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Optimal hardware and software arithmetic coding procedures for the Q-Coder

机译:Q-Coder的最佳硬件和软件算术编码程序

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The Q-Coder is an important new development in arithmetic coding. It combines a simple but efficient arithmetic approximation for the multiply operation, a new formalism which yields optimally efficient hardware and software implementations, and a new form of probability estimation. This paper describes the concepts which allow different, yet compatible, optimal software and hardware implementations. In prior binary arithmetic coding algorithms, efficient hardware implementations favored ordering the more probable symbol (MPS) above the less probable symbol (LPS) in the current probability interval. Efficient software implementation required the inverse ordering convention. In this paper it is shown that optimal hardware and software encoders and decoders can be achieved with either symbol ordering. Although optimal implementation for a given symbol ordering requires the hardware and software code strings to point to opposite ends of the probability interval, either code string can be converted to match the other exactly. In addition, a code string generated using one symbol-ordering convention can be inverted so that it exactly matches the code string generated with the inverse convention. Even where bit stuffing is used to block carry propagation, the code strings can be kept identical.
机译:Q-Coder是算术编码方面的重要的新发展。它结合了用于乘法运算的简单但有效的算术近似,可产生最佳有效硬件和软件实现的新形式,以及概率估计的新形式。本文介绍了允许不同但兼容的最佳软件和硬件实现的概念。在现有的二进制算术编码算法中,有效的硬件实现方式倾向于在当前概率间隔中将高概率符号(MPS)排列在低概率符号(LPS)之上。高效的软件实现需要逆序约定。在本文中表明,可以通过任意一种符号排序来实现最佳的硬件和软件编码器和解码器。尽管对于给定符号顺序的最佳实现要求硬件和软件代码串指向概率区间的相对两端,但是可以将任一代码串转换为与其他代码串完全匹配的方式。另外,可以反转使用一种符号顺序约定生成的代码串,以使其与通过反向约定生成的代码串完全匹配。即使在使用位填充来阻止进位传播的情况下,代码串也可以保持相同。

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