A Dual-Symbol Coding Arithmetic Coder Architecture Design for High Speed EBCOT Coding Engine in JPEG2000
Yizhen Zhang, Chao Xu, Liang-Bin Chen · 2006
This paper presents a flexible dual-symbol coding arithmetic coder (MQ coder) architecture design for the parallel coding engines of embedded block coding with optimization truncation (EBCOT) tier-1 in JPEG2000. The flexible MQ coder (FMQ) can encode two symbols simultaneously per clock cycle by using the optimized combination method. It increases the throughput rate of the arithmetic coding, which can match the high throughput rate of the parallel context modeling modules. Experimental results show that one FMQ are able to handle two bit-planes/data-pairs for the bit-plane parallel EBCOT coding engine, and the computation time is decreased about 24% compared with the engine by using the regular MQ coder.