停电时需求充足约束下医院专用发电机容量优化

A. Uemichi, Naoki Kaito, Y. Yamasaki, S. Kaneko
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引用次数: 0

摘要

在停电的情况下,为了保证业务的连续性,必须安装私人发电机来确保能源的供应。作者开发了一个优化工具,以经济效率和弹性为两个评价指标来估计分布式供电设备的最优数量。然而,医院大楼的私人发电机是否能够在停电时产生足够的电力来满足需求是值得怀疑的,因为需求的周期波动很短,以秒为数量级,而在独立运行的情况下,私人发电机必须不时地对这些波动作出反应。我们过去开发的优化工具没有考虑功率输出和负载需求(需求充足性)之间的平衡。因此,本文提出了一种新的优化方法,考虑在停电情况下私人发电机独立运行时的供需平衡。我们将优化约束缩小为需求充足条件:标准交流频率范围在49和51 Hz之间。将新约束应用于多优化,得到了更实用的最优解。我们还通过将这些约束应用于先前案例研究的结果来比较案例研究的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimization of the Capacities of Private Generators Installed in a Hospital Building Under the Constraint of Demand Sufficiency During Power Outages
It is essential to secure energy sources by installing a private power generator for business continuity in a power outage. The authors have developed an optimization tool to estimate the optimal amount of distributed power supply equipment using economic efficiency and resilience as two evaluation indicators. However, it is questionable whether the private generator in a hospital building can generate sufficient electricity to meet demands in case of a power failure, because demand has short cycle fluctuations on the order of seconds, and the private generator must respond to these fluctuations from time to time in the case of stand-alone operation. The optimization tools we have developed in the past have not considered the balance between power output and load demand (demand sufficiency). Therefore, this paper proposes a new optimization method that considers balancing power supply and demand in private generators’ independent operation during power outages. We narrowed the optimization constraints as demand sufficiency conditions: standard AC frequency range between 49 and 51 Hz. More practical optimal solutions are obtained by applying the new constraints to the multi-optimization. We also compare the case study results by applying these constraints to the results of previous case studies.
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