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A new flexible architecture for variable length DCT targeting shape-adaptive transform

机译:一种新的灵活架构,用于可变长度DCT定向形状自适应变换

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Shape-assisted block-based texture coding methodologies such as the shape-adaptive DCT raise the need for an architecture which can perform efficiently the transform of variable length N. This paper presents a 1D DCT architecture satisfying the given requirement in terms of scalability and modularity for 2/spl les/N/spl les/8. The architecture employs a canonical-signed-digit serial multiplication to reduce hardware resources and requires only one multiplier to perform the final scaling. A proposed algorithm searching for an optimal assignment of cosine factors leads to a resource saving of about 12% for the multiplication blocks if carry-ripple-adders are assumed to be used. Different area and speed requirements are possible since only feed-forward paths are involved and easily pipelined. The architecture represents a trade-off between time-recursive, fully modular but operation non-efficient structure and multiplication efficient but irregular and fixed-length implementation.
机译:基于形状辅助的基于块的纹理编码方法(如形状自适应DCT)提出了对可有效执行可变长度N转换的体系结构的需求。本文提出了一种可扩展性和模块化方面满足给定要求的一维DCT体系结构。用于2 / spl les / N / spl les / 8。该体系结构采用规范的有符号数字串行乘法来减少硬件资源,并且仅需要一个乘法器即可执行最终缩放。如果假定使用进位纹波加法器,则搜索余弦因数的最佳分配的拟议算法可为乘法块节省约12%的资源。由于仅涉及前馈路径并且易于流水线传输,因此可能需要不同的面积和速度要求。该体系结构代表了时间递归,完全模块化但操作效率低下的结构与乘法有效但不规则且定长的实现之间的折衷。

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