基于Android終端的健康數(shù)據(jù)信息系統(tǒng)的設(shè)計開發(fā)
[Abstract]:The functions of wearable devices cover people's social life, entertainment, fitness, navigation and other aspects, among which health management has attracted the attention of users of multi-age groups, and wearable devices rely on low-power Bluetooth technology. Android system and iOS system also focus on strengthening the application of its technology in the field of fitness and health. The research of this paper is based on the application scenario in this field: the pedometer is used as the data acquisition terminal to collect the motion data, and the two-way communication with the Android application program realizes the transmission of the data and the transmission of instructions. Android apps store the collected data in server-side datasheets and extract information from database tables for display on Android apps. Based on the above scenario, a health data information service system based on Android terminal is constructed. This paper mainly describes the design and development of data transmission service and system function of low power Bluetooth device, Android application and server. First of all, this paper studies the low power Bluetooth underlying protocol stack, mainly analyzes and compares the characteristics of low power Bluetooth, discusses how to improve the stability of Bluetooth connection at the safety end, and puts forward a reasonable optimization method and debugging. To verify this method, this part of the research is the basis of the following software design and development, which clears up many difficulties in the development process. Secondly, each function module of Android application is designed and developed. under the main function of data communication between Android client and Bluetooth device, other supporting functions based on data service, such as weather, data list, data chart and so on, are developed. Finally, in order to realize the closed loop of data, the database table of server and the interface of server are studied and developed to realize the circulation of data in Bluetooth device, Android client and server. In the design of the server, the extensible architecture of Apache,MySQL and PHP is selected. In this mainstream design architecture, more abundant design requirements can be realized in the future. Through the research, design, development and test of the above contents, the system basically realizes the above functions and runs well.
【學位授予單位】:北京郵電大學
【學位級別】:碩士
【學位授予年份】:2016
【分類號】:TP311.52;TP316
【參考文獻】
相關(guān)期刊論文 前10條
1 孫聰;倪友聰;羅增;趙康;陳良鎮(zhèn);鄭運春;;基于腕表的計步數(shù)據(jù)采集與同步服務的設(shè)計[J];網(wǎng)絡(luò)新媒體技術(shù);2015年02期
2 趙靜;王朝暉;陳平輝;;智能穿戴終端產(chǎn)業(yè)發(fā)展分析與展望[J];移動通信;2014年21期
3 曾繩濤;曹志龍;;基于物聯(lián)網(wǎng)的智能移動醫(yī)療動態(tài)監(jiān)護系統(tǒng)[J];工業(yè)控制計算機;2014年06期
4 封順天;;可穿戴設(shè)備發(fā)展現(xiàn)狀及趨勢[J];信息通信技術(shù);2014年03期
5 馮艷紅;何加銘;楊任爾;馮波;;基于Android藍牙技術(shù)的健康服務系統(tǒng)設(shè)計[J];無線電通信技術(shù);2014年01期
6 馬捷;鄂金龍;;用NFC技術(shù)快速建立藍牙安全連接問題研究[J];計算機應用與軟件;2013年03期
7 楊曉娟;;NFC在手機中的應用——NFC芯片用于世博刷卡及藍牙識別[J];移動通信;2011年11期
8 何彪;周開班;;基于NFC技術(shù)的藍牙對象交換方法[J];微計算機信息;2009年06期
9 徐漢文;;近距離無線技術(shù)的介紹和對比[J];數(shù)字社區(qū)&智能家居;2008年01期
10 楊光松,石江宏,孫建民;藍牙抗干擾技術(shù)及2.4GHz無線網(wǎng)絡(luò)頻率共存分析[J];信息技術(shù);2003年09期
相關(guān)碩士學位論文 前3條
1 徐金茍;藍牙4.0底層核心技術(shù)協(xié)議研究與實現(xiàn)[D];上海交通大學;2012年
2 侯金鳳;多個藍牙微微網(wǎng)之間同頻干擾問題的研究[D];吉林大學;2011年
3 鄧榮華;藍牙無線通信系統(tǒng)的HCI和L2CAP協(xié)議的分析與實現(xiàn)[D];武漢理工大學;2005年
,本文編號:2476708
本文鏈接:http://sikaile.net/kejilunwen/ruanjiangongchenglunwen/2476708.html