The evolution of technology in 1990s resulted in the enormous growth of smartphones and the propagation of mobile applications (App) that marked new opportunities for healthcare centers and medical education. Apps hav...The evolution of technology in 1990s resulted in the enormous growth of smartphones and the propagation of mobile applications (App) that marked new opportunities for healthcare centers and medical education. Apps have altered health services from patient’s health monitoring to specialist’s appointments and consultations from specialized health facilities. It can be argued that a healthy society can bring forth sustainable economic development to its full potential while an unhealthy society cannot. However, a free movement of people, labour and right to residence which was built across East Africa (EA) borders enabled Tanzania and Kenya borders to have enormous interactions. Subsequently, increase the risk of highly communicable diseases such as Tuberculosis and Sexually transmitted infections in such a way that medical attention is unavoidable along the borders. Statistically, Android Operating System (OS) owns 83% of Africa’s mobile OS market. In addition, 25,794,560 internet users reported by Tanzania Communications Regulatory Authority (TCRA) together with the 22.86 million internet users provided by Kenya Digital which is equivalent to 46% and 43% of internet penetration in year 2020, disclose the need for Android mobile application for mapping health facilities both online and offline using Google map API, which will solve residents’ need to healthcare services on the presence or shortage of internet connections;using either Swahili or English language via Smartphone devices. The App incorporates Monitoring and Evaluation (M & E) tool for tracking application usage which will ease Admin’s task to generate daily and monthly reports in Excel and Comma-Separated Values (CSV) formats. The developed system received positive feedback from EA citizens and residents in the Arusha region and Namanga border crossing where 90.2% of the system evaluation conducted between Dec 2020 and Apr 2021 agreed upon App usage.展开更多
针对基于Android应用程序申请权限的检测过于粗粒度的问题,提出了基于敏感应用程序编程接口(application program interface,API)配对的恶意应用检测方法。通过反编译应用程序提取危险权限对应的敏感API,将敏感API两两配对分别构建恶意...针对基于Android应用程序申请权限的检测过于粗粒度的问题,提出了基于敏感应用程序编程接口(application program interface,API)配对的恶意应用检测方法。通过反编译应用程序提取危险权限对应的敏感API,将敏感API两两配对分别构建恶意应用无向图与良性应用无向图,再根据恶意应用和良性应用在敏感API调用上的差异分配相同边不同的权重,以此检测Android恶意应用。实验结果表明,提出的方法可以有效地检测出Android恶意应用程序,具有现实意义。展开更多
传统的勒索软件动态检测方法需要收集较长时间的软件行为,难以满足勒索软件及时检测的需求.本文从勒索软件及时检测的角度出发,提出了“勒索软件检测关键时间段(Critical Time Periods for Ransomware Detection,CTP)”的概念,并基于CT...传统的勒索软件动态检测方法需要收集较长时间的软件行为,难以满足勒索软件及时检测的需求.本文从勒索软件及时检测的角度出发,提出了“勒索软件检测关键时间段(Critical Time Periods for Ransomware Detection,CTP)”的概念,并基于CTP的要求提出了一种基于应用程序编程接口(Application Programming Interface,API)短序列的勒索软件早期检测方法(Ransomware Early Detection Method based on short API Sequence,REDMS).REDMS以软件在CTP内执行时所调用的API短序列为分析对象,通过n-gram模型和词频-逆文档频率算法对采集到的API短序列进行计算以生成特征向量,然后运用机器学习算法建立检测模型对勒索软件进行早期检测.实验结果显示,REDMS在API采集时段为前7s且使用随机森林算法时,分别能以98.2%、96.7%的准确率检测出已知和未知的勒索软件样本.展开更多
文摘The evolution of technology in 1990s resulted in the enormous growth of smartphones and the propagation of mobile applications (App) that marked new opportunities for healthcare centers and medical education. Apps have altered health services from patient’s health monitoring to specialist’s appointments and consultations from specialized health facilities. It can be argued that a healthy society can bring forth sustainable economic development to its full potential while an unhealthy society cannot. However, a free movement of people, labour and right to residence which was built across East Africa (EA) borders enabled Tanzania and Kenya borders to have enormous interactions. Subsequently, increase the risk of highly communicable diseases such as Tuberculosis and Sexually transmitted infections in such a way that medical attention is unavoidable along the borders. Statistically, Android Operating System (OS) owns 83% of Africa’s mobile OS market. In addition, 25,794,560 internet users reported by Tanzania Communications Regulatory Authority (TCRA) together with the 22.86 million internet users provided by Kenya Digital which is equivalent to 46% and 43% of internet penetration in year 2020, disclose the need for Android mobile application for mapping health facilities both online and offline using Google map API, which will solve residents’ need to healthcare services on the presence or shortage of internet connections;using either Swahili or English language via Smartphone devices. The App incorporates Monitoring and Evaluation (M & E) tool for tracking application usage which will ease Admin’s task to generate daily and monthly reports in Excel and Comma-Separated Values (CSV) formats. The developed system received positive feedback from EA citizens and residents in the Arusha region and Namanga border crossing where 90.2% of the system evaluation conducted between Dec 2020 and Apr 2021 agreed upon App usage.
文摘针对基于Android应用程序申请权限的检测过于粗粒度的问题,提出了基于敏感应用程序编程接口(application program interface,API)配对的恶意应用检测方法。通过反编译应用程序提取危险权限对应的敏感API,将敏感API两两配对分别构建恶意应用无向图与良性应用无向图,再根据恶意应用和良性应用在敏感API调用上的差异分配相同边不同的权重,以此检测Android恶意应用。实验结果表明,提出的方法可以有效地检测出Android恶意应用程序,具有现实意义。
文摘传统的勒索软件动态检测方法需要收集较长时间的软件行为,难以满足勒索软件及时检测的需求.本文从勒索软件及时检测的角度出发,提出了“勒索软件检测关键时间段(Critical Time Periods for Ransomware Detection,CTP)”的概念,并基于CTP的要求提出了一种基于应用程序编程接口(Application Programming Interface,API)短序列的勒索软件早期检测方法(Ransomware Early Detection Method based on short API Sequence,REDMS).REDMS以软件在CTP内执行时所调用的API短序列为分析对象,通过n-gram模型和词频-逆文档频率算法对采集到的API短序列进行计算以生成特征向量,然后运用机器学习算法建立检测模型对勒索软件进行早期检测.实验结果显示,REDMS在API采集时段为前7s且使用随机森林算法时,分别能以98.2%、96.7%的准确率检测出已知和未知的勒索软件样本.