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A Single-Chip Image Sensor Node With Energy Harvesting From a CMOS Pixel Array

机译:具有从CMOS像素阵列收集能量的单芯片图像传感器节点

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This paper presents a single-chip image sensor node with energy harvesting from the pixel array. The design includes a 128 × 96 pixel array that can be reconfigured to form an on-chip photovoltaic cell to harvest energy. An onchip power management unit harvests energy from the pixel array, and delivers multiple regulated output voltage domains to power the sensor, image processor, and memory. The image processor is a low-overhead moving object detection unit to reduce the volume of transmitted data. The proposed sensor node is implemented on a single die in 130-nm technology. The pixel array demonstrates the peak harvested power of 2.1μW. The power dissipation of sensor is reduced by utilizing low-power circuit techniques, including block-level pipelining, power gating, and low-voltage memory. The system can be self-powered to process a frame at every 7 s. We discuss design approaches for improving the self-power performance. The noise characteristic of the reconfigurable sensor is analyzed, and the need for noise-robust moving object detection is evaluated for better image quality and improved self-power performance.
机译:本文提出了一种具有像素阵列能量采集功能的单芯片图像传感器节点。该设计包括一个128×96像素的阵列,可以对其进行重新配置以形成一个片上光伏电池来收集能量。片上电源管理单元从像素阵列中获取能量,并提供多个稳定的输出电压域,以为传感器,图像处理器和存储器供电。图像处理器是低开销的移动物体检测单元,以减少传输数据的数量。拟议的传感器节点在130纳米技术的单个芯片上实现。像素阵列的峰值采集功率为2.1μW。利用低功率电路技术,包括块级流水线,电源门控和低压存储器,可以降低传感器的功耗。该系统可以自供电,每7秒钟处理一次帧。我们讨论了改善自供电性能的设计方法。分析了可重构传感器的噪声特性,并评估了对鲁棒运动物体检测的需求,以获得更好的图像质量和改进的自供电性能。

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