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 2021

 نظام تتبع المخالطين المحافظ على الخصوصية للكشف عن العدوى والحماية من COVID-19

 Alansari, Seham Abdulraoof


//uquui/handle/20.500.12248/130830
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نظام تتبع المخالطين المحافظ على الخصوصية للكشف عن العدوى والحماية من COVID-19

عناوين أخرى : Privacy-Preserving Contact Tracing System for Infection Detection and Protection Against COVID-19
المؤلفون : Alansari, Seham Abdulraoof
رقم الطلب : 24610
الناشر :جامعة أم القرى
مكان النشر : مكة المكرمة
تاريخ النشر : 2021 - 1442 هـ
الوصف : 78 ورقة
نوع الوعاء : ماجستير
اللغة : عربي
المصدر : مكتبة الملك عبدالله بن عبدالعزيز الجامعية
يظهر في المجموعات : الرسائل العلمية المحدثة

Contact tracing is a very effective way to control the COVID-19-like pandemics. It aims to identify individuals who closely contacted an infected person during the incubation period of the virus and notify them to quarantine. However, the existing systems suffer from privacy, security, and efficiency issues. To address these limitations, in this thesis, we propose an efficient and privacy-preserving Blockchain-based infection control system. Instead of depending on a single authority to run the system, a group of health authorities, that form a consortium Blockchain, run our system. Using Blockchain technology not only secures our system against single point of failure and denial of service attacks, but also brings transparency because all transactions can be validated by different parties. Although contact tracing is important, it is not enough to effectively control an infection. Thus, unlike most of the existing systems that focus only on contact tracing, our system consists of three integrated subsystems, including contact tracing, public places access control, and safe-places recommendation. The access control subsystem prevents infected people from visiting public places to prevent spreading the virus, and the recommendation subsystem categorizes zones based on the infection level so that people can avoid visiting contaminated zones. Our analysis demonstrates that our system is secure and preserves the privacy of the users against identification, social graph disclosure, and tracking attacks, while thwarting false reporting (or panic) attacks. Moreover, our extensive performance evaluations demonstrate the scalability of our system (which is desirable in pandemics) due to its low communication, computation, and storage overheads.

العنوان: نظام تتبع المخالطين المحافظ على الخصوصية للكشف عن العدوى والحماية من COVID-19
عناوين أخرى: Privacy-Preserving Contact Tracing System for Infection Detection and Protection Against COVID-19
المؤلفون: Alasmary, Waleed
Alansari, Seham Abdulraoof
الموضوعات :: الحاسب الآلي
هندسة الحاسب
الحاسب الآلي برامج
تاريخ النشر :: 2021
الناشر :: جامعة أم القرى
الملخص: Contact tracing is a very effective way to control the COVID-19-like pandemics. It aims to identify individuals who closely contacted an infected person during the incubation period of the virus and notify them to quarantine. However, the existing systems suffer from privacy, security, and efficiency issues. To address these limitations, in this thesis, we propose an efficient and privacy-preserving Blockchain-based infection control system. Instead of depending on a single authority to run the system, a group of health authorities, that form a consortium Blockchain, run our system. Using Blockchain technology not only secures our system against single point of failure and denial of service attacks, but also brings transparency because all transactions can be validated by different parties. Although contact tracing is important, it is not enough to effectively control an infection. Thus, unlike most of the existing systems that focus only on contact tracing, our system consists of three integrated subsystems, including contact tracing, public places access control, and safe-places recommendation. The access control subsystem prevents infected people from visiting public places to prevent spreading the virus, and the recommendation subsystem categorizes zones based on the infection level so that people can avoid visiting contaminated zones. Our analysis demonstrates that our system is secure and preserves the privacy of the users against identification, social graph disclosure, and tracking attacks, while thwarting false reporting (or panic) attacks. Moreover, our extensive performance evaluations demonstrate the scalability of our system (which is desirable in pandemics) due to its low communication, computation, and storage overheads.
الوصف :: 78 ورقة
الرابط: http://dorar.uqu.edu.sa//uquui/handle/20.500.12248/130830
يظهر في المجموعات :الرسائل العلمية المحدثة

الملفات في هذا العنصر:
ملف الوصف الحجمالتنسيق 
24610.pdf
"   الوصول المحدود"
الرسالة الكاملة1.24 MBAdobe PDFعرض/ فتح
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absa24610.pdf
"   الوصول المحدود"
ملخص الرسالة بالعربي33.97 kBAdobe PDFعرض/ فتح
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abse24610.pdf
"   الوصول المحدود"
ملخص الرسالة بالإنجليزي84.13 kBAdobe PDFعرض/ فتح
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cont24610.pdf
"   الوصول المحدود"
فهرس الموضوعات94.9 kBAdobe PDFعرض/ فتح
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indu24610.pdf
"   الوصول المحدود"
المقدمة177.28 kBAdobe PDFعرض/ فتح
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title24610.pdf
"   الوصول المحدود"
غلاف51.15 kBAdobe PDFعرض/ فتح
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