交流模块应用中BCM操作下反激逆变器的低压穿越能力

Sajad A. Ansari, S. Hosseinian, J. Moghani
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引用次数: 6

摘要

在电压上升/下降的情况下,并网分布式发电系统必须与电网断开。然而,由于并网光伏系统的数量不断增加,未来的光伏(PV)系统应该变得更加活跃,并支持低压穿越(LVRT)能力。本文的目的是展示边界导通模式下反激逆变器在不使用任何辅助控制系统和参数设计限制的情况下支持LVRT能力的新优势。给出了反激逆变器在电网电压增减条件下的具体运行情况。最后,给出了电网故障情况下基于反激逆变器的仿真结果。结果表明,该反激逆变器在BCM工况下可支持LVRT功能,在分布式发电系统中应用于交流模块,不受参数设计和附加控制系统的限制。
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Low-voltage ride-through capability of flyback inverter under BCM operation for AC module applications
Under voltage rise/drop conditions, grid-connected distributed generation systems have to be disconnected from the grid. However, due to the increasing number of grid-connected PV systems, the future photovoltaic (PV) systems should become more active and support low-voltage ride-through (LVRT) capability. The aim of this paper is to show a new advantage of the flyback inverter under boundary conduction mode (BCM) for supporting LVRT capability without using any auxiliary control system and any limitation in designing of the parameters. The detailed operation of the flyback inverter under increasing and decreasing conditions of the grid voltage for BCM operation are presented. Finally, simulation results based on the flyback inverter under grid faults are demonstrated. The results elucidate that the flyback inverter under BCM operation can support LVRT capability for Ac module application in distributed generation systems, without any limitation in parameters design and any additional control system.
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