JP2000124753A - Receiving circuit for ask modulated wave - Google Patents

Receiving circuit for ask modulated wave

Info

Publication number
JP2000124753A
JP2000124753A JP29697498A JP29697498A JP2000124753A JP 2000124753 A JP2000124753 A JP 2000124753A JP 29697498 A JP29697498 A JP 29697498A JP 29697498 A JP29697498 A JP 29697498A JP 2000124753 A JP2000124753 A JP 2000124753A
Authority
JP
Japan
Prior art keywords
signal
frequency
frequency signal
modulated wave
power supply
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Withdrawn
Application number
JP29697498A
Other languages
Japanese (ja)
Inventor
Masao Miyaura
正夫 宮浦
Shigehiro Ito
茂博 伊藤
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Alps Alpine Co Ltd
Original Assignee
Alps Electric Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Alps Electric Co Ltd filed Critical Alps Electric Co Ltd
Priority to JP29697498A priority Critical patent/JP2000124753A/en
Publication of JP2000124753A publication Critical patent/JP2000124753A/en
Withdrawn legal-status Critical Current

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  • Devices For Checking Fares Or Tickets At Control Points (AREA)

Abstract

PROBLEM TO BE SOLVED: To reduce the power consumption of power supply of a car battery etc., by receiving an ASK modulated high frequency signal, converting the frequency of the received high frequency signal to output an intermediate frequency signal, demodulating the intermediate frequency signal and detecting the high frequency signal to obtain a carrier detection signal. SOLUTION: The ASK modulated wave is received by the antenna of a receiver which is mounted on a car, amplified by a low noise amplifier 1a of a high frequency party 1 of the receiving circuit and inputted to a carrier detection circuit part 2 and a frequency conversion circuit part 3 respectively. The part 3 includes a mixer 3a, a local oscillator 3b, a BPF 3c, etc. The oscillator 3b outputs a local oscillation signal and inputs it to the mixer 3a. The ASK modulated wave is inputted to the mixer 3a, mixed with the local oscillation signal and converted into an intermediate frequency signal. The intermediate frequency signal is transmitted through the BPF 3c and inputted to a 2nd detection diode 5a of a demodulation part 5.

Description

【発明の詳細な説明】DETAILED DESCRIPTION OF THE INVENTION

【0001】[0001]

【発明の属する技術分野】本発明は、高速道路の自動料
金収受システムで使用される受信機等に用いて好適なA
SK変調波の受信回路に関する。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to an automatic transmission which is suitable for a receiver used in an automatic toll collection system on a highway.
The present invention relates to an SK modulation wave receiving circuit.

【0002】[0002]

【従来の技術】ASK変調波を受信する従来の受信回路
を図2を参照して説明する。高速道路の自動料金収受シ
ステムにおける送受信にはASK変調波が使用され、料
金所に接地された送信アンテナ(図示せず)から、進入
する車に向けてASK変調波(周波数は5.795GH
z)が送信される。ASK変調波は車に搭載した受信機
に接続されたアンテナ(図示せず)で受信され、受信回
路の高周波部の低雑音増幅器11で増幅された後、混合
器12に入力される。混合器12には局部発振器13か
ら出力される局部発振信号(周波数は5.835GH
z)が入力され、混合器12はASK変調波を周波数変
換して40MHzの中間周波信号を出力する。中間周波
信号はバンドパスフィルタ14を通過した後に復調ダイ
オード15によって包絡線検波され、直流成分のみから
なる復調信号が出力される。
2. Description of the Related Art A conventional receiving circuit for receiving an ASK modulated wave will be described with reference to FIG. An ASK modulated wave is used for transmission and reception in an automatic toll collection system on a highway, and is transmitted from a transmitting antenna (not shown) grounded to a tollgate toward an approaching vehicle (frequency is 5.795 GHz).
z) is transmitted. The ASK modulated wave is received by an antenna (not shown) connected to a receiver mounted on a car, and is amplified by a low-noise amplifier 11 in a high-frequency part of a receiving circuit, and then input to a mixer 12. The mixer 12 outputs a local oscillation signal (frequency is 5.835 GHz) output from the local oscillator 13.
z) is input, and the mixer 12 converts the frequency of the ASK modulated wave and outputs an intermediate frequency signal of 40 MHz. After passing through the band pass filter 14, the intermediate frequency signal is subjected to envelope detection by the demodulation diode 15, and a demodulated signal consisting of only a DC component is output.

