Energy storage management for MVDC power system of all electric ship under different load conditions

M. Khan, M. Faruque
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引用次数: 13

Abstract

Considering the issues of high electric power demand of various loads including propulsion load and pulsed load, energy storage system has become a vital part of the electric shipboard. In order to meet the transient and steady power demand of the medium voltage direct current (MVDC) power system of the all electric ship (AES), a hybrid energy storage system (HESS) consisting of a battery as high energy density storage and a supercapacitor as high power density storage is used to support the MVDC power system of the AES. In this paper, a Fuzzy Logic (FL) controller based energy storage management (ESM) system is designed which manages energy storages under different loading conditions. For maintaining the AES's bus voltage within the limit and keeping pace with the load power demand, the ESM system provides reference power for controlling the operations of the energy storages. To demonstrate the effectiveness of the energy storages and load management program, a 12kV MVDC power system of AES is designed with gas turbine based generators, modular multilevel converters (MMC), propulsion systems, service loads, pulsed load, energy storages (battery and supercapacitor), and dual active bridge (DAB) converters in SimPowerSystem. Simulation results are provided to show that the operation of the energy storages. FL control can perform effectively even with variation in the load demand.
全电船MVDC电力系统在不同负荷条件下的储能管理
考虑到各种负载(包括推进负载和脉冲负载)的高电力需求问题,储能系统已成为电动船舶的重要组成部分。为了满足全电船中压直流(MVDC)电力系统的暂态和稳态功率需求,采用由电池作为高能量密度存储和超级电容器作为高功率密度存储组成的混合储能系统(HESS)来支持全电船中压直流(AES)电力系统。本文设计了一种基于模糊逻辑控制器的储能管理系统,实现了不同负荷条件下的储能管理。ESM系统为控制储能系统的运行提供参考功率,使AES的母线电压保持在限定范围内,并与负载的电力需求保持同步。为了验证储能和负载管理方案的有效性,采用SimPowerSystem中的燃气轮机发电机、模块化多电平变换器(MMC)、推进系统、服务负载、脉冲负载、储能(电池和超级电容器)和双有源电桥(DAB)变换器设计了AES 12kV MVDC电力系统。仿真结果显示了储能系统的运行情况。即使负载需求发生变化,FL控制也能有效地执行。
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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