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    • 2. 发明授权
    • Frame skip encoding apparatus for moving images
    • 用于移动图像的帧跳过编码装置
    • US5253054A
    • 1993-10-12
    • US752095
    • 1991-08-29
    • Hiroshi FujiwaraHiroo UwabuMasanori MaruyamaEiji Kakii
    • Hiroshi FujiwaraHiroo UwabuMasanori MaruyamaEiji Kakii
    • G06T9/00H04N11/04H04N19/126H04N19/132H04N19/15H04N19/172H04N19/176H04N19/196H04N19/423H04N19/46H04N19/503H04N19/51H04N19/60H04N19/61H04N19/625H04N19/70H04N19/82H04N19/85H04N19/91H04N7/12
    • H04N19/587H04N19/126H04N19/132H04N19/172H04N19/60H04N19/61H04N19/124H04N19/146H04N19/152
    • In a moving image encoding apparatus, an image signal is converted into a digital image signal by an A/D converter and is stored in frame memory 110. In addition, a movement vector detector 300 detects a movement of the output of the frame memory 110. In an orthogonal transformer 130, a difference signal between a present frame image which is stored in the frame memory 110 and a previous frame image which is stored in a variable delay frame memory 210 is supplied, in which the difference signal is converted by orthogonal transformation. The orthogonally transformed transformation signal is quantized into a linear or nonlinear discrete level on the basis of a step width of quantization from a step size controller 600 in a quantizer 140. Then, the quantized data is encoded into a variable length code in a variable length encoder 150. A movement vector detector 300 detects movement of the image by pattern matching processing between the present frame and the previous frame. A movement vector/encoding mode judger 310 generates the movement vector 3 and the encoding mode 4. The variable length code is transmitted to the transmission circuit after adding a movement vector 3 and encoding mode 4. In these operations, a frame rate controller 700 controls the processing rate of each frame image in the entire apparatus. Frame rate controller 700 calculates a total frame skip number S.sub.T which corresponds to the total number of frames that are not transmitted after a frame has been transmitted. The total frame skip number S.sub.T is calculated by selecting a smaller sum of an externally set signal S.sub.min, signal S.sub.M which is calculated from the degree of movement compensation and S.sub.S which is calculated from the degree of quantization, and an externally set signal S.sub.max.
    • 在运动图像编码装置中,图像信号由A / D转换器转换为数字图像信号,并被存储在帧存储器110中。此外,运动矢量检测器300检测帧存储器110的输出的移动 在正交变换器130中,提供存储在帧存储器110中的当前帧图像与存储在可变延迟帧存储器210中的先前帧图像之间的差分信号,其中差分信号通过正交变换 转型。 基于来自量化器140中的步长控制器600的量化的步长,将正交变换的变换信号量化为线性或非线性离散电平。然后,量化数据被编码为可变长度的可变长度码 移动矢量检测器300通过当前帧和前一帧之间的模式匹配处理来检测图像的移动。 移动向量/编码模式判断器310生成移动向量3和编码模式4.在添加了移动向量3和编码模式4之后,将可变长度码发送到发送电路。在这些操作中,帧速率控制器700控制 整个设备中每个帧图像的处理速率。 帧速率控制器700计算与发送帧之后未发送的帧的总数相对应的总帧跳过数ST。 通过从外部设定信号Smin,由从量化度计算出的运动补偿量SS和从外部设定信号Smax计算的信号SM中选择较小的和来计算总帧跳过数ST。