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    • 2. 发明授权
    • Hadamard transformer using memory cell
    • Hadamard变压器采用存储单元
    • US5726925A
    • 1998-03-10
    • US557275
    • 1995-11-14
    • Jin-Il HyunJin-Jong ChaIn Kang
    • Jin-Il HyunJin-Jong ChaIn Kang
    • G06F17/14G06F7/36
    • G06F17/14
    • A Hadamard transformer is disclosed which uses memory cells in a digital signal processor for restoring to the original signals at a receiving end from the signals which have been transformed to a Hadamard function sequenced at a transmitting end. The Hadamard transformer using memory cells includes a counter which receives sample data clocks to output counted signals to a memory address generator and to a plurality of adder/subtractors. The plurality of adder/subtractors add and subtract the input signals and the data read from a memory in accordance with the counted signals of the counter so as to write or record the results into the memory. The memory address generator generates memory addresses in accordance with the sample data clock and the counted signals so that the memory can be read and written to. The memory thus stores the data inputted and outputted to and from the plurality of sadder/subtractors in accordance with the memory addresses generated by the memory address generator. A comparitor compares the final output values of the adder/subtractors at each period of the Hadamard function sequence so as to detect the maximum likelihood of a Hadamard function sequence.
    • 公开了一种使用数字信号处理器中的存储器单元从接收端恢复原始信号的Hadamard变换器,该信号已被转换为在发送端排序的Hadamard函数。 使用存储单元的Hadamard变压器包括接收采样数据时钟以将计数信号输出到存储器地址发生器和多个加法器/减法器的计数器。 多个加法器/减法器根据计数器的计数信号对输入信号和从存储器读取的数据进行加法和减法,以便将结果写入或记录到存储器中。 存储器地址发生器根据采样数据时钟和计数信号生成存储器地址,使得可以读取和写入存储器。 因此,存储器根据由存储器地址发生器产生的存储器地址存储输入和输出多个梯形图/减法器的数据。 比较器在Hadamard函数序列的每个周期比较加法器/减法器的最终输出值,以便检测Hadamard函数序列的最大似然。
    • 3. 发明授权
    • Effective motion estimation for hierarchical search
    • 分层搜索的有效运动估计
    • US06850569B2
    • 2005-02-01
    • US09846153
    • 2001-04-30
    • Seong-Mo ParkJu-Hyun ParkJin-Jong ChaHan-Jin Cho
    • Seong-Mo ParkJu-Hyun ParkJin-Jong ChaHan-Jin Cho
    • H04N7/32G06T7/20H04N5/14H04N7/26H04N7/12
    • H04N5/145G06T7/207H04N19/53
    • In the present invention, a reference block data within a current image from which a motion vector will be obtained and corresponding search region data within reproduced previous image are stored in a reference block and a search region data memory, respectively. A motion vector of two pixels unit is performed using the reference block and the search region data stored in the memory, thus resulting in obtained a motion vector of two pixels unit. At this time, the reference block and the search region data are used by performing 2:1 sampling in a horizontal direction and a vertical direction, respectively and the search range is −7˜+7. The structure of the motion search is consisted of a memory for storing a reference block (8×8) of current images and a memory (24×8) for storing a search region storing reproduced previous images. The structure further includes a processing element (PE) array block for obtaining SAD (sum of absolute difference) among candidate blocks within the search region and a block for obtaining the smallest motion vector among the candidate SADs. If hardware is implemented using the two-step search algorithm among the motion estimation of the present invention, a lot of data bandwidth of the reference memory and a memory having a large size are required. The down sampling scheme and the bandwidth of the reference memory has a structure in which a slice is previously downloaded before a pipeline when it downloads from the external memory. In an actual pipeline operation, it is implemented by the bandwidth of ⅓. Also, as it has independent memories, it can operate even at low frequency without degrading the performance.
    • 在本发明中,分别在参考块和搜索区域数据存储器中分别存储当前图像中的将获得运动矢量的参考块数据和再现的先前图像内的相应搜索区域数据。 使用存储在存储器中的参考块和搜索区域数据来执行两个像素单元的运动矢量,从而得到两个像素单位的运动矢量。 此时,通过在水平方向和垂直方向上分别进行2:1的采样来使用参考块和搜索区域数据,并且搜索范围为-7〜+ 7。 运动搜索的结构由用于存储当前图像的参考块(8×8)的存储器和用于存储存储再现的先前图像的搜索区域的存储器(24x8)组成。 该结构还包括处理元件(PE)阵列块,用于获得搜索区域内的候选块之间的SAD(绝对差之和)和用于获得候选SAD之间的最小运动矢量的块。 如果在本发明的运动估计中使用两步搜索算法实现硬件,则需要参考存储器的大量数据带宽和大尺寸的存储器。 下采样方案和参考存储器的带宽具有这样的结构,其中当从外部存储器下载时,管线之前预先下载片。 在实际流水线操作中,以1/3的带宽实现。 此外,由于它具有独立的存储器,所以即使在低频下也可以运行,而不会降低性能。