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A Study of Hybrid Energy Storage System to Suppress Power Fluctuations of Pulse Load in Shipboard Power System

机译:混合储能系统抑制船舶电力系统脉冲负荷功波动的研究

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With the rapid development of shipboard electric propulsion and DC power grid technology, the large number of pulse loads appear in the shipboard power system, which will cause dramatic power fluctuations and destroy the stability of the shipboard power system. Hence, the composition and structural characteristics of the shipboard power system are analyzed in this paper, and energy storage units, such as batteries and capacitors, are used to compensate pulse loads, suppress power fluctuations caused by pulse loads and maintain the stability of the shipboard power system. The structure and functional characteristics of energy storage units are analyzed and the effects of distributed and centralized energy storage units on the power stabilization of the shipboard power system are compared. A ship DC grid is built in PSCAD/EMTDC to verify the effects of energy storage system in simulation. The hybrid energy storage system of distributed capacitors and centralized batteries can effectively suppress power fluctuations caused by pulse loads in the shipboard power system.
机译:随着船舶电动推进和直流电网技术的快速发展,船舶电力系统中出现了大量脉冲负荷,这将导致戏剧性波动和破坏船上电力系统的稳定性。因此,在本文中分析了船上电力系统的组成和结构特性,并且诸如电池和电容器的能量存储单元用于补偿脉冲载荷,抑制由脉冲负荷引起的功率波动并保持船上的稳定性电源系统。分析了能量存储单元的结构和功能特性,比较了分布式和集中能量存储单元对船上电力系统的动力稳定的影响。船舶直流电网内置于PSCAD / EMTDC中,以验证能量存储系统在仿真中的影响。分布式电容器和集中电池的混合能量存储系统可以有效地抑制船上电力系统中脉冲负载引起的功率波动。

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