave unit is not connected to the own device, and sets other transmission / reception circuits to Disable (off). In addition, when a wireless LAN slave device is connected to the own device, the control unit 30 enables (turns on) the plurality of transmission / reception circuits 10-1 to 10-3.

なお、図2は、無線通信装置1における本発明の特徴である無線通信に関する構成要素を示すものであり、無線通信装置1が備える他の構成要素については一般の無線通信装置と同様であり、ここでは特に図示しない。   FIG. 2 shows the components related to wireless communication, which is a feature of the present invention in the wireless communication device 1, and the other components included in the wireless communication device 1 are the same as those of a general wireless communication device, It is not specifically shown here.

次に、本発明の実施の形態に係る無線通信装置1の動作について図3を参照して説明する。   Next, the operation of radio communication apparatus 1 according to the embodiment of the present invention will be described with reference to FIG.

まず、無線通信装置1が起動されると、制御部30は、複数の送受信回路10‐1〜10‐3のうち1つの送受信回路だけを有効(オン)にし、それ以外の送受信回路を無効(オフ)にする(ステップS31)。   First, when the wireless communication device 1 is activated, the control unit 30 enables (turns on) only one transmission / reception circuit among the plurality of transmission / reception circuits 10-1 to 10-3 and disables other transmission / reception circuits ( Off) (step S31).

次に、制御部30は、自装置に無線LAN子機が接続されるのを待つ(ステップS32)。   Next, the control unit 30 waits for the wireless LAN slave device to be connected to the own device (step S32).

無線通信装置1が発信するビーコンを検出した無線LAN子機が、図1に示す接続シーケンスを完了して無線通信装置1に接続されると(ステップS32、YES)、制御部30は、複数の送受信回路10‐1〜10‐3を有効(オン)にする(ステップS33)。   When the wireless LAN slave device that detects the beacon transmitted by the wireless communication device 1 completes the connection sequence shown in FIG. 1 and is connected to the wireless communication device 1 (step S32, YES), the control unit 30 includes a plurality of The transmission / reception circuits 10-1 to 10-3 are enabled (ON) (step S33).

次に、制御部30は、無線LAN子機の接続が切断されるのを待つ(ステップS34)。例えば、一定時間通信がない場合に該当する無線LAN子機の接続が切断されたと判断してもよい。   Next, the control unit 30 waits for the connection of the wireless LAN slave unit to be disconnected (step S34). For example, when there is no communication for a certain time, it may be determined that the connection of the corresponding wireless LAN slave unit has been disconnected.

制御部30は、無線LAN子機の接続の切断を検出すると(ステップS34:YES)、他に接続されている無線LAN子機が有るかを判別する(ステップS35)。   When detecting disconnection of the wireless LAN slave unit (step S34: YES), the control unit 30 determines whether there is another wireless LAN slave unit connected (step S35).

他に接続されている無線LAN子機が有ると判別された場合(ステップS24:YES)、ステップS34に戻って、制御部30は、無線LAN子機の接続が切断されるのを待つ。   When it is determined that there is another wireless LAN slave device connected (step S24: YES), the control unit 30 returns to step S34 and waits for the wireless LAN slave device to be disconnected.

また、接続されている無線LAN子機が無いと判別された場合(ステップS24:NO)、ステップS31に戻って、制御部30は、複数の送受信回路10‐1〜10‐3のうち1つの送受信回路以外の送受信回路を無効(オフ)にする。   If it is determined that there is no connected wireless LAN slave device (step S24: NO), the control unit 30 returns to step S31, and the control unit 30 selects one of the plurality of transmission / reception circuits 10-1 to 10-3. Disable (turn off) other transmission / reception circuits.

以上のように、本実施の形態によれば、無線LANアクセスポイント(無線通信装置)に無線LAN子機が帰属していない段階では、図4に示すように、1つの送受信回路だけを有効にし、無線LAN子機の帰属が完了した後は、図5に示すように、複数の送受信回路を有効にすることで、無線LAN子機が接続していない状態での消費電力の抑制を実現することができる。   As described above, according to the present embodiment, at the stage where the wireless LAN slave unit does not belong to the wireless LAN access point (wireless communication device), only one transmission / reception circuit is enabled as shown in FIG. After the assignment of the wireless LAN slave unit is completed, as shown in FIG. 5, by enabling a plurality of transmission / reception circuits, it is possible to reduce power consumption when the wireless LAN slave unit is not connected. be able to.

以上、好ましい実施の形態をあげて本発明を説明したが、本発明は必ずしも上記実施の形態に限定されるものではなく、その技術的思想の範囲内において様々に変形し実施することが出来る。   Although the present invention has been described with reference to the preferred embodiments, the present invention is not necessarily limited to the above-described embodiments, and various modifications can be made within the scope of the technical idea.

