光伏中心逆变器控制与估计方案

Carlos Meza, R. Ortega
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引用次数: 5

摘要

直接向电网注入能量的光伏(PV)系统在过去几年吸引了很多关注,因为与其他光伏应用相比,它们的每瓦成本更低,而且政府为此类系统提供了激励措施。在并网光伏系统中,需要一个功率逆变器来优化光伏组件到电网的能量传输。考虑到并网光伏系统的非线性时变特性,可以得到问题的良好定义的数学描述,这对控制方案的设计是有用的。然而,明确考虑光伏组件非线性电模型的控制结构通常依赖于未知和/或难以测量的参数。因此,这种控制器通常应该与估计器方案一起使用。本文提出了一种适用于多种光伏技术的全桥集中式逆变器控制和估计方案。仿真研究表明,该系统达到了所需的控制目标,并正确估计了未知的温度依赖。
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Control and estimation scheme for PV central inverters
Photovoltaic (PV) systems that inject energy directly to the grid have attracted much attention over the last years due to their lower cost per watt with respect to other photovoltaic applications and the incentives that governments offer for such systems. In a grid-connected PV system a power inverter is required to optimize the energy transfer from the photovoltaic modules to the power grid. Considering the nonlinear time-varying nature of grid-connected PV systems allows to obtain well-defined mathematical description of the problem that can be useful for the design of control schemes. Nevertheless, control structures that explicitly take into account the non-linear electrical model of the PV modules usually depend on parameters that are unknown and/or difficult to measure. Consequently, such controllers should normally be used with estimator schemes. In the present paper a control and estimator scheme for a full-bridge central PV inverter which is valid for a wide range of PV technologies is presented. As shown with a simulation study, the required control objectives have been achieved and the unknown temperature dependent have been correctly estimated.
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