【0003】復調信号は最大でおよそ1MHzの繰り返
し周波数を有しており、交流結合によって復調信号増幅
器16に入力される。そして、復調信号増幅器16で増
幅された復調信号はデータスライサー17に入力される
とともに、キャリア検出信号としてマイクロコンピュー
タ18に入力される。
The demodulated signal has a maximum repetition frequency of about 1 MHz, and is input to the demodulated signal amplifier 16 by AC coupling. The demodulated signal amplified by the demodulated signal amplifier 16 is input to the data slicer 17 and also to the microcomputer 18 as a carrier detection signal.

【0004】データスライサー17は入力された復調信
号をデータスライサー17のスレッショールドレベルに
よって”1”および”0”からなるデータに変換してマ
イクロコンピュータ18に入力する。
[0004] The data slicer 17 converts the input demodulated signal into data consisting of “1” and “0” according to the threshold level of the data slicer 17 and inputs the data to the microcomputer 18.

【0005】マイクロコンピュータ18はキャリア検出
信号が入力されたことによって車と料金所との間で送受
信を開始するとともに料金所によって車のID番号が認
識される。そして、例えば、高速道路の出口の料金所で
は料金所が計算され、後日、車の所有者の口座から料金
が引き落とされるようになっている。
[0005] The microcomputer 18 starts transmission and reception between the car and the toll booth in response to the input of the carrier detection signal, and the toll booth recognizes the ID number of the car. Then, for example, a tollgate is calculated at a tollgate at an exit of an expressway, and the toll is deducted from a car owner's account at a later date.

【0006】[0006]

【発明が解決しようとする課題】しかし、従来の受信回
路では、中間周波信号からキャリア検出信号を出力して
いたので、混合器12、局部発振器13等を含む周波数
変換回路部や復調信号増幅器16を常時動作状態にして
いた。そのため、混合器12、局部発振器13、復調信
号増幅器16等には常時電源電圧を印加しておくことに
なり、車のバッテリーの消費電力を大きくしていた。
However, in the conventional receiving circuit, since the carrier detection signal is output from the intermediate frequency signal, the frequency conversion circuit including the mixer 12 and the local oscillator 13 and the demodulation signal amplifier 16 are output. Was always operating. Therefore, the power supply voltage is always applied to the mixer 12, the local oscillator 13, the demodulated signal amplifier 16, and the like, so that the power consumption of the vehicle battery is increased.

【0007】そこで、本発明のASK変調波の受信回路
は、車のバッテリー等の電源の消費電力を少なくするこ
とを目的とする。
Accordingly, an object of the present invention is to reduce the power consumption of a power supply such as a vehicle battery.

【0008】[0008]

【課題を解決するための手段】以上の課題を解決するた
め、本発明のASK変調波の受信回路は、ASK変調さ
れた高周波信号を受信する高周波部と、前記高周波信号
を周波数変換して中間周波信号を出力する周波数変換回
路部と、前記中間周波信号を復調する復調部とを有し、
前記高周波信号を検波してキャリア検出信号を得るよう
にした。
In order to solve the above-mentioned problems, an ASK-modulated wave receiving circuit according to the present invention comprises a high-frequency section for receiving an ASK-modulated high-frequency signal, and an intermediate section for converting the high-frequency signal into a frequency. A frequency conversion circuit unit that outputs a frequency signal, and a demodulation unit that demodulates the intermediate frequency signal,
The carrier detection signal is obtained by detecting the high frequency signal.

【0009】また、本発明のASK変調波の受信回路
は、前記キャリア検出信号が検出されるまでは前記周波
数変換回路部および前記復調部を動作させるための電源
電圧を供給せず、前記検出信号が検出された後に前記周
波数変換回路部および前記復調部に前記電源電圧を供給
して前記復調部から復調信号を出力するようにした。
Further, the ASK modulated wave receiving circuit of the present invention does not supply a power supply voltage for operating the frequency conversion circuit section and the demodulation section until the carrier detection signal is detected. Is detected, the power supply voltage is supplied to the frequency conversion circuit section and the demodulation section, and the demodulation section outputs a demodulated signal.

