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Dynamic optimization of a dual-axis solar tracker for PV modules

机译:PV模块双轴太阳能跟踪器的动态优化

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This paper deals with the dynamic optimization of the dual-axis tracking mechanism, which is used for increasing the energetic efficiency of a photovoltaic module, by maximizing the rate of incident solar radiation. The study is based on the optimal design algorithm included in the commercial MBS (Multi-Body Systems) software solution ADAMS, through the parameterization of the virtual model, which offers the possibility to perform a series of studies aiming at identifying the design parameters that decisively influence the dynamic behavior of the tracking systems. The global coordinates of the design points (i.e. the mounting points of the actuating sources) are defined as design variables for the optimization process, while the design objectives refer to the power consumptions of the actuating sources.
机译:本文涉及双轴跟踪机构的动态优化,用于通过最大化入射太阳辐射速率来提高光伏模块的能量效率。该研究基于商业MBS(多体系)软件解决方案ADAM中包括的最佳设计算法,通过虚拟模型的参数化,提供了执行一系列研究,该研究旨在暗示果断的设计参数影响跟踪系统的动态行为。设计点的全局坐标(即,致动源的安装点)被定义为优化过程的设计变量,而设计目标是指致动源的功耗。

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