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Optimal Distributed Energy Resources Sizing for Commercial Building Hybrid Microgrids

机译:商业建筑混合微电网的最佳分布式能源规模

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As microgrids have advanced from early prototypes to relatively mature technologies, converting data center integrated commercial buildings to microgrids provides economic, reliability and resiliency enhancements for the building owners. Thus, microgrid design and economically sizing distributed energy resources (DER) are becoming more demanding to gain widespread microgrids commercial viability. In this paper, an optimal DER sizing formulation for a hybrid AC/DC microgrid configuration has been proposed to leverage all benefits that AC or DC microgrid could solely contribute. Energy storage (ES), photovoltaics (PV) and power electronics devices are coordinately sized for economic grid-connected and reliable islanded operations. Time-of-use (TOU) energy usages charges and peak demand charges are explicitly modeled to achieve maximum level of cost savings. Numerical results obtained from a real commercial building load demonstrate the benefits of the proposed approach and the importance of jointly sizing DER for the grid-connected and islanded modes.
机译:随着微电网从早期的原型发展到相对成熟的技术,将数据中心集成的商业建筑转换为微电网为建筑物所有者提供了经济,可靠性和弹性的增强。因此,为了获得广泛的微电网商业可行性,对微电网的设计和经济地分配能量的资源(DER)的要求越来越高。在本文中,已提出了一种用于AC / DC混合微电网配置的最佳DER尺寸公式,以利用AC或DC微电网可以单独发挥的所有优势。储能(ES),光伏(PV)和电力电子设备的尺寸经过协调,可实现经济的电网连接和可靠的孤岛式运行。明确建模了使用时间(TOU)的能源使用费和高峰需求费,以实现最大程度的成本节省。从实际的商业建筑负荷获得的数值结果证明了该方法的好处,以及为并网和孤岛模式联合确定DER大小的重要性。

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