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Pierluigi Nuzzo

Researcher at University of Southern California

Publications -  122
Citations -  3173

Pierluigi Nuzzo is an academic researcher from University of Southern California. The author has contributed to research in topics: Computer science & Cyber-physical system. The author has an hindex of 28, co-authored 102 publications receiving 2693 citations. Previous affiliations of Pierluigi Nuzzo include University of Maryland, College Park & Katholieke Universiteit Leuven.

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Noise Analysis of Regenerative Comparators for Reconfigurable ADC Architectures

TL;DR: A time-domain analysis is proposed that accounts for the time varying nature of the circuit exploiting some basic results from the solution of stochastic differential equations and the resulting symbolic expressions allow focusing designers' attention on the most influential noise contributors.
Journal ArticleDOI

Secure State Estimation for Cyber-Physical Systems Under Sensor Attacks: A Satisfiability Modulo Theory Approach

TL;DR: In this article, the authors present a secure state estimation algorithm that uses a satisfiability modulo theory approach to harness the complexity of the secure state estimator and provide guarantees on the soundness and completeness of the algorithm.
Proceedings ArticleDOI

An 820μW 9b 40MS/s Noise-Tolerant Dynamic-SAR ADC in 90nm Digital CMOS

TL;DR: SAR architectures have been recently demonstrated as able to achieve high power efficiency in the moderate-resolution/medium- bandwidth range, but when the comparator determines in first instance the overall performance, comparator thermal noise can limit the maximum achievable resolution.
Journal ArticleDOI

A Contract-Based Methodology for Aircraft Electric Power System Design

TL;DR: A platform-based methodology is proposed, which enables independent implementation of system topology and control protocol by using a compositional approach and is shown to be effective on a proof-of-concept electric power system design.
Posted Content

Secure State Estimation For Cyber Physical Systems Under Sensor Attacks: A Satisfiability Modulo Theory Approach

TL;DR: A novel algorithm is presented that uses a satisfiability modulo theory approach to harness the complexity of secure state estimation and leverages results from formal methods over real numbers to provide guarantees on the soundness and completeness of the algorithm.