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Energy-Efficient Resource Management for Scientific Workflows in Clouds

机译:云中科学工作流程的节能资源管理

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The elastic resource provision, non-interfering resource sharing and flexible customized configuration provided by the Cloud infrastructure has shed light on efficient execution of many scientific applications. Due to the increasing deployment of data centers and computer servers around the globe escalated by the higher electricity price, the energy cost on running the computing, communication and cooling together with the amount of CO2 emissions have skyrocketed. In order to maintain sustainable Cloud computing facing with ever-increasing problem complexity and big data size in the next decades, we design and develop energy-aware scientific workflow scheduling algorithm to minimize energy consumption and CO2 emission while still satisfying certain Quality of Service (QoS) such as response time specified in Service Level Agreement (SLA). We also apply Dynamic Voltage and Frequency Scaling (DVFS) and DNS scheme to further reduce energy consumption within acceptable performance bounds. Our multiple-step resource provision and allocation algorithm achieves the response time requirement in the step of forwarding task scheduling and minimizes the VM overhead for reduced energy consumption and higher resource utilization rate in the backward task scheduling step. The effectiveness of our algorithm is evaluated under various performance metrics and experimental scenarios using software adapted from open source CloudSim simulator.
机译:云基础架构提供的弹性资源供应,无干扰资源共享和灵活的自定义配置为许多科学应用程序的高效执行提供了亮点。由于电价上涨,全球数据中心和计算机服务器的部署不断增加,运行计算,通信和冷却的能源成本以及二氧化碳排放量猛增。为了在未来几十年中面对不断增长的问题复杂性和大数据量的情况下维持可持续的云计算,我们设计和开发了能源意识的科学工作流调度算法,以在最大程度降低能耗和二氧化碳排放的同时仍满足一定的服务质量(QoS) ),例如服务水平协议(SLA)中指定的响应时间。我们还采用动态电压和频率缩放(DVFS)和DNS方案,以在可接受的性能范围内进一步降低能耗。我们的多步资源提供和分配算法在转发任务调度步骤中达到了响应时间要求,并在后向任务调度步骤中将VM开销降至最低,从而降低了能耗并提高了资源利用率。使用从开源CloudSim模拟器改编的软件,可以在各种性能指标和实验场景下评估我们算法的有效性。

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