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A low power QRS detection processor with adaptive scaling of processing resolution

机译:具有自适应处理分辨率缩放功能的低功耗QRS检测处理器

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This work presents a power efficient QRS detection processor with self-adjustable processing resolution. As reducing the resolution of electrocardiogram (ECG) data in certain degree has little effect on the detection accuracy but helps cut down the calculation power, a total of eight processing resolutions are supported in the processor, which can bring different levels of dynamic power reduction. The processing resolution is scaled adaptively based on the QRS detection result to achieve optimized energy efficiency and guarantee acceptable detection performance. The processor is implemented in SMIC 40 nm CMOS technology and has a total area of 5655 um2. When tested on MIT-BIH arrhythmia database with 50 MHz operating frequency and 0.9 V voltage supply, its power consumption is 77.7 uW, which is reduced by 27.4% compared to the original processor, while the area is only increased by 6.7%. And it also achieves relatively high detection result, with an average sensitivity of 98.63% and positive prediction of 98.86%.
机译:这项工作提出了一种具有可自我调整处理分辨率的高能效QRS检测处理器。由于在一定程度上降低心电图(ECG)数据的分辨率对检测精度几乎没有影响,但有助于降低计算能力,因此处理器中总共支持八种处理分辨率,这可以带来不同程度的动态功耗降低。根据QRS检测结果对处理分辨率进行自适应缩放,以实现优化的能效并确保可接受的检测性能。该处理器采用SMIC 40 nm CMOS技术实现,总面积为5655 um2。在MIT-BIH心律失常数据库上以50 MHz工作频率和0.9 V电压供电进行测试时,其功耗为77.7 uW,与原始处理器相比降低了27.4%,而面积仅增加了6.7%。而且,它还获得了相对较高的检测结果,平均灵敏度为98.63%,阳性预测为98.86%。

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