减少控制努力的船舶微电网再调度柔性负荷不确定性管理

Kaitlyn Sitch, Liang Du
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引用次数: 0

摘要

舰船上的电力系统可以被归类为舰船微电网,传统上舰船微电网只包括柴油发电机和燃气轮机。由于环境问题和更多的直流负载在车上使用,电池已经为混合动力系统让路。船上的负荷分为两类,推进负荷和旅馆负荷,旅馆负荷是指与船舶运动无关的负荷。以这种方式分类时,这些负载是相对可预测的。然而,海上的恶劣条件不可避免地会导致变化,必须特别重视对关键负载的处理。为此,提出了一种减少控制努力的柔性再调度控制方法。所提出的控制考虑了一个分配了储备的基线剖面,并根据船舶的要求,通过可调模式将应用于每个单元的变化最小化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Flexible Load Uncertainty Management on Shipboard Microgrids Through Redispatch with Control Effort Reduction
The power systems onboard ships can be classified as shipboard microgrids, which traditionally only included diesel generators and gas turbines. As environmental concerns and more DC loads are used onboard, batteries have made way for a hybrid-electric power system. The loads onboard the ships are classified into two groups, propulsion, and hotel loads, where hotel loads are all loads unrelated to the movement of the ship. These loads are relatively predictable when categorized in this manner. However, the harsh conditions at sea inevitably lead to changes that must be addressed with particular importance on the critical loads. Therefore, a flexible redispatch control method with control effort reduction is proposed. The proposed control considers a baseline profile with a reserve allocated and minimizes the change applied to each unit with adjustable modes based on the ships' requirements.
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