David Lorenzetti

dblp:162/5523 · DBLP profile ↗
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2ranked-venue papers
0as first author
0since 2021 · last 2016
—ORCID · none

Domains — the database's venue-derived domains; a paper can count in several

Theory of computation · 1Applied, interdisciplinary, general and emerging computing · 1

Expertise — from the expertise taxonomy: the topics of the expert's papers under the CCF categories. A weight counts papers with recency: 1 for a paper about the topic, 0.3 when the topic is its context, halved every five years.

Interdisciplinary, comprehensive, and emerging computing
1 paper
Energy systems and smart grids · 100%
Computer architecture, parallel and distributed computing, and storage systems
1 paper
Embedded and real-time systems · 100%

Topics — the 3 heaviest of 3, each with the papers that count most for it

TopicWeightPapersLastEvidence papers
Energy systems and smart grids
co-simulation
0.212016
Cyber-Physical Modeling of Distributed Resources for Distribution System Operations · Proc. IEEE 2016
Energy systems and smart grids › power distribution network
distribution system operations
0.212016
Cyber-Physical Modeling of Distributed Resources for Distribution System Operations · Proc. IEEE 2016
Embedded and real-time systems
cyber-physical systems
0.112016
Cyber-Physical Modeling of Distributed Resources for Distribution System Operations · Proc. IEEE 2016

Methods — techniques the papers use, named apart from their topics

quantized state system · 0.5functional mockup interface · 0.2functional mock-up interface · 0.2
YearPublicationVenuePosition
2016 Cyber-Physical Modeling of Distributed Resources for Distribution System Operations
abstract
Cosimulation platforms are necessary to study the interactions of complex systems integrated in future smart grids. The Virtual Grid Integration Laboratory (VirGIL) is a modular cosimulation platform designed to study interactions between demand-response (DR) strategies, building comfort, communication networks, and power system operation. This paper presents the coupling of power systems, buildings, communications, and control under a master algorithm. There are two objectives: first, to use a modular architecture for VirGIL, based on the functional mockup interface (FMI), where several different modules can be added, exchanged, and tested; and second, to use a commercial power system simulation platform, familiar to power system operators, such as DIgSILENT PowerFactory. This will help reduce the barriers to the industry for adopting such platforms, investigate and subsequently deploy DR strategies in their daily operation. VirGIL further introduces the integration of the quantized state system (QSS) methods for simulation in this cosimulation platform. Results on how these systems interact using a real network and consumption data are also presented.
Spyros Chatzivasileiadis, Marco Bonvini, Javier Matanza, Rongxin Yin, Thierry S. Nouidui, Emre Can Kara, Rajiv Parmar, David Lorenzetti, Michael Wetter, Sila Kiliccote
Proc. IEEE8
2015 CyPhySim: a cyber-physical systems simulator
abstract
This demo provides a preview of a pre-release version of CyPhySim, an open-source simulator for cyber-physical systems. This simulator supports discrete-event models, quantized-state simulation of continuous dynamics, the Functional Mockup Interface (FMI), classical (Runge-Kutta) simulation of continuous dynamics, modal models (hybrid systems), discrete-time (periodic) systems, and algebraic loop solvers. CyPhySim provides a graphical editor, an XML file syntax for models, and an open API for programmatic construction of models.
Christopher X. Brooks, Edward A. Lee, David Lorenzetti, Thierry S. Nouidui, Michael Wetter
HSCC3