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    • 4. 发明授权
    • Method and arrangements for audio signal encoding
    • 音频信号编码的方法和布置
    • US08612216B2
    • 2013-12-17
    • US12223362
    • 2006-01-31
    • Martin GartnerBernd GeiserPeter JaxStefan SchandlHerve TaddeiPeter Vary
    • Martin GartnerBernd GeiserPeter JaxStefan SchandlHerve TaddeiPeter Vary
    • G10L19/08G10L19/12
    • G10L19/0208G10L21/038
    • To form an audio signal, frequency components of the audio signal which are allotted to a first subband are formed by means of a subband decoder using supplied fundamental period values which respectively indicate a fundamental period for the audio signal. Frequency components of the audio signal which are allotted to a second subband are formed by exciting an audio synthesis filter using an excitation signal which is specific to the second subband. To produce this excitation signal, an excitation signal generator derives a fundamental period parameter from the fundamental period values. The fundamental period parameter is used by the excitation signal generator to form pulses with a pulse shape which is dependent on the fundamental period parameter at an interval of time which is determined by the fundamental period parameter and to mix them with a noise signal.
    • 为了形成音频信号,分配给第一子带的音频信号的频率分量通过使用提供的基本周期值的子带解码器形成,该基带周期值分别表示音频信号的基本周期。 通过使用特定于第二子带的激励信号激励音频合成滤波器来形成分配给第二子带的音频信号的频率分量。 为了产生该激励信号,激励信号发生器从基本周期值导出基本周期参数。 基频周期参数由激励信号发生器使用,以形成脉冲形状的脉冲,脉冲形状取决于基本周期参数,该时间间隔由基本周期参数决定,并将其与噪声信号混合。
    • 5. 发明授权
    • Method and apparatus for re-encoding signals
    • 用于重新编码信号的方法和装置
    • US08428942B2
    • 2013-04-23
    • US12227189
    • 2007-05-12
    • Peter JaxOliver WuebboltJohannes Boehm
    • Peter JaxOliver WuebboltJohannes Boehm
    • G10L19/00G10L19/02
    • G10L19/24G10L19/0204G10L19/173
    • At the time of encoding audio content, the finally required data rate for delivery to the customer may be unknown. A data format is disclosed that is optimized for serving as Intermediate Format for efficient and fast recoding, to obtain one or more standard complying lossy encoded data streams with flexible data rates. Encoding can be performed in two steps that are inter-coordinated for cooperating, but may be locally and/or temporally separate. Between the partial encoders encoding parameters and/or auxiliary data are transmitted in a separate parameter enhancement layer, which complements a lossy data stream and can be used by the second encoder or transcoder for fast and computationally efficient implementation of the second encoding step. An additional lossless enhancement layer allows lossless reconstruction.
    • 在对音频内容进行编码时,传送给客户的最终所需的数据速率可能是未知的。 公开了针对用于高效和快速重新编码的中间格式进行优化的数据格式,以获得具有灵活数据速率的一个或多个标准符合有损编码数据流。 编码可以在两个步骤中执行,这两个步骤是协调的,用于协作,但可以在本地和/或时间上分离。 编码参数和/或辅助数据的部分编码器之间的传输是在单独的参数增强层中传输的,其补充有损数据流,并可被第二编码器或代码转换器用于快速和计算上有效地实现第二编码步骤。 额外的无损增强层允许无损重建。
    • 6. 发明授权
    • Method and arrangements for coding audio signals
    • 编码音频信号的方法和布置
    • US08135584B2
    • 2012-03-13
    • US12223359
    • 2006-01-31
    • Bernd GeiserPeter JaxStefan SchandlHerve Taddei
    • Bernd GeiserPeter JaxStefan SchandlHerve Taddei
    • G10L19/00
    • G10L21/038G10L19/12G10L2019/0001
    • According to the invention, an excitation signal is generated as a result of sampled excitation values in order to excite an audio synthesis filter, the generated sampled excitation values being continuously stored in an adaptive codebook. A noise generator is provided which continuously generates random sampled values. A sequence of the stored sampled excitation values is selected from the adaptive codebook based on a fed audio fundamental frequency parameter by means of which a time gap between the sequence that is to be selected and the actual time reference is predefined. The excitation signal is generated by mixing the selected sequence with a random sequence encompassing actual random sampled valued of the noise generator.
