A Low Power, Parallel Wearable Multi-Sensor System for Human Activity Evaluation.

Yuecheng Li, Wenyan Jia, Tianjian Yu, Bo Luan, Zhi-Hong Mao, Hong Zhang, Mingui Sun
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引用次数: 9

Abstract

In this paper, the design of a low power heterogeneous wearable multi-sensor system, built with Zynq System-on-Chip (SoC), for human activity evaluation is presented. The powerful data processing capability and flexibility of this SoC represent significant improvements over our previous ARM based system designs. The new system captures and compresses multiple color images and sensor data simultaneously. Several strategies are adopted to minimize power consumption. Our wearable system provides a new tool for the evaluation of human activity, including diet, physical activity and lifestyle.

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一种用于人体活动评估的低功耗、并行可穿戴多传感器系统。
本文设计了一种基于Zynq系统芯片(SoC)的低功耗异构可穿戴多传感器系统,用于人体活动评估。该SoC强大的数据处理能力和灵活性代表了我们以前基于ARM的系统设计的重大改进。新系统同时捕获和压缩多个彩色图像和传感器数据。采用了几种策略来最小化功耗。我们的可穿戴系统为评估人类活动提供了一种新的工具,包括饮食、身体活动和生活方式。
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Generalized Q-space MRI reveals macroscopic patterns of tumor architecture in vivo. A Simulation Study on a Single-Unit Wireless EEG Sensor. A Low Power, Parallel Wearable Multi-Sensor System for Human Activity Evaluation. SIFT-Based Indoor Localization for Older Adults Using Wearable Camera. Assessing Physical Performance in Free-Living Older Adults with a Wearable Computer.
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