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Used together with:
schedul (10)
time (9)
system (7)
real (5)
task (4)

Stem deadlin$ (all stems)

30 papers:

DACDAC-2015-ZhangLSLWXY #energy #migration #scheduling
Deadline-aware task scheduling for solar-powered nonvolatile sensor nodes with global energy migration (DZ, YL, XS, JL, TW, CJX, HY), p. 6.
DATEDATE-2015-Baruah #graph #scheduling
The federated scheduling of constrained-deadline sporadic DAG task systems (SB), pp. 1323–1328.
DATEDATE-2015-WangNRQ #manycore #realtime #scheduling #statistics
Multi-core fixed-priority scheduling of real-time tasks with statistical deadline guarantee (TW, LN, SR, GQ), pp. 1335–1340.
AdaEuropeAdaEurope-2014-BurnsW #programming #scheduling
Deadline-Aware Programming and Scheduling (AB, AJW), pp. 107–118.
DATEDATE-2013-ChenHBK #energy #multi #optimisation #pipes and filters #worst-case
Energy optimization with worst-case deadline guarantee for pipelined multiprocessor systems (GC, KH, CB, AK), pp. 45–50.
ICALPICALP-v1-2013-BienkowskiBCDNSSY #algorithm #approximate #problem
Approximation Algorithms for the Joint Replenishment Problem with Deadlines (MB, JB, MC, NBD, TN, MS, GS, NEY), pp. 135–147.
ICEISICEIS-v1-2013-KaddesABSA #policy
Enhancement of Generalized Earliest Deadline First Policy (MK, LA, AB, BS, MA), pp. 231–238.
LCTESLCTES-2013-BouakazT #data flow #graph #scheduling
Buffer minimization in earliest-deadline first scheduling of dataflow graphs (AB, JPT), pp. 133–142.
DATEDATE-2012-AxerSE #bound #probability
Probabilistic response time bound for CAN messages with arbitrary deadlines (PA, MS, RE), pp. 1114–1117.
ICSTICST-2012-AlesioGNB #constraints #optimisation #realtime #testing #using
Testing Deadline Misses for Real-Time Systems Using Constraint Optimization Techniques (SDA, AG, SN, LCB), pp. 764–769.
ICALPICALP-v1-2011-AnandGM #how #question
Meeting Deadlines: How Much Speed Suffices? (SA, NG, NM), pp. 232–243.
DATEDATE-2010-MasrurCF
Constant-time admission control for Deadline Monotonic tasks (AM, SC, GF), pp. 220–225.
SEFMSEFM-2010-BartolettiZ
Static Enforcement of Service Deadlines (MB, RZ), pp. 320–324.
HPDCHPDC-2010-PovznerSB #distributed #named #performance
Horizon: efficient deadline-driven disk I/O management for distributed storage systems (AP, DS, SAB), pp. 1–12.
SACSAC-2009-FaggioliTC #algorithm #implementation #linux
An implementation of the earliest deadline first algorithm in Linux (DF, MT, FC), pp. 1984–1989.
SACSAC-2009-MaLWW #query #realtime #scheduling
Real-time scheduling for continuous queries with deadlines (LM, XL, YW, HW), pp. 1516–1517.
ICALPICALP-A-2008-Plaxton #performance #scheduling
Fast Scheduling of Weighted Unit Jobs with Release Times and Deadlines (CGP), pp. 222–233.
CBSECBSE-2007-Folmer #component #development #game studies #question
Component Based Game Development — A Solution to Escalating Costs and Expanding Deadlines? (EF), pp. 66–73.
DATEDATE-2007-CucuG #multi #scheduling
Feasibility intervals for multiprocessor fixed-priority scheduling of arbitrary deadline periodic systems (LC, JG), pp. 1635–1640.
VLDBVLDB-2007-LiGBNMNOF
Deadline and QoS Aware Data Warehouse (WSL, DG, RB, IN, HM, MN, MO, TF), pp. 1418–1421.
STOCSTOC-2004-BansalBCM #algorithm #approximate
Approximation algorithms for deadline-TSP and vehicle routing with time-windows (NB, AB, SC, AM), pp. 166–174.
AdaEuropeAdaEurope-2004-BurnsWT #ada #scheduling
Supporting Deadlines and EDF Scheduling in Ada (AB, AJW, STT), pp. 156–165.
DACDAC-2003-HuaQB #energy #multi #reduction
Energy reduction techniques for multimedia applications with tolerance to deadline misses (SH, GQ, SSB), pp. 131–136.
ESEC-FSEESEC-FSE-2003-BrylowP #analysis
Deadline analysis of interrupt-driven software (DB, JP), pp. 198–207.
AdaEuropeAdaEurope-2001-BrosgolD #java #question #realtime
Can Java Meet Its Real-Time Deadlines? (BMB, BD), pp. 68–87.
HPDCHPDC-2001-TakefusaMCB #case study #grid #scheduling
A Study of Deadline Scheduling for Client-Server Systems on the Computational Grid (AT, SM, HC, FB), pp. 406–405.
CIKMCIKM-2000-KrugerGCGFLO #named
DEADLINER: Building a New Niche Search Engine (AK, CLG, FC, EJG, GWF, SL, CWO), pp. 272–281.
ISMMISMM-1998-Siebert #garbage collection #incremental #realtime
Guaranteeing Non-Disruptiveness and Real-Time Deadlines in an Incremental Garbage Collector (FS), pp. 130–137.
KRKR-1992-HaddawyH
Representations for Decision-Theoretic Planning: Utility Functions for Deadline Goals (PH, SH), pp. 71–82.
SOSPSOSP-1973-Ellis #on the
On the Propability of Deadline in Computer Systems (CAE), pp. 88–95.

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.