    • 根据本发明,作为采样激励值的结果产生激励信号,以激发音频合成滤波器,所生成的采样激励值被连续存储在自适应码本中。 提供连续产生随机采样值的噪声发生器。 基于馈送的音频基频参数,从自适应码本中选择存储的采样激励值的序列,通过该序列,预定要选择的序列与实际时间基准之间的时间间隔。 通过将所选择的序列与包含噪声发生器的实际随机采样值的随机序列混合来产生激励信号。
    • 7. 发明申请
    • METHOD AND APPARATUS FOR DETECTING A LEAK IN A DOUBLE PIPE
    • 检测双管泄漏的方法和装置
    • US20100126250A1
    • 2010-05-27
    • US12696450
    • 2010-01-29
    • Peter Jax
    • Peter Jax
    • G01M3/28
    • G01M3/222
    • In a method for detecting a leak in a double pipe, a medium located in an intermediate chamber between the interior and exterior pipe is moved toward a first end of the pipe, whereupon the medium flows in from the second end. On the first end the medium is examined for any leakage of a characteristic material, upon the detection of which a leakage signal is generated and a location of the leakage is calculated based on the transport time of the characteristic material from the leakage to the first end and on the mass flow of the medium. A corresponding device contains a conveyor unit for moving the medium through the intermediate chamber. A material sensor is disposed at the first end for examining the medium for the characteristic material. A control and analysis unit is provided for generating a leakage signal and calculating the location of the leakage.
    • 在用于检测双管中的泄漏的方法中,位于内管和外管之间的中间室中的介质朝向管的第一端移动,于是介质从第二端流入。 在第一端,检查介质的特征材料的任何泄漏,在检测到产生泄漏信号并基于特征材料从泄漏到第一端的运输时间计算泄漏的位置时 以及介质的质量流量。 相应的装置包含用于通过中间室移动介质的输送单元。 材料传感器设置在第一端,用于检查特征材料的介质。 提供控制和分析单元,用于产生泄漏信号并计算泄漏的位置。
    • 9. 发明授权
    • Device for sealing off and monitoring a volume
    • 用于密封和监测体积的装置
    • US5215409A
    • 1993-06-01
    • US730619
    • 1991-07-16
    • Peter JaxKlaus RuthrofKarl-Heinz BodeKlaus Gunther
    • Peter JaxKlaus RuthrofKarl-Heinz BodeKlaus Gunther
    • B09B1/00E02D31/00G01M3/02G01M3/20
    • B09B1/00E02D31/00G01M3/02G01M3/20
    • A device for sealing off and monitoring a volume includes two seals. Support elements space the seals apart from one another. At least one conduit is disposed between the seals and the support elements. The at least one conduit has an inlet opening and an outlet opening for a medium. At least one sensor is associated with the outlet line. The two seals have edges being tightly joined to one another leaving the inlet and outlet openings of the at least one conduit free. The support elements are formed of a flow-hindering material. At least two devices may be tightly joined together to form a field, with the outlet opening of the at least one conduit of one of the at least two devices being connected to the inlet opening of the at least one conduit of another of the at least two devices.
    • 用于密封和监测体积的装置包括两个密封件。 支撑元件将密封件彼此分开。 至少一个导管设置在密封件和支撑元件之间。 至少一个导管具有用于介质的入口和出口。 至少一个传感器与出口管线相关联。 两个密封件具有彼此紧密接合的边缘,留下至少一个导管的入口和出口开口自由。 支撑元件由阻流材料形成。 至少两个装置可以紧密连接在一起以形成一个场,其中至少两个装置中的一个的至少一个管道的出口开口连接到至少另一个装置的至少一个导管的入口 两个设备。