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Z-Coder: a fast adaptive binary arithmetic coder

机译:Z-Coder:一种快速自适应二进制算术编码器

摘要

A binary arithmetic coder and decoder provides improved coding accuracy due to improved probability estimation and adaptation. They also provide improved decoding speed through a “fast path” design wherein decoding of a most probable symbol requires few computational steps. Coded data represents data that is populated by more probable symbols (“MPS”) and less probable symbols (“LPS”). In an embodiment, a decoder receives a segment of the coded data as a binary fraction C. It defines a coding interval of possible values of C, the interval extending from a variable lower bound A to a constant upper bound 1. For each position in the decoded symbol string, the decoder computes a test value Z that subdivides the coding interval into sub-intervals according to the relative probabilities that an MPS or an LPS occurs in the position. A first sub-interval extends from the lower bound A to the test value Z; the second sub-interval extending from the test value Z to 1. If C is greater than Z, the decoder emits an MPS for the current position in the decoded symbol string and sets the lower bound A to the test variable Z for use during decoding of the next position in the decoded symbol string. If C is less than Z, the decoder emits an LPS and computes a new lower bound A and a new binary fraction C for use during decoding of the next position in the decoded symbol string. The encoder operates according to analogous techniques to compose coded data from original data.
机译:二进制算术编码器和解码器由于改进了概率估计和自适应而提供了改进的编码精度。它们还通过“快速路径”提供了改进的解码速度。在设计中,最可能的符号的解码需要很少的计算步骤。编码数据表示由较高可能性的符号(“ MPS”)和较低可能性的符号(“ LPS”)填充的数据。在一个实施例中,解码器接收作为二进制分数C的一段编码数据。它定义C的可能值的编码间隔,该间隔从可变下限A延伸到恒定上限1。在解码后的符号串中,解码器根据在该位置出现MPS或LPS的相对概率,计算将编码间隔细分为子间隔的测试值Z。第一子间隔从下限A延伸到测试值Z;第二个子区间从测试值Z扩展到1。如果C大于Z,则解码器针对解码后的符号字符串中的当前位置发出MPS,并将下界A设置为测试变量Z,以便在解码期间使用解码符号字符串中下一个位置的位置。如果C小于Z,则解码器发出LPS并计算新的下界A和新的二进制分数C,以在解码符号串中的下一个位置的解码期间使用。编码器根据类似技术操作以从原始数据合成编码数据。

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