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Development of flexible designs for PVFC hybrid power systems

机译:开发用于PVFC混合动力系统的灵活设计

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Extensive studies have already been performed in the past to integrate more than one 'green' energy source, e.g., solar, wind and hydrogen, for power generation. For actual operation in a realistic environment, such a hybrid process must be fully functional despite random fluctuations in energy supplies and power demands. A common option for accommodating the uncertain disturbances and their cumulative effects is to introduce battery into a properly structured system. However, by using an ad hoc approach, these schemes may be either overdesigned or inoperable. A generic mathematical programming model is thus adopted in the present study to compute a so-called temporal flexibility index for use as a performance measure. In order to demonstrate the usefulness of this assessment criterion, a large collection of photovoltaic-fuel cell (PVFC) systems can be configured for a specific application and then compared accordingly so as to identify the best combination of energy supply ratio and battery capacity. A MATLAB/Simulink simulation program has also been developed in this work to validate these design decisions.
机译:过去已经进行了广泛的研究,以集成不止一种“绿色”能源,例如太阳能,风能和氢能来发电。为了在现实环境中进行实际操作,尽管能源供应和电力需求存在随机波动,但这种混合过程必须能够充分发挥作用。适应不确定干扰及其累积效应的常见选择是将电池引入结构合理的系统中。但是,通过使用临时方法,这些方案可能被过度设计或无法使用。因此,在本研究中采用了通用的数学规划模型来计算所谓的时间灵活性指标,以用作绩效指标。为了证明该评估标准的实用性,可以针对特定应用配置大量的光伏-燃料电池(PVFC)系统,然后进行相应比较,以便确定能量供应比和电池容量的最佳组合。在这项工作中还开发了一个MATLAB / Simulink仿真程序来验证这些设计决策。

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