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Optimal Sizing of Energy Station in the Multienergy System Integrated With Data Center

机译:与数据中心集成的多元素系统中能源站的最佳尺寸

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摘要

This article proposes a novel optimal sizing method for the energy station in the multienergy system (MES) integrated with data center. First, an overall framework of the energy station, data center, and multienergy loads is constructed to describe the interconnection of energy system and information system. Then, the dynamic voltage frequency scaling (DVFS) technique, the thermal inertia, and the deep coupling relationships of the electricity load, waste heat, cooling load, and workload in the data center are respectively modeled. On this basis, the optimal sizing model of the energy station is established, in which the data center can participate in the integrated demand response by the DVFS technique and thermal inertia. The capacity of energy station and the scheduling schemes of energy devices and servers are optimized simultaneously to coordinate the energy flow and information flow. Based on the quasi-steady-state assumption of thermal balance, the model is simplified to a mixed-integer quadratic program problem, and it is solved by Gurobi. Case studies based on a real-world test system in China illustrate that the integration of data center can be utilized to reduce the total cost of energy station planning in MES.
机译:本文提出了一种与数据中心集成的多enenty系统(MES)中的能源站的新颖最佳尺寸尺寸方法。首先,构建能源站,数据中心和多币负载的整体框架以描述能量系统和信息系统的互连。然后,分别为数据中心的动态电压频率缩放(DVFS)技术,热惯性和电力负荷,废热,冷却负荷和工作负载的深耦合关系。在此基础上,建立了能源站的最佳尺寸模型,其中数据中心可以通过DVFS技术和热惯性参与综合需求响应。能量站和能量设备和服务器的调度方案同时优化以协调能量流和信息流。基于热平衡的准稳态假设,模型被简化为混合整数二次程序问题,并通过Gurobi解决了它。基于中国真实测试系统的案例研究表明,数据中心的集成可用于降低MES中能源站规划的总成本。

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