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A Near-Optimal Control Policy in Cloud Systems with Renewable Sources and Time-Dependent Energy Price

机译:具有可再生能源和时变能源价格的云系统中的最佳控制策略

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The cost of energy usage is of significant concern in cloud/data center systems that support a large number of servers. A simple way to reduce energy consumption and the electricity bill is to turn some of the servers off during periods of under utilization. However, turning a server back on typically consumes a lot of energy. Another way to reduce the energy cost is to equip cloud systems with renewable resources and batteries. Most works in the literature have focused on one or the other approach. In this work, we propose a joint server on-off and energy control policy, which determines the servers' on-off status, as well as the energy purchasing behavior, by taking electricity price, renewable resources, possible future tasks and turn-on cost into account. The server on-off control component is proved to be optimal in terms of energy consumption minimization. The joint policy is shown to be arbitrarily close to the optimal solution in terms of electricity bill minimization, in the case where the battery has infinite capacity with stable energy level. Simulation results show that even under reasonable battery size, a significant electricity cost reduction is achieved with the proposed policy.
机译:在支持大量服务器的云/数据中心系统中,能源使用成本引起了人们的极大关注。减少能耗和电费的一种简单方法是在利用率不足期间关闭某些服务器。但是,重新打开服务器通常会消耗大量能量。降低能源成本的另一种方法是为云系统配备可再生资源和电池。文献中的大多数作品都集中在一种或另一种方法上。在这项工作中,我们提出了一种联合的服务器开关和能量控制策略,该策略通过获取电价,可再生资源,可能的未来任务和启动来确定服务器的开关状态以及能源购买行为。成本考虑在内。在最小化能耗方面,服务器开-关控制组件被证明是最佳的。在电池电量无限且能量水平稳定的情况下,联合政策显示出在电费最小化方面任意接近最佳解决方案。仿真结果表明,即使在合理的电池尺寸下,使用所提出的策略也可以显着降低电力成本。

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