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SNR-Aware Error Detection for Low-Power Discrete Wavelet Lifting Transform in JPEG 2000

机译:JPEG 2000中低功率离散小波提升变换的SNR感知错误检测

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This paper presents a SNR-aware error detection technique for a low-power wavelet lifting transform architecture in JPEG 2000. Power reduction is done by over-scaling the supply voltage (voltage-over-scaling (VOS)). A low-cost SNR-aware detection logic is integrated into the discrete wavelet lifting transform architecture, to check if the image quality degradation caused by the resulting timing errors is acceptable, in order to determine the optimal voltage setting in operating condition at run time. The technique behind the SNR-aware detection logic is the weighted checksum code. It is shown that image quality measured in SNR can be correlated with the image checksum difference. If the image checksum difference is above a certain threshold, the SNR of the image will be below the minimal requirement and image quality will be unacceptable. This novel quality-based error detection is significantly different from traditional error detection schemes which look for exact data equivalence. The technique is useful in exploring optimal voltage configurations for Dynamic Voltage Scaling (DVS).
机译:本文提出了一种适用于JPEG 2000的低功率小波提升变换架构的SNR感知错误检测技术。功率的降低是通过对电源电压进行过缩放(电压过缩放(VOS))来实现的。低成本的SNR感知检测逻辑被集成到离散小波提升变换架构中,以检查由所产生的时序误差引起的图像质量下降是否可以接受,以便确定运行时在运行条件下的最佳电压设置。 SNR感知检测逻辑背后的技术是加权校验和代码。结果表明,以SNR测量的图像质量可以与图像校验和差异相关。如果图像校验和差异大于某个阈值,则图像的SNR将低于最低要求,并且图像质量将不可接受。这种新颖的基于质量的错误检测与寻求精确数据等效性的传统错误检测方案明显不同。该技术对于探索动态电压缩放(DVS)的最佳电压配置很有用。

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