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Grid Connected Photovoltaic Generation Plants. Components and Operation

机译:并网光伏发电站。组件和操作

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摘要

The main design objectives of photovoltaic (PV) systems have been fora long time to extract the maximum power from the PV array and to inject it into the AC grid. Therefore, the maximum power point tracking of a uniformlyirradiated PV array and the maximization of the conversion efficiency have been the main design issues. But also, when the PV plant is connected to the grid, special attention has to be paid to the reliability of the system, the power quality and the implementation of protection and grid synchronization functions. Modern power plants are required to maximize their energy production requiring suitable control strategies to solve the problems related to the partial shading phenomena and different orientation of the PV modules towards the Sun. Moreover, the new policy concerning the injection of reactive power into the grid makes the development of suitable topologies and control algorithms mandatory. A general view of actual solutions for applications of the PV energy systems is presented. The paper coverssome important issues such as the most reliable models used for simulation that are useful in the design of control systems, and the maximum power point tracking function, especially in distributed applications. The main topologies used in the PV power processing system and, finally, grid connection aspects are discussed, especially as far as synchronization, protections and integration are concerned.
机译:光伏(PV)系统的主要设计目标已经很长时间了,可以从PV阵列中提取最大功率并将其注入AC电网。因此,均匀照射的光伏阵列的最大功率点跟踪和转换效率的最大化已成为主要设计问题。而且,当光伏电站并网时,必须特别注意系统的可靠性,电能质量以及保护和电网同步功能的实现。要求现代发电厂最大化其能量生产,这需要合适的控制策略来解决与部分遮蔽现象和光伏组件朝向太阳方向不同有关的问题。此外,有关向电网注入无功功率的新政策使得必须开发合适的拓扑和控制算法。介绍了光伏能源系统应用的实际解决方案的一般视图。本文涵盖了一些重要问题,例如用于控制系统设计的最可靠的仿真模型,以及最大功率点跟踪功能,尤其是在分布式应用中。讨论了光伏发电处理系统中使用的主要拓扑,最后讨论了电网连接方面,尤其是在同步,保护和集成方面。

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