【0010】また、本発明のASK変調波の受信回路
は、前記復調信号によって所定の受信処理を終了した後
に前記周波数変換部および前記復調部に供給していた電
源電圧を停止するようにした。
Further, the ASK modulated wave receiving circuit of the present invention stops the power supply voltage supplied to the frequency conversion unit and the demodulation unit after a predetermined reception process is completed by the demodulated signal.

【0011】また、本発明のASK変調波の受信回路
は、前記キャリア検出信号が検出されなくなったときに
前記周波数変換部および前記復調部に供給していた電源
電圧を停止するようにした。
Further, in the ASK modulated wave receiving circuit of the present invention, the power supply voltage supplied to the frequency conversion unit and the demodulation unit is stopped when the carrier detection signal is no longer detected.

【0012】[0012]

【発明の実施の形態】本発明のASK変調波の受信回路
を、図1を用いて説明する。高速道路の自動料金収受シ
ステムにおけるASK変調波(周波数は5.795GH
z)は、料金所に接地された送信アンテナ(図示せず)
から、進入する車に向けて送信される。ASK変調波は
車に搭載した受信機のアンテナ(図示せず)で受信さ
れ、受信回路の高周波部1の低雑音増幅器1aによって
増幅された後、キャリア検出回路部2と周波数変換回路
部3とに入力される。
DESCRIPTION OF THE PREFERRED EMBODIMENTS A receiving circuit for an ASK modulated wave according to the present invention will be described with reference to FIG. ASK modulated wave (frequency is 5.795 GH) in automatic toll collection system on expressway
z) is a transmitting antenna (not shown) grounded at the toll booth
Is transmitted to the approaching car. The ASK modulated wave is received by an antenna (not shown) of a receiver mounted on a car, and is amplified by a low noise amplifier 1a of a high frequency unit 1 of a receiving circuit. Is input to

【0013】キャリア検出回路部2は第一の検波ダイオ
ード2aと第一のデータスライサー2bとを有してい
る。キャリア検出回路部2に入力されたASK変調波
は、先ず第一の検波ダイオード2aによって包絡線検波
されて直流成分は出力される。その後に第一のデータス
ライサー2bに入力される。第一のデータスライサー2
bは所定のスレッショールドレベルを持ち、直流成分は
そのスレッショールドレベルと比較されて”1”また
は”0”のディジタル信号に変換され、キャリア検出信
号としてマイクロコンピュータ4に入力される。従っ
て、マイクロコンピュータ4にディジタル信号が入力さ
れることによってASK変調波を受信したことが判断さ
れる。
The carrier detection circuit section 2 has a first detection diode 2a and a first data slicer 2b. The ASK modulated wave input to the carrier detection circuit unit 2 is first subjected to envelope detection by the first detection diode 2a, and a DC component is output. Thereafter, the data is input to the first data slicer 2b. First data slicer 2
b has a predetermined threshold level. The DC component is compared with the threshold level, converted into a digital signal of "1" or "0", and input to the microcomputer 4 as a carrier detection signal. Therefore, it is determined that an ASK modulated wave has been received by inputting a digital signal to the microcomputer 4.

【0014】一方、周波数変換回路部3は混合器3a、
局部発振器3b、バンドパスフィルタ3c等を有し、局
部発振器3bは局部発振信号(周波数は5.835GH
z)を出力して混合器3aに入力する。ASK変調波は
混合器3aに入力され、局部発振信号と混合されて中間
周波信号(周波数は40MHz)に周波数変換される。
そして、バンドパスフィルタ2cを通過して復調部5の
第二の検波ダイオード5aに入力される。
On the other hand, the frequency conversion circuit section 3 includes a mixer 3a,
It has a local oscillator 3b, a band-pass filter 3c, and the like. The local oscillator 3b has a local oscillation signal (frequency is 5.835 GHz).
z) is output and input to the mixer 3a. The ASK modulated wave is input to the mixer 3a, mixed with a local oscillation signal, and frequency-converted into an intermediate frequency signal (frequency is 40 MHz).
Then, the signal passes through the band-pass filter 2c and is input to the second detection diode 5a of the demodulation unit 5.

