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    • 3. 发明申请
    • Apparatus and method for digital modulation
    • 数字调制装置及方法
    • US20050238115A1
    • 2005-10-27
    • US11115112
    • 2005-04-27
    • Teruaki HasegawaTakaaki Konishi
    • Teruaki HasegawaTakaaki Konishi
    • H04L27/20H04B1/04H04L27/36
    • H04L27/362
    • A first interpolation section 14 and a second interpolation section 24 perform sampling on input data Id4 and Qd4 having a sampling frequency fover so that resulting data will have a sampling frequency fsamp, which is equal to an operating clock frequency of a digital-to-analog converter, which is an output destination. In the above manner, the data is interpolated. At this time, the first interpolation section 14 and the second interpolation section 24 perform interpolation using a frequency ratio between the sampling frequency fover and the sampling frequency fsamp. Then,output data Id5 and Qd5 having the sampling frequency fsamp is outputted to a quadrature modulation section 31.
    • 第一内插部分14和第二内插部分24对具有采样频率fover的输入数据Id 4和Qd 4执行采样,使得所得到的数据将具有采样频率fsamp,该采样频率fsamp等于数字到 -analog转换器,它是一个输出目标。 以上述方式,内插数据。 此时,第一内插部14和第二内插部24使用采样频率fover和采样频率fsamp之间的频率比进行插值。 然后,具有采样频率fsamp的输出数据Id 5和Qd 5输出到正交调制部分31。
    • 4. 发明授权
    • Apparatus and method for digital modulation
    • 数字调制装置及方法
    • US07450660B2
    • 2008-11-11
    • US11115112
    • 2005-04-27
    • Teruaki HasegawaTakaaki Konishi
    • Teruaki HasegawaTakaaki Konishi
    • H04L27/36
    • H04L27/362
    • A first interpolation section 14 and a second interpolation section 24 perform sampling on input data Id4 and Qd4 having a sampling frequency fover so that resulting data will have a sampling frequency fsamp, which is equal to an operating clock frequency of a digital-to-analog converter, which is an output destination. In the above manner, the data is interpolated. At this time, the first interpolation section 14 and the second interpolation section 24 perform interpolation using a frequency ratio between the sampling frequency fover and the sampling frequency fsamp. Then, output data Id5 and Qd5 having the sampling frequency fsamp is outputted to a quadrature modulation section 31.
    • 第一内插部分14和第二内插部分24对具有采样频率fover的输入数据Id 4和Qd 4执行采样,使得所得到的数据将具有采样频率fsamp,该采样频率fsamp等于数字到 -analog转换器,它是一个输出目标。 以上述方式,内插数据。 此时,第一内插部14和第二内插部24使用采样频率fover和采样频率fsamp之间的频率比进行插值。 然后,具有采样频率fsamp的输出数据Id 5和Qd 5输出到正交调制部分31。
    • 5. 发明授权
    • Digital broadcast receiver
    • 数字广播接收机
    • US6075829A
    • 2000-06-13
    • US865829
    • 1997-05-30
    • Yoshikazu HayashiNoriaki OmotoTakaaki KonishiHiroshi AzakamiTakashi Hasegawa
    • Yoshikazu HayashiNoriaki OmotoTakaaki KonishiHiroshi AzakamiTakashi Hasegawa
    • H04H40/18H04L27/06
    • H04H40/18H03B5/1203H03B5/1231H03B5/1243H03D3/007H03J1/005H03L7/18
    • A digital broadcast receiver for receiving a digital modulation signal of the present invention includes channel selection means inputting a digital modulation signal of a radio frequency band and frequency converting a desired digital modulation signal into a designated intermediate frequency signal; oscillation means for generating a local oscillation signal used for frequency conversion at the channel selection means; oscillation frequency control means for controlling a frequency of the local oscillation signal at the oscillation means; phase noise characteristic control means for improving a phase noise characteristic of the local oscillation signal generated at the oscillation means; filter means for extracting the intermediate frequency signal selected at channel selection means; orthogonal detection means for orthogonally detecting the intermediate frequency signal extracted at the filter means; A/D converter means for converting the analog output of the orthogonal detection means into a digital signal; and digital demodulation means for digitally demodulating the output of the A/D converter means; and makes a high performance digital reception possible which can improve an AFC function by the channel selection means and can improve a bit error rate at the same time.
