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Simulation of sun tracking system for point focus fresnel collector

机译:点聚焦菲涅尔收集器太阳跟踪系统的仿真

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This work presents simulation of a sun tracking system that was developed for a Point Focus Fresnel Collector (PFFC) installed at King Saud University. The tracker is dual axis with a concentration ratio of 160 and a small acceptance angle of 2 degrees, hence a precise tracking control is required. Two control schemes were developed and tested, the open loop and closed loop. A sun position algorithm was used for open loop control whereas a sun sensor was used for closed loop control. The control system were simulated using Matlab/Simulink. It was found that open loop tracking is simpler to implement and consumes less power but is also less accurate and tracking error accumulates over time. On the other hand, closed loop control is more complicated to implement, consumes more power is much more accurate than open loop control. So, it is recommended to use the closed loop controller for PFFC system. The individual components of the control system were modelled using generic Simulink models. The complete model was operated in both open loop and closed loop configurations. The results of the models were analysed to estimate the operating limits of the tracker.
机译:这项工作介绍了太阳跟踪系统的仿真,该系统是为沙特国王大学安装的Point Focus菲涅尔收集器(PFFC)开发的。跟踪器是双轴的,浓度比为160,接受角小为2度,因此需要精确的跟踪控制。开发并测试了两种控制方案:开环和闭环。太阳位置算法用于开环控制,而太阳传感器用于闭环控制。使用Matlab / Simulink对控制系统进行了仿真。已经发现,开环跟踪更易于实现并且消耗较少的功率,但是准确性也较低,并且随着时间的推移会累积跟踪误差。另一方面,与开环控制相比,闭环控制的实现更加复杂,功耗更高。因此,建议对PFFC系统使用闭环控制器。使用通用Simulink模型对控制系统的各个组件进行建模。完整模型在开环和闭环配置下均可运行。分析了模型的结果,以估算跟踪器的运行极限。

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