Scalable and Efficient Configuration of TimeDivision Multiplexed Resources
Data(s) |
30/11/2015
30/11/2015
2016
|
---|---|
Resumo |
Consumer-electronics systems are becoming increasingly complex as the number of integrated applications is growing. Some of these applications have real-time requirements, while other non-real-time applications only require good average performance. For cost-efficient design, contemporary platforms feature an increasing number of cores that share resources, such as memories and interconnects. However, resource sharing causes contention that must be resolved by a resource arbiter, such as Time-Division Multiplexing. A key challenge is to configure this arbiter to satisfy the bandwidth and latency requirements of the real-time applications, while maximizing the slack capacity to improve performance of their non-real-time counterparts. As this configuration problem is NP-hard, a sophisticated automated configuration method is required to avoid negatively impacting design time. The main contributions of this article are: 1) An optimal approach that takes an existing integer linear programming (ILP) model addressing the problem and wraps it in a branch-and-price framework to improve scalability. 2) A faster heuristic algorithm that typically provides near-optimal solutions. 3) An experimental evaluation that quantitatively compares the branch-and-price approach to the previously formulated ILP model and the proposed heuristic. 4) A case study of an HD video and graphics processing system that demonstrates the practical applicability of the approach. |
Identificador |
0164-1212 http://hdl.handle.net/10400.22/7021 doi:10.1016/j.jss.2015.11.019 |
Idioma(s) |
eng |
Publicador |
Elsevier |
Relação |
UID/CEC/04234/2013 (CISTER Research Centre) ARTEMIS/0001/2013 - JU grant nr. 621429 (EMC2) Journal of Systems and Software; Vol. 113 http://www.sciencedirect.com/science/article/pii/S0164121215002447 |
Direitos |
openAccess |
Palavras-Chave | #Real-time systems #Resource scheduling #Branchand-price #Time-division multiplexing #Optimization #Multi-core systems |
Tipo |
article |