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27th ECRTS 2015: Lund, Sweden
- 27th Euromicro Conference on Real-Time Systems, ECRTS 2015, Lund, Sweden, July 8-10, 2015. IEEE Computer Society 2015, ISBN 978-1-4673-7570-2
Session 1: Mixed Criticality
- Alan Burns, Tom Fleming, Sanjoy K. Baruah:
Cyclic Executives, Multi-core Platforms and Mixed Criticality Applications. 3-12 - Xiaozhe Gu, Arvind Easwaran, Kieu-My Phan, Insik Shin:
Resource Efficient Isolation Mechanisms in Mixed-Criticality Scheduling. 13-24 - Jiankang Ren, Linh Thi Xuan Phan:
Mixed-Criticality Scheduling on Multiprocessors Using Task Grouping. 25-34
Session 2: Scheduling Network Packets
- Tao Qian, Frank Mueller, Yufeng Xin:
Hybrid EDF Packet Scheduling for Real-Time Distributed Systems. 37-46 - Leandro Soares Indrusiak, James Harbin, Alan Burns:
Average and Worst-Case Latency Improvements in Mixed-Criticality Wormhole Networks-on-Chip. 47-56 - Shengyan Hong, Xiaobo Sharon Hu, Tao Gong, Song Han:
On-Line Data Link Layer Scheduling in Wireless Networked Control Systems. 57-66
Session 3: Scheduling Analysis and Design
- Chao Wang, Zonghua Gu, Haibo Zeng:
Integration of Cache Partitioning and Preemption Threshold Scheduling to Improve Schedulability of Hard Real-Time Systems. 69-79 - Geoffrey Nelissen, José Carlos Fonseca, Gurulingesh Raravi, Vincent Nélis:
Timing Analysis of Fixed Priority Self-Suspending Sporadic Tasks. 80-89 - Georg von der Brüggen, Jian-Jia Chen, Wen-Hung Huang:
Schedulability and Optimization Analysis for Non-preemptive Static Priority Scheduling Based on Task Utilization and Blocking Factors. 90-101
Session 4: From Energy Constrained Systems to Quasi-Partitioned Scheduling
- Peter Wägemann, Tobias Distler, Timo Hönig, Heiko Janker, Rüdiger Kapitza, Wolfgang Schröder-Preikschat:
Worst-Case Energy Consumption Analysis for Energy-Constrained Embedded Systems. 105-114 - Davide Compagnin, Enrico Mezzetti, Tullio Vardanega:
Experimental Evaluation of Optimal Schedulers Based on Partitioned Proportionate Fairness. 115-126
Session 5: Scheduling and Analysis for Embedded Systems
- Yuchuan Liu, Cong Liu, Xia Zhang, Wei Gao, Liang He, Yu Gu:
A Computation Offloading Framework for Soft Real-Time Embedded Systems. 129-138 - Alessandro Biondi, Giorgio C. Buttazzo, Stefano Simoncelli:
Feasibility Analysis of Engine Control Tasks under EDF Scheduling. 139-148 - Mitra Nasri, Gerhard Fohler:
An Efficient Method for Assigning Harmonic Periods to Hard Real-Time Tasks with Period Ranges. 149-159
Session 6: Managing WCET to Improve Schedulability
- John Cavicchio, Corey Tessler, Nathan Fisher:
Minimizing Cache Overhead via Loaded Cache Blocks and Preemption Placement. 163-173 - Renato Mancuso, Rodolfo Pellizzoni, Marco Caccamo, Lui Sha, Heechul Yun:
WCET(m) Estimation in Multi-core Systems Using Single Core Equivalence. 174-183 - Heechul Yun, Rodolfo Pellizzoni, Prathap Kumar Valsan:
Parallelism-Aware Memory Interference Delay Analysis for COTS Multicore Systems. 184-195
Session 7: Multiprocessor Scheduling
- Kecheng Yang, James H. Anderson:
An Optimal Semi-partitioned Scheduler for Uniform Heterogeneous Multiprocessors. 199-210 - Alessandra Melani, Marko Bertogna, Vincenzo Bonifaci, Alberto Marchetti-Spaccamela, Giorgio C. Buttazzo:
Response-Time Analysis of Conditional DAG Tasks in Multiprocessor Systems. 211-221 - Sanjoy K. Baruah, Vincenzo Bonifaci, Alberto Marchetti-Spaccamela:
The Global EDF Scheduling of Systems of Conditional Sporadic DAG Tasks. 222-231
Session 8: Analyzing Response Times
- Bogdan Tanasa, Unmesh D. Bordoloi, Petru Eles, Zebo Peng:
Probabilistic Response Time and Joint Analysis of Periodic Tasks. 235-246 - Wenbo Xu, Zain Alabedin Haj Hammadeh, Alexander Kröller, Rolf Ernst, Sophie Quinton:
Improved Deadline Miss Models for Real-Time Systems Using Typical Worst-Case Analysis. 247-256
Session 9: Outstanding Papers
- Iain Bate, Alan Burns, Robert I. Davis:
A Bailout Protocol for Mixed Criticality Systems. 259-268 - Alessandro Biondi, Giorgio C. Buttazzo, Marko Bertogna:
Supporting Component-Based Development in Partitioned Multiprocessor Real-Time Systems. 269-280 - Pontus Ekberg, Wang Yi:
Uniprocessor Feasibility of Sporadic Tasks with Constrained Deadlines Is Strongly coNP-Complete. 281-286
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