Author's Latest Posts


Physical Removal Attack On LiDAR Sensors And Mitigation Strategies


A technical paper titled "You Can't See Me: Physical Removal Attacks on LiDAR-based Autonomous Vehicles Driving Frameworks" was published by researchers at University of Michigan, University of Florida and the University of Electro-Communications (Japan). This paper was included at the recent 32nd USENIX Security Symposium. Abstract: "Autonomous Vehicles (AVs) increasingly use LiDAR-base... » read more

Formal Processor Model Providing Provably Secure Speculation For The Constant-Time Policy


A new technical paper titled "ProSpeCT: Provably Secure Speculation for the Constant-Time Policy" was published by researchers at imec-DistriNet, KU Leuven, CEA, and INRIA. This paper was included at the recent 32nd USENIX Security Symposium. Abstract: "We propose ProSpeCT, a generic formal processor model providing provably secure speculation for the constant-time policy. For constant-tim... » read more

Remote Direct Memory Introspection (Rice, Duke, MIT)


A technical paper titled "Remote Direct Memory Introspection" was published by researchers at Rice University, Duke University, and MIT. This paper won a distinguished paper award at the recent 32nd USENIX Security Symposium. Abstract: "Hypervisors have played a critical role in cloud security, but they introduce a large trusted computing base (TCB) and incur a heavy performance tax. As of... » read more

EDA Tool To Detect SW-HW Vulnerabilities Ensuring Data Confidentiality In A RISC-V Architecture


A technical paper titled “SoftFlow: Automated HW-SW Confidentiality Verification for Embedded Processors” was published by researchers at RWTH Aachen University, Robert Bosch, and Newcastle University. Abstract: "Despite its ever-increasing impact, security is not considered as a design objective in commercial electronic design automation (EDA) tools. This results in vulnerabilities being... » read more

A Chiplet-Based Fully Homomorphic Encryption Accelerator


A technical paper titled “CiFHER: A Chiplet-Based FHE Accelerator with a Resizable Structure” was published by researchers at Seoul National University. Abstract: "Fully homomorphic encryption (FHE) is in the spotlight as a definitive solution for privacy, but the high computational overhead of FHE poses a challenge to its practical adoption. Although prior studies have attempted to desig... » read more

Anode Interlayers To Reduce Interfacial Resistance Of Solid-State Li-Metal Batteries And Prevent Short-Circuit Formation


A technical paper titled “Design Strategies for Anodes and Interfaces Toward Practical Solid-State Li-Metal Batteries” was published by researchers at Samsung Advanced Institute of Technology. Abstract: "Solid-state Li-metal batteries (based on solid-state electrolytes) offer excellent safety and exhibit high potential to overcome the energy-density limitations of current Li-ion batteries... » read more

A Novel Optically Triggered Self-Adaptive ZVS Method For SiC MOSFETs 


A technical paper titled “Optically Triggered Self-Adaptive Zero Voltage Switching” was published by researchers at University of Cambridge, Zhejiang University, and Swiss Federal Institute of Technology. Abstract: "Zero voltage switching (ZVS) is useful to increase power electronics efficiency but difficult to achieve due to the nonlinear parasitic capacitance of the power semiconducto... » read more

Flexible Hybrid Electronics: Future Standards For Next-Gen 5G/mmWave Wearable and Conformal Applications


A technical paper titled “Additively manufactured flexible on-package phased array antennas for 5G/mmWave wearable and conformal digital twin and massive MIMO applications” was published by researchers at Georgia Institute of Technology. Abstract: "This paper thoroughly investigates material characterization, reliability evaluation, fabrication, and assembly processes of additively manufa... » read more

Neuromorphic Computing: Graphene-Based Memristors For Future AI Hardware From Fabrication To SNNs


A technical paper titled “A Review of Graphene-Based Memristive Neuromorphic Devices and Circuits” was published by researchers at James Cook University (Australia) and York University (Canada). Abstract: "As data processing volume increases, the limitations of traditional computers and the need for more efficient computing methods become evident. Neuromorphic computing mimics the brain's... » read more

New Architecture Elements For 5G RF Front-End Modules To Reduce Noise, Improve Efficiency, And Allow Multiple Radio Transmitters


A technical paper titled “Circuits for 5G RF front-end modules” was published by researchers at Skyworks Solutions Inc. Abstract: "Worldwide adoption of fourth-generation wireless (4G) long-term evolution (LTE) smartphones and the actual transition to fifth-generation wireless (5G) is the main driving engine for semiconductor industry. 5G is expected to reach high data rate speeds (1 Gbps... » read more

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