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Author Tronci, Enrico pdf  doi
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  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 pdf  doi
openurl 
  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 pdf  doi
openurl 
  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 (down)  
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  Notes Approved yes  
  Call Number Sapienza @ mari @ lics91 Serial 58  
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Author Bobbio, Andrea; Bologna, Sandro; Minichino, Michele; Ciancamerla, Ester; Incalcaterra, Piero; Kropp, Corrado; Tronci, Enrico pdf  url
openurl 
  Title Advanced techniques for safety analysis applied to the gas turbine control system of Icaro co generative plant Type Conference Article
  Year 2001 Publication X Convegno Tecnologie e Sistemi Energetici Complessi Abbreviated Journal  
  Volume Issue Pages 339-350  
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  Abstract The paper describes two complementary and integrable approaches, a probabilistic one and a deterministic one, based on classic and advanced modelling techniques for safety analysis of complex computer based systems. The probabilistic approach is based on classical and innovative probabilistic analysis methods. The deterministic approach is based on formal verification methods. Such approaches are applied to the gas turbine control system of ICARO co generative plant, in operation at ENEA CR Casaccia. The main difference between the two approaches, behind the underlining different theories, is that the probabilistic one addresses the control system by itself, as the set of sensors, processing units and actuators, while the deterministic one also includes the behaviour of the equipment under control which interacts with the control system. The final aim of the research, documented in this paper, is to explore an innovative method which put the probabilistic and deterministic approaches in a strong relation to overcome the drawbacks of their isolated, selective and fragmented use which can lead to inconsistencies in the evaluation results.  
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  Publisher Place of Publication Genova, Italy Editor (down)  
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  Call Number Sapienza @ mari @ tesec01 Serial 65  
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Author Della Penna, Giuseppe; Intrigila, Benedetto; Melatti, Igor; Tronci, Enrico; Venturini Zilli, Marisa pdf  doi
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  Title Finite horizon analysis of Markov Chains with the Mur$\varphi$ verifier Type Journal Article
  Year 2006 Publication Int. J. Softw. Tools Technol. Transf. Abbreviated Journal  
  Volume 8 Issue 4 Pages 397-409  
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  Abstract In this paper we present an explicit disk-based verification algorithm for Probabilistic Systems defining discrete time/finite state Markov Chains. Given a Markov Chain and an integer k (horizon), our algorithm checks whether the probability of reaching an error state in at most k steps is below a given threshold. We present an implementation of our algorithm within a suitable extension of the Mur$\varphi$ verifier. We call the resulting probabilistic model checker FHP-Mur$\varphi$ (Finite Horizon Probabilistic Mur$\varphi$). We present experimental results comparing FHP-Mur$\varphi$ with (a finite horizon subset of) PRISM, a state-of-the-art symbolic model checker for Markov Chains. Our experimental results show that FHP-Mur$\varphi$ can handle systems that are out of reach for PRISM, namely those involving arithmetic operations on the state variables (e.g. hybrid systems).  
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  Publisher Springer-Verlag Place of Publication Berlin, Heidelberg Editor (down)  
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  Series Volume Series Issue Edition  
  ISSN 1433-2779 ISBN Medium  
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  Notes Approved yes  
  Call Number Sapienza @ mari @ Dimtz06 Serial 78  
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Author Della Penna, Giuseppe; Intrigila, Benedetto; Melatti, Igor; Tronci, Enrico; Venturini Zilli, Marisa pdf  doi
openurl 
  Title Exploiting Transition Locality in Automatic Verification of Finite State Concurrent Systems Type Journal Article
  Year 2004 Publication Sttt Abbreviated Journal  
  Volume 6 Issue 4 Pages 320-341  
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  Abstract In this paper we show that statistical properties of the transition graph of a system to be verified can be exploited to improve memory or time performances of verification algorithms. We show experimentally that protocols exhibit transition locality. That is, with respect to levels of a breadth-first state space exploration, state transitions tend to be between states belonging to close levels of the transition graph. We support our claim by measuring transition locality for the set of protocols included in the Mur$\varphi$ verifier distribution. We present a cache-based verification algorithm that exploits transition locality to decrease memory usage and a disk-based verification algorithm that exploits transition locality to decrease disk read accesses, thus reducing the time overhead due to disk usage. Both algorithms have been implemented within the Mur$\varphi$ verifier. Our experimental results show that our cache-based algorithm can typically save more than 40% of memory with an average time penalty of about 50% when using (Mur$\varphi$) bit compression and 100% when using bit compression and hash compaction, whereas our disk-based verification algorithm is typically more than ten times faster than a previously proposed disk-based verification algorithm and, even when using 10% of the memory needed to complete verification, it is only between 40 and 530% (300% on average) slower than (RAM) Mur$\varphi$ with enough memory to complete the verification task at hand. Using just 300 MB of memory our disk-based Mur$\varphi$ was able to complete verification of a protocol with about $10^9$ reachable states. This would require more than 5 GB of memory using standard Mur$\varphi$.  
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  Notes Approved yes  
  Call Number Sapienza @ mari @ DIMTZ04j Serial 91  
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