Travelled to:
1 × Croatia
1 × Ireland
1 × Portugal
1 × Romania
1 × South Africa
2 × Canada
2 × France
2 × The Netherlands
3 × China
4 × Italy
4 × USA
Collaborated with:
G.Canfora M.D.Penta M.Ceccarelli L.Aversano L.Troiano ∅ D.Distante A.Visaggio M.Leone M.Cimitile F.Pacilio Y.Guéhéneuc G.Antoniol R.Preziosi A.Bacchelli C.D.Grosso
Talks about:
studi (7) chang (7) empir (5) code (5) detect (4) approach (3) support (3) pattern (3) analysi (3) impact (3)
Person: Luigi Cerulo
DBLP: Cerulo:Luigi
Contributed to:
Wrote 24 papers:
- KDIR-2014-DistanteCVL #learning #online #paradigm #plugin #topic
- Enhancing Online Discussion Forums with a Topic-driven Navigational Paradigm — A Plugin for the Moodle Learning Management System (DD, LC, AV, ML), pp. 97–106.
- SCAM-2013-CeruloCPC #detection #markov
- A Hidden Markov Model to detect coded information islands in free text (LC, MC, MDP, GC), pp. 157–166.
- SCAM-J-2013-CeruloPBCC15 #detection #markov #named
- Irish: A Hidden Markov Model to detect coded information islands in free text (LC, MDP, AB, MC, GC), pp. 26–43.
- MSR-2011-CanforaCCP #debugging #interactive #social
- Social interactions around cross-system bug fixings: the case of FreeBSD and OpenBSD (GC, LC, MC, MDP), pp. 143–152.
- WCRE-2011-CanforaCCP #debugging #empirical #how
- How Long Does a Bug Survive? An Empirical Study (GC, MC, LC, MDP), pp. 191–200.
- ICPC-2010-CanforaCPP #case study
- An Exploratory Study of Factors Influencing Change Entropy (GC, LC, MDP, FP), pp. 134–143.
- ICSE-2010-CeccarelliCCP #approach #impact analysis
- An eclectic approach for change impact analysis (MC, LC, GC, MDP), pp. 163–166.
- ICSM-2010-CanforaCCP #detection #empirical #logic #multi #using
- Using multivariate time series and association rules to detect logical change coupling: An empirical study (GC, MC, LC, MDP), pp. 1–10.
- ICSE-2009-CanforaCP #difference #named
- Ldiff: An enhanced line differencing tool (GC, LC, MDP), pp. 595–598.
- ICSM-2008-PentaCGA #design pattern #empirical
- An empirical study of the relationships between design pattern roles and class change proneness (MDP, LC, YGG, GA), pp. 217–226.
- SCAM-2008-PentaCA #detection #evolution #source code
- The Evolution and Decay of Statically Detected Source Code Vulnerabilities (MDP, LC, LA), pp. 101–110.
- CSMR-2007-AversanoCP #empirical #how
- How Clones are Maintained: An Empirical Study (LA, LC, MDP), pp. 81–90.
- ESEC-FSE-2007-AversanoCCGP #design pattern #empirical #evolution
- An empirical study on the evolution of design patterns (LA, GC, LC, CDG, MDP), pp. 385–394.
- MSR-2007-CanforaCP #identification #repository #source code
- Identifying Changed Source Code Lines from Version Repositories (GC, LC, MDP), p. 14.
- SCAM-2007-AversanoCP #design pattern #evolution
- Relating the Evolution of Design Patterns and Crosscutting Concerns (LA, LC, MDP), pp. 180–192.
- CSMR-2006-CanforaC #eclipse #impact analysis #named #plugin
- Jimpa: An Eclipse Plug-in for Impact Analysis (GC, LC), pp. 341–342.
- ICSM-2006-CanforaCP #co-evolution #identification #on the #using
- On the Use of Line Co-change for Identifying Crosscutting Concern Code (GC, LC, MDP), pp. 213–222.
- MSR-2006-CanforaC #fine-grained #impact analysis #repository
- Fine grained indexing of software repositories to support impact analysis (GC, LC), pp. 105–111.
- MSR-2006-CanforaC06a #debugging #question
- Where is bug resolution knowledge stored? (GC, LC), pp. 183–184.
- SAC-2006-CanforaC #development #open source
- Supporting change request assignment in open source development (GC, LC), pp. 1767–1772.
- WCRE-2006-Cerulo #development #on the #process #using
- On the Use of Process Trails to Understand Software Development (LC), pp. 303–304.
- SEKE-2004-CanforaCT #estimation #experience #fuzzy #linear
- An Experience of Fuzzy Linear Regression applied to Effort Estimation (GC, LC, LT), pp. 57–61.
- SEKE-2003-CanforaCPT #approach #case study #implementation
- A Tool for Decision Support Implementing OFNWA Approach: A Case Study (GC, LC, RP, LT), pp. 714–720.
- SEKE-2002-CanforaC #approach #visual notation #xml
- A visual approach to define XML to FO transformations (GC, LC), pp. 563–570.