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An energy-aware IP core design for the variable-length DCT/IDCT targeting at MPEG4 shape-adaptive transforms

机译:针对以MPEG4形状自适应转换为目标的可变长度DCT / IDCT的节能型IP内核设计

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This paper proposes a flexible hardware solution and the associated energy-aware IP core design for computing the variable-length discrete cosine transform/inverse discrete cosine transform (DCT/IDCT) required in the MPEG4 shape-adaptive DCT/IDCT (SA-DCT/IDCT). The proposed IP core has been developed based on the design concept of programmable processors to provide the flexibility in dynamically configuring the hardware. To achieve good performance both in area and speed, we optimize the proposed IP core both in the algorithmic computational complexity and hardware complexity. Furthermore, the proposed IP core possesses the feature of energy-aware design flexibility. The simulation shows that the proposed design has 44% energy reduction at the price of 0.3-dB signal quality degradation for the image compression applications. The implementation results show that the proposed IP core costs about 3100 gates along with 16 words (1 word = 16 bits) of memory, which can achieve the real-time processing of the texture coding in MPEG4 SP@L3 and ACE@L2 CODEC system for the CIF format video at 30 frames/s with 4:2:0 color format.
机译:本文提出了一种灵活的硬件解决方案和相关的能源感知IP核设计,用于计算MPEG4形状自适应DCT / IDCT(SA-DCT /)中所需的可变长度离散余弦变换/逆离散余弦变换(DCT / IDCT) IDCT)。所提出的IP核是基于可编程处理器的设计概念而开发的,以提供动态配置硬件的灵活性。为了在面积和速度上都达到良好的性能,我们在算法计算复杂度和硬件复杂度上都优化了建议的IP核。此外,所提出的IP核还具有节能意识的设计灵活性。仿真表明,对于图像压缩应用,所提出的设计以0.3 dB的信号质量下降为代价降低了44%的能量。实施结果表明,所提出的IP核大约需要3100个门,以及16个字(1个字= 16位)的内存,可以实现MPEG4 SP @ L3和ACE @ L2 CODEC系统中纹理编码的实时处理。适用于30帧/秒,4:2:0彩色格式的CIF格式视频。

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