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The energy impact of security mechanisms in modern mobile devices.

, and . Netw. Secur., 2012 (2): 11-14 (2012)

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An Empirical Evaluation of the Android Security Framework., , and . SEC, volume 405 of IFIP Advances in Information and Communication Technology, page 176-189. Springer, (2013)Generating statistical insights into network behavior using SKETURE., , and . J. High Speed Networks, 22 (1): 65-76 (2016)DIOXIN: runtime security policy enforcement of fog applications., , , and . Int. J. Grid Util. Comput., 12 (2): 126-138 (2021)Behavioral-Anomaly Detection in Forensics Analysis., , and . IEEE Secur. Priv., 17 (1): 55-62 (2019)A Fraud-Resilient Blockchain-Based Solution for Invoice Financing., , , , and . IEEE Trans. Engineering Management, 67 (4): 1086-1098 (2020)Formal Modeling and Reasoning about the Android Security Framework., , and . TGC, volume 8191 of Lecture Notes in Computer Science, page 64-81. Springer, (2012)Saving energy in aggressive intrusion detection through dynamic latency sensitivity recognition., , , and . Comput. Secur., (2018)FLEX: A Flexible Code Authentication Framework for Delegating Mobile App Customization., , , and . AsiaCCS, page 389-400. ACM, (2016)APPregator: A Large-Scale Platform for Mobile Security Analysis., , , and . ICTSS, volume 12543 of Lecture Notes in Computer Science, page 73-88. Springer, (2020)Enabling Next-Generation Cyber Ranges with Mobile Security Components., , and . ICTSS, volume 12543 of Lecture Notes in Computer Science, page 150-165. Springer, (2020)