Based on Cloud Computing Architecture to Design An Emergency Response and SOS System
碩士 === 朝陽科技大學 === 資訊工程系碩士班 === 99 === In recent years, the sport of mountaineering has become more and more popular in many countries, and people may encounter danger when mountaineering. In this paper, we propose a cloud-computing-based architecture to respond rapidly to an SOS emergency event requ...
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ndltd-TW-099CYUT53920232015-10-13T20:22:51Z http://ndltd.ncl.edu.tw/handle/12324216372670548436 Based on Cloud Computing Architecture to Design An Emergency Response and SOS System 植基於雲端架構下設計一種緊急回應及求救系統 Cheng-hsun Wu 吳政勳 碩士 朝陽科技大學 資訊工程系碩士班 99 In recent years, the sport of mountaineering has become more and more popular in many countries, and people may encounter danger when mountaineering. In this paper, we propose a cloud-computing-based architecture to respond rapidly to an SOS emergency event requiring first aid. Our scheme constructed an aid platform based on cloud computing. Based on the features of mobile devices, such as mobility and convenient communication, the injured party/patient can quickly send an SOS to the helper. The proposed scheme can accomplish the proxy authorization of the Schnorr signature from the patient. It also integrates symmetric encryption technology, message authentication code (MAC), and RFC 2631 to defend against known attacks, and achieve the security requirements provided by proxy signature. Finally, we analyze the performance cost to determine whether our scheme is suitable for implementation in an emergency response and SOS system. Chin-ling Chen 陳金鈴 2011 學位論文 ; thesis 45 en_US |
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碩士 === 朝陽科技大學 === 資訊工程系碩士班 === 99 === In recent years, the sport of mountaineering has become more and more popular in many countries, and people may encounter danger when mountaineering. In this paper, we propose a cloud-computing-based architecture to respond rapidly to an SOS emergency event requiring first aid. Our scheme constructed an aid platform based on cloud computing. Based on the features of mobile devices, such as mobility and convenient communication, the injured party/patient can quickly send an SOS to the helper. The proposed scheme can accomplish the proxy authorization of the Schnorr signature from the patient. It also integrates symmetric encryption technology, message authentication code (MAC), and RFC 2631 to defend against known attacks, and achieve the security requirements provided by proxy signature. Finally, we analyze the performance cost to determine whether our scheme is suitable for implementation in an emergency response and SOS system.
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Chin-ling Chen |
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Chin-ling Chen Cheng-hsun Wu 吳政勳 |
author |
Cheng-hsun Wu 吳政勳 |
spellingShingle |
Cheng-hsun Wu 吳政勳 Based on Cloud Computing Architecture to Design An Emergency Response and SOS System |
author_sort |
Cheng-hsun Wu |
title |
Based on Cloud Computing Architecture to Design An Emergency Response and SOS System |
title_short |
Based on Cloud Computing Architecture to Design An Emergency Response and SOS System |
title_full |
Based on Cloud Computing Architecture to Design An Emergency Response and SOS System |
title_fullStr |
Based on Cloud Computing Architecture to Design An Emergency Response and SOS System |
title_full_unstemmed |
Based on Cloud Computing Architecture to Design An Emergency Response and SOS System |
title_sort |
based on cloud computing architecture to design an emergency response and sos system |
publishDate |
2011 |
url |
http://ndltd.ncl.edu.tw/handle/12324216372670548436 |
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