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首页> 外文期刊>Emerging and Selected Topics in Power Electronics, IEEE Journal of >Decentralized Control Algorithm for the Hybrid Energy Storage of Shipboard Power System
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Decentralized Control Algorithm for the Hybrid Energy Storage of Shipboard Power System

机译:船舶电力系统混合储能的分散控制算法

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摘要

This paper proposes a decentralized control algorithm for the medium-voltage direct current (MVDC) shipboard storage system to enhance the onboard survivability. The algorithm takes decisions based on local measurements, which makes it robust against cyber-attacks and able to provide a fast response. The voltage profile of the MVDC bus has sufficient information about the system status, which is utilized for managing the hybrid energy storage systems. Insertion/removal of the storage devices, such as batteries and supercapacitors, is made according to the mathematical morphology-based voltage processing and state-machine logic algorithms. To ensure proper power sharing, an adaptive droop control is used, taking into account consideration the state-of-charge of the storage units. Field-programmable gate array in the loop validation results confirms the ability of the proposed controller to maintain the MVDC bus voltage and the adequate operation of the storage entities simultaneously.
机译:本文提出了一种用于中压直流(MVDC)船舶存储系统的分散控制算法,以增强车载生存能力。该算法基于本地测量进行决定,这使得对网络攻击稳健并且能够提供快速响应。 MVDC总线的电压分布具有关于系统状态的足够的信息,其用于管理混合能量存储系统。根据数学形态学的电压处理和状态机逻辑算法,制造插入/移除诸如电池和超级电容器的存储装置。为了确保适当的电力共享,使用自适应下垂控制,考虑到存储单元的充电状态。循环验证结果中的现场可编程门阵列证实了所提出的控制器的能力同时保持MVDC总线电压和存储实体的充分操作。

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