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Used together with:
technic (13)
architectur (8)
softwar (4)
use (4)
studi (3)

Stem debt$ (all stems)

17 papers:

QoSAQoSA-2015-IzurietaRG #modelling #quality #technical debt
Preemptive Management of Model Driven Technical Debt for Improving Software Quality (CI, GR, IG), pp. 31–36.
WICSAWICSA-2015-LiLA #architecture #identification #technical debt
Architectural Technical Debt Identification Based on Architecture Decisions and Change Scenarios (ZL, PL, PA), pp. 65–74.
WICSAWICSA-2015-MartiniB #architecture #technical debt
The Danger of Architectural Technical Debt: Contagious Debt and Vicious Circles (AM, JB), pp. 1–10.
WICSAWICSA-2015-TamburriN #architecture #social
When Software Architecture Leads to Social Debt (DAT, EDN), pp. 61–64.
ICEISICEIS-v2-2015-MendesAASNM #evolution #monitoring #named #open source #technical debt #using #visualisation
VisMinerTD — An Open Source Tool to Support the Monitoring of the Technical Debt Evolution using Software Visualization (TSM, DAA, NSRA, ROS, RLN, MGM), pp. 457–462.
ESEC-FSEESEC-FSE-2015-ErnstBONG #technical debt
Measure it? Manage it? Ignore it? software practitioners and technical debt (NAE, SB, IO, RLN, IG), pp. 50–60.
ESEC-FSEESEC-FSE-2015-Xiao #architecture
Quantifying architectural debts (LX), pp. 1030–1033.
ICSEICSE-v2-2015-KazmanCMFXHFS #architecture #case study #technical debt
A Case Study in Locating the Architectural Roots of Technical Debt (RK, YC, RM, QF, LX, SH, VF, AS), pp. 179–188.
QoSAQoSA-2014-LiLAGA #architecture #composition #empirical #metric #technical debt
An empirical investigation of modularity metrics for indicating architectural technical debt (ZL, PL, PA, NG, AA), pp. 119–128.
ICSMEICSME-2014-PotdarS #case study #self #technical debt
An Exploratory Study on Self-Admitted Technical Debt (AP, ES), pp. 91–100.
REFSQREFSQ-2014-OjameruayeB #requirements #using
Systematic Elaboration of Compliance Requirements Using Compliance Debt and Portfolio Theory (BO, RB), pp. 152–167.
QoSAQoSA-2013-Schmid #approach #formal method #technical debt
A formal approach to technical debt decision making (KS), pp. 153–162.
WICSA-ECSAWICSA-ECSA-2012-NordOKG #architecture #metric #technical debt
In Search of a Metric for Managing Architectural Technical Debt (RLN, IO, PK, MGR), pp. 91–100.
ICSEICSE-2012-Vetro #automation #identification #static analysis #technical debt #using
Using automatic static analysis to identify technical debt (AV), pp. 1613–1615.
ICSTICST-2012-WiklundESL #automation #technical debt #testing
Technical Debt in Test Automation (KW, SE, DS, KL), pp. 887–892.
ICSMEICSM-2011-GuoSGCTSSS #case study #technical debt
Tracking technical debt — An exploratory case study (YG, CBS, RG, AC, GT, FQBdS, ALMS, CdS), pp. 528–531.
KDDKDD-2010-AbeMPRJTBACKDG #learning #optimisation #using
Optimizing debt collections using constrained reinforcement learning (NA, PM, CP, CKR, DLJ, VPT, JJB, GFA, BRC, MK, MD, TG), pp. 75–84.

Bibliography of Software Language Engineering in Generated Hypertext (BibSLEIGH) is created and maintained by Dr. Vadim Zaytsev.
Hosted as a part of SLEBOK on GitHub.