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Multifunctional Inverter Based Energy System Integration and its Application in PV System

机译:基于多功能逆变器的能源系统集成及其在光伏系统中的应用

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Photovoltaic system is easily affected by weather and has the characteristics of typical intermittency and uncertainty, resulting in a low utilization rate of only about 20%. On the other hand, large number of power electronic devices are applied in photovoltaic system and frequent switching brings various disturbances to the distribution network and worsen the power quality. This paper optimizes the traditional photovoltaic grid-connected inverter into an integrated energy system with active power filter (APF) function without increasing any costs. In the daytime, the multifunctional integrated system can realize both the photovoltaic grid-connection and harmonic suppression in the case of capacity surplus. More importantly, continued work with APF function can also be performed at low light intensity or at night. On this basis, the unified control scheme of multifunctional integrated system is put forward and the key compound current loop controller consisting of PI control and repetitive control is designed. Finally, a multifunctional integrated prototyping system is established and experiments have verified the feasibility and effectiveness.
机译:光伏系统容易受到天气的影响,并且具有典型的间歇性和不确定性的特征,导致利用率仅为20%左右。另一方面,光伏系统中大量使用电力电子设备,频繁的开关给配电网络带来各种干扰,使电能质量恶化。本文将传统的光伏并网逆变器优化为具有有源功率滤波器(APF)功能的集成能源系统,而不会增加任何成本。在白天,多功能集成系统可以在容量过剩的情况下实现光伏并网和谐波抑制。更重要的是,还可以在低光照强度下或在夜间使用APF功能继续工作。在此基础上,提出了多功能集成系统的统一控制方案,设计了由PI控制和重复控制组成的关键复合电流回路控制器。最后,建立了多功能集成样机系统,并通过实验验证了其可行性和有效性。

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