基于钒氧化还原液流电池的储能系统运行特性研究

Li Wang, Zhi-Hong Huang, Ching-Chuan Tseng, Min-Fang Lee, Ching-Chung Tseng, Hung-Hsien Ku, C. Hsieh, A. Prokhorov, H. Mokhlis, K. Chua, M. Tripathy
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引用次数: 2

摘要

本文介绍了钒氧化还原液流电池储能系统在不同充放电条件下的实验测量结果与计算机模拟结果的对比。所研究的基于VRFB的ESS实验平台包括额定功率500w的实验VRFB、电池监测仪器、可编程直流电源、单相DC- AC逆变器、交流负载和功率电阻负载。根据得到的实验测量结果,仔细推导了所研究的VRFB等效电路模型的参数。对比实测和仿真结果表明,所研究的基于vrfb的ESS在各种充放电条件下的电压和功率平均误差分别可低至0.5053%和1.232%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Operating Characteristics of a Vanadium Redox Flow Battery-based Energy-storage System
This paper presents comparative experimental measured results and computer simulated outcomes of a vanadium redox flow battery (VRFB)-based energy-storage system (ESS) under different charging and discharging conditions. The experimental platform of the studied VRFB-based ESS includes an experimental VRFB of rated 500 W, a battery monitoring instrument, a programmable DC power supply, a single-phase DC-to-AC power inverter, an AC load, and a power-resistor load. The parameters of the equivalent-circuit model of the studied VRFB are carefully derived according to the obtained experimental measured results. From the comparative measured and simulated results, it shows that the average errors of voltage and power of the studied VRFB-based ESS under various charging and discharging conditions can be as low as 0.5053% and 1.232%, respectively.
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