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Author Alimguzhin, V.; Mari, F.; Melatti, I.; Salvo, I.; Tronci, E.
Title Linearising Discrete Time Hybrid Systems Type Journal Article
Year 2017 Publication IEEE Transactions on Automatic Control Abbreviated Journal
Volume 62 Issue 10 Pages 5357-5364
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Abstract Model Based Design approaches for embedded systems aim at generating correct-by-construction control software, guaranteeing that the closed loop system (controller and plant) meets given system level formal specifications. This technical note addresses control synthesis for safety and reachability properties of possibly non-linear discrete time hybrid systems. By means of syntactical transformations that require non-linear terms to be Lipschitz continuous functions, we over-approximate non-linear dynamics with a linear system whose controllers are guaranteed to be controllers of the original system. We evaluate performance of our approach on meaningful control synthesis benchmarks, also comparing it to a state-of-the-art tool.
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ISSN 0018-9286 ISBN Medium
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Notes Approved no
Call Number Sapienza @ mari @ ref7902199 Serial 164
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Author Tronci, Enrico
Title Automatic Synthesis of Control Software for an Industrial Automation Control System Type Conference Article
Year 1999 Publication Proc.of: 14th IEEE International Conference on: Automated Software Engineering (ASE) Abbreviated Journal
Volume Issue Pages 247-250
Keywords
Abstract We present a case study on automatic synthesis of control software from formal specifications for an industrial automation control system. Our aim is to compare the effectiveness (i.e. design effort and controller quality) of automatic controller synthesis from closed loop formal specifications with that of manual controller design, followed by automatic verification. Our experimental results show that for industrial automation control systems, automatic synthesis is a viable and profitable (especially as far as design effort is concerned) alternative to manual design, followed by automatic verification.
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Publisher Place of Publication Cocoa Beach, Florida, USA Editor
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Notes Approved yes
Call Number Sapienza @ mari @ ase99 Serial 49
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Author Tronci, Enrico
Title Formally Modeling a Metal Processing Plant and its Closed Loop Specifications Type Conference Article
Year 1999 Publication 4th IEEE International Symposium on High-Assurance Systems Engineering (HASE) Abbreviated Journal
Volume Issue Pages 151
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Abstract We present a case study on automatic synthesis of control software from formal specifications for an industrial automation control system. Our aim is to compare the effectiveness (i.e. design effort and controller quality) of automatic controller synthesis from closed loop formal specifications with that of manual controller design followed by automatic verification. The system to be controlled (plant) models a metal processing facility near Karlsruhe. We succeeded in automatically generating C code implementing a (correct by construction) embedded controller for such a plant from closed loop formal specifications. Our experimental results show that for industrial automation control systems automatic synthesis is a viable and profitable (especially as far as design effort is concerned) alternative to manual design followed by automatic verification.
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Publisher IEEE Computer Society Place of Publication Washington, D.C, USA Editor
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ISSN 0-7695-0418-3 ISBN Medium
Area Expedition Conference
Notes Approved yes
Call Number Sapienza @ mari @ hase99 Serial 50
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Author Tronci, Enrico
Title Automatic Synthesis of Controllers from Formal Specifications Type Conference Article
Year 1998 Publication Proc of 2nd IEEE International Conference on Formal Engineering Methods (ICFEM) Abbreviated Journal
Volume Issue Pages 134-143
Keywords
Abstract Many safety critical reactive systems are indeed embedded control systems. Usually a control system can be partitioned into two main subsystems: a controller and a plant. Roughly speaking: the controller observes the state of the plant and sends commands (stimulus) to the plant to achieve predefined goals. We show that when the plant can be modeled as a deterministic finite state system (FSS) it is possible to effectively use formal methods to automatically synthesize the program implementing the controller from the plant model and the given formal specifications for the closed loop system (plant+controller). This guarantees that the controller program is correct by construction. To the best of our knowledge there is no previously published effective algorithm to extract executable code for the controller from closed loop formal specifications. We show practical usefulness of our techniques by giving experimental results on their use to synthesize C programs implementing optimal controllers (OCs) for plants with more than 109 states.
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Publisher Place of Publication Brisbane, Queensland, Australia Editor
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Notes Approved yes
Call Number Sapienza @ mari @ icfem98 Serial 52
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Author Tronci, Enrico
Title Equational Programming in Lambda-Calculus via SL-Systems. Part 1 Type Journal Article
Year 1996 Publication Theoretical Computer Science Abbreviated Journal
Volume 160 Issue 1&2 Pages 145-184
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Notes Approved yes
Call Number Sapienza @ mari @ tcs96 Serial 54
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Author Tronci, Enrico
Title Equational Programming in Lambda-Calculus via SL-Systems. Part 2 Type Journal Article
Year 1996 Publication Theoretical Computer Science Abbreviated Journal
Volume 160 Issue 1&2 Pages 185-216
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Notes Approved yes
Call Number Sapienza @ mari @ tcs96a Serial 55
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Author Tronci, Enrico
Title Hardware Verification, Boolean Logic Programming, Boolean Functional Programming Type Conference Article
Year 1995 Publication Tenth Annual IEEE Symposium on Logic in Computer Science (LICS) Abbreviated Journal
Volume Issue Pages 408-418
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Abstract One of the main obstacles to automatic verification of finite state systems (FSSs) is state explosion. In this respect automatic verification of an FSS M using model checking and binary decision diagrams (BDDs) has an intrinsic limitation: no automatic global optimization of the verification task is possible until a BDD representation for M is generated. This is because systems and specifications are defined using different languages. To perform global optimization before generating a BDD representation for M we propose to use the same language to define systems and specifications. We show that first order logic on a Boolean domain yields an efficient functional programming language that can be used to represent, specify and automatically verify FSSs, e.g. on a SUN Sparc Station 2 we were able to automatically verify a 64 bit commercial multiplier.
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Publisher IEEE Computer Society Place of Publication San Diego, California Editor
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Notes Approved yes
Call Number Sapienza @ mari @ lics95 Serial 56
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Author Tronci, Enrico
Title Defining Data Structures via Böhm-Out Type Journal Article
Year 1995 Publication J. Funct. Program. Abbreviated Journal
Volume 5 Issue 1 Pages 51-64
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Abstract We show that any recursively enumerable subset of a data structure can be regarded as the solution set to a B??hm-out problem.
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Notes Approved yes
Call Number Sapienza @ mari @ jfp95 Serial 57
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Author Tronci, Enrico
Title Equational Programming in lambda-calculus Type Conference Article
Year 1991 Publication Sixth Annual IEEE Symposium on Logic in Computer Science (LICS) Abbreviated Journal
Volume Issue Pages 191-202
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Publisher IEEE Computer Society Place of Publication Amsterdam, The Netherlands Editor
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Notes Approved yes
Call Number Sapienza @ mari @ lics91 Serial 58
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Author Böhm, Corrado; Tronci, Enrico
Title About Systems of Equations, X-Separability, and Left-Invertibility in the lambda-Calculus Type Journal Article
Year 1991 Publication Inf. Comput. Abbreviated Journal
Volume 90 Issue 1 Pages 1-32
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Notes Approved yes
Call Number Sapienza @ mari @ infcomp91 Serial 59
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