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    • 2. 发明授权
    • Orthogonal transformation arithmetic unit
    • 正交变换算术单元
    • US5216516A
    • 1993-06-01
    • US687037
    • 1991-04-16
    • Masafumi TanakaYukihiro ImaiKazuo SakamotoTatsuya Fujii
    • Masafumi TanakaYukihiro ImaiKazuo SakamotoTatsuya Fujii
    • G06F17/14G06T9/00H04N7/26H04N7/30
    • G06F17/147H04N19/126H04N19/132H04N19/154H04N19/162H04N19/176H04N19/18H04N19/42H04N19/60H04N19/124H04N19/146H04N19/149H04N19/15
    • An orthogonal transformation arithmetic unit performs a discrete cosine transformation with respect to a digital signal and compresses discrete cosine transformed data by quantizing and Huffman-coding processings thereof. The arithmetic unit Huffman-decodes the compressed data and demodulates the Huffman-decoded data to a digital signal by performing inverse quantization and an inverse discrete cosine transformation with respect to the Huffman-decoded data. The arithmetic unit has a memory section for storing one line block of image data of brightness and color signals converted to digital signals; and a section for processing the discrete cosine transformation and having a preprocessing circuit for performing adding and subtracting operations with respect to the image data read out of the memory section such that some values of discrete cosine transformation coefficients used in the discrete cosine transformation are partially set to zero. The other orthogonal arithmetic units are also shown.
    • 正交变换运算单元对数字信号进行离散余弦变换,并通过量化其霍夫曼编码处理来压缩离散余弦变换数据。 算术单元对压缩数据进行霍夫曼解码,并通过对霍夫曼解码数据进行逆量化和逆离散余弦变换,将霍夫曼解码后的数据解调为数字信号。 算术单元具有存储部分,用于存储转换成数字信号的亮度和色彩信号的一行线路图像数据; 以及用于处理离散余弦变换的部分,并且具有用于对从存储器部分读出的图像数据执行加法和减法运算的预处理电路,使得在离散余弦变换中使用的离散余弦变换系数的一些值被部分地设定 到零。 还示出了其他正交运算单元。
    • 5. 发明申请
    • Received voice playback apparatus
    • 接收语音播放装置
    • US20080183464A1
    • 2008-07-31
    • US12007442
    • 2008-01-10
    • Yukihiro Imai
    • Yukihiro Imai
    • G10L19/14
    • G10L21/0208
    • A disclosed received voice playback apparatus includes a characteristic acquiring unit configured to acquire first frequency characteristic values obtained by resolving digital vocal signals that are based on received vocal signals into predetermined frequency bands, wherein each first frequency characteristic value corresponds to one of the predetermined frequency bands; a setting unit configured to obtain second frequency characteristic values, wherein each second frequency characteristic value is set for one of the predetermined frequency bands; a computing unit configured to compute a gain for each of the predetermined frequency bands based on a difference between the first frequency characteristic value and the second frequency characteristic value; and a characteristic changing unit configured to change the first frequency characteristic values of the digital vocal signals by multiplying the digital vocal signals by each of the gains corresponding to one of the predetermined frequency bands of the digital vocal signals.
    • 所公开的接收语音播放装置包括特征获取单元,其被配置为获取通过将基于接收到的声音信号的数字声音信号解析为预定频带而获得的第一频率特性值,其中每个第一频率特性值对应于预定频带之一 ; 设置单元,被配置为获得第二频率特性值,其中为所述预定频带之一设置每个第二频率特性值; 计算单元,被配置为基于所述第一频率特性值和所述第二频率特性值之间的差来计算每个所述预定频带的增益; 以及特征改变单元,被配置为通过将数字声音信号乘以与数字声带信号的预定频带之一相对应的每个增益来改变数字声音信号的第一频率特性值。
    • 6. 发明授权
    • Received voice playback apparatus
    • 接收语音播放装置
    • US08145476B2
    • 2012-03-27
    • US12007442
    • 2008-01-10
    • Yukihiro Imai
    • Yukihiro Imai
    • G10L19/14
    • G10L21/0208
    • A disclosed received voice playback apparatus includes a characteristic acquiring unit configured to acquire first frequency characteristic values obtained by resolving digital vocal signals that are based on received vocal signals into predetermined frequency bands, wherein each first frequency characteristic value corresponds to one of the predetermined frequency bands; a setting unit configured to obtain second frequency characteristic values, wherein each second frequency characteristic value is set for one of the predetermined frequency bands; a computing unit configured to compute a gain for each of the predetermined frequency bands based on a difference between the first frequency characteristic value and the second frequency characteristic value; and a characteristic changing unit configured to change the first frequency characteristic values of the digital vocal signals by multiplying the digital vocal signals by each of the gains corresponding to one of the predetermined frequency bands of the digital vocal signals.
