4 条结果 关键词:能量收集 ×

Development of Self-Powered Energy-Harvesting Electronic Module and Signal-Processing Framework for Wearable Healthcare Applications.

Bioengineering (Basel, Switzerland) 2024 Rajendran J, Wilson Sukumari N, Jose PSH, Rajendran M 等 5 人

本文报道了一种用于可穿戴健康监测的自供电便携式电子模块,集成板载能量收集、模拟前端、信号处理和电池管理单元,用于实时心电图(ECG)采集与个性化健康监测。该模块可采用锂离子电池、硅光电二极管阵列和太阳能电池供电,其中BQ25505电池管理电路在硅光电二极管和太阳能电池支持下检测环境光变化,并可提供最高4.2 V稳定输出以维持模块连续...

Piezoelectric and electromagnetic respiratory effort energy harvesters.

Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference 2013 Shahhaidar E, Padasdao B, Romine R, Stickley C 等 5 人

正常呼吸引起的躯干运动可作为超低功耗电子设备的替代可再生电源,同一输出信号也可记录为包含呼吸信息的生理信号,从而支持自供电可穿戴生物传感器/能量收集器。本文提出此类生物传感器的选择标准、优化流程、作为传感器与能量收集器的权衡及挑战。通过在机械躯干和人体受试者上测试不同模块,比较压电材料(PZT-5A、MFC)与微型电磁发电机,结果表...

Measuring chest circumference change during respiration with an electromagnetic biosensor.

Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference 2013 Padasdao B, Shahhaidar E, Boric-Lubecke O

本文提出一种基于现成直流电机的可穿戴电磁生物传感器,用于非侵入式测量胸围变化并同步收集呼吸能量。作者将 Pololu 50:1 有刷微型金属齿轮电机改装为胸带,通过非弹性导线、弹簧和弹性绑带固定于胸壁。吸气时胸围增大,导线拉动转子旋转并压缩弹簧;呼气时弹簧使转子复位。依据法拉第电磁感应定律,电机输出电压与转子角速度成正比,对电压随时...

Respiratory rate detection using a wearable electromagnetic generator.

Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference 2011 Padasdao B, Boric-Lubecke O

可穿戴健康与健身监测系统能够无创、连续地采集生理数据,但传统设备依赖电池,长期监测会带来频繁更换电池和电子废弃物问题。本文提出一种零净能耗生物传感器概念,通过同时感知和收集呼吸努力来为可穿戴传感器供电。作者将市售Futaba S3003伺服电机反向用作电磁发电机,并改装为佩戴于胸骨处的胸带装置。胸廓在吸气和呼气过程中周长变化,通过绳...