Power and thermal-aware virtual machine scheduling optimization in cloud data center
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R. Chen | Bo Liu | Weiwei Lin | Keqin Li | Jianpeng Lin | Hui-Hui Cheng
[1] Soojung Hur,et al. Hotspot-Aware Workload Scheduling and Server Placement for Heterogeneous Cloud Data Centers , 2022, Energies.
[2] A. Aghasi,et al. A thermal-aware energy-efficient virtual machine placement algorithm based on fuzzy controlled binary gravitational search algorithm (FC-BGSA) , 2022, Clust. Comput..
[3] Junyu Niu,et al. A survey on data center cooling systems: Technology, power consumption modeling and control strategy optimization , 2021, J. Syst. Archit..
[4] Sunirmal Khatua,et al. An ACO-based multi-objective optimization for cooperating VM placement in cloud data center , 2021, The Journal of Supercomputing.
[5] Zhigang Hu,et al. A power and thermal-aware virtual machine management framework based on machine learning , 2021, Cluster Computing.
[6] Yuhui Deng,et al. A global-energy-aware virtual machine placement strategy for cloud data centers , 2021, J. Syst. Archit..
[7] Jean Pepe Buanga Mapetu,et al. A dynamic VM consolidation approach based on load balancing using Pearson correlation in cloud computing , 2020, The Journal of Supercomputing.
[8] Hong Lu,et al. Numerical and experimental investigations on the thermal performance of a data center , 2020 .
[9] Decheng Zuo,et al. SLA‐Aware and Energy‐Efficient VM Consolidation in Cloud Data Centers Using Host State 3rd‐Order Markov Chain Model , 2020 .
[10] Haifeng Lu,et al. Adaptive virtual machine consolidation framework based on performance-to-power ratio in cloud data centers , 2020, Future Gener. Comput. Syst..
[11] Ahmad Khonsari,et al. Thermal-Aware Virtual Machine Allocation for Heterogeneous Cloud Data Centers , 2020, Energies.
[12] Albert Y. Zomaya,et al. Utilization-prediction-aware virtual machine consolidation approach for energy-efficient cloud data centers , 2020, J. Parallel Distributed Comput..
[13] Amir Masoud Rahmani,et al. A survey study on virtual machine migration and server consolidation techniques in DVFS-enabled cloud datacenter: Taxonomy and challenges , 2020, J. King Saud Univ. Comput. Inf. Sci..
[14] Rajkumar Buyya,et al. ETAS: Energy and thermal‐aware dynamic virtual machine consolidation in cloud data center with proactive hotspot mitigation , 2019, Concurr. Comput. Pract. Exp..
[15] Eric Masanet,et al. Data center growth in the United States: decoupling the demand for services from electricity use , 2018, Environmental Research Letters.
[16] Peter Garraghan,et al. Holistic Virtual Machine Scheduling in Cloud Datacenters towards Minimizing Total Energy , 2018, IEEE Transactions on Parallel and Distributed Systems.
[17] Yanhua Chen,et al. Energy-efficient framework for virtual machine consolidation in cloud data centers , 2017, China Communications.
[18] Jean-Marc Pierson,et al. Spatio-temporal thermal-aware scheduling for homogeneous high-performance computing datacenters , 2017, Future Gener. Comput. Syst..
[19] Dario Pompili,et al. Proactive Thermal-Aware Resource Management in Virtualized HPC Cloud Datacenters , 2017, IEEE Transactions on Cloud Computing.
[20] Hafiz M. Daraghmeh,et al. A review of current status of free cooling in datacenters , 2017 .
[21] Shahaboddin Shamshirband,et al. Sustainable Cloud Data Centers: A survey of enabling techniques and technologies , 2016 .
[22] Inderveer Chana,et al. Energy-aware Virtual Machine Migration for Cloud Computing - A Firefly Optimization Approach , 2016, Journal of Grid Computing.
[23] Luca Caviglione,et al. Predictive Control for Energy-Aware Consolidation in Cloud Datacenters , 2016, IEEE Transactions on Control Systems Technology.
[24] Y. Dou,et al. Energy-efficient migration and consolidation algorithm of virtual machines in data centers for cloud computing , 2016, Computing.
[25] Pravesh Humane,et al. Simulation of cloud infrastructure using CloudSim simulator: A practical approach for researchers , 2015, 2015 International Conference on Smart Technologies and Management for Computing, Communication, Controls, Energy and Materials (ICSTM).
[26] Tariq Mahmood,et al. Cloud Computing and its Environmental Effects , 2015 .
[27] Thu D. Nguyen,et al. Parasol and GreenSwitch: managing datacenters powered by renewable energy , 2013, ASPLOS '13.
[28] Rajkumar Buyya,et al. Optimal online deterministic algorithms and adaptive heuristics for energy and performance efficient dynamic consolidation of virtual machines in Cloud data centers , 2012, Concurr. Comput. Pract. Exp..
[29] S. Khan,et al. Thermal aware workload placement with task-temperature profiles in a data center , 2012, The Journal of Supercomputing.
[30] Rajkumar Buyya,et al. Energy-aware resource allocation heuristics for efficient management of data centers for Cloud computing , 2012, Future Gener. Comput. Syst..
[31] Simone A. Ludwig,et al. Swarm Intelligence Approaches for Grid Load Balancing , 2011, Journal of Grid Computing.
[32] Rajkumar Buyya,et al. CloudSim: a toolkit for modeling and simulation of cloud computing environments and evaluation of resource provisioning algorithms , 2011, Softw. Pract. Exp..
[33] Sandeep K. S. Gupta,et al. Energy-Efficient Thermal-Aware Task Scheduling for Homogeneous High-Performance Computing Data Centers: A Cyber-Physical Approach , 2008, IEEE Transactions on Parallel and Distributed Systems.
[34] Karam S. Chatha,et al. Approximation algorithm for the temperature-aware scheduling problem , 2007, 2007 IEEE/ACM International Conference on Computer-Aided Design.
[35] Anand Sivasubramaniam,et al. Managing server energy and operational costs in hosting centers , 2005, SIGMETRICS '05.
[36] Jeffrey S. Chase,et al. Making Scheduling "Cool": Temperature-Aware Workload Placement in Data Centers , 2005, USENIX Annual Technical Conference, General Track.
[37] 新 雅夫,et al. ASHRAE(American Society of Heating,Refrigerating and Air-Conditioning Engineers)大会"国際年"行事に参加して , 1975 .
[38] KyoungSoo Park,et al. CoMon: a mostly-scalable monitoring system for PlanetLab , 2006, OPSR.