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    • 7. 发明授权
    • Loudspeaker system
    • 扬声器系统
    • US07688986B2
    • 2010-03-30
    • US11642231
    • 2006-12-20
    • Atsuko ItoAkira MikiShinichi Sawara
    • Atsuko ItoAkira MikiShinichi Sawara
    • H04R3/00H04R1/02
    • H04S7/303H04R27/00
    • A hands-free loudspeaker system which is capable of achieving high-quality voice amplification without requiring a human speaker to move to a microphone or a microphone to be moved to a human speaker. A microphone whose input level has continued to be above a threshold value for not shorter than a predetermined time period is detected, based on input signals from dispersedly arranged microphones. An input signal from the microphone is selected and outputted to each loudspeaker at an output level or with a delay time, according to a location of the loudspeaker. A preset lowest threshold level is initially set to the threshold value, and an input level of the microphone higher than the threshold value is newly set to the same, while when the input level is lower than the threshold value, a lower value is set to the same in a step-by-step manner.
    • 一种免提扬声器系统,其能够实现高质量的语音放大,而不需要人的扬声器移动到麦克风或麦克风以移动到人的扬声器。 基于来自分散布置的麦克风的输入信号,检测输入电平继续高于阈值以不长于预定时间段的麦克风。 根据扬声器的位置,来自麦克风的输入信号被选择并以输出电平或延迟时间输出到每个扬声器。 初始设定为最低阈值水平,将高于阈值的麦克风的输入电平重新设定为相同,而当输入电平低于阈值时,将较低的值设定为 相同的一步一步的方式。
    • 8. 发明申请
    • MATERIALS LOCATION SYSTEM AND SELECTING METHOD OF MATERIALS RECEIVING LOCATIONS
    • 材料位置系统和材料接收位置的选择方法
    • US20070162299A1
    • 2007-07-12
    • US11621672
    • 2007-01-10
    • Atsuko ItoKenji ArakiSatoru Ono
    • Atsuko ItoKenji ArakiSatoru Ono
    • G06Q99/00
    • G06Q10/08G06Q10/0834G06Q10/087
    • Working efficiency improvement of shipping and receiving operations in a materials storage location is contemplated. An optimal location is provided so as to minimize work volume in shipping operation when receiving materials control objects in a materials storage location to improve working efficiency in the materials stockroom. As means to achieve it, a location information of the materials control objects stocked in the materials storage location and vacant area where the materials control objects to be received can be stocked are calculated by use of location information of the materials control objects in the materials storage location and materials dimensions and shape information represented by the three-dimensional CAD used in design to select and decide the area to minimize work volume when shipping. Consequently, shipping operation efficiency can be improved. Further, provision of means to obtain automatically location information of the stocked materials control objects enables to obtain location information of the stocked materials control objects at a spot away from the materials storage location, and thus makes it possible to reduce traveling time of operators to the materials storage location.
    • 预期在材料存储位置中的运输和接收操作的工作效率提高。 提供最佳位置,以便在物料存储位置接收材料控制对象时最小化运输操作中的工作量,以提高材料库中的工作效率。 作为实现它的手段,可以通过使用材料存储中的材料控制对象的位置信息来计算存储在要接收的材料控制对象的材料存储位置和空间区域中的材料控制对象的位置信息 由设计中使用的三维CAD表示的位置和材料尺寸和形状信息来选择和确定运输时工作量最小化的面积。 因此,能够提高运送效率。 此外,提供自动获取储料材料控制对象的位置信息的装置能够在远离材料存储位置的位置获得储存材料控制对象的位置信息,从而可以将操作者的行进时间减少到 材料储存位置。
    • 9. 发明申请
    • VOICE-SCRAMBLING-SIGNAL CREATION METHOD AND APPARATUS, AND COMPUTER-READABLE STORAGE MEDIUM THEREFOR
    • 语音切换信号创建方法和装置以及计算机可读存储介质
    • US20080243492A1
    • 2008-10-02
    • US11850605
    • 2007-09-05
    • Akira MikiMasato HataAtsuko Ito
    • Akira MikiMasato HataAtsuko Ito
    • G10L19/14
    • G10L19/00H04K1/06
    • Original voice uttered in a first space is acquired via a microphone and a series of digital waveform data of the acquired original voice are obtained. The waveform data are sequentially segmented into plural frames and the waveform data of the individual frames are written into a memory. In parallel with writing, into the memory, of the waveform data, individual ones of the frames already written in the memory are sequentially or randomly selected and read out in a direction opposite to a direction the waveform data of the frame have been written so that a reverse-reproduced voice signal is generated. As the original voice is transmitted, as a leaked voice from the first space to a second space near the first space, a scrambling voice based on the reverse-reproduced voice signal is spatially mixed with the leaked voice in the second space.
    • 通过麦克风获取在第一空间中发出的原始声音,并且获得所获取的原始声音的一系列数字波形数据。 将波形数据依次分割成多个帧,将各个帧的波形数据写入存储器。 与记录并行地,在波形数据的存储器中,已经写入存储器的各个帧中的各个被顺序地或随机地选择并且沿着与帧的波形数据的写入方向相反的方向读出,使得 产生反向再生语音信号。 当原始语音被发送时,作为从第一空间泄漏的声音到靠近第一空间的第二空间,基于反向再现语音信号的加扰声音与第二空间中的泄漏声音空间混合。
    • 10. 发明申请
    • Loudspeaker system
    • 扬声器系统
    • US20070160240A1
    • 2007-07-12
    • US11642231
    • 2006-12-20
    • Atsuko ItoAkira MikiShinichi Sawara
    • Atsuko ItoAkira MikiShinichi Sawara
    • H04R5/02
    • H04S7/303H04R27/00
    • A hands-free loudspeaker system which is capable of achieving high-quality voice amplification without requiring a human speaker to move to a microphone or a microphone to be moved to a human speaker. A microphone whose input level has continued to be above a threshold value for not shorter than a predetermined time period is detected, based on input signals from dispersedly arranged microphones. An input signal from the microphone is selected and outputted to each loudspeaker at an output level or with a delay time, according to a location of the loudspeaker. A preset lowest threshold level is initially set to the threshold value, and an input level of the microphone higher than the threshold value is newly set to the same, while when the input level is lower than the threshold value, a lower value is set to the same in a step-by-step manner.
    • 一种免提扬声器系统,其能够实现高质量的语音放大,而不需要人的扬声器移动到麦克风或麦克风以移动到人的扬声器。 基于来自分散布置的麦克风的输入信号,检测输入电平继续高于阈值以不长于预定时间段的麦克风。 根据扬声器的位置,来自麦克风的输入信号被选择并以输出电平或延迟时间输出到每个扬声器。 初始设定为最低阈值水平,将高于阈值的麦克风的输入电平重新设定为相同,而当输入电平低于阈值时,将较低的值设定为 相同的一步一步的方式。