【0015】復調部5は第二の検波ダイオード5aの他
に、復調信号増幅器5b、第二のデータスライサー5c
等を有している。そして、中間周波信号は第二の検波ダ
イオード5aによって包絡線検波されて復調される。復
調信号の繰り返し周波数の基本波は最高1MHz程度に
なっており、第二の検波ダイオード5aに交流結合され
た復調信号増幅器5bによって所定のレベルまで増幅さ
れた後第二のデータスライサー5cに入力される。
The demodulation unit 5 includes a demodulation signal amplifier 5b and a second data slicer 5c in addition to the second detection diode 5a.
Etc. Then, the intermediate frequency signal is subjected to envelope detection by the second detection diode 5a and demodulated. The fundamental wave of the repetition frequency of the demodulated signal is about 1 MHz at the maximum, and is amplified to a predetermined level by the demodulated signal amplifier 5b AC-coupled to the second detection diode 5a and then input to the second data slicer 5c. You.

【0016】第二のデータスライサー5cも所定のスレ
ッショールドレベルを有している。そして、復調信号は
このスレッショールドレベルと比較されるとともに波形
整形されて”0”または”1”の復調データとしてマイ
クロコンピュータ4に入力される。
The second data slicer 5c also has a predetermined threshold level. Then, the demodulated signal is compared with the threshold level and shaped and input to the microcomputer 4 as demodulated data of "0" or "1".

【0017】高周波部1、キャリア検出回路部2、周波
数変換回路部3、マイクロコンピュータ4、復調部5等
には車のバッテリー6から電源電圧が供給されるが、周
波数変換回路部3と復調部5とにはキャリア検出信号が
マイクロコンピュータ4に入力された後に供給される。
そのため、周波数変換回路部3および復調部5にはスイ
ッチ7を介してバッテリ6の電圧を供給するようにして
いる。即ち、マイクロコンピュータ4はキャリア検出信
号が入力されたことによって料金所から送信されたAS
K変調波を受信したことを認識して、スイッチ7を閉じ
る。
The high frequency section 1, carrier detection circuit section 2, frequency conversion circuit section 3, microcomputer 4, demodulation section 5 and the like are supplied with a power supply voltage from a vehicle battery 6, but the frequency conversion circuit section 3 and demodulation section 5 is supplied after the carrier detection signal is input to the microcomputer 4.
Therefore, the voltage of the battery 6 is supplied to the frequency conversion circuit unit 3 and the demodulation unit 5 via the switch 7. That is, the microcomputer 4 transmits the AS transmitted from the toll gate by the input of the carrier detection signal.
Upon recognizing that the K modulated wave has been received, the switch 7 is closed.

【0018】従って、マイクロコンピュータ4にキャリ
ア検出信号が入力されない段階では料金所から出力され
ているASK変調波は車の受信機によって受信されるこ
ともないので、周波数変換回路部3および復調部5に電
源電圧を供給する必要が無く、キャリア検出信号が受信
された後に供給しても問題がない。このことによって、
バッテリー6の電力消費を少なくすることが可能とな
る。
Therefore, when the carrier detection signal is not input to the microcomputer 4, the ASK modulated wave output from the toll booth is not received by the receiver of the car, so that the frequency conversion circuit unit 3 and the demodulation unit 5 It is not necessary to supply a power supply voltage to the power supply, and there is no problem if the power supply is supplied after the carrier detection signal is received. This allows
The power consumption of the battery 6 can be reduced.

【0019】以上のように、マイクロコンピュータ18
はキャリア検出信号が入力されたことによって料金所か
ら送信されたASK変調波を受信したことを認識して周
波数変換部3と復調部5とに電源電圧を供給して復調信
号を受信し、車と料金所との間で送受信を開始する。す
ると、料金所では送受信の過程で車のID番号を認識す
るとともに、例えば高速道路の出口の料金所では、その
車が高速道路に入った入り口番号を確認して料金を計算
する。その結果は車の受信機のディスプレイ上に表示さ
れ、ドライバーによって確認される。そして、後日、車
の所有者の口座から料金が引き落とされるようになって
いる。
As described above, the microcomputer 18
Recognizes that the ASK modulated wave transmitted from the tollgate has been received due to the input of the carrier detection signal, and supplies the power supply voltage to the frequency conversion unit 3 and the demodulation unit 5 to receive the demodulated signal. And transmission between the toll booth. Then, the tollgate recognizes the ID number of the car in the course of transmission and reception, and, for example, at the tollgate at the exit of the expressway, checks the entrance number at which the car entered the expressway and calculates the toll. The result is shown on the display of the car receiver and confirmed by the driver. Later, the fee will be deducted from the car owner's account.

