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    • 8. 发明授权
    • Mobile radio apparatus capable of adaptive impedance matching
    • 能够进行自适应阻抗匹配的移动无线电设备
    • US07528674B2
    • 2009-05-05
    • US10594522
    • 2006-01-24
    • Akira KatoKoichi OgawaHiroshi IwaiAtsushi Yamamoto
    • Akira KatoKoichi OgawaHiroshi IwaiAtsushi Yamamoto
    • H03H7/38
    • H04B1/18
    • There is provide a mobile radio apparatus capable of suppressing a mismatching loss, and increasing a transmission/reception sensitivity by means of instantly and adaptively matching the impedance between the antenna and the transmission/reception circuit whatever situation a mobile radio apparatus, such as a mobile phone or the like, may be. In a mobile radio apparatus (1), when starting control of the matching circuit (102), a control section (105) evaluates an initial chromosome stored in a storage section (106), and if there is an initial chromosome for providing an impedance matching, controls the matching circuit (102) so as to have a load value corresponding to this initial chromosome. If there is no initial chromosome for providing the impedance matching, the control section (105) evolves the initial chromosome with a genetic algorithm, derives a chromosome for providing the impedance matching, and controls the matching circuit (102) so as to have a load value corresponding to the derived chromosome.
    • 提供一种能够抑制失配损失的移动无线电设备,并且通过立即且自适应地匹配天线和发送/接收电路之间的阻抗来增加发送/接收灵敏度,无论移动无线电设备如移动 电话等,可能是。 在移动无线电设备(1)中,当启动匹配电路(102)的控制时,控制部分(105)评估存储在存储部分(106)中的初始染色体,并且如果存在用于提供阻抗的初始染色体 匹配,控制匹配电路(102)以具有对应于该初始染色体的负载值。 如果没有用于提供阻抗匹配的初始染色体,则控制部分(105)用遗传算法演化初始染色体,导出染色体以提供阻抗匹配,并且控制匹配电路(102)以具有负载 对应于衍生染色体的值。
    • 10. 发明申请
    • Multi-antenna communication apparatus
    • 多天线通信装置
    • US20070280297A1
    • 2007-12-06
    • US11806821
    • 2007-06-04
    • Toshifumi NakataniHiroshi Iwai
    • Toshifumi NakataniHiroshi Iwai
    • H04H1/04
    • H04B7/0822
    • Reception signals received by first to fourth antennas 11 to 14 are sequentially selected one by one repeatedly in accordance with first to fourth switches 31 to 34 being controlled by first to fourth switch control circuits 41 to 44, respectively, so as to be inputted to a signal shaping section 60. The reception signals having been shaped by the signal shaping section 60 are sampled by a sample-and-hold section 71 and AD-converted by an AD converter 72 in accordance with a time at which the reception signals are sequentially selected. The resultant signals are converted into parallel signals by a serial-parallel conversion section 73. Thus, the parallel signals are obtained as the reception signals of the first to the fourth antennas 11 to 14.
    • 根据第一至第四开关31至34分别由第一至第四开关控制电路41至44控制的第一至第四天线11至14接收的接收信号被依次逐个选择,以被输入到 信号整形部60。 已经由信号整形部分60整形的接收信号由采样保持部分71采样,并且由AD转换器72根据接收信号被依次选择的时间进行AD转换。 所得到的信号通过串行 - 并行转换部分73转换成并行信号。 因此,获得并行信号作为第一至第四天线11至14的接收信号。