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储能系统技术 储能系统 GaN器件 工商业光伏 ★ 5.0

智能手机支持的可穿戴糖尿病监测系统

Smartphone Enabled Wearable Diabetes Monitoring System

作者 Shanthala Lakshminarayana · Mrudula Ranganatha · Yuze Sun · Hyusim Park
期刊 IEEE Access
出版日期 2025年1月
技术分类 储能系统技术
技术标签 储能系统 GaN器件 工商业光伏
相关度评分 ★★★★★ 5.0 / 5.0
关键词 葡萄糖检测 糖尿病监测 可穿戴设备 传感器 实时监测
语言:

中文摘要

葡萄糖是涉及众多生理和病理过程的重要生物标志物,其检测是糖尿病监测的关键因素。为提升便利性、实时追踪、舒适性和准确性,葡萄糖测量技术快速向智能手机集成可穿戴、非侵入式和低功耗系统发展。本研究开发可用作可穿戴健康追踪器的糖尿病监测系统。该设备提供双重葡萄糖监测方式:首先通过丝网印刷电极传感器SPES测量血液葡萄糖,其次通过乙醇传感器呼吸分析测量挥发性有机化合物VOC。此外,系统包含血氧仪传感器监测心率和血氧饱和度SpO2等重要人体生命体征,类似商业健康追踪器。系统制造在3cm×3cm印刷电路板上,适合可穿戴设备。低功耗且具有有线/无线充电和通信能力。开发定制Windows和Android应用可视化数据到用户计算机或智能手机。验证各传感器性能的实验产生令人满意的结果,表明所开发系统具有用作实时糖尿病监测即时检测设备的巨大潜力。

English Abstract

Glucose is a vital biomarker involved in numerous physiological and pathological processes, making its detection a key factor in diabetes monitoring. To enhance convenience, real-time tracking, comfort, and accuracy, glucose measurement techniques are rapidly advancing towards smartphone integrated wearable, non-invasive, and low power systems. In this work, a diabetes monitoring system is developed which can be used as a wearable health tracker. The device offers dual ways of monitoring glucose levels in diabetic patients; first by glucose measurement via blood using a screen-printed electrode sensor (SPES), second by volatile organic compounds (VOCs) measurement via breath analysis using an ethanol sensor. Additionally, an oximetry sensor is included in the system to monitor important human vitals such as heart rate and blood oxygen saturation (SpO2), similar to commercial health trackers. The system is fabricated on a printed circuit board and its size is 3 cm 3 cm which is suitable as a wearable device. It also consumes low power and has capabilities of wired/wireless charging and wired/wireless communication. Furthermore, customized Windows and Android applications have been developed to visualize the obtained data in user’s computer or smartphone. The conducted experiments aimed at validating the performance of each sensors have yielded promising results. These findings indicate that the developed system has significant potential to be utilized as a point-of-care testing device for real-time diabetes monitoring.
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SunView 深度解读

该可穿戴监测技术对阳光电源储能系统状态监测具有借鉴意义。虽然该研究针对医疗设备,但其多传感器融合和低功耗设计理念可应用于阳光储能电池监测。阳光ST储能系统需要实时监测电池单体电压、温度和SOC状态,该研究的多参数监测和无线通信方案可优化阳光BMS设计。可穿戴设备的小型化和低功耗技术可启发阳光开发分布式电池传感器,实现单体级精细监测。结合阳光iSolarCloud平台的数据分析,该多参数监测技术可提升储能系统健康管理,实现电池异常早期预警,延长电池寿命,提升系统安全性和可靠性。