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Optimal operation of a multi-source microgrid to achieve cost and emission targets

机译:优化多源微电网以实现成本和排放目标

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This paper presents a new approach for the optimization of photovoltaic-wind hybrid systems with battery storage to meet the load requirements. In this study, a 24-hour ahead energy management for a microgrid is utilized. The objectives aim at raising efficiency of energy utilization, minimizing operational cost and reducing environmental effects of energy usage. Also a demand response (DR) program is considered as one of the cost-effective energy alternatives. Based on the prediction of available energy from the PV and wind generators, battery storage availability, load prediction, micro gas turbine (??GT) and main grid emission characteristics, a central energy management system calculates a day-ahead plan of power references for the gas turbine, power purchased from the grid, power sold to the grid, status of the battery and controllable loads. A multi-objective optimization is implemented in order to minimize the energy cost and greenhouse gas emissions.
机译:本文提出了一种新的方法来优化带有电池存储的光伏-风混合系统,以满足负载需求。在这项研究中,微电网的能源管理提前了24小时。这些目标旨在提高能源利用效率,最大程度地降低运营成本并减少能源使用对环境的影响。此外,需求响应(DR)计划也被视为具有成本效益的能源替代方案之一。基于对来自光伏和风力发电机的可用能量的预测,电池存储的可用性,负载预测,微型燃气轮机(?? GT)和主要电网排放特性,中央能源管理系统可计算出每日的电力参考计划燃气轮机,从电网购买的电力,向电网出售的电力,电池状态和可控负载。为了减少能源成本和温室气体排放,实施了多目标优化。

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