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Dynamic binary instrumentation-based framework for malware defense
Najwa Aaraj
, Anand Raghunathan
,
Niraj K. Jha
Electrical and Computer Engineering
Princeton Language and Intelligence (PLI)
Research output
:
Chapter in Book/Report/Conference proceeding
›
Conference contribution
23
Link opens in a new tab
Scopus citations
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Keyphrases
Testing Environment
100%
Malware Attacks
100%
Real Environment
100%
Dynamic Binary Instrumentation
100%
Virus
66%
Malware
66%
Security Policy
66%
Obfuscation
66%
Malicious Software
66%
Proposed Methodology
33%
Untrusted
33%
Accuracy Improvement
33%
Behavioral Patterns
33%
Performance Penalty
33%
Operating System
33%
Linux
33%
Learning Process
33%
Low Performance
33%
Behavioral Model
33%
Virtualized
33%
Runtime Monitoring
33%
Average Execution Time
33%
Malware Detection
33%
Isolated Execution
33%
Windows XP
33%
Complete Coverage
33%
Continual Learning
33%
Information Security Breach
33%
Isolated Environment
33%
Computer Science
Malware
100%
Binary Instrumentation
100%
Testing Environment
33%
Security Policy
33%
Performance Penalty
16%
Linux
16%
Learning Process
16%
Lower Performance
16%
Time Monitoring
16%
Information Security
16%
Average Execution Time
16%
Malware Detection
16%
Security Breach
16%
Execution Environments
16%
Behavioral Pattern
16%
Isolated Environment
16%
Operating System
16%