    • 所公开的接收语音播放装置包括特征获取单元,其被配置为获取通过将基于接收到的声音信号的数字声音信号解析为预定频带而获得的第一频率特性值,其中每个第一频率特性值对应于预定频带之一 ; 设置单元,被配置为获得第二频率特性值,其中为所述预定频带之一设置每个第二频率特性值; 计算单元,被配置为基于所述第一频率特性值和所述第二频率特性值之间的差来计算每个所述预定频带的增益; 以及特征改变单元,被配置为通过将数字声音信号乘以与数字声带信号的预定频带之一相对应的每个增益来改变数字声音信号的第一频率特性值。
    • 7. 发明授权
    • Method and apparatus for mobile phone using semiconductor device capable of inter-processing voice signal and audio signal
    • 使用能够进行语音信号和音频信号的处理的半导体装置的手机的方法和装置
    • US07437298B2
    • 2008-10-14
    • US10802318
    • 2004-03-16
    • Takuo MukaiYukihiro Imai
    • Takuo MukaiYukihiro Imai
    • G10L21/00
    • H04M1/6025
    • A method and apparatus of mobile phone using a semiconductor device includes a first converter, a second converter, a first digital processing circuit, and a second digital processing circuit. The first converter converts a first digital audio signal sampled with a predetermined audio sampling frequency into a second digital audio signal sampled with a predetermined voice sampling frequency. The second converter converts a first digital voice signal sampled with the predetermined voice sampling frequency into a second digital voice signal sampled with the predetermined audio sampling frequency. The first digital processing circuit performs a predetermined digital computation on the second digital audio signal sampled with the predetermined voice sampling frequency and a third digital voice signal. The second digital processing circuit performs the predetermined digital computation on the second digital voice signal sampled with the predetermined audio sampling frequency and the first digital audio signal sampled with the predetermined audio sampling frequency.
    • 使用半导体器件的移动电话的方法和装置包括第一转换器,第二转换器,第一数字处理电路和第二数字处理电路。 第一转换器将以预定音频采样频率采样的第一数字音频信号转换成以预定语音采样频率采样的第二数字音频信号。 第二转换器将用预定语音采样频率采样的第一数字语音信号转换为以预定音频采样频率采样的第二数字语音信号。 第一数字处理电路对以预定语音采样频率采样的第二数字音频信号和第三数字语音信号执行预定的数字计算。 第二数字处理电路对以预定音频采样频率采样的第二数字语音信号和以预定音频采样频率采样的第一数字音频信号执行预定的数字计算。
    • 8. 发明授权
    • Melody sound generating apparatus
    • 旋律发声装置
    • US06255577B1
    • 2001-07-03
    • US09521735
    • 2000-03-09
    • Yukihiro Imai
    • Yukihiro Imai
    • G10H700
    • G10H1/0041G10H2230/021G10H2240/251
    • A melody sound generating apparatus includes a musical-scale generator which produces a plurality of musical scales based on a recorded melody pattern, each musical scale being a set of musical notes arranged in a predetermined order and at fixed separations. A melody sound data generator produces an output melody sound data containing a plurality of sets of musical notes based on the plurality of musical scales supplied by the musical-scale generator, by adding the plurality of musical scales together. A sound generating mechanism plays a melody sound based on the output melody sound data supplied by the melody sound data generator.
    • 旋律声产生装置包括:音阶发生器,其基于记录的旋律图案产生多个音阶,每个音阶是以预定顺序排列并以固定分离排列的一组音符。 旋律声音数据发生器通过将多个音阶叠加在一起,产生基于由音阶发生器提供的多个音阶的包含多组音符的输出旋律声音数据。 声音发生机构基于由旋律声音数据发生器提供的输出旋律声音数据播放旋律声音。