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首页> 外文期刊>Inventions >Frequency Transient Suppression in Hybrid Electric Ship Power Systems: A Model Predictive Control Strategy for Converter Control with Energy Storage
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Frequency Transient Suppression in Hybrid Electric Ship Power Systems: A Model Predictive Control Strategy for Converter Control with Energy Storage

机译:混合电力船舶动力系统中的频率瞬变抑制:具有能量存储的变流器控制的模型预测控制策略

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摘要

This paper aims to understand how the common phenomenon of fluctuations in propulsion and service load demand contribute to frequency transients in hybrid electric ship power systems. These fluctuations arise mainly due to changes in sea conditions resulting in significant variations in the propulsion load demand of ships. This leads to poor power quality for the power system that can potentially cause hazardous conditions such as blackout on board the ship. Effects of these fluctuations are analysed using a hybrid electric ship power system model and a proposed Model Predictive Control (MPC) strategy to prevent propagation of transients from the propellers into the shipboard power system. A battery energy storage system, which is directly connected to the DC-link of the frequency converter, is used as the smoothing element. Case studies that involve propulsion and service load changes have been carried out to investigate the efficacy of the proposed solution. Simulation results show that the proposed solution with energy storage and MPC is able to contain frequency transients in the shipboard power system within the permissible levels stipulated by the relevant power quality standards. These findings will help ship builders and operators to consider using battery energy storage systems controlled by advanced control techniques such as MPC to improve the power quality on board ships.
机译:本文旨在了解推进力和服务负载需求波动的常见现象如何导致混合动力船舶电力系统的频率瞬变。这些波动的产生主要是由于海洋条件的变化,导致船舶推进载荷需求的显着变化。这导致电源系统的电能质量差,可能会导致危险情况,例如船上停电。使用混合电力船用电力系统模型和建议的模型预测控制(MPC)策略来分析这些波动的影响,以防止瞬变从螺旋桨传播到船上电力系统。直接连接到变频器的直流母线的电池能量存储系统用作平滑元件。已经进行了涉及推进和服务负荷变化的案例研究,以研究所提出解决方案的功效。仿真结果表明,所提出的具有能量存储和MPC的解决方案能够将船用电力系统中的频率瞬变抑制在相关电能质量标准规定的允许水平内。这些发现将帮助船舶制造商和运营商考虑使用由MPC等先进控制技术控制的电池储能系统,以改善船上的电能质量。

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