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INCORPORATING ELEMENTS OF A SUSTAINABLE AND DISTRIBUTED GENERATION SYSTEM INTO A PRODUCTION PLANNING MODEL FOR A WAFER FAB

机译:将可持续和分布生成系统的元素结合到晶片Fab的生产计划模型中

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In this paper, we consider elements of a sustainable and distributed generation system for a wafer fab. Wind turbines (WTs), solar photovoltaics (PVs), a substation with grid access, and a net metering system are included in the generation system. WTs and solar PVs have the highest priority in supplying the daily electricity of the wafer fab. Surplus energy can be returned to the main grid. The objective function of the production planning formulation contains production-related costs, cost for energy from the substation, and penalty costs when a renewable energy penetration is not reached. This cost can be reduced by offering renewable surplus energy to the main grid. The obtained production plans are executed in a simulation environment to compute the expected profit in the face of machine breakdowns, wind power volatility, and uncertain power output of the solar PVs. The approach allows determining an appropriate number of WTs and solar PVs for given demand scenarios. We present results of simulation experiments with the proposed model.
机译:在本文中,我们考虑用于晶片Fab的可持续和分布发电系统的元素。发电系统中包括风力涡轮机(WTS),太阳能光伏(PVS),具有网格接入的变电站和净计量系统。 WTS和Solar PVS在提供晶片Fab的日常电力方面具有最高优先级。剩余能量可以返回主电网。生产规划制定的目标函数含有与生产相关的成本,从变电站的能量成本,并且当未能达到可再生能源渗透时,罚款成本。通过向主电网提供可再生的剩余能量,可以减少这种成本。获得的生产计划在模拟环境中执行,以计算面对机器故障,风力波动率和太阳能光伏的不确定功率输出的预期利润。该方法允许确定用于给定需求方案的适当数量的WTS和太阳能PV。我们用拟议的模型呈现仿真实验的结果。

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