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    • 3. 发明授权
    • Sound monitoring system for sound field selection based on stored microphone data
    • 基于存储的麦克风数据进行声场选择的声音监控系统
    • US08682675B2
    • 2014-03-25
    • US12893114
    • 2010-09-29
    • Masahito TogamiYohei Kawaguchi
    • Masahito TogamiYohei Kawaguchi
    • H04R1/32
    • H04R29/005H04R1/406H04R3/005H04R2201/403
    • Monitoring accuracy degrades due to a noise where many sound sources exist other than those to be monitored. A sound monitoring system includes a microphone array having multiple microphones and a location-based abnormal sound monitoring section. The location-based abnormal sound monitoring section is supplied with an input signal from the microphone array via a waveform acquisition section and a network. Using the input signal, the location-based abnormal sound monitoring section detects a temporal change in a sound source direction histogram. Based on a detected change result, the location-based abnormal sound monitoring section checks for abnormality in a sound field and outputs a monitoring result. The processing section searches for a microphone array near the sound source to be monitored. The processing section selects a sound field monitoring function for the sound source to be monitored based on various data concerning a microphone belonging to the searched microphone array.
    • 由于存在许多声源的噪声,监测精度会因监测的不同而降低。 声音监视系统包括具有多个麦克风的麦克风阵列和基于位置的异常声音监视部分。 基于位置的异常声音监测部分经由波形获取部分和网络被提供有来自麦克风阵列的输入信号。 使用输入信号,基于位置的异常声音监视部检测声源方向直方图的时间变化。 基于检测到的改变结果,基于位置的异常声音监视部检查声场中的异常并输出监视结果。 处理部分搜索要监视的声源附近的麦克风阵列。 处理部根据与属于搜索到的麦克风阵列的麦克风有关的各种数据,选择要监视的声源的声场监视功能。
    • 4. 发明申请
    • SOUND MONITORING SYSTEM AND SPEECH COLLECTION SYSTEM
    • 声音监听系统和语音收集系统
    • US20110082690A1
    • 2011-04-07
    • US12893114
    • 2010-09-29
    • Masahito TogamiYohei Kawaguchi
    • Masahito TogamiYohei Kawaguchi
    • G10L19/00H04R29/00
    • H04R29/005H04R1/406H04R3/005H04R2201/403
    • Monitoring accuracy degrades due to a noise in an environment where there are many sound sources other than those to be monitored. Easy initialization is required for an environment where many apparatuses operate. A sound monitoring system includes a microphone array having multiple microphones and a location-based abnormal sound monitoring section as a processing section. The location-based abnormal sound monitoring section is supplied with an input signal from the microphone array via a waveform acquisition section and a network. Using the input signal, the location-based abnormal sound monitoring section detects a temporal change in a sound source direction histogram. Based on a detected change result, the location-based abnormal sound monitoring section checks for abnormality in a sound field and outputs a monitoring result. The processing section searches for a microphone array near the sound source to be monitored. The processing section selects a sound field monitoring function for the sound source to be monitored based on various data concerning a microphone belonging to the searched microphone array.
    • 监测精度因环境中有噪声而被降低,除了被监测的声源外,还有许多声源。 对于许多设备操作的环境,需要简单的初始化。 声音监视系统包括具有多个麦克风的麦克风阵列和作为处理部分的基于位置的异常声音监视部分。 基于位置的异常声音监测部分经由波形获取部分和网络被提供有来自麦克风阵列的输入信号。 使用输入信号,基于位置的异常声音监视部检测声源方向直方图的时间变化。 基于检测到的改变结果,基于位置的异常声音监视部检查声场中的异常并输出监视结果。 处理部分搜索要监视的声源附近的麦克风阵列。 处理部根据与属于搜索到的麦克风阵列的麦克风有关的各种数据,选择要监视的声源的声场监视功能。
    • 10. 发明申请
    • Portable terminal device
    • 便携式终端设备
    • US20090054111A1
    • 2009-02-26
    • US12197810
    • 2008-08-25
    • Kazuyuki TakizawaMasahito Togami
    • Kazuyuki TakizawaMasahito Togami
    • H04M1/02
    • H04M1/03H04M1/0214H04M1/0225H04M1/0235H04M1/0245
    • A portable terminal device can extrapolate the position of a sound source in the thicknesswise direction regardless of the use style. A slide type portable terminal has an upper casing, a lower casing, and a coupling part that couples the casings in such a way that their positional relation is changeable. The upper casing has a plurality of first microphones, and the lower casing has a second microphone. In a handhold style, one of the first microphones and the second microphone are lined in the thicknesswise direction of the cellular phone, As the upper casing is slid, the other one of the first microphones and the second microphone are lined in the thicknesswise direction of the cellular phone. The position of a sound source in the thicknesswise direction can be extrapolated from output signals of a formed microphone array in the thicknesswise direction.
    • 便携式终端装置可以在厚度方向上外推声源的位置,而与使用风格无关。 滑盖型便携式终端具有上壳体,下壳体和联接部件,以使它们的位置关系是可变的方式联接壳体。 上壳体具有多个第一麦克风,下壳体具有第二麦克风。 在手持式中,第一麦克风和第二麦克风之一沿蜂窝电话的厚度方向排列。当上壳体滑动时,第一麦克风和第二麦克风中的另一个在第一麦克风和第二麦克风的厚度方向上排列 手机。 声源在厚度方向上的位置可以从形成的麦克风阵列的厚度方向的输出信号外推。