移動(dòng)通信基站智能鎖系統(tǒng)軟件設(shè)計(jì)與實(shí)現(xiàn)
[Abstract]:With the development of science and technology, the society has entered the Internet era, people not only require the high security of door lock, but also put forward the request to its convenience. But at present the communication base station uses the traditional mechanical lock, the key is easy to lose, also easy to be stolen and copied by others, the security is not high, and the maintenance of the base station is still in the stage of manual maintenance and paper-based management of information processing. It's not easy to manage. Firstly, by analyzing the development of intelligent locks at home and abroad, it is found that most of the current intelligent lock systems are used in concentrated areas such as residential areas, but can not be applied to mobile base stations with scattered distribution. With the development of society, the demand for the network is increasing, and the corresponding number of mobile base stations is also increasing. The increasing number of base stations increases the workload of base station maintainers, in order to reduce the workload of base station operation and maintenance staff. Based on the analysis of the functional requirements of the mobile base station door lock, a set of intelligent lock software used in the mobile base station is developed in this paper. Intelligent lock is an electronic lock based on Bluetooth in this paper. There are two ways to unlock intelligent lock: one is to unlock by intelligent lock software directly; the other is to use electronic key instead of traditional mechanical key to unlock. Different encryption methods are adopted to ensure the security of different unlock modes. In this paper, the requirements of the base station door lock are analyzed, and the efficient Node.js and Android development languages, the distributed file database MongoDB and the server running platform are selected to plan the whole framework of the software and refine the software function. Finally, the database set is designed according to the requirement. There are two kinds of communication in this software: one is the communication between the intelligent lock software and the server, the other is the communication between the intelligent lock software and the electronic key and the lock body. The former uses various API interfaces provided by the server to encapsulate the data into JSON format for communication, while the latter uses Bluetooth to transmit data after AES or SHA-1 encryption. The system can improve work efficiency, reduce the workload of maintenance personnel, facilitate the management of the base station door lock system, and force the staff to maintain the station within a specified period of time. Automatically upload the related information of the maintenance personnel's operation record to the server without the need for paper document management.
【學(xué)位授予單位】:電子科技大學(xué)
【學(xué)位級別】:碩士
【學(xué)位授予年份】:2017
【分類號】:TS914.211.7;TN929.5
【相似文獻(xiàn)】
相關(guān)期刊論文 前10條
1 金勤勇;脂肪醇聚氧乙烯醚硫酸鹽(AES)的生產(chǎn)與市場動(dòng)態(tài)[J];日用化學(xué)品科學(xué);2005年09期
2 張德根;;脂肪醇聚氧乙烯醚硫酸鈉[AES]中試裝置通過鑒定[J];精細(xì)化工信息;1987年10期
3 王業(yè)飛,趙福麟;由AES合成脂肪醇聚氧乙烯醚磺酸鈉的研究[J];精細(xì)石油化工;1996年05期
4 呂衛(wèi)軍;;安德里茨收購美國AES公司[J];造紙信息;2013年01期
5 全立群;;脂肪醇聚氧乙烯醚硫酸鹽(AES)的殘留對小鼠的影響[J];中國衛(wèi)生產(chǎn)業(yè);2013年33期
6 任九慶;;以天然醇合成的AES對餐洗粘度的影響[J];中國洗滌用品工業(yè);2006年06期
7 劉洪偉;董穎;金春玉;鄒向陽;趙文卓;趙彥強(qiáng);阮書生;;丙烯腈-三元乙丙橡膠-苯乙烯接枝共聚物(AES)合成及應(yīng)用[J];彈性體;2007年01期
8 董穎;王輝;金春玉;趙彥廣;裴洪;溫冬梅;劉洪偉;鄒向陽;;丙烯腈-三元乙丙橡膠-苯乙烯接枝共聚物AES的表征[J];化工科技;2012年06期
9 ;企業(yè)和高校共同開拓AES日化市場[J];日用化學(xué)品科學(xué);2011年10期
10 董穎;金春玉;劉洪偉;趙彥廣;劉英梅;周淑花;鄒向陽;盛光;;丙烯腈-三元乙丙橡膠-苯乙烯接枝共聚物AES的合成[J];彈性體;2011年02期
相關(guān)博士學(xué)位論文 前3條
1 張佳鑫;控制與業(yè)務(wù)分離的異構(gòu)無線網(wǎng)絡(luò)高能效資源管理研究[D];北京郵電大學(xué);2017年
2 楊坤;基于用戶群體業(yè)務(wù)行為的高能效無線網(wǎng)絡(luò)服務(wù)控制機(jī)制研究[D];北京郵電大學(xué);2017年
3 余健;蜂窩網(wǎng)絡(luò)中的協(xié)作傳輸技術(shù)研究[D];北京郵電大學(xué);2016年
相關(guān)碩士學(xué)位論文 前10條
1 李堂更;移動(dòng)通信基站智能鎖系統(tǒng)軟件設(shè)計(jì)與實(shí)現(xiàn)[D];電子科技大學(xué);2017年
2 苗宇庭;基于基站開關(guān)策略的無線網(wǎng)節(jié)能技術(shù)研究[D];哈爾濱工業(yè)大學(xué);2017年
3 陳攀;基于眾包模式的手機(jī)基站故障診斷與性能評測[D];蘭州理工大學(xué);2017年
4 錢婷婷;熱管換熱應(yīng)用于基站制冷優(yōu)化研究[D];安徽建筑大學(xué);2017年
5 李萌;移動(dòng)蜂窩網(wǎng)基站與流量空時(shí)分布規(guī)律研究[D];浙江大學(xué);2017年
6 陳剛;基于VPN的基站遠(yuǎn)程監(jiān)控系統(tǒng)軟件設(shè)計(jì)與實(shí)現(xiàn)[D];電子科技大學(xué);2017年
7 周崧;警用微基站收發(fā)系統(tǒng)設(shè)計(jì)與實(shí)現(xiàn)[D];電子科技大學(xué);2017年
8 肖良平;基站動(dòng)環(huán)監(jiān)控系統(tǒng)的硬件設(shè)計(jì)與實(shí)現(xiàn)[D];電子科技大學(xué);2017年
9 武超;北京聯(lián)通公司H基站項(xiàng)目風(fēng)險(xiǎn)管理研究[D];北京建筑大學(xué);2017年
10 陳鵬濤;基于LTE的基站休眠算法研究[D];寧夏大學(xué);2017年
,本文編號:2379489
本文鏈接:http://sikaile.net/kejilunwen/xinxigongchenglunwen/2379489.html