Integration of a bi-directional dc-dc converter model into a large-scale system simulation of a shipboard MVDC power system

Il-Yop Chung, Wenxin Liu, M. Andrus, K. Schoder, S. Leng, D. Cartes, M. Steurer
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引用次数: 49

Abstract

To improve energy flexibility and deal with peak energy demand in shipboard power system, a bi-directional dc/dc converter is investigated for a notional U.S. Navy Medium Voltage DC (MVDC) shipboard power system. Surplus energy due to light electric load or ship-speed variation can be captured by energy storages distributed in 800 V load zones and during heavy load or black starting condition, supplied to the rest of the 5 kV MVDC system through the bi-directional dc/dc converters. This paper presents the controller optimization process using the particle swarm optimization for an isolated-type bi-directional dc-dc converter. The control performance of the proposed controller is evaluated using small-signal average models and a large-scale simulation of the notional U.S. Navy MVDC system using the real-time digital simulator.
将双向dc-dc变换器模型集成到舰船MVDC电力系统的大规模系统仿真中
为了提高舰船电力系统的能量灵活性和应对峰值能量需求,针对美国海军中压直流(MVDC)舰船电力系统,研究了一种双向dc/dc变换器。由于轻负荷或船速变化而产生的剩余能量可以通过分布在800 V负载区和在重负荷或黑色启动条件下的储能系统捕获,通过双向dc/dc转换器提供给5kv MVDC系统的其余部分。本文提出了用粒子群算法对隔离型双向dc-dc变换器进行控制器优化的过程。采用小信号平均模型对所提出的控制器的控制性能进行了评估,并使用实时数字模拟器对美国海军MVDC系统进行了大规模仿真。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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