Energy-aware writes to non-volatile main memory
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[1] Onur Mutlu,et al. Architecting phase change memory as a scalable dram alternative , 2009, ISCA '09.
[2] Christopher Frost,et al. Better I/O through byte-addressable, persistent memory , 2009, SOSP '09.
[3] Naehyuck Chang,et al. Energy- and endurance-aware design of phase change memory caches , 2010, 2010 Design, Automation & Test in Europe Conference & Exhibition (DATE 2010).
[4] Jun Yang,et al. A durable and energy efficient main memory using phase change memory technology , 2009, ISCA '09.
[5] Alexandr Andoni,et al. Near-Optimal Hashing Algorithms for Approximate Nearest Neighbor in High Dimensions , 2006, 2006 47th Annual IEEE Symposium on Foundations of Computer Science (FOCS'06).
[6] Vijayalakshmi Srinivasan,et al. Enhancing lifetime and security of PCM-based Main Memory with Start-Gap Wear Leveling , 2009, 2009 42nd Annual IEEE/ACM International Symposium on Microarchitecture (MICRO).
[7] Engin Ipek,et al. Dynamically replicated memory: building reliable systems from nanoscale resistive memories , 2010, ASPLOS 2010.
[8] Piotr Indyk,et al. Similarity Search in High Dimensions via Hashing , 1999, VLDB.
[9] Hyunjin Lee,et al. Flip-N-Write: A simple deterministic technique to improve PRAM write performance, energy and endurance , 2009, 2009 42nd Annual IEEE/ACM International Symposium on Microarchitecture (MICRO).
[10] Seung-Yun Lee,et al. A Low Power Phase-Change Random Access Memory using a Data-Comparison Write Scheme , 2007, 2007 IEEE International Symposium on Circuits and Systems.
[11] Suman Nath,et al. Rethinking Database Algorithms for Phase Change Memory , 2011, CIDR.
[12] Vijayalakshmi Srinivasan,et al. Scalable high performance main memory system using phase-change memory technology , 2009, ISCA '09.
[13] Shih-Hung Chen,et al. Phase-change random access memory: A scalable technology , 2008, IBM J. Res. Dev..