开发小型水电/光伏混合电气化系统的最佳规模模型

E. Haghi, B. Farshidian, Y. Saboohi
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引用次数: 4

摘要

本研究探讨了利用小型水电/光伏混合动力系统进行低成本电力生产的可能性,该系统可以满足典型城乡地区的能源负荷需求。在此背景下,根据负荷能量需求和太阳能和水力资源数据,采用线性规划方法确定了提高混合动力系统技术经济性能的最佳尺寸。通过对伊朗马赞达兰省一个城乡结合部的案例研究,验证了该模型的应用。考虑了两种场景来优化系统组件。在第一种情况下,考虑以电池作为存储组件的独立小水电/光伏混合系统进行发电,而在第二种情况下,该系统被认为与电网相连。第一种方案的平准化电力成本为30美分/千瓦时,第二种方案为9.5美分/千瓦时。在第二种情况下,与第一种情况相比,系统不选择光伏容量,而小水电容量增加,这表明小水电系统与电网电力的竞争力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Developing a model for optimal sizing of a small hydropower/PV hybrid system for electrification
The present study investigates the possibility of using a small hydropower/PV hybrid power system for low-cost electricity production which can satisfy the energy load requirements of a typical rural-urban area. In this context, the optimal dimensions to improve the technical and economical performances of the hybrid system are determined according to the load energy requirements and the solar and hydro resources data using linear programming. The application of the model is demonstrated using a case study of a rural-urban area in Mazandaran province, Iran. Two scenarios were considered for optimizing the system components. In the first scenario, a stand-alone hybrid small hydropower/PV system with battery as the storage component is considered for electricity generation while in the second scenario, the system is considered to be connected to the grid. The Levelized cost of electricity for the first scenario was found to be 30 cents/kWh and 9.5 cents/kWh for the second scenario. In the second scenario, no PV capacity is chosen for the system while the capacity of small hydropower is increased in comparison to first scenario showing the competitiveness of small hydropower systems with grid electricity.
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