LSS光伏系统各种跟踪技术的能量增益改进估计

M. Nageh, M. P. Abdullah, Belal Yousef
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引用次数: 0

摘要

太阳能光伏(PV)系统产生的电能可以通过使用手动或自动太阳能跟踪策略来增加。一般来说,与固定太阳能系统相比,自动双(二)轴跟踪器的能量输出提高最高,其次是自动单(一)轴跟踪器,然后是手动调整倾角(月和季节)的太阳能系统。然而,由于它们之间的纬度角度差异,不同位置的改进幅度有所不同。在一个位置的改进可能很高,但在另一个位置的改进可能很低。因此,需要对每种策略进行详尽的仿真分析,然后才能确定其对特定位置的能量输出改进。这不仅会耗费时间,而且对于没有PV模拟工具技能的人来说,执行这项任务是不可能的。本研究提出了一种更简单的方法来估计大型太阳能(LSS)系统在各种跟踪策略下的发电性能(能量增益,%)。根据穷举仿真结果推导出数学方程。本文对我们最近研究的(12个选定的城市)以及另一个(两个新城市)进行了测试,观察到主要误差(在0.0%到0.56%之间)。
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Estimation of Energy Gain Improvement of Various Tracking Techniques for LSS Photovoltaic System
The produced electrical energy from a solar photovoltaic (PV) system can be increased via using manual or auto solar tracking strategy. Generally, compared with the fixed solar system, the auto dual (two) axis tracker will give the highest energy output improvement, followed by the auto single (one) axis tracker then the manual adjusted tilt angle (monthly and seasonally) solar system’s respectively. However, the magnitude of the improvement varies from one location to another location due to the latitude angle difference between them. The improvement can be high at one location, but its low at another location. Thus, an exhaustive simulation analysis for each strategy is needed to be conducted before their energy output improvement can be determined for a specific location. Not only it will be time consuming, but also it will be impossible for a person with no PV simulation tool skills to perform this task. This research presents a simpler method for estimating the generated energy performance (the energy gain, %) of the large scale solar (LSS) system for various tracking strategies. The mathematical equations are developed from the exhaustive simulation results. The proposed method is tested on (12 selected cites) that included in our research recently as well as it also tested on another (two new cities) with the main error (between 0.0% and 0.56%) is observed.
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