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Cooperative Virtual Machine Management in Smart Grid Environment

机译:智能电网环境中的协作虚拟机管理

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We focus on the problems of cooperative virtual machine management of cloud users in a smart grid environment. In such an environment, the cloud users can cooperate to share the available computing resources in private cloud and public cloud to reduce the total cost. To achieve an optimal and fair solution, we develop the framework composed of the virtual machine allocation, cost management, and cooperation formation models. The problem is challenging due to the uncertainties (e.g., uncertain power price and unpredictable users' demand). Therefore, for the virtual machine allocation, we develop the stochastic programming model to obtain the optimal solutions of virtual machines to be hosted in the local data center, to be hosted on the public cloud servers, or to be migrated to the data centers of other cooperative cloud users. Then, among cooperative cloud users, the cost management is formulated as the coalitional game whose fair share of the total cost is obtained as the Shapley value. Next, given that the cloud users are rational, we formulate the cooperation formation as the network formation game to analyze the stability of the cooperation. In the experiment, we evaluate our proposed framework with real trace data. The results clearly show that the cooperative virtual machine management can achieve the minimum total cost of cloud users compared with expected value and worst case formulations.
机译:我们关注在智能网格环境中云用户的协作虚拟机管理问题。在这种环境下,云用户可以合作共享私有云和公共云中的可用计算资源,以降低总成本。为了获得最佳,公平的解决方案,我们开发了由虚拟机分配,成本管理和合作形成模型组成的框架。由于不确定性(例如不确定的电价和不可预测的用户需求),该问题具有挑战性。因此,对于虚拟机分配,我们开发了随机编程模型,以获得要托管在本地数据中心,托管在公共云服务器上或迁移到其他数据中心的虚拟机的最佳解决方案。合作云用户。然后,在合作云用户中,成本管理被公式化为联盟博弈,其在总成本中的公平份额作为Shapley值获得。接下来,鉴于云用户是理性的,我们将合作形成公式化为网络形成博弈,以分析合作的稳定性。在实验中,我们使用真实的跟踪数据评估了我们提出的框架。结果清楚地表明,与预期值和最坏情况相比,协作式虚拟机管理可以实现云用户的最低总成本。

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