【0020】料金の計算等の一連の処理が終了すれば、
料金所との間の送受信は必要が無くなるので、再び次の
料金所でキャリア検出信号を受信するまでの間は再び周
波数変換回路部3と復調部5とへの電源電圧の供給を停
止するようにする。
When a series of processing such as calculation of the fee is completed,
Since transmission / reception to / from the toll booth becomes unnecessary, supply of the power supply voltage to the frequency conversion circuit unit 3 and the demodulation unit 5 is stopped again until the carrier detection signal is received again at the next toll booth. To

【0021】[0021]

【発明の効果】以上のように、本発明のASK変調波の
受信回路は、ASK変調された高周波信号を受信する高
周波部と、高周波信号を周波数変換して中間周波信号を
出力する周波数変換回路部と、中間周波信号を復調する
復調部とを有し、高周波信号を検波してキャリア検出信
号を得るようにしたので、キャリア検出信号を検出する
までの間は周波数変換回路部と復調部とを動作状態にし
ておく必要がなく、電力消費を少なくできる。
As described above, the ASK-modulated wave receiving circuit of the present invention comprises a high-frequency section for receiving an ASK-modulated high-frequency signal and a frequency conversion circuit for converting the high-frequency signal to output an intermediate frequency signal. And a demodulation unit for demodulating the intermediate frequency signal, so that the high frequency signal is detected to obtain a carrier detection signal, so that the frequency conversion circuit unit and the demodulation unit are used until the carrier detection signal is detected. Need not be in an operating state, and power consumption can be reduced.

【0022】また、本発明のASK変調波の受信回路
は、キャリア検出信号が検出されるまでは周波数変換回
路部および復調部を動作させるための電源電圧を供給せ
ず、検出信号が検出された後に周波数変換回路部および
復調部に電源電圧を供給して復調部から復調信号を出力
するようにしたので、電源の消費電力を少なくしても確
実に受信が可能となる。
Further, the ASK modulated wave receiving circuit of the present invention does not supply a power supply voltage for operating the frequency conversion circuit section and the demodulation section until a carrier detection signal is detected, and the detection signal is detected. Since the power supply voltage is supplied to the frequency conversion circuit unit and the demodulation unit later to output the demodulated signal from the demodulation unit, it is possible to reliably receive even if the power consumption of the power supply is reduced.

【0023】また、本発明のASK変調波の受信回路
は、復調信号によって所定の受信処理を終了した後に周
波数変換部および復調部に供給していた電源電圧を停止
するようにしたので、消費電力の消費を速やかに少なく
できる。
Further, the ASK modulated wave receiving circuit of the present invention stops the power supply voltage supplied to the frequency conversion unit and the demodulation unit after the predetermined reception processing is completed by the demodulated signal, so that the power consumption is reduced. Consumption can be reduced quickly.

【0024】また、本発明のASK変調波の受信回路
は、キャリア検出信号が検出されなくなったときに周波
数変換部および復調部に供給していた電源電圧を停止す
るようにしたので、ASK変調波が入力されていない状
態では常に電源の消費電力を少なくできる。
In the ASK modulated wave receiving circuit of the present invention, the power supply voltage supplied to the frequency conversion unit and the demodulation unit is stopped when the carrier detection signal is not detected any more. When no is input, the power consumption of the power supply can always be reduced.

【図面の簡単な説明】[Brief description of the drawings]

【図1】本発明のASK変調波の受信回路の構成図であ
る。
FIG. 1 is a configuration diagram of an ASK modulated wave receiving circuit of the present invention.

【図2】従来のASK変調波の復調回路の構成図であ
る。
FIG. 2 is a configuration diagram of a conventional ASK modulation wave demodulation circuit.

