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    • 1. 发明专利
    • Distortion compensation device
    • 失真补偿装置
    • JP2006148691A
    • 2006-06-08
    • JP2004337722
    • 2004-11-22
    • Mitsubishi Electric Corp三菱電機株式会社
    • YAMAZAKI HIROSHIYASUNAGA YOSHINORIANDO NOBUHIKOHAYASHI RYOJI
    • H03F1/32H03F3/24
    • PROBLEM TO BE SOLVED: To provide a small-scale and cheap distortion compensation device needless of a high speed multiplying circuit.
      SOLUTION: The device comprises an input signal storing unit 109 for storing an input signal, a feedback signal storing unit 110 for storing a feedback signal to be returned from an output side of a transmission power amplifier 103, a distortion compensation coefficient calculating unit 108 for calculating a distortion compensation coefficient based on a feedback signal stored in the feedback signal storing unit 110, a distortion compensation coefficient storing unit 106 for storing the distortion compensation coefficient calculated by the distortion compensation coefficient calculating unit 108 by corresponding to power of the input signal, and a pre-distortion unit 101 for performing a distortion compensation process to the input signal multiplied by the distortion compensation coefficient acquired from the distortion compensation coefficient storing unit 106.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供不需要高速倍增电路的小型廉价的失真补偿装置。 解决方案:该装置包括用于存储输入信号的输入信号存储单元109,用于存储从发送功率放大器103的输出侧返回的反馈信号的反馈信号存储单元110,计算失真补偿系数 单元108,用于基于存储在反馈信号存储单元110中的反馈信号计算失真补偿系数;失真补偿系数存储单元106,用于存储由失真补偿系数计算单元108计算的失真补偿系数, 输入信号和预失真单元101,用于对从输入信号乘以由失真补偿系数存储单元106获取的失真补偿系数执行失真补偿处理。(C)2006年,JPO和NCIPI
    • 2. 发明专利
    • Satellite communication system
    • 卫星通信系统
    • JP2014003537A
    • 2014-01-09
    • JP2012138873
    • 2012-06-20
    • Mitsubishi Electric Corp三菱電機株式会社
    • OTA HIROSHIYASUNAGA YOSHINORIKOSAKATA HIROSHINAKAMURA KEISUKEIMAI NAOZUMI
    • H04B7/155
    • PROBLEM TO BE SOLVED: To reduce the number of channels between an antenna device and a building in a ground station.SOLUTION: DPX26a and DPX31a transmit/receive a dextrorotatory reception signal output by a reception D-C23a, a tracking sum signal output by a tracking D-C25a, a reference signal output by a reference signal generator 34, and a dextrorotatory correction signal output by a correction signal generator 36a, by using one channel 4a, where the respective signals are positioned in frequency bands that do not interfere with each other. DPX26b and DPX31b transmit/receive a levorotatory reception signal output by a reception D-C23b, a tracking difference signal output by a tracking D-C25b, power supplied from a power supply device 35, and a levorotatory correction signal output by a correction signal generator 36b, by using one channel 4b, where the respective signals are positioned in frequency bands that do not interfere with each other.
    • 要解决的问题:减少地面站天线装置与建筑物之间的通道数量。解决方案:DPX26a和DPX31a发送/接收由接收D-C23a输出的右旋接收信号,由 通过使用一个通道4a来跟踪D-C25a,由参考信号发生器34输出的参考信号和由校正信号发生器36a输出的右旋校正信号,其中各个信号位于不干扰每个信号的频带中 其他。 DPX26b和DPX31b发送/接收由接收D-C23b输出的左旋接收信号,由跟踪D-C25b输出的跟踪差异信号,从电源装置35提供的电力,以及由校正信号发生器输出的左派校正信号 如图36b所示,通过使用一个通道4b,其中各个信号位于彼此不干扰的频带中。
    • 3. 发明专利
    • Distortion compensation amplifier
    • 失真补偿放大器
    • JP2006157385A
    • 2006-06-15
    • JP2004344085
    • 2004-11-29
    • Mitsubishi Electric Corp三菱電機株式会社
    • YASUNAGA YOSHINORI
    • H04B1/04H03F1/32H03F3/24H04L27/20H04L27/36
