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摘要随着人们生活水平的提高,生活节奏的加快,人们对自身健康的要求也越来越高。虽然在人们的健康监测和居住环境状况监测方面已有各种不同的设备,但是其大多都只能进行单一指标的测量,且测量方式传统。鉴于此,我们将现代极度发达的各种基于测量技术、传感技术、通信技术、电子技术等和医学领域结合起来,设计了能够实时测量并给出合理的健康提示的便携式“健康监测腕带”。利用蓝牙建立Arduino单片机与Android手机的连接,再通过网络通信实现与服务器终端的数据传输,最终让人们利用Android手机随时随地对温度、血氧饱和度、脉搏及自身所处环境状况等信息进行查询。对于老人和小孩、病人这类依赖人们照顾的群体,当健康腕带检测到健康信息或者环境信息异常时,系统会及时以短信方式发送到监护者的手机上,避免意外的发生。关键字:蓝牙传输便携式Android技术数据库AbstractAspeoplelivingstandardrise,thepaceoflifespeedingup,peoplehashigherrequirementfortheirhealth.Althoughtheequipmentsaremultitudinousinmonitoringtheresidents'healthandlivingcircumstances,butmostofthemcanonlymeasuresingleindicatorandthewayistraditional.Forthisreason,weuseahighlydevelopedmoderncombined-basedmeasurementtechnology,sensortechnology,communicationstechnology,electronictechnologyandmedicalfields,designedtoreal-timemeasurementandgivesreasonablehealthtipsportableHealthMonitoringWristbands.TheArduinomicrocontrollerAndroidphoneconnectionestablishedbyBluetooth.Then,theserverterminaldatatransmissionthroughthenetworkcommunication,andultimatelyallowpeopletouseAndroidphoneanywhereontemperature,oxygensaturation,pulserate,andaboutthestateoftheenvironmentandotherinformationquery.Fortheelderlyandchildren,thepatientsuchgroupsrelyonpeopletotakecareofhealthwristbanddetectsabnormalhealthortheenvironment,thesystemwillsendatextmessagetothemobilephoneoftheguardian,toavoidaccidents.KeyWords:BluetoothtransmissionPortableTheAndroidtechnologyThedatabase目录1概述.....................................................................................................................................................41.1背景分析...........................................................................................................................................41.2现有解决方案...................................................................................................................................51.3本课题研究内容...............................................................................................................................62.项目整体分析.....................................................................................................................................62.1系统实现功能...................................................................................................................................62.2系统框架构造.................................................................................................................................73.信息采集模块.......................................................................................................................................83.1体温监测模块...................................................................................................................................93.2脉搏监测模块.................................................................................................................................103.3血氧饱和浓度监测模块.................................................................................................................124.信息传输模块.....................................................................................................................................154.1腕带到智能手机.............................................................................................................................154.2手机显示模块.................................................................................................................................174.3智能手机到网络..............................................................................................................................185.网页制作及界面.................................................................................................................................195.1网页制作..........................................................................................................................................195.2Web客户端显示模块....................................................................................................................216.设计优点.............................................................................................................................................228.总结及展望.........................................................................................................................................239.参考文献.............................................................................................................................................241概述1.1背景分析世界卫生组织经过调查,健康人仅占人群总数的5%,被确诊患有各种疾病的,占人群总数的20%,处于健康与疾病之间的亚健康状态约占人群总数的75%。我国亚健康人群也是一样.所以应该有13*75%=9.75亿。现在环境污染越来越严重,向自然界排放的各种空气污染物,超过了自然环境的自己能力,给人类的身体、生产和生活带来危害单看1月份的北京就知道,PM2.5严重超标,生活在那里的人几乎每天带面罩出街,所以我们怎么不能多监测自己的健康情况呢!人们逐渐增长的健康观念,传统的医疗监测设备不能满足需要,而且现代的医疗费用比较昂贵。传统医疗方式将面临着巨大的变革,移动性和便携性将成为医疗电子产业的一大亮点。在快速处理计算、高精度模数转换、无线网络技术等一系列先进技术飞速发展的今天,医疗设备智能化、便携化已成为现实,但是目前国内外很多便携式医疗设备还存在着很大的缺陷。一方面,现有的便携式医疗设备多以采集单一生理信号为主,较少的虽已实现多参数采集,但只能让使用者了解到当前一些生理信息,不能综合当前生活环境状况给予相关的健康建议,而且体积较大,便携性体现的不够明显,其系统必须配备特定的显示模块;另一方面,现有便携式医疗设备基本不能与移动网络相结合,只能进行本地一些简单的分析,据调查,很多便携式医疗设备所采集到的结果并不被医生认可,市场前景令人担忧。本作品针对以上不足做了大量改进和
本文标题:健康监测腕带
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