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Design a Low-Power H.264/AVC Baseline Decoder at All Abstraction Levels-A Showcase

机译:在所有抽象级别上设计低功耗H.264 / AVC基线解码器-展示柜

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In this paper, we propose a low-power VLSI implementation of H.264/AVC baseline decoder. A systematic methodology for power reduction is proposed and applied at various design abstraction levels. At the algorithm level, the computational complexity is optimized. At the architecture level, pipelining and parallelism are widely adopted to reduce the operating frequency; hierarchical memory organization optimizes power-hungry memory accesses; hardware sharing reduces the total switching capacitance. At the circuit level, the knowledge about signal statistics is exploited to reduce number of transitions; data dependent signal-gating and clock-gating are introduced which are dynamic techniques for power reduction; multiplications are reduced and optimized, while complex dividers are totally eliminated. At the physical level, cell sizing and layout are optimized for power efficiency. The VLSI implementation shows that with UMC 0.18 um technology, the proposed design is able to decode realtime QCIF 30fps at 1.5 MHz. The decoder contains 169 k logic gates and 2.5 KB on-chip SRAM. The total chip area is 4.4×4.4 mm~2 in a CQFP 208 package. The measured power consumption is 973 μW @ 1.8 V and 293μW @ 1.0 V. The low-power and realtime features make our design ideal for portable or mobile applications.
机译:在本文中,我们提出了H.264 / AVC基准解码器的低功耗VLSI实现。提出了一种降低功耗的系统方法,并将其应用于各种设计抽象级别。在算法级别,优化了计算复杂度。在体系结构级别,流水线和并行性被广泛采用以降低工作频率。分层内存组织可优化耗电的内存访问;硬件共享减少了总开关电容。在电路级别,利用有关信号统计的知识来减少转换次数;介绍了数据相关的信号门控和时钟门控,它们是降低功耗的动态技术;减少和优化了乘法,同时完全消除了复杂的除法器。在物理级别,优化了单元大小和布局以提高功率效率。 VLSI实施表明,采用UMC 0.18 um技术,提出的设计能够解码1.5 MHz的实时QCIF 30fps。解码器包含169 k逻辑门和2.5 KB片上SRAM。在CQFP 208封装中,芯片总面积为4.4×4.4 mm〜2。在1.8 V时测得的功耗为973μW@ 1.0 V时为293μW。低功耗和实时功能使我们的设计成为便携式或移动应用的理想选择。

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