例えば、無線通信装置1に接続される子機がIEEE802.11nのように複数系列のデータを並列に伝送する通信方式に対応する場合に、複数の送受信回路を有効化するようにしてもよい。この場合の無線通信装置1の動作について図6を参照して説明する。   For example, a plurality of transmission / reception circuits may be validated when a slave unit connected to the wireless communication apparatus 1 supports a communication method for transmitting a plurality of series of data in parallel, as in IEEE 802.11n. The operation of the wireless communication apparatus 1 in this case will be described with reference to FIG.

まず、無線通信装置1が起動されると、制御部30は、複数の送受信回路10‐1〜10‐3のうち1つの送受信回路だけを有効(オン)にし、それ以外の送受信回路を無効(オフ)にする(ステップS61)。   First, when the wireless communication device 1 is activated, the control unit 30 enables (turns on) only one transmission / reception circuit among the plurality of transmission / reception circuits 10-1 to 10-3 and disables other transmission / reception circuits ( Off) (step S61).

次に、制御部30は、自装置に無線LAN子機が接続されるのを待つ(ステップS62)。   Next, the control unit 30 waits for the wireless LAN slave device to be connected to the own device (step S62).

無線通信装置1が発信するビーコンを検出した無線LAN子機が図1に示す接続シーケンスを完了して無線通信装置1に接続されると(ステップS62、YES)、制御部30は、無線LAN子機が所定の通信方式(この例では、IEEE802.11n)に対応しているかを判定する(ステップS63)。例えば、無線LAN子機とデータの送受信を行い、無線LAN子機から受信したデータのプリアンブル信号等に基づいて、無線LAN子機が所定の通信方式に対応しているかを判別してもよい。   When the wireless LAN slave device that detects the beacon transmitted by the wireless communication device 1 completes the connection sequence shown in FIG. 1 and is connected to the wireless communication device 1 (step S62, YES), the control unit 30 It is determined whether the device is compatible with a predetermined communication method (in this example, IEEE 802.11n) (step S63). For example, data may be transmitted / received to / from the wireless LAN slave device, and it may be determined whether the wireless LAN slave device is compatible with a predetermined communication method based on a preamble signal of data received from the wireless LAN slave device.

無線LAN子機がIEEE802.11nに対応すると判定した場合(ステップS63:YES)、制御部30は、複数の送受信回路10‐1〜10‐3を有効(オン)にする(ステップS64)。また、無線LAN子機がIEEE802.11nに対応しないと判定した場合には(ステップS63:NO)、ステップS62に戻る。   When it is determined that the wireless LAN slave device is compatible with IEEE802.11n (step S63: YES), the control unit 30 enables (turns on) the plurality of transmission / reception circuits 10-1 to 10-3 (step S64). If it is determined that the wireless LAN slave device does not support IEEE802.11n (step S63: NO), the process returns to step S62.

ステップS64で複数の送受信回路10‐1〜10‐3を有効した後、制御部30は、無線LAN子機の接続が切断されるのを待つ(ステップS65)。   After enabling the plurality of transmission / reception circuits 10-1 to 10-3 in step S64, the control unit 30 waits for the connection of the wireless LAN slave unit to be disconnected (step S65).

制御部30は、無線LAN子機の接続の切断を検出すると(ステップS65:YES)、他に接続されている無線LAN子機が有るかを判別する(ステップS66)。   When detecting disconnection of the wireless LAN slave unit (step S65: YES), the control unit 30 determines whether there is another wireless LAN slave unit connected (step S66).

他に接続されている無線LAN子機が有ると判別された場合(ステップS66:YES)、ステップS65に戻って、制御部30は、無線LAN子機の接続が切断されるのを待つ。   If it is determined that there is another wireless LAN slave device connected (step S66: YES), the process returns to step S65, and the control unit 30 waits for the wireless LAN slave device to be disconnected.

また、接続されている無線LAN子機が無いと判別された場合(ステップS66:NO)、ステップS31に戻って、制御部30は、複数の送受信回路10‐1〜10‐3のうち1つの送受信回路以外の送受信回路を無効(オフ)にする。   If it is determined that there is no wireless LAN slave device connected (step S66: NO), the control unit 30 returns to step S31, and the control unit 30 selects one of the plurality of transmission / reception circuits 10-1 to 10-3. Disable (turn off) other transmission / reception circuits.

