Lucas Albers Cuminato
Papers
1
Total Citations
7
H-Index
1
About
Lucas Albers Cuminato is a researcher focused on embedded systems, computer architecture, and energy-efficient processor design. His work addresses the critical challenge of static cache configurations in embedded processors, which often lead to unnecessary energy consumption and suboptimal performance. In his most cited paper, "Run-time Cache Configuration for the LEON-3 Embedded Processor" (2015), he demonstrates how dynamic, application-specific tuning of cache parameters—such as size and associativity—can significantly improve both energy efficiency and execution speed. This contribution, with 7 citations, highlights his impact on the field of reconfigurable computing. Cuminato’s research is particularly valuable for real-time and resource-constrained systems, where power and performance trade-offs are paramount. His work has influenced subsequent studies on adaptive memory hierarchies and low-power embedded architectures. For students and researchers exploring hardware-software co-design, Cuminato’s insights offer a practical pathway to smarter, more efficient processor configurations.
Research Focus
Key Achievements
Top Papers
- 1Run-time Cache Configuration for the LEON-3 Embedded Processor7 citations · 2015