    • 用于接收本发明的数字调制信号的数字广播接收机包括:信道选择装置,输入无线电频带的数字调制信号,并将期望的数字调制信号频率转换成指定的中频信号; 用于在频道选择装置处产生用于频率转换的本地振荡信号的振荡装置; 振荡频率控制装置,用于控制振荡装置处的本地振荡信号的频率; 相位噪声特性控制装置,用于改善在振荡装置产生的本地振荡信号的相位噪声特性; 滤波器装置,用于提取在频道选择装置处选择的中频信号; 正交检测装置,用于正交检测在滤波装置处提取的中频信号; A / D转换装置,用于将正交检测装置的模拟输出转换成数字信号; 以及数字解调装置,用于数字解调A / D转换装置的输出; 并且可以实现高性能数字接收,这可以通过信道选择装置改善AFC功能,并且可以同时提高误码率。
    • 6. 发明授权
    • Receiving apparatus
    • 接收装置
    • US6072999A
    • 2000-06-06
    • US829978
    • 1997-04-01
    • Takaaki KonishiNoriaki OmotoYoshikazu HayashiHiroshi Azakami
    • Takaaki KonishiNoriaki OmotoYoshikazu HayashiHiroshi Azakami
    • H01P1/203H01P1/205H03H7/01H04B1/10
    • H01P1/20336
    • A receiving apparatus is presented, in which a channel frequency can be selected over a wide band with an increased attenuation at an image frequency and/or at a local oscillation frequency by including a tunable filter having a following construction. Microstrip lines are connected between either one of the input or the output terminal or both of the input and output terminals of the tunable filter; a plurality of resonant circuits are formed by each of a plurality of coils and a plurality of variable capacitance diodes; and the coils are electromagnetically coupled and where a voltage applied to each cathode of each of a plurality of variable capacitance diodes through each of a plurality of resistors is controlled to tune a frequency to be received.
    • 提出了一种接收装置,其中可以通过包括具有以下结构的可调谐滤波器在宽频带上选择具有在图像频率和/或本地振荡频率处的增加的衰减的信道频率。 微带线连接在可调谐滤波器的输入或输出端子之一或输入和输出端子之间; 由多个线圈和多个可变电容二极管中的每一个形成多个谐振电路; 并且线圈被电磁耦合,并且其中通过多个电阻器中的每一个施加到多个可变电容二极管中的每一个的每个阴极的电压被控制以调谐待接收的频率。
    • 9. 发明授权
    • VSB receiver
    • VSB接收机
    • US06671002B1
    • 2003-12-30
    • US09555150
    • 2000-08-07
    • Takaaki KonishiKazuya UedaHiroshi Azakami
    • Takaaki KonishiKazuya UedaHiroshi Azakami
    • H04N544
    • H04N5/4401H03G3/3052H03G3/3078H03L7/107H04L27/08H04N5/211H04N5/52
    • The loop gain of an AGC circuit 7 and the loop gain of a clock regenerating circuit 6 are increased (the gain of an amplifier is increased, or the band of a loop filter is widened) until a synchronizing signal (a segment synchronizing signal or a field synchronizing signal) is detected. The loop gain of the AGC circuit 7 and the loop gain of the clock regenerating circuit 6 are decreased (the gain of the amplifier is decreased, or the band of the loop filter is narrowed) after the synchronizing signal is detected. Consequently, it is possible to make a reduction of a time period required until convergence processing is completed in the AGC circuit and the clock regenerating circuit compatible with an improvement of a ghost disturbance removal performance and accurate clock regeneration.
    • AGC电路7的环路增益和时钟再生电路6的环路增益增加(放大器的增益增加或环路滤波器的频带被加宽),直到同步信号(段同步信号或 场同步信号)。 在检测到同步信号之后,AGC电路7的环路增益和时钟再生电路6的环路增益被减小(放大器的增益减小或环路滤波器的频带变窄)。因此, 可以减少在AGC电路和时钟再生电路中的会聚处理完成所需的时间段,其与改善重影干扰去除性能和精确的时钟再生相兼容。
    • 10. 发明授权
    • Digital broadcast receiving apparatus
    • 数字广播接收装置
    • US07302021B2
    • 2007-11-27
    • US09878427
    • 2001-06-12
    • Takaaki KonishiHiroshi AzakamiKazuya UedaNaoya Tokunaga
    • Takaaki KonishiHiroshi AzakamiKazuya UedaNaoya Tokunaga
    • H04L27/08
    • H04N5/4446H03G3/3068H03G3/3089H04H40/18H04N5/4401H04N5/50H04N5/52H04N21/42607
    • In a digital broadcast receiving apparatus for amplifying a received modulated digital signal wave with automatically adjusted gain and demodulating the modulated signal wave to a digital signal, a tuner frequency-converts the modulated digital signal wave to generate a first modulated signal. A first automatic gain control amplification unit controls gain of the tuner to make a level of the first modulated signal at a first predetermined level. An A/D converter converts the first modulated signal into a second modulated signal. A demodulator demodulates the second modulated signal to generate a first demodulated digital signal. A second automatic gain control amplifier generates a second demodulated digital signal where frequency fluctuations included in the digital modulated wave are eliminated.
    • 在一种数字广播接收装置中,用于利用自动调节增益放大接收到的调制数字信号波并将调制信号波解调为数字信号,调谐器对调制数字信号波进行频率转换以产生第一调制信号。 第一自动增益控制放大单元控制调谐器的增益使第一调制信号的电平达到第一预定电平。 A / D转换器将第一调制信号转换成第二调制信号。 解调器解调第二调制信号以产生第一解调数字信号。 第二自动增益控制放大器产生第二解调数字信号,其中消除了数字调制波中包括的频率波动。