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Stored energy control for long-term continuous operation of an electric and hydrogen hybrid energy storage system for emergency power supply and solar power fluctuation compensation

机译:储能控制,用于电力和氢气混合储能系统的长期连续运行,用于应急电源和太阳能波动补偿

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In order to realize a large-capacity stand-alone emergency power supply that enables highly reliable and high-quality power supply at the time of a large-scale natural disaster and enables effective use of solar power generation, we proposed an electric and hydrogen hybrid energy storage system (HESS). It is composed of an electric double-layer capacitor bank, fuel cell, electrolyzer, and hydrogen storage (buffer gas tank and metal hydride). In an emergency, this HESS is expected to supply power for loads together with photovoltaics panels for a long time. In usual time, it should not only cooperate with external electricity grids to convert unstable photovoltaic output power into reliable power supply, but also maintain sufficient stored energy in case of emergency. To realize the continuous operation of the HESS in both emergency and usual time, we proposed an electric double-layer capacitor's state-of-charge feedback control method and a hydrogen energy feedback control method, coordinating an energy management method based on Kalman filter algorithm. An experiment and a simulation demonstrated the operations of a 10-kW scale model HESS in emergency and usual time mode, respectively. The demonstrations verified the correct performance of the proposed HESS with the proposed control methods and enabled the continuous operation of the HESS. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:为了实现大容量的独立应急电源,该电源能够在大规模自然灾害发生时提供高度可靠的高质量电源,并能够有效利用太阳能发电,我们提出了一种电力和氢气混合动力系统储能系统(HESS)。它由双电层电容器组,燃料电池,电解池和储氢装置(缓冲气罐和金属氢化物)组成。在紧急情况下,该HESS有望长时间为负载以及光伏面板供电。通常,它不仅应与外部电网配合,将不稳定的光伏输出功率转换为可靠的电源,而且在紧急情况下应保持足够的存储能量。为了实现HESS在紧急和平时的连续运行,我们提出了一种双电层电容器的荷电状态反馈控制方法和氢能反馈控制方法,并结合了基于卡尔曼滤波算法的能量管理方法。实验和仿真演示了10千瓦规模HESS模型在紧急状态和常规时间模式下的运行情况。演示通过提出的控制方法验证了提出的HESS的正确性能,并使HESS能够连续运行。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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