    • PROBLEM TO BE SOLVED: To obtain satisfactory distortion compensation of an A/D converter(ADC) for an input signal in a wide dynamic range in a distortion compensation amplifier for compensating distortion in a nonlinear amplifier circuit such as a power amplifier. SOLUTION: The size of the input power of an ADC10 is calculated at a power supply accumulator 14, based on the signal of a detector 8. A comparator 15 compares the scale of the input power of the ADC 10 with the optimal input power of the ADC 10 preliminarily set as a threshol. A first gain adjuster 16 executes gain adjustment so that the input power of the ADC 10 can be the same value as a threshold, and a second gain adjuster 17 executes gain adjustment again so that the original input power can be set for the output signal of the ADC10. Also, a signal passing through the ADC 10 during the gain adjustment is removed by a data selector 18, and input to a distortion compensation coefficient calculator 2c of a predistortion circuit 2. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了在用于补偿诸如功率放大器的非线性放大器电路中的失真的失真补偿放大器中获得用于宽动态范围内的输入信号的A / D转换器(ADC)的令人满意的失真补偿。 解决方案:基于检测器8的信号,在电源累加器14处计算ADC10的输入功率的大小。比较器15将ADC 10的输入功率的比例与最佳输入 ADC 10的功率预先设置为threshol。 第一增益调节器16执行增益调整,使得ADC 10的输入功率可以与阈值相同,并且第二增益调整器17再次执行增益调整,使得可以将原始输入功率设置为 ADC10。 此外,在增益调整期间通过ADC 10的信号被数据选择器18去除,并输入到预失真电路2的失真补偿系数计算器2c。(C)2006,JPO和NCIPI
    • 4. 发明专利
    • Frequency conversion circuit
    • 频率转换电路
    • JP2005311968A
    • 2005-11-04
    • JP2004129880
    • 2004-04-26
    • Mitsubishi Electric Corp三菱電機株式会社
    • NISHIINOUE OSAMUYASUNAGA YOSHINORIYAMAZAKI HIROSHI
    • H03D7/18H04B1/10
    • PROBLEM TO BE SOLVED: To inexpensively obtain a circuit which is capable of converting a frequency outputted from a high frequency signal source, such as a D/A converter containing much distortion, using a double balanced mixer and of further preventing the distortion from being contained in a converted signal.
      SOLUTION: A frequency conversion circuit is comprised of a stab circuit 20 connected to a D/A converter 10, a low-pass filter 25 connected thereto, and a frequency conversion section 30 connected next. A clock frequency fc of the D/A converter 10 is defined to fc=4f with respect to an output frequency (f). A short stab 21 having a length of λ/6 with respect to a wavelength λ of the frequency (f) and a short stab 22 of λ/3 are connected in parallel to the stab circuit 20. Furthermore, a short stab 23 of λ/4 is disposed. An output of the low-pass filter 25 is inputted to a frequency conversion section 30. An RF common output terminal of first and second double balanced mixers becomes a final output terminal.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了便宜地获得能够使用双平衡混频器来转换从高频信号源输出的频率(例如包含很多失真的D / A转换器)输出的频率并且进一步防止失真的电路 不包含在转换信号中。 解决方案:频率转换电路包括连接到D / A转换器10的连接电路20,与其连接的低通滤波器25和接下来连接的频率转换部分30。 相对于输出频率(f),D / A转换器10的时钟频率fc被定义为fc = 4f。 相对于频率(f)的波长λ和λ/ 3的短刺22的长度为λ/ 6的短刺21与刺针电路20并联连接。另外,λ的短刺23 / 4。 低通滤波器25的输出被输入到频率转换部分30.第一和第二双平衡混频器的RF公共输出端变成最终的输出端。 版权所有(C)2006,JPO&NCIPI
    • 6. 发明专利
    • 増幅器モジュール及び信号送信機
    • 放大器模块和信号发送器
    • JP2014204229A
    • 2014-10-27
    • JP2013077813
    • 2013-04-03
    • 三菱電機株式会社Mitsubishi Electric Corp
    • NOTO HIFUMIANDO NOBUHIKOYASUNAGA YOSHINORIKAWAKAMI KENJI
    • H03F1/32H03F3/24H04B1/04
    • 【課題】複数の変調波信号における差周波、変調帯域幅の周波数や偶高調波に起因する歪み成分の発生を抑えることができるようにする。【解決手段】制御回路16が、信号情報出力部3から出力された信号情報が示す複数の変調波信号の搬送周波数及び変調帯域幅にしたがって、複数の変調波信号における差周波、変調帯域幅の周波数及び偶高調波に対するインピーダンスの中で、少なくとも1以上のインピーダンスを制御する。これにより、複数の変調波信号における差周波、変調帯域幅の周波数や偶高調波に起因する歪み成分の発生を抑えることができる。【選択図】図1
    • 要解决的问题:抑制由于多个调制波信号的差频产生的失真分量的产生,频率的调制带宽,甚至谐波。解决方案:控制电路16控制至少一个阻抗到差频 多个调制波信号的调制带宽,频率的调制带宽,以及根据载波频率的偶次谐波以及由信号信息输出部分3输出的信号信息表示的多个调制波信号的调制带宽。这可以抑制 由于多个调制波信号的频率差,频率的调制带宽和偶次谐波引起的失真分量。
    • 7. 发明专利
    • Antenna connection detection circuit
    • 天线连接检测电路
    • JP2009302736A
    • 2009-12-24
    • JP2008152912
    • 2008-06-11
    • Mitsubishi Electric Corp三菱電機株式会社
    • YASUNAGA YOSHINORI
