2008 |
11 | EE | Nevine AbouGhazaleh,
Bruce R. Childers,
Daniel Mossé,
Rami G. Melhem:
Integrated CPU Cache Power Management in Multiple Clock Domain Processors.
HiPEAC 2008: 209-223 |
2007 |
10 | EE | Nevine AbouGhazaleh,
Alexandre Ferreira,
Cosmin Rusu,
Ruibin Xu,
Frank Liberato,
Bruce R. Childers,
Daniel Mossé,
Rami G. Melhem:
Integrated CPU and l2 cache voltage scaling using machine learning.
LCTES 2007: 41-50 |
9 | EE | Nevine AbouGhazaleh,
Bruce R. Childers,
Daniel Mossé,
Rami G. Melhem:
Near-Memory Caching for Improved Energy Consumption.
IEEE Trans. Computers 56(11): 1441-1455 (2007) |
8 | EE | Nevine AbouGhazaleh,
Bruce R. Childers,
Daniel Mossé,
Rami G. Melhem:
Power management in external memory using PA-CDRAM.
IJES 3(1/2): 65-72 (2007) |
2006 |
7 | EE | Nevine AbouGhazaleh,
Daniel Mossé,
Bruce R. Childers,
Rami G. Melhem:
Collaborative operating system and compiler power management for real-time applications.
ACM Trans. Embedded Comput. Syst. 5(1): 82-115 (2006) |
2005 |
6 | EE | Nevine AbouGhazaleh,
Bruce R. Childers,
Daniel Mossé,
Rami G. Melhem:
Near-memory Caching for Improved Energy Consumption.
ICCD 2005: 105-110 |
5 | EE | Daniel Mossé,
Nevine AbouGhazaleh,
Bruce R. Childers,
Rami G. Melhem:
Energy Conservation in Memory Hierarchies using Power-Aware Cached-DRAM.
Power-aware Computing Systems 2005 |
2003 |
4 | EE | Nevine AbouGhazaleh,
Daniel Mossé,
Bruce R. Childers,
Rami G. Melhem,
Matthew Craven:
Collaborative Operating System and Compiler Power Management for Real-Time Applications.
IEEE Real Time Technology and Applications Symposium 2003: 133- |
3 | EE | Nevine AbouGhazaleh,
Bruce R. Childers,
Daniel Mossé,
Rami G. Melhem,
Matthew Craven:
Energy management for real-time embedded applications with compiler support.
LCTES 2003: 284-293 |
2002 |
2 | EE | Dakai Zhu,
Nevine AbouGhazaleh,
Daniel Mossé,
Rami G. Melhem:
Power Aware Scheduling for AND/OR Graphs in Multi-Processor Real-Time Systems.
ICPP 2002: 593-601 |
2000 |
1 | | Nevine AbouGhazaleh,
Yousry S. El Gamal:
Compressed video indexing based on object motion.
VCIP 2000: 986-993 |