Shehata Nader, Azab Mohammed, Kandas Ishac, Meehan Kathleen
Department of Engineering Mathematics and Physics, Faculty of Engineering, Alexandria University, Alexandria 21544, Egypt.
Bradley Department of Electrical and Computer Engineering, Virginia Tech, Blacksburg, VA 24061, USA.
Sensors (Basel). 2015 Aug 14;15(8):20193-203. doi: 10.3390/s150820193.
This paper investigates a nano-enhanced wireless sensing framework for dissolved oxygen (DO). The system integrates a nanosensor that employs cerium oxide (ceria) nanoparticles to monitor the concentration of DO in aqueous media via optical fluorescence quenching. We propose a comprehensive sensing framework with the nanosensor equipped with a digital interface where the sensor output is digitized and dispatched wirelessly to a trustworthy data collection and analysis framework for consolidation and information extraction. The proposed system collects and processes the sensor readings to provide clear indications about the current or the anticipated dissolved oxygen levels in the aqueous media.
本文研究了一种用于溶解氧(DO)的纳米增强无线传感框架。该系统集成了一个纳米传感器,该传感器采用氧化铈(二氧化铈)纳米颗粒,通过光学荧光猝灭来监测水介质中溶解氧的浓度。我们提出了一个综合传感框架,该纳米传感器配备了数字接口,传感器输出在该接口处被数字化,并通过无线方式发送到一个可靠的数据收集和分析框架,以进行整合和信息提取。所提出的系统收集并处理传感器读数,以提供关于水介质中当前或预期溶解氧水平的明确指示。