【符号の説明】[Explanation of symbols]

1 高周波部 1a 低雑音増幅器 2 キャリア検出回路部 2a 第一の検波ダイオード 2b 第一のデータスライサー 3 周波数変換回路部 3a 混合器 3b 局部発振器 3c バンドパスフィルタ 4 マイクロコンピュータ 5 復調部 5a 第二の検波ダイオード 5b 復調信号増幅器 5c 第二のデータスライサー 6 バッテリー 7 スイッチ DESCRIPTION OF SYMBOLS 1 High frequency part 1a Low noise amplifier 2 Carrier detection circuit part 2a First detection diode 2b First data slicer 3 Frequency conversion circuit part 3a Mixer 3b Local oscillator 3c Band pass filter 4 Microcomputer 5 Demodulation part 5a Second detection Diode 5b Demodulated signal amplifier 5c Second data slicer 6 Battery 7 Switch

Claims (4)

【特許請求の範囲】[Claims] 【請求項1】 ASK変調された高周波信号を受信する
高周波部と、前記高周波信号を周波数変換して中間周波
信号を出力する周波数変換回路部と、前記中間周波信号
を復調する復調部とを有し、前記高周波信号を検波して
キャリア検出信号を得ることを特徴とするASK変調波
の受信回路。
1. A high-frequency section for receiving an ASK-modulated high-frequency signal, a frequency conversion circuit section for converting the high-frequency signal to output an intermediate frequency signal, and a demodulation section for demodulating the intermediate frequency signal. An ASK modulation wave receiving circuit for detecting the high frequency signal to obtain a carrier detection signal.
【請求項2】 前記キャリア検出信号が検出されるまで
は前記周波数変換回路部および前記復調部を動作させる
ための電源電圧を供給せず、前記検出信号が検出された
後に前記周波数変換回路部および前記復調部に前記電源
電圧を供給して前記復調部から復調信号を出力するよう
にしたことを特徴とする請求項1記載のASK変調波の
受信回路。
2. A power supply voltage for operating the frequency conversion circuit unit and the demodulation unit is not supplied until the carrier detection signal is detected, and after the detection signal is detected, the frequency conversion circuit unit and The ASK modulation wave receiving circuit according to claim 1, wherein the power supply voltage is supplied to the demodulation unit, and the demodulation unit outputs a demodulated signal.
【請求項3】 前記復調信号によって所定の受信処理を
終了した後に前記周波数変換部および前記復調部に供給
していた電源電圧を停止するようにしたことを特徴とす
る請求項2記載のASK変調波の受信回路。
3. The ASK modulation according to claim 2, wherein a power supply voltage supplied to said frequency conversion unit and said demodulation unit is stopped after a predetermined reception process is completed by said demodulated signal. Wave receiving circuit.
【請求項4】 前記キャリア検出信号が検出されなくな
ったときに前記周波数変換部および前記復調部に供給し
ていた電源電圧を停止するようにしたことを特徴とする
請求項2記載のASK変調波の受信回路。
4. The ASK modulated wave according to claim 2, wherein a power supply voltage supplied to said frequency conversion unit and said demodulation unit is stopped when said carrier detection signal is no longer detected. Receiving circuit.
JP29697498A 1998-10-19 1998-10-19 Receiving circuit for ask modulated wave Withdrawn JP2000124753A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP29697498A JP2000124753A (en) 1998-10-19 1998-10-19 Receiving circuit for ask modulated wave

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP29697498A JP2000124753A (en) 1998-10-19 1998-10-19 Receiving circuit for ask modulated wave

Publications (1)

Publication Number Publication Date
JP2000124753A true JP2000124753A (en) 2000-04-28

Family

ID=17840619

Family Applications (1)

Application Number Title Priority Date Filing Date
JP29697498A Withdrawn JP2000124753A (en) 1998-10-19 1998-10-19 Receiving circuit for ask modulated wave

Country Status (1)

Country Link
JP (1) JP2000124753A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2014141706A1 (en) * 2013-03-14 2014-09-18 パナソニック株式会社 Wireless communication device and wireless communication method

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2014141706A1 (en) * 2013-03-14 2014-09-18 パナソニック株式会社 Wireless communication device and wireless communication method
JP2014179784A (en) * 2013-03-14 2014-09-25 Panasonic Corp Radio communication device and radio communication method
US9480019B2 (en) 2013-03-14 2016-10-25 Panasonic Corporation Wireless communication apparatus and wireless communication method

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