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首页> 外文期刊>IEE proceedings. Part G, Circuits, devices and systems >Data-folded architecture for running 3-D DWT using 4-tap Daubechies filters
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Data-folded architecture for running 3-D DWT using 4-tap Daubechies filters

机译:使用4抽头Daubechies滤波器运行3D DWT的数据折叠架构

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A real-time 3-D sub-band coding (SBC) technique using a discrete wavelet transform is proposed. The main advantages of the proposed scheme lie in the reduction of wait time and diminution of buffer size in 3-D SBC. The major delay which is due to the group of frames (GOF) generation in the temporal direction is decreased by dynamic updating of the transform coefficients. The dynamic updating handles much a lower dimension of data compared to 3-D SBC, and thus facilitates better hardware utilisation with lower overhead. A data-folding architecture is used in unison with the CORDIC-based QMF lattice filters for realisation of 2-D DWTs using a 4-tap Daubechies filter. The data scanning pattern for the spatial domain signal results in a low-complexity control circuit. The multiplierless DWT architecture operating at 100 MHz is implemented on 0.25 μm BiCMOS technology and found to have much lower power dissipation compared to the multiplier-based structures for FIR realisation. The optimised design of the DWT filter using data-folding architecture resulted in an appreciable low memory budget of N~(2)/4+2N for 2-D DWT and O(N~(2)/M) time required for temporal direction decomposition. Hardware utilisation in the proposed architecture is 100%.
机译:提出了一种使用离散小波变换的实时3D子带编码(SBC)技术。所提出的方案的主要优点在于减少了3-D SBC中的等待时间并减小了缓冲区大小。通过动态更新变换系数来减少由于在时间方向上的帧组(GOF)生成而引起的主要延迟。与3-D SBC相比,动态更新处理的数据量要低得多,因此可以以较低的开销促进更好的硬件利用率。数据折叠架构与基于CORDIC的QMF晶格滤波器配合使用,以实现使用4抽头Daubechies滤波器的2-D DWT。用于空间域信号的数据扫描模式导致低复杂度的控制电路。在0.25μmBiCMOS技术上实现以100 MHz工作的无乘法器DWT架构,与实现FIR的基于乘法器的结构相比,其功耗要低得多。使用数据折叠架构的DWT滤波器的优化设计导致2-D DWT的N〜(2)/ 4 + 2N显着低内存预算,时间方向所需的O(N〜(2)/ M)时间分解。提议的体系结构中的硬件利用率为100%。

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