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Single-Phase Inverter for Grid-Connected and Intentional Islanding Operations in Electric Utility Systems

机译:电网连接和有意岛屿运营的单相逆变器

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摘要

Small distributed generation units are usually connected to the main electric grid through single-phase voltage source inverters. Grid operating conditions such as voltage and frequency are not constant and can fluctuate within the range values established by international standards. Furthermore, the requirements in terms of power factor correction, total harmonic distortion, and reliability are getting tighter day by day. As a result, the implementation of reliable and efficient control algorithms, which are able to adjust their control parameters in response to changeable grid operating conditions, is essential. This paper investigates the configuration topology and control algorithm of a single-phase inverter with the purpose of achieving high performance in terms of efficiency as well as total harmonic distortion of the output current. Accordingly, a Second Order Generalized Integrator with a suitable Phase Locked Loop (SOGI-PLL) is the basis of the proposed current and voltage regulation. Some practical issues related to the control algorithm are addressed, and a solution for the control architecture is proposed, based on resonant controllers that are continuously tuned on the basis of the actual grid frequency. Further, intentional islanding operation is investigated and a possible procedure for switching from grid-tied to islanding operation and vice-versa is proposed.
机译:小分布生成单元通常通过单相电压源逆变器连接到主电网。电压和频率等电网操作条件不是恒定的,可以在国际标准建立的范围内波动。此外,在功率因数校正,总谐波失真和可靠性方面的要求在日复一日地获得更紧密的。结果,可以实现可靠和有效的控制算法,其能够响应于可变的电网操作条件调整控制参数,这是必不可少的。本文研究了单相逆变器的配置拓扑和控制算法,目的是在效率方面实现高性能,以及输出电流的总谐波失真。因此,具有合适的锁相环(Sogi-PLL)的二阶广义积分器是所提出的电流和电压调节的基础。解决与控制算法相关的一些实际问题,并基于基于实际网格频率连续调谐的谐振控制器,提出了一种控制架构的解决方案。此外,研究了有意的孤岛手术,提出了从网格连接到岛状操作的可能程序,并进行反之亦然。

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