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    • 92. 发明授权
    • Sequence allocating method, transmitting method and wireless mobile station device
    • 序列分配方法,发送方法和无线移动台设备
    • US07979077B2
    • 2011-07-12
    • US12665008
    • 2008-06-17
    • Takashi IwaiDaichi ImamuraTomofumi TakataYoshihiko Ogawa
    • Takashi IwaiDaichi ImamuraTomofumi TakataYoshihiko Ogawa
    • H04Q7/20
    • H04W72/0446H04J13/0055H04J13/0062H04J13/22H04W72/0453H04W72/0466
    • It is an object to provide a sequence allocating method that, while maintaining the number of Zadoff-Chu sequences to compose a sequence group, is configured to make it possible to reduce correlations between different sequential groups. This method comprises the steps of setting a standard sequence with a standard sequence length (Nb) and a standard sequence number (rb) in a step (ST101), setting a threshold value (Xth(m)) in accordance with an RB number (m) in a step (ST103), setting a sequence length (N) corresponding to RB number (m) in a step (ST104), judging whether |r/N−rb/Nb|=Xth(m) is satisfied in a step (ST106), including a plurality of Zadoff-Chu sequences with a sequence number (r) and a sequence length (N) in a sequence group (rb) in a step (ST107) if the judgment is positive, and allocating the sequence group (rb) to the same cell in a step (ST112).
    • 本发明的目的是提供一种在保持Zadoff-Chu序列的数量以构成序列组的同时,使得可以减少不同顺序组之间的相关性的序列分配方法。 该方法包括以下步骤:在步骤(ST101)中设置标准序列长度(Nb)和标准序列号(rb)的标准序列,根据RB号设置阈值(Xth(m)) 在步骤(ST103)中,在步骤(ST104)中设定与RB号(m)对应的序列长度(N)的步骤(ST103),判断是否满足| r / N-rb / Nb | = Xth(m) 步骤(ST106),如果判断为肯定,则在步骤(ST107)中包括序列号(rb)中的序列号(r)和序列长度(N)的多个Zadoff-Chu序列,并且分配序列 组(rb)到步骤中的相同单元(ST112)。
    • 100. 发明授权
    • Double window display apparatus
    • 双窗显示装置
    • US5903315A
    • 1999-05-11
    • US843983
    • 1997-04-17
    • Hisakatsu ItohYoshihiko OgawaKazuhiko Muguruma
    • Hisakatsu ItohYoshihiko OgawaKazuhiko Muguruma
    • H04N5/46H04N7/01H04N5/262
    • H04N7/0122H04N5/45
    • First and second images are separated into luminance and chrominance components to generate a first signal, in which the luminance components of the two images are sequentially located in the 1 H period and a second signal in which the chrominance components of the two images are located in the same. The second signal is delayed by (1/2) H period. The first signal and the delayed second signal are used to generate a third signal in which the luminance and chrominance components of the first image are sequentially located in the 1 H period and a fourth signal in which the luminance and chrominance components of the second image are located in the same. The third and fourth signals are vertically expanded with arbitrary expansion ratios. Then, the expanded signals are synthesized to generate a fifth signal in which the luminance components of the first and second images are sequentially located in the 1 H period and a sixth signal in which the chrominance components of the first and second images are located in the same. The fifth signal is delayed by (1/2) H period. The sixth signal and the delayed fifth signal are interpolated to make uniform the intervals among the scanning lines.
    • 将第一和第二图像分离为亮度和色度分量,以产生第一信号,其中两个图像的亮度分量依次位于1H周期中,而第二信号中两个图像的色度分量位于 一样。 第二个信号延迟(+ E,fra 1/2 + EE)H周期。 第一信号和延迟的第二信号用于产生其中第一图像的亮度和色度分量顺序地位于1HH周期的第三信号和其中第二图像的亮度和色度分量为 位于同一个 第三和第四信号以任意的扩展比垂直展开。 然后,扩展信号被合成以产生其中第一和第二图像的亮度分量依次位于1HH周期中的第五信号和第一和第二图像的色度分量位于第一信号中的第六信号 相同。 第五个信号延迟(+ E,fra 1/2 + EE)H周期。 内插第六信号和延迟的第五信号以使扫描线之间的间隔一致。