    • H04B1/40G06K7/10G06K17/00H04B1/18
    • PROBLEM TO BE SOLVED: To obtain an antenna connection detection circuit for detecting the presence of antenna connection with the configuration of an inexpensive analog circuit without needing any adjustment. SOLUTION: The antenna connection detection circuit includes: a communication part 1 composed of a transmitter and receiver 2, a DC-cut capacitor 3, the one end of which is connected to an input/output end of the transmitter and receiver 2, a DC power supply 4, a first resistor 5 whose one end is connected to an output end of the DC power supply 4 and the other end of which is connected to another end of the D-cut capacitor 3, a reference power supply 6, and a comparator 7 for receiving the reference voltage of the reference power supply 6 and applied voltage generated at the other end of the first resistor 5 to compare relative magnitude; and an antenna part 10 comprising an antenna 11 whose input/out end is connected to the other end of the first resistor 5, and a second resistor 12, whose one end is connected to the input/output end of the antenna 11 and whose other end is grounded. Wherein, the presence of the connection of the antenna 11 is detected by comparing relative magnitude between applied voltage generated at the other end of the first resistor 5 in accordance with the presence of the connection of the antenna part 10 and the reference voltage of the reference power supply 6 by the comparator 7. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:为了获得用于通过廉价的模拟电路的配置来检测天线连接的存在而不需要任何调整的天线连接检测电路。 解决方案:天线连接检测电路包括:由发射机和接收机2组成的通信部分1,DC切断电容器3,其一端连接到发射机和接收机2的输入/输出端 直流电源4,第一电阻器5,其一端连接到直流电源4的输出端,另一端连接到D形电容器3的另一端;基准电源6 以及比较器7,用于接收参考电源6的参考电压和在第一电阻器5的另一端产生的施加电压以比较相对幅度; 以及天线部分10,其包括其输入/输出端连接到第一电阻器5的另一端的天线11,以及第二电阻器12,其一端连接到天线11的输入/输出端,并且其另一端 端接地。 其中,天线11的连接的存在通过比较根据天线部分10的连接的存在和参考电压的参考电压来比较在第一电阻器5的另一端产生的施加电压之间的相对幅度来检测天线11的连接 电源6由比较器7.版权所有(C)2010,JPO&INPIT
    • 8. 发明专利
    • Gps apparatus
    • GPS装置
    • JP2007127497A
    • 2007-05-24
    • JP2005319807
    • 2005-11-02
    • Mitsubishi Electric Corp三菱電機株式会社
    • YASUNAGA YOSHINORI
    • G01S19/22G01S19/36
    • PROBLEM TO BE SOLVED: To provide a GPS apparatus which can perform high-precision GPS positioning even in a multipath environment.
      SOLUTION: The GPS apparatus for performing positioning by receiving radio waves from a GPS satellite which transmits a radio wave on which positioning information is superimposed with a left handed polarized wave comprises a first antenna for receiving a left-handed polarized wave and a right-handed polarized wave, a second antenna for receiving a left-handed polarized wave and a right-handed polarized wave which is provided at a position spaced apart from the first antenna by a predetermined distance, a selection means for selecting the output of either the first or second antenna which has been decided to be with less effect of multipath by comparing the output value of the left-handed polarized wave and the right-handed polarized wave received by the first antenna with the output value of the left-handed polarized wave and the right-handed polarized wave received by the second antenna, and a processing means for performing positioning processing using the output signal of the left-handed polarized wave selected by the selection means.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供即使在多路径环境中也可以执行高精度GPS定位的GPS装置。 解决方案:通过从GPS卫星接收无线电波进行定位的GPS装置,其中发射用左手偏振波叠加了定位信息的无线电波,包括用于接收左旋偏振波的第一天线和 右手偏振波,用于接收左手偏振波的第二天线和设置在与第一天线隔开预定距离的位置处的右旋偏振波;选择装置,用于选择任一 通过将左旋偏振波的输出值和第一天线接收的右旋偏振波的输出值与左旋偏振光的输出值进行比较,已经被判定为具有较小的多径影响的第一或第二天线 波和由第二天线接收的右旋偏振波,以及处理装置,用于使用左图的输出信号执行定位处理 由选择装置选择的双极偏振波。 版权所有(C)2007,JPO&INPIT