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引用次数: 3

摘要

传统的素因子离散余弦变换(PFDCT)实现方法存在两个问题。首先,虽然输入索引只使用鲁里塔尼亚映射,但它需要执行一系列复杂的测试和添加,这甚至超过了PFDCT的计算工作量。其次,上面提到的补充不是以原地形式进行的。这意味着需要一个辅助数据数组来缓冲加法过程中生成的临时结果。否则,将得到错误的结果。我们提出了一种高效的PFDCT计算索引方案。通过适当地交换数据,所有的添加都可以就地进行。此外,对数据的索引执行所需的测试次数大大减少。它们是通过考虑鲁里塔尼亚映射的特殊性质来实现的。
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On efficient software realization of the prime factor discrete cosine transform
The traditional approach in realizing the prime factor discrete cosine transform (PFDCT) often suffers from two problems. First, although only the Ruritanian mapping is used for input indexing, it requires to perform a series of complicated tests and additions which even outweigh the computational effort of the PFDCT. Second, the additions mentioned above are not carried out in an in-place form. This implies that an auxiliary data array is required to buffer the temporary results generated during the additions. Otherwise, erroneous results will be obtained. We propose an efficient indexing scheme for the computation of the PFDCT. By suitably swapping the data, all the additions can be carried out in an in-place form. Furthermore the number of tests required to perform on the indices of the data is greatly reduced. They are achieved by considering the special properties of the Ruritanian mapping.<>
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