このように、無線通信装置1に接続される無線LAN子機がIEEE802.11nのように複数系列のデータを並列に伝送する通信方式に対応する場合に複数の送受信回路を有効にすることで、より省電力化を図ることができる。   In this way, by enabling a plurality of transmission / reception circuits when a wireless LAN slave device connected to the wireless communication device 1 supports a communication method for transmitting a plurality of series of data in parallel as in IEEE 802.11n, Further power saving can be achieved.

なお、上記実施形態では、無線通信装置1の備えるアンテナ及び送受信回路の数を3としているが、これに限定されず、アンテナ及び送受信回路の数は任意である。   In the above-described embodiment, the number of antennas and transmission / reception circuits included in the wireless communication device 1 is three. However, the number of antennas and transmission / reception circuits is arbitrary.

また、上述の複数系列のデータを並列に伝送する通信方式は、IEEE802.11nに限定されない。   Further, the communication method for transmitting the above-described plurality of series of data in parallel is not limited to IEEE 802.11n.

また、上述した本発明の無線通信装置の制御部30は、上述したように、ハードウェアで構成することも可能であるが、コンピュータプログラムにより実現することも可能である。この場合、プロセッサがメモリに格納されたプログラム等を読み出して実行することにより、上述した実施形態と同様の機能、動作を実現してもよい。また、上述した実施の形態の一部の機能のみをコンピュータプログラムにより実現することもできる。   Further, as described above, the control unit 30 of the wireless communication device of the present invention described above can be configured by hardware, but can also be realized by a computer program. In this case, the processor may read out and execute a program or the like stored in the memory, thereby realizing functions and operations similar to those in the above-described embodiment. Also, only some functions of the above-described embodiments can be realized by a computer program.

1 無線通信装置
10‐1〜10‐3 送受信回路
20‐1〜20‐3 アンテナ
30 制御部
DESCRIPTION OF SYMBOLS 1 Radio | wireless communication apparatus 10-1 to 10-3 Transmission / reception circuit 20-1 to 20-3 Antenna 30 Control part

Claims (4)

複数のアンテナと当該複数のアンテナに接続される複数の送受信回路を備え、前記複数のアンテナから複数系列のデータを並列に伝送する無線通信方式に対応する無線通信装置であって、
前記複数の無線回路のうちの少なくとも一つ以外を無効にしておき、自装置に子機が接続されると、前記複数の送受信回路を有効にする、
ことを特徴とする無線通信装置。
A wireless communication apparatus that includes a plurality of antennas and a plurality of transmission / reception circuits connected to the plurality of antennas, and that supports a wireless communication system that transmits a plurality of series of data in parallel from the plurality of antennas,
Disable at least one of the plurality of wireless circuits, and when the slave unit is connected to the own device, enable the plurality of transmission / reception circuits,
A wireless communication apparatus.
自装置に接続された子機が、前記複数のアンテナから複数系列のデータを並列に伝送する無線通信方式に対応する場合に、前記複数の送受信回路を有効にする、
ことを特徴とする請求項1に記載の無線通信装置。
Enabling the plurality of transmission / reception circuits when the slave connected to the own device corresponds to a wireless communication system that transmits a plurality of series of data in parallel from the plurality of antennas;
The wireless communication apparatus according to claim 1.
複数のアンテナと当該複数のアンテナに接続される複数の送受信回路を備え、前記複数のアンテナから複数系列のデータを並列に伝送する通信方式に対応する無線通信装置の制御方法であって、
前記無線通信装置の前記複数の無線回路のうちの少なくとも一つ以外を無効にしておき、
前記無線通信装置に子機が接続されると、前記無線通信装置の前記複数の送受信回路を有効にする、
ことを特徴とする無線通信方法。
A control method for a wireless communication device, comprising a plurality of antennas and a plurality of transmission / reception circuits connected to the plurality of antennas, and corresponding to a communication method for transmitting a plurality of series of data in parallel from the plurality of antennas,
Disable at least one of the plurality of wireless circuits of the wireless communication device,
When a slave unit is connected to the wireless communication device, the plurality of transmission / reception circuits of the wireless communication device are enabled.
A wireless communication method.
前記無線通信装置に接続された子機が、前記複数のアンテナから複数系列のデータを並列に伝送する無線通信方式に対応する場合に、前記複数の送受信回路を有効にする、
ことを特徴とする請求項3に記載の無線通信方法。
Enabling the plurality of transmission / reception circuits when the slave unit connected to the wireless communication device supports a wireless communication method for transmitting a plurality of series of data in parallel from the plurality of antennas;
The wireless communication method according to claim 3.
JP2010230141A 2010-10-13 2010-10-13 Radio communication apparatus and control method therefor Pending JP2012085129A (en)

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