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CDM Controller Design of a Grid Connected Photovoltaic System

机译:网格连接光伏系统的CDM控制器设计

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Distributed power sources will become increasingly ubiquitous in the near future. In this power production paradigm, photovoltaic conversion systems will play a fundamental role due to the growing tendency of energy price, and an opposed trend for the photovoltaic panels. This will lead to increased pressure for the installation of this particular renewable energy source in home buildings. In particular, on-grid photovoltaic systems where the generated power can be injected directly to the main power grid. This strategy requires the use of DC-AC inverters whose output is synchronized, in phase, with the main grid voltage. In order to provide steady output in the presence of load disturbances, the inverter must work in closed-loop. This work presents a new way to design an inverter controller by resorting to the CDM design technique. The obtained results suggest that the controller achieved with this method, although simpler than other methods, leads to an acceptable and robust closed-loop response.
机译:分布式电源在不久的将来将变得越来越普遍。在这种电力生产范式中,光伏转换系统将由于能源价格不断增长的趋势而发挥基本作用,以及光伏面板的反对趋势。这将导致在家庭建筑物中安装这种特殊可再生能源的压力增加。特别地,可以将产生的功率直接喷射到主电网的上网格光伏系统。该策略需要使用DC-AC逆变器,其输出在相位上同步,具有主电网电压。为了在存在负载干扰的情况下提供稳定的输出,逆变器必须在闭环中工作。这项工作提出了一种通过借助CDM设计技术设计逆变器控制器的新方法。所获得的结果表明,使用该方法实现的控制器虽然比其他方法更简单,但导致可接受和稳健的闭环响应。

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