A reinforcement learning approach for the scheduling of live migration from under utilised hosts
Author:
Publisher
Springer Science and Business Media LLC
Subject
Control and Optimization,General Computer Science
Link
http://link.springer.com/article/10.1007/s12293-016-0218-x/fulltext.html
Reference28 articles.
1. Akoush S, Sohan R, Rice A, Moore AW, Hopper A (2010) Predicting the performance of virtual machine migration. In: 2010 IEEE international symposium on modeling, analysis and simulation of computer and telecommunication systems. IEEE, pp 37–46
2. Armbrust M, Fox A, Griffith R, Joseph AD, Katz R, Konwinski A, Lee G, Patterson D, Rabkin A, Stoica I et al (2010) A view of cloud computing. Commun ACM 53(4):50–58
3. Bahati RM, Bauer MA (2010) Towards adaptive policy-based management. In: 2010 IEEE network operations and management symposium-NOMS. IEEE, pp 511–518
4. Barrett E, Howley E, Duggan J (2013) Applying reinforcement learning towards automating resource allocation and application scalability in the cloud. Concurr Comput 25(12):1656–1674
5. Barroso LA, Hólzle U (2007) The case for energy proportional computing. Computer 40(12):33–37. doi: 10.1109/MC.2007.443
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