Hiroaki Kawase
Papers
2
Total Citations
7
H-Index
2
About
Hiroaki Kawase is a rising researcher at the intersection of cybersecurity and control theory, with a primary focus on encrypted control systems and their vulnerabilities. His work addresses the critical challenge of maintaining system stability and security when control signals are processed under encryption. Kawase’s most-cited paper, "Dynamic Quantizer Synthesis for Encrypted State-Feedback Control Systems with Partially Homomorphic Encryption" (2022, 5 citations), introduces a systematic design procedure for dynamic quantizers—both additive and multiplicative—revealing essential conditions for stability in encrypted environments. This foundational contribution provides a practical framework for implementing secure control without sacrificing performance. More recently, his 2025 paper on "Perfectly Undetectable False Data Injection Attacks on Encrypted Bilateral Teleoperation Systems" (2 citations) exposes a novel vulnerability in robotic teleoperation, demonstrating how attackers can exploit dynamic symmetry and malleability to inject undetectable faults. This work highlights critical security gaps in human-robot interaction systems, where a leader manipulator controls a remote follower. Kawase’s research is particularly notable for bridging theoretical encryption methods with real-world robotic applications, making him a key voice in the emerging field of secure cyber-physical systems.
Research Focus
Key Achievements
Top Papers
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