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首页> 外文期刊>IEEE Transactions on Signal Processing >Unified parallel lattice structures for time-recursive discrete cosine/sine/Hartley transforms
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Unified parallel lattice structures for time-recursive discrete cosine/sine/Hartley transforms

机译:时间递归离散余弦/正弦/ Hartley变换的统一并行晶格结构

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摘要

Unified efficient computations of the discrete cosine transform (DCT), discrete sine transform (DST), discrete Hartley transform (DHT), and their inverse transforms employing the time-recursive approach are considered. Unified parallel lattice structures that can dually generate the DCT and DST simultaneously as well the DHT are developed. These structures can obtain the transformed data for sequential input time recursively with a throughput rate of one per clock cycle. The total number of multipliers required is a linear function of the transform size N, with no constraint on N. The resulting architectures are regular, modular, and without global communication so that they are very suitable for VLSI implementation for high-speed applications. It is shown that the DCT, DST, DHT and their inverse transforms share an almost identical lattice structure. The tradeoff between time and area for the block data processing is considered.
机译:考虑了采用时间递归方法的离散余弦变换(DCT),离散正弦变换(DST),离散Hartley变换(DHT)及其逆变换的统一高效计算。开发了可以同时双重生成DCT和DST以及DHT的统一并行晶格结构。这些结构可以递归的顺序输入时间获得转换后的数据,吞吐速率为每个时钟周期一个。所需乘数的总数是变换大小N的线性函数,对N无任何限制。生成的体系结构是规则的,模块化的,并且没有全局通信,因此它们非常适合于高速应用的VLSI实现。结果表明,DCT,DST,DHT及其逆变换共享几乎相同的晶格结构。考虑用于块数据处理的时间和面积之间的折衷。

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