The design and optimization of a photovoltaic tracking mechanism

C. Alexandru
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引用次数: 22

Abstract

The paper presents researches on increasing the efficiency of the photovoltaic conversion by designing a dual-axis tracking system that adjusts the position of the PV module in order to maximize the incident radiation. The design of the tracking system is approached as a mechatronic concept, integrating the control system in the mechanical model of the tracking mechanism. The paper proposes a design strategy based on two steps: designing the optimal tracking system that intends to minimize the actuating forces necessary to track the Sun path, and designing the optimal control law in order to minimize the energy consumption for orientation. The structural solution of the tracking system for study is developed using a method based on the multi-body systems (MBS) theory. The design steps are performed by developing the virtual prototype, which is a control loop composed by the mechanical structure connected with the dynamic model of the actuators and with the controller model.
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光伏跟踪机构的设计与优化
本文研究通过设计双轴跟踪系统,调整光伏组件的位置,使入射辐射最大化,从而提高光伏转换效率。跟踪系统的设计采用机电一体化的概念,将控制系统集成到跟踪机构的力学模型中。本文提出了一种基于两个步骤的设计策略:设计最优跟踪系统以使跟踪太阳路径所需的驱动力最小;设计最优控制律以使定位能量消耗最小。采用基于多体系统理论的方法,给出了所研究跟踪系统的结构解。设计步骤通过开发虚拟样机来完成,虚拟样机是由机械结构与作动器动力学模型和控制器模型相连接组成的控制回路。
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