面向分布式临界负荷弹性的柔性建筑微电网分层运行

M. Chamana, K. Schmitt, Rabindra Bhatta, Ilham Osman, Sanka Liyanage, M. Murshed, S. Bayne, Joshua Macfie
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引用次数: 0

摘要

社区规模的微电网在紧急情况下为关键负载提供服务方面发挥着至关重要的作用,涉及断路器、配线开关、分布式能源(DERs)和负载的运行。电力负荷主要被认为是集总负荷,没有许多粒度级别的控制。灵活的建筑为中央微电网管理系统提供了一个机会,通过采用基于物联网(IoT)的控制,在粒度级别上减少多个非关键负载。本文基于社区规模微电网的优先级方案,提出了一种新的双级优化操作序列,用于管理微电网中的可控设备以服务于负载。所提出的方法是一个混合整数线性规划(MILP)模型,并适应各种操作条件。通过在Banshee微电网基准模型上执行的案例研究验证了所提出的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hierarchical Operation of Flexible Building Microgrids for Distributed Critical Loads Resiliency
Community-scale microgrids play an essential role in serving critical loads during emergency conditions, involving the operation of breakers, tie-switches, distributed energy resources (DERs), and loads. Electric loads are primarily considered as lumped loads without many granular levels of controls. Flexible buildings offer the central microgrid management system an opportunity to shed multiple noncritical loads at granular levels by adopting Internet-of- Things (IoT) based controls. This work presents a novel bi-level optimal sequence of operations for managing the controllable devices in microgrids to serve loads, based on a priority scheme in community scale-scale microgrids. The proposed methodology is formulated as a mixed-integer linear programming (MILP) model and adapts to various operating conditions. The proposed method is validated through case studies that are performed on the Banshee microgrid benchmark model.
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