基于光伏电路重构的孤岛条件下微网并联逆变器开发方法

Hartono Bs, R. Setiabudy, E. Setiawan, Budiyanto
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摘要

在孤岛状态下,两个或多个开/关gti将独立工作,这些逆变器不能并联工作,因为该逆变器中没有并联机构。因此,从光伏吸收的功率没有达到最大,电池的电力消耗。为了使这些逆变器可以并行工作,我们必须使用斩波/PWM方法在输入逆变器中添加功率限制器,这并不便宜。本研究提出了基于/关GTI逆变器的微网光伏(PV)电路重构并联两逆变器的方法,在孤岛条件下,采用主从并联网络拓扑逆变器。试验结果表明,通过对光伏(PV)电路的重新配置,可以实现双逆变器并联,将光伏的能量吸收提高到26%,将备用电池的使用减少到26.38%,从而维持电池的水平。
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Development method for paralleling inverters on microgrid when islanding condition using reconfiguration of PV circuit
During islanding conditions, two or more on/off GTIs will work stand alone, these inverters can't work in parallel, because there is no parallel mechanism in this inverter. So power absorption from PV not reach maximum and battery power drain. To make these inverters can work in parallel we must add a power limiter in input inverter using chopping/PWM method and this is not cheap. This research proposed method to parallel two inverter using reconfiguration of Photovoltaic (PV) circuit on microgrid based on/off GTI inverter, in islanding condition, using master slave parallel network topology inverter. The test results showed paralleling two inverter can be done using reconfiguration of Photovoltaic (PV) circuit and increase the absorption of energy from PV up to 26% and reduce the use of battery backup up to 26.38%, so the level of the battery can be sustained.
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