Control of fuel cell and electrolyzer based hydrogen storage system with ultra-capacitor for voltage stability and enhanced transient stability of a DC micro grid

Ramchandra Bhosale, V. Agarwal
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引用次数: 2

Abstract

In a DC micro grid, the energy can be stored in the form of hydrogen using electrolyzer and fuel cell combination for a long-term storage. Though the round trip efficiency of such system is very low, it can store relatively high amount of energy for a long term. In this paper, a hydrogen storage system is implemented to respond to a continuous mismatch between generation and load. It is also used to control the DC bus voltage. The proposed strategy controls the power flow through the electrolyzer, fuel cell, and ultra-capacitor to regulate the DC bus voltage. With the proposed strategy, the number of sensing elements required is less. The strategy also optimizes the performance by adjusting the rate of change power for fuel cell and electrolyzer by using the low pass filter without deteriorating the quality of DC bus voltage. Ultra-capacitor feeds the high-frequency power requirement of the grid using a fuzzy logic controller, which minimizes the fluctuations in the DC bus voltage. The proposed strategy is simple, gives superior performance and operates the fuel cell and electrolyzer with optimized dynamics. It also smoothens out the fluctuations due to suddenly changing Solar PV power.
基于超级电容的燃料电池-电解槽储氢系统电压稳定控制及增强直流微电网暂态稳定性
在直流微电网中,可以利用电解槽和燃料电池的组合将能量以氢的形式储存起来,实现长期储存。虽然这种系统的往返效率很低,但它可以长期储存相对较高的能量。在本文中,实现了一个储氢系统,以应对发电和负荷之间的连续不匹配。它也用于控制直流母线电压。所提出的策略是控制通过电解槽、燃料电池和超级电容器的功率流来调节直流母线电压。采用该策略,所需的传感元件数量较少。该策略在不影响直流母线电压质量的前提下,通过低通滤波器调节燃料电池和电解槽的变化率,实现了性能的优化。超级电容通过模糊控制器满足电网的高频供电需求,使直流母线电压波动最小化。该策略简单、性能优越,并能使燃料电池和电解槽以优化的动态方式运行。它还平滑了由于突然变化的太阳能光伏发电造成的波动。
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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