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    • 2. 发明申请
    • INTERACTIVE SYSTEM CAPABLE OF IMPROVING IMAGE PROCESSING
    • 可以改进图像处理的交互系统
    • US20100220210A1
    • 2010-09-02
    • US12775467
    • 2010-05-06
    • Hsin-Chia ChenChih-Hung LuCho-Yi LinTzu-Yi Chao
    • Hsin-Chia ChenChih-Hung LuCho-Yi LinTzu-Yi Chao
    • H04N5/228
    • G06T7/408G06T7/11G06T7/62G06T7/70G06T7/90G06T2207/10016
    • An interactive system capable of improving image processing includes a reference device, a processing module and a controller. The reference device is used for transmitting and/or reflecting light signals within a predetermined spectrum. The processing module includes an image sensor, an estimation unit and a transmission interface. The image sensor is used for sensing an image so as to generate pixel signals; the estimation unit is used for determining static parameters of at least one image object according to the pixel signals; and the transmission interface is used for serially outputting the static parameters of the at least one image object. The controller is used for controlling operation of the interactive system according to the static parameters of the at least one image object outputted from the transmission interface. The image sensor, the estimation unit, and the transmission interface can all be formed on the same substrate.
    • 能够改善图像处理的交互式系统包括参考装置,处理模块和控制器。 参考装置用于在预定频谱内传输和/或反射光信号。 处理模块包括图像传感器,估计单元和传输接口。 图像传感器用于感测图像以产生像素信号; 估计单元用于根据像素信号确定至少一个图像对象的静态参数; 并且传输接口用于串行输出至少一个图像对象的静态参数。 控制器用于根据从传输接口输出的至少一个图像对象的静态参数来控制交互式系统的操作。 图像传感器,估计单元和传输界面都可以在同一基板上形成。
    • 3. 发明授权
    • Interactive system capable of improving image processing
    • 能够改善图像处理的交互式系统
    • US09024880B2
    • 2015-05-05
    • US12775467
    • 2010-05-06
    • Hsin-Chia ChenChih-Hung LuCho-Yi LinTzu-Yi Chao
    • Hsin-Chia ChenChih-Hung LuCho-Yi LinTzu-Yi Chao
    • G06T7/40G06T7/00G06T7/60
    • G06T7/408G06T7/11G06T7/62G06T7/70G06T7/90G06T2207/10016
    • An interactive system capable of improving image processing includes a reference device, a processing module and a controller. The reference device is used for transmitting and/or reflecting light signals within a predetermined spectrum. The processing module includes an image sensor, an estimation unit and a transmission interface. The image sensor is used for sensing an image so as to generate pixel signals; the estimation unit is used for determining static parameters of at least one image object according to the pixel signals; and the transmission interface is used for serially outputting the static parameters of the at least one image object. The controller is used for controlling operation of the interactive system according to the static parameters of the at least one image object outputted from the transmission interface. The image sensor, the estimation unit, and the transmission interface can all be formed on the same substrate.
    • 能够改善图像处理的交互式系统包括参考装置,处理模块和控制器。 参考装置用于在预定频谱内传输和/或反射光信号。 处理模块包括图像传感器,估计单元和传输接口。 图像传感器用于感测图像以产生像素信号; 估计单元用于根据像素信号确定至少一个图像对象的静态参数; 并且传输接口用于串行输出至少一个图像对象的静态参数。 控制器用于根据从传输接口输出的至少一个图像对象的静态参数来控制交互式系统的操作。 图像传感器,估计单元和传输界面都可以在同一基板上形成。
    • 10. 发明申请
    • Apparatus and method for audio encoding
    • 用于音频编码的装置和方法
    • US20070033021A1
    • 2007-02-08
    • US11391752
    • 2006-03-28
    • Chih-Hsin LinHsin-Chia ChenChang-Che TsaiTzu-Yi Chao
    • Chih-Hsin LinHsin-Chia ChenChang-Che TsaiTzu-Yi Chao
    • G10L19/02
    • G10L19/0208G10L19/035
    • A method for audio encoding includes: analyzing an audio frame using a psychoacoustic model to obtain a corresponding masking curve and window information; transforming the audio frame according to the window information to obtain a spectrum, and dividing the spectrum into a plurality of frequency sub-bands; estimating a scale factor for each frequency sub-band; quantizing the frequency sub-bands; encoding the quantized frequency sub-bands; and packing the encoded frequency sub-bands and side information into an audio stream. Each scale factor is estimated based on a quantizable audio intensity of each frequency sub-band, which is adjusted according to a cumulative total amount of buffer space used for storing the encoded frequency sub-bands and an amount of buffer space used for storing a previously encoded audio frame, and a mean of intensities of all signals in the corresponding frequency sub-band and spectrum position of the corresponding frequency sub-band.
    • 一种用于音频编码的方法包括:使用心理声学模型分析音频帧以获得相应的掩蔽曲线和窗口信息; 根据窗口信息变换音频帧以获得频谱,并将频谱划分成多个频率子带; 估计每个频率子带的比例因子; 量化频率子带; 编码量化频率子带; 并将编码的频率子带和侧信息打包成音频流。 每个比例因子基于每个频率子带的可量化音频强度来估计,每个频率子带根据用于存储编码频率子带的缓冲区的累积总量和用于存储先前编码的频率子带的缓冲区空间量进行调整 编码音频帧,以及对应的频率子带的相应频率子带和频谱位置中的所有信号的强度的平均值。