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首页> 外文期刊>Procedia Computer Science >Low-Power Universal Edge Tracer Architecture using Accuracy-Controlled Resource Reallocation for Event-Driven Sensing Applications
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Low-Power Universal Edge Tracer Architecture using Accuracy-Controlled Resource Reallocation for Event-Driven Sensing Applications

机译:针对事件驱动的传感应用使用精度控制的资源重新分配的低功耗通用Edge Tracer架构

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The low-power memory tracer architecture for sense data acquisition is proposed. The hardware pre-processor based on the proposed sense data tracer enables the low-power sense data analysis in,a noisy environment. The sensed signals are tagged with the edge phases, threshold level, and elapsed timing distance between previous signal edges. The incoming sense data analysis is delayed, and its raw data is reallocated into the tracer memory. The traced sensed data is analyzed by the allocated event pattern- matcher in the silent background mode without any CPU assistance. The proposed method and hardware architecture enable an accurate original sense data reconstruction in the slow processor clock frequency. Newly designed building blocks are integrated into previously designed sensor processors for 3DTV active shutter glasses. The experimental result shows an additional power reduction to about 25% of our previous work by allowing a small amount of error in the original sense data reconstruction. This paper describes the systems’ architecture and details of the proposed memory tracer in addition identifying the key concepts and functions.
机译:提出了一种用于传感数据采集的低功耗存储器跟踪器架构。基于所提出的传感数据跟踪器的硬件预处理器能够在嘈杂的环境中进行低功耗传感数据分析。所感测的信号被标记有边沿相位,阈值电平以及先前信号边沿之间经过的定时距离。传入感测数据分析被延迟,其原始数据被重新分配到跟踪器内存中。所分配的事件模式匹配器在无提示后台模式下分析跟踪的感测数据,而无需任何CPU帮助。所提出的方法和硬件架构使得能够在慢速处理器时钟频率下进行准确的原始感测数据重构。新设计的构建块已集成到先前设计的用于3DTV主动式快门眼镜的传感器处理器中。实验结果表明,通过在原始感测数据重构中允许少量误差,可以将功耗进一步降低至我们先前工作的约25%。本文介绍了系统的体系结构以及所建议的内存跟踪器的详细信息,同时指出了关键的概念和功能。

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