RECEIVING DEVICE AND MODULATION METHOD
PROBLEM TO BE SOLVED: To achieve reduction in a circuit scale and reduction in power consumption while leaving an advantage of being able to perform processing at high speed in the case of performing multi-rate communication in a receiving device.SOLUTION: A calculation range control unit 106 sets a...
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Format: | Patent |
Sprache: | eng ; jpn |
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Zusammenfassung: | PROBLEM TO BE SOLVED: To achieve reduction in a circuit scale and reduction in power consumption while leaving an advantage of being able to perform processing at high speed in the case of performing multi-rate communication in a receiving device.SOLUTION: A calculation range control unit 106 sets a range of frequencies where Fourier transformation calculation is performed and gives instructions on the range to a frequency component detector 105. The frequency component detector 105 performs fast Fourier transformation of a digital signal output from an ADC 104 in the range on which the calculation range control unit 106 has given instructions, and detects a plurality of frequency components (FFT signal) of the digital signal. A mode determination unit 107 determines the transmission rate of a reception signal by using the FFT signal. A demodulation unit 108 operates at speed corresponding to the transmission rate determined by the mode determination unit 107 and demodulates the FFT signal.
【課題】受信装置において、マルチレート通信を行う場合に、高速に処理することができるという利点を残したまま、回路規模の低減及び消費電力の低減を実現すること。【解決手段】演算範囲制御部106は、フーリエ変換演算を行う周波数の範囲を設定し、該範囲を周波数成分検出器105に指示する。周波数成分検出器105は、ADC104から出力されたデジタル信号に対して、演算範囲制御部106から指示された範囲について高速フーリエ変換を行い、当該デジタル信号の複数の周波数成分(FFT信号)を検出する。モード判定部107は、FFT信号を用いて受信信号の伝送レートを判定する。復調部108は、モード判定部107で判定された伝送レートに応じた速度で動作し、FFT信号を復調する。【選択図】図1 |
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