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Optimization of Arithmetic Coding for JPEG2000

机译:JPEG2000的算术编码优化

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摘要

Embedded block coding with optimized truncation (EBCOT) employed in the JPEG2000 standard accounts for the majority of the processing time, because the EBCOT is full of bit operations that cannot be implemented efficiently in software. The block coder consists of a bit-plane coder (BPC) followed by a binary arithmetic coder (BAC), where the most up-to-date BPC architectures are capable of producing symbols at a much higher rate than the conventional BACs can handle. This letter proposes a novel pipelined BAC architecture that can encode input symbols at a much higher rate than the conventional BAC architectures. The proposed architecture can significantly reduce the critical path delay and can achieve a throughput of 400 Msymbols/s. The critical path delay synthesized with 0.18 $mu {rm m}$ CMOS technology is 2.42 ns, which is almost half of the delay taken in conventional BAC architectures.
机译:JPEG2000标准中采用的具有优化截断功能的嵌入式块编码(EBCOT)占用了大部分处理时间,因为EBCOT充满了无法在软件中有效实现的位操作。块编码器由一个位平面编码器(BPC)和一个二进制算术编码器(BAC)组成,其中最新的BPC体系结构能够以比常规BAC可以处理的速率高得多的速率生成符号。这封信提出了一种新颖的流水线BAC体系结构,该体系结构可以以比传统BAC体系结构高得多的速率对输入符号进行编码。所提出的架构可以显着减少关键路径延迟,并可以实现400 Msymbols / s的吞吐量。用0.18μmrms CMOS技术合成的关键路径延迟为2.42 ns,几乎是传统BAC架构中延迟的一半。

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