From Reactive Systems to Cyber-Physical Systems: Essays Dedicated to Scott A. Smolka on the Occasion of His 65th Birthday

From Reactive Systems to Cyber-Physical Systems: Essays Dedicated to Scott A. Smolka on the Occasion of His 65th Birthday

ISBN-10:
3030315134
ISBN-13:
9783030315139
Pub. Date:
09/21/2019
Publisher:
Springer International Publishing
ISBN-10:
3030315134
ISBN-13:
9783030315139
Pub. Date:
09/21/2019
Publisher:
Springer International Publishing
From Reactive Systems to Cyber-Physical Systems: Essays Dedicated to Scott A. Smolka on the Occasion of His 65th Birthday

From Reactive Systems to Cyber-Physical Systems: Essays Dedicated to Scott A. Smolka on the Occasion of His 65th Birthday

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Overview

This Festschrift is in honor of Scott A. Smolka, Professor in the Stony Brook University, USA, on the occasion of his 65th birthday.
Scott A. Smolka made fundamental research contributions in a number of areas, including process algebra, model checking, probabilistic processes, runtime verification, and the modeling and analysis of cardiac cells, neural circuits and flocking behaviors. He is perhaps best known for the algorithm he and Paris Kanellakis invented for checking bi-simulation. The title of this volume From Reactive Systems to Cyber-Physical Systems reflects Scott's main research focus throughout his career.
It contains the papers written by his closest friends and collaborators. The contributions cover a wide spectrum of the topics related to Scott's research scientific interests, including model repair for probabilistic systems, runtime verification, model checking, cardiac dynamics simulation and machine learning.


Product Details

ISBN-13: 9783030315139
Publisher: Springer International Publishing
Publication date: 09/21/2019
Series: Lecture Notes in Computer Science , #11500
Edition description: 1st ed. 2019
Pages: 301
Product dimensions: 6.10(w) x 9.25(h) x (d)

Table of Contents

Analysis of Complex Biological Systems.- Program Analysis.- Synthesis of Models, Parameters and Benchmarks.- Model-based Design.- Data-driven Design.- Runtime Verification.- Short Abstracts.
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