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Reconfigurable Control Scheme for a PV Microinverter Working in Both Grid-Connected and Island Modes

机译:在并网和孤岛模式下工作的光伏微型逆变器的可重配置控制方案

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In this paper, a photovoltaic (PV) microinverter capable of operating in both island mode and grid-connected mode by means of a reconfigurable control scheme is proposed. The main advantage of control reconfiguration is that in grid-connected mode, the microinverter works as a current source in phase with the grid voltage, injecting power to the grid. This is the operation mode of most commercial grid-connected PV microinverters. The idea is to provide those microinverters with the additional functionality of working in island mode without changing their control algorithms for grid-connected mode, which were developed and refined over time. It is proposed that in island mode, the microinverter control is reconfigured to work as a voltage source using droop schemes. These schemes consist in implementing P/Q strategies in the inverters, in order to properly share the power delivered to the loads. The aim of the paper is to show that the proposed control reconfiguration is possible without dangerous transients for the microinverter or the loads. Simulation and experimental results on an 180-W PV microinverter are provided to show the feasibility of the proposed control strategy.
机译:本文提出了一种光伏(PV)微逆变器,该逆变器可通过可重构控制方案同时在孤岛模式和并网模式下运行。控制重新配置的主要优势在于,在并网模式下,微逆变器充当与电网电压同相的电流源,从而向电网注入电能。这是大多数商用并网光伏微型逆变器的运行模式。这个想法是为这些微型逆变器提供在岛模式下工作的附加功能,而无需更改其针对电网连接模式的控制算法,而这些算法是随着时间的推移而开发和完善的。建议在孤岛模式下,使用下垂方案将微逆变器控件重新配置为电压源。这些方案包括在逆变器中实施P / Q策略,以便正确分配传递给负载的功率。本文的目的是表明所提出的控制重新配置是可能的,而对于微型逆变器或负载而言,没有危险的瞬变。通过在180 W光伏微型逆变器上的仿真和实验结果来证明所提出的控制策略的可行性。

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