基于fpga的光跟踪系统模糊滑模控制器设计

Chun-Fei Hsu, P. Lee, Chih-Hu Wang
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引用次数: 1

摘要

人类面临着石油和煤炭等化石燃料的枯竭。随着社会的发展,节能环保已经成为一个热门话题。太阳能利用正在迅速发展和应用;然而,太阳追踪器产生的能量取决于太阳光的量。本文提出了一种具有时变滑动面的模糊滑模控制器(FSMC),通过滑模控制方法对轻型航迹系统进行控制。该系统由模糊控制器和斜率调节器组成。模糊控制器通过推理控制动作来控制系统状态,使系统达到无超调的滑动面;斜率调节器通过调整滑动面的斜率来控制系统轨迹的小收敛时间。因此,该系统具有快速的瞬态响应和良好的鲁棒性,能够获得令人满意的跟踪性能。最后,提出了基于现场可编程门阵列芯片的FSMC系统,用于低成本和高性能的工业应用。实验结果表明,即使在光跟踪系统平台上有负载的情况下,所提出的FSMC也能实现良好的光跟踪性能。
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Design of an FPGA-based fuzzy sliding-mode controller for light tracking systems
Human beings to face with oil and coal depletion of fossil fuels. With the development of society, energy saving and environmental protection have become a topical issue. The sun energy using is in the rapid development and application; however, the amount of power produced by a sun tracker depends upon the amount of sun light. This paper proposes a fuzzy sliding-mode controller (FSMC) with a time-varying sliding surface to control a light tacking system via the sliding-mode control approach. The proposed FSMC system is composed of a fuzzy controller and a slope regulator. The fuzzy controller infers the control action to control the system states to reach the sliding surface without large overshoot, and the slope regulator tunes the slope of the sliding surface to govern small convergence time of the system trajectories. Thus, the proposed FSMC system can achieve satisfactory tracking performance with fast transient response and good robustness. Finally, the proposed FSMC system is implemented based on a field programmable gate array chip for low-cost and high-performance industrial applications. The experimental results show the proposed FSMC can achieve favorable tracking performance for the light tracking system even under a payload onto the platform of the light tracking system.
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