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    • 2. 发明申请
    • SPECTRAL NOISE SHAPING IN AUDIO CODING BASED ON SPECTRAL DYNAMICS IN FREQUENCY SUB-BANDS
    • 基于频率子波段频谱动态的音频编码中的频谱噪声形状
    • US20110270616A1
    • 2011-11-03
    • US12197069
    • 2008-08-22
    • Harinath GarudadriSriram GanapathyPetr MotlicekHynek Hermansky
    • Harinath GarudadriSriram GanapathyPetr MotlicekHynek Hermansky
    • G10L21/00
    • G10L19/0204G10L19/02G10L19/0212G10L19/03
    • A technique of spectral noise shaping in an audio coding system is disclosed. Frequency decomposition of an input audio signal is performed to obtain multiple frequency sub-bands that closely follow critical bands of human auditory system decomposition. The tonality of each sub-band is determined. If a sub-band is tonal, time domain linear prediction (TDLP) processing is applied to the sub-band, yielding a residual signal and linear predictive coding (LPC) coefficients of an all-pole model representing the sub-band signal. The residual signal is further processed using a frequency domain linear prediction (FDLP) method. The FDLP parameters and LPC coefficients are transferred to a decoder. At the decoder, an inverse-FDLP process is applied to the encoded residual signal followed by an inverse TDLP process, which shapes the quantization noise according to the power spectral density of the original sub-band signal. Non-tonal sub-band signals bypass the TDLP process.
    • 公开了一种音频编码系统中的频谱噪声整形技术。 执行输入音频信号的频率分解以获得紧密跟随人类听觉系统分解的临界频带的多个频率子带。 确定每个子带的音调。 如果子带是音调,则对子带应用时域线性预测(TDLP)处理,产生表示子带信号的全极模型的残差信号和线性预测编码(LPC)系数。 使用频域线性预测(FDLP)方法进一步处理残留信号。 FDLP参数和LPC系数被传送到解码器。 在解码器处,将逆FDLP处理应用于经编码的残差信号,随后进行逆TDLP处理,根据原始子带信号的功率谱密度对量化噪声进行整形。 非音调子带信号绕过TDLP过程。
    • 6. 发明授权
    • Spectral noise shaping in audio coding based on spectral dynamics in frequency sub-bands
    • 基于频率子带中频谱动力学的音频编码中的频谱噪声整形
    • US08428957B2
    • 2013-04-23
    • US12197069
    • 2008-08-22
    • Harinath GarudadriSriram GanapathyPetr MotlicekHynek Hermansky
    • Harinath GarudadriSriram GanapathyPetr MotlicekHynek Hermansky
    • G10L19/00
    • G10L19/0204G10L19/02G10L19/0212G10L19/03
    • A technique of spectral noise shaping in an audio coding system is disclosed. Frequency decomposition of an input audio signal is performed to obtain multiple frequency sub-bands that closely follow critical bands of human auditory system decomposition. The tonality of each sub-band is determined. If a sub-band is tonal, time domain linear prediction (TDLP) processing is applied to the sub-band, yielding a residual signal and linear predictive coding (LPC) coefficients of an all-pole model representing the sub-band signal. The residual signal is further processed using a frequency domain linear prediction (FDLP) method. The FDLP parameters and LPC coefficients are transferred to a decoder. At the decoder, an inverse-FDLP process is applied to the encoded residual signal followed by an inverse TDLP process, which shapes the quantization noise according to the power spectral density of the original sub-band signal. Non-tonal sub-band signals bypass the TDLP process.
    • 公开了一种音频编码系统中的频谱噪声整形技术。 执行输入音频信号的频率分解以获得紧密跟随人类听觉系统分解的临界频带的多个频率子带。 确定每个子带的音调。 如果子带是音调,则对子带应用时域线性预测(TDLP)处理,产生表示子带信号的全极模型的残差信号和线性预测编码(LPC)系数。 使用频域线性预测(FDLP)方法进一步处理残留信号。 FDLP参数和LPC系数被传输到解码器。 在解码器处,将逆FDLP处理应用于经编码的残差信号,随后进行逆TDLP处理,根据原始子带信号的功率谱密度对量化噪声进行整形。 非音调子带信号绕过TDLP过程。
    • 8. 发明授权
    • Method to predict min cell voltage from discrete min cell voltage output of stack health monitor
    • 从堆叠健康监测器的离散最小电池电压输出预测最小电池电压的方法
    • US08405399B2
    • 2013-03-26
    • US12840014
    • 2010-07-20
    • Yanyan ZhangSriram GanapathyKiran Mallavarapu
    • Yanyan ZhangSriram GanapathyKiran Mallavarapu
    • G01N27/416
    • H01M8/04552H01M8/04559H01M8/04589H01M8/04992H01M2008/1095
    • A system for estimating parameters of a fuel cell stack. The system includes a stack health monitor for monitoring minimum cell voltage, stack voltage and current density of the fuel cell stack. The stack health monitor also indicates when a predetermined minimum cell voltage threshold level has been achieved. The system further includes a controller configured to control the fuel cell stack, where the controller determines and records the average fuel cell voltage. The controller generates and stores artificial data points proximate to the one or more predetermined minimum cell voltage threshold levels each time the minimum cell voltage drops below the one or more predetermined minimum cell voltage threshold levels so as to provide an estimation of the fuel cell stack parameters including a minimum cell voltage trend and a minimum cell voltage polarization curve.
    • 一种用于估计燃料电池堆的参数的系统。 该系统包括用于监测燃料电池堆的最小电池电压,堆叠电压和电流密度的堆叠健康监测器。 堆栈运行状况监视器还指示何时已经实现了预定的最小单元电压阈值电平。 该系统还包括控制器,其被配置为控制燃料电池堆,其中控制器确定并记录燃料电池的平均电压。 每当最小单元电压下降到低于一个或多个预定最小单元电压阈值电平时,控制器产生并存储靠近一个或多个预定最小单元电压阈值电平的人造数据点,以便提供燃料电池堆参数的估计 包括最小电池电压趋势和最小电池电压极化曲线。