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    • 1. 发明授权
    • Hybrid hotair heater
    • 混合式暖气加热器
    • US06907192B2
    • 2005-06-14
    • US10726683
    • 2003-12-04
    • Keiichi ItoToshiyuki NomuraYoshinori FujisawaYukihiko ShimonomaYoshimune Yamada
    • Keiichi ItoToshiyuki NomuraYoshinori FujisawaYukihiko ShimonomaYoshimune Yamada
    • F24H3/02F24H3/04F24H3/06F24D13/00
    • F24H3/04F24H3/06
    • If both the electric heaters and combustion heaters constitute a hybrid type hot-air heater wherein both heaters are equipped with inlets adjacent to each other and are also housed within a frame and separated such that the air blowing systems of each heater are independent of each other, air leakage will occur in only the combustion heater during the heating operation in a direction opposite to the air blowing passage of the electric heater thereby resulting in dust adhering to the electric heater. If the electric heater is operated in this state, the dust will be heated and then burn causing a foul odor to occur when the heating operation first starts. Therefore, the air blowing fan 43 runs to remove any dust that entered into the air blowing passage before the electric heater 4 runs when the electric heater unit 4, equipped with an electric heater 44, is performing a heating operation.
    • 如果电加热器和燃烧加热器都构成混合型热空气加热器,其中两个加热器都配备有彼此相邻的入口,并且还容纳在框架内并分离,使得每个加热器的吹风系统彼此独立 在与电加热器的吹风通道相反的方向上的加热操作期间,只有燃烧加热器才会发生泄漏,从而导致灰尘附着在电加热器上。 如果在这种状态下操作电加热器,则当加热操作首先开始时,灰尘将被加热然后燃烧,从而产生恶臭。 因此,当装有电加热器44的电加热器单元4正在进行加热操作时,送风风扇43运行以除去在电加热器4运行之前进入送风通道的灰尘。
    • 6. 发明授权
    • Signal separation reproduction device and signal separation reproduction method
    • 信号分离再现装置和信号分离再现方法
    • US08345884B2
    • 2013-01-01
    • US12518727
    • 2007-12-07
    • Toshiyuki Nomura
    • Toshiyuki Nomura
    • H04R5/00
    • H04S3/02G10L19/008H04S3/008H04S2400/11
    • A first matrix (W(k)) indicating frequency characteristics of a separation filter is calculated from input signals of a plurality of channels. A second matrix (Ws(k)) is calculated by using the restriction coefficients (Ci(k)) for restricting the separation filter and the first matrix, and separation filter coefficients (wsij(s)) are calculated by using the second matrix. With use of the separation filter coefficients, separation signals (ysi(t)) are then calculated from the input signals. A third matrix (Ws−1(k)) is then calculated by transforming the second matrix into an inverse matrix at each frequency, and reproduction filter coefficients (a′I1(s), a′I2(s)) are calculated by using the third matrix. With use of the reproduction filter coefficients, the synthesized signal of each channel is calculated by using the separation signals. The restriction coefficients are calculated so that the reproduction filter coefficients indicate filter coefficients which perform a sound source localization on the separation signals.
    • 从多个通道的输入信号计算表示分离滤波器的频率特性的第一矩阵(W(k))。 通过使用用于限制分离滤波器和第一矩阵的限制系数(Ci(k))来计算第二矩阵(W s(k)),并且通过使用第二矩阵来计算分离滤波器系数(wsij(s))。 使用分离滤波器系数,然后根据输入信号计算分离信号(ysi(t))。 然后通过将第二矩阵变换为每个频率的逆矩阵来计算第三矩阵(Ws-1(k)),并且通过使用再现滤波器系数(a'I1(s),a'I2(s) 第三个矩阵。 利用再现滤波器系数,通过使用分离信号来计算各信道的合成信号。 计算限制系数,使得再现滤波器系数表示对分离信号执行声源定位的滤波器系数。
    • 9. 发明申请
    • SOUND PROCESSING METHOD, SOUND PROCESSING SYSTEM, VIDEO PROCESSING METHOD, VIDEO PROCESSING SYSTEM, SOUND PROCESSING DEVICE, AND METHOD AND PROGRAM FOR CONTROLLING SAME
    • 声音处理方法,声音处理系统,视频处理方法,视频处理系统,声音处理装置,以及用于控制它们的方法和程序
    • US20140139739A1
    • 2014-05-22
    • US14131580
    • 2012-07-13
    • Naotake FujitaToshiyuki Nomura
    • Naotake FujitaToshiyuki Nomura
    • H04N5/04G10L19/018
    • H04N5/04G10L19/018G10L25/48
    • To provide a device which accomplishes real-time sound identification and matching, by solving both of the problem of reducing time length of a frame and improving temporal accuracy and the problem of being robust against mixing with other sounds.A sound processing device according to the present invention includes: a time-frequency analysis means which generates a time-frequency plane from a sound signal through time-frequency analysis; a region characteristic amount extraction means which, for a plurality of partial region pairs which is defined on the time-frequency plane and of which at least either of shapes of two partial regions or positions of the two partial regions differ from one another, extracts a region characteristic amount from each partial region; and a sound identifier generation means which generates a sound identifier which identifies the sound by using the region characteristic amount from the each partial region.
    • 通过解决帧减少时间长度和提高时间精度的两个问题,提供实现实时声音识别和匹配的装置,以及与其他声音混合的鲁棒性的问题。 根据本发明的声音处理装置包括:时间 - 频率分析装置,其通过时频分析从声音信号产生时频平面; 区域特征量提取装置,对于在时间 - 频率平面上限定并且两个部分区域的两个部分区域或两个部分区域的位置中的至少一个的形状彼此不同的多个部分区域对,提取一个 每个部分区域的区域特征量; 以及声音识别器产生装置,其通过使用来自每个部分区域的区域特征量来生成识别声音的声音标识符。